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Dive into the research topics where Richard S. Payne is active.

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Featured researches published by Richard S. Payne.


international solid-state circuits conference | 1995

Surface micromachining: from vision to reality to vision [accelerometer]

Richard S. Payne; Steven J. Sherman; S. Lewis; Roger T. Howe

Airbag deployment systems demand reliable, inexpensive sensing of deceleration of the car during collision. The integrated accelerometer combines a 0.3 mm/sup 2/ micromechanical capacitive sensing element with precision bipolar/MOS control circuitry in a 9 mm/sup 2/ area. The microstructure is fabricated from a layer of deposited polysilicon by surface micromachining. This chip is an A/V (acceleration-to-voltage) functional block for accelerations of 1 to 50 g. This paper reviews the rationale for surface micromachining the sensing element, the BiMOS2C integrated process, the sense and control circuit architecture, and performance of the chip.


SAE transactions | 1991

Surface Micromachined Accelerometer: A Technology Update

Richard S. Payne; Kristin A. Dinsmore


Archive | 1994

High sensitivity integrated micromechanical electrostatic potential sensor

Yang Zhao; Richard S. Payne


Archive | 1998

Rotatable micromachined device for sensing magnetic fields

Richard S. Payne; Yang Zhao


Archive | 1997

Conductive plane beneath suspended microstructure

Kevin H.-L. Chau; Roger T. Howe; Richard S. Payne; Yang Zhao; Theresa A. Core; Steven J. Sherman


Archive | 1985

Ion-implanted process for forming IC wafer with buried-reference diode and IC structure made with such process

Steven M. Hemmah; Richard S. Payne


Archive | 1997

Method of making a sub-ground plane for a micromachined device

Roger T. Howe; Richard S. Payne; Stephen F. Bart


Archive | 1983

Process for forming an IC wafer with buried Zener diodes

Ralph C. Tuttle; Richard S. Payne


Archive | 1997

Integrated surface micromachined magnetometer

Richard S. Payne; Yang Zhao


Archive | 1995

Sub-ground plane for micromachined device

Roger T. Howe; Richard S. Payne; Stephen F. Bart

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