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ANALYSIS AND CHARACTERIZATION OF A PROGRAMMABLE LOW-DROPOUT REGULATOR

机译:可编程低压差稳压器的分析和表征

摘要

As portable electronic devices become a part of daily life, it creates a huge market for electronic components for those battery driven devices. Low-dropout (LDO) voltage regulator is an important part that provides steady DC supplies for other components. Low power, low noise and high stability are the desired features of a regulator. Detailed analyses on CMOS LDO design and the designs of two different compensation schemes for LDO are presented in this thesis. Experimental results of the designed compensation programmable low-power low-dropout (LDO) Voltage Regulator, in comparison with an existing compensated LDO, are also presented.The designed compensation implementation demonstrates a fast transient response and high stability in all programmable output levels. Testing chip fabricated in a standard 0.35 CMOS technology provided the important parameters of the regulator, e.g. transient response, load regulation, line regulation, power supply rejection ratio (PSRR).
机译:随着便携式电子设备成为日常生活的一部分,它为那些电池驱动设备创造了巨大的电子组件市场。低压降(LDO)稳压器是为其他组件提供稳定直流电源的重要组成部分。低功耗,低噪声和高稳定性是稳压器的理想功能。本文对CMOS LDO设计进行了详细的分析,并给出了两种不同的LDO补偿方案的设计。与现有的补偿LDO相比,还介绍了设计的补偿可编程低功耗低压降(LDO)稳压器的实验结果,该设计的补偿实现方案在所有可编程输出电平下均表现出快速瞬态响应和高稳定性。以标准0.35 CMOS技术制造的测试芯片提供了调节器的重要参数,例如瞬态响应,负载调节,线路调节,电源抑制比(PSRR)。

著录项

  • 作者

    Qiu Xiaofan;

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  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 en_US
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