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VLSI implementation of Gm-C filter using modified Nauta OTA with double CMOS pair

机译:使用改进的Nauta OTA和双CMOS对的Gm-C滤波器的VLSI实现

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In the literature, a modified Nauta''s OTA has been proposed for achieving higher PSRR and CMRR. In this paper, a modified Nauta''s OTA with double CMOS pair is proposed and is used for implementing a programmable Gm-C filter. The double CMOS pair enables the transconductance to be varied by varying the bias voltages at high impedance nodes. This in turn results in programmability of the filter (F-tuning). For the purpose of comparison, the proposed OTA and Nauta''s OTA reported in the literature are implemented in UMC-0.18µm CMOS process and studied through simulation. The proposed OTA results in 11 dB increase in the PSRR and 21 dB increase in the CMRR compared to the Nauta''s OTA. The tunable second order Gm-C band pass filter using the proposed OTA is implemented and studied. Simulation of filter is done with BSIM3V3 parameters under (±0.9V) supply voltage and (±1.4V) supply voltage for biasing of double CMOS pair. It is verified from the post-layout simulation that the filter can be tuned over the range (10MHz–300MHz).
机译:在文献中,已提出了一种改进的Nauta OTA,以实现更高的PSRR和CMRR。本文提出了一种具有双CMOS对的改进型Nauta OTA,并将其用于实现可编程Gm-C滤波器。双CMOS对可通过改变高阻抗节点上的偏置电压来改变跨导。这进而导致滤波器的可编程性(F调谐)。为了进行比较,在UMC-0.18µm CMOS工艺中实施了文献中提出的OTA和Nauta的OTA,并通过仿真进行了研究。与Nauta的OTA相比,拟议的OTA可使PSRR增加11 dB,而CMRR增加21 dB。利用本文提出的OTA实现了可调谐的二阶Gm-C带通滤波器的实现和研究。使用BSIM3V3参数在(±0.9V)电源电压和(±1.4V)电源电压下为双CMOS对偏置提供滤波器仿真。通过布局后仿真证明,滤波器可以在10MHz至300MHz的范围内进行调谐。

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