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A bulk-driven quasi-floating gate FVF current mirror for low voltage, low power applications

机译:用于低电压,低功耗应用的散装准浮栅FVF电流镜

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摘要

This paper introduces a new low-voltage, low-power FVF current mirror circuit. The bulk-driven (BD) technique is employed to achieve extended input voltage swing and low supply voltage. Besides, the quasi-floating gate (QFG) is used to achieve high frequency performance. The merging of (BD) and (QFG) appear as a good and attractive solution to improve the circuit performance with reduced supply voltage. Benefiting from the interesting properties of (BD-QFG) MOSFET (MOST) technique, the proposed FVF current mirror circuit exhibits superior performance compared to other previously reported works. The workability of the proposed circuit has been verified through ELDO simulator based on a 0.18 mu m USMC process. It achieves an enhanced bandwidth (2.7 GHz), low power consumption (79.33 mu W), a low input impedance (130 Omega), and high output impedance (9.5 G Omega) from a low supply voltage (0.8 V). Monte Carlo simulation is also carried out, which proves the robust performance of the proposed circuit against mismatches. An application of the proposed current mirror is presented in the form of the current comparator to ensure the workability of the proposed BD-QFG current mirror.
机译:本文介绍了一种新的低压低功耗FVF电流镜电路。采用批量驱动(BD)技术来实现扩展的输入电压摆幅和低电源电压。此外,准浮栅(QFG)用于实现高频性能。 (BD)和(QFG)的合并显示为良好而有吸引力的解决方案,以提高电源电压降低的电路性能。与(BD-QFG)MOSFET(大多数)技术的有趣特性受益,与其他先前报道的工作相比,所提出的FVF电流镜电路表现出优异的性能。通过基于0.18 mu mc umc过程,通过ELDO模拟器验证了所提出的电路的可加工性。它实现了增强的带宽(2.7GHz),低功耗(79.33μW),低输入阻抗(130 Omega)和高输出阻抗(9.5G Omega),来自低电源电压(0.8 V)。还进行了蒙特卡罗模拟,这证明了所提出的电路对不匹配的鲁棒性能。所提出的电流镜的应用以电流比较器的形式提出,以确保所提出的BD-QFG电流镜的可加工性。

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