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A CMOS Temperature Sensor With Versatile Readout Scheme and High Accuracy for Multi-Sensor Systems

机译:具有多功能读出方案和高精度的CMOS温度传感器,适用于多传感器系统

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In this paper, a smart CMOS temperature sensor with a versatile readout scheme is presented. A digital-assisted readout solution is proposed to improve the compatibility of the circuit and maintain the performance of a traditional smart temperature sensor. In addition, the potential multi-operating points of the analog front-end are analyzed, and a compact start-up circuit is designed to make the analog front-end work properly. Fabricated in a standard 0.13 μm CMOS process, the proposed temperature sensor occupies a silicon area of 0.29 mm2and draws a current of 95 μA from a 2 to 3.6 V supply voltage at the room temperature. Measured results show that the proposed design has the inaccuracy of ± 0.47 °C (3σ) from -40 °C to 125 °C after a single-point temperature calibration. It achieves a resolution of 16 mK at a conversion time of 5.12 ms and a supply sensitivity of less than 0.05 °C/V. Thanks to the versatile readout scheme, the proposed temperature sensor is compatible with multi-sensor systems where the readout-circuitry can be shared between different input signals.
机译:在本文中,提出了一种具有通用读出方案的智能CMOS温度传感器。提出了一种数字辅助读出解决方案,以提高电路的兼容性并保持传统智能温度传感器的性能。此外,分析了模拟前端的潜在多工作点,并设计了紧凑的启动电路以使模拟前端正常工作。建议的温度传感器采用标准的0.13μmCMOS工艺制造,占用的硅面积为0.29 mm n 2 n,并且在室温下从2到3.6 V的电源电压汲取95μA的电流。测量结果表明,在单点温度校准后,从-40°C到125°C,建议的设计具有±0.47°C(3σ)的精度。在5.12 ms的转换时间下,它可实现16 mK的分辨率,电源灵敏度低于0.05°C / V。由于具有通用的读取方案,因此所提出的温度传感器与多传感器系统兼容,在该系统中,可以在不同的输入信号之间共享读取电路。

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