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首页> 外文期刊>AEU: Archiv fur Elektronik und Ubertragungstechnik: Electronic and Communication >Low-voltage PVT-insensitive bulk-driven OTA with enhanced DC gain in 65-nm CMOS process
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Low-voltage PVT-insensitive bulk-driven OTA with enhanced DC gain in 65-nm CMOS process

机译:低压PVT - 不敏感的散装OTA,具有增强的直流增益在65-NM CMOS工艺中

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摘要

This paper presents a high DC gain bulk-driven operational transconductance amplifier (OTA) for low voltage applications. A cross-coupled active load is employed at the bulk-driven input stage to enhance the gain of OTA. A cross-forward (CF) gain stage was placed between the input and output stages of the OTA to enhance the output stage transconductance. The CF stage improves the phase margin of OTA and keeps the amplifier stable even for large capacitive loads (up to 50 pF) and also improves overall DC gain. The proposed OTA simulated using UMC 65-nm standard CMOS process, operates at a supply voltage of 0.5 V. Simulation results show that the OTA provides a gain of 72 dB at very low-frequencies. It has a phase margin of 74 degrees and a unity gain frequency of 680 kHz for a load capacitance of 20 pF. Because of the bulk-driven input stage, the OTA achieved rail-to-rail input common-mode range. When the OTA simulated with a supply voltage of 0.35 V and load capacitance of 20 pF, the OTA provides a DC gain of 55 dB and a phase margin of 68 degrees at a unity gain frequency of 617 kHz. The power dissipations were 3.03 mu W and 1.56 mu W for supply voltages of 0.5 V and 0.35 V, respectively. In comparison to previous works, the figure of merit of the proposed OTA has more than doubled in all respects.
机译:本文介绍了低压应用的高直流增益批量驱动的操作跨导放大器(OTA)。在散装的输入级采用交叉耦合的有效负载,以增强OTA的增益。在OTA的输入和输出阶段置于OTA的输入和输出级之间以增强输出级跨导之间的交叉前进(CF)增益阶段。 CF级改善了OTA的相余量,即使对于大型电容负载(高达50pF)也可以保持放大器稳定,并且还提高了整体直流增益。使用UMC 65-NM标准CMOS工艺模拟的所提出的OTA在0.5V的电源电压下操作。仿真结果表明,OTA在非常低频下提供72 dB的增益。它具有74度的相位余量,并且为20pF的负载电容为680kHz的单位增益频率。由于批量驱动的输入级,OTA实现了轨到轨输入共模范围。当具有0.35V的电源电压的OTA和20pf的负载电容模拟时,OTA在617kHz的单位增益频率下提供55dB的直流增益和68度的相位余量。功率耗散分别为3.03μW和1.56μW,供应电压分别为0.5 V和0.35 V.与以前的作品相比,所提出的OTA的优点是各方面的增加一倍多。

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