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Design of a low-power 3.5-GHz broad-band CMOS transimpedance amplifier for optical transceivers

机译:用于光收发器的低功耗3.5 GHz宽带CMOS跨阻放大器的设计

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This paper describes a novel low-power low-noise CMOS voltage-current feedback transimpedance amplifier design using a low-cost Agilent 0.5-μm 3M1P CMOS process technology. Theoretical foundations for this transimpedance amplifier by way of gain, bandwidth and noise analysis are developed. The bandwidth of the amplifier was extended using the inductive peaking technique, and, simulation results indicated a -3-dB bandwidth of 3.5 GHz with a transimpedance gain of ≈60 dBohms. The dynamic range of the amplifier was wide enough to enable an output peak-to-peak voltage swing of around 400 mV for a test input current swing of 100 μA. The output noise voltage spectral density was 12 nV/√Hz (with a peak of ≈25 nV/√Hz), while the input-referred noise current spectral density was below 20 pA/√Hz within the amplifier frequency band. The amplifier consumes only around 5 mA from a 3.3-V power supply. A test chip implementing the transimpedance amplifier was also fabricated using the low-cost CMOS process.
机译:本文介绍了一种采用低成本安捷伦0.5μm3M1P CMOS工艺技术的新型低功耗低噪声CMOS电压电流反馈互阻放大器设计。通过增益,带宽和噪声分析,为这种跨阻放大器提供了理论基础。使用电感峰值技术扩展了放大器的带宽,仿真结果表明3.5 GHz的-3-dB带宽和≈60dBohms的跨阻增益。放大器的动态范围足够宽,能够在100μA的测试输入电流摆幅下实现约400 mV的输出峰峰值电压摆幅。输出噪声电压频谱密度为12 nV /√Hz(峰值为≈25nV /√Hz),而在放大器频带内,输入参考噪声电流频谱密度低于20 pA /√Hz。该放大器从3.3V电源仅消耗约5 mA的电流。还使用低成本CMOS工艺制造了实现跨阻放大器的测试芯片。

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