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Pipelined successive approximation conversion (PSAC) with error correction for a CMOS ophthalmic sensor

机译:具有CMOS眼科传感器误差校正功能的流水线逐次逼近转换(PSAC)

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The purpose of this work is the proposal of a 10-Bit / 1 MSPS Analog to Digital Converter (ADC) with error correction to match the requirements of a CMOS wavefront sensor for ophthalmic applications. The developed ADC is a combination of different techniques for integrated converters. It unifies the advantages of successive approximation converters and pipelined converters. The result of this combination is a very good tradeoff between performance and power dissipation. In a second step, the problem of parameter variations is examined. Therefore, the developed ADC is enhanced by two error correction techniques to improve its reliability. Transistor level simulations indicate that in an environment with varying design parameters the maximum (Differential Non-Linearity) DNL error could be reduced from more than 130 VLSB to 0.7 VLSB. The ADC selection assessment and error correction presented herein can be adopted for other sensors within other signal domains as well.
机译:这项工作的目的是提出一种具有纠错功能的10位/ 1 MSPS模数转换器(ADC),以匹配眼科应用的CMOS波前传感器的要求。所开发的ADC是集成转换器的不同技术的结合。它统一了逐次逼近转换器和流水线转换器的优势。这种结合的结果是在性能和​​功耗之间取得了很好的折衷。在第二步骤中,检查参数变化的问题。因此,通过两种纠错技术增强了开发的ADC的可靠性。晶体管级仿真表明,在设计参数变化的环境中,最大(差分非线性)DNL误差可以从大于130 VLSB降低至0.7 VLSB。本文介绍的ADC选择评估和错误校正也可以用于其他信号域内的其他传感器。

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