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更多>>TG2520SMN高稳定性和低相位噪声温度补偿晶体振荡器X1G005421021227
来源:http://www.konuaer.com 作者:康华尔电子 2022年08月25
日本进口爱普生晶振TG2520SMN,高稳定性和低相位噪声温度补偿晶体振荡器,超小型尺寸2.5x2.0mm四脚贴片晶振,TCXO晶振,有源晶振,是高稳定性低相位噪声,使用爱普生开发和制造的IC的噪声TCXOs和MHz基频晶体。 相位噪声是爱普生紧凑型TCXO温补晶振中最低的产品系列,使其成为GNSS的理想参考时钟和其他无线通信设备。特征:高稳定性,频率范围:10MHz至55MHz,输出:削波正弦,电源电压:1.7V至3.63V,频率/温度特性 :最大0.5 x10-6,工作温度:-40摄氏度至+85摄氏度,相位噪声:-161 dBc/Hz(fo = 26 MHz,100 kHz偏移),应用于:GNSS 射频,无线通信设备,LTE、WiMAX、Wi-Fi、无线局域网,物联网等.
TG2520SMN高稳定性和低相位噪声温度补偿晶体振荡器,X1G005421020427,温补晶振
TG2520SMN高稳定性和低相位噪声温度补偿晶体振荡器,X1G005421020427,温补晶振
有源晶振需要电源,但不需要附加的电容。它内部含有起振器。通常接到CPU的一根引脚即可,有源晶振不需要DSP的内部振荡器,信号质量好,比较稳定,而且连接方式相对简单(主要是做好电源滤波,通常使用一个电容和电感构成的PI型滤波网络,输出端用一个小阻值的电阻过滤信号即可),不需要复杂的配置电路.有源晶振通常的用法:一脚悬空,二脚接地,三脚接输出,四脚接电压。
TG2520SMN高稳定性和低相位噪声温度补偿晶体振荡器,X1G005421020427,温补晶振
Product Number | Model | Frequency | 爱普生晶振 | Output Wave | Supply Voltage |
X1G005421002927 | TG2520SMN | 19.200000 MHz | 2.50 x 2.00 x 0.80 mm | Clipped sine wave | 3.135 to 3.465 V |
X1G005421003027 | TG2520SMN | 12.000000 MHz | 2.50 x 2.00 x 0.80 mm | Clipped sine wave | 3.135 to 3.465 V |
X1G005421003727 | TG2520SMN | 16.384000 MHz | 2.50 x 2.00 x 0.80 mm | Clipped sine wave | 1.700 to 1.900 V |
X1G005421003827 | TG2520SMN | 16.384000 MHz | 2.50 x 2.00 x 0.80 mm | Clipped sine wave | 2.260 to 3.465 V |
X1G005421020127 | TG2520SMN | 16.368000 MHz | 2.50 x 2.00 x 0.80 mm | Clipped sine wave | 1.700 to 1.900 V |
X1G005421020227 | TG2520SMN | 16.369000 MHz | 2.50 x 2.00 x 0.80 mm | Clipped sine wave | 1.700 to 1.900 V |
X1G005421020327 | TG2520SMN | 19.200000 MHz | 2.50 x 2.00 x 0.80 mm | Clipped sine wave | 1.700 to 1.900 V |
X1G005421020427 | TG2520SMN | 26.000000 MHz | 2.50 x 2.00 x 0.80 mm | Clipped sine wave | 1.700 to 1.900 V |
X1G005421020527 | TG2520SMN | 32.000000 MHz | 2.50 x 2.00 x 0.80 mm | Clipped sine wave | 1.700 to 1.900 V |
X1G005421020627 | TG2520SMN | 38.400000 MHz | 2.50 x 2.00 x 0.80 mm | Clipped sine wave | 1.700 to 1.900 V |
X1G005421020727 | TG2520SMN | 40.000000 MHz | 2.50 x 2.00 x 0.80 mm | Clipped sine wave | 1.700 to 1.900 V |
X1G005421020827 | TG2520SMN | 16.000000 MHz | 2.50 x 2.00 x 0.80 mm | Clipped sine wave | 1.700 to 1.900 V |
X1G005421021127 | TG2520SMN | 20.000000 MHz | 2.50 x 2.00 x 0.80 mm | Clipped sine wave | 1.700 to 1.900 V |
X1G005421021227 | TG2520SMN | 24.000000 MHz | 2.50 x 2.00 x 0.80 mm | Clipped sine wave | 1.700 to 1.900 V |
X1G005421021327 | TG2520SMN | 25.000000 MHz | 2.50 x 2.00 x 0.80 mm | Clipped sine wave | 1.700 to 1.900 V |
X1G005421021427 | TG2520SMN | 27.000000 MHz | 2.50 x 2.00 x 0.80 mm | Clipped sine wave | 1.700 to 1.900 V |
X1G005421021527 | TG2520SMN | 30.000000 MHz | 2.50 x 2.00 x 0.80 mm | Clipped sine wave | 1.700 to 1.900 V |
X1G005421021627 | TG2520SMN | 48.000000 MHz | 2.50 x 2.00 x 0.80 mm | Clipped sine wave | 1.700 to 1.900 V |
X1G005421022027 | TG2520SMN | 52.000000 MHz | 2.50 x 2.00 x 0.80 mm | Clipped sine wave | 1.700 to 1.900 V |
X1G005421022127 | TG2520SMN | 27.600000 MHz | 2.50 x 2.00 x 0.80 mm | Clipped sine wave | 1.700 to 1.900 V |
X1G005421022227 | TG2520SMN | 50.000000 MHz | 2.50 x 2.00 x 0.80 mm | Clipped sine wave | 1.700 to 1.900 V |
X1G005421030127 | TG2520SMN | 16.368000 MHz | 2.50 x 2.00 x 0.80 mm | Clipped sine wave | 2.660 to 3.465 V |
X1G005421030227 | TG2520SMN | 16.369000 MHz | 2.50 x 2.00 x 0.80 mm | Clipped sine wave | 2.660 to 3.465 V |
X1G005421030327 | TG2520SMN | 19.200000 MHz | 2.50 x 2.00 x 0.80 mm | Clipped sine wave | 2.660 to 3.465 V |
X1G005421030427 | TG2520SMN | 26.000000 MHz | 2.50 x 2.00 x 0.80 mm | Clipped sine wave | 2.660 to 3.465 V |
X1G005421030527 | TG2520SMN | 32.000000 MHz | 2.50 x 2.00 x 0.80 mm | Clipped sine wave | 2.660 to 3.465 V |
X1G005421030627 | TG2520SMN | 38.400000 MHz | 2.50 x 2.00 x 0.80 mm | Clipped sine wave | 2.660 to 3.465 V |
X1G005421030727 | TG2520SMN | 40.000000 MHz | 2.50 x 2.00 x 0.80 mm | Clipped sine wave | 2.660 to 3.465 V |
TG2520SMN高稳定性和低相位噪声温度补偿晶体振荡器,X1G005421020427,温补晶振
有源晶振需要电源,但不需要附加的电容。它内部含有起振器。通常接到CPU的一根引脚即可,有源晶振不需要DSP的内部振荡器,信号质量好,比较稳定,而且连接方式相对简单(主要是做好电源滤波,通常使用一个电容和电感构成的PI型滤波网络,输出端用一个小阻值的电阻过滤信号即可),不需要复杂的配置电路.有源晶振通常的用法:一脚悬空,二脚接地,三脚接输出,四脚接电压。
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