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Low power low-dropout voltage regulator (LDO) with fast load transient response

机译:具有快速负载瞬态响应的低功耗低压差稳压器(LDO)

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摘要

With the recent explosion of devices driving “smart technologies” such as tablets, phones, all the portable and hand-held electronic devices such as cellular phones, PDA, MP3 players, GPS and other multi-media entertainments. The target for the portable battery operated product is towards reducing the number of battery cells, in order to decrease the cost and size. All these battery operated devices need power management circuits to work efficiently and extend the battery life, thus power regulation and power management have become one of the fastest growing sectors in the industry.The goal of this project is to design and implement a low power fully integrated CMOS low-dropout voltage regulator (LDO) based on quick response (QR) circuit to improve the load transient response. A 2.5V, 150mA with proposed high speed response circuit has been implemented in 0.25µm TSMC CMOS technology. The low-voltage operation ability, high current efficiency and low-voltage transient response performance can be achieved. With the small on-chip decoupling capacitor, the LDO with proposed QR circuit can achieve a fast load transient response with less transient overshoot or undershoot when instantaneous load fluctuation. By using the PMOS pass gate in the output stage we achieved a small regulator area and minimum dropout voltage for 100~150mA of output current. The proposed high speed response circuit included Memory circuit, PD_Charge and PD_Discharge circuit, Comparator and Vout_Discharge circuit.
机译:随着最近驱动“智能技术”的设备(如平板电脑,电话)以及所有便携式和手持式电子设备(如蜂窝电话,PDA,MP3播放器,GPS和其他多媒体娱乐设备)的爆炸式增长。便携式电池操作产品的目标是减少电池单元的数量,以降低成本和尺寸。所有这些电池供电的设备都需要电源管理电路来有效工作并延长电池寿命,因此电源调节和电源管理已成为业内发展最快的部门之一。该项目的目标是充分设计和实现低功耗基于快速响应(QR)电路的集成CMOS低压降稳压器(LDO),可改善负载瞬态响应。采用0.25µm台积电CMOS技术实现了2.5V,150mA的高速响应电路。可以实现低电压工作能力,高电流效率和低电压瞬态响应性能。利用小型的片上去耦电容器,带有建议的QR电路的LDO可以实现快速的负载瞬态响应,并且在瞬时负载波动时具有较小的瞬态过冲或下冲。通过在输出级中使用PMOS传输门,我们实现了较小的调节器面积和100〜150mA输出电流的最小压降电压。拟议的高速响应电路包括存储电路,PD_Charge和PD_Discharge电路,比较器和Vout_Discharge电路。

著录项

  • 作者

    Lim Lay Leng;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 en
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