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Design of an auto-zeroed, differential, organic thin-film field-effect transistor amplifier for sensor applications

机译:用于传感器应用的自动归零,差分有机薄膜场效应晶体管放大器的设计

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摘要

Organic strain gauge and other sensors require high-gain, precision dc amplification to process their low-level output signals. Ideally, amplifiers would be fabricated using organic thin-film field-effect transistors (OTFT's) adjacent to the sensors. However, OTFT amplifiers exhibit low gain and high input-referred dc offsets that must be effectively managed. This paper presents a four-stage, cascaded differential OTFT amplifier utilizing switched capacitor auto-zeroing. Each , stage provides a nominal voltage gain of four through a differential pair driving low-impedance active loads, which provide common-mode output voltage control, p-type pentacene OTFT's are used for the amplifier devices and auto-zero switches. Simulations indicate the amplifier provides a nominal voltage gain of 280 V/V and effectively amplifies a 1-mV dc signal in the presence of 500-mV amplifier input-referred dc offset voltages. Future work could include the addition of digital gain calibration and offset correction of residual offsets associated with charge injection imbalance in the differential circuits.
机译:有机应变计和其他传感器需要高增益,精确的直流放大,以处理其低电平输出信号。理想情况下,将使用与传感器相邻的有机薄膜场效应晶体管(OTFT)来制造放大器。但是,OTFT放大器具有低增益和高输入参考直流偏移,必须对其进行有效管理。本文介绍了一种采用开关电容器自动归零的四级,级联差分OTFT放大器。每级通过驱动低阻抗有源负载的差分对提供四倍的标称电压增益,后者提供共模输出电压控制,放大器设备和自动调零开关使用p型并五苯OTFT。仿真表明,该放大器可提供280 V / V的标称电压增益,并在存在500 mV放大器输入参考的直流失调电压的情况下有效地放大1 mV dc信号。未来的工作可能包括增加数字增益校准和与差分电路中电荷注入不平衡相关的剩余失调的失调校正。

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