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Multi-channel Precision Temperature Control System Based on TEC

机译:基于TEC的多通道精密温度控制系统

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In order to meet the demand of precise temperature control of optical crystal in laser, a multi-channel precise temperature control system based on Tec is designed. The fuzzy algorithm is used to control and adjust the PID parameters automatically, so as to adapt to the variable parameter temperature control characteristics of different temperature ranges. The STM32 microprocessor is used as the main processing chip, and the platinum resistance PT1000 is used as the temperature sensor to control the heating or cooling of Tec module driven by H-bridge circuit, so as to realize the precise temperature control of the controlled object. A set of 4-way temperature precise control system is designed and completed. The experiment shows that the stability of the system is better than plus or minus 0.002 degrees in the temperature control range of -20-120 degrees Celsius, which meets the demand of multi-channel precise temperature control.
机译:为了满足激光光学晶体精确温度控制的需求,设计了一种基于Tec的多通道精确温度控制系统。模糊算法用于自动控制和调节PID参数,以适应不同温度范围的可变参数温度控制特性。以STM32微处理器作为主处理芯片,以铂电阻PT1000作为温度传感器,控制由H桥电路驱动的Tec模块的加热或冷却,从而实现对被控对象的精确温度控制。 。设计并完成了一套四路温度精确控制系统。实验表明,在-20-120摄氏度的温度控制范围内,系统的稳定性优于正负0.002度,可以满足多通道精确温度控制的需求。

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