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Fully Integrated 1.8 V Output 300 mA Load LDO with Fast Transient Response
by
Xia, Ruirui
, Li, Bo
, Gao, Yuexin
, Gao, Mali
, Cai, Xiaowu
in
Circuit design
/ Circuits
/ Design and construction
/ Electric current regulators
/ Electric potential
/ Linear quadratic regulator
/ Methods
/ Power consumption
/ Power semiconductor devices
/ Power supply
/ Transient current
/ Transient response
/ Transistors
/ Voltage
/ Voltage regulators
2023
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Fully Integrated 1.8 V Output 300 mA Load LDO with Fast Transient Response
by
Xia, Ruirui
, Li, Bo
, Gao, Yuexin
, Gao, Mali
, Cai, Xiaowu
in
Circuit design
/ Circuits
/ Design and construction
/ Electric current regulators
/ Electric potential
/ Linear quadratic regulator
/ Methods
/ Power consumption
/ Power semiconductor devices
/ Power supply
/ Transient current
/ Transient response
/ Transistors
/ Voltage
/ Voltage regulators
2023
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Do you wish to request the book?
Fully Integrated 1.8 V Output 300 mA Load LDO with Fast Transient Response
by
Xia, Ruirui
, Li, Bo
, Gao, Yuexin
, Gao, Mali
, Cai, Xiaowu
in
Circuit design
/ Circuits
/ Design and construction
/ Electric current regulators
/ Electric potential
/ Linear quadratic regulator
/ Methods
/ Power consumption
/ Power semiconductor devices
/ Power supply
/ Transient current
/ Transient response
/ Transistors
/ Voltage
/ Voltage regulators
2023
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Fully Integrated 1.8 V Output 300 mA Load LDO with Fast Transient Response
Journal Article
Fully Integrated 1.8 V Output 300 mA Load LDO with Fast Transient Response
2023
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Overview
Based on an 0.18 μm process, this paper proposes a fully integrated 1.8 V output 300 mA load low-dropout linear regulator (LDO) with a fast transient response. By inserting a transient-enhanced biased Class AB super source follower at the gate of the output power transistor, this LDO can quickly adjust the gate voltage of the power transistor without additional power consumption. By adding an active capacitor circuit composed of a fast comparator with offset voltage at the output point, this LDO can quickly charge/discharge the transient current and accelerate the transient response without reducing the circuit stability. Simulation results show that the proposed LDO has an output voltage of 1.8 V, when the input voltage is 2 V to 5 V while consuming 66.4 μA of quiescent current. The proposed capless LDO has a 1.94 µV/mA load regulation, a 0.55 mV/V linear regulation, and a −60 dB@1 kHz power supply rejection. When the load current steps from 3 mA to 300 mA in 300 ns, the LDO settles in 400 ns with an overshoot and undershoot of 67 mV and 86 mV, respectively.
Publisher
MDPI AG
Subject
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