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首页> 外文期刊>IEEE Journal of Solid-State Circuits >A 6.25-Gb/s Binary Transceiver in 0.13-μm CMOS for Serial Data Transmission Across High Loss Legacy Backplane Channels
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A 6.25-Gb/s Binary Transceiver in 0.13-μm CMOS for Serial Data Transmission Across High Loss Legacy Backplane Channels

机译:一个在0.13μmCMOS中的6.25 Gb / s二进制收发器,用于跨高损耗传统背板通道的串行数据传输

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摘要

A transceiver capable of 6.25-Gb/s data transmission across legacy communications equipment backplanes is described. To achieve a bit error rate (BER) < 10{sup}(-15), transmit and receive equalization that can compensate up to 20 dB of channel loss is employed to remove intersymbol interference (ISI) resulting from finite channel bandwidth and reflections. The transmit feed-forward equalizer (FFE) uses a four-tap symbol-spaced programmable finite impulse response (FIR) filter followed by a 4-bit digital-to-analog converter (DAC) that drives a 50-12 transmission line. The receiver uses a half-baud-rate adaptive decision feedback equalizer (DFE) that cancels the first four symbol-spaced taps of postcursor ISI without use of speculative techniques. Both the transmitter and receiver use an LC-oscillator-based phase-locked loop (PLL) to provide low jitter clocks. Techniques to minimize the complexity of the FIR and DFE implementations are described. The transceiver is designed to be integrated in a standard ASIC flow in a 0.13-μm digital CMOS technology. System measurements indicate the ability to transmit and recover data eyes that have been fully closed due to crosstalk and signal loss.
机译:描述了一种能够在传统通信设备背板上进行6.25 Gb / s数据传输的收发器。为了实现误码率(BER)<10 {sup}(-15),采用可以补偿高达20 dB的信道损耗的发送和接收均衡来消除有限信道带宽和反射导致的符号间干扰(ISI)。发射前馈均衡器(FFE)使用一个四抽头的符号间隔可编程有限冲激响应(FIR)滤波器,后接一个驱动50-12传输线的4位数模转换器(DAC)。接收器使用半波特率自适应判决反馈均衡器(DFE),它无需使用推测性技术就可以消除后光标ISI的前四个符号间隔的抽头。发送器和接收器均使用基于LC振荡器的锁相环(PLL)提供低抖动时钟。描述了使FIR和DFE实现的复杂性最小化的技术。该收发器被设计为以0.13μm数字CMOS技术集成在标准ASIC流程中。系统测量表明能够传输和恢复由于串扰和信号丢失而完全闭合的数据眼。

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