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Dive into the research topics where Robert H. Philbrick is active.

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Featured researches published by Robert H. Philbrick.


international conference on asic | 1994

A modular, high performance, 2 /spl mu/m CCD-BiCMOS process technology for application specific image sensors and image sensor systems on a chip

R.M. Guidash; Paul P. Lee; J.M. Andrus; Antonio S. Ciccarelli; Herbert J. Erhardt; John Fischer; Eric J. Meisenzahl; Robert H. Philbrick; Goodwin Ting

A 2 /spl mu/m BiCMOS process module has been developed for incorporation into existing charge-coupled device (CCD) image sensor processes. The modular process architecture allows integration of CMOS, NPN bipolar or BiCMOS circuits without affecting the baseline CCD characteristics, and enables on-chip integration of desired analog and digital circuit functions with the image sensor. To our knowledge this is the first demonstration of high performance CCD, 2 /spl mu/m CMOS, and an isolated vertical NPN integrated on the same chip.<<ETX>>


IS&T/SPIE's Symposium on Electronic Imaging: Science & Technology | 1995

Modular high-performance 2-μm CCD-BiCMOS process technology for application-specific image sensors and image sensor systems on a chip

R. Michael Guidash; Paul P. Lee; J. M. Andrus; Antonio S. Ciccarelli; Herbert J. Erhardt; John Fischer; Eric J. Meisenzahl; Robert H. Philbrick; Timothy J. Kenney

A 2 micrometers BiCMOS process module has been developed for incorporation into existing high performance 2-phase CCD processes, to enable integration of digital and analog circuits on- chip with the CCD image sensor. The modular process architecture allows the integration of CMOS, NPN bipolar or BiCMOS circuits without affecting the baseline CCD characteristics. A design of experiments approach was employed using process and device simulation tools and selected physical experiments, to optimize CMOS and NPN device performance and process latitude. Both enhancement and depletion mode Poly-1 and Poly-2 CMOS devices were realized and demonstrated good long channel behavior down to 1.6 micrometers drawn. A 12 V, 2.5 GHz, low collector resistance NPN was also produced. Experimental process splits were used to demonstrate and verify that the CMOS and NPN process module incorporation did not affect the CCD device characteristics or yield. CMOS circuit performance was found to be comparable to that of a standard 2 micrometers CMOS process. Finally, a trilinear sensor with on-chip timing generation and correlated double sample was designed and fabricated. To our knowledge this is the first demonstration of high performance CCD, 2 micrometers CMOS, and an isolated vertical NPN, integrated on the same chip.


Archive | 1992

Image-based electronic pocket organizer with integral scanning unit

Carl William Schlack; J. Terrence Flynn; Jay Soper; Kenneth Corl; Roger S. Gaborski; Robert H. Philbrick


Archive | 1998

Linear image sensor package assembly

Robert H. Philbrick; Antonio S. Ciccarelli


Archive | 1992

Image-based electronic pocket organizer.

Carl William Schlack; James Terrence Flynn; Jay Soper; Kenneth Corl; Roger S. Gaborski; Robert H. Philbrick


Archive | 2002

Constant speed, variable resolution two-phase CCD

Robert H. Philbrick


Archive | 1992

Transfer region design for charge-coupled device image sensor

Constantine N. Anagnostopoulos; Herbert J. Erhardt; Eric G. Stevens; Robert H. Philbrick


Archive | 1994

Image sensor with improved charge transfer inefficiency characteristics

Robert H. Philbrick; Herbert J. Erhardt


Archive | 1993

Multiple array linear CCD imager

Robert H. Philbrick; Herbert J. Erhardt


Archive | 1992

Bildunterstützter elektronischer taschenorganisator.

Carl William Schlack; James Terrence Flynn; Jay Soper; Kenneth Corl; Roger S. Gaborski; Robert H. Philbrick

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Jay Soper

Eastman Kodak Company

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