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Offset correction of low power, high precision op amp using digital assist for biomedical applications

机译:低功耗校正,高精度运算放大器使用数字辅助来实现生物医学应用

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Op amps created in new process technologies with smaller geometries face the problem of an increasing offset voltage due to a greater sensitivity to process variations and geometry mismatches at smaller channel dime n sions. This can negatively impact measurement accuracy when these op amps are used in biomedical measurement sys te ms such as a potentiostat. The conventional technique of increasing transistor gate dimensions to reduce offset has become more difficult to implement due to the limitations on channel length and the growing negative impact on performance in the latest technology nodes. This paper presents a new technique to correct offset voltage of an array of potentiostat op amps that dynamically adjusts the body voltages of a matching pair of PFET's in the op amp to null out the offset voltage.
机译:在具有较小几何形状的新工艺技术中创建的运算放大器面临着较大的偏移电压的问题,因为在较小的通道DIME N SIONS下的处理变化和几何形状不匹配的更大敏感性。当这些运算放大器用于生物医学测量SYS TE MS如Potentiostat时,这可以产生负面影响的测量精度。由于对信道长度的限制和对最新技术节点中的性能的巨大影响,增加晶体管栅极尺寸以减少偏移的传统技术已经变得更加难以实现。本文提出了一种新技术,可以纠正电位阵列运算放大器阵列的偏移电压,它动态调整运算放大器中匹配对PFET的主体电压以耗尽偏移电压。

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