A Voltage Error Quantizer For Digital Low Dropout Regulators With Fast Transient Response and Low Steady-State Error

Kaize Zhou, Dejian Li, Chongfei Shen, Yuxuan Du, Zhuo Chen, Weiwei Shan
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Abstract

This paper proposes a voltage error quantizer for digital low dropout regulators (DLDOs) with fast transient response and low steady-state error. Compared with traditional DLDOs quantizing the reference voltage and output voltage separately, the proposed voltage error quantizer quantifies the voltage difference directly with high quantization speed and accuracy. Implemented in 28nm CMOS process, the proposed quantizer with on-chip self-calibration identifies the voltage difference as small as 4mV and has stable output codes at sampling frequencies up to 500MHz, which satisfies the fast transient response and low steady-state error demands of DLDOs.
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具有快速瞬态响应和低稳态误差的数字低压差稳压器的电压误差量化器
本文提出了一种电压误差量化器,用于具有快速瞬态响应和低稳态误差的数字低差稳压器。与传统的分别量化基准电压和输出电压的dldo相比,本文提出的电压误差量化器直接量化电压差,量化速度快,精度高。该量化器实现在28nm CMOS工艺上,具有片上自校准功能,可识别小至4mV的电压差,并且在高达500MHz的采样频率下具有稳定的输出码,满足dldo快速瞬态响应和低稳态误差的要求。
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