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Hybrid bidirectional transceiver for multipoint-to-multipoint signalling across on-chip global interconnects

机译:混合双向收发器,用于跨片上全局互连的多点到多点信令

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The authors propose a hybrid transceiver and an energy-efficient link architecture for bidirectional multipoint-to-multipoint signalling across on-chip global interconnect. The proposed link architecture eliminates the need for passive termination for bandwidth enhancement by means of active termination, reducing the required transmitter signalling current drastically and hence, improving the overall energy efficiency of the link. Also, compared to existing passive terminated interconnect with current-mode receivers at all the points, the proposed link deploys low impedance current-mode receivers providing active terminations at both the ends of the interconnect and high-impedance voltage-mode receivers, which do not consume any portion of the signalling current, at the intermediate nodes of the interconnect which further lowers the required transmitter signalling current. A mixed-mode or hybrid transceiver architecture has been proposed for the aforementioned link, which can act either as a current-mode transmitter or a current-mode receiver or a voltage-mode receiver. The architecture has been implemented in 0.18-mu m complementary metal oxide semiconductor technology for an interconnect of length 4 mm and having five transceiver nodes. The total energy efficiency of the architecture is 0.70 pJ/b for a speed of 3.0 Gb/s.
机译:作者提出了一种混合收发器和用于片上整体互连的双向多点到多点信令的节能链路架构。所提出的链接架构通过有源终端消除了用于带宽增强的被动终端的需要,从而减少了所需的发射机信令电流,从而提高了链路的整体能量效率。另外,与在所有点的现有无源终止互连相比,所提出的链接部署低阻抗电流模式接收器,在互连和高阻抗电压模式接收器的两端处提供有源终端,而不是消耗信令电流的任何部分,在互连的中间节点处,进一步降低所需的发射器信令电流。已经提出了一种用于上述链路的混合模式或混合收发器架构,其可以作为电流模式发射器或电流模式接收器或电压模式接收器。该架构已经以0.18-mu m互补金属氧化物半导体技术实现,用于长度为4mm并具有五个收发器节点。架构的总能效为0.70pj / b,速度为3.0 gb / s。

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