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A Fully-Differential Switched-Capacitor Dual-Slope Capacitance-To-Digital Converter (CDC) for a Capacitive Pressure Sensor

机译:用于电容式压力传感器的全差分开关电容双斜率电容为数字转换器(CDC)

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摘要

This article focuses on a proposed Switched-Capacitor Dual-Slope based CDC. Special attention is paid to the measurement setup using a real pressure sensor. Performance scaling potential as well as dead zones are pointed out and discussed. In depth knowledge of the physical sensor behavior is key to design an optimal readout circuit. While this is true for high-end applications, low-performance IoT (Internet of Things) sensors aim at moderate resolution with very low power consumption. This article also provides insights into basic MEMS (Micro-Electro-Mechanical-System) physics. Based on that, an ambient air pressure sensor model for SPICE (Simulation-Program-with-Integrated-Circuit-Emphasis) circuit simulators is presented. The converter concept was proven on silicon in a 0.13 μ m process using both a real pressure sensor and an on-chip dummy MEMS bridge. A 3.2-ms measurement results in 13-bit resolution while consuming 35 μ A from a 1.5-V supply occupying 0.148 mm2. A state-of-the-art comparison identifies potential room for improvements towards hybrid solutions, which is proposed in subsequent publications already.
机译:本文侧重于基于建议的开关电容双斜率的CDC。使用真正的压力传感器对测量设置进行特别注意。指出并讨论了性能缩放潜力以及死区。在深度知识中,物理传感器行为是设计最佳读出电路的关键。虽然高端应用是如此,但低性能IOT(物联网)传感器瞄准适度分辨率,功耗非常低。本文还提供对基本MEMS(微电机系统)物理的见解。基于此,提出了一种用于香料的环境空气压力传感器模型(仿真程序 - 与集成的电路 - 强调)电路模拟器。使用真正的压力传感器和片上虚设的MEMS桥在0.13μm过程中硅中经过硅的硅概念。 3.2ms测量结果在13位分辨率下,从1.5V电源占用0.148 mm2的1.5V电源消耗35μA。最先进的比较标识潜在的空间,以改善混合解决方案,该溶液已经在随后的出版物中提出。

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