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Asynchronous Current Mode Serial Communication

机译:异步电流模式串行通信

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摘要

An asynchronous high-speed wave-pipelined bit-serial link for on-chip communication is presented as an alternative to standard bit-parallel links. The link employs the differential level encoded dual-rail (LEDR) two-phase asynchronous protocol, avoiding per-bit handshake and eliminating per-bit synchronization, in contrast with synchronous serial links that rely on complex clock recovery. Novel low-power current signaling driver and receiver circuits are presented, enabling high-speed communication at a very low voltage swing over long wires. In contrast, previous methods employed voltage sensing, resulting in higher swing, higher dynamic power, shorter wires or slower operation. The asynchronous current mode driver is designed to support varying data rates, and it eliminates the need for balanced codes and busy toggling that prevent deep discharge. The data cycle time of the link is equal to a single gate delay, enabling 67 Gb/s throughput in 65-nm technology. Wave-pipelining is employed also by the asynchronous SERDES circuits, to enable such high speed operation. The link was SPICE simulated for 65-nm technology, using wire models obtained by a 3-D EM solver. The link incurs lower power and area relative to synchronous and asynchronous bit-parallel communications, and these relative benefits also scale with technology.
机译:提出了一种用于片上通信的异步高速流水线位串行链接,作为标准位并行链接的替代方案。与依赖复杂时钟恢复的同步串行链路相比,该链路采用差分级别编码的双轨(LEDR)两阶段异步协议,避免了每比特的握手并消除了每比特的同步。提出了新颖的低功耗电流信号驱动器和接收器电路,可在长导线上以非常低的电压摆幅实现高速通信。相比之下,先前的方法采用电压感测,导致较高的摆幅,较高的动态功率,较短的导线或较慢的操作。异步电流模式驱动器旨在支持变化的数据速率,并且消除了平衡代码和繁忙触发的需要,以防止深度放电。链路的数据周期时间等于单选通延迟,从而在65纳米技术中实现67 Gb / s的吞吐量。异步SERDES电路也采用了流水线技术,以实现这种高速操作。使用3-D EM求解器获得的导线模型,针对65 nm技术对该链接进行了SPICE仿真。相对于同步和异步位并行通信,该链路的功耗和面积更低,并且这些相对优势也随技术而扩展。

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