MEMS Silicon Oscillating Accelerometers and Readout Circuits

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Release : 2019-02-12
Genre : Technology & Engineering
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Book Rating : 45X/5 ( reviews)

MEMS Silicon Oscillating Accelerometers and Readout Circuits - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook MEMS Silicon Oscillating Accelerometers and Readout Circuits write by Xu, Yong Ping. This book was released on 2019-02-12. MEMS Silicon Oscillating Accelerometers and Readout Circuits available in PDF, EPUB and Kindle. Most MEMS accelerometers on the market today are capacitive accelerometers that are based on the displacement sensing mechanism. This book is intended to cover recent developments of MEMS silicon oscillating accelerometers (SOA), also referred to as MEMS resonant accelerometer. As contrast to the capacitive accelerometer, the MEMS SOA is based on the force sensing mechanism, where the input acceleration is converted to a frequency output. MEMS Silicon Oscillating Accelerometers and Readout Circuits consists of six chapters and covers both MEMS sensor and readout circuit, and provides an in-depth coverage on the design and modelling of the MEMS SOA with several recently reported prototypes. The book is not only useful to researchers and engineers who are familiar with the topic, but also appeals to those who have general interests in MEMS inertial sensors. The book includes extensive references that provide further information on this topic.

MEMS Silicon Oscillating Accelerometers and Readout Circuits

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Release : 2022-09-01
Genre : Technology & Engineering
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Book Rating : 737/5 ( reviews)

MEMS Silicon Oscillating Accelerometers and Readout Circuits - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook MEMS Silicon Oscillating Accelerometers and Readout Circuits write by Yong Ping Xu. This book was released on 2022-09-01. MEMS Silicon Oscillating Accelerometers and Readout Circuits available in PDF, EPUB and Kindle. Most MEMS accelerometers on the market today are capacitive accelerometers that are based on the displacement sensing mechanism. This book is intended to cover recent developments of MEMS silicon oscillating accelerometers (SOA), also referred to as MEMS resonant accelerometer. As contrast to the capacitive accelerometer, the MEMS SOA is based on the force sensing mechanism, where the input acceleration is converted to a frequency output. MEMS Silicon Oscillating Accelerometers and Readout Circuits consists of six chapters and covers both MEMS sensor and readout circuit, and provides an in-depth coverage on the design and modelling of the MEMS SOA with several recently reported prototypes. The book is not only useful to researchers and engineers who are familiar with the topic, but also appeals to those who have general interests in MEMS inertial sensors. The book includes extensive references that provide further information on this topic.

Low-Noise Readout Circuit for Automotive MEMS Accelerometers

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Release : 2023
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Book Rating : 752/5 ( reviews)

Low-Noise Readout Circuit for Automotive MEMS Accelerometers - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Low-Noise Readout Circuit for Automotive MEMS Accelerometers write by Alice Lanniel. This book was released on 2023. Low-Noise Readout Circuit for Automotive MEMS Accelerometers available in PDF, EPUB and Kindle.

MEMS Accelerometers

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Release : 2019-05-27
Genre : Technology & Engineering
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Book Rating : 145/5 ( reviews)

MEMS Accelerometers - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook MEMS Accelerometers write by Mahmoud Rasras. This book was released on 2019-05-27. MEMS Accelerometers available in PDF, EPUB and Kindle. Micro-electro-mechanical system (MEMS) devices are widely used for inertia, pressure, and ultrasound sensing applications. Research on integrated MEMS technology has undergone extensive development driven by the requirements of a compact footprint, low cost, and increased functionality. Accelerometers are among the most widely used sensors implemented in MEMS technology. MEMS accelerometers are showing a growing presence in almost all industries ranging from automotive to medical. A traditional MEMS accelerometer employs a proof mass suspended to springs, which displaces in response to an external acceleration. A single proof mass can be used for one- or multi-axis sensing. A variety of transduction mechanisms have been used to detect the displacement. They include capacitive, piezoelectric, thermal, tunneling, and optical mechanisms. Capacitive accelerometers are widely used due to their DC measurement interface, thermal stability, reliability, and low cost. However, they are sensitive to electromagnetic field interferences and have poor performance for high-end applications (e.g., precise attitude control for the satellite). Over the past three decades, steady progress has been made in the area of optical accelerometers for high-performance and high-sensitivity applications but several challenges are still to be tackled by researchers and engineers to fully realize opto-mechanical accelerometers, such as chip-scale integration, scaling, low bandwidth, etc. This Special Issue on "MEMS Accelerometers" seeks to highlight research papers, short communications, and review articles that focus on: Novel designs, fabrication platforms, characterization, optimization, and modeling of MEMS accelerometers. Alternative transduction techniques with special emphasis on opto-mechanical sensing. Novel applications employing MEMS accelerometers for consumer electronics, industries, medicine, entertainment, navigation, etc. Multi-physics design tools and methodologies, including MEMS-electronics co-design. Novel accelerometer technologies and 9DoF IMU integration. Multi-accelerometer platforms and their data fusion.

The Silicon Oscillating Accelerometer: A MEMS Inertial Instrument for Strategic Missile Guidance

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Release : 1998
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The Silicon Oscillating Accelerometer: A MEMS Inertial Instrument for Strategic Missile Guidance - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook The Silicon Oscillating Accelerometer: A MEMS Inertial Instrument for Strategic Missile Guidance write by . This book was released on 1998. The Silicon Oscillating Accelerometer: A MEMS Inertial Instrument for Strategic Missile Guidance available in PDF, EPUB and Kindle. The intercontinental ballistic missile (ICBM) and submarine-launched ballistic missiles (SLBM) developed over the past 50 years have employed successive generations of increasingly accurate inertial guidance systems. The comparatively short time of guided flight and high acceleration levels characteristic of the ballistic missile application place a premium on accelerometer performance to achieve desired weapon system accuracy. To date, the accelerometer design of choice for strategic missiles has been the Pendulous Integrating Gyroscopic Accelerometer (PIGA) instrument, an accelerometer whose origins trace back to the German V2 rocket, and has been refined through several generations of development to achieve unsurpassed performance. The specialized technologies of PIGA accelerometers, such as gas bearing wheels, ultra-stable ball bearings, precision electromagnetic components, and "designer chemical" flotation fluids require a costly support infrastructure for production and system life-cycle maintenance. The Draper Laboratory is currently in the process of developing the Silicon Oscillating Accelerometer (SOA) a MEMS-based sensor that has the potential to achieve the ppm/ug performance stability required of the strategic missile application. The Microelectromechanical System (MEMS) technology is inherently low cost and offers a rapidly expanding commercial business base to leverage and sustain accelerometer production and deployment in next generation guidance systems.