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Thermal heat-balance mode Flow-to-Frequency Converter

机译:热热平衡模式流频转换器

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This paper presents new type of thermal flow converter with the pulse frequency output. The integrating properties of the temperature sensor have been used, which allowed for realization of the pulse frequency modulator with thermal feedback loop, stabilizing temperature of sensor placed in the flowing medium. The system assures balancing of heat amount supplied in impulses to the sensor and heat given up by the sensor in a continuous way to the flowing medium. Therefore the frequency of output impulses is proportional to the heat transfer coefficient from sensor to environment. According to the King's law, the frequency of those impulses is a function of medium flow velocity around the sensor. The special feature of presented solution is total integration of thermal sensor with the measurement signal conditioning system. Sensor and conditioning system are not the separate elements of the measurement circuit, but constitute a whole in form of thermal heat-balance mode flow-to-frequency converter. The advantage of such system is easiness of converting the frequency signal to the digital form, without using any additional analogue-to-digital converters. The frequency signal from the converter may be directly connected to the microprocessor input, which with use of the standard built-in counters may convert the frequency into numerical value of high precision. Moreover, the frequency signal has a high resistance to interference and may be transmitted to remote locations without the information loss.
机译:本文提出了一种新型的脉冲频率输出的热流转换器。使用了温度传感器的积分特性,可以实现带有热反馈回路的脉冲频率调制器,从而稳定放置在流动介质中的传感器的温度。该系统可确保以脉冲形式提供给传感器的热量与传感器以连续方式释放给流动介质的热量之间达到平衡。因此,输出脉冲的频率与从传感器到环境的传热系数成正比。根据金氏定律,这些脉冲的频率是传感器周围介质流速的函数。提出的解决方案的特点是将热传感器与测量信号调节系统完全集成在一起。传感器和调节系统不是测量电路的独立元件,而是以热平衡模式的流-频转换器的形式构成一个整体。这种系统的优点是易于将频率信号转换为数字形式,而无需使用任何其他的模数转换器。来自转换器的频率信号可以直接连接到微处理器输入,微处理器使用标准的内置计数器可以将频率转换为高精度的数值。而且,该频率信号具有高的抗干扰性,并且可以被发送到远程位置而没有信息丢失。

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