爱普生推出高稳定性温度补偿晶振TG2520CEN,是一款小体积晶振尺寸2.5x2.0mm有源晶振,石英晶体振荡器,四脚贴片晶振,电源电压:2.375V至3.63V,频率范围:12MHz至52MHz,支持CMOS输出的温度补偿晶体振荡器,TG2520CEN有源晶振具有超小型,轻薄型,低抖动,低功耗,低损耗,低耗能,低电源电压,低相位噪声,高稳定性等特点。适用于移动通信,GPS,无线蓝牙,智能电表,遥测仪,测量机和无线通讯设备的基准时钟。
X1G005161000727用于测量机和无线通讯设备的基准时钟
产品编码 | 型号 | 频率 | 贴片晶振 | 输出波 | 电源电压 | 精度 | 工作温度 |
X1G005161000227 | TG2520CEN | 25.000000MHz | 2.50x2.00x0.80mm | CMOS | 2.375 to 3.630 V | +/-2.0 ppm | -40 to ++85 °C |
X1G005161000727 | TG2520CEN | 32.000000MHz | 2.50x2.00x0.80mm | CMOS | 2.500 to 3.300 V | +/-2.0 ppm | -40 to ++85 °C |
X1G005161000927 | TG2520CEN | 27.000000MHz | 2.50x2.00x0.80mm | CMOS | 2.375 to 3.630 V | +/-2.0 ppm | -40 to ++85 °C |
X1G005161001127 | TG2520CEN | 16.000000MHz | 2.50x2.00x0.80mm | CMOS | 2.500 to 3.300 V | +/-2.0 ppm | -40 to ++85 °C |
X1G005161001227 | TG2520CEN | 25.000000MHz | 2.50x2.00x0.80mm | CMOS | 2.375 to 3.630 V | +/-2.0 ppm | -40 to ++85 °C |
X1G005161001327 | TG2520CEN | 48.000000MHz | 2.50x2.00x0.80mm | CMOS | 3.000 to 3.600 V | +/-2.0 ppm | -40 to ++85 °C |
X1G005161001427 | TG2520CEN | 20.000000MHz | 2.50x2.00x0.80mm | CMOS | 2.375 to 3.630 V | +/-2.0 ppm | -40 to ++85 °C |
X1G005161001527 | TG2520CEN | 26.000000MHz | 2.50x2.00x0.80mm | CMOS | 2.375 to 3.630 V | +/-2.0 ppm | -40 to ++85 °C |
X1G005161001927 | TG2520CEN | 38.400000MHz | 2.50x2.00x0.80mm | CMOS | 2.375 to 3.630 V | +/-2.0 ppm | -40 to ++85 °C |
X1G005161002227 | TG2520CEN | 12.288000MHz | 2.50x2.00x0.80mm | CMOS | 2.375 to 3.630 V | +/-2.0 ppm | -40 to ++85 °C |
X1G005161002327 | TG2520CEN | 12.000000MHz | 2.50x2.00x0.80mm | CMOS | 2.375 to 3.630 V | +/-2.0 ppm | -40 to ++85 °C |
X1G005161002527 | TG2520CEN | 40.000000MHz | 2.50x2.00x0.80mm | CMOS | 2.375 to 3.630 V | +/-2.0 ppm | -40 to ++85 °C |
X1G005161002627 | TG2520CEN | 24.000000MHz | 2.50x2.00x0.80mm | CMOS | 2.375 to 3.630 V | +/-2.0 ppm | -40 to ++85 °C |
X1G005161002827 | TG2520CEN | 19.200000MHz | 2.50x2.00x0.80mm | CMOS | 2.375 to 3.630 V | +/-2.0 ppm | -40 to ++85 °C |
X1G005161000727用于测量机和无线通讯设备的基准时钟
现代电子技术日新月异的发展,使得石英晶体振荡器广泛应用于现代通信,导航,测量等领域的电子设备中;工程实际应用中许多设备都工作在温度范围变化较大的环境中,由于石英晶体谐振器自身特殊的物理特性,温度的变化会导致晶体振荡器的频率发生偏移.此时晶体振荡器就不能为设备提供稳定时钟频率,导致工作异常,而经过温度补偿的石英晶体振荡器弥补了这一缺陷,从而其应用更加广泛.