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A CMOS Smart Temperature Sensor With Single-Point Calibration Method for Clinical Use

机译:具有单点校准方法的CMOS智能温度传感器,用于临床

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A smart temperature sensor has been realized using a Taiwan Semiconductor Manufacturing Company (TSMC) 0.18- standard CMOS process. Substrate positive-negative-positive (PNP) transistors are used to extract the temperature information. Using the techniques of dynamic element matching, single-transistor approach, and offset cancellation, the process spread between batches on the transistors becomes the main inaccuracy sources of the temperature sensor. The sensor uses a single-point calibration method that reduces the process spread and simplifies trimming. The temperature sensor can realize an inaccuracy within ±0.1 °C in the temperature range from 20 °C to 50 °C after single-point calibration. The average power consumption of the sensor is 16 at the conversion rate of 10 Hz. These properties allow the use of the temperature sensor in clinical electronic thermometers.
机译:使用台湾半导体制造公司(TSMC)的0.18标准CMOS工艺实现了智能温度传感器。基板正负(PNP)晶体管用于提取温度信息。使用动态元件匹配,单晶体管方法和失调对消技术,晶体管上批次之间的工艺分布成为温度传感器的主要不准确来源。该传感器使用单点校准方法,该方法可减少过程扩展并简化修整。单点校准后,温度传感器可在20°C至50°C的温度范围内实现±0.1°C的误差。在10 Hz的转换速率下,传感器的平均功耗为16。这些特性允许在临床电子体温计中使用温度传感器。

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