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Ultra-low-noise large-bandwidth transimpedance amplifier

机译:超低噪声大带宽互阻放大器

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摘要

Equivalent input current noise and bandwidth are the most relevant parameters qualifying a low-noise transimpedance amplifier. In the conventional topology consisting of an operational amplifier in a shunt-shunt configuration, the equivalent input noise decreases as the feedback resistor (R-F), which also sets the gain, increases. Unfortunately, as R-F increases above a few M Omega as it is required for obtaining high sensitivity, the bandwidth of the system is set by the parasitic capacitance of R-F and reduces as R-F increases. In this paper, we propose a new topology that allows overcoming this limitation by employing a large-bandwidth voltage amplifier together with a proper modified feedback network for compensating the effect of the parasitic capacitance of the feedback resistance. We experimentally demonstrate, on a prototype circuit, that the proposed approach allows to obtain a bandwidth in excess of 100kHz and an equivalent input noise of about 4fA/root Hz, corresponding to the current noise of the 1G Omega resistor that is part of the feedback network. The new approach allows obtaining larger bandwidth with respect to those obtained in previously proposed configurations with comparable background noise. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:等效输入电流噪声和带宽是限定低噪声跨阻放大器的最相关参数。在由并联配置的运算放大器组成的传统拓扑结构中,当输入电阻(R-F)(也可设置增益)增加时,等效输入噪声会降低。不幸的是,由于为获得高灵敏度而需要增加的R-F超过几个M Omega,系统带宽由R-F的寄生电容设定,并随着R-F的增加而减小。在本文中,我们提出了一种新的拓扑结构,该拓扑结构可以通过使用大带宽电压放大器和适当的改进反馈网络来克服此限制,以补偿反馈电阻的寄生电容的影响。我们在原型电路上通过实验证明,所提出的方法允许获得超过100kHz的带宽和大约4fA / root Hz的等效输入噪声,这相当于作为反馈一部分的1G Omega电阻的电流噪声。网络。相对于先前提出的具有可比较的背景噪声的配置,新方法允许获得更大的带宽。版权所有(c)2014 John Wiley&Sons,Ltd.

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