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An instant-startup jitter-tolerant manchester-encoding serializer/deserializer scheme for event-driven bit-serial LVDS interchip AER links

机译:用于事件驱动的位串行LVDS芯片间AER链接的即时启动容错曼彻斯特编码串行器/解串器方案

摘要

This paper presents a serializer/deserializer scheme for asynchronous address event representation (AER) bit-serial interchip communications. Each serial AER (sAER) link uses four wires: a micro strip pair for low voltage differential signaling (LVDS) and two handshaking lines. Each event is represented by a 32-bit word. Two extra preamble bits are used for alignment. Transmission clock is embedded in the data using Manchester encoding. As opposed to conventional LVDS links, the presented approach allows to stop physical communication between data events, so that no “comma” characters need to be transmitted during these pauses. As soon as a new event needs to be transmitted, the link recovers immediately thanks to a built-in control voltage memorization circuit. As a result, power consumption of the serializer and deserializer circuits is proportional to data event rate. The approach is also highly tolerant to clock jitter, due to the asynchronous nature and the Manchester encoding. A chip test prototype has been fabricated in standard 0.35 μm CMOS including a pair of Serializer and Deserializer circuits. Maximum measured event transmission rate is 15 Meps (mega events per second) for 32-bit events, with a maximum bit transmission speed of 670 Mbps (mega bits per second).
机译:本文提出了一种用于异步地址事件表示(AER)位串行芯片间通信的串行器/解串器方案。每个串行AER(sAER)链路使用四根线:用于低压差分信号(LVDS)的微型条对和两条握手线。每个事件由一个32位字表示。两个额外的前导位用于对齐。使用曼彻斯特编码将传输时钟嵌入到数据中。与传统的LVDS链路相反,本文提出的方法允许停止数据事件之间的物理通信,因此在这些暂停期间无需传输“逗号”字符。一旦需要发送新事件,由于内置了控制电压存储电路,因此链路可以立即恢复。结果,串行器和解串器电路的功耗与数据事件发生率成正比。由于异步特性和曼彻斯特编码,该方法还具有很高的时钟抖动容限。芯片测试原型已经在标准的0.35μmCMOS中制成,包括一对串行器和解串器电路。对于32位事件,最大测量事件传输速率为15 Meps(每秒百万个事件),最大位传输速度为670 Mbps(每秒兆位)。

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