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A novel architecture for a Capacitive-to-Digital Converter using time-encoding and noise shaping

机译:一种使用时间编码和噪声整形电容到数字转换器的新型架构

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This paper presents a Capacitive-to-Digital Converter (CDC) for MEMS sensors using a time-encoding approach. A common CDC needs an intermediate Capacitive-to-Voltage (CV) stage to perform such a conversion. Instead, this architecture directly transforms the sensor capacitor quantity to a digital value. Additionally it is intended to give flexibility at reduced chip area. The proposed solution maps amplitude information into time domain using an integrating Dual-Slope (DS) converter. Furthermore, this CDC employs quantization error noise shaping to reduce measurement time. Both techniques, namely scaling of the CDC resolution and power consumption, will lead to an efficient implementation without extra cost in area. Auto-zeroing further suppresses the offset and low frequency noise of the amplifier. Simulation results show that a realization in digital CMOS technology will be a promising candidate for a scalable CDC for MEMS sensors.
机译:本文介绍了使用时间编码方法的MEMS传感器的电容到数字转换器(CDC)。常见的CDC需要中间电容到电压(CV)级以执行这种转换。相反,该架构直接将传感器电容器量直接转换为数字值。此外,它旨在在减少芯片区域的灵活性。所提出的解决方案使用积分双斜率(DS)转换器将幅度信息映射到时域中。此外,该CDC采用量化误差噪声整形以减少测量时间。两种技术,即CDC分辨率和功耗的扩展,将导致在没有额外成本的情况下实现有效的实施。自动归零进一步抑制放大器的偏移量和低频噪声。仿真结果表明,数字CMOS技术的实现将是MEMS传感器可扩展CDC的有希望的候选者。

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