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A Temperature Compensated Non-Contact Pressure Transducer Using Hall Sensor and Bourdon Tube

机译:使用霍尔传感器和波登管的温度补偿非接触式压力传感器

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This paper describes the design of a simple non-contact-type pressure transducer using a Bourdon tube and a Hall sensor where the effect of atmospheric temperature is compensated. In this design, a pressure sensing Hall IC is fixed with the nonmagnetic aluminum casing of a Bourdon gauge in front of a tiny disc-type permanent magnet rigidly attached with the free tip of the Bourdon tube. With the increase of pressure of the fluid inside the Bourdon tube, the free end along with the magnet moves toward the Hall sensor, and the magnetic field intensity due to the magnet on the Hall sensor increases with an increase of pressure. Due to this magnetic field, the outputs of the Hall sensor and the transducer circuit consisting of a differential amplifier and an instrumentation amplifier increase with the increase of pressure of the fluid inside the Bourdon tube. The transducer circuit consists of a unity gain differential amplifier circuit where the output of a second identical temperature sensing Hall IC is subtracted from the pressure sensing Hall IC output in order to compensate the effect of ambient temperature in the proposed transducer. The theoretical equations describing the operation of the transducer are derived in this paper. The static characteristic curves of a prototype design of the transducer are determined experimentally. The experimental results are reported in this paper. The characteristics curves are found to follow the theoretical equations with good repeatability and are free from ambient temperature effect.
机译:本文介绍了一种简单的非接触式压力传感器的设计,该传感器使用波登管和霍尔传感器补偿了大气温度的影响。在这种设计中,压力传感霍尔IC固定在Bourdon压力计的非磁性铝制外壳上,并固定在一个微小的盘状永磁体的前面,该永磁体牢固地固定在Bourdon管的自由端上。随着波登管内部流体压力的增加,自由端与磁体一起向霍尔传感器移动,并且霍尔传感器上的磁体引起的磁场强度随压力的增加而增加。由于这种磁场,霍尔传感器的输出以及由差动放大器和仪表放大器组成的换能器电路会随着波登管内部流体压力的增加而增加。传感器电路由一个单位增益差分放大器电路组成,在该电路中,从压力传感霍尔IC输出中减去了第二个相同温度传感霍尔IC的输出,以补偿所建议传感器中环境温度的影响。本文推导了描述换能器操作的理论方程式。通过实验确定换能器原型设计的静态特性曲线。实验结果报道在本文中。发现特性曲线遵循理论方程,具有良好的重复性,并且不受环境温度影响。

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