用于数字DC-DC转换器的电源和进程不敏感的12位DPWM

Huey Chian Foong, M. T. Tan, Yuanjin Zheng
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引用次数: 3

摘要

本文设计了一种用于数字DC-DC变换器的电源和工艺不敏感的12位数字脉宽调制器(DPWM)。DPWM由计数器和环振多路器分段抽头延迟线实现。采用电源不敏感复制偏置电路对差分延迟单元进行偏置,使抽头延迟线的环形振荡器对电源和工艺变化不敏感。仿真结果表明,当电源电压在1.5V ~ 2.5V范围内变化时,DPWM在1.03MHz时的开关频率变化为0.4%,在−40℃~ 90℃温度范围内,开关频率变化为0.95%。同时进行了蒙特卡罗模拟,以解释环形振荡器晶体管间失配的影响。当误差为±5% (3-σ)时,延时单元的最坏延时为0.87%。
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A supply and process-insensitive 12-bit DPWM for digital DC-DC converters
This paper presents the design of a supply and process-insensitive 12-bit Digital Pulse Width Modulator (DPWM) for digital DC-DC converters. The DPWM is realized by a counter and a ring oscillator-multiplexer segmented tapped delay line. The ring oscillator of the tapped delay line is made insensitive to supply and process variation by biasing the differential delay cells with a supply-insensitive replica bias circuit. Simulation results show that the variation of the switching frequency of the DPWM at 1.03MHz is 0.4% for supply voltage variation between 1.5V and 2.5V and 0.95% over the temperature range from −40°C to 90°C. Monte-Carlo simulation was also performed to account for the effect of mismatch between the transistors of the ring oscillator. The worst case delay of the delay cells is 0.87% for ±5% (3-σ) mismatch.
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