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Ultra Low Power High Gain High Speed OTA

机译:超低功率高增益高速OTA

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摘要

In this paper, we present a push-pull Inverter based fully differential operational trans-conductance amplifier (OTA) working at 1V power supply with reduced power consumption and high speed performance. Authors have used a modified feed-forward compensated technique to achieve high DC gain and minimum power consumption. The circuit is simulated in standard CMOS 180nm technology. Simulation results obtained are as follows: 57.87dB of DC gain and 82°of phase margin with Unity Gain Bandwidth (UGB) of 4.32MHz for a capacitive load of 0.01pf, a slew rate of 14.13V/μsec and settling time of 93.17nsec have been achieved. The proposed design shows average power consumption of 253.3nWatt. Simulation results are same after post layout simulation. The maximum propagation delay calculated with parasitic capacitances is 65.68nsec. Along with 180nm technology the same OTA has been simulated on 90nm and 45nm technology and a comparative study by analyzing performance in all three technologies have been presented by the authors.
机译:在本文中,我们在1V电源下工作的基于推挽式的全差分操作传导放大器(OTA),功耗降低和高速性能。作者使用了改进的前馈补偿技术来实现高直流增益和最小功耗。该电路以标准CMOS 180NM技术模拟。获得的模拟结果如下:DC增益的57.87分贝和82与4.32MHz的单位增益带宽(UGB)相位裕度的0.01pf电容性负载,14.13V的转换速率/微秒和93.17nsec的稳定时间的°已经实现了。所提出的设计显示了253.3米的平均功耗。布局后模拟后的仿真结果相同。用寄生电容计算的最大传播延迟为65.68nsec。随着180nm的技术,在提交人提出了通过分析所有三种技术的性能的90nm和45nm的技术和比较研究。

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