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Pulse-position and pulse-amplitude modulation interface for serial data link applications

机译:串行数据链路应用的脉冲位置和脉冲幅度调制接口

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A serial communication link based on pulse-amplitude modulation combined with pulse-position modulation is presented in this paper. The timing problem that occurs when combining the pulse-position modulation and the pulse-amplitude modulation has been resolved using the proposed technique by applying the AM modulation to the data signal and the clock signal. Using the proposed architecture, the reception of the pulse-position modulated bits will not be affected by the combining of the amplitude modulation and the number of the amplitude levels can be increased as many as possible. The PPM technique and the AM technique are combined in so as to increase the total number of the transmitted bits without affecting the transmitted data signal bandwidth. A 5 bits 4 GB/s PAM-PPM link has been designed and simulated in 130 nm CMOS technology using 800 MHz input clock signal. The simulation results indicate that combining PAM technique with PPM technique increases the number of transmitted bits per clock cycle of the data signal without altering the bandwidth. The simulated power consumption of the designed transceiver is less than 90mW.
机译:本文介绍了基于脉冲幅度调制的串行通信链路与脉冲位置调制结合。通过将AM调制应用于数据信号和时钟信号,通过所提出的技术解决了组合脉冲位置调制和脉冲幅度调制时发生的定时问题。使用所提出的架构,脉冲位置调制位的接收不会受到幅度调制的组合的影响,并且可以尽可能多地增加幅度电平的数量。组合PPM技术和AM技术,以增加发送比特的总数,而不影响发送的数据信号带宽。使用800 MHz输入时钟信号在130nm CMOS技术中设计和模拟了5位4 GB / S PM-PPM链路。仿真结果表明,与PPM技术的组合PAM技术增加了数据信号的每天时钟周期的发送比特的数量,而不改变带宽。设计的收发器的模拟功耗小于90mW。

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