Miniaturized Systems with Micro-optics and MEMS

Miniaturized Systems with Micro-optics and MEMS
Author: M. Edward Motamedi
Publisher:
Total Pages: 442
Release: 1999
Genre: Technology & Engineering
ISBN:

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These scientific papers discuss miniaturized systems with micro-optics and microelectromechanical systems (MEMS) from a range of perspectives.

Microoptics

Microoptics
Author: Karl-Heinz Brenner
Publisher: Springer
Total Pages: 325
Release: 2013-03-20
Genre: Science
ISBN: 0387347259

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Microoptics is still an emerging field with a huge potential for a large number of applications. This monograph brings together the most recent developments in order to give a broad overview.

Micromechanical Photonics

Micromechanical Photonics
Author: Hiroo Ukita
Publisher: Springer Science & Business Media
Total Pages: 259
Release: 2007-04-14
Genre: Science
ISBN: 3540313729

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This is the most comprehensive book on the basics, realization and applications of micromechanical photonics. Its purpose is to give the engineering student and the practical engineer a systematic introduction to optical MEMS (Micro electro mechanical systems) and micromechanical photonics. It does this not only through theoretical and experimental results, but also by describing various products and their fields of application.

MOEMS and Miniaturized Systems

MOEMS and Miniaturized Systems
Author:
Publisher:
Total Pages: 388
Release: 2001
Genre: Microelectromechanical systems
ISBN:

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Optical Microscanners and Microspectrometers using Thermal Bimorph Actuators

Optical Microscanners and Microspectrometers using Thermal Bimorph Actuators
Author: Gerhard Lammel
Publisher: Springer Science & Business Media
Total Pages: 278
Release: 2013-03-09
Genre: Technology & Engineering
ISBN: 1475760833

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Optical Microscanners and Microspectrometers using Thermal Bimorph Actuators shows how to design and fabricate optical microsystems using innovative technologies and and original architectures. A barcode scanner, laser projection mirror and a microspectrometer are explained in detail, starting from the system conception, discussing simulations, choice of cleanroom technologies, design, fabrication, device test, packaging all the way to the system assembly. An advanced microscanning device capable of one- and two-dimensional scanning can be integrated in a compact barcode scanning system composed of a laser diode and adapted optics. The original design of the microscanner combines efficiently the miniaturized thermal mechanical actuator and the reflecting mirror, providing a one-dimensional scanning or an unique combination of two movements, depending on the geometry. The simplicity of the device makes it a competitive component. The authors rethink the design of a miniaturized optical device and find a compact solution for a microspectrometer, based on a tunable filter and a single pixel detector. A porous silicon technology combines efficiently the optical filter function with a thermal mechanical actuator on chip. The methodology for design and process calibration are discussed in detail. The device is the core component of an infrared gas spectrometer.

Microoptics and Nanooptics Fabrication

Microoptics and Nanooptics Fabrication
Author: Shanalyn Kemme
Publisher: CRC Press
Total Pages: 232
Release: 2018-09-03
Genre: Technology & Engineering
ISBN: 1420019147

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The deep interconnection between micro/nanooptical components and related fabrication technologies—and the constant changes in this ever-evolving field—means that successful design depends on the engineer’s ability to accommodate cutting-edge theoretical developments in fabrication techniques and experimental realization. Documenting the state of the art in fabrication processes, Microoptics and Nanooptics Fabrication provides an up-to-date synopsis of recent breakthroughs in micro- and nanooptics that improve key developmental processes. This text elucidates the precise and miniaturized scale of today’s fabrication methods and their importance in creating new optical components to access the spectrum of physical optics. It details successful fabrication techniques and their direct effect on the intended performance of micro- and nanooptical components. The contributors explore the constraints related to material selection, component lateral extent, minimum feature size, and other issues that cause fabrication techniques to lag behind corresponding theory in the development process. Written with the professional optical engineer in mind, this book omits the already well-published broader processing fundamentals. Instead it focuses on key tricks of the trade helpful in reformulating processes to achieve necessary optical targets, improve process fidelity, and reduce production costs. The contributing authors represent the vanguard in micro-optical fabrication. The result of their combined efforts, this searing analysis of emerging fabrication technologies will continue to fuel the expansion of optics components, from the microwave to the infrared through the visible regime.