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Titlebook: Microtransducer CAD; Physical and Computa Arokia Nathan,Henry Baltes Book 1999 Springer-Verlag Wien 1999 Monte Carlo.Monte Carlo Simulation

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書目名稱Microtransducer CAD
副標(biāo)題Physical and Computa
編輯Arokia Nathan,Henry Baltes
視頻videohttp://file.papertrans.cn/634/633555/633555.mp4
概述First book on Computer-Aided-Design of microsensors * Simulation is much more complex than of standard integrated circuits *.Authors are leading experts in Europe and America
叢書名稱Computational Microelectronics
圖書封面Titlebook: Microtransducer CAD; Physical and Computa Arokia Nathan,Henry Baltes Book 1999 Springer-Verlag Wien 1999 Monte Carlo.Monte Carlo Simulation
描述Computer-aided-design (CAD) of semiconductor microtransducers is relatively new in contrast to their counterparts in the integrated circuit world. Integrated silicon microtransducers are realized using microfabrication techniques similar to those for standard integrated circuits (ICs). Unlike IC devices, however, microtransducers must interact with their environment, so their numerical simulation is considerably more complex. While the design of ICs aims at suppressing "parasitic” effects, microtransducers thrive on optimizing the one or the other such effect. The challenging quest for physical models and simulation tools enabling microtransducer CAD is the topic of this book. The book is intended as a text for graduate students in Electrical Engineering and Physics and as a reference for CAD engineers in the microsystems industry.
出版日期Book 1999
關(guān)鍵詞Monte Carlo; Monte Carlo Simulation; Sensor; Standard; circuit; computer-aided design (CAD); electrical en
版次1
doihttps://doi.org/10.1007/978-3-7091-6428-0
isbn_softcover978-3-7091-7321-3
isbn_ebook978-3-7091-6428-0Series ISSN 0179-0307
issn_series 0179-0307
copyrightSpringer-Verlag Wien 1999
The information of publication is updating

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Radiation Effects on Carrier Transport,wavelength- and material-dependent absorption. In this chapter, we review the physical effects induced by radiant signals along with associated model equations relevant to simulation and subsequent optimization of optical microtransducers.
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Mechanical Effects on Carrier Transport, applications and associated devices have been developed, along with a corresponding amount of literature. An extensive early review of the interaction of the mechanical signal with electrical transport in semiconductors is given in [3]. Specific references to recent developments are given in the se
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Mechanical and Fluidic Signals,levant to flow microsensors (needed in Chapt. 5) and selected microfluidic systems; computation of mechanical stresses induced by packaging or encapsulation of microtransducers or integrated circuits (needed in Chapt. 6); and simulation of mechanical microactuators, including fluidic damping effects
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