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Micromachined inertial sensors

Proceedings of the IEEE · 1998 · Vol. 86(8) · pp. 1640–1659
N. YazdiFarrokh AyaziK. Najafi

Abstract

This paper presents a review of silicon micromachined accelerometers and gyroscopes. Following a brief introduction to their operating principles and specifications, various device structures, fabrication, technologies, device designs, packaging, and interface electronics issues, along with the present status in the commercialization of micromachined inertial sensors, are discussed. Inertial sensors have seen a steady improvement in their performance, and today, microaccelerometers can resolve accelerations in the micro-g range, while the performance of gyroscopes has improved by a factor of 10/spl times/ every two years during the past eight years. This impressive drive to higher performance, lower cost, greater functionality, higher levels of integration, and higher volume will continue as new fabrication, circuit, and packaging techniques are developed to meet the ever increasing demand for inertial sensors.

Advanced MEMS and NEMS TechnologiesMechanical and Optical ResonatorsAdvanced Fiber Optic SensorsGyroscopeAccelerometerInertial measurement unitCommercializationInertial frame of referenceElectronicsFabricationSurface micromachiningInertial navigation systemEngineering
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References
Single-tube three-dimensional scanner for scanning tunneling microscopy
Review of Scientific Instruments · 1986 · 573 citations
A batch-fabricated silicon accelerometer
IEEE Transactions on Electron Devices · 1979 · 507 citations
Mechanical-thermal noise in micromachined acoustic and vibration sensors
IEEE Transactions on Electron Devices · 1993 · 733 citations
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