Process optimization for monolithic integration of piezoresistive pressure sensor and MOSFET amplifier with SOI approach

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Abstract

In this paper we present the design and process optimization for fabricating piezoresitive pressure sensor and MOSFET Differential Amplifier simultaneously on the same chip. Silicon On Insulator approach has been used for realizing the membrane as well as the electronics on the same chip. The amplifier circuit has been configured in the common source connection and it has been designed with PSPICE simulation to achieve a voltage gain of about 5. In the initial set of experiments the Pressure sensor and the amplifier were fabricated on separate chips to optimize the process steps and tested in the hybrid mode. In the next set of experiments, SOI wafer having the SOI layer thickness of about 11 microns was used for realizing the membrane by anisotropic etching from the backside. The piezo-resistive pressure sensor was realized on this membrane by connecting the polysilicon resistors in the form of a Wheatstone bridge. The MOSFET source follower amplifier was also fabricated on the same SOI wafer by tailoring the process steps to suit the requirement of simultaneous fabrication of piezoresistors and the amplifier for achieving MOSFET Integrated Pressure Sensor. Reproducible results have been achieved on the SOI wafers, with the process steps developed in the laboratory. Sensitivity of 270 mV /Bar/10V, with the on chip amplifier gain of 4.5, has been achieved with this process. © 2006 IOP Publishing Ltd.

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Kumar, V. V., Dasgupta, A., Bhat, K. N., & Knatarajan, N. (2006). Process optimization for monolithic integration of piezoresistive pressure sensor and MOSFET amplifier with SOI approach. Journal of Physics: Conference Series, 34(1), 210–215. https://doi.org/10.1088/1742-6596/34/1/035

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