- [亿金快讯]Microchip晶振提供业界功耗最低的LoRa系统微控制器2019年01月14日 09:44
tyle=" text-indent: 2em;"> tyle="font-size:16px">Microchip晶振提供业界功耗最低的LoRa系统微控制器系列,凭借业界领先的低功耗,SAMR34/35器件,实现远程无线连接,同时延长系统电池寿命.
tyle=" text-indent: 2em;"> tyle="font-size:16px">MicrochipTechnologyInc.是微控制器,模拟,FPGA,title="石英晶振" target="_blank">石英晶振晶体元件,连接和电源管理半导体的领先供应商.其易于使用的开发工具和全面的产品组合使客户能够创建最佳设计,从而降低风险,同时降低总体系统成本和上市时间.该公司的解决方案为工业,汽车,消费品,航空航天和国防,通信和计算市场的130,000多家客户提供服务.Microchip晶振集团总部位于亚利桑那州钱德勒,为广大用户提供出色的技术支持以及可靠的交付和质量.
tyle=" text-align: center;"> target="_blank">title="Microchip晶振提供业界功耗最低的LoRa系统微控制器" alt="Microchip晶振提供业界功耗最低的LoRa系统微控制器" width="300" height="210" />
tyle=" text-indent: 2em;"> tyle="font-size:16px">2018年11月13日-LORA®(长距离)技术是通过远距离无线连接的低功耗性能的结合延长事(物联网)的网络的覆盖范围.为了加速基于LoRa的连接解决方案的开发,MicrochipTechnologyInc.今天推出了一款高度集成的LoRa系统级封装(SiP)系列,具有超低功耗32位微控制器(MCU),sub-GHzRFLoRa收发器和软件堆栈.所述SAMR34/35的SiP提供经过认证的参考设计和经验证的与主要LoRaWAN™网关和网络提供商的互操作性,通过硬件,软件和支持显着简化整个开发过程.包括石英title="贴片晶振" target="_blank">贴片晶振这些器件还提供业界在睡眠模式下的最低功耗,可在远程IoT节点中延长电池寿命.
tyle=" text-indent: 2em;"> tyle="font-size:16px">大多数LoRa终端设备长时间保持睡眠模式,仅偶尔唤醒以传输小数据包.搭载了超低功率SAML21臂®皮质®-M0+基于MCU中,SAMR34微控制器设备提供的睡眠模式低至790nA至显著降低功耗并在最终应用中延长电池寿命.SAMR34/35系列高度集成在紧凑的6x6mm封装中,是需要小尺寸设计和多年电池寿命的各种远程,低功耗物联网应用的理想选择.
tyle=" text-indent: 2em;"> tyle="font-size:16px">除了超低功耗外,简化的开发过程意味着开发人员可以通过将他们的应用代码与Microchip的LoRaWAN堆栈相结合来加速他们的设计,并使用AtmelStudio支持的ATSAMR34-XPRO开发板(DM320111)进行快速原型设计.7软件开发工具包(SDK).该开发板通过了美国联邦通信委员会(FCC),加拿大工业部(IC)和无线电设备指令(RED)的认证,使开发人员相信他们的设计将满足不同地区的政府要求.
tyle=" text-align: center;"> target="_blank">title="Microchip晶振提供业界功耗最低的LoRa系统微控制器" alt="Microchip晶振提供业界功耗最低的LoRa系统微控制器" width="268" height="232" />
tyle=" text-indent: 2em;"> tyle="font-size:16px">在物联网应用中title="晶振" target="_blank">晶振也是不可缺少的重要器件.晶振提供电路频率信号源,小体积,重量轻,品质高,实现高精度低功耗,高性能应用.Microchip晶振,石英晶体振荡器,查分晶振,多种封装尺寸满足市场需求.
tyle="font-size:16px">LORA技术旨在实现低功耗应用在比Zigbee的更远的距离进行通信®,的Wi-Fi®和Bluetooth®使用LoRaWAN开放协议.LoRaWAN适用于智能城市,农业监控和供应链跟踪等一系列应用,可以创建可在城市和乡村环境中运行的灵活物联网网络.根据LoRaAlliance™,LoRaWAN运营商的数量在过去12个月中从40个增加到80个,超过100个国家积极开发LoRaWAN网络.tyle=" text-indent: 2em;"> tyle="font-size:16px">“LoRa生态系统正在进入加速增长阶段,作为LoRa联盟的创始成员之一,title="Microchip晶振" target="_blank">Microchip晶振一直是推动该技术成功的强大动力,”Microchip晶振集团无线解决方案业务部副总裁SteveCaldwell说..“SAMR34延续了Microchip作为小型,低功耗器件的一站式服务的声誉,这些器件带来了免费软件,卓越的客户支持和可靠供应的优势.”
tyle=" text-indent: 2em;"> tyle="font-size:16px">title="Microchip晶振" target="_blank">Microchip晶振的LoRaWAN堆栈支持SAMR34/35系列,以及经过认证和验证的芯片封装封装,使客户能够以更低的风险加速RF应用的设计.通过支持从862到1020MHz的全球LoRaWAN操作,开发人员可以跨地域使用单个部件变体,简化设计流程并减少库存负担.SAMR34/35系列支持A类和C类终端设备以及专有的点对点连接.
- 阅读(336)
- [行业新闻]FILTRONETICS晶振生产实力2019年01月05日 09:02
tyle=" text-indent: 2em;"> tyle="font-family:宋体;font-size:16px">位于密苏里州堪萨斯城的tyle="font-size:16px">Filtronetics晶振tyle="font-family:宋体;font-size:16px">公司成立于tyle="font-size:16px">1970tyle="font-family:宋体;font-size:16px">年tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">这些年来tyle="font-size:16px">,Filtroneticstyle="font-family:宋体;font-size:16px">开发了广泛的频率产品系列tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">生产各种定制和批量生产的滤波器tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">石英晶体tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">title="贴片晶振" target="_blank">贴片晶振tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">晶体振荡器tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">线圈tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">陶瓷谐振器tyle="font-size:16px">,SAWStyle="font-family:宋体;font-size:16px">和微型单片滤波器tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">适用于各种应用领域从通信到仪器仪表tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">用于商业tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">工业和军事应用tyle="font-size:16px">.
tyle=" text-indent: 2em;"> tyle="font-family:宋体;font-size:16px">我们的使命是成为所有客户的重要供应商tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">成为世界tyle="font-size:16px">500tyle="font-family:宋体;font-size:16px">强公司tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">我们还提供广泛的产品线晶体滤波器tyle="font-size:16px">,SMDtyle="font-family:宋体;font-size:16px">晶振tyle="font-size:16px">,TCXOtyle="font-family:宋体;font-size:16px">晶振tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">单片滤波器tyle="font-size:16px">,SAWtyle="font-family:宋体;font-size:16px">滤波器tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">腔和带状线滤波器tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">集总器件元件滤波器和石英晶体振荡器tyle="font-size:16px">.
tyle=" text-indent: 2em;"> tyle="font-size:16px">Filtronetics,Inc.tyle="font-family:宋体;font-size:16px">与我们的客户合作tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">在整个开发过程中指导他们tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">为电信中的关键应用提供技术支持tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">如tyle="font-size:16px">ATM,SONET,LAN,tyle="font-family:宋体;font-size:16px">数据处理和高可靠性应用tyle="font-size:16px">.Filtronetics,Inc.tyle="font-family:宋体;font-size:16px">聘请了技术tyle="font-size:16px">/tyle="font-family:宋体;font-size:16px">工程人员tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">他们在电气方面拥有数十年的综合经验工程tyle="font-size:16px">,Auto-Cad,tyle="font-family:宋体;font-size:16px">高可靠性tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">物理tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">应用数学和机械工程tyle="font-size:16px">.
tyle=" text-indent: 2em;"> tyle="font-family:宋体;font-size:16px">质量是title="FILTRONETICS晶振" target="_blank">FILTRONETICS晶振集团成功的基础tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">质量控制部门提供超过tyle="font-size:16px">30tyle="font-family:宋体;font-size:16px">年的经验经验tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">目前的质量标准基于tyle="font-size:16px">ISO-9001tyle="font-family:宋体;font-size:16px">并已注册tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">客户或项目还提供具体要求tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">以及符合tyle="font-size:16px">IPC-610,MIL-STD-202,MIL-STD-883,MIL-STD-2000,J-STD001tyle="font-family:宋体;font-size:16px">和许多其他标准tyle="font-size:16px">.
tyle=" text-indent: 2em;">
tyle=" text-align: center;"> target="_blank">title="FILTRONETICS晶振生产实力" alt="FILTRONETICS晶振生产实力" width="330" height="292" />
tyle=" text-indent: 2em;"> tyle="font-family:宋体;font-size:16px">设计
tyle=" text-indent: 2em;"> tyle="font-size:16px">FILTRONETICS晶振tyle="font-family:宋体;font-size:16px">提供广泛的设计经验和能力tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">我们提供title="滤波器" target="_blank">滤波器设计tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">石英晶体振荡器设计tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">石英晶体tyle="font-size:16px">,SMDtyle="font-family:宋体;font-size:16px">晶振设计tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">电子系统设计和机电设计tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">我们拥有经验丰富的工程师tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">科学家和绘图员tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">以经济高效tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">专业的方式完成项目tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">我们可以提供包括模拟tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">图纸和测试结果的文档tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">此外tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">我们可以构建原型和生产运行tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">请联系我们以满足您的需求
tyle=" text-indent: 2em;"> tyle="font-family:宋体;font-size:16px">测试
tyle=" text-indent: 2em;"> tyle="font-size:16px">FILTRONETICS,Inc.tyle="font-family:宋体;font-size:16px">具有广泛的测试能力tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">以下部分列表是可以进行资格测试tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">title="石英晶振" target="_blank">石英晶振tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">贴片晶振tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">石英晶体振荡器样品测试或tyle="font-size:16px">100tyle="font-family:宋体;font-size:16px">%测试的测试tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">其中许多测试都在我们自己的工厂进行tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">其他人则在专门从事这些测试的认可设施中进行tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">这些测试可以按照特定标准执行tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">例如tyle="font-size:16px">MIL-STD-202,MIL-F-18327,MIL-STD-883,MIL-STD-810,MIL-STD-220,MIL-STD-210,IPCtyle="font-family:宋体;font-size:16px">等等tyle="font-size:16px">.
tyle=" text-indent: 2em;"> tyle="font-family:宋体;font-size:16px">部件
tyle=" text-indent: 2em;"> tyle="font-size:16px">FILTRONETICS,Inc.tyle="font-family:宋体;font-size:16px">可以使用其广泛的tyle="font-size:16px">Filtronetics,Inc.tyle="font-family:宋体;font-size:16px">可以帮助您设计和制造符合您规格的石英晶振tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">晶体滤波器tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">贴片晶振tyle="font-size:16px">,title="SAW滤波器" target="_blank">SAW滤波器tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">温补晶振等产品tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">知识和经验tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">以帮助设计tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">制造和测试电气和机械组件tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">我们的特殊能力包括:完整的系统组装和测试、子装配、印刷电路板组装、自动化tyle="font-size:16px">SMTtyle="font-family:宋体;font-size:16px">组装、手组装、线圈绕组、水晶制造业、定制tyle="font-size:16px">SMTtyle="font-family:宋体;font-size:16px">和通孔、封装、温度测试、冲击和振动测试、电压老化、封装tyle="font-size:16px">/tyle="font-family:宋体;font-size:16px">发泡、修改或升级到现有产品
tyle=" text-indent: 2em;"> tyle="font-family:宋体;font-size:16px">打包
tyle=" text-indent: 2em;"> tyle="font-family:宋体;font-size:16px">许多电子组件必须在恶劣环境中工作或者包装以进行自动装配tyle="font-size:16px">.Filtroneticstitle="晶振" target="_blank">晶振tyle="font-family:宋体;font-size:16px">可以利用其经验包装电子产品tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">以满足苛刻的制造和军事类型的要求tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">我们可以设计和布局您的装配tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">用密封包装来构建它tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">将其封装在轻质泡沫中或用导热环氧树脂包裹tyle="font-size:16px">.
- 阅读(167)
- [亿金快讯]韩国SUNNY晶振发展介绍2018年12月28日 13:43
tyle="font-size:16px;font-family:微软雅黑, sans-serif"> 韩国SUNNY晶振成立于1966年9月15日,主要为生产销售石英晶体振荡器,title="贴片晶振" target="_blank">贴片晶振,SUNNY石英晶体,小体积晶振晶体,晶体谐振器,晶体滤波器,恒温晶体振荡器等产品.SUNNY 晶振发展至今50多年,一直为用户提供高性能,低功耗产品.
tyle="font-size:16px;font-family:微软雅黑, sans-serif"> 三呢电子为满足人工智能,物联网,大数据,移动和先进的信息和通信技术发展对小型电子元件的需求,不断研发制造,高可靠性,微小型,高精度的石英贴片晶振,石英晶体谐振器,石英晶体振荡器等产品.
tyle="font-size:16px;font-family:微软雅黑, sans-serif;background-image:initial;background-position:initial;background-size:initial;background-repeat:initial;background-attachment:initial;background-origin:initial;background-clip:initial"> 韩国title="三呢晶振" target="_blank">三呢晶振发展历史
<table border="1" cellspacing="0" cellpadding="0" width="100%" style="width: 728px; border: none;"> <tbody> <tr> <td valign="top" style="padding-top: 12px; padding-bottom: 12px; border: 1px solid windowtext;">tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">2018tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">年
td> <td valign="top" style="padding-top: 12px; padding-bottom: 12px; border-top: 1px solid windowtext; border-right: 1px solid windowtext; border-bottom: 1px solid windowtext; border-image: initial; border-left: none;">tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">08'tyle="font-size:19px;font-family:微软雅黑, sans-serif">tyle="font-size:16px">:tyle="border:1px none windowtext;padding:0px;font-size:16px">SCO-A21tyle="border:1px none windowtext;padding:0px">tyle="font-size:16px">型tyle="font-size:16px">AEC-Q200tyle="font-size:16px">认证完成tyle="font-size:16px">,tyle="font-size:16px">车载晶振tyle="font-size:16px">,tyle="font-size:16px">高温贴片晶振tyle="font-size:16px">,tyle="font-size:16px">有源晶振加大生产量
tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">03'tyle="font-size:19px;font-family:微软雅黑, sans-serif">tyle="font-size:16px">:tyle="border:1px none windowtext;padding:0px;font-size:16px">CEOtyle="border:1px none windowtext;padding:0px;font-size:16px">的就职典礼
td> tr> <tr> <td valign="top" style="padding-top: 12px; padding-bottom: 12px; border-right: 1px solid windowtext; border-bottom: 1px solid windowtext; border-left: 1px solid windowtext; border-image: initial; border-top: none;">tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">2017tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">年
td> <td valign="top" style="padding-top: 12px; padding-bottom: 12px; border-top: none; border-left: none; border-bottom: 1px solid windowtext; border-right: 1px solid windowtext;">tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">12'tyle="font-size:19px;font-family:微软雅黑, sans-serif">tyle="font-size:16px">:tyle="border:1px none windowtext;padding:0px;font-size:16px">SX-A21tyle="border:1px none windowtext;padding:0px">tyle="font-size:16px">型tyle="font-size:16px">AEC-Q200tyle="font-size:16px">认证完成
tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">06'tyle="font-size:19px;font-family:微软雅黑, sans-serif">tyle="font-size:16px">:tyle="border:1px none windowtext;padding:0px;font-size:16px">SX-A22tyle="border:1px none windowtext;padding:0px">tyle="font-size:16px">型tyle="font-size:16px">AEC-Q200tyle="font-size:16px">认证考试完成
td> tr> <tr> <td valign="top" style="padding-top: 12px; padding-bottom: 12px; border-right: 1px solid windowtext; border-bottom: 1px solid windowtext; border-left: 1px solid windowtext; border-image: initial; border-top: none;">tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">2016tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">年
td> <td valign="top" style="padding-top: 12px; padding-bottom: 12px; border-top: none; border-left: none; border-bottom: 1px solid windowtext; border-right: 1px solid windowtext;">tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">12'tyle="font-size:19px;font-family:微软雅黑, sans-serif">tyle="font-size:16px">:tyle="border:1px none windowtext;padding:0px;font-size:16px">SX-A32tyle="border:1px none windowtext;padding:0px">tyle="font-size:16px">型tyle="font-size:16px">AEC-Q200tyle="font-size:16px">认证完成
tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">11'tyle="font-size:19px;font-family:微软雅黑, sans-serif">tyle="font-size:16px">:tyle="border:1px none windowtext;padding:0px;font-size:16px">SCO-A22tyle="border:1px none windowtext;padding:0px">tyle="font-size:16px">型tyle="font-size:16px">AEC-Q200tyle="font-size:16px">认证经过测试
tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">05'tyle="font-size:19px;font-family:微软雅黑, sans-serif">tyle="font-size:16px">:tyle="border:1px none windowtext;padding:0px;font-size:16px">SCO-A32tyle="border:1px none windowtext;padding:0px">tyle="font-size:16px">型tyle="font-size:16px">AEC-Q200tyle="font-size:16px">认证完成
tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">01'tyle="font-size:19px;font-family:微软雅黑, sans-serif">tyle="font-size:16px">:tyle="border:1px none windowtext;padding:0px;font-size:16px">低电流tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">(tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">10tyle="font-size:19px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">tyle="font-size:16px">μtyle="font-size:16px">Atyle="font-size:16px">)贴片tyle="font-size:16px">title="32.768K" target="_blank">32.768Ktyle="font-size:16px">有源晶振开始批量生产
td> tr> <tr> <td valign="top" style="padding-top: 12px; padding-bottom: 12px; border-right: 1px solid windowtext; border-bottom: 1px solid windowtext; border-left: 1px solid windowtext; border-image: initial; border-top: none;">tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">2015tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">年
td> <td valign="top" style="padding-top: 12px; padding-bottom: 12px; border-top: none; border-left: none; border-bottom: 1px solid windowtext; border-right: 1px solid windowtext;">tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">12'tyle="font-size:19px;font-family:微软雅黑, sans-serif">tyle="font-size:16px">:tyle="border:1px none windowtext;padding:0px">tyle="font-size:16px">与tyle="font-size:16px">Sunny Electronics-SiTimetyle="font-size:16px">(三呢晶振)签署战略合作伙伴关系
tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">11'tyle="font-size:19px;font-family:微软雅黑, sans-serif">tyle="font-size:16px">:tyle="border:1px none windowtext;padding:0px;font-size:16px">被指定为忠北的质量管理优秀企业
tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">10'tyle="font-size:19px;font-family:微软雅黑, sans-serif">tyle="font-size:16px">:tyle="border:1px none windowtext;padding:0px">tyle="font-size:16px">开发双输出振荡器tyle="font-size:16px">,tyle="font-size:16px">title="差分晶振" target="_blank">差分晶振tyle="font-size:16px">,tyle="font-size:16px">差分输出晶体振荡器
tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">09'tyle="font-size:19px;font-family:微软雅黑, sans-serif">tyle="font-size:16px">:tyle="border:1px none windowtext;padding:0px">tyle="font-size:16px">开发出高稳定性tyle="font-size:16px">3225tyle="font-size:16px">贴片晶振tyle="font-size:16px">,3225tyle="font-size:16px">带电压晶体振荡器
tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">06'tyle="font-size:19px;font-family:微软雅黑, sans-serif">tyle="font-size:16px">:tyle="border:1px none windowtext;padding:0px">tyle="font-size:16px">三呢晶振开发出tyle="font-size:16px">3225tyle="font-size:16px">压控晶振tyle="font-size:16px">,3225tyle="font-size:16px">有源晶振tyle="font-size:16px">,3225tyle="font-size:16px">差分晶振tyle="font-size:16px">LVPECLtyle="font-size:16px">和tyle="font-size:16px">LVDStyle="font-size:16px">输出
tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">02'tyle="font-size:19px;font-family:微软雅黑, sans-serif">tyle="font-size:16px">:tyle="border:1px none windowtext;padding:0px">tyle="font-size:16px">开始批量生产超小型贴片晶振tyle="font-size:16px">2016mmtyle="font-size:16px">封装
tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">01'tyle="font-size:19px;font-family:微软雅黑, sans-serif">tyle="font-size:16px">:tyle="border:1px none windowtext;padding:0px;font-size:16px">SMDtyle="border:1px none windowtext;padding:0px">tyle="font-size:16px">(tyle="font-size:16px">SMD title="2016晶振" target="_blank">2016晶振tyle="font-size:16px">)设施投资
td> tr> <tr> <td valign="top" style="padding-top: 12px; padding-bottom: 12px; border-right: 1px solid windowtext; border-bottom: 1px solid windowtext; border-left: 1px solid windowtext; border-image: initial; border-top: none;">tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">2014tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">年
td> <td valign="top" style="padding-top: 12px; padding-bottom: 12px; border-top: none; border-left: none; border-bottom: 1px solid windowtext; border-right: 1px solid windowtext;">tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">10'tyle="font-size:19px;font-family:微软雅黑, sans-serif">tyle="font-size:16px">:tyle="border:1px none windowtext;padding:0px">tyle="font-size:16px">贴片晶体振荡器tyle="font-size:16px"> 3225 OSC,X-TALtyle="font-size:16px">全面批量生产
tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">09'tyle="font-size:19px;font-family:微软雅黑, sans-serif">tyle="font-size:16px">:tyle="border:1px none windowtext;padding:0px;font-size:16px">SMD 5032tyle="border:1px none windowtext;padding:0px">tyle="font-size:16px">晶振差分系列tyle="font-size:16px">LVDS-PECLtyle="font-size:16px">以及tyle="font-size:16px">VCXOtyle="font-size:16px">晶振批量生产(最大tyle="font-size:16px">400MHZtyle="font-size:16px">)
tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">06'tyle="font-size:19px;font-family:微软雅黑, sans-serif">tyle="font-size:16px">:tyle="border:1px none windowtext;padding:0px;font-size:16px">增资tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">(tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">117.6tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">亿韩元)
tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">04'tyle="font-size:19px;font-family:微软雅黑, sans-serif">tyle="font-size:16px">:tyle="border:1px none windowtext;padding:0px">tyle="font-size:16px">新开发超小型贴片晶振tyle="font-size:16px">,2520tyle="font-size:16px">晶振tyle="font-size:16px">VCXOtyle="font-size:16px">压控晶体振荡器系列
td> tr> <tr> <td valign="top" style="padding-top: 12px; padding-bottom: 12px; border-right: 1px solid windowtext; border-bottom: 1px solid windowtext; border-left: 1px solid windowtext; border-image: initial; border-top: none;">tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">2013tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">年
td> <td valign="top" style="padding-top: 12px; padding-bottom: 12px; border-top: none; border-left: none; border-bottom: 1px solid windowtext; border-right: 1px solid windowtext;">tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">12'tyle="font-size:19px;font-family:微软雅黑, sans-serif">tyle="font-size:16px">:tyle="border:1px none windowtext;padding:0px;font-size:16px">碳合作伙伴认证tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">(tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">LG Displaytyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">)
tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">12'tyle="font-size:19px;font-family:微软雅黑, sans-serif">tyle="font-size:16px">:tyle="border:1px none windowtext;padding:0px">tyle="font-size:16px">开发tyle="font-size:16px">AT-cuttyle="font-size:16px">基础tyle="font-size:16px">PECL VCXOtyle="font-size:16px">title="晶振" target="_blank">晶振
tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">07'tyle="font-size:19px;font-family:微软雅黑, sans-serif">tyle="font-size:16px">:tyle="border:1px none windowtext;padding:0px">tyle="font-size:16px">开发tyle="font-size:16px">5032tyle="font-size:16px">贴片晶振tyle="font-size:16px">,tyle="font-size:16px">可编程tyle="font-size:16px">PECL XOtyle="font-size:16px">和tyle="font-size:16px">LVDS XOtyle="font-size:16px">系列
td> tr> <tr> <td valign="top" style="padding-top: 12px; padding-bottom: 12px; border-right: 1px solid windowtext; border-bottom: 1px solid windowtext; border-left: 1px solid windowtext; border-image: initial; border-top: none;">tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">2012tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">年
td> <td valign="top" style="padding-top: 12px; padding-bottom: 12px; border-top: none; border-left: none; border-bottom: 1px solid windowtext; border-right: 1px solid windowtext;">tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">10'tyle="font-size:19px;font-family:微软雅黑, sans-serif">tyle="font-size:16px">:tyle="border:1px none windowtext;padding:0px">tyle="font-size:16px">开发出tyle="font-size:16px">7050tyle="font-size:16px">晶振低相位噪声tyle="font-size:16px">VCXOtyle="font-size:16px">电压控制晶体振荡器
tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">09'tyle="font-size:19px;font-family:微软雅黑, sans-serif">tyle="font-size:16px">:tyle="border:1px none windowtext;padding:0px">tyle="font-size:16px">开始批量生产tyle="font-size:16px">3225tyle="font-size:16px">贴片晶振压控系列tyle="font-size:16px">,3225tyle="font-size:16px">压控晶体振荡器
tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">08'tyle="font-size:19px;font-family:微软雅黑, sans-serif">tyle="font-size:16px">:tyle="border:1px none windowtext;padding:0px;font-size:16px">7050tyle="border:1px none windowtext;padding:0px">tyle="font-size:16px">晶振可编程系列tyle="font-size:16px">PECL XO,LVDS XOtyle="font-size:16px">开发
tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">07'tyle="font-size:19px;font-family:微软雅黑, sans-serif">tyle="font-size:16px">:tyle="border:1px none windowtext;padding:0px;font-size:16px">70MHztyle="border:1px none windowtext;padding:0px;font-size:16px">晶体滤波器的开发
tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">06'tyle="font-size:19px;font-family:微软雅黑, sans-serif">tyle="font-size:16px">:tyle="border:1px none windowtext;padding:0px"> tyle="font-size:16px">3225tyle="font-size:16px">title="温补晶振" target="_blank">温补晶振的开发和批量生产
tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">05'tyle="font-size:19px;font-family:微软雅黑, sans-serif">tyle="font-size:16px">:tyle="border:1px none windowtext;padding:0px">tyle="font-size:16px">贴片晶振tyle="font-size:16px"> 7050 18~20 kHztyle="font-size:16px">低频tyle="font-size:16px">OSCtyle="font-size:16px">开发
td> tr> <tr> <td valign="top" style="padding-top: 12px; padding-bottom: 12px; border-right: 1px solid windowtext; border-bottom: 1px solid windowtext; border-left: 1px solid windowtext; border-image: initial; border-top: none;">tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">2011tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">年
td> <td valign="top" style="padding-top: 12px; padding-bottom: 12px; border-top: none; border-left: none; border-bottom: 1px solid windowtext; border-right: 1px solid windowtext;">tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">12'tyle="font-size:19px;font-family:微软雅黑, sans-serif">tyle="font-size:16px">:tyle="border:1px none windowtext;padding:0px">tyle="font-size:16px">被选为tyle="font-size:16px">LGtyle="font-size:16px">电子的优秀合作伙伴
tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">11'tyle="font-size:19px;font-family:微软雅黑, sans-serif">tyle="font-size:16px">:tyle="border:1px none windowtext;padding:0px;font-size:16px">2520tyle="border:1px none windowtext;padding:0px">tyle="font-size:16px">贴片晶振tyle="font-size:16px">,3225tyle="font-size:16px">贴片晶振tyle="font-size:16px">80~200MHztyle="font-size:16px">高频tyle="font-size:16px">OSCtyle="font-size:16px">开发
td> tr> <tr> <td valign="top" style="padding-top: 12px; padding-bottom: 12px; border-right: 1px solid windowtext; border-bottom: 1px solid windowtext; border-left: 1px solid windowtext; border-image: initial; border-top: none;">tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">2010tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">年
td> <td valign="top" style="padding-top: 12px; padding-bottom: 12px; border-top: none; border-left: none; border-bottom: 1px solid windowtext; border-right: 1px solid windowtext;">tyle="font-size:16px;font-family:微软雅黑, sans-serif;border:1px none windowtext;padding:0px">02'tyle="font-size:19px;font-family:微软雅黑, sans-serif">tyle="font-size:16px">:tyle="border:1px none windowtext;padding:0px">tyle="font-size:16px">开始生产贴片晶振tyle="font-size:16px">,OSCtyle="font-size:16px">石英晶体振荡器tyle="font-size:16px">2520mm系列
td> tr> tbody> table>tyle="font-size:19px;font-family:微软雅黑, sans-serif">tyle="font-size:16px"> 基于通过降低成本提高盈利能力tyle="font-size:16px">,Sunny Electronicstyle="font-size:16px">专注于开发可以引领下一代市场的多功能tyle="font-size:16px">,tyle="font-size:16px">高附加值产品和质量改进tyle="font-size:16px">.tyle="font-size:16px">并且制造具备高性能tyle="font-size:16px">,tyle="font-size:16px">低老化tyle="font-size:16px">,tyle="font-size:16px">宽温度的title="有源晶振" target="_blank">有源晶振tyle="font-size:16px">,tyle="font-size:16px">车载晶振tyle="font-size:16px">,tyle="font-size:16px">石英晶体振荡器tyle="font-size:16px">,tyle="font-size:16px">用汽车电子tyle="font-size:16px">,tyle="font-size:16px">工业机械设备tyle="font-size:16px">,tyle="font-size:16px">并获得tyle="font-size:16px">AEC-Q200tyle="font-size:16px">认证tyle="font-size:16px">.
tyle="font-size:19px;font-family:微软雅黑, sans-serif">tyle="font-size:16px"> 我们将通过不断创新进一步拓展现有业务tyle="font-size:16px">,tyle="font-size:16px">并通过各种挑战和学习tyle="font-size:16px">,tyle="font-size:16px">努力发现未来的新增长业务tyle="font-size:16px">. tyle="font-size:16px">我们将尽最大努力履行客户和我们的股东给予我们的爱和信任的社会责任tyle="font-size:16px">.
- 阅读(771)
- [行业新闻]亿金电子2019年元旦假期通知2018年12月28日 09:35
tyle="font-size:16px">尊敬的新老客户:
tyle="font-size:16px"> 元旦将至,根据国务院规定2019年元旦假期为3天,亿金电子2018年12月30日至2019年1月1日放假调休,共3天.2018年12月29日(星期六)上班.当然大伙觉得不尽兴的可以请几天假拼在一起.拼假建议:2019年1月2日(周三)~2019年1月4日(周五)请假3天,可拼8天元旦小长假,就问你嗨不嗨森.
tyle=" text-align: center;"> target="_blank">title="亿金电子2019年元旦假期通知" alt="亿金电子2019年元旦假期通知" width="542" height="374" />
tyle="font-size:16px"> 深圳市亿金电子有限公司全体上下员工祝各位新老用户元旦快乐!出游多注意人身财产安全.遇事不慌张.元旦都来了年假还会远吗?不到一个月的时候也要放年假了,各位用户使用title="晶振" target="_blank">晶振需要订货备货的抓紧时间安排哦,以免耽误生产交期,财富热线0755-27876565,18924600166,欢迎致电.
tyle="font-size:16px"> 深圳市亿金电子有限公司
tyle="font-size:16px"> 2018年12月28日- 阅读(88)
- [行业新闻]村田制造的水晶单元与传统石英晶振结构的不同2018年12月26日 09:50
tyle="font-size:16px"> 说到村田生产的电子元件想必很多人会想到的都是村田贴片电容,村田陶瓷晶振.其实近几年村田也开始了title="石英晶振" target="_blank">石英晶振的研发制造,并且获得广大用户所认可,取得可观成绩.下面亿金电子给大家介绍下村田制作所水晶单元的起源,以及村田石英晶振的优点和各种应用.
tyle="font-size:16px"> 村田制作所的水晶单元采用突破性且独特的包装技术,在现有产品中无与伦比,提供卓越的品质,生产规模和性价比.
tyle="font-size:16px"> 村田制造所水晶单元的优点
tyle=" text-align: center;"> title="村田制造的水晶单元与传统石英晶振结构的不同" alt="村田制造的水晶单元与传统石英晶振结构的不同" width="656" height="121" />
tyle="font-size:16px"> 村田制作所水晶单元的起源
tyle="font-size:16px"> 村田制作所已提供陶瓷谐振器(CERALOCK ®)市场的四十多年里,作为微型计算机和其他设备的参考时钟使用.为了支持需要比title="陶瓷谐振器" target="_blank">陶瓷谐振器具有更高频率精度的时钟的设备,使用我们独特的技术,Murata和Tokyo Denpa共同开发了微型且高度可靠的石英晶振,贴片晶体单元.自2009年起,我们开始为消费者市场供应产品,自2013年起开始为汽车市场供应产品.
tyle=" text-align: center;"> title="村田制造的水晶单元与传统石英晶振结构的不同" alt="村田制造的水晶单元与传统石英晶振结构的不同" width="552" height="149" />
tyle="font-size:16px"> 市场业绩-村田制作所的水晶单元在各种应用中都很活跃由于对速度和容量的需求增加,与东京Denpa联合开发的产品已被更多产品所采用,因为HDD/SSD/USB和其他存储设备开始使用小型晶体单元.后来,村田制作所的水晶单元开始被用于NFC,智能手机具有个人认证/电子货币支付功能.
tyle="font-size:16px"> 由于AV/PC/汽车设备和Wi-Fi通信设备对小型设备的需求不断增长,以及配备BT/BLE通信功能的可穿戴设备和智能手机外围设备的市场增长,小型title="贴片晶振" target="_blank">贴片晶振,石英晶体设备的采用仍在增加连接到智能手机.
tyle=" text-align: center;"> target="_blank">title="村田制造的水晶单元与传统石英晶振结构的不同" alt="村田制造的水晶单元与传统石英晶振结构的不同" width="638" height="466" />
tyle="font-size:16px"> 客户选择村田制作所的水晶单元的原因-由陶瓷title="谐振器" target="_blank">谐振器培育的高可靠性/低成本封装的采用(CERALOCK ®)
tyle="font-size:16px"> 村田制作石英贴片晶振使用的封装结构与典型的水晶单元不同.虽然常规晶振晶体单元使用具有腔体结构的陶瓷基板,但村田制作所的title="石英晶振" target="_blank">石英晶振单元使用的结构将金属帽与平面陶瓷基板结合在一起,该陶瓷基板具有多年可追溯的陶瓷谐振器.与传统的石英晶体单元相比,使用高度通用的平面陶瓷基板和金属盖可以降低材料成本,实现稳定的供应,并提高产量.
tyle=" text-align: center;"> target="_blank">title="村田制造的水晶单元与传统石英晶振结构的不同" alt="村田制造的水晶单元与传统石英晶振结构的不同" width="647" height="397" />
tyle="font-size:16px"> 村田制作所为客户提供价值-title="村田晶振" target="_blank">村田晶振拥有先进的生产技术,从水晶石生产,设计,制造到我们自己的原始设备到全球销售网络的集成系统.至今村田中国已拥有19个销售据点、4个工厂以及4个研发设计基地,近距离为客户提供及时有效的服务和技术支持.
tyle=" text-align: center;"> target="_blank">title="村田制造的水晶单元与传统石英晶振结构的不同" alt="村田制造的水晶单元与传统石英晶振结构的不同" width="650" height="397" />
tyle="font-size:16px"> 全球销售系统
tyle=" text-align: center;"> title="村田制造的水晶单元与传统石英晶振结构的不同" alt="村田制造的水晶单元与传统石英晶振结构的不同" width="650" height="387" />
tyle="font-size:16px"> 村田石英晶振产品型号列表
<table border="1" bordercolor="#000000" style="width: 880px;"> <tbody> <tr> <th> tyle="font-size:16px">系列 th> <th> tyle="font-size:16px">类型 th> <th> tyle="font-size:16px">尺寸(mm) th> <th> tyle="font-size:16px">频率 th> <th> tyle="font-size:16px">笔记 th> tr> tbody> <tbody> <tr> <td>t="" src="https://www.murata.com/~/media/webrenewal/products/timingdevice/crystalu/selectionguide/img/xrced_img0001.ashx?la=ja-jp" />tyle="font-size:16px">XRCTDtd> <td> tyle="font-size:16px">MCR1210晶振 td> <td> tyle="font-size:16px">1.2×1.0×0.30
tyle="font-size:16px">XRCED
tyle="font-size:16px">1.2×1.0×0.33 td> <td> tyle="font-size:16px">32至52MHz
td> <td rowspan="2"> tyle="font-size:16px">金属密封封装,tyle="font-size:16px">适用tyle="font-size:16px">于小型消费设备的小型无线通信设备
td> tr> <tr> <td>tyle="font-size:16px">XRCFDtyle="font-size:16px">XRCMD
tyle="font-size:16px">1.6×1.2×0.33
td> <td> tyle="font-size:16px">24至48MHz
td> tr> <tr> <td>t="" src="https://www.murata.com/~/media/webrenewal/products/timingdevice/crystalu/selectionguide/img/xrcgb_img0001.ashx?la=ja-jp" />tyle="font-size:16px">XRCGBtd> <td> tyle="font-size:16px">HCR2016晶振 td> <td> tyle="font-size:16px">2.0×1.6×0.7
td> <td> tyle="font-size:16px">24至50MHz
td> <td rowspan="3"> tyle="font-size:16px">用于消费者设备的tyle="font-size:16px">无线通信设备的树脂密封包装
td> tr> <tr> <td>t="" src="https://www.murata.com/~/media/webrenewal/products/timingdevice/crystalu/selectionguide/img/xrcgb_img0001.ashx?la=ja-jp" />tyle="font-size:16px">XRCPBtd> <td> tyle="font-size:16px">HCR2016晶振 td> <td> tyle="font-size:16px">2.0×1.6×0.5
td> <td> tyle="font-size:16px">24至48MHz
td> tr> <tr> <td>t="" src="https://www.murata.com/~/media/webrenewal/products/timingdevice/crystalu/selectionguide/img/xrcha_img0001.ashx?la=ja-jp" />tyle="font-size:16px">XRCHAtd> <td> tyle="font-size:16px">HCRtitle="2520晶振" target="_blank">2520晶振 td> <td> tyle="font-size:16px">2.5×2.0×0.8
td> <td> tyle="font-size:16px">16至20MHz
td> tr> <tr> <td>t="" src="https://www.murata.com/~/media/webrenewal/products/timingdevice/crystalu/selectionguide/img/xrchafa_img0001.ashx?la=en" />tyle="font-size:16px">XRCHA_F_Atd> <td> tyle="font-size:16px">HCR2520晶振 td> <td> tyle="font-size:16px">2.5×2.0×0.8 td> <td> tyle="font-size:16px">16至24MHz td> <td> tyle="font-size:16px">用于汽车tyle="font-size:16px">以太网/ FlexRay
td> tr> <tr> <td>tyle="font-size:16px">XRCGE_F_Atd> <td> tyle="font-size:16px"> HCR2016晶振 td> <td> tyle="font-size:16px">2.0×1.6×0.7 td> <td> tyle="font-size:16px">20至23.99MHz td> <td> tyle="font-size:16px">用于汽车tyle="font-size:16px">MCU等
td> tr> <tr> <td>t="" src="https://www.murata.com/~/media/webrenewal/products/timingdevice/crystalu/selectionguide/img/xrcgbfa_img0001.ashx?la=en" />tyle="font-size:16px">XRCGB_F_Atd> <td> tyle="font-size:16px"> HCR2016晶振 td> <td> tyle="font-size:16px">2.0×1.6×0.7 td> <td> tyle="font-size:16px">24至48MHz td> <td> tyle="font-size:16px">用于汽车tyle="font-size:16px">以太网/ FlexRay
td> tr> <tr> <td>t="" src="https://www.murata.com/~/media/webrenewal/products/timingdevice/crystalu/selectionguide/img/xrcgbfa_img0001.ashx?la=en" />tyle="font-size:16px">XRCGB_F_Ctd> <td> tyle="font-size:16px"> HCRtitle="2016晶振" target="_blank">2016晶振 td> <td> tyle="font-size:16px">2.0×1.6×0.7 td> <td> tyle="font-size:16px">27.6MHz td> <td> tyle="font-size:16px">用于汽车tyle="font-size:16px">舒适/安全信息tyle="font-size:16px">娱乐 td> tr> <tr> <td>t="" src="https://www.murata.com/~/media/webrenewal/products/timingdevice/crystalu/selectionguide/img/xrcgbfg_img0001.ashx?la=en" />tyle="font-size:16px">XRCGB_F_Gtd> <td> tyle="font-size:16px"> HCR2016晶振 td> <td> tyle="font-size:16px">2.0×1.6×0.7 td> <td> tyle="font-size:16px">24至48MHz td> <td> tyle="font-size:16px">用于汽车tyle="font-size:16px">仅用于信息娱乐 td> tr> tbody> table>- 阅读(181)
- [行业新闻]Silabs高性能差分晶振参数特点2018年12月25日 11:40
tyle="text-indent: 2em"> tyle="font-size:16px">Silabstyle="font-family:宋体;font-size:16px">晶振英文全称为tyle="font-size:16px">Silicon Labs,tyle="font-family:宋体;font-size:16px">是美国知名石英晶体tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">title="贴片晶振" target="_blank">贴片晶振tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">有源晶体振荡器制造商tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">拥有先进的生产技术以及仪器设备tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">下面是Silabs高性能差分晶振参数特点介绍tyle="font-size:16px">.
tyle="text-indent: 2em"> tyle="font-family:宋体;font-size:16px">美国tyle="font-size:16px">Silicon Labstyle="font-family:宋体;font-size:16px">的tyle="font-size:16px">UltraSeriestyle="font-family:宋体;font-size:16px">™高性能有源晶振tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">差分石英晶体振荡器采用我们最新的第四代tyle="font-size:16px">DSPLLtyle="font-family:宋体;font-size:16px">技术tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">在任何高达tyle="font-size:16px">3GHztyle="font-family:宋体;font-size:16px">的输出频率下提供超低抖动tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">低相位噪声时钟tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">该系列包括具有业界领先的相位抖动的title="差分晶振" target="_blank">差分晶振tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">差分晶体振荡器tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">低至tyle="font-size:16px">80fstyle="font-family:宋体;font-size:16px">(飞秒)tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">适用于光网络tyle="font-size:16px">,100G+tyle="font-family:宋体;font-size:16px">光模块tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">宽带tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">数据中心tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">广播视频tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">测试和测量tyle="font-size:16px">,mil/aerotyle="font-family:宋体;font-size:16px">和tyle="font-size:16px">FPGAtyle="font-family:宋体;font-size:16px">应用tyle="font-size:16px">.
tyle="text-indent: 2em"> tyle="font-size:16px">Silabstyle="font-family:宋体;font-size:16px">高性能差分晶振高性能tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">低损耗tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">高精度是下一代定时应用的理想选择tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">可提供系统设计人员所需的频率灵活性tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">卓越的可靠性和超快的交付周期tyle="font-size:16px">.Ultratyle="font-family:宋体;font-size:16px">系列振荡器提供工业标准tyle="font-size:16px">3.2x5mmtyle="font-family:宋体;font-size:16px">和tyle="font-size:16px">5x7mmtyle="font-family:宋体;font-size:16px">封装的单双tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">四和tyle="font-size:16px">I2Ctyle="font-family:宋体;font-size:16px">选项tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">可实现与传统tyle="font-size:16px">XOtyle="font-family:宋体;font-size:16px">title="有源晶振" target="_blank">有源晶振和tyle="font-size:16px">VCXOtyle="font-family:宋体;font-size:16px">压控晶振的兼容性tyle="font-size:16px">.
tyle="text-indent: 2em"> tyle="font-size:16px">Silabstyle="font-family:宋体;font-size:16px">高性能差分title="晶振" target="_blank">晶振业界最低抖动tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">最宽频率范围tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">任何频率tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">拥有tyle="font-size:16px">XO/VCXOtyle="font-family:宋体;font-size:16px">系列tyle="font-size:16px">:tyle="font-family:宋体;font-size:16px">卓越的性能tyle="font-size:16px">+tyle="font-family:宋体;font-size:16px">最大的灵活性tyle="font-size:16px">=tyle="font-family:宋体;font-size:16px">更加安心
tyle="text-align: center"> target="_blank">title="Silabs高性能差分晶振参数特点" alt="Silabs高性能差分晶振参数特点" width="580" height="345" />
tyle="text-indent: 2em"> tyle="font-family:宋体;font-size:16px">业界领先的抖动性能
tyle="text-indent: 2em"> tyle="font-family:宋体;font-size:16px">title="晶振" target="_blank">晶振频率范围宽tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">频率分辨率tyle="font-size:16px"><1ppb
tyle="text-indent: 2em"> tyle="font-family:宋体;font-size:16px">提供单tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">双tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">四tyle="font-size:16px">,I2Ctyle="font-family:宋体;font-size:16px">配置
tyle="text-indent: 2em"> tyle="font-size:16px">I2C支持tyle="font-size:16px">100kHztyle="font-family:宋体;font-size:16px">(标准)tyle="font-size:16px">,400kHztyle="font-family:宋体;font-size:16px">(快速模式)和tyle="font-size:16px">1MHztyle="font-family:宋体;font-size:16px">(快速模式加)更新速率
tyle="text-indent: 2em"> tyle="font-family:宋体;font-size:16px">减少部件号:定义tyle="font-size:16px">4tyle="font-family:宋体;font-size:16px">个启动频率tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">使用tyle="font-size:16px">I2Ctyle="font-family:宋体;font-size:16px">在启动后生成任何频率
tyle="text-indent: 2em"> tyle="font-family:宋体;font-size:16px">出色的电源噪声抑制(tyle="font-size:16px">-80dBctyle="font-family:宋体;font-size:16px">典型值)可确保电噪声系统中的低抖动操作
tyle="text-indent: 2em"> tyle="font-family:宋体;font-size:16px">出色的温度和总稳定性(tyle="font-size:16px">-40tyle="font-family:宋体;font-size:16px">至tyle="font-size:16px">85tyle="font-family:宋体;font-size:16px">℃)
tyle="text-indent: 2em"> tyle="font-size:16px">贴片晶振封装尺寸3.2x5mmtyle="font-family:宋体;font-size:16px">和tyle="font-size:16px">5x7mm
tyle="text-indent: 2em"> tyle="font-family:宋体;font-size:16px">根据产品需求可提供tyle="font-size:16px">3.3,2.5,1.8Vtyle="font-family:宋体;font-size:16px">多种电源电压
tyle="text-indent: 2em"> tyle="font-family:宋体;font-size:16px">具有多种差分输出方式包括:tyle="font-size:16px">LVDS,LVPECL,HCSL,CML,CMOStyle="font-family:宋体;font-size:16px">和双tyle="font-size:16px">CMOS
tyle="text-indent: 2em"> tyle="font-family:宋体;font-size:16px">Silabs高性能差分晶振卓越的可靠性tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">每台设备tyle="font-size:16px">100tyle="font-family:宋体;font-size:16px">%的电气测试
tyle="text-indent: 2em"> tyle="font-family:宋体;font-size:16px">Silabstitle="差分晶振" target="_blank">差分晶振样品可提供tyle="font-size:16px">1-2tyle="font-family:宋体;font-size:16px">周的交货时间
tyle="text-align: center"> tyle="font-family:宋体;font-size:18px">适用于任何频率的一致,超低抖动性能tyle="font-size:18px">
tyle="text-align: center"> target="_blank">title="Silabs高性能差分晶振参数特点" alt="Silabs高性能差分晶振参数特点" width="650" height="280" />
tyle="text-indent: 2em"> tyle="font-size:16px">收集的测量值超过700个常用频率
tyle="text-indent: 2em"> tyle="font-family:宋体;font-size:16px">无论整数频率还是分数频率tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">都具有超低抖动
tyle="text-indent: 2em"> tyle="font-family:宋体;font-size:16px">使用我们的振荡器相位噪声查找工具可获得特定频率的相位噪声图tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">请问联系我们tyle="font-size:16px">0755-27876565.
- 阅读(334)
- [行业新闻]2018年深圳国际电子展京瓷晶振集团有参加吗?京瓷晶振参展2018年12月21日 10:09
tyle="font-size:16px"> 2018tyle="font-family:宋体;font-size:16px">年tyle="font-size:16px">12tyle="font-family:宋体;font-size:16px">月tyle="font-size:16px">20tyle="font-family:宋体;font-size:16px">日tyle="font-size:16px">-22tyle="font-family:宋体;font-size:16px">日在深圳会展中心举行的深圳国际电子展(tyle="font-size:16px">ELEXCON2018tyle="font-family:宋体;font-size:16px">)已开幕tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">这是中国国内规模巨大的专业电子综合大展tyle="font-size:16px">.2018年tyle="font-family:宋体;font-size:16px">深圳国际电子展京瓷title="晶振" target="_blank">晶振集团有参加吗?是的tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">日本知名品牌tyle="font-size:16px">KYOCERAtyle="font-family:宋体;font-size:16px">京瓷将第四次以集团规模参展tyle="font-size:16px">.
tyle="font-family:宋体;font-size:16px"> 今年的京瓷展台将分为车载tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">一般产业tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">压电晶体元件等展区进行展示tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">在车载展区tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">观众可以体验搭载了京瓷多种产品的模拟驾驶舱tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">进而了解京瓷正在通过先进的解决方案tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">为实现安全舒适的移动社会而努力tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">此外tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">title="京瓷晶振" target="_blank">京瓷晶振也将通过通信tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">珠宝首饰tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">医疗tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">电子元件等一般产业产品的展示tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">展现京瓷集团的综合技术实力tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">各位新老客户想要更全面近距离的了解京瓷产品可以去看看哦tyle="font-size:16px">.
<table border="1" cellspacing="0" cellpadding="0" bordercolor="#000000" style="width: 800px;"> <tbody> <tr> <td style="padding: 3px;">tyle="text-align: center;"> tyle="font-family:宋体;font-size:16px">展会名称
td> <td style="padding: 3px;">tyle="text-align: center;"> tyle="font-family:宋体;font-size:16px">深圳国际电子展
td> tr> <tr> <td style="padding: 3px;">tyle="text-align: center;"> tyle="font-family:宋体;font-size:16px">时间
td> <td style="padding: 3px;">tyle="text-align: center;"> tyle="font-family:arial, sans-serif;font-size:16px">2018tyle="font-family:宋体;font-size:16px">年tyle="font-family:arial, sans-serif;font-size:16px">12tyle="font-family:宋体;font-size:16px">月tyle="font-family:arial, sans-serif;font-size:16px">20tyle="font-family:宋体;font-size:16px">日~tyle="font-family:arial, sans-serif;font-size:16px">2018tyle="font-family:宋体;font-size:16px">年tyle="font-family:arial, sans-serif;font-size:16px">12tyle="font-family:宋体;font-size:16px">月tyle="font-family:arial, sans-serif;font-size:16px">22tyle="font-family:宋体;font-size:16px">日
td> tr> <tr> <td style="padding: 3px;">tyle="text-align: center;"> tyle="font-family:宋体;font-size:16px">地点
td> <td style="padding: 3px;">tyle="text-align: center;"> tyle="font-family:宋体;font-size:16px">深圳会展中心:一号展馆
td> tr> <tr> <td style="padding: 3px;">tyle="text-align: center;"> tyle="font-family:宋体;font-size:16px">京瓷晶振展位
td> <td style="padding: 3px;">tyle="text-align: center;"> tyle="font-family:arial, sans-serif;font-size:16px">1L12
td> tr> tbody> table>tyle="font-family:宋体">tyle="font-size:16px"> tyle="font-size:16px">在车载展区tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">运用京瓷晶振集团新技术的车载系统可以让观众体验车联网技术带来的更加安全舒适的出行tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">您可以体验京瓷的新技术如下:
tyle="font-size:16px"> 1.3D ARtyle="font-family:宋体;font-size:16px">平视显示器(tyle="font-size:16px">HUDtyle="font-family:宋体;font-size:16px">)
tyle="font-family:宋体;font-size:16px"> 通过具有tyle="font-size:16px">AItyle="font-family:宋体;font-size:16px">识别功能的摄像头和tyle="font-size:16px">V2Ityle="font-family:宋体;font-size:16px">路测机tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">驾驶员可以直观地获得投射在挡风玻璃上的各种信息tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">比如tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">前车距离太近或突然出现的人和车辆的预测信息等都可以自动投射到车的挡风玻璃上tyle="font-size:16px">.VRtyle="font-family:宋体;font-size:16px">显示器中同样也加入了京瓷自产车载晶振tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">包括京瓷tyle="font-size:16px">CT2520DBtyle="font-family:宋体;font-size:16px">晶振tyle="font-size:16px">,title="CX3225GA晶振" target="_blank">CX3225GA晶振tyle="font-size:16px">,CX5032SAtyle="font-family:宋体;font-size:16px">晶振tyle="font-size:16px">,CX8045GAtyle="font-family:宋体;font-size:16px">晶振tyle="font-size:16px">,KC2520Mtyle="font-family:宋体;font-size:16px">晶振等tyle="font-size:16px">.
tyle="font-size:16px"> 2.tyle="font-family:宋体;font-size:16px">车载用液晶显示屏
tyle="font-family:宋体;font-size:16px"> 借助京瓷独有的加工技术tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">在屏幕上高质量地显示汽车的导航和仪表tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">另外tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">还有被称之为tyle="font-size:16px">"Haptivity"tyle="font-family:宋体;font-size:16px">的新技术tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">驾驶者可以在屏幕上获得真正的按键感觉tyle="font-size:16px">.GPStyle="font-family:宋体;font-size:16px">导航采用的是京瓷tyle="font-size:16px">2520tyle="font-family:宋体;font-size:16px">title="温补晶振" target="_blank">温补晶振系列tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">定位精准tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">性能稳定tyle="font-size:16px">.
tyle=" text-align: center;"> title="2018年深圳国际电子展京瓷晶振集团有参加吗?京瓷晶振参展" alt="2018年深圳国际电子展京瓷晶振集团有参加吗?京瓷晶振参展" width="400" height="578" />
tyle="font-family:宋体;font-size:16px"> 车载产品区
tyle="font-family:宋体;font-size:16px"> 通过先进的高级驾驶员辅助系统和解决方案tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">京瓷正在为实现安全舒适的汽车出行而努力tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">例如将京瓷晶振集团的先进设备tyle="font-size:16px">,AItyle="font-family:宋体;font-size:16px">和tyle="font-size:16px">ARtyle="font-family:宋体;font-size:16px">相结合的最新系统等tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">此外tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">模拟驾驶舱可以体验京瓷的特色设备和系统tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">在这里你可以看到京瓷的各种技术对于汽车社会的贡献tyle="font-size:16px">.
tyle="font-family:宋体;font-size:16px"> 主要展品:车载用液晶显示屏(tyle="font-size:16px">HUD,HAPTIVITY®tyle="font-family:宋体;font-size:16px">)tyle="font-size:16px">LEDtyle="font-family:宋体;font-size:16px">基板tyle="font-size:16px">.LIDAR.tyle="font-family:宋体;font-size:16px">车载暖风点火塞tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">车载摄像头tyle="font-size:16px">.MLCC.tyle="font-family:宋体;font-size:16px">车载用电线分线连接器
tyle="font-family:宋体;font-size:16px"> 一般产业产品
tyle="font-family:宋体;font-size:16px"> 主要展品:大型多层基板tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">血流传感器tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">石英title="贴片晶振" target="_blank">贴片晶振tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">京都欧珀蛋白石等tyle="font-size:16px">.
tyle=" text-align: center;"> title="2018年深圳国际电子展京瓷晶振集团有参加吗?京瓷晶振参展" alt="2018年深圳国际电子展京瓷晶振集团有参加吗?京瓷晶振参展" width="297" height="200" />tyle="font-size:16px"> target="_blank">title="2018年深圳国际电子展京瓷晶振集团有参加吗?京瓷晶振参展" alt="2018年深圳国际电子展京瓷晶振集团有参加吗?京瓷晶振参展" width="254" height="200" />
tyle=" text-align: center;"> tyle="font-size:16px">京瓷车载用分线连接器 tyle="font-size:16px"> 京瓷CX3225SB车载晶振
tyle="font-size:16px"> 亿金电子国内知名晶振供货商,为用户提供大量质优价廉的晶振产品,包括陶瓷晶振,声表面滤波器,title="贴片晶振" target="_blank">贴片晶振,压控晶体振荡器,差分晶振,石英晶体谐振器等产品.为了更好的服务世界各地用户,同时代理CTS晶振,title="NDK晶振" target="_blank">NDK晶振,京瓷晶振,KDS晶体,鸿星晶振,希华晶振,泰艺晶振,IDT晶振等知名品牌,产品规格齐全,价格优势,欢迎广大用户来电咨询0755-27876565.
- 阅读(136)
- [技术支持]最全最详细的晶振晶体术语词汇表2018年12月20日 11:02
tyle="font-size:16px"> 亿金电子是国内有名的晶振晶体供货商,一直以来为用户提供了大量优秀的晶振产品,包括石英晶体谐振器,title="贴片晶振" target="_blank">贴片晶振,石英晶体振荡器,温补晶振,声表面滤波器等.为了更好的服务广大用户,亿金电子不断开拓创新,发展前进,凭借自身的努力与智慧获得台湾,日本,欧美进口晶振品牌代理权限,包括NDK晶振,KDS晶振,京瓷晶体,CTS有源晶振,IDT贴片晶振,TXC晶体,title="鸿星晶振" target="_blank">鸿星晶振,加高晶振等.亿金电子免费为用户提供晶振现样以及晶振技术资料下载服务.以下为最全最详细的晶振晶体术语词汇表
<table border="1" bordercolor="#000000" style="width: 880px;"> <tbody> <tr> <td>tyle="font-size:16px">压电现象
td> <td>tyle="font-size:16px">Curious,J.和Curie,P.它是在1880年发现的,离子晶体响应外部应力产生介电极化的现象.
td> tr> <tr> <td>tyle="font-size:16px">压电元件
td> <td>tyle="font-size:16px">一种元件,具有将诸如振动和压力的机械应变转换成电压并相反地施加电压以产生机械应变的特性.
td> tr> <tr> <td>tyle="font-size:16px">厚度剪切振动
td> <td>tyle="font-size:16px">石英晶体振荡器的振动模式之一,其频率与厚度成反比.一种模式,其中晶体坯料的厚度方向上的前表面和后表面沿相反方向滑动.这种石英片称为AT切割.
td> tr> <tr> <td>tyle="font-size:16px">非凡的光线
td> <td>tyle="font-size:16px">当入射在双折射板上的光被分成两束时,光束的速度根据传播方向而变化.
td> tr> <tr> <td>tyle="font-size:16px">相位抖动
td> <td>tyle="font-size:16px">信号脉冲波形的相位是这样一种现象波动从原始位置来回,波动频率(时间滞后)的相位被称为抖动频率10Hz以上.
td> tr> <tr> <td>tyle="font-size:16px">相位噪声
td> <td>tyle="font-size:16px">从晶体振荡器输出产生的标称频率附近的不必要能量辐射的通用名称.
td> tr> <tr> <td>tyle="font-size:16px">相位板
td> <td>tyle="font-size:16px">消除在通过双折射板之后已经线性偏振的光线的偏振状态的元件.它有时被称为去极化板,波片.
td> tr> <tr> <td>tyle="font-size:16px">老化
td> <td>tyle="font-size:16px">处理消除初始不稳定因素,实现稳定运行.
td> tr> <tr> <td>tyle="font-size:16px">衰老量
td> <td>tyle="font-size:16px">指随着时间流逝而变化的特征变化量.
td> tr> <tr> <td>tyle="font-size:16px">衰老量
td> <td>tyle="font-size:16px">指随着时间流逝而变化的特征变化量.
td> tr> <tr> <td>tyle="font-size:16px">高压灭菌器
td> <td>tyle="font-size:16px">特殊钢制容器,可承受高温/高压,也可用于战舰大炮.高度高达15米.
td> tr> <tr> <td>tyle="font-size:16px">泛音顺序
td> <td>tyle="font-size:16px">对泛音振动的规定的振动模式顺序地呈现所述基波振动为1,连续增加的整数.
td> tr> <tr> <td>tyle="font-size:16px">超越晶体振荡器
td> <td>tyle="font-size:16px">title="石英晶体谐振器" target="_blank">石英晶体谐振器设计用于在更高阶振动模式(第3,第5,第7)振荡.
td> tr> <tr> <td>tyle="font-size:16px">偏移错误
td> <td>tyle="font-size:16px">在LVDS输出振荡器中,示出了差分输出+侧和负侧的振幅电平平均值之间的差.
td> tr> <tr> <td>tyle="font-size:16px">偏移电压
td> <td>tyle="font-size:16px">在LVDS输出振荡器中,显示了差分输出的+侧和-侧的平均幅度电平.
td> tr> <tr> <td>tyle="font-size:16px">音叉振荡器
td> <td>
tyle="font-size:16px">(kHz频带晶体振荡器)tyle="font-size:16px">可以低功耗驱动的振动器.它被称为音叉型石英振荡器,因为水晶片是音叉形状.
td> tr> <tr> <td>tyle="font-size:16px">温度传感器输出
td> <td>tyle="font-size:16px">在TCXO晶振模块中,直流电压输出随温度变化.
td> tr> tbody> table>tyle="font-size:16px">卡行
<table border="1" bordercolor="#000000" style="width: 880px;"> <tbody> <tr> <td>tyle="font-size:16px">受过程影响的图层
td> <td>tyle="font-size:16px">在抛光或切割晶体时,处理诸如石英晶体坯料中产生的小裂缝的变形.
td> tr> <tr> <td>tyle="font-size:16px">截止特性
td> <td>tyle="font-size:16px">阻挡空间频率特性产生波纹.
td> tr> <tr> <td>tyle="font-size:16px">加工
td> <td>tyle="font-size:16px">使用石英工具和机床,将石英加工成所需的形状和尺寸.抛光也是一种加工方式.
td> tr> <tr> <td>tyle="font-size:16px">反馈电阻(Rf)
td> <td>tyle="font-size:16px">DC偏置的反馈电阻是决定低范围截止特性的常数之一.通常,10MΩ用于kHz频段的振荡,1MΩ用于MHz频段的振荡.然而,当瞄准泛音振荡时,可以使用kΩ量级的电阻器.
td> tr> <tr> <td>tyle="font-size:16px">参考温度
td> <td>tyle="font-size:16px">温度测量title="晶振" target="_blank">晶振晶体器件的具体参数.
td> tr> <tr> <td>tyle="font-size:16px">开始时间
td> <td>tyle="font-size:16px">从振荡器的电源电压上升到输出幅度达到标准的时间.
td> tr> <tr> <td>tyle="font-size:16px">基本晶体石英振荡器
td> <td>tyle="font-size:16px">石英振荡器,设计成在预定振动模式下以最低程度(第一)振荡.
td> tr> <tr> <td>tyle="font-size:16px">反压电现象
td> <td>tyle="font-size:16px">相反,压电现象,一种现象,即施加电场到晶体时,会发生失真.Lipman预测它的存在,Curie,J.和Curie,P.
td> tr> <tr> <td>tyle="font-size:16px">帽
td> <td>tyle="font-size:16px">用于保护由陶瓷或金属制成的水晶坯料的盖子.
td> tr> <tr> <td>tyle="font-size:16px">弯曲振动
td> <td>tyle="font-size:16px">振动模式,其频率由材料板的尺寸决定.
td> tr> <tr> <td>tyle="font-size:16px">群延迟时间偏差
td> <td>tyle="font-size:16px">通带内组延迟时间的最大值和最小值之间的差异.
td> tr> <tr> <td>tyle="font-size:16px">耦合能力
td> <td>tyle="font-size:16px">在4极型滤波器的情况下,元件之间的连接容量.
td> tr> <tr> <td>tyle="font-size:16px">化学处理
td> <td>tyle="font-size:16px">一种化学抛光和加工晶体坯料加工的方法,该方法是用机器使用化学溶液完成的.
td> tr> <tr> <td>tyle="font-size:16px">衰减带宽
td> <td>tyle="font-size:16px">具有保证相对衰减超过指定值的值的频率间隔.
td> tr> <tr> <td>tyle="font-size:16px">波兰语
td> <td>tyle="font-size:16px">研磨和抛光水晶片.根据精加工精度进行抛光等精密加工.
td> tr> <tr> <td>tyle="font-size:16px">光伪信号
td> <td>tyle="font-size:16px">最初不存在的信号,例如颜色不均匀或条纹图案,其在通过图像拾取元件绘制格子状条纹等时发生.有时它被称为虚假信号,莫尔条纹.
td> tr> <tr> <td>tyle="font-size:16px">光轴
td> <td>tyle="font-size:16px">在双折射晶体中不发生双折射的方向上的轴.
td> tr> <tr> <td>tyle="font-size:16px">光学石英基板
td> <td>tyle="font-size:16px">透明基板,利用晶体的导热特性进行散热.
td> tr> <tr> <td>tyle="font-size:16px">光学低通滤波器
td> <td>tyle="font-size:16px">去除空间频率的高频分量的滤波器.那些使用彩色成像元件去除光学伪信号的设备,例如数码相机和便携式摄像机.
td> tr> <tr> <td>tyle="font-size:16px">标称频率
td> <td>tyle="font-size:16px">中心频率的标称值.
td> tr> <tr> <td>tyle="font-size:16px">谐波
td> <td>tyle="font-size:16px">在振荡器输出中,输出频率以外的高阶频率分量.
td> tr> <tr> <td>tyle="font-size:16px">凸面处理
td> <td>tyle="font-size:16px">防止晶体片(限制振动能量到中央部分),用于振动能量的泄漏,在比中央部,形成为圆弧状的弯曲表面的晶体片的处理薄石英片的端部的加工方法.还有另一个斜切过程留下了中心部分的平整度.
td> tr> tbody> table>tyle="font-size:16px">一字母S
<table border="1" cellpadding="0" cellspacing="0" class="" bordercolor="#000000" style="width: 880px;"> <tbody> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; width: 141px;"> tyle="font-size:16px">最大激励水平 td> <td width="527" style="border-left: none; width: 527px;"> tyle="font-size:16px">晶体单元工作期间消耗的最大功率值tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">差分输出错误 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">在tyle="font-size:16px">LVDStyle="font-size:16px">输出振荡器中tyle="font-size:16px">,tyle="font-size:16px">显示了差分输出的tyle="font-size:16px">+tyle="font-size:16px">侧和tyle="font-size:16px">-tyle="font-size:16px">侧的波高值之间的差异tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">差分输出电压 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">在tyle="font-size:16px">LVDStyle="font-size:16px">输出振荡器title="差分晶振" target="_blank">差分晶振中tyle="font-size:16px">,tyle="font-size:16px">显示差分输出tyle="font-size:16px">+tyle="font-size:16px">侧和tyle="font-size:16px">-tyle="font-size:16px">侧的峰值tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">萨瓦特板块 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">将入射光分成两个线性偏振光tyle="font-size:16px">,tyle="font-size:16px">普通光线和非常光线的元件tyle="font-size:16px">,tyle="font-size:16px">它们具有彼此不同的振动方向tyle="font-size:16px">.tyle="font-size:16px">有时它被称为双折射板tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">紫外线切割涂层 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">反射紫外线的光学薄膜tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">终止阻抗 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">从滤波器侧看到的信号源阻抗或负载阻抗tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">频率 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">表示在一秒钟内重复周期性变化的现象(例如无线电波和声波)的次数tyle="font-size:16px">.tyle="font-size:16px">单位是赫兹tyle="font-size:16px">“tyle="font-size:16px">赫兹tyle="font-size:16px">”. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">频率温度特性 td> <td rowspan="2" width="527" style="border-top: none; width: 527px;"> tyle="font-size:16px">在参考温度下与频率的偏差以百万分率(tyle="font-size:16px">×10tyle="font-size:16px">-6tyle="font-size:16px">)表示tyle="font-size:16px">,tyle="font-size:16px">并且在工作温度范围内表示最大值tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">(石英振荡器) td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">频率温度特性 td> <td rowspan="2" width="527" style="border-top: none; width: 527px;"> tyle="font-size:16px">在指定温度范围内运行引起的指定参考温度频率的频率偏差tyle="font-size:16px">,tyle="font-size:16px">不改变温度以外的条件tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">(晶体振荡器) td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">频率可变范围 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">输出频率范围可通过外部控制电压改变为tyle="font-size:16px">VCXOtyle="font-size:16px">中的振荡器tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">频率容差偏差 td> <td rowspan="2" width="527" style="border-top: none; width: 527px;"> tyle="font-size:16px">它以百万分率(tyle="font-size:16px">×10tyle="font-size:16px">-6tyle="font-size:16px">)表示tyle="font-size:16px">,tyle="font-size:16px">偏离室温(tyle="font-size:16px">25°Ctyle="font-size:16px">)时的标称频率tyle="font-size:16px">.tyle="font-size:16px">它也被称为冷温度偏差tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">(晶体振荡器) td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">频率容差偏差 td> <td rowspan="2" width="527" style="border-top: none; width: 527px;"> tyle="font-size:16px">当晶体振荡器在规定条件下工作时tyle="font-size:16px">,tyle="font-size:16px">振荡频率与规定标称频率之间的最大允许偏差tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">(晶体振荡器) td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">频率随时间变化 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">指定工作时间范围内频率变化量tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">频率控制灵敏度 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">在tyle="font-size:16px">VCXOtyle="font-size:16px">中tyle="font-size:16px">,tyle="font-size:16px">显示了每tyle="font-size:16px">1Vtyle="font-size:16px">控制电压的频率变化tyle="font-size:16px">.tyle="font-size:16px">(单位:tyle="font-size:16px">×10tyle="font-size:16px">-6tyle="font-size:16px">/Vtyle="font-size:16px">) td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">频率控制极性 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">在tyle="font-size:16px">VCXO,tyle="font-size:16px">伴随着增加输出什么频率的增加正控制电压(tyle="font-size:16px">+tyle="font-size:16px">)tyle="font-size:16px">,tyle="font-size:16px">那些更低的负tyle="font-size:16px">-tyle="font-size:16px">由下式表示()tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">频率控制电压 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">在tyle="font-size:16px">title="VXCO晶振" target="_blank">VCXO晶振tyle="font-size:16px">中tyle="font-size:16px">,tyle="font-size:16px">从外部输入的电压宽度改变频率tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">频率供电电压特性 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">通过在不改变电源电压以外的条件的情况下给出指定的电源电压变化而产生的指定参考电压的频率的频率偏差tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">频率负载变化特性 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">通过在不改变负载以外的条件的情况下给出负载阻抗变化而引起的与指定参考负载条件的频率的频率偏差tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">输出启用时间 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">在具有输出控制功能的型号中tyle="font-size:16px">,tyle="font-size:16px">从输入控制信号到振荡输出的出现的时间tyle="font-size:16px">,tyle="font-size:16px">振荡输出停止tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">输出频率 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">晶体振荡器输出频率的标称值tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">输出禁用时间 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">在具有输出控制功能的型号中tyle="font-size:16px">,tyle="font-size:16px">在振荡输出状态下tyle="font-size:16px">,tyle="font-size:16px">从控制信号输入到振荡输出停止的时间tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">输出电压 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">输出波形的幅度tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">输出特性 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">标准输出波形标准和测量负载条件tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">输出负载 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">输出波形表示相应的器件(tyle="font-size:16px">TTL,C-MOStyle="font-size:16px">等)tyle="font-size:16px">,tyle="font-size:16px">并且可以驱动这些器件tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">输出负载条件 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">可连接到振荡器的负载类型和数量(功率)tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">普通射线 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">当入射在双折射板上的光被分成两束时tyle="font-size:16px">,tyle="font-size:16px">光束的速度不会根据传播方向而改变tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">蒸汽沉积 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">在晶体片的表面上形成金属膜tyle="font-size:16px">.tyle="font-size:16px">所谓真空蒸镀tyle="font-size:16px">,tyle="font-size:16px">在真空状态下在容器中加热金属tyle="font-size:16px">,tyle="font-size:16px">并且附接至所述晶体坯的方法蒸发称为溅射法tyle="font-size:16px">,tyle="font-size:16px">是利用通电金属靶时的原理弹出金属原子附着通常使用方法tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">当前消费 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">消耗的工作电流tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">气缸类型 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">具有圆柱形结构的晶体title="谐振器" target="_blank">谐振器tyle="font-size:16px">.tyle="font-size:16px">一般是指tyle="font-size:16px">kHztyle="font-size:16px">频段振荡器的形状tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">单包 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">晶体空白和tyle="font-size:16px">ICtyle="font-size:16px">集成在一个封装中tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">振动模式 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">晶体片的机械振动图由切割方向等决定tyle="font-size:16px">.tyle="font-size:16px">厚度剪切振动和弯曲振动tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">人造水晶 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">通过水热合成法人工生长的晶体tyle="font-size:16px">,tyle="font-size:16px">由于杂质小tyle="font-size:16px">,tyle="font-size:16px">质量好tyle="font-size:16px">,tyle="font-size:16px">形状适合加工tyle="font-size:16px">,tyle="font-size:16px">因此被用作石英晶体器件的原料tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">水晶 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">石英是一种大结晶tyle="font-size:16px">,tyle="font-size:16px">原始的晶面很发达tyle="font-size:16px">.tyle="font-size:16px">用于配饰等的紫色水晶(紫水晶)和黄色水晶(黄水晶)等也是一种水晶tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">晶体谐振器th="141" style="width: 141px;" /> th="527" style="width: 527px;" />
tyle="font-size:16px">(MHz波段谐振器) td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">振动器利用具有良好温度特性的厚度剪切振动tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; width: 141px;"> tyle="font-size:16px">晶体振荡器 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">一种振荡电路tyle="font-size:16px">,tyle="font-size:16px">结合了通过施加电压产生自然振荡的石英振荡器和放大电路tyle="font-size:16px">,tyle="font-size:16px">振荡频率精度非常高tyle="font-size:16px">. td> tr> <tr height="46" style="height: 46px;"> <td height="46" width="141" style="height: 46px; border-top: none; width: 141px;"> tyle="font-size:16px">水晶过滤器 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">具有频率选择功能的设备tyle="font-size:16px">,tyle="font-size:16px">仅从特定频率分量中传递出各种频率分量tyle="font-size:16px">,tyle="font-size:16px">并衰减不必要的分量tyle="font-size:16px">.tyle="font-size:16px">在诸如移动电话的无线通信设备中tyle="font-size:16px">,tyle="font-size:16px">它起到提取期望频率分量的作用tyle="font-size:16px">.tyle="font-size:16px">利用石英的高tyle="font-size:16px">Qtyle="font-size:16px">值tyle="font-size:16px">,tyle="font-size:16px">它具有低损耗tyle="font-size:16px">,tyle="font-size:16px">尖锐的衰减特性tyle="font-size:16px">,tyle="font-size:16px">高稳定性和优异的温度特性tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">待机电流 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">在具有输出控制功能的型号中tyle="font-size:16px">,tyle="font-size:16px">振荡因外部控制电压而停止时的消耗电流tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">伪 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">在衰减带内的限定范围内tyle="font-size:16px">,tyle="font-size:16px">它是次级振动tyle="font-size:16px">,tyle="font-size:16px">其由相对于主振动的相对衰减值表示tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">三态功能 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">通过待机功能停止振荡时的输出状态变为高阻抗的状态tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">限制阻力(tyle="font-size:16px">Rdtyle="font-size:16px">) td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">它限制了流经晶体单元的电流tyle="font-size:16px">,tyle="font-size:16px">并降低了tyle="font-size:16px">ICtyle="font-size:16px">输出阻抗和振荡环路负载的影响tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">红外线切割涂层 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">反射红外线的光学薄膜tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">红外线截止滤光片 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">过滤以阻挡红外线tyle="font-size:16px">.tyle="font-size:16px">普通的图像拾取元件对红外线敏感tyle="font-size:16px">,tyle="font-size:16px">但人眼不会感知红外线tyle="font-size:16px">,tyle="font-size:16px">因此它们用于颜色校正tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td height="40" width="141" style="height: 40px; border-top: none; width: 141px;"> tyle="font-size:16px">红外吸收玻璃 td> <td width="527" style="border-top: none; border-left: none; width: 527px;"> tyle="font-size:16px">吸收红外线的玻璃tyle="font-size:16px">. td> tr> <tr height="40" style="height: 40px;"> <td rowspan="2" height="61" width="141" style="height: 61px; border-top: none; width: 141px;"> tyle="font-size:16px">插入损失 td> <td rowspan="2" width="527" style="border-bottom: 1px solid black; border-top: none; width: 527px;"> tyle="font-size:16px">插入title="滤波器" target="_blank">滤波器和未插入滤波器时的衰减差异,有以下两种.
tyle="font-size:16px">最小损耗:插入损耗的最小值.
tyle="font-size:16px">恒定损耗:标称频率下的插入损耗. td> tr> <tr height="21" style="height: 21px;"> tr> tbody> table>tyle="font-size:16px">tyle="font-size:16px">一排
<table border="1" bordercolor="#000000" style="width: 880px;"> <tbody> <tr> <td>tyle="font-size:16px">二次温度系数
td> <td>tyle="font-size:16px">表示频率-温度特性的二次曲线的温度系数.
td> tr> <tr> <td>tyle="font-size:16px">输入特性
td> <td>tyle="font-size:16px">带输出控制功能的型号控制端子输入条件.
td> tr> <tr> <td>tyle="font-size:16px">输入电压电平
td> <td>tyle="font-size:16px">OE端子的“0”电平,“1”电平电压状态.
td> tr> <tr> <td>tyle="font-size:16px">输入电流
td> <td>tyle="font-size:16px">OE终端的“0”电平和“1”电平的当前值.
td> tr> tbody> table>tyle="font-size:16px">这条线
<table border="1" bordercolor="#000000" style="width: 880px;"> <tbody> <tr> <td>tyle="font-size:16px">波形对称
td> <td>tyle="font-size:16px">相对于总信号周期的百分比,作为输出电压高于指定电平的时间与低于指定电平的时间的比率.
td> tr> <tr> <td>tyle="font-size:16px">旁路电容
td> <td>tyle="font-size:16px">降低电源系统阻抗所需的部件.
td> tr> <tr> <td>tyle="font-size:16px">波浪板
td> <td>tyle="font-size:16px">消除在通过双折射板之后已经线性偏振的光线的偏振状态的元件.它有时被称为相位板,去极化板.
td> tr> <tr> <td>tyle="font-size:16px">包
td> <td>tyle="font-size:16px">由陶瓷或金属制成的容器,用于粘附和保护title="石英晶体" target="_blank">石英晶体坯料.
td> tr> <tr> <td>tyle="font-size:16px">振荡电路
td> <td>tyle="font-size:16px">一种产生持续AC信号的电子电路.
td> tr> <tr> <td>tyle="font-size:16px">振荡幅度
td> <td>tyle="font-size:16px">振荡电路中存在多少振荡余量的程度.我同意电路的负阻.
td> tr> <tr> <td>tyle="font-size:16px">反射波前像差
td> <td>tyle="font-size:16px">来自光学系统的反射之后的波前与来自参考参考平面的波前之间的未对准.
td> tr> <tr> <td>tyle="font-size:16px">封口
td> <td>tyle="font-size:16px">为了防止诸如频率随时间的变化的劣化,在惰性气体气氛或真空状态下进行.可以使用通过电阻焊接和使用低熔点玻璃的玻璃密封进行的接缝密封.
td> tr> <tr> <td>tyle="font-size:16px">负载能力
td> <td>tyle="font-size:16px">确定共振频率的基本外部容量.如果该值很小,则易受电路侧变化的影响,这成为降低频率稳定性的一个因素.
td> tr> <tr> <td>tyle="font-size:16px">双折射板
td> <td>tyle="font-size:16px">将入射光分成两个线性偏振光,普通光线和非常光线的元件,它们具有彼此不同的振动方向.有时我们称之为萨瓦特板块.
td> tr> <tr> <td>tyle="font-size:16px">负阻力
td> <td>tyle="font-size:16px">表示振荡电路中存在多少振荡余量的值.它是可以振荡的电路的电阻分量,并且由负值表示.
td> tr> <tr> <td>tyle="font-size:16px">光谱特征
td> <td>tyle="font-size:16px">每个波长的光谱速率特性.
td> tr> <tr> <td>tyle="font-size:16px">分离模式
td> <td>tyle="font-size:16px">通过双折射板分离光,2点分离和4点分离等形成的图案是常见的.
td> tr> <tr> <td>tyle="font-size:16px">并行容量
td> <td>tyle="font-size:16px">容量与等效电路的串联臂并联.
td> tr> <tr> <td>tyle="font-size:16px">偏光
td> <td>tyle="font-size:16px">光的振动矢量的振动方向与其状态对齐.
td> tr> <tr> <td>tyle="font-size:16px">去极化板
td> <td>tyle="font-size:16px">消除在通过双折射板之后已经线性偏振的光线的偏振状态的元件.它有时被称为相位板,波片.
td> tr> <tr> <td>tyle="font-size:16px">保修衰减
td> <td>tyle="font-size:16px">在衰减频带内的指定范围内保证相对衰减.
td> tr> <tr> <td>tyle="font-size:16px">储存温度范围
td> <td>tyle="font-size:16px">可保持的晶振温度范围,不会导致性能下降或损坏.
td> tr> tbody> table>tyle="font-size:16px">或线
tyle="font-size:16px">
<table border="1" cellpadding="0" cellspacing="0" class="" bordercolor="#000000" style="width: 880px;"> <tbody> <tr height="42" style="height: 42px;"> <td height="42" width="113" style="height: 42px; width: 113px;"> tyle="font-size:16px">莫尔 td> <td width="491" style="width: 491px;"> tyle="font-size:16px">最初不存在的信号tyle="font-size:16px">,tyle="font-size:16px">例如颜色不均匀或条纹图案tyle="font-size:16px">,tyle="font-size:16px">其在通过图像拾取元件绘制格子状条纹等时发生tyle="font-size:16px">.tyle="font-size:16px">它有时被称为伪信号tyle="font-size:16px">,tyle="font-size:16px">即伪伪信号tyle="font-size:16px">. td> tr> <tr height="42" style="height: 42px;"> <td height="42" width="113" style="height: 42px; width: 113px;"> tyle="font-size:16px">模具类型 td> <td width="491" style="width: 491px;"> tyle="font-size:16px">将石英晶体谐振器放入模具中并用树脂等外置tyle="font-size:16px">. td> tr> <tr height="42" style="height: 42px;"> <td height="42" width="113" style="height: 42px; width: 113px;"> tyle="font-size:16px">非乘法输出 td> <td width="491" style="width: 491px;"> tyle="font-size:16px">晶体振荡器电路的输出不通过乘法器电路tyle="font-size:16px">.tyle="font-size:16px"> td> tr> tbody> table>th="113" style="width: 113px;" /> th="491" style="width: 491px;" /> tyle="font-size:16px">Yah·ra linetyle="font-size:16px">
<table border="1" bordercolor="#000000" style="width: 880px;"> <tbody> <tr> <td>tyle="font-size:16px">阿拉斯加州
td> <td>tyle="font-size:16px">成为人造水晶的原料的天然石英的材料.
td> tr> <tr> <td>tyle="font-size:16px">兰伯特处理
td> <td>tyle="font-size:16px">进行加工以产生石英岩的参考平面(晶轴).
td> tr> <tr> <td>tyle="font-size:16px">波纹
td> <td>tyle="font-size:16px">衰减的最小值与通带内的最小损耗之差的最大值.
td> tr> <tr> <td>tyle="font-size:16px">回流
td> <td>tyle="font-size:16px">一种将预先施加的焊料熔化并附着到电子部件连接在电路板上的焊接方法.
td> tr> <tr> <td>tyle="font-size:16px">回流温度曲线
td> <td>tyle="font-size:16px">当通过回流将电子元件连接到电路板时,它规定了title="晶振" target="_blank">晶振安装所需的时间和回流炉的温度.
td> tr> <tr> <td>tyle="font-size:16px">激励程度
td> <td>tyle="font-size:16px">它由在晶体振荡器的负载条件下施加到石英晶体片的电流或电功率调节.
td> tr> tbody> table>tyle="font-size:16px">字母数字字符
<table border="1" bordercolor="#000000" style="width: 880px;"> <tbody> <tr> <td>tyle="font-size:16px">0电平电压
td> <td>tyle="font-size:16px">表示逻辑电路“0”电平的电压条件.
td> tr> <tr> <td>tyle="font-size:16px">1级电压
td> <td>tyle="font-size:16px">表示逻辑电路“1”电平的电压条件.
td> tr> <tr> <td>tyle="font-size:16px">CMOS
td> <td>tyle="font-size:16px">连接的集成电路,以补充P沟道和N沟道MOSFET.
td> tr> <tr> <td>tyle="font-size:16px">ECL
td> <td>tyle="font-size:16px">一种高速逻辑集成电路,使用负电源来操作不饱和区域中的晶体管.
td> tr> <tr> <td>tyle="font-size:16px">LVDS
td> <td>tyle="font-size:16px">title="差分晶振" target="_blank">差分晶振低幅度,差动式高速传输电路.
td> tr> <tr> <td>tyle="font-size:16px">LV-PECL
td> <td>tyle="font-size:16px">低压驱动型PECL电路.
td> tr> <tr> <td>tyle="font-size:16px">MHz频带晶体振荡器
td> <td>tyle="font-size:16px">振动器利用具有良好温度特性的厚度剪切振动.
td> tr> <tr> <td>tyle="font-size:16px">OCXO
td> <td>
tyle="font-size:16px">(带恒温器的晶体振荡器)tyle="font-size:16px">超高精度晶体振荡器,内置恒温室,保持晶体振荡器等温度恒定,使频率变化极小.
td> tr> <tr> <td>tyle="font-size:16px">PLL输出
td> <td>tyle="font-size:16px">在TCXOtitle="温补晶振" target="_blank">温补晶振模块中,PLL电路的倍增输出基于TCXO输出信号.
td> tr> <tr> <td>tyle="font-size:16px">P偏振光
td> <td>tyle="font-size:16px">入射到样品表面的光的电矢量的振荡方向包括在入射表面中的线性偏振光.
td> tr> <tr> <td>tyle="font-size:16px">Q值
td> <td>tyle="font-size:16px">它是表示共振峰的锐度的值,表示损失少且纯度高的值.
td> tr> <tr> <td>tyle="font-size:16px">RTC(实时时钟模块)
td> <td>tyle="font-size:16px">具有数据提供和中断功能的多功能设备,例如日历时钟功能所需的年,月,日,小时,分钟,秒等.
td> tr> <tr> <td>tyle="font-size:16px">SMD
td> <td>tyle="font-size:16px">SurfaceMountedDevice的缩写.它指的是要安装在电路板上的类型的封装的通用名称.
td> tr> <tr> <td>tyle="font-size:16px">SPXO
td> <td>
tyle="font-size:16px">(通用晶体振荡器)tyle="font-size:16px">时钟晶体振荡器采用优异的晶体频率稳定性.
td> tr> <tr> <td>tyle="font-size:16px">S偏振光
td> <td>tyle="font-size:16px">线性偏振光,其入射在样品表面上的光的电矢量的振动方向垂直于入射表面.
td> tr> <tr> <td>tyle="font-size:16px">TCXO
td> <td>
tyle="font-size:16px">(温度补偿晶体振荡器)tyle="font-size:16px">高精度晶体振荡器,内置电路,用于校正因晶体单元温度引起的频率变化.
td> tr> <tr> <td>tyle="font-size:16px">TCXO模块
td> <td>tyle="font-size:16px">TCXO晶振具有多个输出,带有内置温度传感器的复合设备等.
td> tr> <tr> <td>tyle="font-size:16px">TCXO输出
td> <td>tyle="font-size:16px">在TCXO模块中,显示TCXO输出信号.
td> tr> <tr> <td>tyle="font-size:16px">TTL
td> <td>tyle="font-size:16px">逻辑集成电路(逻辑IC),仅由双极晶体管组成.
td> tr> <tr> <td>tyle="font-size:16px">VC-TCXO
td> <td>tyle="font-size:16px">温度补偿晶体振荡器(title="TCXO晶振" target="_blank">TCXO晶振),可通过外部电压调节振荡频率.
td> tr> <tr> <td>tyle="font-size:16px">VCXO
td> <td>
tyle="font-size:16px">(压控晶体振荡器)tyle="font-size:16px">一种晶体振荡器,能够通过将可变二极管插入SPXO的振荡环路来改变外部电压的振荡频率.频率温度特性相当于SPXO,可以得到晶体谐振器所具有的良好特性.
td> tr> tbody> table>- 阅读(113)
- [行业新闻]适用于定义固定频率VCXO压控晶振的特性2018年12月19日 10:03
tyle=" line-height: 15px; text-indent: 2em;"> tyle="font-family:微软雅黑, sans-serif;font-size:16px">tyle="line-height:1.5">晶振是智能电子数码产品应用最多的一种频率元件tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">晶振可以分有源晶振和无源title="晶振" target="_blank">晶振tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">亿金电子接下来要给大家所介绍到的是有源晶振tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">有源晶振根据不同产品性能需求归为tyle="font-size:16px;line-height:1.5">TCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">温度补偿晶振tyle="font-size:16px;line-height:1.5">,VCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">电压控制晶振tyle="font-size:16px;line-height:1.5">,OCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">恒温控制晶振tyle="font-size:16px;line-height:1.5">,SPXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">时钟晶体振荡器tyle="font-size:16px;line-height:1.5">,VC-TCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">压控温补晶振tyle="font-size:16px;line-height:1.5">,LVDStyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">输出差分晶振等tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">下面单独讲下适用于定义固定频率压控晶振的特性
tyle=" text-align: center; line-height: 15px;"> tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">title="适用于定义固定频率VCXO压控晶振的特性" alt="适用于定义固定频率VCXO压控晶振的特性" width="650" height="258" />
tyle=" line-height: 15px; text-indent: 2em;"> tyle="font-size:16px;line-height:1.5">VCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">晶振(压控晶体振荡器)是一种晶体振荡器tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">它包括变容二极管和相关电路tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">允许通过在该二极管上施加电压来改变频率tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">这可以通过简单的时钟或正弦波晶体振荡器tyle="font-size:16px;line-height:1.5">,TCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">(产生tyle="font-size:16px;line-height:1.5">TC/VCXO-tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">温度补偿电压控制晶体振荡器)或烤箱控制类型(产生tyle="font-size:16px;line-height:1.5">OC/VCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">恒温箱控制的电压晶体振荡器)来实现tyle="font-size:16px;line-height:1.5">.
tyle=" line-height: 15px; text-indent: 2em;"> tyle="font-size:16px;line-height:1.5">VCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">晶振有几个特点tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">在生成tyle="font-size:16px;line-height:1.5">VCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">title="压控晶体振荡器" target="_blank">压控晶体振荡器规范时tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">这些适用于定义固定频率晶体振荡器的特性tyle="font-size:16px;line-height:1.5">.VCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">特有的规范中的主要内容如下:
tyle=" line-height: 15px; text-indent: 2em;"> tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">tyle="line-height:1.5">偏差tyle="line-height:1.5">-tyle="line-height:1.5">这是控制电压变化引起的频率变化量tyle="line-height:1.5">.tyle="line-height:1.5">例如tyle="line-height:1.5">.5tyle="line-height:1.5">伏控制电压可能导致tyle="line-height:1.5">100ppmtyle="line-height:1.5">的偏差tyle="line-height:1.5">,tyle="line-height:1.5">或tyle="line-height:1.5">0tyle="line-height:1.5">至tyle="line-height:1.5">+5tyle="line-height:1.5">伏控制电压可能导致tyle="line-height:1.5">150ppmtyle="line-height:1.5">的总偏差tyle="line-height:1.5">.
tyle=" line-height: 15px; text-indent: 2em;"> tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">控制电压tyle="font-size:16px;line-height:1.5">-tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">这是施加到tyle="font-size:16px;line-height:1.5">VCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">输入端子的变化电压tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">导致频率变化tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">它有时被称为调制电压tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">特别是如果输入是tyle="font-size:16px;line-height:1.5">ACtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">信号tyle="font-size:16px;line-height:1.5">.
tyle=" line-height: 15px; text-indent: 2em;"> tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">传递函数(有时称为斜率极性)tyle="font-size:16px;line-height:1.5">-tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">表示频率变化的方向与控制电压的关系tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">正传递函数表示增加的正控制电压的频率增加tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">如图tyle="font-size:16px;line-height:1.5">1Atyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">所示tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">相反tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">如果频率随着更正(或更负)控制电压而减小tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">如图tyle="font-size:16px;line-height:1.5">1Btyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">所示tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">传递函数是负tyle="font-size:16px;line-height:1.5">.
tyle=" text-align: center; line-height: 15px;"> title="适用于定义固定频率VCXO压控晶振的特性" alt="适用于定义固定频率VCXO压控晶振的特性" width="562" height="348" />
tyle=" text-align: center; line-height: 15px;"> title="适用于定义固定频率VCXO压控晶振的特性" alt="适用于定义固定频率VCXO压控晶振的特性" width="550" height="317" />
tyle=" line-height: 15px; text-indent: 2em;"> tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">线性度tyle="font-size:16px;line-height:1.5">-tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">普遍接受的线性定义是tyle="font-size:16px;line-height:1.5">MIL-PRF-55310tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">中规定的tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">它是title="VCXO晶振" target="_blank">VCXO晶振频率误差和总偏差之间的比率tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">以百分比表示tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">其中晶振频率误差是从通过输出频率与控制电压的曲线绘制的最佳直线的最大频率偏移tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">如果压电晶体振荡器的规格要求线性度为±tyle="font-size:16px;line-height:1.5">5tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">%且实际偏差总共为tyle="font-size:16px;line-height:1.5">20kHz,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">如图tyle="font-size:16px;line-height:1.5">2tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">所示tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">则输出频率与控制电压输入的曲线可能会相差±tyle="font-size:16px;line-height:1.5">1kHztyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">(tyle="font-size:16px;line-height:1.5">20kHztyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">±tyle="font-size:16px;line-height:1.5">5tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">%)tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">最佳直线“tyle="font-size:16px;line-height:1.5">Atyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">”tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">这些限制用“tyle="font-size:16px;line-height:1.5">Btyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">”和“tyle="font-size:16px;line-height:1.5">Ctyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">”行表示tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">“tyle="font-size:16px;line-height:1.5">Dtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">”代表tyle="font-size:16px;line-height:1.5">VCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">的典型曲线tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">其线性度在±tyle="font-size:16px;line-height:1.5">5tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">%以内tyle="font-size:16px;line-height:1.5">.
tyle=" text-align: center; line-height: 15px;"> target="_blank">title="适用于定义固定频率VCXO压控晶振的特性" alt="适用于定义固定频率VCXO压控晶振的特性" width="487" height="355" />
tyle=" line-height: 15px; text-indent: 2em;"> tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">在图tyle="font-size:16px;line-height:1.5">3tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">中tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">最佳直线“tyle="font-size:16px;line-height:1.5">Atyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">”的最大偏差为tyle="font-size:16px;line-height:1.5">-14ppm,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">总偏差为tyle="font-size:16px;line-height:1.5">100ppm,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">因此线性度为±tyle="font-size:16px;line-height:1.5">14ppm/100ppm=tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">±tyle="font-size:16px;line-height:1.5">14tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">%tyle="font-size:16px;line-height:1.5">.
tyle=" text-align: center; line-height: 15px;"> title="适用于定义固定频率VCXO压控晶振的特性" alt="适用于定义固定频率VCXO压控晶振的特性" width="475" height="361" />
tyle=" line-height: 15px; text-indent: 2em;"> tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">产生图tyle="font-size:16px;line-height:1.5">2tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">所示特性的tyle="font-size:16px;line-height:1.5">VCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">晶振使用超突变结变容二极管tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">偏置以适应双极性(±)控制电压tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">产生图tyle="font-size:16px;line-height:1.5">3tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">特性的tyle="font-size:16px;line-height:1.5">VCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">使用具有施加的单极控制电压的突变结变容二极管(在这种情况下为正)tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">良好的tyle="font-size:16px;line-height:1.5">VCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">title="压控晶振" target="_blank">压控晶振设计要求电压与频率曲线平滑(无间断)和单声道tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">所有维管晶振的tyle="font-size:16px;line-height:1.5">VCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">系列都具有这些特性tyle="font-size:16px;line-height:1.5">.
tyle=" line-height: 15px; text-indent: 2em;"> tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">调制速率(有时称为偏差率或频率响应)tyle="font-size:16px;line-height:1.5">-tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">这是控制电压可以改变的速率tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">从而导致相应的频率变化tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">通过施加峰值等于指定控制电压的正弦波信号tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">解调tyle="font-size:16px;line-height:1.5">VCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">压控晶振的输出信号tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">并以不同调制速率比较解调信号的输出电平来测量tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">调制速率由tyle="font-size:16px;line-height:1.5">Vectrontyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">晶振定义为最大调制频率tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">它产生的解调信号在tyle="font-size:16px;line-height:1.5">100dBtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">调制信号的tyle="font-size:16px;line-height:1.5">3dBtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">范围内tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">虽然非晶体控制的tyle="font-size:16px;line-height:1.5">VCOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">可以以非常高的速率进行调制(输出频率大于tyle="font-size:16px;line-height:1.5">10MHztyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">时大于tyle="font-size:16px;line-height:1.5">1MHztyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">)tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">但tyle="font-size:16px;line-height:1.5">VCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">晶振的调制速率受到晶体物理特性的限制tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">虽然tyle="font-size:16px;line-height:1.5">VCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">晶振的调制输入网络可以扩展到在tyle="font-size:16px;line-height:1.5">100kHztyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">以上产生tyle="font-size:16px;line-height:1.5">3dBtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">响应tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">但由于晶振tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">解调信号在调制频率大于tyle="font-size:16px;line-height:1.5">20kHztyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">时可能会出现tyle="font-size:16px;line-height:1.5">5-15dBtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">的幅度变化tyle="font-size:16px;line-height:1.5">.
tyle=" line-height: 15px; text-indent: 2em;"> tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">斜率tyle="font-size:16px;line-height:1.5">/tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">斜率线性tyle="font-size:16px;line-height:1.5">/tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">增量灵敏度tyle="font-size:16px;line-height:1.5">-tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">这可能是一个令人困惑的区域tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">因为这些术语经常被误用tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">如果要将斜率除以总控制电压摆幅tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">则斜率应该被称为平均斜率tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">对于图tyle="font-size:16px;line-height:1.5">2tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">中所示的tyle="font-size:16px;line-height:1.5">VCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">压控晶振tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">平均斜率为tyle="font-size:16px;line-height:1.5">-20kHz/10tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">伏tyle="font-size:16px;line-height:1.5">=-2kHz/tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">伏tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">增量灵敏度tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">通常误称斜率线性度意味着频率与控制电压的增量变化tyle="font-size:16px;line-height:1.5">.
tyle=" line-height: 15px; text-indent: 2em;"> tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">因此tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">虽然该示例中的平均斜率是每伏特tyle="font-size:16px;line-height:1.5">-2kHz,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">但是曲线的任何段的斜率可以与tyle="font-size:16px;line-height:1.5">-2kHz/tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">伏相当大tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">事实上tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">对于最佳直线线性度为±tyle="font-size:16px;line-height:1.5">1tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">%至±tyle="font-size:16px;line-height:1.5">5tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">%的tyle="font-size:16px;line-height:1.5">VCXO,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">增量灵敏度约为(非常近似)最佳直线线性度的tyle="font-size:16px;line-height:1.5">10tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">倍tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">因此tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">具有±tyle="font-size:16px;line-height:1.5">5tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">%最佳直线线性度的tyle="font-size:16px;line-height:1.5">VCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">压控晶振可以在每伏特的基础上表现出±tyle="font-size:16px;line-height:1.5">50tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">%的斜率变化tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">因此tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">读取“斜率:tyle="font-size:16px;line-height:1.5">2kHz/tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">伏特±tyle="font-size:16px;line-height:1.5">10tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">%”的规范需要澄清tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">因为它可能意味着平均斜率或增量灵敏度tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">如果它旨在定义平均斜率tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">它只是指定tyle="font-size:16px;line-height:1.5">18kHztyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">到tyle="font-size:16px;line-height:1.5">22kHztyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">的总偏差tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">并且更恰当地说明了“总偏差:tyle="font-size:16px;line-height:1.5">20kHz-10tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">%tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">”但是tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">如果意图频率改变为每个增量电压必须介于tyle="font-size:16px;line-height:1.5">1.8kHztyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">和tyle="font-size:16px;line-height:1.5">2.2kHztyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">之间tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">高线性tyle="font-size:16px;line-height:1.5">VCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">压控晶体振荡器被指定为±tyle="font-size:16px;line-height:1.5">10tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">%增量灵敏度与±tyle="font-size:16px;line-height:1.5">1tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">%最佳直线线性相关tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">该规范的元素应为“增量灵敏度:每伏tyle="font-size:16px;line-height:1.5">2kHztyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">±tyle="font-size:16px;line-height:1.5">10tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">%”tyle="font-size:16px;line-height:1.5">.
tyle=" text-align: center;"> target="_blank">title="适用于定义固定频率VCXO压控晶振的特性" alt="适用于定义固定频率VCXO压控晶振的特性" width="460" height="311" />
tyle=" line-height: 15px; text-indent: 2em;"> tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">其他设计考虑因素
tyle=" line-height: 15px; text-indent: 2em;"> tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">稳定性tyle="font-size:16px;line-height:1.5">-tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">石英晶振晶体是一种高tyle="font-size:16px;line-height:1.5">Qtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">器件tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">是晶体振荡器的稳定性决定元素tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">它固有地抵抗被“拉”(偏离)其设计频率tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">为了产生具有显著偏差的tyle="font-size:16px;line-height:1.5">VCXO,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">振荡器电路必须“去tyle="font-size:16px;line-height:1.5">Qtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">”tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">这导致晶体在其频率与温度特性tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">老化特性及其短期稳定性(和相关的相位噪声)特性方面的固有稳定性降低tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">因此tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">最好不要指定比绝对要求更宽的偏差tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">这符合用户的最佳利益tyle="font-size:16px;line-height:1.5">.
tyle=" line-height: 15px; text-indent: 2em;"> tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">锁相tyle="font-size:16px;line-height:1.5">-tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">当tyle="font-size:16px;line-height:1.5">VCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">晶振用于锁相环应用时tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">偏差应始终至少与tyle="font-size:16px;line-height:1.5">VCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">本身及其锁定的参考或信号的组合不稳定性一样大tyle="font-size:16px;line-height:1.5">.Vectrontyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">维管晶振集团生产一系列tyle="font-size:16px;line-height:1.5">VCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">晶振tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">特别适用于锁相环应用(在随后的页面中有描述)tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">但是tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">如果系统的开环稳定性要求比该产品系列中的更严格tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">则可能需要tyle="font-size:16px;line-height:1.5">TC/VCXO.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">对于最高稳定性开环要求tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">适当的振荡器可以是此tyle="font-size:16px;line-height:1.5">cata-logtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">的tyle="font-size:16px;line-height:1.5">TCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">title="温补晶振" target="_blank">温补晶振或tyle="font-size:16px;line-height:1.5">OCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">恒温晶振部分中描述的那些tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">包含窄偏差tyle="font-size:16px;line-height:1.5">VCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">选项tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">而不是tyle="font-size:16px;line-height:1.5">VCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">压控晶体振荡器部分中描述的那些tyle="font-size:16px;line-height:1.5">.
tyle=" line-height: 15px; text-indent: 2em;"> tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">基本振荡器频率tyle="font-size:16px;line-height:1.5">-tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">基本模式晶体(通常为tyle="font-size:16px;line-height:1.5">10-25MHztyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">)允许最大的偏差tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">而第三泛音晶体(通常为tyle="font-size:16px;line-height:1.5">20-70MHztyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">)允许偏差约为适用于基波的tyle="font-size:16px;line-height:1.5">1/9.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">因此tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">所有宽偏差tyle="font-size:16px;line-height:1.5">VCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">晶振(偏差大于±tyle="font-size:16px;line-height:1.5">100tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">到±tyle="font-size:16px;line-height:1.5">200ppmtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">)都使用基本晶体tyle="font-size:16px;line-height:1.5">;tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">较窄的偏差tyle="font-size:16px;line-height:1.5">VCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">可以使用基模或第三泛音晶体tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">其选择通常取决于线性度和稳定性等规格tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">很少有更高的泛音tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">因此更高频率的晶体可用于tyle="font-size:16px;line-height:1.5">VCXO.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">因此tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">输出频率高于或低于适当晶振频率的tyle="font-size:16px;line-height:1.5">VCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">包括倍频器或分频器tyle="font-size:16px;line-height:1.5">.
tyle=" line-height: 15px; text-indent: 2em;"> tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">一般注意事项tyle="font-size:16px;line-height:1.5">-tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">虽然任何类型的石英晶体振荡器都是如此tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">但对于tyle="font-size:16px;line-height:1.5">VCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">压控晶体振荡器而言tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">用户不要过度指定产品tyle="font-size:16px;line-height:1.5">.VCXOtyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">压控晶振的特殊问题在于增加的偏差导致稳定性降低tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">这可能导致需要更宽的偏差tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">进一步降低稳定性tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">导致所需偏差的螺旋式增加tyle="font-size:16px;line-height:1.5">.
tyle=" line-height: 15px; text-indent: 2em;"> tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">亿金电子专业提供石英晶振tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">title="贴片晶振" target="_blank">贴片晶振tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">有源晶振tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">晶体滤波器等频率元件tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">拥有完善的服务体积tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">优秀的销售精英团队tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">为用户打造舒适的采购服务体验tyle="font-size:16px;line-height:1.5">.tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">亿金电子提供石英晶体振荡器tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">各种封装规格tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">包括台湾tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">日本tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">美国tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">英国等知名晶振品牌tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">常用频点均有备货tyle="font-size:16px;line-height:1.5">,tyle="font-family:微软雅黑, sans-serif;font-size:16px;line-height:1.5">欢迎广大用户咨询选购tyle="font-size:16px">tyle="line-height:1.5">0755-27876565.
- 阅读(215)
- [客户案例]亿金工程为条码机工厂解决【晶振工作不稳定情况】2018年12月15日 13:38
- tyle="font-size:16px;">客户做条码机的title="晶振" target="_blank">tyle="font-size: 16px; color: rgb(255, 0, 0);">晶振tyle="font-size:16px;">旁边的C4两个电容用22PF的,那么晶振就不能用20PF的了,IC要求晶振负载最大不能超过25PF,就算是用25PF的,晶振也不能用20PF的负载电容.于是给客户重新匹配tyle="font-size: 16px;">49tyle="color:#FF0000;">title="贴片晶振" target="_blank">tyle="color:#FF0000;">贴片晶振tyle="font-size:16px;">负载电容.根据亿金电子技术工程初步分析外围电容所造成晶振不良,如果外围电容不变的情况下,晶振本身的负载建议使用12PF的,当然这只是理论匹配,实际还需要考虑IC允不允许使用12PF的.
- 阅读(221)
- [亿金快讯]日本大真空32.768K晶振常用型号编码2018年12月14日 11:49
tyle="font-size:16px"> 日本大真空KDS晶振成立发展至今拥有高人气,为国际一线品牌,却仍不忘研发创新,为更多用户提供更多有价值的晶振产品.每年所生产title="KDS晶振" target="_blank">KDS晶振月产量超6000万颗,每一颗晶振均经过30多道工序,按照国际操作标准进行,并且获得ISO9001质量管理体系认证,具有高可靠使用特性,获得广大用户所认可.
tyle="font-size:16px"> 大真空32.768K晶振型号
<table border="1" bordercolor="#000000" style="width: 886px;"> <tbody> <tr> <th rowspan="2"> 型号名称 th> <th colspan="3"> 尺寸(mm) th> <th colspan="2"> 频率范围(kHz) th> <th rowspan="2"> 频率容差偏差(×10-6)@+25°C th> <th rowspan="2"> 串联电阻(最大kΩ) th> <th colspan="2"> 工作温度范围(°C) th> <th rowspan="2"> 负载电容(pF) th> <th rowspan="2"> 激励等级(μW) th> <th rowspan="2">
th> tr> <tr> <th> 大号 th> <th> w ^ th> <th> H(最大) th> <th> 分钟 th> <th> 最大 th> <th> 分钟 th> <th> 最大 th> tr> tbody> <tbody> <tr> <td> DST1210A td> <td> 1.2 td> <td> 1.0 td> <td> 0.35 td> <td> 32.768 td> <td> 32.768 td> <td> ±20 td> <td> 80 td> <td> -40 td> <td> + 85 td> <td> 7,9,12.5 td> <td> 0.1 td> <td>
td> tr> <tr> <td> DST1610A td> <td> 1.6 td> <td> 1.0 td> <td> 0.5 td> <td> 32.768 td> <td> 32.768 td> <td> ±20 td> <td> 80 td> <td> -40 td> <td> + 85 td> <td> 7,9,12.5 td> <td> 0.1 td> <td>
td> tr> <tr> <td> DST1610AL td> <td> 1.6 td> <td> 1.0 td> <td> 0.35 td> <td> 32.768 td> <td> 32.768 td> <td> ±20 td> <td> 80 td> <td> -40 td> <td> + 85 td> <td> 7,9,12.5 td> <td> 0.1 td> <td>
td> tr> <tr> <td> DST210AC td> <td> 2.0 td> <td> 1.2 td> <td> 0.55 td> <td> 32.768 td> <td> 32.768 td> <td> ±20 td> <td> 80 td> <td> -40 td> <td> + 85 td> <td> 7,9,12.5 td> <td> 0.1 td> <td>
td> tr> <tr> <td> DST310S td> <td> 3.2 td> <td> 1.5 td> <td> 0.85 td> <td> 32.768 td> <td> 32.768 td> <td> ±20 td> <td> 50/80 td> <td> -40 td> <td> + 85 td> <td> 7,9,12.5 td> <td> 0.2 td> <td> td> tr> <tr> <td> DST311S td> <td> 3.2 td> <td> 1.5 td> <td> 0.85 td> <td> 32.768 td> <td> 32.768 td> <td> ±20 td> <td> 50/80 td> <td> -40 td> <td> + 85 td> <td> 7,9,12.5 td> <td> 0.2 td> <td> td> tr> <tr> <td> DMX-26S td> <td> 8 td> <td> 3.8 td> <td> 2.5 td> <td> 三十 td> <td> 90 td> <td> ±20 td> <td> 50 td> <td> -40 td> <td> + 85 td> <td> 7,9,12.5 td> <td> 1.0 td> <td> td> tr> <tr> <td> DT-26 td> <td> φ2.0 td> <td> φ2.0 td> <td> 6 td> <td> 32.768 td> <td> 32.768 td> <td> ±20(等级A)±30(等级B) td> <td> 40 td> <td> -10 td> <td> +60 td> <td> 12.5 td> <td> 1.0 td> <td> td> tr> <tr> <td> DT-261 td> <td> φ2.0 td> <td> φ2.0 td> <td> 6 td> <td> 28 td> <td> 90 td> <td> ±20(等级A)±30(等级B) td> <td> 40 td> <td> -10 td> <td> +60 td> <td> 12.5 td> <td> 1.0 td> <td> td> tr> <tr> <td> DT-381 td> <td> φ3.0 td> <td> φ3.0 td> <td> 8 td> <td> 20 td> <td> 90 td> <td> ±20(等级A)±30(等级B) td> <td> 30 td> <td> -10 td> <td> +60 td> <td> 12.5 td> <td> 1.0 td> <td>
td> tr> tbody> table>tyle="font-size:16px"> DST310S晶振尺寸为3.2x1.5mm,厚度薄,重量轻,是32.768Ktitle="贴片晶振" target="_blank">贴片晶振应用比较多的一款,具有7PF,9PF,12.5PF等多种负载电容可供选择.不仅耐高温-40℃~85℃,并且满足车规级产品需求可达-40℃~125℃范围.符合AEC-Q200标准,满足高温回流焊接的温度曲线要求.
tyle="font-size:16px"> 大真空title="32.768K" target="_blank">32.768K晶振编码
<table border="1" class="" bordercolor="#000000" style="width: 880px;"> <tbody> <tr> <td>tyle="font-size:16px">晶振编码
td> <td>tyle="font-size:16px">品牌
td> <td>tyle="font-size:16px">晶振型号
td> <td>tyle="font-size:16px">晶振频率
td> <td>tyle="font-size:16px">晶振尺寸
td> tr> <tr> <td>tyle="font-size:16px">1TJS060FJ4A308
td> <td>tyle="font-size:16px">KDS晶振
td> <td>tyle="font-size:16px">DMX-26S晶振
td> <td>tyle="font-size:16px">32.768KHZ
td> <td>tyle="font-size:16px">8.0x3.8mm
td> tr> <tr> <td>tyle="font-size:16px">1TJS060FJ4A901Q
td> <td>tyle="font-size:16px">KDS晶振
td> <td>tyle="font-size:16px">DMX-26S晶振
td> <td>tyle="font-size:16px">32.768KHZ
td> <td>tyle="font-size:16px">8.0x3.8mm
td> tr> <tr> <td>tyle="font-size:16px">1TJS060DJ4A934Q
td> <td>tyle="font-size:16px">KDS晶振
td> <td>tyle="font-size:16px">title="DMX-26S晶振" target="_blank">DMX-26S晶振
td> <td>tyle="font-size:16px">32.768KHZ
td> <td>tyle="font-size:16px">8.0x3.8mm
td> tr> <tr> <td>tyle="font-size:16px">1TJW125BJ4A602P
td> <td>tyle="font-size:16px">KDS晶振
td> <td>tyle="font-size:16px">DMX-26S贴片晶振
td> <td>tyle="font-size:16px">32.768KHZ
td> <td>tyle="font-size:16px">8.0x3.8mm
td> tr> <tr> <td>tyle="font-size:16px">1TJS125DJ4A810Q
td> <td>tyle="font-size:16px">KDS晶振
td> <td>tyle="font-size:16px">DMX-26S贴片晶振
td> <td>tyle="font-size:16px">32.768KHZ
td> <td>tyle="font-size:16px">8.0x3.8mm
td> tr> <tr> <td>tyle="font-size:16px">1TJW125DJ4A810Q
td> <td>tyle="font-size:16px">KDS晶振
td> <td>tyle="font-size:16px">DMX-26S贴片晶振
td> <td>tyle="font-size:16px">32.768KHZ
td> <td>tyle="font-size:16px">8.0x3.8mm
td> tr> <tr> <td>tyle="font-size:16px">1TJH090DR1A0003
td> <td>tyle="font-size:16px">KDStitle="晶振" target="_blank">晶振
td> <td>tyle="font-size:16px">DST1610A晶振
td> <td>tyle="font-size:16px">32.768KHZ
td> <td>tyle="font-size:16px">1.6x1.0mm
td> tr> <tr> <td>tyle="font-size:16px">1TJG090DR1A0013
td> <td>tyle="font-size:16px">KDS晶振
td> <td>tyle="font-size:16px">DST210A晶振
td> <td>tyle="font-size:16px">32.768KHZ
td> <td>tyle="font-size:16px">2.0x1.2mm
td> tr> <tr> <td>tyle="font-size:16px">1TJG125DR1A0004
td> <td>tyle="font-size:16px">KDS晶振
td> <td>tyle="font-size:16px">DST210A晶振
td> <td>tyle="font-size:16px">32.768KHZ
td> <td>tyle="font-size:16px">2.0x1.2mm
td> tr> <tr> <td>tyle="font-size:16px">1TJG080DP1A0001
td> <td>tyle="font-size:16px">KDS晶振
td> <td>tyle="font-size:16px">DST210A晶振
td> <td>tyle="font-size:16px">32.768KHZ
td> <td>tyle="font-size:16px">2.0x1.2mm
td> tr> <tr> <td>tyle="font-size:16px">1TJF090DP1A000A
td> <td>tyle="font-size:16px">KDS晶振
td> <td>tyle="font-size:16px">DST310S贴片晶振
td> <td>tyle="font-size:16px">32.768KHZ
td> <td>tyle="font-size:16px">3.2x1.5mm
td> tr> <tr> <td>tyle="font-size:16px">1TJF090DP1AI067
td> <td>tyle="font-size:16px">KDS晶振
td> <td>tyle="font-size:16px">DST310S贴片晶振
td> <td>tyle="font-size:16px">32.768KHZ
td> <td>tyle="font-size:16px">3.2x1.5mm
td> tr> <tr> <td>tyle="font-size:16px">1TJF125DP1A000A
td> <td>tyle="font-size:16px">KDS晶振
td> <td>tyle="font-size:16px">title="DST310S晶振" target="_blank">DST310S晶振
td> <td>tyle="font-size:16px">32.768KHZ
td> <td>tyle="font-size:16px">3.2x1.5mm
td> tr> <tr> <td>tyle="font-size:16px">1TJF125DP1AI115
td> <td>tyle="font-size:16px">KDS晶振
td> <td>tyle="font-size:16px">DST310S晶振
td> <td>tyle="font-size:16px">32.768KHZ
td> <td>tyle="font-size:16px">3.2x1.5mm
td> tr> <tr> <td>tyle="font-size:16px">1TJF125FP1A000A
td> <td>tyle="font-size:16px">KDS晶振
td> <td>tyle="font-size:16px">DST310S晶振
td> <td>tyle="font-size:16px">32.768KHZ
td> <td>tyle="font-size:16px">3.2x1.5mm
td> tr> <tr> <td>tyle="font-size:16px">1TJE125DP1A000A
td> <td>tyle="font-size:16px">KDS晶振
td> <td>tyle="font-size:16px">DST410S石英晶振
td> <td>tyle="font-size:16px">32.768KHZ
td> <td>tyle="font-size:16px">4.1x1.5mm
td> tr> <tr> <td>tyle="font-size:16px">1TD060DHNS006
td> <td>tyle="font-size:16px">KDS晶振
td> <td>tyle="font-size:16px">DT-26音叉晶体
td> <td>tyle="font-size:16px">32.768KHZ
td> <td>tyle="font-size:16px">2.0x6.0mm
td> tr> <tr> <td>tyle="font-size:16px">1TD060DHNS009
td> <td>tyle="font-size:16px">KDS晶振
td> <td>tyle="font-size:16px">DT-26音叉晶体
td> <td>tyle="font-size:16px">32.768KHZ
td> <td>tyle="font-size:16px">2.0x6.0mm
td> tr> <tr> <td>tyle="font-size:16px">1TD125DHNS004
td> <td>tyle="font-size:16px">KDS晶振
td> <td>tyle="font-size:16px">title="DT-26晶振" target="_blank">DT-26晶振
td> <td>tyle="font-size:16px">32.768KHZ
td> <td>tyle="font-size:16px">2.0x6.0mm
td> tr> <tr> <td>tyle="font-size:16px">1TD090DHNS001
td> <td>tyle="font-size:16px">KDS晶振
td> <td>tyle="font-size:16px">DT-26晶振
td> <td>tyle="font-size:16px">32.768KHZ
td> <td>tyle="font-size:16px">2.0x6.0mm
td> tr> <tr> <td>tyle="font-size:16px">1TD080DJNS001
td> <td>tyle="font-size:16px">KDS晶振
td> <td>tyle="font-size:16px">DT-26插件晶振
td> <td>tyle="font-size:16px">32.768KHZ
td> <td>tyle="font-size:16px">2.0x6.0mm
td> tr> <tr> <td>tyle="font-size:16px">32ETJS125DJ
td> <td>tyle="font-size:16px">KDS晶振
td> <td>tyle="font-size:16px">DT-26T插件晶振
td> <td>tyle="font-size:16px">32.768KHZ
td> <td>tyle="font-size:16px">2.0x6.0mm
td> tr> <tr> <td>tyle="font-size:16px">1TC080DFNS001
td> <td>tyle="font-size:16px">KDS晶振
td> <td>tyle="font-size:16px">DT-38圆柱晶振
td> <td>tyle="font-size:16px">32.768KHZ
td> <td>tyle="font-size:16px">3.0x8.0mm
td> tr> <tr> <td>tyle="font-size:16px">1TC125DFNS019
td> <td>tyle="font-size:16px">KDS晶振
td> <td>tyle="font-size:16px">DT-38圆柱晶振
td> <td>tyle="font-size:16px">32.768KHZ
td> <td>tyle="font-size:16px">3.0x8.0mm
td> tr> <tr> <td>tyle="font-size:16px">1TC125BFNS008
td> <td>tyle="font-size:16px">KDS晶振
td> <td>tyle="font-size:16px">DT-38晶振
td> <td>tyle="font-size:16px">32.768KHZ
td> <td>tyle="font-size:16px">3.0x8.0mm
td> tr> tbody> table>tyle="font-size:16px"> 32.768K晶振如上晶振编码表格所示,具有插件以及贴片晶振封装,为了满足广大用户需求,KDS晶振提供2x6,3x8插件以及2012,3215,4115,8038封装为客户选择.32.768Ktitle="晶振" target="_blank">晶振被广泛用于时钟产品,数码相机,液晶显示屏,笔记本,智能手机,GPS导航,智能锁,仪器仪表,蓝牙等智能产品,具有精度稳定,老化低,耐高温,抗振性强等特点.
- 阅读(180)
- [行业新闻]KDS开发世界上最小的带有温度传感器的DSR1210ATH晶体谐振器2018年12月10日 10:07
tyle="font-size:16px"> KDStyle="font-family:宋体;font-size:16px">晶振是日本国际知名电子元件品牌tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">拥有独特的生产技术tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">发展至今仍不让开拓创新tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">为用户提供更多更有价值的title="晶振" target="_blank">晶振产品tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">这一次日本大真空株式会社开发世界最小的带有温度传感器的tyle="font-size:16px">DSR1210ATHtyle="font-family:宋体;font-size:16px">石英晶体谐振器也就是我们说的热敏晶振tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">并且将于tyle="font-size:16px">2019tyle="font-family:宋体;font-size:16px">年tyle="font-size:16px">1tyle="font-family:宋体;font-size:16px">月份提供样品tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">在tyle="font-size:16px">2019tyle="font-family:宋体;font-size:16px">年tyle="font-size:16px">5tyle="font-family:宋体;font-size:16px">月份批量生产tyle="font-size:16px">.
tyle="font-family:宋体;font-size:16px"> 温度传感器内置石英晶体是用作tyle="font-size:16px">RFtyle="font-family:宋体;font-size:16px">的电子部件tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">用于智能手机的tyle="font-size:16px">GPStyle="font-family:宋体;font-size:16px">时钟源tyle="font-size:16px">,GPS/GNSStyle="font-family:宋体;font-size:16px">等tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">近年来tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">电子器件tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">薄tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">高性能tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">并且在较高的功能的小型化正在取得进展tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">越来越多的应用需要石英晶振tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">title="贴片晶振" target="_blank">贴片晶振tyle="font-size:16px">.KDStyle="font-family:宋体;font-size:16px">晶振集团已促进了大规模生产内置tyle="font-size:16px">2016tyle="font-family:宋体;font-size:16px">尺寸和tyle="font-size:16px">1612tyle="font-family:宋体;font-size:16px">尺寸的石英晶体的温度传感器tyle="font-size:16px">.1210mmtyle="font-family:宋体;font-size:16px">晶振大小是tyle="font-size:16px">KDStyle="font-family:宋体;font-size:16px">研发的世界上最小尺寸的一种内置温度传感器的石英贴片晶振tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">应用于tyle="font-size:16px">5Gtyle="font-family:宋体;font-size:16px">(第五代移动通信系统)的tyle="font-size:16px">IoTtyle="font-family:宋体;font-size:16px">(互联网的单声道)tyle="font-size:16px">.
tyle="font-size:16px"> DSR1210ATHtyle="font-family:宋体">石英晶体谐振器实物图
tyle=" text-align: center;"> target="_blank">title="KDS开发世界上最小的带有温度传感器的DSR1210ATH晶体谐振器" alt="KDS开发世界上最小的带有温度传感器的DSR1210ATH晶体谐振器" width="375" height="232" />
tyle="font-family:宋体;font-size:16px"> 通常带有温度传感器的石英晶体谐振器tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">温度补偿是基于晶体振荡器并入在芯片组侧的温度传感器tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">不仅具有晶振本身的特点并且具有更多功能特性tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">例如tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">有诸如温度系数和tyle="font-size:16px">ATtyle="font-family:宋体;font-size:16px">切割石英晶体谐振器的拐点温度tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">但是这些将改变晶体片tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">形状等的尺寸tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">由于随着尺寸变小tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">特性变得更可能变化tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">因此需要晶体坯料的加工精度tyle="font-size:16px">.
tyle="font-size:16px"> DSR1210ATHtyle="font-family:宋体;font-size:16px">石英晶体谐振器使用了光刻法的晶体片处理时tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">并在同一时间减少处理变形tyle="font-size:16px">,KDStyle="font-family:宋体;font-size:16px">晶振开发了一种以晶振片较不敏感的变化影响tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">实现了比传统title="石英晶振" target="_blank">石英晶振tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">贴片晶振相比性能更高tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">小尺寸的特点能够实习更低电平消耗tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">有助于振荡电路通过使操作在tyle="font-size:16px">300tyle="font-family:宋体;font-size:16px">微瓦最大tyle="font-size:16px">.
tyle="font-size:16px"> KDStyle="font-family:宋体;font-size:16px">晶振通过用于光刻加工的晶体晶片平行大规模制造tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">大幅增加未来预期的物联网市场数量并提高成本竞争力tyle="font-size:16px">.tyle="font-family:宋体;font-size:16px">采用小型化温度传感器(tyle="font-size:16px">NTCtyle="font-family:宋体;font-size:16px">热敏电阻)tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">实现小体积多元化tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">确保带有温度传感器的晶体title="谐振器" target="_blank">谐振器性能高于现有的tyle="font-size:16px">2016tyle="font-family:宋体;font-size:16px">和tyle="font-size:16px">1612tyle="font-family:宋体;font-size:16px">晶振的可靠性使用tyle="font-size:16px">.
tyle="font-size:16px"> DSR1210ATHtyle="font-family:宋体;font-size:16px">石英晶体谐振器尺寸图
tyle=" text-align: center;"> title="KDS开发世界上最小的带有温度传感器的DSR1210ATH晶体谐振器" alt="KDS开发世界上最小的带有温度传感器的DSR1210ATH晶体谐振器" width="550" height="540" />
tyle="font-size:16px"> DSR1210ATHtyle="font-family:宋体">title="石英晶体谐振器" target="_blank">石英晶体谐振器tyle="font-family:宋体;font-size:16px">特点
tyle="font-family:宋体;font-size:16px"> 超紧凑tyle="font-size:16px">SMDtyle="font-family:宋体;font-size:16px">温度传感器内置晶体振荡器尺寸:最大tyle="font-size:16px">1.2tyle="font-family:宋体;font-size:16px">×tyle="font-size:16px">1.0tyle="font-family:宋体;font-size:16px">×tyle="font-size:16px">0.55mm.
tyle="font-family:宋体;font-size:16px"> 内置tyle="font-size:16px">NTCtyle="font-family:宋体;font-size:16px">热敏电阻作为温度传感器
tyle="font-family:宋体;font-size:16px"> 采用陶瓷封装和金属盖tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">实现高精度tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">高可靠性
tyle="font-family:宋体;font-size:16px"> 无铅tyle="font-size:16px">/tyle="font-family:宋体;font-size:16px">符合tyle="font-size:16px">RoHStyle="font-family:宋体;font-size:16px">标准
tyle="font-family:宋体;font-size:16px"> 支持驱动电平:最大tyle="font-size:16px">300tyle="font-family:宋体;font-size:16px">μtyle="font-size:16px">W.
tyle="font-size:16px"> [tyle="font-family:宋体;font-size:16px">主要应用tyle="font-size:16px">]tyle="font-family:宋体;font-size:16px">物联网相关设备tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">如智能手机和可穿戴设备
tyle="font-size:16px"> [tyle="font-family:宋体;font-size:16px">生产状况tyle="font-size:16px">]tyle="font-family:宋体;font-size:16px">样品响应时间:tyle="font-size:16px">2019tyle="font-family:宋体;font-size:16px">年tyle="font-size:16px">1tyle="font-family:宋体;font-size:16px">月tyle="font-size:16px">-.tyle="font-family:宋体;font-size:16px">批量生产响应期:tyle="font-size:16px">2019tyle="font-family:宋体;font-size:16px">年tyle="font-size:16px">5tyle="font-family:宋体;font-size:16px">月tyle="font-size:16px">-
tyle="font-size:16px"> DSR1210ATHtyle="font-family:宋体;font-size:16px">石英晶体谐振器电气特性
<table border="1" cellspacing="0" cellpadding="0" width="100%" style="width: 728px; border: none;"> <tbody> <tr> <td style="padding: 10px 15px; border: 1px solid windowtext;">tyle="text-align: center; line-height: 23px;"> tyle="font-size:13px;font-family:宋体;border:1px none windowtext;padding:0px">tyle="font-size:16px">物品tyle="font-size:16px">\tyle="font-size:16px">型号
td> <td style="padding: 10px 15px; border-top: 1px solid windowtext; border-right: 1px solid windowtext; border-bottom: 1px solid windowtext; border-image: initial; border-left: none;">tyle="text-align: center; line-height: 23px;"> tyle="font-size:16px;font-family:宋体;border:1px none windowtext;padding:0px">DSR1210ATHtitle="石英晶体谐振器" target="_blank">石英晶体谐振器
td> tr> <tr> <td style="padding: 10px 15px; border-right: 1px solid windowtext; border-bottom: 1px solid windowtext; border-left: 1px solid windowtext; border-image: initial; border-top: none;">tyle="text-align: center; line-height: 23px;"> tyle="font-size:16px;font-family:宋体;border:1px none windowtext;padding:0px">标称频率
td> <td style="padding: 10px 15px; border-top: none; border-left: none; border-bottom: 1px solid windowtext; border-right: 1px solid windowtext;">tyle="text-align: center; line-height: 23px;"> tyle="font-size:16px;font-family:宋体;border:1px none windowtext;padding:0px">76.8MHz
td> tr> <tr> <td style="padding: 10px 15px; border-right: 1px solid windowtext; border-bottom: 1px solid windowtext; border-left: 1px solid windowtext; border-image: initial; border-top: none;">tyle="text-align: center; line-height: 23px;"> tyle="font-size:16px;font-family:宋体;border:1px none windowtext;padding:0px">泛音顺序
td> <td style="padding: 10px 15px; border-top: none; border-left: none; border-bottom: 1px solid windowtext; border-right: 1px solid windowtext;">tyle="text-align: center; line-height: 23px;"> tyle="font-size:16px;font-family:宋体;border:1px none windowtext;padding:0px">Fundamental
td> tr> <tr> <td style="padding: 10px 15px; border-right: 1px solid windowtext; border-bottom: 1px solid windowtext; border-left: 1px solid windowtext; border-image: initial; border-top: none;">tyle="text-align: center; line-height: 23px;"> tyle="font-size:16px;font-family:宋体;border:1px none windowtext;padding:0px">负载能力
td> <td style="padding: 10px 15px; border-top: none; border-left: none; border-bottom: 1px solid windowtext; border-right: 1px solid windowtext;">tyle="text-align: center; line-height: 23px;"> tyle="font-size:16px;font-family:宋体;border:1px none windowtext;padding:0px">6pFtyle="font-size:13px;font-family:宋体;border:1px none windowtext;padding:0px">tyle="font-size:16px">,tyle="font-size:16px">7pFtyle="font-size:16px">,tyle="font-size:16px">8pF
td> tr> <tr> <td style="padding: 10px 15px; border-right: 1px solid windowtext; border-bottom: 1px solid windowtext; border-left: 1px solid windowtext; border-image: initial; border-top: none;">tyle="text-align: center; line-height: 23px;"> tyle="font-size:16px;font-family:宋体;border:1px none windowtext;padding:0px">激励程度
td> <td style="padding: 10px 15px; border-top: none; border-left: none; border-bottom: 1px solid windowtext; border-right: 1px solid windowtext;">tyle="text-align: center; line-height: 23px;"> tyle="font-size:13px;font-family:宋体;border:1px none windowtext;padding:0px">tyle="font-size:16px">最大tyle="font-size:16px">300μW
td> tr> <tr> <td style="padding: 10px 15px; border-right: 1px solid windowtext; border-bottom: 1px solid windowtext; border-left: 1px solid windowtext; border-image: initial; border-top: none;">tyle="text-align: center; line-height: 23px;"> tyle="font-size:16px;font-family:宋体;border:1px none windowtext;padding:0px">频率容差偏差
td> <td style="padding: 10px 15px; border-top: none; border-left: none; border-bottom: 1px solid windowtext; border-right: 1px solid windowtext;">tyle="text-align: center; line-height: 23px;"> tyle="font-size:13px;font-family:宋体;border:1px none windowtext;padding:0px">tyle="font-size:16px">±10×10tyle="vertical-align:baseline">tyle="font-size:16px">-6tyle="font-size:13px;font-family:宋体;border:1px none windowtext;padding:0px">tyle="font-size:16px">(tyle="font-size:16px">25℃tyle="font-size:16px">时)
td> tr> <tr> <td style="padding: 10px 15px; border-right: 1px solid windowtext; border-bottom: 1px solid windowtext; border-left: 1px solid windowtext; border-image: initial; border-top: none;">tyle="text-align: center; line-height: 23px;"> tyle="font-size:16px;font-family:宋体;border:1px none windowtext;padding:0px">串联电阻
td> <td style="padding: 10px 15px; border-top: none; border-left: none; border-bottom: 1px solid windowtext; border-right: 1px solid windowtext;">tyle="text-align: center; line-height: 23px;"> tyle="font-size:13px;font-family:宋体;border:1px none windowtext;padding:0px">tyle="font-size:16px">最大tyle="font-size:16px">20Ω/tyle="font-size:16px">最大tyle="font-size:16px">30Ωtyle="font-size:16px">。
td> tr> <tr> <td style="padding: 10px 15px; border-right: 1px solid windowtext; border-bottom: 1px solid windowtext; border-left: 1px solid windowtext; border-image: initial; border-top: none;">tyle="text-align: center; line-height: 23px;"> tyle="font-size:16px;font-family:宋体;border:1px none windowtext;padding:0px">频率温度特性
td> <td style="padding: 10px 15px; border-top: none; border-left: none; border-bottom: 1px solid windowtext; border-right: 1px solid windowtext;">tyle="text-align: center; line-height: 23px;"> tyle="font-size:13px;font-family:宋体;border:1px none windowtext;padding:0px">tyle="font-size:16px">±15×10tyle="vertical-align:baseline">tyle="font-size:16px">-6tyle="font-size:13px;font-family:宋体;border:1px none windowtext;padding:0px">tyle="font-size:16px">(tyle="font-size:16px">-30tyle="font-size:16px">至tyle="font-size:16px">+85℃tyle="font-size:16px">)
td> tr> <tr> <td style="padding: 10px 15px; border-right: 1px solid windowtext; border-bottom: 1px solid windowtext; border-left: 1px solid windowtext; border-image: initial; border-top: none;">tyle="text-align: center; line-height: 23px;"> tyle="font-size:16px;font-family:宋体;border:1px none windowtext;padding:0px">储存温度范围
td> <td style="padding: 10px 15px; border-top: none; border-left: none; border-bottom: 1px solid windowtext; border-right: 1px solid windowtext;">tyle="text-align: center; line-height: 23px;"> tyle="font-size:16px;font-family:宋体;border:1px none windowtext;padding:0px">-30tyle="font-size:13px;font-family:宋体;border:1px none windowtext;padding:0px">tyle="font-size:16px">至tyle="font-size:16px">+125℃
td> tr> <tr> <td style="padding: 10px 15px; border-right: 1px solid windowtext; border-bottom: 1px solid windowtext; border-left: 1px solid windowtext; border-image: initial; border-top: none;">tyle="text-align: center; line-height: 23px;"> tyle="font-size:16px;font-family:宋体;border:1px none windowtext;padding:0px">热敏电阻的电阻值
td> <td style="padding: 10px 15px; border-top: none; border-left: none; border-bottom: 1px solid windowtext; border-right: 1px solid windowtext;">tyle="text-align: center; line-height: 23px;"> tyle="font-size:16px;font-family:宋体;border:1px none windowtext;padding:0px">22kΩ/100kΩtyle="font-size:13px;font-family:宋体;border:1px none windowtext;padding:0px">tyle="font-size:16px">(tyle="font-size:16px">+25℃tyle="font-size:16px">时)
td> tr> <tr> <td style="padding: 10px 15px; border-right: 1px solid windowtext; border-bottom: 1px solid windowtext; border-left: 1px solid windowtext; border-image: initial; border-top: none;">tyle="text-align: center; line-height: 23px;"> tyle="font-size:13px;font-family:宋体;border:1px none windowtext;padding:0px">tyle="font-size:16px">热敏电阻tyle="font-size:16px">Btyle="font-size:16px">常数
td> <td style="padding: 10px 15px; border-top: none; border-left: none; border-bottom: 1px solid windowtext; border-right: 1px solid windowtext;">tyle="text-align: center; line-height: 23px;"> tyle="font-size:16px;font-family:宋体;border:1px none windowtext;padding:0px">3380K/4250Ktyle="font-size:13px;font-family:宋体;border:1px none windowtext;padding:0px">tyle="font-size:16px">(tyle="font-size:16px">+25tyle="font-size:16px">至tyle="font-size:16px">+50℃tyle="font-size:16px">)
td> tr> tbody> table>tyle="font-family:宋体;font-size:16px"> 如需其他规格或特殊规格tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">请联系亿金电子销售部tyle="font-size:16px">0755-27876565.
tyle="font-size:16px"> [tyle="font-family:宋体;font-size:16px">晶振术语解释tyle="font-size:16px">]
tyle="font-family:宋体;font-size:16px"> 温度系数:切割方向tyle="font-size:16px">,tyle="font-family:宋体;font-size:16px">其中频率相对于温度变化的变化量表示三次曲线tyle="font-size:16px">.ATtyle="font-family:宋体;font-size:16px">切割晶体坯料在宽温度范围内具有稳定的频率它被获得并且最常用于tyle="font-size:16px">MHztyle="font-family:宋体;font-size:16px">频带的石英title="晶振" target="_blank">晶振晶体器件中tyle="font-size:16px">.
tyle="font-family:宋体;font-size:16px"> 温度系数
tyle="font-size:16px"> ATcuttyle="font-family:宋体;font-size:16px">晶体单元的频率温度特性由下面的三次多项式近似tyle="font-size:16px">.
tyle="font-size:16px"> Ftyle="font-family:宋体;font-size:16px">(tyle="font-size:16px">Ttyle="font-family:宋体;font-size:16px">)tyle="font-size:16px">=C3tyle="font-family:宋体;font-size:16px">(tyle="font-size:16px">T-T0tyle="font-family:宋体;font-size:16px">)tyle="font-size:16px">3+C2tyle="font-family:宋体;font-size:16px">(tyle="font-size:16px">T-T0tyle="font-family:宋体;font-size:16px">)tyle="font-size:16px">2+C1tyle="font-family:宋体;font-size:16px">(tyle="font-size:16px">T-T0tyle="font-family:宋体;font-size:16px">)tyle="font-size:16px">+C0
tyle="font-size:16px"> C0tyle="font-family:宋体;font-size:16px">:常数tyle="font-size:16px">/C1tyle="font-family:宋体;font-size:16px">:tyle="font-size:16px">1tyle="font-family:宋体;font-size:16px">次温度系数tyle="font-size:16px">/C2tyle="font-family:宋体;font-size:16px">:tyle="font-size:16px">2tyle="font-family:宋体;font-size:16px">阶温度系数tyle="font-size:16px">/C3tyle="font-family:宋体;font-size:16px">:tyle="font-size:16px">3tyle="font-family:宋体;font-size:16px">下一个温度系数
tyle="font-size:16px"> ttyle="font-family:宋体;font-size:16px">:温度tyle="font-size:16px">/t0tyle="font-family:宋体;font-size:16px">:参考温度
tyle="font-size:16px;font-family:宋体"> 拐点温度:tyle="font-size:16px;font-family:calibri, sans-serif">ATtyle="font-size:16px;font-family:宋体">切割晶体单元的频率温度特性变为点对称的温度tyle="font-size:16px;font-family:calibri, sans-serif">.NTCtyle="font-size:16px;font-family:宋体">热敏电阻(负温度系数热敏电阻)热敏电阻tyle="font-size:16px;font-family:calibri, sans-serif">,tyle="font-size:16px;font-family:宋体">其电阻随温度升高而降低tyle="font-size:16px;font-family:calibri, sans-serif">.- 阅读(299)
- [行业新闻]Cardinal差分晶振CPPV7-A5BP-135.0晶振代码2018年12月07日 09:42
- tyle="font-size:16px"> Cardinal晶振集团成立于1986年,在石英晶体,晶体振荡器,title="贴片晶振" target="_blank">贴片晶振,TCXO振荡器,VCXO晶体振荡器方面拥有先进的仪器设备以及一流的生产技术.一直以来向北美,欧洲和亚州的电子行业供应最优质的石英晶体谐振器和石英晶体振荡器产品.为了更好的满足高端智能应用推出差分晶振.
tyle="font-size:16px"> Cardinal差分title="晶振" target="_blank">晶振型号
tyle=" text-align: center;"> target="_blank">title="Cardinaljz" alt="Cardinaljz" width="760" height="368" />
tyle="font-size:16px"> 差分晶振是相比普通贴片title="晶振" target="_blank">晶振具有更高技术要求的石英晶体振荡器,通常具备LVDS输出,HCSL输出,LVPECL输出,供应不同产品选择.并且具有2520,3225,5032,7050等多种封装尺寸.差分晶振具有低电源电压2.5V/3.3V,低功耗,低抖动等特点.tyle="font-size:16px"> Cardinal差分晶振代码
tyle="font-size:16px">
<table border="1" cellpadding="0" cellspacing="0" class="" bordercolor="#000000" style="width: 880px;"> <tbody> <tr height="53" style="height: 53px;"> <td height="53" width="162" style="height: 53px; width: 163px;"> Cardinal晶振代码 td> <td width="105" style="border-left: none; width: 105px;"> 厂家 td> <td width="61" style="border-left: none; width: 61px;"> 型号 td> <td width="91" style="border-left: none; width: 91px;"> 频率 td> <td width="73" style="border-left: none; width: 73px;"> 类型 td> <td width="48" style="border-left: none; width: 48px;"> 输出 td> <td width="72" style="border-left: none; width: 72px;"> 精度偏差 td> <td width="144" style="border-left: none; width: 144px;"> 尺寸 td> tr> <tr height="28" style="height: 28px;"> <td height="28" style="height: 28px; border-top: none;"> CPPV7-A5BP-135.0 td> <td style="border-top: none; border-left: none;"> Cardinal晶振 td> <td style="border-top: none; border-left: none;"> CPPV7 td> <td style="border-top: none; border-left: none;"> 135MHz td> <td style="border-top: none; border-left: none;"> OSC XO td> <td style="border-top: none; border-left: none;"> LVDS td> <td style="border-top: none; border-left: none;"> ±50ppm td> <td style="border-top: none; border-left: none;"> (7.00mm x 5.00mm) td> tr> <tr height="28" style="height: 28px;"> <td height="28" style="height: 28px; border-top: none;"> CPPV7-A5BR-14.75 td> <td style="border-top: none; border-left: none;"> Cardinal晶振 td> <td style="border-top: none; border-left: none;"> CPPV7 td> <td style="border-top: none; border-left: none;"> 14.75MHz td> <td style="border-top: none; border-left: none;"> OSC XO td> <td style="border-top: none; border-left: none;"> LVDS td> <td style="border-top: none; border-left: none;"> ±25ppm td> <td style="border-top: none; border-left: none;"> (7.00mm x 5.00mm) td> tr> <tr height="28" style="height: 28px;"> <td height="28" style="height: 28px; border-top: none;"> CPPV7-A7BP-159.375 td> <td style="border-top: none; border-left: none;"> Cardinal晶振 td> <td style="border-top: none; border-left: none;"> CPPV7 td> <td style="border-top: none; border-left: none;"> 159.375MHz td> <td style="border-top: none; border-left: none;"> OSC XO td> <td style="border-top: none; border-left: none;"> LVDS td> <td style="border-top: none; border-left: none;"> ±50ppm td> <td style="border-top: none; border-left: none;"> (7.00mm x 5.00mm) td> tr> <tr height="28" style="height: 28px;"> <td height="28" style="height: 28px; border-top: none;"> CPPV7-A7BP-200.0 td> <td style="border-top: none; border-left: none;"> Cardinal晶振 td> <td style="border-top: none; border-left: none;"> CPPV7 td> <td style="border-top: none; border-left: none;"> 200MHz td> <td style="border-top: none; border-left: none;"> OSC XO td> <td style="border-top: none; border-left: none;"> LVDS td> <td style="border-top: none; border-left: none;"> ±50ppm td> <td style="border-top: none; border-left: none;"> (7.00mm x 5.00mm) td> tr> <tr height="28" style="height: 28px;"> <td height="28" style="height: 28px; border-top: none;"> CPPV7-A7BR-122.88 td> <td style="border-top: none; border-left: none;"> title="Cardinal晶振" target="_blank">Cardinal晶振 td> <td style="border-top: none; border-left: none;"> CPPV7 td> <td style="border-top: none; border-left: none;"> 122.88MHz td> <td style="border-top: none; border-left: none;"> OSC XO td> <td style="border-top: none; border-left: none;"> LVDS td> <td style="border-top: none; border-left: none;"> ±25ppm td> <td style="border-top: none; border-left: none;"> (7.00mm x 5.00mm) td> tr> <tr height="28" style="height: 28px;"> <td height="28" style="height: 28px; border-top: none;"> CPPV7-A7BR-50.0TS td> <td style="border-top: none; border-left: none;"> Cardinal晶振 td> <td style="border-top: none; border-left: none;"> CPPV7 td> <td style="border-top: none; border-left: none;"> 50MHz td> <td style="border-top: none; border-left: none;"> OSC XO td> <td style="border-top: none; border-left: none;"> LVDS td> <td style="border-top: none; border-left: none;"> ±25ppm td> <td style="border-top: none; border-left: none;"> (7.00mm x 5.00mm) td> tr> <tr height="28" style="height: 28px;"> <td height="28" style="height: 28px; border-top: none;"> CPPV7-BR-100.0 td> <td style="border-top: none; border-left: none;"> Cardinal晶振 td> <td style="border-top: none; border-left: none;"> CPPV7 td> <td style="border-top: none; border-left: none;"> 100MHz td> <td style="border-top: none; border-left: none;"> OSC XO td> <td style="border-top: none; border-left: none;"> LVDS td> <td style="border-top: none; border-left: none;"> ±25ppm td> <td style="border-top: none; border-left: none;"> (7.00mm x 5.00mm) td> tr> <tr height="28" style="height: 28px;"> <td height="28" style="height: 28px; border-top: none;"> CPPV7-BR-105.0 td> <td style="border-top: none; border-left: none;"> Cardinal晶振 td> <td style="border-top: none; border-left: none;"> CPPV7 td> <td style="border-top: none; border-left: none;"> 105MHz td> <td style="border-top: none; border-left: none;"> OSC XO td> <td style="border-top: none; border-left: none;"> LVDS td> <td style="border-top: none; border-left: none;"> ±25ppm td> <td style="border-top: none; border-left: none;"> (7.00mm x 5.00mm) td> tr> <tr height="28" style="height: 28px;"> <td height="28" style="height: 28px; border-top: none;"> CPPV7-BR-125.0 td> <td style="border-top: none; border-left: none;"> Cardinal晶振 td> <td style="border-top: none; border-left: none;"> CPPV7 td> <td style="border-top: none; border-left: none;"> 125MHz td> <td style="border-top: none; border-left: none;"> OSC XO td> <td style="border-top: none; border-left: none;"> LVDS td> <td style="border-top: none; border-left: none;"> ±25ppm td> <td style="border-top: none; border-left: none;"> (7.00mm x 5.00mm) td> tr> <tr height="28" style="height: 28px;"> <td height="28" style="height: 28px; border-top: none;"> CPPV7-BR-133.333 td> <td style="border-top: none; border-left: none;"> Cardinal晶振 td> <td style="border-top: none; border-left: none;"> CPPV7 td> <td style="border-top: none; border-left: none;"> 133.333MHz td> <td style="border-top: none; border-left: none;"> OSC XO td> <td style="border-top: none; border-left: none;"> LVDS td> <td style="border-top: none; border-left: none;"> ±25ppm td> <td style="border-top: none; border-left: none;"> (7.00mm x 5.00mm) td> tr> <tr height="28" style="height: 28px;"> <td height="28" style="height: 28px; border-top: none;"> CPPV7-BR-20.0 td> <td style="border-top: none; border-left: none;"> Cardinal晶振 td> <td style="border-top: none; border-left: none;"> CPPV7 td> <td style="border-top: none; border-left: none;"> 20MHz td> <td style="border-top: none; border-left: none;"> OSC XO td> <td style="border-top: none; border-left: none;"> LVDS td> <td style="border-top: none; border-left: none;"> ±25ppm td> <td style="border-top: none; border-left: none;"> (7.00mm x 5.00mm) td> tr> <tr height="28" style="height: 28px;"> <td height="28" style="height: 28px; border-top: none;"> CPPV7-BR-40.000 td> <td style="border-top: none; border-left: none;"> Cardinal晶振 td> <td style="border-top: none; border-left: none;"> CPPV7 td> <td style="border-top: none; border-left: none;"> 40MHz td> <td style="border-top: none; border-left: none;"> OSC XO td> <td style="border-top: none; border-left: none;"> LVDS td> <td style="border-top: none; border-left: none;"> ±25ppm td> <td style="border-top: none; border-left: none;"> (7.00mm x 5.00mm) td> tr> <tr height="28" style="height: 28px;"> <td height="28" style="height: 28px; border-top: none;"> CPPV7-BR-80.0 td> <td style="border-top: none; border-left: none;"> Cardinaltitle="晶振" target="_blank">晶振 td> <td style="border-top: none; border-left: none;"> CPPV7 td> <td style="border-top: none; border-left: none;"> 80MHz td> <td style="border-top: none; border-left: none;"> OSC XO td> <td style="border-top: none; border-left: none;"> LVDS td> <td style="border-top: none; border-left: none;"> ±25ppm td> <td style="border-top: none; border-left: none;"> (7.00mm x 5.00mm) td> tr> <tr height="28" style="height: 28px;"> <td height="28" style="height: 28px; border-top: none;"> CPPV7Z-A7BR-200.0 td> <td style="border-top: none; border-left: none;"> Cardinal晶振 td> <td style="border-top: none; border-left: none;"> CPPV7 td> <td style="border-top: none; border-left: none;"> 200MHz td> <td style="border-top: none; border-left: none;"> OSC XO td> <td style="border-top: none; border-left: none;"> LVDS td> <td style="border-top: none; border-left: none;"> ±25ppm td> <td style="border-top: none; border-left: none;"> (7.00mm x 5.00mm) td> tr> <tr height="28" style="height: 28px;"> <td height="28" style="height: 28px; border-top: none;"> CPPV7-A5BP-80.0 td> <td style="border-top: none; border-left: none;"> Cardinal晶振 td> <td style="border-top: none; border-left: none;"> CPPV7 td> <td style="border-top: none; border-left: none;"> 80MHz td> <td style="border-top: none; border-left: none;"> OSC XO td> <td style="border-top: none; border-left: none;"> LVDS td> <td style="border-top: none; border-left: none;"> ±50ppm td> <td style="border-top: none; border-left: none;"> (7.00mm x 5.00mm) td> tr> tbody> table>th="162" style="width: 163px;" /> th="105" style="width: 105px;" /> th="61" style="width: 61px;" /> th="91" style="width: 91px;" /> th="73" style="width: 73px;" /> th="48" style="width: 48px;" /> th="72" style="width: 72px;" /> th="144" style="width: 144px;" /> tyle="font-size:16px">
tyle="font-size:16px"> Cardinal晶振早已通过ISO9001:2008认证.Cardinal晶振能够解决用户一切提问,并为新产品和现有产品提供设计帮助,拥有灵活的交期.亿金电子多年来专注用户需求,提供各大进口晶振品牌,代理title="Cardinal晶振" target="_blank">Cardinal晶振,瑞康晶振,CTS晶振,KDS晶振,爱普生晶振等,不同品牌对应型号列表,以及晶振编码,欢迎咨询亿金电子获取. - 阅读(115)
- [技术支持]安基LVPECL输出差分晶振原厂代码2018年12月06日 09:58
- tyle="font-size:16px"> 台湾安基晶振成立于1990年,拥有专业设计和制造各种频率控制解决方案的超前技术,主要研发生产石英晶振,title="贴片晶振" target="_blank">贴片晶振,有源晶振以及晶体谐振器等产品.从创建至今AKER晶振仍然坚持为客户提供专业的服务以及高质量的产品为发展理念.下面所介绍到的是安基LVPECL输出差分晶振.
tyle="font-size:16px"> 差分晶振具有输出相互之间极性相反的频率信号的方式,差分输出大家都了解最常见的三种HCSL、LVDS、LVPECL.差分title="有源晶振" target="_blank">有源晶振工作电压一般为2.5V/3.3V,低电压可达到低值1V,具有低功耗,低电平等优势.
tyle="font-size:16px"> 安基LVPECL输出差分晶振型号
<table border="1" bordercolor="#000000" style="width: 780px;"> <tbody> <tr> <th> tyle="font-size:16px">Photo th> <th> tyle="font-size:16px">Series th> <th> tyle="font-size:16px">Dimension th> <th> tyle="font-size:16px">Frequency Range th> <th> tyle="font-size:16px">RoHS th> <th> tyle="font-size:16px">REACH th> <th> tyle="font-size:16px">Data Sheet th> tr> <tr> <td> target="_blank">t="SMEN-751" src="http://www.aker.com.tw/thumb/product/item/LVPECL/P_026.jpg" style="width: 75px; height: 50px;" /> td> <td> tyle="font-size:16px">SMEN-751晶振 td> <td> tyle="font-size:16px">7.0*5.0*1.4 mm td> <td> tyle="font-size:16px">13.500 ~ 160.000MHz td> <td> tyle="font-size:16px">V td> <td> tyle="font-size:16px">V td> <td> td> tr> <tr> <td> t="SMEN-531" src="http://www.aker.com.tw/thumb/product/item/LVPECL/P_028.jpg" style="width: 75px; height: 50px;" /> td> <td> tyle="font-size:16px">SMEN-531晶振 td> <td> tyle="font-size:16px">5.0*3.2*1.3 mm td> <td> tyle="font-size:16px">13.500 ~ 156.250MHz td> <td> tyle="font-size:16px">V td> <td> tyle="font-size:16px">V td> <td> target="_blank"> td> tr> <tr> <td> t="SMEN-321" src="http://www.aker.com.tw/thumb/product/item/LVPECL/P_029.jpg" style="width: 75px; height: 50px;" /> td> <td> tyle="font-size:16px">SMEN-321晶振 td> <td> tyle="font-size:16px">3.2*2.5*1.1 mm td> <td> tyle="font-size:16px">13.500 ~ 156.250MHz td> <td> tyle="font-size:16px">V td> <td> tyle="font-size:16px">V td> <td> td> tr> tbody> table>tyle="font-size:16px"> tyle="font-size:16px">安基LVPECL输出差分晶振参数
tyle=" text-align: center;"> target="_blank">title="安基LVPECL输出差分晶振原厂代码" alt="安基LVPECL输出差分晶振原厂代码" width="760" height="340" />
tyle="font-size:16px"> 安基LVPECL输出title="差分晶振" target="_blank">差分晶振原厂代码
<table border="1" cellspacing="0" class="" bordercolor="#000000" style="width: 885px;"> <tbody> <tr height="57" style="height: 57px;"> <td height="57" width="182" style="height: 57px; width: 183px;"> tyle="font-size:16px">title="安基晶振" target="_blank">安基晶振型号 td> <td width="74" style="border-left: none; width: 75px;"> tyle="font-size:16px">供应商 td> <td width="269" style="border-left: none; width: 269px;"> tyle="font-size:16px">参数规格说明 td> <td width="72" style="border-left: none; width: 72px;"> tyle="font-size:16px">频率MHZ td> <td width="64" style="border-left: none; width: 64px;"> tyle="font-size:16px">输出 td> <td width="68" style="border-left: none; width: 68px;"> tyle="font-size:16px">温度℃ td> tr> <tr height="43" style="height: 43px;"> <td height="43" width="182" style="height: 43px; border-top: none; width: 183px;"> S7A3305-250.000-P-X-R td> <td width="74" style="border-top: none; border-left: none; width: 75px;"> Aker晶振 td> <td width="269" style="border-top: none; border-left: none; width: 269px;"> Oscillator XO 250MHz ±50ppm LVPECL 55% 3.3V Automotive 6-Pin SMD T/R td> <td width="72" style="border-top: none; border-left: none; width: 72px;"> 250 td> <td width="64" style="border-top: none; border-left: none; width: 64px;"> LVPECL td> <td width="68" style="border-top: none; border-left: none; width: 68px;"> -40~85 td> tr> <tr height="43" style="height: 43px;"> <td height="43" width="182" style="height: 43px; border-top: none; width: 183px;"> S7A2505-156.250-P-X-R td> <td width="74" style="border-top: none; border-left: none; width: 75px;"> Aker晶振 td> <td width="269" style="border-top: none; border-left: none; width: 269px;"> Oscillator XO 156.25MHz ±50ppm LVPECL 55% 2.5V 6-Pin SMD T/R td> <td width="72" style="border-top: none; border-left: none; width: 72px;"> 156.25 td> <td width="64" style="border-top: none; border-left: none; width: 64px;"> LVPECL td> <td width="68" style="border-top: none; border-left: none; width: 68px;"> -40~85 td> tr> <tr height="43" style="height: 43px;"> <td height="43" width="182" style="height: 43px; border-top: none; width: 183px;"> S5A2505-125.000-P-X-R td> <td width="74" style="border-top: none; border-left: none; width: 75px;"> Aker晶振 td> <td width="269" style="border-top: none; border-left: none; width: 269px;"> Oscillator XO 125MHz ±50ppm LVPECL 55% 2.5V Automotive 6-Pin SMD T/R td> <td width="72" style="border-top: none; border-left: none; width: 72px;"> 125 td> <td width="64" style="border-top: none; border-left: none; width: 64px;"> LVPECL td> <td width="68" style="border-top: none; border-left: none; width: 68px;"> -40~85 td> tr> <tr height="43" style="height: 43px;"> <td height="43" width="182" style="height: 43px; border-top: none; width: 183px;"> S7A3305-150.000-P-X-R td> <td width="74" style="border-top: none; border-left: none; width: 75px;"> Aker晶振 td> <td width="269" style="border-top: none; border-left: none; width: 269px;"> Oscillator XO 150MHz ±50ppm LVPECL 55% 3.3V Automotive 6-Pin SMD T/R td> <td width="72" style="border-top: none; border-left: none; width: 72px;"> 150 td> <td width="64" style="border-top: none; border-left: none; width: 64px;"> LVPECL td> <td width="68" style="border-top: none; border-left: none; width: 68px;"> -40~85 td> tr> <tr height="34" style="height: 34px;"> <td height="34" width="182" style="height: 34px; border-top: none; width: 183px;"> S7A2505-100.000-P-X-R td> <td width="74" style="border-top: none; border-left: none; width: 75px;"> Aker晶振 td> <td width="269" style="border-top: none; border-left: none; width: 269px;"> Oscillator XO 100MHz ±50ppm LVPECL 55% 2.5V Automotive 6-Pin SMD T/R td> <td width="72" style="border-top: none; border-left: none; width: 72px;"> 100 td> <td width="64" style="border-top: none; border-left: none; width: 64px;"> LVPECL td> <td width="68" style="border-top: none; border-left: none; width: 68px;"> -40~85 td> tr> <tr height="43" style="height: 43px;"> <td height="43" width="182" style="height: 43px; border-top: none; width: 183px;"> S7A3305-200.000-P-X-R td> <td width="74" style="border-top: none; border-left: none; width: 75px;"> Aker晶振 td> <td width="269" style="border-top: none; border-left: none; width: 269px;"> Oscillator XO 200MHz ±50ppm LVPECL 55% 3.3V Automotive 6-Pin SMD T/R td> <td width="72" style="border-top: none; border-left: none; width: 72px;"> 200 td> <td width="64" style="border-top: none; border-left: none; width: 64px;"> LVPECL td> <td width="68" style="border-top: none; border-left: none; width: 68px;"> -40~85 td> tr> <tr height="43" style="height: 43px;"> <td height="43" width="182" style="height: 43px; border-top: none; width: 183px;"> S7A3305-212.500-P-X-R td> <td width="74" style="border-top: none; border-left: none; width: 75px;"> Aker晶振 td> <td width="269" style="border-top: none; border-left: none; width: 269px;"> Oscillator XO 212.5MHz ±50ppm LVPECL 55% 3.3V Automotive 6-Pin SMD T/R td> <td width="72" style="border-top: none; border-left: none; width: 72px;"> 212.5 td> <td width="64" style="border-top: none; border-left: none; width: 64px;"> LVPECL td> <td width="68" style="border-top: none; border-left: none; width: 68px;"> -40~85 td> tr> <tr height="43" style="height: 43px;"> <td height="43" width="182" style="height: 43px; border-top: none; width: 183px;"> S7A2505-106.250-P-X-R td> <td width="74" style="border-top: none; border-left: none; width: 75px;"> title="AKER晶振" target="_blank">AKER晶振 td> <td width="269" style="border-top: none; border-left: none; width: 269px;"> Oscillator XO 106.25MHz ±50ppm LVPECL 55% 2.5V Automotive 6-Pin SMD T/R td> <td width="72" style="border-top: none; border-left: none; width: 72px;"> 106.25 td> <td width="64" style="border-top: none; border-left: none; width: 64px;"> LVPECL td> <td width="68" style="border-top: none; border-left: none; width: 68px;"> -40~85 td> tr> tbody> table>th="182" style="width: 183px;" /> th="74" style="width: 75px;" /> th="269" style="width: 269px;" /> th="72" style="width: 72px;" /> th="64" style="width: 64px;" /> th="68" style="width: 68px;" /> tyle="font-size:16px"> 亿金电子代理台湾进口晶振,日本进口晶振,美国进口晶振,包括AKER晶振,TXC晶振,KDS晶振,NDK晶振,CTS晶振,IDT晶振,Abracon晶振等知名品牌.进口晶振种类繁多,石英晶体,陶瓷title="谐振器" target="_blank">谐振器,晶体滤波器,压控晶振,title="温补晶振" target="_blank">温补晶振,差分晶体振荡器等,能满足低,中,高各大市场需求.更多安基差分晶振信息欢迎咨询亿金电子0755-27876565.
- 阅读(179)
- [行业新闻]了解爱普生高频差分晶振LVDS输出的意义2018年12月03日 10:15
tyle="font-size:16px"> 科技发展对差分晶振的使用日益增多,各大晶振品牌纷纷推出差分晶体振荡器,比如我们所熟悉的KDS晶振,京瓷晶振,title="NDK晶振" target="_blank">NDK晶振,爱普生晶振,IDT晶振等知名品牌.我们都知道差分晶振除了有普通晶振有的功能外,最大的不同就是输出的方式是差分信号.
tyle="font-size:16px"> 那么差分晶振的输出是什么意思呢?title="差分晶振" target="_blank">差分晶振输出是指输出差分信号使用2种相位彼此完全相反的信号,从而消除了共模噪声,并产生一个更高性能的系统.这种方式可输送高频,并具有抗噪音强,低抖动等特征.常见的差分输出为LVDS、HCSL、LV-PECL.下面所介绍到的是爱普生LVDS输出的差分晶振.
tyle="font-size:16px"> 爱普生差分晶振参数
<table border="1" bordercolor="#000000" style="width: 880px;"> <tbody> <tr> <th rowspan="3"> 项目 th> <th rowspan="3"> 符号 th> <th colspan="2"> 规格说明 th> <th colspan="2" rowspan="3"> 条件 th> tr> <tr> <th> LV-PECL th> <th> LVDS th> tr> <tr> <th> SG3225EAN
SG5032EAN
SG7050EAN th> <th> SG3225VAN
SG5032VAN
SG7050VAN th> tr> <tr> <th> 输出频率范围 th> <td> f0 td> <td colspan="2"> 73.5MHz to 700MHz td> <td colspan="2"> 请联系我们以便获取其它可用频率的相关信息。 td> tr> <tr> <th> 电源电压 th> <td> VCC td> <td colspan="2"> K : 2. V to 3.3V td> <td colspan="2"> VCC=±10 % td> tr> <tr> <th> 储存温度范围 th> <td> T_stg td> <td colspan="2"> -40 °C to +125 °C td> <td colspan="2"> 存储为单一产品 td> tr> <tr> <th> 工作温度范围 th> <td> T_use td> <td colspan="2"> B:-20 °C to +70 °C
G:-40 °C to +85 °C td> <td colspan="2"> td> tr> <tr> <th> 频率稳定度 th> <td> f_tol td> <td colspan="2"> C:±20 × 10-6
E:±30 × 10-6
J:±50 × 10-6 td> <td colspan="2"> td> tr> <tr> <th> 功耗 th> <td> ICC td> <td> 65mA Max. td> <td> 30mA Max. td> <td colspan="2"> OE =VCC
L_ECL=50Ω or L_LVDS=100Ω
f0 = 700MHz td> tr> <tr> <th> 输出禁用电流 th> <td> I_dis td> <td colspan="2"> 20 mA Max. td> <td colspan="2"> OE = GND td> tr> <tr> <th> 占空比 th> <td> SYM td> <td colspan="2"> 45 % to 55 % td> <td colspan="2"> 在输出交叉点 td> tr> <tr> <th rowspan="2"> 输出电压
(LV-PECL) th> <td> VOH td> <td> VCC - 1.0 V to VCC - 0.8 V td> <td> - td> <td colspan="2" rowspan="2"> DC 特征 td> tr> <tr> <td> VOL td> <td> VCC - 1.78 V to VCC - 1.62 V td> <td> - td> tr> <tr> <th rowspan="4"> 输出电压
(LVDS) th> <td> VOD td> <td> - td> <td> 250 mV to 450 mV td> <td> VOD1 , VOD2 td> <td rowspan="4"> DC 特征 td> tr> <tr> <td> dVOD td> <td> - td> <td> 50 mV Max. td> <td> dVOD = | VOD1 - VOD2 | td> tr> <tr> <td> VOS td> <td> - td> <td> 1.15 V to 1.35 V td> <td> VOS1 , VOS2 td> tr> <tr> <td> dVOS td> <td> - td> <td> 150 mV Max. td> <td> dVOS = | VOS1 - VOS2 | td> tr> <tr> <th rowspan="2"> 输出负载条件
(ECL) / (LVDS) th> <td> L_ECL td> <td> 50 Ω td> <td> - td> <td colspan="2"> 终止于 VCC - 2.0 V td> tr> <tr> <td> L_LVDS td> <td> - td> <td> 100 Ω td> <td colspan="2"> 连接到 OUT 与 OUT之间 td> tr> <tr> <th rowspan="2"> 输入电压 th> <td> VIH td> <td colspan="2"> 70 % VCC Min. td> <td colspan="2" rowspan="2"> OE 终端 td> tr> <tr> <td> VIL td> <td colspan="2"> 30 % VCC Max. td> tr> <tr> <th rowspan="2"> 上升/下降时间 th> <td rowspan="2"> tr/tf td> <td> 350 ps Max. td> <td> - td> <td colspan="2"> 20 % ~ 80 % of ( VOH - VOL ). td> tr> <tr> <td> - td> <td> 300 ps Max. td> <td colspan="2"> 20 % ~ 80 %微分输出 峰-峰值 td> tr> <tr> <th> 振荡启动时间 th> <td> t_str td> <td colspan="2"> 3 ms Max. td> <td colspan="2"> 在电源电压最低时,所需时间为 0 秒 td> tr> <tr> <th> 相位抖动 th> <td> tPJ td> <td colspan="2"> 0.6 ps Max. *1 td> <td colspan="2"> 抵消频率 : 12 kHz ~ 20 MHz td> tr> <tr> <th> 频率老化 th> <td> f_aging td> <td colspan="2"> ±5 × 10-6 / year Max. td> <td colspan="2"> +25 °C , 第一年
VCC = 2.5 V or 3.3V td> tr> tbody> table>tyle="font-size:16px"> 差分晶振的不同输出意义:HCSL代表"高速电流转向逻辑".LVDS代表"低压差分信号".LV-PECL输出代表"低压正发射极耦合逻辑".title="爱普生晶振" target="_blank">爱普生晶振通过使用PLL技术和AT晶体单元来实现宽的频率范围,参数表中我们看到了爱普生差分晶振的频率可达73.5MHz~700MHz高频率点,储存温度在-40℃~125℃,使用性能稳定.
tyle="font-size:16px"> 爱普生差分晶振编码
<table border="1" cellpadding="0" cellspacing="0" class="" bordercolor="#000000" style="width: 880px;"> <tbody> <tr height="36" style="height: 36px;"> <td height="36" width="113" style="height: 36px; width: 113px;"> title="爱普生晶振" target="_blank">爱普生晶振编码 td> <td width="140" style="border-left: none; width: 140px;"> 差分晶振型号 td> <td width="109" style="border-left: none; width: 109px;"> 频率 td> <td width="129" style="border-left: none; width: 129px;"> 封装尺寸 td> <td width="53" style="border-left: none; width: 53px;"> 输出 td> <td width="80" style="border-left: none; width: 80px;"> 温度范围 td> <td width="72" style="border-left: none; width: 72px;"> 偏差 td> tr> <tr height="23" style="height: 23px;"> <td height="23" width="113" style="height: 23px; border-top: none; width: 113px;"> X1G0042810001 td> <td width="140" style="border-top: none; border-left: none; width: 140px;"> SG7050VAN晶振 td> <td width="109" style="border-top: none; border-left: none; width: 109px;"> 125.000000MHz td> <td width="129" style="border-top: none; border-left: none; width: 129px;"> 7.00x5.00x1.60mm td> <td width="53" style="border-top: none; border-left: none; width: 53px;"> LVDS td> <td width="80" style="border-top: none; border-left: none; width: 80px;"> -40to85°C td> <td width="72" style="border-top: none; border-left: none; width: 72px;"> +/-50ppm td> tr> <tr height="23" style="height: 23px;"> <td height="23" width="113" style="height: 23px; width: 113px;"> X1G0042810004 td> <td width="140" style="border-left: none; width: 140px;"> SG7050VAN差分晶振 td> <td width="109" style="border-left: none; width: 109px;"> 100.000000MHz td> <td width="129" style="border-left: none; width: 129px;"> 7.00x5.00x1.60mm td> <td width="53" style="border-left: none; width: 53px;"> LVDS td> <td width="80" style="border-left: none; width: 80px;"> -40to85°C td> <td width="72" style="border-left: none; width: 72px;"> +/-50ppm td> tr> <tr height="23" style="height: 23px;"> <td height="23" width="113" style="height: 23px; border-top: none; width: 113px;"> X1G0042810005 td> <td width="140" style="border-top: none; border-left: none; width: 140px;"> title="SG7050VAN晶振" target="_blank">SG7050VAN晶振 td> <td width="109" style="border-top: none; border-left: none; width: 109px;"> 200.000000MHz td> <td width="129" style="border-top: none; border-left: none; width: 129px;"> 7.00x5.00x1.60mm td> <td width="53" style="border-top: none; border-left: none; width: 53px;"> LVDS td> <td width="80" style="border-top: none; border-left: none; width: 80px;"> -40to85°C td> <td width="72" style="border-top: none; border-left: none; width: 72px;"> +/-50ppm td> tr> <tr height="23" style="height: 23px;"> <td height="23" width="113" style="height: 23px; width: 113px;"> X1G0042810011 td> <td width="140" style="border-left: none; width: 140px;"> SG7050VAN差分晶振 td> <td width="109" style="border-left: none; width: 109px;"> 75.000000MHz td> <td width="129" style="border-left: none; width: 129px;"> 7.00x5.00x1.60mm td> <td width="53" style="border-left: none; width: 53px;"> LVDS td> <td width="80" style="border-left: none; width: 80px;"> -40to85°C td> <td width="72" style="border-left: none; width: 72px;"> +/-50ppm td> tr> <tr height="23" style="height: 23px;"> <td height="23" width="113" style="height: 23px; border-top: none; width: 113px;"> X1G0042810014 td> <td width="140" style="border-top: none; border-left: none; width: 140px;"> SG7050VAN晶振 td> <td width="109" style="border-top: none; border-left: none; width: 109px;"> 156.250000MHz td> <td width="129" style="border-top: none; border-left: none; width: 129px;"> 7.00x5.00x1.60mm td> <td width="53" style="border-top: none; border-left: none; width: 53px;"> LVDS td> <td width="80" style="border-top: none; border-left: none; width: 80px;"> -40to85°C td> <td width="72" style="border-top: none; border-left: none; width: 72px;"> +/-50ppm td> tr> <tr height="23" style="height: 23px;"> <td height="23" width="113" style="height: 23px; width: 113px;"> X1G0042810020 td> <td width="140" style="border-left: none; width: 140px;"> SG7050VAN差分晶振 td> <td width="109" style="border-left: none; width: 109px;"> 125.000000MHz td> <td width="129" style="border-left: none; width: 129px;"> 7.00x5.00x1.60mm td> <td width="53" style="border-left: none; width: 53px;"> LVDS td> <td width="80" style="border-left: none; width: 80px;"> -40to85°C td> <td width="72" style="border-left: none; width: 72px;"> +/-30ppm td> tr> <tr height="23" style="height: 23px;"> <td height="23" width="113" style="height: 23px; width: 113px;"> X1G0042810024 td> <td width="140" style="border-top: none; border-left: none; width: 140px;"> SG7050VAN晶振 td> <td width="109" style="border-left: none; width: 109px;"> 200.000000MHz td> <td width="129" style="border-left: none; width: 129px;"> 7.00x5.00x1.60mm td> <td width="53" style="border-left: none; width: 53px;"> LVDS td> <td width="80" style="border-left: none; width: 80px;"> -40to85°C td> <td width="72" style="border-left: none; width: 72px;"> +/-30ppm td> tr> <tr height="23" style="height: 23px;"> <td height="23" width="113" style="height: 23px; width: 113px;"> X1G0042810031 td> <td width="140" style="border-left: none; width: 140px;"> SG7050VAN差分晶振 td> <td width="109" style="border-left: none; width: 109px;"> 150.000000MHz td> <td width="129" style="border-left: none; width: 129px;"> 7.00x5.00x1.60mm td> <td width="53" style="border-left: none; width: 53px;"> LVDS td> <td width="80" style="border-left: none; width: 80px;"> -40to85°C td> <td width="72" style="border-left: none; width: 72px;"> +/-30ppm td> tr> <tr height="23" style="height: 23px;"> <td height="23" width="113" style="height: 23px; width: 113px;"> X1G0042810033 td> <td width="140" style="border-top: none; border-left: none; width: 140px;"> SG7050VAN晶振 td> <td width="109" style="border-left: none; width: 109px;"> 156.250000MHz td> <td width="129" style="border-left: none; width: 129px;"> 7.00x5.00x1.60mm td> <td width="53" style="border-left: none; width: 53px;"> LVDS td> <td width="80" style="border-left: none; width: 80px;"> -40to85°C td> <td width="72" style="border-left: none; width: 72px;"> +/-30ppm td> tr> <tr height="23" style="height: 23px;"> <td height="23" width="113" style="height: 23px; width: 113px;"> X1G0042810038 td> <td width="140" style="border-left: none; width: 140px;"> SG7050VAN差分晶振 td> <td width="109" style="border-left: none; width: 109px;"> 700.000000MHz td> <td width="129" style="border-left: none; width: 129px;"> 7.00x5.00x1.60mm td> <td width="53" style="border-left: none; width: 53px;"> LVDS td> <td width="80" style="border-left: none; width: 80px;"> -40to85°C td> <td width="72" style="border-left: none; width: 72px;"> +/-30ppm td> tr> <tr height="23" style="height: 23px;"> <td height="23" width="113" style="height: 23px; border-top: none; width: 113px;"> X1G0042810039 td> <td width="140" style="border-top: none; border-left: none; width: 140px;"> SG7050VAN晶振 td> <td width="109" style="border-top: none; border-left: none; width: 109px;"> 125.000000MHz td> <td width="129" style="border-top: none; border-left: none; width: 129px;"> 7.00x5.00x1.60mm td> <td width="53" style="border-top: none; border-left: none; width: 53px;"> LVDS td> <td width="80" style="border-top: none; border-left: none; width: 80px;"> -20to70°C td> <td width="72" style="border-top: none; border-left: none; width: 72px;"> +/-50ppm td> tr> <tr height="23" style="height: 23px;"> <td height="23" width="113" style="height: 23px; width: 113px;"> X1G0042810044 td> <td width="140" style="border-left: none; width: 140px;"> SG7050VAN差分晶振 td> <td width="109" style="border-left: none; width: 109px;"> 400.000000MHz td> <td width="129" style="border-left: none; width: 129px;"> 7.00x5.00x1.60mm td> <td width="53" style="border-left: none; width: 53px;"> LVDS td> <td width="80" style="border-left: none; width: 80px;"> -20to70°C td> <td width="72" style="border-left: none; width: 72px;"> +/-50ppm td> tr> <tr height="23" style="height: 23px;"> <td height="23" width="113" style="height: 23px; width: 113px;"> X1G0042810049 td> <td width="140" style="border-left: none; width: 140px;"> SG7050VAN晶振 td> <td width="109" style="border-left: none; width: 109px;"> 75.000000MHz td> <td width="129" style="border-left: none; width: 129px;"> 7.00x5.00x1.60mm td> <td width="53" style="border-left: none; width: 53px;"> LVDS td> <td width="80" style="border-left: none; width: 80px;"> -20to70°C td> <td width="72" style="border-left: none; width: 72px;"> +/-50ppm td> tr> <tr height="23" style="height: 23px;"> <td height="23" width="113" style="height: 23px; border-top: none; width: 113px;"> X1G0042810050 td> <td width="140" style="border-top: none; border-left: none; width: 140px;"> SG7050VAN差分晶振 td> <td width="109" style="border-top: none; border-left: none; width: 109px;"> 150.000000MHz td> <td width="129" style="border-top: none; border-left: none; width: 129px;"> 7.00x5.00x1.60mm td> <td width="53" style="border-top: none; border-left: none; width: 53px;"> LVDS td> <td width="80" style="border-top: none; border-left: none; width: 80px;"> -20to70°C td> <td width="72" style="border-top: none; border-left: none; width: 72px;"> +/-50ppm td> tr> <tr height="23" style="height: 23px;"> <td height="23" width="113" style="height: 23px; border-top: none; width: 113px;"> X1G0042810052 td> <td width="140" style="border-top: none; border-left: none; width: 140px;"> SG7050VAN晶振 td> <td width="109" style="border-top: none; border-left: none; width: 109px;"> 156.250000MHz td> <td width="129" style="border-top: none; border-left: none; width: 129px;"> 7.00x5.00x1.60mm td> <td width="53" style="border-top: none; border-left: none; width: 53px;"> LVDS td> <td width="80" style="border-top: none; border-left: none; width: 80px;"> -20to70°C td> <td width="72" style="border-top: none; border-left: none; width: 72px;"> +/-50ppm td> tr> <tr height="23" style="height: 23px;"> <td height="23" width="113" style="height: 23px; width: 113px;"> X1G0042810061 td> <td width="140" style="border-left: none; width: 140px;"> title="SG7050VAN差分晶振" target="_blank">SG7050VAN差分晶振 td> <td width="109" style="border-left: none; width: 109px;"> 100.000000MHz td> <td width="129" style="border-left: none; width: 129px;"> 7.00x5.00x1.60mm td> <td width="53" style="border-left: none; width: 53px;"> LVDS td> <td width="80" style="border-left: none; width: 80px;"> -20to70°C td> <td width="72" style="border-left: none; width: 72px;"> +/-20ppm td> tr> <tr height="23" style="height: 23px;"> <td height="23" width="113" style="height: 23px; border-top: none; width: 113px;"> X1G0042810062 td> <td width="140" style="border-top: none; border-left: none; width: 140px;"> SG7050VAN晶振 td> <td width="109" style="border-top: none; border-left: none; width: 109px;"> 200.000000MHz td> <td width="129" style="border-top: none; border-left: none; width: 129px;"> 7.00x5.00x1.60mm td> <td width="53" style="border-top: none; border-left: none; width: 53px;"> LVDS td> <td width="80" style="border-top: none; border-left: none; width: 80px;"> -20to70°C td> <td width="72" style="border-top: none; border-left: none; width: 72px;"> +/-20ppm td> tr> <tr height="23" style="height: 23px;"> <td height="23" width="113" style="height: 23px; border-top: none; width: 113px;"> X1G0042810063 td> <td width="140" style="border-top: none; border-left: none; width: 140px;"> SG7050VAN差分晶振 td> <td width="109" style="border-top: none; border-left: none; width: 109px;"> 400.000000MHz td> <td width="129" style="border-top: none; border-left: none; width: 129px;"> 7.00x5.00x1.60mm td> <td width="53" style="border-top: none; border-left: none; width: 53px;"> LVDS td> <td width="80" style="border-top: none; border-left: none; width: 80px;"> -20to70°C td> <td width="72" style="border-top: none; border-left: none; width: 72px;"> +/-20ppm td> tr> <tr height="23" style="height: 23px;"> <td height="23" width="113" style="height: 23px; width: 113px;"> X1G0042810068 td> <td width="140" style="border-left: none; width: 140px;"> SG7050VAN晶振 td> <td width="109" style="border-left: none; width: 109px;"> 75.000000MHz td> <td width="129" style="border-left: none; width: 129px;"> 7.00x5.00x1.60mm td> <td width="53" style="border-left: none; width: 53px;"> LVDS td> <td width="80" style="border-left: none; width: 80px;"> -20to70°C td> <td width="72" style="border-left: none; width: 72px;"> +/-20ppm td> tr> <tr height="23" style="height: 23px;"> <td height="23" width="113" style="height: 23px; border-top: none; width: 113px;"> X1G0042810069 td> <td width="140" style="border-top: none; border-left: none; width: 140px;"> SG7050VAN差分晶振 td> <td width="109" style="border-top: none; border-left: none; width: 109px;"> 150.000000MHz td> <td width="129" style="border-top: none; border-left: none; width: 129px;"> 7.00x5.00x1.60mm td> <td width="53" style="border-top: none; border-left: none; width: 53px;"> LVDS td> <td width="80" style="border-top: none; border-left: none; width: 80px;"> -20to70°C td> <td width="72" style="border-top: none; border-left: none; width: 72px;"> +/-20ppm td> tr> <tr height="23" style="height: 23px;"> <td height="23" width="113" style="height: 23px; border-top: none; width: 113px;"> X1G0042810071 td> <td width="140" style="border-top: none; border-left: none; width: 140px;"> SG7050VAN晶振 td> <td width="109" style="border-top: none; border-left: none; width: 109px;"> 156.250000MHz td> <td width="129" style="border-top: none; border-left: none; width: 129px;"> 7.00x5.00x1.60mm td> <td width="53" style="border-top: none; border-left: none; width: 53px;"> LVDS td> <td width="80" style="border-top: none; border-left: none; width: 80px;"> -20to70°C td> <td width="72" style="border-top: none; border-left: none; width: 72px;"> +/-20ppm td> tr> tbody> table>th="113" style="width: 113px;" /> th="140" style="width: 140px;" /> th="109" style="width: 109px;" /> th="129" style="width: 129px;" /> th="53" style="width: 53px;" /> th="80" style="width: 80px;" /> th="72" style="width: 72px;" /> tyle="font-size:16px"> 差分晶振常见的是3225晶振,5032晶振,7050title="晶振" target="_blank">晶振三种封装尺寸,文中所列举的是爱普生5x7体积的部分差分晶振编码.均为较高的频率点,为输出LVDS方式,电源电压范围2.5V/3.3V,振荡启动时间在电源电压最低时,所需时间为0秒.爱普生title="差分晶振" target="_blank">差分晶振具有性能强,精密稳定,低电压的特征,普遍用于对于高速网络要求的应用.
- 阅读(123)
- [技术支持]7B08020001晶振适用于工业产品选择2018年11月30日 09:42
tyle="font-size:16px"> TXC晶振以质量好价格优势成为市场的宠儿,工厂企业在选择title="晶振" target="_blank">晶振品牌时总会以TXC晶振为主,优先选择.TXC晶振尺寸小,精度稳定,性能好,不仅用于消费级产品并且在工业级产品领域也颇受欢迎.
tyle="font-size:16px"> 用于工业级产品的TXC晶振型号
<table border="1" bordercolor="#000000" style="width: 880px;"> <tbody> <tr> <td> TXC晶振型号 td> <td> 模型 td> <td> 频率 td> <td> 公差
(@25ºC) td> <td> 负载帽
(典型值) td> <td> 工作温度 td> <td> 外形尺寸 td> tr> <tr> <td> th="105" height="60" border="0" title="9C规格(pdf)" /> td> <td> 9C晶振 td> <td> 3.2~90MHz td> <td> ±30ppm的 td> <td> 18PF td> <td> -40?+85ºC td> <td> 12.7 x 4.8 x 3.80mm td> tr> <tr> <td> th="105" height="60" border="0" title="7A规格(pdf)" /> td> <td> 7A贴片晶振 td> <td> 8~80MHz td> <td> ±30ppm的 td> <td> 18PF td> <td> -40?+85ºC td> <td> 5.0 x 3.2 x 1.20mm td> tr> <tr> <td> th="105" height="60" border="0" title="7V规格(pdf)" /> td> <td> title="7V晶振" target="_blank">7V晶振 td> <td> 9.9~65MHz td> <td> ±30ppm的 td> <td> 为12pF td> <td> -40?+85ºC td> <td> 3.2 x 2.5 x 0.80mm td> tr> <tr> <td> th="105" height="60" border="0" title="7S规格(pdf)" /> td> <td> 7S晶振 td> <td> 12~64MHz td> <td> ±30ppm的 td> <td> 为12pF td> <td> -40?+85ºC td> <td> 2.5 x 2.0 x 0.75mm td> tr> <tr> <td> target="_blank">th="105" height="60" border="0" title="7B规格(pdf)" /> td> <td> 7B石英晶振 td> <td> 8~100MHz td> <td> ±30ppm的 td> <td> 18PF td> <td> -40?+85ºC td> <td> 5.0 x 3.2 x 0.90mm td> tr> <tr> <td> th="105" height="60" border="0" title="7M规格(pdf)" /> td> <td> title="7M晶振" target="_blank">7M晶振 td> <td> 10~54MHz td> <td> ±30ppm的 td> <td> 18PF td> <td> -40?+85ºC td> <td> 3.2 x 2.5 x 0.70mm td> tr> <tr> <td> th="105" height="60" border="0" title="8Z规格(pdf)" /> td> <td> 8Z贴片晶振 td> <td> 12~54MHz td> <td> ±30ppm的 td> <td> 18PF td> <td> -40?+85ºC td> <td> 2.5 x 2.0 x 0.55mm td> tr> tbody> table>tyle="font-size:16px"> 从以上TXC晶振型号中我们可以知道温度范围都在-40℃~+85℃,均为表贴式,尺寸小更利于电路空间的设计.精度范围都控制在30PPM以内,为工业级产品所需,并且提供黑色陶瓷面封装和金属面两种选择.每个晶振品牌都有的标志,而每款石英晶振,title="贴片晶振" target="_blank">贴片晶振都有一个型号,每个晶振根据不同的参数要求都有一个专属的编码,以下为亿金电子代理所提供的TXC晶振原厂编码.
tyle="font-size:16px"> 适用于工业产品的TXC晶振编码
<table border="1" cellpadding="0" cellspacing="0" class="" bordercolor="#000000" style="width: 880px;"> <tbody> <tr height="59" style="height: 59px;"> <td height="59" width="127" style="height: 59px; width: 127px;"> Manufacturer Part Number原厂编码 td> <td width="74" style="border-left: none; width: 75px;"> Manufacturer厂家 td> <td width="60" style="border-left: none; width: 60px;"> Series型号 td> <td width="92" style="border-left: none; width: 92px;"> Frequency td> <td width="91" style="border-left: none; width: 91px;"> Frequency Stability频率稳定度 td> <td width="121" style="border-left: none; width: 121px;"> Operating Temperature 工作温度 td> <td width="75" style="border-left: none; width: 75px;"> Package/Case包装/封装 td> <td width="163" style="border-left: none; width: 163px;"> Size/Dimension 尺寸 td> <td width="78" style="border-left: none; width: 79px;"> Height-Seated (Max)高度 td> tr> <tr height="30" style="height: 30px;"> <td height="30" style="height: 30px; border-top: none;"> 7B25070003 td> <td style="border-top: none; border-left: none;"> TXC晶振 td> <td style="border-top: none; border-left: none;"> title="7B晶振" target="_blank">7B晶振 td> <td style="border-top: none; border-left: none;"> 25MHz td> <td style="border-top: none; border-left: none;"> ±30ppm td> <td style="border-top: none; border-left: none;"> -20°C ~ 70°C td> <td style="border-top: none; border-left: none;"> 4-SMD td> <td style="border-top: none; border-left: none;"> (5.00mm x 3.20mm) td> <td style="border-top: none; border-left: none;"> (1.05mm) td> tr> <tr height="30" style="height: 30px;"> <td height="30" style="height: 30px; border-top: none;"> 7B26000005 td> <td style="border-top: none; border-left: none;"> TXC晶振 td> <td style="border-top: none; border-left: none;"> 7B晶振 td> <td style="border-top: none; border-left: none;"> 26MHz td> <td style="border-top: none; border-left: none;"> ±30ppm td> <td style="border-top: none; border-left: none;"> -40°C ~ 85°C td> <td style="border-top: none; border-left: none;"> 4-SMD td> <td style="border-top: none; border-left: none;"> (5.00mm x 3.20mm) td> <td style="border-top: none; border-left: none;"> (1.05mm) td> tr> <tr height="30" style="height: 30px;"> <td height="30" style="height: 30px; border-top: none;"> 7B26070001 td> <td style="border-top: none; border-left: none;"> TXC td> <td style="border-top: none; border-left: none;"> 7B晶振 td> <td style="border-top: none; border-left: none;"> 27MHz td> <td style="border-top: none; border-left: none;"> ±30ppm td> <td style="border-top: none; border-left: none;"> -20°C ~ 70°C td> <td style="border-top: none; border-left: none;"> 4-SMD td> <td style="border-top: none; border-left: none;"> (5.00mm x 3.20mm) td> <td style="border-top: none; border-left: none;"> (1.05mm) td> tr> <tr height="30" style="height: 30px;"> <td height="30" style="height: 30px; border-top: none;"> 7B27170002 td> <td style="border-top: none; border-left: none;"> TXC td> <td style="border-top: none; border-left: none;"> 7B晶振 td> <td style="border-top: none; border-left: none;"> 27.12MHz td> <td style="border-top: none; border-left: none;"> ±10ppm td> <td style="border-top: none; border-left: none;"> -20°C ~ 70°C td> <td style="border-top: none; border-left: none;"> 4-SMD td> <td style="border-top: none; border-left: none;"> (5.00mm x 3.20mm) td> <td style="border-top: none; border-left: none;"> (1.05mm) td> tr> <tr height="30" style="height: 30px;"> <td height="30" style="height: 30px; border-top: none;"> 7B48000030 td> <td style="border-top: none; border-left: none;"> TXC晶振 td> <td style="border-top: none; border-left: none;"> 7B晶振 td> <td style="border-top: none; border-left: none;"> 48MHz td> <td style="border-top: none; border-left: none;"> ±30ppm td> <td style="border-top: none; border-left: none;"> -20°C ~ 70°C td> <td style="border-top: none; border-left: none;"> 4-SMD td> <td style="border-top: none; border-left: none;"> (5.00mm x 3.20mm) td> <td style="border-top: none; border-left: none;"> (1.05mm) td> tr> <tr height="30" style="height: 30px;"> <td height="30" style="height: 30px; border-top: none;"> 7B50000003 td> <td style="border-top: none; border-left: none;"> TXC td> <td style="border-top: none; border-left: none;"> 7B晶振 td> <td style="border-top: none; border-left: none;"> 50MHz td> <td style="border-top: none; border-left: none;"> ±30ppm td> <td style="border-top: none; border-left: none;"> -40°C ~ 85°C td> <td style="border-top: none; border-left: none;"> 4-SMD td> <td style="border-top: none; border-left: none;"> (5.00mm x 3.20mm) td> <td style="border-top: none; border-left: none;"> (1.05mm) td> tr> <tr height="30" style="height: 30px;"> <td height="30" style="height: 30px; border-top: none;"> 7BA1200001 td> <td style="border-top: none; border-left: none;"> TXC晶振 td> <td style="border-top: none; border-left: none;"> 7B晶振 td> <td style="border-top: none; border-left: none;"> 112MHz td> <td style="border-top: none; border-left: none;"> ±10ppm td> <td style="border-top: none; border-left: none;"> 0°C ~ 80°C td> <td style="border-top: none; border-left: none;"> 4-SMD td> <td style="border-top: none; border-left: none;"> (5.00mm x 3.20mm) td> <td style="border-top: none; border-left: none;"> (1.05mm) td> tr> <tr height="30" style="height: 30px;"> <td height="30" style="height: 30px; border-top: none;"> 7B16000202 td> <td style="border-top: none; border-left: none;"> TXC td> <td style="border-top: none; border-left: none;"> 7B晶振 td> <td style="border-top: none; border-left: none;"> 16MHz td> <td style="border-top: none; border-left: none;"> ±10ppm td> <td style="border-top: none; border-left: none;"> -20°C ~ 70°C td> <td style="border-top: none; border-left: none;"> 4-SMD td> <td style="border-top: none; border-left: none;"> (5.00mm x 3.20mm) td> <td style="border-top: none; border-left: none;"> (1.05mm) td> tr> <tr height="30" style="height: 30px;"> <td height="30" style="height: 30px; border-top: none;"> 7B20000001 td> <td style="border-top: none; border-left: none;"> TXC td> <td style="border-top: none; border-left: none;"> 7B晶振 td> <td style="border-top: none; border-left: none;"> 20MHz td> <td style="border-top: none; border-left: none;"> ±10ppm td> <td style="border-top: none; border-left: none;"> -20°C ~ 75°C td> <td style="border-top: none; border-left: none;"> 4-SMD td> <td style="border-top: none; border-left: none;"> (5.00mm x 3.20mm) td> <td style="border-top: none; border-left: none;"> (1.05mm) td> tr> <tr height="30" style="height: 30px;"> <td height="30" style="height: 30px; border-top: none;"> 7B08020001 td> <td style="border-top: none; border-left: none;"> TXC晶振 td> <td style="border-top: none; border-left: none;"> 7B晶振 td> <td style="border-top: none; border-left: none;"> 8MHz td> <td style="border-top: none; border-left: none;"> ±30ppm td> <td style="border-top: none; border-left: none;"> -40°C ~ 85°C td> <td style="border-top: none; border-left: none;"> 4-SMD td> <td style="border-top: none; border-left: none;"> (5.00mm x 3.20mm) td> <td style="border-top: none; border-left: none;"> (1.05mm) td> tr> <tr height="30" style="height: 30px;"> <td height="30" style="height: 30px; border-top: none;"> 7B12000199 td> <td style="border-top: none; border-left: none;"> TXC td> <td style="border-top: none; border-left: none;"> 7B晶振 td> <td style="border-top: none; border-left: none;"> 12MHz td> <td style="border-top: none; border-left: none;"> ±30ppm td> <td style="border-top: none; border-left: none;"> -40°C ~ 85°C td> <td style="border-top: none; border-left: none;"> 4-SMD td> <td style="border-top: none; border-left: none;"> (5.00mm x 3.20mm) td> <td style="border-top: none; border-left: none;"> (1.05mm) td> tr> <tr height="30" style="height: 30px;"> <td height="30" style="height: 30px; border-top: none;"> 7B24500006 td> <td style="border-top: none; border-left: none;"> TXC晶振 td> <td style="border-top: none; border-left: none;"> 7B晶振 td> <td style="border-top: none; border-left: none;"> 24.576MHz td> <td style="border-top: none; border-left: none;"> ±30ppm td> <td style="border-top: none; border-left: none;"> -40°C ~ 85°C td> <td style="border-top: none; border-left: none;"> 4-SMD td> <td style="border-top: none; border-left: none;"> (5.00mm x 3.20mm) td> <td style="border-top: none; border-left: none;"> (1.05mm) td> tr> <tr height="30" style="height: 30px;"> <td height="30" style="height: 30px; border-top: none;"> 7B18400003 td> <td style="border-top: none; border-left: none;"> TXC td> <td style="border-top: none; border-left: none;"> 7B晶振 td> <td style="border-top: none; border-left: none;"> 18.432MHz td> <td style="border-top: none; border-left: none;"> ±20ppm td> <td style="border-top: none; border-left: none;"> -40°C ~ 85°C td> <td style="border-top: none; border-left: none;"> 4-SMD td> <td style="border-top: none; border-left: none;"> (5.00mm x 3.20mm) td> <td style="border-top: none; border-left: none;"> (1.05mm) td> tr> tbody> table>th="127" style="width: 127px;" /> th="74" style="width: 75px;" /> th="60" style="width: 60px;" /> th="92" style="width: 92px;" /> th="91" style="width: 91px;" /> th="121" style="width: 121px;" /> th="75" style="width: 75px;" /> th="163" style="width: 163px;" /> th="78" style="width: 79px;" /> tyle="font-size:16px"> title="TXC晶振" target="_blank">TXC晶振选用符合欧盟环保指令的材料生产,运用ISO质量管理体系操作,发展至今在国内外,台湾,香港,苏州,泰国,马来西亚,深圳,重庆等地设有研发生产基地,销售办事处遍布世界各地.有关title="TXC晶振" target="_blank">TXC晶振编码更多信息欢迎咨询亿金电子.
- 阅读(324)
- [亿金快讯]大真空XXD26000JHC温补晶振原厂编码2018年11月29日 18:02
tyle="font-size: 16px;">DSX321G-8M-12PF-1C208000BC0石英晶体谐振器DSB321SDN26M-1XTW26000MAA温补晶振DSB321SDA26M-1XTW26000CGA温补晶振1N226000AA0L-DSX321G-26.000MHZ石英晶体谐振器压控温补DSA321SC-1XTV19200UGD压控温补DSA321SCL-19.200MHZ-1XTV19200FKA温补晶振DSB321SDN-1XTW16368MAA压控温补DSA321SDN-26MHZ-1XTV26000MCA压控温补-DSA221SCL-1XXA26000FJB压控温补1XXB26000MAA-DSB221SDN压控温补DSB211SDN-1XXD26000MAAtyle="font-size: 16px;">title="温补晶振" target="_blank">温补晶振tyle="font-size: 16px;">,石英晶体谐振器1N216000AB0D-DSX321G-16MHz-9pf压控温补DSA321SDN-26MHZ-1XTV26000MCA石英晶体谐振器DSX221G-1ZBB26000AB0B-9PF温补晶振1XXB26000CTB-DSB221SDA石英晶体谐振器DSX321G-9PF-1N226000AA0D温补晶振DSB321SDA-16.367667MHz-1XTW16367CFB石英晶体谐振DST210A-1TJG125DR1A0004-32.768K压控温补晶振VC-TCXO--1XTQ10000VCA-DSA535SD温补晶振DSB321SDA-16.367667MHz-1XTW16367CFtyle="font-size: 16px;">title="有源晶振" target="_blank">有源晶振tyle="font-size: 16px;">1XTW26000CGA石英晶体谐振器DMX-26S-32.768KHZ-10PPM-1TJS125BJ4A421P石英晶体谐振器1C212000AA0H-KDS-12.000MHZ-10PF-10PPM-DSX321G热敏晶体DSR221STH19.2M-1RAA19200AAG热敏晶体DSR221STH-26M-1RAA26000ABA热敏晶体DSR221STH-1RAA26000AFA石英晶体谐振器1TJF125DP1AI00P-KDS-DST310S-32.768KHZ小封装的有源晶振1XSF026000AH6-KDS-OSC-DSO221SH-26MHZ-1.8V-20PPMtyle="font-size: 16px;">title="温补晶振" target="_blank">温补晶振tyle="font-size: 16px;">1XXB26000CTB--DSB221SDA-26MHz-2.8V-压控温补VC-TCXO-26.000MHZ-1.8V-2520-size-(1XXA26000FEB)石英晶体谐振器DSX211G-27.12MHZ-2016-size温补晶振DSB211SDM-26MHZ-1XXD26000JHC温补晶振TCXO-38.400MHZ-0.5PPM-2520-(1XXB38400MAA)石英晶体谐振器DST310S-1TJF125DP1AI001石英晶体谐振器32.768KHZ-DST310-1TJF125DP1A00A石英晶体谐振器1C326000AB0AR-26MHZ-DSX321G
- 阅读(196)
- [亿金快讯]美国艾迪悌XLL735135.000000差分晶振原厂编码代码参数分解2018年11月28日 17:30
- tyle="font-size:16px"> Integrated Device Technology, Inc.是美国title="IDT晶振" target="_blank">IDT晶振的英文全称.IDT晶振集团是电子元件行业协会 (ECIA) 的正式成员,电子元件行业协会是电子元器件制造商及其供应商授权分销合作伙伴和独立现场销售代表组成的非营利性行业协会. 发展至今在世界各地均设有石英晶振,title="有源晶振" target="_blank">有源晶振研发生产基地,销售网点遍布全球,是世界500强企业.以下为IDT有源晶振,美国艾迪悌XLL735135.000000差分晶振原厂代码编码参数分解
tyle="font-size:16px"> 艾迪悌差分晶振型号target="_blank">title="美国艾迪悌XLL735135.000000差分晶振原厂编码参数分解" alt="美国艾迪悌XLL735135.000000差分晶振原厂编码参数分解" width="890" height="414" style="text-align: center; word-spacing: -1.5px;" />tyle="font-size:16px">
tyle="font-size:16px"> IDT晶振集团所生产石英晶体振荡器,有源晶振,title="贴片晶振" target="_blank">贴片晶振,有源差分晶振均采用ISO14001环境管理系统进行,超强的环保方式, 减小业务活动对环境造成的负担,并通过业务发展推进环境改善.IDT石英晶振采用严格的符合国际标准的质量管理体系,每一道生产工序都必须经过反复的检查测试.
tyle="font-size:16px"> 艾迪悌差分晶振代码编码
tyle="font-size:16px">
<table border="1" cellpadding="0" cellspacing="0" class="" bordercolor="#000000" style="width: 880px;"> <tbody> <tr height="46" style="height: 46px;"> <td height="46" width="175" style="height: 46px; width: 175px;"> Digi-Key Part Number td> <td width="159" style="border-left: none; width: 159px;"> 原厂代码 td> <td width="73" style="border-left: none; width: 73px;"> 品牌 td> <td width="272" style="border-left: none; width: 272px;"> 参数 td> <td width="65" style="border-left: none; width: 65px;"> 输出 td> <td width="60" style="border-left: none; width: 60px;"> 电压 td> <td width="154" style="border-left: none; width: 155px;"> 尺寸 td> tr> <tr height="24" style="height: 24px;"> <td height="24" style="height: 24px; border-top: none;"> 631-1365-ND td> <td style="border-top: none; border-left: none;"> XLL736060.000000I td> <td style="border-top: none; border-left: none;"> IDT晶振 td> <td style="border-top: none; border-left: none;"> OSCILLATOR XO 60.000MHZ LVDS SMD td> <td style="border-top: none; border-left: none;"> LVDS td> <td style="border-top: none; border-left: none;"> 3.3V td> <td style="border-top: none; border-left: none;"> (7.50mm x 5.20mm) td> tr> <tr height="24" style="height: 24px;"> <td height="24" style="height: 24px; border-top: none;"> XLL735135.000000X-ND td> <td style="border-top: none; border-left: none;"> XLL735135.000000X td> <td style="border-top: none; border-left: none;"> IDT晶振 td> <td style="border-top: none; border-left: none;"> OSC XO 135.000MHZ LVDS SMD td> <td style="border-top: none; border-left: none;"> LVDS td> <td style="border-top: none; border-left: none;"> 3.3V td> <td style="border-top: none; border-left: none;"> (7.50mm x 5.20mm) td> tr> <tr height="24" style="height: 24px;"> <td height="24" style="height: 24px; border-top: none;"> XLL735040.000000X-ND td> <td style="border-top: none; border-left: none;"> XLL735040.000000X td> <td style="border-top: none; border-left: none;"> IDT晶振 td> <td style="border-top: none; border-left: none;"> OSCILLATOR XO 40.000MHZ LVDS SMD td> <td style="border-top: none; border-left: none;"> LVDS td> <td style="border-top: none; border-left: none;"> 3.3V td> <td style="border-top: none; border-left: none;"> (7.50mm x 5.20mm) td> tr> <tr height="24" style="height: 24px;"> <td height="24" style="height: 24px; border-top: none;"> XLP735025.000000X-ND td> <td style="border-top: none; border-left: none;"> XLP735025.000000X td> <td style="border-top: none; border-left: none;"> IDT晶振 td> <td style="border-top: none; border-left: none;"> OSC XO 25.000MHZ LVPECL SMD td> <td style="border-top: none; border-left: none;"> LVPECL td> <td style="border-top: none; border-left: none;"> 3.3V td> <td style="border-top: none; border-left: none;"> (7.50mm x 5.20mm) td> tr> <tr height="24" style="height: 24px;"> <td height="24" style="height: 24px; border-top: none;"> XLL726135.000000X-ND td> <td style="border-top: none; border-left: none;"> XLL726135.000000X td> <td style="border-top: none; border-left: none;"> IDT晶振 td> <td style="border-top: none; border-left: none;"> OSC XO 135.000MHZ LVDS SMD td> <td style="border-top: none; border-left: none;"> LVDS td> <td style="border-top: none; border-left: none;"> 2.5V td> <td style="border-top: none; border-left: none;"> (7.50mm x 5.20mm) td> tr> <tr height="24" style="height: 24px;"> <td height="24" style="height: 24px; border-top: none;"> XLL735060.000000I-ND td> <td style="border-top: none; border-left: none;"> XLL735060.000000I td> <td style="border-top: none; border-left: none;"> IDT晶振 td> <td style="border-top: none; border-left: none;"> OSCILLATOR XO 60.000MHZ LVDS SMD td> <td style="border-top: none; border-left: none;"> LVDS td> <td style="border-top: none; border-left: none;"> 3.3V td> <td style="border-top: none; border-left: none;"> (7.50mm x 5.20mm) td> tr> <tr height="24" style="height: 24px;"> <td height="24" style="height: 24px; border-top: none;"> XLL735040.000000I-ND td> <td style="border-top: none; border-left: none;"> XLL735040.000000I td> <td style="border-top: none; border-left: none;"> title="IDT晶振" target="_blank">IDT晶振 td> <td style="border-top: none; border-left: none;"> OSCILLATOR XO 40.000MHZ LVDS SMD td> <td style="border-top: none; border-left: none;"> LVDS td> <td style="border-top: none; border-left: none;"> 3.3V td> <td style="border-top: none; border-left: none;"> (7.50mm x 5.20mm) td> tr> <tr height="24" style="height: 24px;"> <td height="24" style="height: 24px; border-top: none;"> XLL736135.000000X-ND td> <td style="border-top: none; border-left: none;"> XLL736135.000000X td> <td style="border-top: none; border-left: none;"> IDT晶振 td> <td style="border-top: none; border-left: none;"> OSC XO 135.000MHZ LVDS SMD td> <td style="border-top: none; border-left: none;"> LVDS td> <td style="border-top: none; border-left: none;"> 3.3V td> <td style="border-top: none; border-left: none;"> (7.50mm x 5.20mm) td> tr> <tr height="24" style="height: 24px;"> <td height="24" style="height: 24px; border-top: none;"> XLL736106.250000X-ND td> <td style="border-top: none; border-left: none;"> XLL736106.250000X td> <td style="border-top: none; border-left: none;"> IDT晶振 td> <td style="border-top: none; border-left: none;"> OSCILLATOR XO 106.25MHZ LVDS SMD td> <td style="border-top: none; border-left: none;"> LVDS td> <td style="border-top: none; border-left: none;"> 3.3V td> <td style="border-top: none; border-left: none;"> (7.50mm x 5.20mm) td> tr> <tr height="24" style="height: 24px;"> <td height="24" style="height: 24px; border-top: none;"> XLL526155.520000I-ND td> <td style="border-top: none; border-left: none;"> XLL526155.520000I td> <td style="border-top: none; border-left: none;"> IDT晶振 td> <td style="border-top: none; border-left: none;"> OSC XO 155.520MHZ LVDS SMD td> <td style="border-top: none; border-left: none;"> LVDS td> <td style="border-top: none; border-left: none;"> 2.5V td> <td style="border-top: none; border-left: none;"> (5.00mm x 3.20mm) td> tr> <tr height="24" style="height: 24px;"> <td height="24" style="height: 24px; border-top: none;"> XLL736080.000000I-ND td> <td style="border-top: none; border-left: none;"> XLL736080.000000I td> <td style="border-top: none; border-left: none;"> IDT晶振 td> <td style="border-top: none; border-left: none;"> OSCILLATOR XO 80.000MHZ LVDS SMD td> <td style="border-top: none; border-left: none;"> LVDS td> <td style="border-top: none; border-left: none;"> 3.3V td> <td style="border-top: none; border-left: none;"> (7.50mm x 5.20mm) td> tr> <tr height="24" style="height: 24px;"> <td height="24" style="height: 24px; border-top: none;"> XLL536080.000000I-ND td> <td style="border-top: none; border-left: none;"> XLL536080.000000I td> <td style="border-top: none; border-left: none;"> IDT晶振 td> <td style="border-top: none; border-left: none;"> OSCILLATOR XO 80.000MHZ LVDS SMD td> <td style="border-top: none; border-left: none;"> LVDS td> <td style="border-top: none; border-left: none;"> 3.3V td> <td style="border-top: none; border-left: none;"> (5.15mm x 3.35mm) td> tr> <tr height="24" style="height: 24px;"> <td height="24" style="height: 24px; border-top: none;"> XLL730106.250000X-ND td> <td style="border-top: none; border-left: none;"> XLL730106.250000X td> <td style="border-top: none; border-left: none;"> IDT晶振 td> <td style="border-top: none; border-left: none;"> OSCILLATOR XO 106.25MHZ LVDS SMD td> <td style="border-top: none; border-left: none;"> LVDS td> <td style="border-top: none; border-left: none;"> 3.3V td> <td style="border-top: none; border-left: none;"> (7.50mm x 5.20mm) td> tr> <tr height="24" style="height: 24px;"> <td height="24" style="height: 24px; border-top: none;"> XLL730060.000000I-ND td> <td style="border-top: none; border-left: none;"> XLL730060.000000I td> <td style="border-top: none; border-left: none;"> IDT晶振 td> <td style="border-top: none; border-left: none;"> OSCILLATOR XO 60.000MHZ LVDS SMD td> <td style="border-top: none; border-left: none;"> LVDS td> <td style="border-top: none; border-left: none;"> 3.3V td> <td style="border-top: none; border-left: none;"> (7.50mm x 5.20mm) td> tr> <tr height="24" style="height: 24px;"> <td height="24" style="height: 24px; border-top: none;"> XLL735106.250000I-ND td> <td style="border-top: none; border-left: none;"> XLL735106.250000I td> <td style="border-top: none; border-left: none;"> IDT晶振 td> <td style="border-top: none; border-left: none;"> OSCILLATOR XO 106.25MHZ LVDS SMD td> <td style="border-top: none; border-left: none;"> LVDS td> <td style="border-top: none; border-left: none;"> 3.3V td> <td style="border-top: none; border-left: none;"> (7.50mm x 5.20mm) td> tr> <tr height="24" style="height: 24px;"> <td height="24" style="height: 24px; border-top: none;"> XLP535075.000000X-ND td> <td style="border-top: none; border-left: none;"> XLP535075.000000X td> <td style="border-top: none; border-left: none;"> IDT晶振 td> <td style="border-top: none; border-left: none;"> OSC XO 75.000MHZ LVPECL SMD td> <td style="border-top: none; border-left: none;"> LVPECL td> <td style="border-top: none; border-left: none;"> 3.3V td> <td style="border-top: none; border-left: none;"> (5.15mm x 3.35mm) td> tr> <tr height="24" style="height: 24px;"> <td height="24" style="height: 24px; border-top: none;"> XLP535025.000000X-ND td> <td style="border-top: none; border-left: none;"> XLP535025.000000X td> <td style="border-top: none; border-left: none;"> IDT晶振 td> <td style="border-top: none; border-left: none;"> OSC XO 25.000MHZ LVPECL SMD td> <td style="border-top: none; border-left: none;"> LVPECL td> <td style="border-top: none; border-left: none;"> 3.3V td> <td style="border-top: none; border-left: none;"> (5.15mm x 3.35mm)tyle="font-size: 16px; font-family: arial, helvetica, clean, sans-serif;"> td> tr> tbody> table> tyle="font-size:16px"> IDT差分晶振输出电压低抖动晶振能达到1V,起振时间为0秒,随机抖动性能在0.2ps Typ. 3ps Typ. 25ps Typ. 4ps Typ.相位抖动能从0.3ps Max-1ps Max.常见的输出方式有HCMOS,LVPECL,LVDS 和 HCSL,满足不同领域产品需求.title="差分晶振" target="_blank">差分晶振工作温度以及储存温度范围远远超过了普通晶振,达到了-40℃~+100℃的温度范围.精度稳定可精确到±10PM,IDT差分石英晶振满足市场需求,实现高频高精度等要求,更加保障了各种系统参考时钟的可靠性.th="175" style="width: 175px;" /> th="159" style="width: 159px;" /> th="73" style="width: 73px;" /> th="272" style="width: 272px;" /> th="65" style="width: 65px;" /> th="60" style="width: 60px;" /> th="154" style="width: 155px;" /> - 阅读(146)
- [亿金快讯]美国Abracon晶振编码2018年11月20日 10:06
tyle="font-size:16px"> ABLS-12.000MHZ-B4-T晶振ASTX-H11-B-16.000MHZ-I25-T温度补偿晶振ASCO2-27.000MHZ-EK-T3欧美进口晶振ASE2-25.000MHZ-ETtitle="晶振" target="_blank">晶振ASFL1-25.000MHZ-EK-T有源贴片晶振ASE3-25.000MHZ-LC-T进口SMD晶振ABM3-18.432MHZ-D2Y-T石英晶体谐振器ABM8G-25.000MHZ-18-D2Y-T美国晶振ABM3B-16.000MHZ-B2-T进口石英晶振ABLS-6.144MHZ-B4-T艾博康晶振ABLS-10.000MHZ-B2-T石英晶体ASTX-H11-B-19.200MHZ-I25-T温度补偿晶振AST3TQ53-T-20.000MHZ-5-C温补晶振ASA-16.000MHZ-L-T有源晶振ASFL1-4.000MHZ-EK-T美国进口晶振ASFL1-12.288MHZ-EC-T带电压晶振ABMM-6.000MHZ-B2-T美国晶振ABM8G-26.000MHZ-18-D2Y-T贴片晶振ABM8AIG-25.000MHZ-12-2Z-T3艾博康贴片晶振ABLS3-4.096MHZ-D4Y-T石英晶振ABLS-4.500MHZ-B4-T无源晶振ASTMHTD-100.000MHZ-ZK-E-T3石英晶体振荡器ABS06-32.768KHZ-T美国晶振ABM8G-24.000MHZ-18-D2Y-T贴片晶振ABM3C-12.000MHZ-D4Y-T艾博康贴片晶振ABLS-13.000MHZ-B4-T晶振ABLS-8.000MHZ-T插件晶振ASTX-H11-B-19.680MHZ-I25-T温度补偿晶振ASA-26.000MHZ-L-T石英晶体振荡器ASFL1-50.000MHZ-EK-T艾博康有源晶振ASFL1-24.000MHZ-EC-T低功耗晶振ABLS7M-12.000MHZ-B-2-Ttitle="贴片晶振" target="_blank">贴片晶振ABM8G-12.000MHZ-18-D2Y-T进口石英晶振ABM8G-25.000MHZ-B4Y-T美国SMD晶振ABLS3-8.000MHZ-D4Y-T石英晶体ABLS-8.000MHZ-D-T无源晶振ASTX-H11-B-20.000MHZ-I25-T温度补偿晶振tyle="font-size:16px">AST3TQ-26.000MHZ-1温补晶振ASA-12.000MHZ-L-T有源贴片晶振ASFL1-48.000MHZ-EK-T进口SMD晶振ASFL1-66.666MHZ-EC-T晶振ABLS7M-16.000MHZ-B-2-T进口石英晶振ABM3B-10.000MHZ-10-1-U-T艾博康贴片晶振ABM2-8.000MHZ-D4Y-T无源晶振
tyle="font-size:16px"> ABLS3-16.000MHZ-D4Y-T插件晶振ABLS2-12.000MHZ-D4Y-T晶体谐振器ASTX-H11-B-24.000MHZ-I25-T温度补偿晶振AST3TQ-T-25.000MHZ-50-Ctitle="温补晶振" target="_blank">温补晶振ASA-40.000MHZ-L-T美国进口晶振ASFL3-24.000MHZ-EK-T带电压晶振ASE-12.000MHZ-ET有源晶振ABM3B-155-12.800MHZ-T艾博康贴片晶振ABM3-10.0000MHZ-D2Y-T美国SMD晶振ABM3-12.000MHZ-D2Y-T石英晶体ABLS3-3.6864MHZ-D4Y-T无源晶振ABLS-7.3728MHZ-T美国进口晶振ASTX-H11-B-26.000MHZ-I25-T温度补偿晶振ASFL1-27.000MHZ-L-T有源晶振ASE2-22.000MHZ-ET美国进口晶振ABM8-24.000MHZ-B2-T石英晶体ABM8-16.000MHZ-B2-T石英晶体谐振器ABS06-107-32.768KHZ-T美国晶振ASE-25.000MHZ-ET艾博康有源晶振ASEK2-32.768KHZ-LRT低功耗晶振ASE3-25.000MHZ-EK-T有源晶振ABM8G-14.7456MHZ-18-D2Y-T艾博康贴片晶振ABM8AIG-27.000MHZ-12-2Z-T3无源晶振ABM3-24.000MHZ-D2Y-T贴片晶振ABM8AIG-24.000MHZ-12-2Z-T3进口石英晶振ABLS3-4.000MHZ-D4Y-T石英晶振ABLS-20.000MHZ-B4-T插件晶振ASTX-H11-19.200MHZ-I25-T温度补偿晶振AST3TQ-40.000MHZ-5温补晶振ASTXR-12-38.400MHZ-514054-T温补晶振ASA-60.000MHZ-L-T艾博康有源晶振ASFL1-16.384MHZ-EC-T低功耗晶振ASE-24.000MHZ-ET石英晶体振荡器ABM10-16.000MHZ-E20-T美国SMD晶振ABM3B-20.000MHZ-10-1-U-T无源晶振ABM3-16.000MHZ-B2-T石英晶体谐振器ABLS3-15.000MHZ-D4Y-T晶体谐振器ABLS-3.6864MHZ-DT艾博康晶振ASTX-H12-20.000MHZ-T温补晶振ASA-19.200MHZ-L-T进口SMD晶振ASFL1-27.000MHZ-EC-T晶振ASE-50.000MHZ-ET有源贴片晶振ABMM-7.3728MHZ-B2-T无源晶振ABM8G-16.000MHZ-B4Y-T石英晶体ABM8AIG-16.384MHZ-12-2Z-T3美国晶振ABLS3-4.9152MHZ-D4Y-TD-106.250MHZ-ZK-E-T3石英晶体振荡器ASTX-H12-44.000MHZ-T温度补偿晶振ASCO2-19.200MHZ-EK-T3欧美进口晶振ABLS-6.000MHZ-B4-T美国进口晶振ASTMHTE-8.000MHZ-ZK-E-T3石英晶体振荡器美国进口晶振ABLS-14.7456MHZ-B4H-Ttitle="晶振" target="_blank">晶振ASTX-H11-13.000MHZ-I25-T温度补偿晶振ASTXR-12-26.000MHZ-512883title="温补晶振" target="_blank">温补晶振ASA-20.000MHZ-L-T带电压晶振ASCO2-20.000MHZ-EK-T3欧美进口晶振ASFL1-11.0592MHZ-L-T有源贴片晶振ASCO-8.000MHZ-EK-T3进口SMD晶振ASTX-H12-40.000MHZ-T温度补偿晶振ASCO-25.000MHZ-EK-T3低功耗晶振ASFL1-4.000MHZ-EC-T美国进口晶振ASFL3-16.000MHZ-EK-T带电压晶振ABMM-8.000MHZ-B2-T晶振ABM2-13.000MHZ-D4Y-T进口石英晶振ABM8AIG-26.000MHZ-12-2Z-T3美国SMD晶振ABM3B-24.000MHZ-10-1-U-T石英晶体谐振器ABM8AIG-22.1184MHZ-12-2Z-T3贴片晶振AST3TQ53-T-24.576MHZ-5-C温补晶振ABLS3-9.8304MHZ-D4Y-T艾博康晶振ABLS-3.6864MHZ-B4-T石英晶体ASTX-H11-16.000MHZ-I25-T温度补偿晶振AST3TQ-10.00MHZ-1温补晶振ASCO2-10.000MHZ-EK-T3低功耗晶振ASFL1-3.6864MHZ-L-T石英晶体振荡器ASEK-32.768KHZ-LRT艾博康有源晶振ABLS3-6.000MHZ-D4Y-T石英晶振ABLS-5.000MHZ-B4-T晶体谐振器ASTMHTASTX-H11-B-13.000MHZ-I25-T温度补偿晶振ASFL3-20.000MHZ-EK-T低功耗晶振ASE-40.000MHZ-ET进口SMD晶振ASFL1-14.7456MHZ-EK-T晶振ASV-50.000MHZ-EJ-T石英晶体振荡器ABM3C-32.000MHZ-D4Y-T美国SMD晶振ABM7-25.000MHZ-D2Y-T石英晶体ASE2-50.000MHZ-ET带电压晶振ASDK-32.768KHZ-LRT有源晶振ASV-11.0592MHZ-E-T有源贴片晶振ABM10AIG-27.000MHZ-4Z-T3无源晶振ABM8G-16.000MHZ-18-D2Y-T石英晶体title="谐振器" target="_blank">谐振器ASE2-30.000MHZ-ET低功耗晶振ASDK2-32.768KHZ-LRT石英晶体振荡器ASV-50.000MHZ-E-T美国进口晶振ABM10AIG-32.000MHZ-4Z-T3石英晶体ASV-3.6864MHZ-E-T艾博康有源晶振ABM7-25.000MHZ-D2Y-T石英晶体ASE2-50.000MHZ-ET带电压晶振ASDK-32.768KHZ-LRT有源晶振ASV-11.0592MHZ-E-T有源贴片晶振ASTX-H11-B-32.000MHZ-I25-T温度补偿晶振
- 阅读(5)
- [技术支持]Cardinal石英晶体振荡器编码2018年11月19日 09:17
- tyle="font-size:16px">CFVED-A7BP-155.52TS贴片差分晶振CFE4-A7BP-212.5差分输出晶振CPPT1-A3B6-22.1184TS进口贴片晶振CTED-A5B3-155.52TStyle="font-size: 16px; ">title="温补晶振" target="_blank">温补晶振tyle="font-size:16px">CFVE-A7BP-622.08TS差分晶振CFE4-A7BP-156.25贴片差分晶振CPPT1-A3B6-20.0TS美国石英晶振CPPT7-A7B6-24.0TS贴片晶振CFVED-A7BP-622.08TS美国进口晶振CFL4-A7BP-156.25差分输出晶体振荡器CC622E9差分输出晶振CPPC4L-A7BR-125.0TS石英晶体振荡器CTL-A5B3-156.25TS温补晶振CFVL-A7BP-155.52TS差分输出晶体振荡器CPPC7LT-A7BR-32.768TS有源晶体振荡器CPPC7L-B6-14.318TS带电压晶振CPPC7L-A7BP-12.0TS带电压晶振CTED-A5B3-311.04TS温补晶振CPPLC7Z-A7BP-10.0TS美国石英晶振CPPC7LZ-A7B6-44.2368TS贴片晶振CPPC7L-B6-16.384TS晶振CPPC7L-A5BP-25.1658TStyle="font-size: 16px; ">title="有源晶振" target="_blank">有源晶振tyle="font-size:16px">CTED-A5B3-212.5TS温补晶振CFVED-A7BP-156.25TS差分输出晶振CFE4-A7BP-311.04差分晶体振荡器CPPT1-A3B6-48.0TS石英晶振CPPLC7Z-A7BP-27.12TS进口贴片晶振CPPLC7LT-BP-25.0PD美国石英晶振CPPC5LZ-A7BP-50.0TS石英晶体振荡器CPPC7L-A5BP-31.25TS石英晶体振荡器CPPV7-A7BR-122.88差分输出晶振CFVE-A7BP-155.52TS差分晶体振荡器CFVED-A7BP-212.5TS差分晶体振荡器CPPC7L-A7BR-32.768TS贴片晶振CTL-A5B3-311.04TS温补晶振CPPV7-A7BP-200.0贴片差分晶振Ctyle="font-size:16px">CFVED-A7BP-311.04TS有源差分晶振CFL4-A7BP-155.52美国进口晶振CVFSV7贴片差分晶振CPPLC7L-B6-26.0000TS晶振CPPLC7L-A7BR-30.0TS石英晶振CPPC7-A7BP-14.0TS贴片晶振CPPC7-A7BP-25.175TS普通有源晶振CFE4-A7BP-622.08有源差分晶振CVFSE7晶振CPPT7L-BP-125.0TS石英晶振CPPLC7L-A7B6-130.0TS进口贴片晶振CPPC7-A7BP-11.0592TS有源晶体振荡器CTL-A5B3-155.52TS温补晶振CPPLC7LT-BP-30.72PD晶振CPPC7-A7BP-14.7456TS美国石英晶振CPPC7L-A7BR-32.0TS美国进口晶振CFL4-A7BP-212.5差分晶振CC622V9差分晶体振荡器CPPC7Z-A5BP-28.0TS石英晶体振荡器tyle="font-size:16px">TED-A5B3-622.08TStyle="font-size: 16px; ">title="温补晶振" target="_blank">温补晶振tyle="font-size:16px">tyle="font-size:16px">CPPC7-A7BP-4.0TS普通有源晶振CPPC1-A7BR-9.8304TS有源晶体振荡器CPPLC7L-A7B6-14.7456TS石英晶体振荡器CPPC7-A7BP-149.86TS进口贴片晶振CPPC7-A7BR-20.0TS带电压晶振CPPT7-A7B6-16.0TS石英晶体振荡器CPPC7LZ-A7BR-20.0TS进口贴片晶振CPPC7L-A7BR-40.5PD有源晶振CPPV7-BR-105.0美国进口晶振CTL-A5B3-212.5TS温补晶振CFVL-A7BP-156.25TS差分晶振CFL4-A7BP-311.04贴片差分晶振CV622E9有源差分晶振CPPC1T-A7BP-40.25TS贴片晶振CPPLC7LT-BP-31.45728PD有源晶体振荡器CPPC7-A7BP-2.0TS石英晶振CPPC7L-A7BP-78.0TS有源晶振CFL4-A7BP-622.08差分输出晶振CV622V9美国进口晶振CPPC1-A7BR-96.0TS美国石英晶振CPPLC7L-A7BR-32.0TS贴片晶振CPPC5LZ-A7BP-88.888PD晶振CPPC7L-A7B6-16.384TS石英晶体振荡器CTL-A5B3-622.08TS温补晶振C3FSC7差分输出晶体振荡器CPPC4-A7BR-26.95TS进口贴片晶振CPPLC7L-A7B6-14.74TS美国石英晶振CPPC7-A7BP-20.0TS石英晶体振荡器CPPC7-A7BP-29.4912TS贴片晶振CPPLC7LT-BR-100.0TS有源晶振CPPV7-A7BR-50.0TS差分晶体振荡器CFVE-A7BP-156.25TS有源差分晶振C3FSE7差分晶振CPPC1-BP-50.0TS石英晶振CPPLC7L-A7B6-25.0TS进口贴片晶振CPPC5L-A7BR-25.0TS有源晶体振荡器CPPC7L-A7BP-8.0TS普通有源晶振CPPC7L-A7BR-50.0TS美国进口晶振CFVE-A7BP-212.5TS美国进口晶振C3FSV7差分晶振CPPC1-BR-5.0TS晶振CPPT7L-A7BR-150.0TS石英晶振CPPC7Z-A5B6-32.0TS贴片晶振CPPC7-A7BP-3.6864PD美国进口晶振CPPC7LZA7BP-25.0000TS贴片晶振CPPLC7Z-A7B6-22.1184TS晶振CPPC7LZ-A7BR-50.0TS美国石英晶振CPPC7-A7BR-28.0TS带电压晶振CPPC7L-B6-64.0TS石英晶体振荡器CPPV7-BR-100.0有源差分晶振CPPC7LZA7BP-3.579540TS普通有源晶振tyle="font-size:16px">CTED-A5B3-156.25TStitle="温补晶振" target="_blank">温补晶振tyle="font-size:16px">tyle="font-size:16px">CPPV7-BR-125.0差分输出晶体振荡器CPPC7L-A5BR-66.0TS有源晶振CPPC7L-A5BP-100.0TS贴片晶振CPPT1-A3B6-60.0TS有源晶体振荡器CFVE-A7BP-311.04TS差分输出晶体振荡器CPPC7L-A5BP-100.0PD石英晶体振荡器CPPT1-A3B6-50.0TS石英晶体振荡器CPPC7LZA7BP-3.68640TS美国进口晶振CPPC7L-A5BP-2.048TS普通有源晶振CPPT1-A3B6-10.0TS贴片晶振CPPT7L-A7BR-200.0TS有源晶体振荡器CPPC7LZ-A7B6-4.0TS石英晶振CPPC7L-A7BP-2.0TS石英晶体振荡器CPPC7LZ-A7BP-14.318TS带电压晶振CPPC7-A7BP-32.0TS贴片晶振CPPC7L-A5BP-25.0TS美国进口晶振CPPC7L-BR-24.576TS晶振
- 阅读(134)
相关搜索
亿金热点聚焦
关于无源晶振有源晶振不同之处的分析报告
1CVCO55CW-3500-4500非常适合卫星通信系统应用
- 2节能单片机专用音叉晶体ABS07-120-32.768KHZ-T
- 3可编程晶振CPPC7L-A7BR-28.63636TS适用于驱动模数转换器
- 4汽车氛围灯控制器晶振E1SJA18-28.63636M TR
- 5京瓷陶瓷晶振原厂编码曝光CX3225GB16000D0HPQCC适合于数字家电
- 6SMD-49晶振1AJ240006AEA专用于车载控制器应用
- 7ECS-3225MV-250-BN-TR晶体振荡器是LoRa WAN的理想选择
- 8ECS-TXO-20CSMV-260-AY-TR非常适合稳定性至关重要的便携式无线应用
- 9LVDS振荡器ECX-L33CN-125.000-TR提供频率可配置性及多种包装尺寸
- 10ECS-240-18-33-JEN-TR3非常适合电路板空间至关重要的应用