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Operational Transconductance Amplifier With Class-B Slew-Rate Boosting for Fast High-Performance Switched-Capacitor Circuits

机译:具有B类斜率提升功能的运算跨导放大器,用于快速高性能开关电容电路

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摘要

In this paper, a technique for slew-rate (SR) boosting suitable for switched-capacitor circuits is proposed. The proposed technique makes use of a class-B auxiliary amplifier that generates a compensating current only when high SR is demanded by large signals. The proposed architecture employs simple circuitry to detect the need for a large output current by employing a highly sensitive pre-amplifier followed by a class-B amplifier. The functionality of the class-B transconductance amplifier is dictated by a predefined hysteresis, and operates in parallel with the main amplifier. The proposed solution demands small static power (under 20% of main amplifier power) due to its class-B nature. The experimental results in a 40-nm CMOS technology show more than 45% reduction in slew time, and a 28% shorter slew time for 1% settling time when used in a typical 4.5 bit/stage block commonly used in pipelined analog-to-digital converters. Compared with the core amplifier, HD3 at 500 MHz reduces by more than 10 dB when the SR boosting circuit is activated.
机译:本文提出了一种适用于开关电容器电路的摆率(SR)升压技术。所提出的技术利用仅在大信号需要高SR时才产生补偿电流的B类辅助放大器。所提出的架构采用简单的电路,以通过采用高灵敏度的前置放大器,然后是B类放大器来检测对大输出电流的需求。 B类跨导放大器的功能由预定义的迟滞决定,并与主放大器并联工作。所提出的解决方案由于其B级特性而需要很小的静态功率(低于主放大器功率的20%)。在通常使用的典型4.5位/级模块中使用40 nm CMOS技术的实验结果表明,压摆时间减少了45%以上,压摆时间缩短了28%至1%的建立时间。在流水线模数转换器中。与核心放大器相比,激活SR升压电路时,500 MHz的HD3降低了10 dB以上。

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