基于新型高速电流平方器电路的四象限CMOS模拟乘法器

A. Naderi, H. Mojarrad, H. Ghasemzadeh, A. Khoei, K. Hadidi
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引用次数: 48

摘要

本文提出了一种基于平方电路的新型CMOS电流型四象限模拟乘法器电路。双跨线性回路是实现方案的基本组成部分。供电电压3.3V。该倍增器的主要优点是速度快、功耗低、线性度高、直流偏置误差小。采用HSPICE模拟器,采用0.35µm标准CMOS技术,采用49级参数(BSIM3v3)对电路进行了设计和仿真。仿真结果表明,模拟倍增器的线性误差为1.15%,1MHz时的THD为0.76%,- 3dB带宽为44.9MHz,最大功耗为0.24mW。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Four-quadrant CMOS analog multiplier based on new current squarer circuit with high-speed
In this paper a new CMOS current-mode four-quadrant analog multiplier circuit based on squarer circuit is proposed. The dual translinear loop is the basic building block in realization scheme. Supply voltage is 3.3V. The major advantages of this multiplier are high speed, low power, high linearity and less dc offset error. The circuit is designed and simulated using HSPICE simulator by level 49 parameters (BSIM3v3) in 0.35µm standard CMOS technology. The simulation results of analog multiplier demonstrate a linearity error of 1.15%, a THD of 0.76% in 1MHz, a −3dB bandwidth of 44.9MHz and a maximum power consumption of 0.24mW.
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