An On-Time Generator with Zero Quiescent Power Consumption Suitable for AOT Buck Converters

Ze-kun Zhou, Zheng Jin, Jianwen Cao, Bo Zhang, Yue Shi
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Abstract

A zero-quiescent-power-consumption on-time generator is proposed in this paper, which is suitable for adaptive on-time (AOT) controlled Buck converters aiming at constant switching frequency. Instead of adopting operational amplifiers for voltage-to-current conversion in conventional methods, an adaptive compensation mechanism is presented to realize a current linearly proportional to regulated output voltage, Vo, with no operational amplifier, which is used to obtain a voltage proportional to output voltage. Besides, a resistor-capacitor filter is utilized to achieve a ramp signal with slope proportional to supply voltage, VIN. By this method, an on time, TON, proportional to Vo/VIN is realized, which is the core control law of AOT Buck converters. The proposed circuit is validated in a 0.18μm BCD technology, which demonstrates the accuracy of the TON is higher than 86% with temperatures and process variations. In the case of VIN=5V and Vo=1.2V, the average dynamic current of the proposed on-time generator is only 1.465μA in one switching period Tsw, while consuming zero quiescent power.
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一种适用于AOT降压变换器的零静态功耗准时发电机
提出了一种适用于开关频率恒定的自适应on-time (AOT)控制降压变换器的零静态功耗on-time发生器。本文提出了一种自适应补偿机制,在不使用运放的情况下,实现与稳压输出电压Vo成线性比例的电流,而不使用运放来获得与输出电压成正比的电压。此外,利用电阻-电容滤波器实现斜率与电源电压VIN成正比的斜坡信号。通过该方法实现了与Vo/VIN成正比的on time TON,这是AOT降压变换器的核心控制规律。该电路在0.18μm BCD技术上进行了验证,结果表明,随温度和工艺变化,TON的精度高于86%。在VIN=5V, Vo=1.2V的情况下,所提出的导通发电机在一个开关周期(Tsw)内的平均动态电流仅为1.465μA,而静态功率为零。
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