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Proceedings of Manufacturing Technologies for Integrated Nano- to Millimeter (In2m) Sized Systems: The State of the Art, and Opportunities for Further Advances Workshop
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Document Date: 2013-07-18 13:02:19


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File Size: 118,49 KB

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City

Arlington / /

Company

Flat / Hewlett-Packard / MicroFab Technologies Inc. / Adept Technologies Inc. / Strategic Analysis Inc. / NIST Laboratory / Honeywell / Boeing / Milli Sensor System & Actuator Company / Standards Laboratories / Millimeter (In2m) Sized Systems / Manufacturing Extension Partnership / /

Currency

USD / /

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Event

Product Issues / /

Facility

National Institute of Standards and Technology / George Mason University / Carnegie Mellon University / Vanderbilt University / Defense Advanced Research Projects Agency National Institute of Standards and Technology March / NASA International Space Station / University of Maryland Physics / University of California / /

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IndustryTerm

process technologies / reconfigurable tabletop precision assembly systems / manufacturing floor / datacommunication networks / prototype systems / generation military/aerospace fiber-optic components / basic technology infrastructure / automated assembly system design tools / measurement calibration services / manufacturing technology / parallel manufacturing techniques / sensor technology / automated assembly systems / ion beam imaging / Manufacturing practice / infrastructure technologies / luncheon working / assembly process technologies / defense applications / well understood technology base / manufacturing processes / micro-manufacturing technology / laboratory solutions / energy / fiber-optic network technology / process modeling tools / diverse technologies / scale technologies / manufacturing development cycle / microscale devices / overall system design tools / particular process technology / hardware/software architecture / electron beam imaging / size technologies / photonics technology / manufacturing techniques / electronics / ink-jet printing techniques / materials processing / manufacturing / parallel manufacturing / chemical / photonic device / manufacturing technologies/methods / manufacturing problems / aerospace / mesoscale technology / /

Organization

Army Research Office / National Science Foundation / USC Information Sciences Institute / University of California / Berkeley / Kevin W. Lyons Defense Advanced Research Projects Agency Defense Sciences Office / Raptor / National Institute of Standards and Technology / University of Maryland Physics of Failure / George Mason University / Vanderbilt University / Carnegie Mellon University / National Aeronautics and Space Administration / Department of Defense / Defense Applied Research Projects Agency / Design For Flexible Assembly / US Army Research Laboratory / /

Person

Robert Reeber / Phil Kuekes / David Wallace / John Feddema / Ralph Hollis / Robert A. Weller / Heather Heigele / William Tolles / William D'Amico / Mark Beranek / Peter Will / Michael Pecht / Nicholas Dagalakis / John Steven Smith / Phil Keukes / Don VerLee / Kevin W. Lyons / Cleopatra Cabuz / Robert Beranek / James Ellenbogen / John Evans / /

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Position

Manager DARPA Defense Sciences Office SUBJECT / packaging and manufacturing engineer / Program Manager / Consultant / administrator / Chair / /

Product

F-22 / F-22 Raptor / Boeing 777 / RAH-66 Comanche / agility / precision / /

ProvinceOrState

Virginia / Maryland / California / /

PublishedMedium

Complex Systems / /

Technology

fiber-optic network technology / mesoscale technology / infrastructure technologies / scale technologies / MEMS technology / optical fiber / photonics technology / 3 Manufacturing Technologies / Sensing technologies / laser / size technologies / particular process technology / optoelectronics / identifying key assembly process technologies / process technologies / micro-manufacturing technology / using sensor technology / simulation / assembly technologies / implementation technologies / /

URL

www.itl.nit.gov/div895/mems_nano / http /

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