爱普生现已推出SG2016系列高频、低相位抖动SPXOs产品,该系列比爱普生的SG2520系列SPXOs小54%,是800G收发器等高带宽光模块的理想选择。高频低相位抖动SPXO晶振SG2016EGN156.250MHzCJGPZA是光模块6G的理想选择
由于5G,6G网络的增长和物联网(IoT)的实施,未来的数据流量将进一步增加。为了处理这种流量,光传输模块被期望过渡到更高的速度和更大的容量,从400 Gbps到800 Gbps。下一代800 G光传输模块将需要更小,因为它们将内置更大的数字信号处理器(DSP),这将需要更多的散热空间。
作为石英晶体设备的领导者,爱普生寻求利用其技术为实现智能社会做出贡献,并将继续提供满足各种电子设备和社会基础设施需求的晶体设备产品。
高频低相位抖动SPXO晶振SG2016EGN156.250MHzCJGPZA是光模块6G的理想选择
产品应用:
-光传输模块(内置于路由器和交换机等网络设备中)
-数据中心
-工厂自动化设备和测量仪器
-高速数模转换器
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高频低相位抖动SPXO晶振SG2016EGN156.250MHzCJGPZA是光模块6G的理想选择
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石英贴片晶振 | 型号 | 频率 | 尺寸 | 输出波 | 电源电压 |
X1G004801000200 | SG2016CAN | 24.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V |
X1G004801000300 | SG2016CAN | 26.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V |
X1G004801000700 | SG2016CAN | 12.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V |
X1G004801001200 | SG2016CAN | 25.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V |
X1G004801001300 | SG2016CAN | 50.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V |
X1G004801001400 | SG2016CAN | 16.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V |
X1G004801001800 | SG2016CAN | 20.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V |
X1G004801002000 | SG2016CAN | 48.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V |
X1G004801002100 | SG2016CAN | 27.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V |
X1G004801002400 | SG2016CAN | 25.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V |
X1G004801002600 | SG2016CAN | 33.333300MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V |
X1G004801002700 | SG2016CAN | 10.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V |
X1G004801002800 | 进口晶振 | 50.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V |
X1G004801002900 | SG2016CAN | 10.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V |
X1G004801003000 | SG2016CAN | 4.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V |
X1G004801003100 | SG2016CAN | 24.576000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V |
X1G004801003500 | SG2016CAN | 25.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V |
X1G004801003600 | SG2016CAN | 40.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V |
X1G004801003900 | SG2016CAN | 26.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V |
X1G004801004000 | SG2016CAN | 24.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V |
X1G004801004400 | SG2016CAN | 12.288000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V |
X1G004801004500 | SG2016CAN | 8.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V |
X1G004801004600 | SG2016CAN | 8.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V |
X1G004801004900 | SG2016CAN | 4.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V |
X1G004801005000 | SG2016CAN | 12.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V |
高频低相位抖动SPXO晶振SG2016EGN156.250MHzCJGPZA是光模块6G的理想选择
5G,6G将以指数级的方式增加网络通信流量。一个5G通信网络需要高速和宽带宽,同时最小化噪声。这将通过一个高频、低抖动参考时钟来实现的通信设备,其中将使用小尺寸光学模块。SG2016EGN/SG2520EGN是非常受欢迎的SG3225EEN家族的下一代,提供相同的功能组合,由于使用了较小的封装,低抖动和改进的频率容受性能。