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An Ultra Low-Voltage and Low-Power OTA Using Bulk-Input Technique and Its Application in Active-RC Filters
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作者 Arash Ahmadpour 《Circuits and Systems》 2011年第3期183-189,共7页
This paper presents the design of a two-stage bulk-input pseudo-differential operational transconductance amplifier (OTA) and its application in active-RC filters. The OTA was designed in 90 nm CMOS process and operat... This paper presents the design of a two-stage bulk-input pseudo-differential operational transconductance amplifier (OTA) and its application in active-RC filters. The OTA was designed in 90 nm CMOS process and operates at a single supply voltage of 0.5 V. Using a two-path bulk-driven OTA by the combination of two different amplifiers the DC gain and speed of the OTA is increased. Rail-to-rail input is made possible using the transistor’s bulk terminal as in input. Also a Miller-Feed-forward (MFF) compensation is utilized which is improved the gain bandwidth (GBW) and phase margin of the OTA. In addition, a new merged cross-coupled self-cascode pair is used that can provide higher gain. Also, a novel cost-effective bulk-input common-mode feedback (CMFB) circuit has been designed. Simplicity and ability of using this new merged CMFB circuit is superior compared with state-of-the-art CMFBs. The OTA has a 70.2 dB DC gain, a 2.5 MHz GBW and a 70.8o phase margin for a 20 PF capacitive load whereas consumes only 25 μw. Finally, an 8th order Butterworth active Biquadrate RC filter has been designed and this OTA was checked by a typical switched-capacitor (SC) integrator with a 1 MHz clock-frequency. 展开更多
关键词 Operational TRANSCONDUCTANCE Amplifier (OTA) Common-Mode Feedback (CMFB) Bulk-Input SWITCHED-CAPACITOR (SC) INTEGRATOR miller-feed-forward (MFF)
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相位裕度与负载无关的缓冲电路设计
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作者 张天柱 魏廷存 吴伟 《微电子学》 CAS CSCD 北大核心 2007年第5期752-755,共4页
针对TFT-LCD驱动芯片的电荷泵,设计了一个带密勒补偿和一条前馈通路的缓冲电路。理论分析表明,该电路的增益、稳定性等小信号特性与负载电容无关;相位裕度与负载电流无关。Hspice仿真结果显示,当负载电容从0.05μF到20μF变化时,系统的... 针对TFT-LCD驱动芯片的电荷泵,设计了一个带密勒补偿和一条前馈通路的缓冲电路。理论分析表明,该电路的增益、稳定性等小信号特性与负载电容无关;相位裕度与负载电流无关。Hspice仿真结果显示,当负载电容从0.05μF到20μF变化时,系统的相位裕度变化为2°;当负载电流从3 mA到25 mA变化时,系统的相位裕度变化在3°以内。 展开更多
关键词 电荷泵 缓冲电路 密勒补偿 前馈通路 相位裕度
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基于双调零电阻嵌套密勒补偿的多级放大器设计
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作者 高瑜宏 《微电子学》 CAS 北大核心 2022年第5期879-885,共7页
提出了一种采用双调零电阻嵌套密勒补偿的方法,设计了一种具有高增益前馈跨导级的大电容驱动放大器。该放大器在无需严格无源补偿元件匹配要求的情况下,获得了高增益带宽积和大相角裕度,从而增强了设计系统对工艺、电压、温度变化的抗... 提出了一种采用双调零电阻嵌套密勒补偿的方法,设计了一种具有高增益前馈跨导级的大电容驱动放大器。该放大器在无需严格无源补偿元件匹配要求的情况下,获得了高增益带宽积和大相角裕度,从而增强了设计系统对工艺、电压、温度变化的抗干扰性。该放大器结构简单,可应用于具有轨对轨输入和输出的放大器。给出了一个基于0.35μm CMOS工艺的三级轨-轨AB类放大器的设计实例,测试了放大器的性能。结果表明,在200 kΩ电阻负载与600 pF容性负载并联的条件下,增益带宽积为4.4 MHz,相角裕度为85°,功耗为3.6 mW,总谐波失真THD为0.25%。该放大器适用于高输出驱动器件。 展开更多
关键词 运算放大器 嵌套密勒补偿 前馈跨导
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