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Infrared temperature sensor system for mobile devices

机译:用于移动设备的红外温度传感器系统

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摘要

An infrared (IR) temperature measurement system consists of a sensor module and electronics as well as an optomechanical system that guides IR radiation onto the sensor. The geometry and emissivity of the optomechanics can affect the temperature reading. We show how the traditional optomechanical design of the IR temperature measuring systems produce inaccurate results when used in handheld mobile devices. When the mobile device is not thermally stable and the measured targets are significantly colder than the device, the measurement error can be several degrees. Our new optomechanical design was optimised for handheld mobile use, and its optics performance was modelled and verified by prototyping. The temperature measurement and sensor calibration is based on only two signals, namely the thermopile and thermistor voltages of the IR detector. This is a very attractive method in high-volume consumer products because no additional components are needed to improve the measurement repeatability. The attainable repeatability of the implemented IR temperature sensor on a correct transferred calibration curve was better than ±0.5 C in an operational temperature range from +13 to +49 C and target range from +10 to +90 C.
机译:红外(IR)温度测量系统由传感器模块和电子设备以及将IR辐射引导到传感器上的光机械系统组成。光力学的几何形状和发射率会影响温度读数。我们展示了红外测温系统的传统光机设计如何在手持移动设备中使用时产生不准确的结果。当移动设备不稳定并且测量的目标温度明显低于该设备时,测量误差可能会达到几度。我们的新光机设计针对手持移动设备进行了优化,其光学性能已通过原型制作进行建模和验证。温度测量和传感器校准仅基于两个信号,即IR检测器的热电堆和热敏电阻电压。这是在大批量消费产品中非常有吸引力的方法,因为不需要其他组件来改善测量的可重复性。在+13至+49 C的工作温度范围和+10至+90 C的目标温度范围内,在正确传输的校准曲线上实现的IR温度传感器的可重复性优于±0.5C。

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