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首页> 外文期刊>IEEE Journal of Solid-State Circuits >A 1.6-GHz dual modulus prescaler using the extended true-single-phase-clock CMOS circuit technique (E-TSPC)
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A 1.6-GHz dual modulus prescaler using the extended true-single-phase-clock CMOS circuit technique (E-TSPC)

机译:使用扩展的真单相时钟CMOS电路技术(E-TSPC)的1.6 GHz双模预分频器

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摘要

The implementation of a dual-modulus prescaler (divide by 128/129) using an extension of the true-single-phase-clock (TSPC) technique, the extended TSPC (E-TSPC), is presented. The E-TSPC consists of a set of composition rules for single-phase-clock circuits employing static, dynamic, latch, data-precharged, and NMOS-like CMOS blocks. The composition rules, as well as the CMOS blocks, are described and discussed. The experimental results of the complete dual-modulus prescaler, implemented in a 0.8 /spl mu/m CMOS process, show a maximum 1.59 GHz operation rate at 5 V with 12.8 mW power consumption. They are compared with the results from other recent implementations showing that the proposed E-TSPC circuit can reach high speed with both smaller area and lower power consumption.
机译:提出了使用真单相时钟(TSPC)技术的扩展,扩展的TSPC(E-TSPC)实现双模预分频器(除以128/129)。 E-TSPC由一组组成规则组成,适用于采用静态,动态,锁存,数据预充电和类似NMOS的CMOS块的单相时钟电路。描述和讨论了组成规则以及CMOS模块。以0.8 / spl mu / m CMOS工艺实现的完整双模预分频器的实验结果显示,在5 V电压下最大功耗为1.59 GHz,功耗为12.8 mW。将它们与其他近期实现的结果进行比较,结果表明,所提出的E-TSPC电路可以在较小的面积和较低的功耗下达到高速。

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