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The CMOS Highly Linear Current Amplifier with Current Controlled Gain for Sensor Measurement Applications

机译:CMOS高度线性电流放大器具有电流控制增益用于传感器测量应用

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摘要

This paper introduces a new current-controlled current-amplifier suitable for precise measurement applications. This amplifier was developed with strong emphasis on linearity leading to low total harmonic distortion (THD) of the output signal, and on linearity of the gain control. The presented circuit is characterized by low input and high output impedances. Current consumption is significantly smaller than with conventional quadratic current multipliers and is comparable in order to the maximum processed input current, which is ±200 µA. This circuit is supposed to be used in many sensor applications, as well as a precise current multiplier for general analog current signal processing. The presented amplifier (current multiplier) was designed by an uncommon topology based on linear sub-blocks using MOS transistors working in their linear region. The described circuit was designed and fabricated in a C035 I3T25 0.35-µm ON Semiconductor process because of the demand of the intended application for higher supply voltage. Nevertheless, the topology is suitable also for modern smaller CMOS technologies and lower supply voltages. The performance of the circuit was verified by laboratory measurement with parameters comparable to the Cadence simulation results and presented here.
机译:本文介绍了一种适用于精确测量应用的新型电流控制电流放大器。该放大器是强调线性的强调,导致输出信号的总谐波失真(THD),以及增益控制的线性。所提出的电路的特征在于输入和高输出阻抗。电流消耗明显小于传统的二次电流乘法器,并且对于最大处理的输入电流,其是±200μA的最大处理输入电流。该电路应该在许多传感器应用中使用,以及用于一般模拟电流信号处理的精确电流乘法器。所提出的放大器(电流乘数)由基于在其线性区域中工作的MOS晶体管的线性子块的罕见拓扑设计设计。由于对更高电源电压的预期应用的需求,在半导体工艺中设计和制造了所描述的电路,以CO35 I3T25 0.35-μm。尽管如此,拓扑也适用于现代较小的CMOS技术和较低的电源电压。通过实验室测量来验证电路的性能,参数与节奏仿真结果相当并在此呈现。

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