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首页> 外文期刊>Sensors and Actuators. B, Chemical >On the temperature compensation of parallel piezoresistive microcantilevers in CMOS biosensor
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On the temperature compensation of parallel piezoresistive microcantilevers in CMOS biosensor

机译:CMOS生物传感器中平行压阻微悬臂梁的温度补偿

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摘要

Microcantilever with embedded piezoresistor has been applied to in situ surface stress measurement of biochemical reaction, where the parallel microcantilever by using an active cantilever for biosensing and another reference cantilever for noise cancellation has previously been proposed. This paper shows that the microcantilever measurement is sensitive to the temperature effect induced by the piezoresistor. The two cantilevers of 125 (μm × 60 μm × 0.75 μm may have 40℃ temperature difference, 1.65 mV offset voltage, and 0.01 mV/℃ temperature drift in 10 V operation because of their different thermal inertia. A parallel microcantilever design is developed for temperature compensation by using a signal conditioning circuit and the stripe pattern immobilized layer. Analyses and experiments show that the performance of parallel microcantilever sensor can be significantly improved.
机译:具有嵌入式压敏电阻的微悬臂梁已经应用于生化反应的原位表面应力测量,其中先前已经提出了通过使用有源悬臂梁进行生物传感而使用另一种参考悬臂梁来消除噪声的平行微悬臂梁。本文表明,微悬臂梁的测量对压敏电阻引起的温度效应很敏感。由于其热惯性不同,两个悬臂梁(125μm×60μm×0.75μm)在10 V工作时可能具有40℃的温度差,1.65 mV的失调电压和0.01 mV /℃的温度漂移。通过使用信号调节电路和条纹图案固定层进行温度补偿,分析和实验表明,并联微悬臂梁传感器的性能可以得到显着改善。

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