一种具有不同输出时序以补偿耦合微带线串扰引起的抖动的变送器

Hae-Kang Jung, Soo-Min Lee, J. Sim, Hong-June Park
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引用次数: 2

摘要

利用发送端数据时序控制,通过印制电路板上的耦合微带线对2位并行数据传输中的串扰抖动(CIJ)进行补偿。通过根据信号模式提前或延迟发送数据来补偿信号模式(奇、静、偶)之间的传播速度差异,从而使不同模式的信号同时到达接收机(RX)。该发射机通过使用低抖动延迟块和3:1Mux提前从生成的三个不同采样CLKD中选择一个CLKT来实现。TX采用0.18 μm CMOS工艺实现。测量表明,在数据速率从2.6 Gbps到3.8 Gbps时,TX减少了约38 ps的RX抖动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A transmitter with different output timing to compensate for the crosstalk-induced jitter of coupled microstrip lines
By using the data timing control at transmitter (TX), the crosstalk-induced jitter (CIJ) is compensated for in the 2-bit parallel data transmission through the coupled microstrip lines on printed circuit board (PCB). The difference in propagation velocity with the signal modes (odd, static, even) is compensated for by sending data earlier or later at TX according to the signal modes, so that the signals of different modes arrive at receiver (RX) at the same time. This transmitter is implemented by using the delay block with low jitter and a 3:1Mux to select one CLKT of the generated three different sampling CLKD, in advance. The TX is implemented by using a 0.18 μm CMOS process. The measurement shows that the TX reduces the RX jitters by about 38 ps at the data rates from 2.6 Gbps to 3.8 Gbps.
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