Improved low-voltage low-power class AB CMOS current conveyors based on the flipped voltage follower

K. Moustakas, S. Siskos
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引用次数: 9

Abstract

A high performance class-AB CMOS second generation current conveyor (CCII) suitable for low-power and low-voltage operation is proposed and simulated. The circuit is aimed to be used for sensor signal conditioning and it is based on the flipped voltage follower. Compared to the class-A CCII based on the flipped voltage follower, static power consumption is reduced significantly because driving capability is no longer limited by the biasing current, but only depends on the aspect ratio of the transistors driving current at nodes X and Z. All the high performance characteristics such as accurate voltage copy between X and Y terminals, low output impedance, high input impedance, low total harmonic distortion and wide bandwidth are retained. A modified structure with improved dynamic range for higher voltage supplies, based on the folded version of the flipped voltage follower called super source follower, is also presented. Simulation results demonstrate performance of the proposed designs.
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基于翻转电压从动器的低压低功率AB级CMOS电流输送机的改进
提出并仿真了一种适用于低功耗、低电压运行的高性能ab类CMOS第二代电流输送机(CCII)。该电路旨在用于传感器信号调理,它是基于翻转电压跟随器。与基于翻转电压从动器的a类CCII相比,由于驱动能力不再受偏置电流的限制,而仅取决于晶体管在X和z节点驱动电流的纵横比,因此静态功耗显著降低。保留了X和Y端子之间精确的电压复制、低输出阻抗、高输入阻抗、低总谐波畸变和宽带宽等高性能特性。在翻转电压从动器的折叠型基础上,提出了一种改进的结构,提高了高压电源的动态范围。仿真结果验证了所提设计的性能。
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