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首页> 外文期刊>IEEE Transactions on Circuits and Systems. II, Express Briefs >Design of Low-Power Analog Drivers Based on Slew-Rate Enhancement Circuits for CMOS Low-Dropout Regulators
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Design of Low-Power Analog Drivers Based on Slew-Rate Enhancement Circuits for CMOS Low-Dropout Regulators

机译:基于斜率增强电路的CMOS低压降稳压器低功耗模拟驱动器设计

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摘要

Low-power analog driver based on a single-stage amplifier with an embedded current-detection slew-rate enhancement (SRE) circuit is presented. By developing a systematic way to design both the response time and optimal sizing of driving transistors in the SRE circuit, the SRE circuit can be controlled to turn on or turn off properly. In addition, the analog driver only dissipates low static power and its transient responses are significantly improved without transient overshoot when driving large capacitive loads. Implemented in a 0.6- μm CMOS process, a current-mirror amplifier with the current-detection SRE circuit has achieved over 43 times improvement in both slew rate and 1% settling time when driving a 470-pF load capacitor. When the proposed analog driver is employed in a 50-mA CMOS low-dropout regulator (LDO), the resultant load transient response of the LDO has 2-fold improvement for the maximum load-current change, while the total quiescent current is only increased by less than 3%.
机译:提出了一种基于单级放大器的低功耗模拟驱动器,该放大器具有嵌入式电流检测压摆率增强(SRE)电路。通过开发一种系统的方法来设计SRE电路中的响应时间和驱动晶体管的最佳尺寸,可以控制SRE电路正确导通或关断。此外,模拟驱动器仅消耗低静态功率,并且在驱动大电容负载时其瞬态响应得到了显着改善,而没有瞬态过冲。具有0.6μmCMOS工艺的电流镜放大器具有电流检测SRE电路,在驱动470pF负载电容器时,压摆率和建立时间缩短1%时,实现了超过43倍的改善。当拟议的模拟驱动器用于50mA CMOS低压差稳压器(LDO)时,LDO的最终负载瞬态响应对于最大负载电流变化具有2倍的改善,而总静态电流仅增加了少于3%。

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