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Current-Mode Full-Duplex Transceiver for Lossy On-Chip Global Interconnects

机译:电流模式全双工收发器,用于有损片上全局互连

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This paper presents an energy efficient full-duplex (FD) current-mode transceiver for on-chip global interconnects. As it shares the same signaling port for transmitting and receiving signal, the wire efficiency is increased by 2× compared to unidirectional transceivers. The proposed hybrid transceiver has a directional inverter/buffer (DIB) circuit which inverts the outbound signal whereas conveys the incoming signal maintaining the same phase with a gain greater than one. As a result, the incoming signal is seamlessly separated from the strong outbound signal just by weighted addition of the two compound signals on the either sides of the DIB by a transconductor (gm) circuit. This is in contrast to existing subtraction based signal dissociation architecture. Importantly, the inbound signal retrieval process is a constructive one where the two components of the incoming signal are added up to provide inherent gain, making it suitable for lossy on-chip link. Moreover, the DIB circuit has very low active impedance at its input/output node and hence supports high bandwidth transmission without using any passive terminator. A prototype design has been implemented in 0.18- μm CMOS process for a global interconnect of 5 mm length. Measured results give an efficiency of 0.19 pJ/b/mm for an FD operation of 4.0 Gb/s.
机译:本文提出了一种用于片上全局互连的高能效全双工(FD)电流模式收发器。由于它共享用于发送和接收信号的相同信令端口,因此与单向收发器相比,有线效率提高了2倍。所提出的混合收发器具有定向倒相器/缓冲器(DIB)电路,该电路将出站信号反相,同时以大于1的增益传送保持相同相位的输入信号。结果,仅通过跨导(gm)电路在DIB两侧将两个复合信号加权相加,就可以将输入信号与强输出信号无缝分离。这与现有的基于减法的信号解离架构相反。重要的是,入站信号检索过程是一种建设性的过程,其中将输入信号的两个分量加起来以提供固有增益,使其适合于有损片上链路。此外,DIB电路在其输入/输出节点处具有非常低的有源阻抗,因此无需使用任何无源终结器即可支持高带宽传输。原型设计已在0.18-μmCMOS工艺中实现,用于5mm长的全局互连。对于4.0 Gb / s的FD操作,测量结果得出的效率为0.19 pJ / b / mm。

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