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SINGLE MILLER CAPACITOR COMPENSATED MULTISTAGE AMPLIFIERS FOR LARGE CAPACITIVE LOAD APPLICATIONS

机译:用于大型电容负载应用的单米勒电容补偿多级放大器

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This work presents two novel compensation techniques for low-voltage three-stage amplifiers driving large capacitive loads: Single Miller Capacitor Compensation (SMC) and Single Miller Capacitor Feedforward Compensation (SMFFC). They are implemented in amplifiers fabricated in standard 0.5μm CMOS technology. The use of a single Miller compensation capacitor in three stage amplifiers is explored. The small compensation capacitors used in the proposed topologies enhance the bandwidth and significantly reduce the silicon area. Feedforward paths are properly used to improve the stability of the amplifiers. Experimental results show that the SMC and SMFFC amplifiers achieve gain-bandwidth products of 4.6MHz and 9MHz, respectively, when driving a load of 25KΩ/120pF. Each amplifier operates from a ±1V supply, dissipates less than 0.42mW of power and occupies less than 0.02mm{sup}2 of silicon area.
机译:这项工作提出了两种新的补偿技术,用于低压三级放大器驱动大电容负载:单米勒电容器补偿(SMC)和单铣削电容器馈电补偿(SMFFC)。它们在标准0.5μmCMOS技术中制造的放大器中实现。探讨了在三级放大器中使用单个米勒补偿电容。所提出的拓扑中使用的小补偿电容增强了带宽并显着减少了硅区域。前馈路径适当地用于提高放大器的稳定性。实验结果表明,SMC和SMFFC放大器分别实现4.6MHz和9MHz的增益带宽产品,当时驱动25kΩ/ 120pf的负载。每个放大器从±1V电源操作,散射小于0.42mW的功率,并且占用硅区域的0.02mm {sup} 2。

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