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日本进口2016村田晶振HCR2016,XRCGB26M000F3A00R0贴片晶振
晶振规格 |
单位 |
晶振频率范围 |
石英晶振基本条件 |
标准频率 |
f_nom |
26MHZ |
标准频率 |
储存温度 |
T_stg |
-40°C~+105°C |
裸存 |
工作温度 |
T_use |
-40°C~+105°C |
标准温度 |
激励功率 |
DL |
200μW Max. |
推荐:1μW~100μW |
频率公差 |
f_— l |
±20 × 10-6(标准), |
+25°C对于超出标准的规格说明, |
频率温度特征 |
f_tem |
±30 × 10-6/-20°C~+70°C |
超出标准的规格请联系我们. |
负载电容 |
CL |
6pF |
超出标准说明,请联系我们. |
串联电阻(ESR) |
R1 |
如下表所示 |
-40°C — +85°C,DL = 100μW |
频率老化 |
f_age |
±5 × 10-6/ year Max. |
+25°C,第一年 |
日本进口2016村田晶振HCR2016,XRCGB26M000F3A00R0贴片晶振
在使用村田晶振时应注意以下事项:
陶瓷振荡子具备小型和价格低廉的特点,而石英晶体振荡器虽然价格比较昂贵,却具备了高精度的特性.考虑到成品问题在消费电子产品市场中,许多电子设备都采用了陶瓷振荡子.年代不同口味也有所挑剔了电子产品也是一样USB等接口的数据传输速度高速化,告别了以前慢慢吞吞的传输速度,因此应用于HDD的振荡子也和石英元件贴片晶振一样要求小型化,薄片化,高精度,准确性.
早期主要以陶瓷系列为主的村田公司在2009年也开始研发石英系列,村田和东京电波建立了业务合作关系之后,通过利用东京电波拥有的高品质的石英晶体元件,加上村田的生产技术,共同开发出符合市场要求的定时元件
1. 焊接条件(1) 回流焊接如右侧温度曲线所示,对陶瓷振荡子施加一个热应力;然后在自然状态下放置1小时后,对振荡子进行测量.(a) 预热条件为+150到+180℃,60到120秒钟.温度升高到+150℃的时间应长于30秒钟.(b) 加热条件为最低温度+230℃时不超过40秒钟,峰值温度狙应低于+260℃
2.烙铁将温度为+300±5℃的烙铁置于振荡子电极上方0.5mm处.将通过烙铁熔化的焊料施加到电极上 3±1秒钟;然后,在自然状态下放置24小时后,对振荡子进行测量.日本村田晶振,XRCGB16M000FXN00R0晶振,2016小体积晶振
日本进口2016村田晶振HCR2016,XRCGB26M000F3A00R0贴片晶振
村田晶振原厂编码 | 型号 | 频率 | 频率公差 | 频率温度特性 | 频率老化 | 等效串联电阻(max.) | 负载电容量 |
XRCGB24M000F0G00R0 | HCR2016 | 24.0000MHz | ±100ppm max. (25±3℃) | ±50ppm max. | ±5ppm max./year | 150Ω | 6pF |
XRCGB24M000F0L00R0 | HCR2016 | 24.0000MHz | ±100ppm max. (25±3℃) | ±50ppm max. | ±50ppm max. | 150Ω | 6pF |
XRCGB24M000F0Z00R0 | HCR2016 | 24.0000MHz | ±100ppm max. (25±3℃) | ±100ppm max. | ±5ppm max./year | 150Ω | 6pF |
XRCGB24M000F1H00R0 | HCR2016 | 24.0000MHz | ±10ppm max. (25±3℃) | ±10ppm max. | ±2ppm max./year | 80Ω | 6pF |
XRCGB24M000F1H01R0 | HCR2016 | 24.0000MHz | ±10ppm max. (25±3℃) | ±10ppm max. | ±2ppm max./year | 80Ω | 8pF |
XRCGB24M000F1H02R0 | HCR2016 | 24.0000MHz | ±10ppm max. (25±3℃) | ±10ppm max. | ±2ppm max./year | 80Ω | 10pF |
XRCGB24M000F1H03R0 | HCR2016 | 24.0000MHz | ±10ppm max. (25±3℃) | ±10ppm max. | ±2ppm max./year | 80Ω | 12pF |
XRCGB24M000F2P00R0 | HCR2016 | 24.0000MHz | ±20ppm max. (25±3℃) | ±20ppm max. | ±5ppm max./year | 150Ω | 6pF |
XRCGB24M000F2P01R0 | HCR2016 | 24.0000MHz | ±20ppm max. (25±3℃) | ±20ppm max. | ±5ppm max./year | 150Ω | 8pF |
XRCGB24M000F2P02R0 | HCR2016 | 24.0000MHz | ±20ppm max. (25±3℃) | ±20ppm max. | ±5ppm max./year | 150Ω | 10pF |
XRCGB24M000F3A00R0 | HCR2016 | 24.0000MHz | ±30ppm max. (25±3℃) | ±35ppm max. | ±2ppm max./year | 120Ω | 6pF |
XRCGB24M000F3G00R0 | HCR2016 | 24.0000MHz | ±30ppm max. (25±3℃) | ±50ppm max. | ±5ppm max./year | 150Ω | 6pF |
XRCGB24M000F3M00R0 | HCR2016 | 24.0000MHz | ±30ppm max. (25±3℃) | ±40ppm max. | ±5ppm max./year | 150Ω | 6pF |
XRCGB24M000F3M01R0 | HCR2016 | 24.0000MHz | ±30ppm max. (25±3℃) | ±40ppm max. | ±5ppm max./year | 150Ω | 8pF |
XRCGB24M000F3M02R0 | HCR2016 | 24.0000MHz | ±30ppm max. (25±3℃) | ±40ppm max. | ±5ppm max./year | 150Ω | 10pF |
XRCGB24M000F3M13R0 | HCR2016 | 24.0000MHz | ±30ppm max. (25±3℃) | ±40ppm max. | ±5ppm max./year | 120Ω | 8.5pF |
XRCGB24M000F3M19R0 | HCR2016 | 24.0000MHz | ±30ppm max. (25±3℃) | ±40ppm max. | ±5ppm max./year | 100Ω | 6pF |
XRCGB24M000F3N00R0 | HCR2016 | 24.0000MHz | ±30ppm max. (25±3℃) | ±30ppm max. | ±5ppm max./year | 150Ω | 6pF |
XRCGB24M000FAN00R0 | HCR2016 | 24.0000MHz | ±25ppm max. (25±3℃) | ±25ppm max. | ±5ppm max./year | 150Ω | 6pF |
XRCGB24M000FBP12R0 | HCR2016 | 24.0000MHz | ±15ppm max. (25±3℃) | ±20ppm max. | ±2ppm max./year | 80Ω | 6pF |
XRCGB24M576F0G00R0 | HCR2016 | 24.5760MHz | ±100ppm max. (25±3℃) | ±50ppm max. | ±5ppm max./year | 150Ω | 6pF |
XRCGB24M576F0L00R0 | HCR2016 | 24.5760MHz | ±100ppm max. (25±3℃) | ±50ppm max. | ±50ppm max. | 150Ω | 6pF |
XRCGB24M576F0Z00R0 | HCR2016 | 24.5760MHz | ±100ppm max. (25±3℃) | ±100ppm max. | ±5ppm max./year | 150Ω | 6pF |
XRCGB24M576F3G00R0 | HCR2016 | 24.5760MHz | ±30ppm max. (25±3℃) | ±50ppm max. | ±5ppm max./year | 150Ω | 6pF |
XRCGB24M576F3M00R0 | HCR2016 | 24.5760MHz | ±30ppm max. (25±3℃) | ±40ppm max. | ±5ppm max./year | 150Ω | 6pF |
XRCGB24M576F3M01R0 | HCR2016 | 24.5760MHz | ±30ppm max. (25±3℃) | ±40ppm max. | ±5ppm max./year | 150Ω | 8pF |
XRCGB24M576F3M02R0 | HCR2016 | 24.5760MHz | ±30ppm max. (25±3℃) | ±40ppm max. | ±5ppm max./year | 150Ω | 10pF |
XRCGB24M576F3N00R0 | HCR2016 | 24.5760MHz | ±30ppm max. (25±3℃) | ±30ppm max. | ±5ppm max./year | 150Ω | 6pF |
XRCGB24M576FAN00R0 | HCR2016 | 24.5760MHz | ±25ppm max. (25±3℃) | ±25ppm max. | ±5ppm max./year | 150Ω | 6pF |
XRCGB25M000F0G00R0 | HCR2016 | 25.0000MHz | ±100ppm max. (25±3℃) | ±50ppm max. | ±5ppm max./year | 150Ω | 6pF |
XRCGB25M000F0L00R0 | HCR2016 | 25.0000MHz | ±100ppm max. (25±3℃) | ±50ppm max. | ±50ppm max. | 150Ω | 6pF |
XRCGB25M000F0Z00R0 | HCR2016 | 25.0000MHz | ±100ppm max. (25±3℃) | ±100ppm max. | ±5ppm max./year | 150Ω | 6pF |
XRCGB25M000F1H00R0 | HCR2016 | 25.0000MHz | ±10ppm max. (25±3℃) | ±10ppm max. | ±2ppm max./year | 80Ω | 6pF |
XRCGB25M000F1H01R0 | HCR2016 | 25.0000MHz | ±10ppm max. (25±3℃) | ±10ppm max. | ±2ppm max./year | 80Ω | 8pF |
XRCGB25M000F1H02R0 | HCR2016 | 25.0000MHz | ±10ppm max. (25±3℃) | ±10ppm max. | ±2ppm max./year | 80Ω | 10pF |
XRCGB25M000F1H03R0 | HCR2016 | 25.0000MHz | ±10ppm max. (25±3℃) | ±10ppm max. | ±2ppm max./year | 80Ω | 12pF |
XRCGB25M000F2P00R0 | HCR2016 | 25.0000MHz | ±20ppm max. (25±3℃) | ±20ppm max. | ±5ppm max./year | 150Ω | 6pF |
XRCGB25M000F2P01R0 | HCR2016 | 25.0000MHz | ±20ppm max. (25±3℃) | ±20ppm max. | ±5ppm max./year | 150Ω | 8pF |
XRCGB25M000F2P02R0 | HCR2016 | 25.0000MHz | ±20ppm max. (25±3℃) | ±20ppm max. | ±5ppm max./year | 150Ω | 10pF |
XRCGB25M000F3A00R0 | HCR2016 | 25.0000MHz | ±30ppm max. (25±3℃) | ±35ppm max. | ±2ppm max./year | 100Ω | 6pF |
XRCGB25M000F3G00R0 | HCR2016 | 25.0000MHz | ±30ppm max. (25±3℃) | ±50ppm max. | ±5ppm max./year | 150Ω | 6pF |
XRCGB25M000F3M00R0 | HCR2016 | 25.0000MHz | ±30ppm max. (25±3℃) | ±40ppm max. | ±5ppm max./year | 150Ω | 6pF |
XRCGB25M000F3M01R0 | HCR2016 | 25.0000MHz | ±30ppm max. (25±3℃) | ±40ppm max. | ±5ppm max./year | 150Ω | 8pF |
XRCGB25M000F3M02R0 | HCR2016 | 25.0000MHz | ±30ppm max. (25±3℃) | ±40ppm max. | ±5ppm max./year | 150Ω | 10pF |