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Bulk-driven fully differential difference amplifier for ultra-low voltage applications

机译:批量驱动的全差分差动放大器,用于超低压应用

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This paper deals with the design and analysis of a fully differential difference amplifier (FDDA) based on a pseudo differential topology that was implemented in a 130 nm CMOS technology. The proposed FDDA can reliably work with its power supply voltage as low as 0.4 V. The FDDA was designed using the bulk-driven technique, and Rail-to-Rail (RtR) input voltage range was ensured through the use of bulk-driven input transistors. Additionally, the RtR input/output CMFB, based on FDDA topology, was proposed. The output voltage range is near RtR (±0.36 V). The CMRR and PSRR of 60.2 dB and 64.4 dB was achieved, respectively. The proposed FDDA shows very good linearity in wide output range, thus the THD of -156 dB@1 mV was reached. Furthermore, the proposed FDDA was used as a building block of an ultra-low voltage-to-frequency converter.
机译:本文讨论了基于伪差分拓扑的全差分差分放大器(FDDA)的设计和分析,该伪差分拓扑是在130 nm CMOS技术中实现的。所提议的FDDA可以在低至0.4 V的电源电压下可靠地工作。FDDA是采用批量驱动技术设计的,并且通过使用批量驱动输入确保了轨到轨(RtR)输入电压范围晶体管。此外,提出了基于FDDA拓扑的RtR输入/输出CMFB。输出电压范围接近RtR(±0.36 V)。 CMRR和PSRR分别达到60.2 dB和64.4 dB。所提出的FDDA在很宽的输出范围内显示出非常好的线性,因此达到了-156 dB @ 1 mV的THD。此外,建议的FDDA用作超低电压频率转换器的基础。

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