loadpatents
name:-0.010673046112061
name:-0.0080649852752686
name:-0.00052595138549805
Chow; Eugene Patent Filings

Chow; Eugene

Patent Applications and Registrations

Patent applications and USPTO patent grants for Chow; Eugene.The latest application filed is for "digital gravure printing with a pixilated photoconductor".

Company Profile
0.6.7
  • Chow; Eugene - Singapore SG
  • Chow; Eugene - Fremont CA
  • Chow; Eugene - Mountain View CA
*profile and listings may contain filings by different individuals or companies with the same name. Review application materials to confirm ownership/assignment.
Patent Activity
PatentDate
Photonic measurement instrument using fiber optics
Grant 8,541,741 - Ivaldi , et al. September 24, 2
2013-09-24
Anisotropically conductive backside addressable imaging belt for use with contact electrography
Grant 7,995,081 - Stowe , et al. August 9, 2
2011-08-09
Digital Gravure Printing with a Pixilated Photoconductor
App 20110185925 - Chow; Eugene ;   et al.
2011-08-04
Microsprings Having Nanowire Tip Structures
App 20110167526 - Chow; Eugene ;   et al.
2011-07-07
Method Of Producing Microsprings Having Nanowire Tip Structures
App 20110163061 - Chow; Eugene ;   et al.
2011-07-07
Photonic Measurement Instrument Using Fiber Optics
App 20110122396 - Ivaldi; Juan C. ;   et al.
2011-05-26
Pattern-print thin-film transistors with top gate geometry
Grant 7,884,361 - Wong , et al. February 8, 2
2011-02-08
Patterned-print thin-film transistors with top gate geometry
Grant 7,804,090 - Wong , et al. September 28, 2
2010-09-28
Anisotropically Conductive Backside Addressable Imaging Belt For Use With Contact Electrography
App 20090322845 - Stowe; Timothy D. ;   et al.
2009-12-31
Method Of Producing Microsprings Having Nanowire Tip Structures
App 20090159996 - Chow; Eugene ;   et al.
2009-06-25
Selective delamination of thin-films by interface adhesion energy contrasts and thin film transistor devices formed thereby
App 20060065909 - Wong; William S. ;   et al.
2006-03-30
Selective delamination of thin-films by interface adhesion energy contrasts and thin film transistor devices formed thereby
Grant 7,018,877 - Wong , et al. March 28, 2
2006-03-28

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