Analysis and implementation of quick-start pulse generator by CMOS flipped on quartz substrate

Parit Kanjanavirojkul, Nguyen Ngoc Mai-Khanh, T. Iizuka, T. Nakura, K. Asada
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引用次数: 4

Abstract

This paper presents a pulse generator (PG), aiming at low power applications with low duty cycle. The PG is capable to provide an efficient pulse generation at a frequency near and beyond CMOS's Fmax. It also features quick starting time and zero stand-by power. The PG is designed by CMOS flipped to a transmission line resonator on a quartz substrate. Efficiency, oscillation frequency and pulse duration can be tuned by adjusting the transmission line parameters. Two prototypes with coupling gap of 1μm and 2μm at 11.5GHz oscillation frequency are fabricated. Measurement shows energy conversion efficiency of 2.37% and 2.05%, respectively, with energy consumption of 5.4pJ/pulse.
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石英基板上CMOS翻转快速启动脉冲发生器的分析与实现
针对低占空比的低功耗应用,提出了一种脉冲发生器(PG)。PG能够在接近和超过CMOS的Fmax的频率上提供有效的脉冲产生。它还具有快速启动时间和零待机功率。PG是由CMOS翻转到石英衬底上的传输线谐振器设计的。通过调整传输线参数,可以调节效率、振荡频率和脉冲持续时间。在11.5GHz振荡频率下,制作了耦合间隙分别为1μm和2μm的样机。测量结果表明,能量转换效率分别为2.37%和2.05%,能耗为5.4pJ/脉冲。
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