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Highly Reliable Multiple-Valued One-Phase Signalling for an Asynchronous On-Chip Communication Link

机译:异步片上通信链路的高度可靠的多值单相信令

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This paper presents highly reliable multiple-valued one-phase signalling for an asynchronous on-chip communication link under process, supply-voltage and temperature variations. New multiple-valued dual-rail encoding, where each code is represented by the minimum set of three values, makes it possible to perform asynchronous communication between modules with just two wires. Since an appropriate current level is individually assigned to the logic value, a sufficient dynamic range between adjacent current signals can be maintained in the proposed multiple-valued current-mode (MVCM) circuit, which improves the robustness against the process variation. Moreover, as the supply-voltage and the temperature variations in smaller dimensions of circuit elements are dominated as the common-mode variation, a local reference voltage signal according to the variations can be adaptively generated to compensate characteristic change of the MVCM-circuit component. As a result, the proposed asynchronous on-chip communication link is correctly operated in the operation range from 1.1 V to 1.4 V of the supply voltage and that from -50℃ to 75℃ under the process variation of 3σ. In fact, it is demonstrated by HSPICE simulation in a 0.13-μm CMOS process that the throughput of the proposed circuit is enhanced to 435% in comparison with that of the conventional 4-phase asynchronous communication circuit under a comparable energy dissipation.
机译:本文针对过程,电源电压和温度变化下的异步片上通信链路提出了高度可靠的多值单相信号。新的多值双轨编码(其中每个代码由三个值的最小集合表示)使得仅用两根导线就可以在模块之间执行异步通信。由于适当的电流水平被单独分配给逻辑值,因此,在建议的多值电流模式(MVCM)电路中,可以在相邻电流信号之间保持足够的动态范围,从而提高了抵抗过程变化的鲁棒性。此外,由于电路元件的较小尺寸中的电源电压和温度变化被控制为共模变化,因此可以自适应地生成根据该变化的局部参考电压信号,以补偿MVCM电路组件的特性变化。结果,在3σ的过程变化下,所建议的异步片上通信链路可以在1.1 V至1.4 V的电源电压范围和-50℃至75℃的工作电压范围内正确运行。实际上,通过HSPICE仿真在0.13μmCMOS工艺中证明,与传统的4相异步通信电路相比,在可比较的能量消耗下,所提出的电路的吞吐量提高到了435%。

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