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A simple analog interface for capacitive sensor with offset and parasitic capacitance

机译:用于具有偏移和寄生电容的电容式传感器的简单模拟接口

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In this paper, a simple but efficient analog interface circuit for floating capacitive sensor is presented. In most of the capacitive sensor, the offset and parasitic components are associated with the sensor and varies with the measurand. In these sensors, the change in the sensor capacitance due to measurand can be very small but having a relatively large offset capacitance in parallel and also the value of parasitic capacitances are not constant and varies with measurand. Hence, the error due to offset and parasitic components will propagate in the output which will degrade the performance of the sensor system. The proposed analog front end circuit accepts these types of sensors and provide an output voltage proportional to capacitance change due to measurand. A prototype board has been developed and tested for different values of the parasitic and offset capacitance by varying the variable sensor capacitance. The circuit validate the theoretical expectation and without any visible effect on output voltage on offset and parasitic capacitance. The worst case error for all taken cases are found to be within 1%. In order to test the validity of proposed interface circuit in real time application, a capacitive humidity sensor is fabricated and tested with the proposed circuitry. The interface circuit found to be working well with humidity sensor in the range of 30 to 90% RH.
机译:本文提出了一种简单而有效的用于浮动电容传感器的模拟接口电路。在大多数电容式传感器中,偏移和寄生成分与传感器相关联,并随被测物而变化。在这些传感器中,由于被测量物引起的传感器电容的变化可能非常小,但并联具有相对较大的偏移电容,并且寄生电容的值也不恒定,并随被测量物而变化。因此,由于偏移和寄生成分引起的误差将在输出中传播,这将降低传感器系统的性能。拟议的模拟前端电路接受这些类型的传感器,并提供与被测电容变化成正比的输出电压。通过改变可变传感器电容,已经开发出了原型板,并针对寄生电容和失调电容的不同值进行了测试。该电路验证了理论上的预期,并且对失调和寄生电容的输出电压没有任何可见影响。发现所有采取的案例的最坏情况误差均在1%以内。为了测试所提出的接口电路在实时应用中的有效性,制造了电容式湿度传感器并用所提出的电路进行了测试。发现接口电路与湿度传感器在30%至90%RH的范围内都能正常工作。

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