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A Low-Power Low-Skew Current-Mode Clock Distribution Network in 90nm CMOS Technology

机译:采用90nm CMOS技术的低功耗低倾斜电流模式时钟分配网络

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A current-mode clock distribution network (CMCDN) for low-power low-skew on-chip clock distribution is presented in this paper. A novel low-power current-mode receiver circuit with common-mode correction for the CM-CDN is also presented. The CM-CDN and associated receiver circuit are designed and optimized in 90nm CMOS process with 1V supply voltage. The performance of the proposed CM-CDN is analyzed and simulated under parameter variations using corner analysis as well as Monte Carlo model files provided by the foundry. It is shown that the worst case skew of a 1-Level H-Tree CM-CDN is 21ps considering on-chip process variation whereas skew of an optimized voltage-mode CDN (VM-CDN) in the same process is 33ps. Power consumption of the proposed CM-CDN operating at 4GHz is 6.28mW which is 57% less as compared to the voltage-mode CDN. Also for the same input impedance of 200O, the proposed receiver consumes a power of 521.4µW which is 35% less than that of state of the art current-mode receiver.
机译:本文提出了一种用于低功耗低偏斜片上时钟分配的电流模式时钟分配网络(CMCDN)。还提出了一种用于CM-CDN的具有共模校正的新型低功耗电流模式接收器电路。 CM-CDN和相关的接收器电路是在90nm CMOS工艺中以1V电源电压进行设计和优化的。使用拐角分析以及铸造厂提供的蒙特卡洛模型文件,在参数变化的情况下对建议的CM-CDN的性能进行了分析和仿真。结果表明,考虑到片上工艺变化,一阶H-Tree CM-CDN的最坏情况歪斜为21ps,而在同一过程中优化电压模式CDN(VM-CDN)的歪斜为33ps。提议的以4GHz运行的CM-CDN的功耗为6.28mW,与电压模式CDN相比降低了57%。同样,对于相同的200O输入阻抗,建议的接收器功耗为521.4µW,比现有电流模式接收器的功耗低35%。

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