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Wednesday, August 5, 2020 | History

3 edition of Laser/optical processing of electronic materials, 10-11 October 1989, Santa Clara, California found in the catalog.

Laser/optical processing of electronic materials, 10-11 October 1989, Santa Clara, California

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  • 19 Currently reading

Published by SPIE in Bellingham, Wash., USA .
Written in English

    Subjects:
  • Semiconductor industry -- Laser use in -- Congresses.,
  • Lasers -- Industrial applications -- Congresses.,
  • Semiconductors -- Etching -- Congresses.,
  • Annealing of crystals -- Congresses.

  • Edition Notes

    Includes bibliographical references and index.

    StatementJ. Narayan, chair/editor ; sponsored by SPIE--the International Society for Optical Engineering ; cooperating organizations, SEMATECH [and] Center for Advanced Electronic Materials Processing, North Carolina State University [and] Engineering Research Center for Plasma-Aided Manufacturing, University of Wisconsin-Madison.
    SeriesProceedings / SPIE--the International Society for Optical Engineering ;, v. 1190, Proceedings of SPIE--the International Society for Optical Engineering ;, v. 1190.
    ContributionsNarayan, J., Society of Photo-optical Instrumentation Engineers.
    Classifications
    LC ClassificationsTK7871.85 .L276 1990
    The Physical Object
    Paginationvi, 221 p. :
    Number of Pages221
    ID Numbers
    Open LibraryOL2218020M
    ISBN 100819402265
    LC Control Number89043526

      Krishna Saraswat, "Schottky Barrier Height Engineering for Low Resistance Contacts to Semiconductor Devices", 42nd Annual Northern California Electronic Material Symposium, Santa Clara, May 9, Invited. Laser Designer: Intel Corporation, SANTA CLARA, CA, United States: The job you tried to view is no longer active on the site. LATEST JOB POSTINGS: Optics Technician II - Second shift: MKS Instruments: Franklin, MA, United States: Science Instruments Project Manager: TMT International Observatory, LLC: Pasadena, CA, United States.

    NoiseBlock™ ASE Filters and Beamsplitters and CleanLine™ Filter and Laser Systems Page to connect with any of our global sites. email: @ Corporate Headquarters Coherent Inc. Patrick Henry Drive Santa Clara, CA USA Anrufen unter +49 0 0 Coherent verfügt über Standorte auf der ganzen Welt, die Support für alle Produkte, Dienstleistungen. Categorized under Print Cartridges for Laser and Other Computer Printers. Our records show it was established in and incorporated in California. Current estimates show this company has an annual revenue of $, to $1 million and employs a staff of approximately 1 to 4. undefined.

    Address: Commercial Street, Palo Alto, CA , USA Phone: +1 Sales: +1 x Email Us. @article{osti_, title = {Occupational hazards of laser-material processing. Final report, 1 October January }, author = {Rockwell, R.J. and Wilson, R.M. and Jander, S. and Dreffer, R.}, abstractNote = {The study was undertaken to define the nature and magnitude of laser material-processing uses and to examine the potential respirable hazards that might be released as part of.


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Laser/optical processing of electronic materials, 10-11 October 1989, Santa Clara, California Download PDF EPUB FB2

Laser/optical processing of electronic materials, OctoberSanta Clara, California Author: J Narayan ; Society of Photo-optical Instrumentation Engineers. Get this from a library. Multichamber and in-situ processing of electronic materials: OctoberSanta Clara, California.

[Robert S Freund; Society of Photo-optical. Advances in Laser Materials Processing: Technology, Research and Application, Second Edition, provides a revised, updated and expanded overview of the area, covering fundamental theory, technology and methods, traditional and emerging applications and potential future directions.

The book begins with an overview of the technology and challenges to applying the technology in manufacturing. The present contribution provides an overview of the application of high power laser only for material processing in engineering applications, and intentionally excludes the scope of application.

Chen and E. Ong, Proceedings of Society of Photoptical Integrated Engineering Symposium on Microelectronic Integrated Processing: Conference on Laser/Optical Processing of Electronic Materials, Santa Clara, CA, Oct. 10–11, Cited by: Our research literature focuses on the latest advances in the study of optical and electronic materials, such as semiconductor technology and materials research.

Among the best-known titles in this discipline are JMS: Materials in Electronics, the Springer Series in Materials Science, and the Springer Handbook of Electronic and Photonics Materials. Lasers have been established in numerous areas of materials processing, like cutting, drilling and welding.

A broad variety of available laser systems with different wavelengths, pulse durations, and intensities facilitate the processing of almost all types of materials, including metals, ceramics, semiconductors, polymers, and composites.

Optical Materials. Currently there are a great number of materials available for use in the optical components. Unfortunately not all optical materials are suitable for use with all laser components.

For choosing the material for use in optical components several characteristics must be considered, that are. S.G. Lukishova, "Cumulative effects in pure and doped planar nematics after nonlinear absorption of nanosecond laser radiation: 2 to Hz repetition rate mode", OSA Annual Meeting, Conference Program, p,Santa Clara, CA.

Extensive Laser Material Processing. DLMP (Digital Laser Material Processing) technology provides an efficient, non-contact method for working with a wide variety of materials. The following list is a small sample of the materials that can be effectively processed with a laser cutting, engraving, and marking machine from ULS using a CO 2 and/or.

Materials, an international, peer-reviewed Open Access journal. Dear Colleagues, We have the pleasure to invite you to submit a manuscript to the forthcoming Special Issue, “Advances in Laser Technologies and Applications”, for the journal Materials.

Since the invention of the laser, a broad variety of laser systems with different properties (wavelength, pulse duration, repetition rate. Santa Clara Valley Chapter Chapter Newsletter 1 of 3 March Chapter Meeting Understanding Laser Material Processing: The Dichotomy of Laser Damage and Laser Machining.

Speaker: Dr. Manyalibo J. Matthews. Lawrence Livermore National Laboratory. Meeting Location. Michael’s at Shoreline Shoreline Blvd., Mountain View. Wednesday, March   Laser Materials Processing: Fundamentals and Applications (Lecture-1) JENOPTIK Optical Systems - Laser Material Processing - Duration: Jenoptik Group 1, views.

@article{osti_, title = {Laser electronics. 2nd edition}, author = {Verdeyen, J T}, abstractNote = {The theoretical basis of laser design and operation is explored in an introductory textbook for physics students.

Chapters are devoted to a review of electromagnetic theory, ray tracing in an optical system, Gaussian beams, Gaussian beams in continuous media, optical resonators, resonant.

A Nd:YVO 4 laser (Coherent, Inc., Santa Clara, CA, USA, nm, 15 ns pulse duration) is guided through a Tunable Acoustic Gradient-Index (TAG) lens (TAG Optics, Inc.) and focused onto the. Laser Innovations supplies a large stock of ion laser plasma tubes for Coherent and other major manufacturers.

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Advanced Laser & WaterJet Cutting Capabilities Advanced Laser & Waterjet Cutting Inc., provides a complete cutting service for small runs to production size specialize in CAD design with quick turn around times, and utilize many materials such as stainless steel, titanium, acrylics, stone, and more.

We at Applied Laser Solutions combine over 50 years in the laser cutting and motion control industries to bring you the exacting solutions you require. We provide custom laser CNC machines, advanced laser cutting applications, and engineering expertise to solve your technological issues.

Ultrafast laser materials. Until recently, scientific ultrafast lasers have mainly relied on titanium:sapphire (Ti:sapphire) because of its large bandwidth and broad tuning range; turnkey commercial Ti:sapphire lasers can deliver pulses as short as 6 fs.

Ti:sapphire lasers are typically pumped using a green-wavelength CW pump laser. Categorized under Data Processing Equipment-Maintenance. Our records show it was established in and incorporated in CA. Current estimates show this company has an annual revenue of and employs a staff of approximately 5.Similar issues arise when processing gold, silver, copper, brass and certain polished metals.

To avoid reflected light, some manufacturers adjust the angle of the focus head. This alteration ensures reflected light is directed away from the laser but at the expense of the spot shape.Invited Seminars "Generation, Compression and Shaping of Femtosecond Optical Pulses," A.

M. Weiner, Electronic Materials and Devices Seminar, Princeton University.