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An Ultra-Low-Voltage CMOS Process-Insensitive Self-Biased OTA With Rail-to-Rail Input Range

机译:具有轨至轨输入范围的超低电压CMOS工艺不敏感自偏置OTA

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摘要

An operational-transconductance-amplifier (OTA) design for ultra-low voltage ultra-low power applications is proposed. The input stage of the proposed OTA utilizes a bulk-driven pseudo-differential pair to allow minimum supply voltage while achieving a rail-to-rail input range. All the transistors in the proposed OTA operate in the subthreshold region. Using a novel self-biasing technique to bias the OTA obviates the need for extra biasing circuitry and enhances the performance of the OTA. The proposed technique ensures the OTA robustness to process variations and increases design feasibility under ultra-low-voltage conditions. Moreover, the proposed biasing technique significantly improves the common-mode and power-supply rejection of the OTA. To further enhance the bandwidth and allow the use of smaller compensation capacitors, a compensation network based on a damping-factor control circuit is exploited. The OTA is fabricated in a 65 nm CMOS technology. Measurement results show that the OTA provides a low-frequency gain of 46 dB and rail-to-rail input common-mode range with a supply voltage as low as 0.5 V. The dc gain of the OTA is greater than 42 dB for supply voltage as low as 0.35 V. The power dissipation is 182 at and 17 at .
机译:提出了一种用于超低压超低功耗应用的运算跨导放大器(OTA)设计。拟议中的OTA的输入级利用了一个体驱动的伪差分对,以在达到轨至轨输入范围的同时提供最小的电源电压。提议的OTA中的所有晶体管都在亚阈值区域内工作。使用新颖的自偏置技术对OTA进行偏置消除了对额外偏置电路的需求,并增强了OTA的性能。所提出的技术确保了OTA对工艺变化的鲁棒性,并增加了在超低压条件下的设计可行性。此外,提出的偏置技术显着改善了OTA的共模和电源抑制。为了进一步提高带宽并允许使用较小的补偿电容器,开发了一种基于阻尼因子控制电路的补偿网络。 OTA采用65 nm CMOS技术制造。测量结果表明,OTA提供46 dB的低频增益和轨至轨输入共模范围,且电源电压低至0.5V。OTA的直流增益对于电源电压大于42 dB低至0.35V。功耗为182 at和17 at。

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