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A 6.84 Gbps/lane MIPI C-PHY Transceiver Bridge Chip With Level-Dependent Equalization

机译:一个6.84 Gbps / Lane MIPI C-PHY收发器桥芯片,具有依赖依赖性均等化

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摘要

A 3.0 GSymbol/s/lane transceiver bridge chip, which fully supports the mobile industry processor interface (MIPI) C-PHY version 1.1 specification, is proposed for field-programmable gate array (FPGA)-based pattern generators and frame grabbers. In transmit mode, it converts parallel low-voltage complementary metal oxide semiconductor (CMOS) signals into high-speed three-level signals when performing serialization. In addition, deserialization including clock recovery from the received data is performed for its receive mode operation. A pre-emphasis transmitter and an elastic receiver that perform equalization according to the signal level are proposed to improve the signal integrity of high-speed three-level signals. The proposed MIPI C-PHY transceiver bridge chip is implemented using a 65 nm CMOS process with 1.2 V supply voltage. The area of each lane is 0.103 mm2 and the power consumption in high-speed transmit and receive modes is 2.96 mW/Gbps/lane and 5.62 mW/Gbps/lane, respectively. The measured peak-to-peak time jitter of the proposed high-speed transmitter, receiver, and clock recovery are 0.27 UI, 0.35 UI, and 90 ps, respectively, at a data rate of 3 GSymbol/s/lane.
机译:3.0 GSYMBOL / S / LANE收发器桥芯片,它完全支持移动行业处理器接口(MIPI)C-PHY版本1.1规范,用于现场可编程门阵列(FPGA)的模式发生器和帧抓取器。在发射模式下,在执行序列化时,它将并行低压互补金属氧化物半导体(CMOS)信号转换为高速三级信号。另外,对其接收模式操作执行包括从接收数据的时钟恢复的反序列化。提出了根据信号电平进行均衡的预加重发射器和弹性接收器,以改善高速三级信号的信号完整性。所提出的MIPI C-PHY收发器桥芯片是使用具有1.2 V电源电压的65 nm CMOS工艺来实现的。每条车道的面积为0.103毫米 2 高速发射和接收模式下的功耗分别为2.96 MW / Gbps / Lane和5.62 MW / Gbps / Lane。所提出的高速发射器,接收器和时钟恢复的测量峰 - 峰值时间抖动分别以3个Gsymbol / s / Lane的数据速率分别为0.27 UI,0.35 UI和90 PS。

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