loadpatents
name:-0.01237416267395
name:-0.012225866317749
name:-0.00060009956359863
Wang; Dening Patent Filings

Wang; Dening

Patent Applications and Registrations

Patent applications and USPTO patent grants for Wang; Dening.The latest application filed is for "contact array optimization for esd devices".

Company Profile
0.13.14
  • Wang; Dening - Nanjing CN
  • Wang; Dening - McKinney TX
*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
Spiro organic compounds, material comprising the same for organic electroluminescence devices, and organic electroluminescence device comprising the material
Grant 10,396,290 - Kim , et al. A
2019-08-27
Spiro organic compounds, material comprising the same for organic electroluminescence devices, and organic electroluminescence device comprising the material
Grant 10,396,289 - Kim , et al. A
2019-08-27
Spiro organic compounds
Grant 10,214,489 - Kim , et al. Feb
2019-02-26
Low dynamic resistance low capacitance diodes
Grant 10,153,269 - Strachan , et al. Dec
2018-12-11
Precision surge clamp with constant clamping voltage and near-zero dynamic resistance under various thermal, power and current levels
Grant 10,014,682 - Wang , et al. July 3, 2
2018-07-03
Contact array optimization for ESD devices
Grant 9,865,584 - Lin , et al. January 9, 2
2018-01-09
Contact Array Optimization For Esd Devices
App 20180006013 - LIN; He ;   et al.
2018-01-04
Low Dynamic Resistance Low Capacitance Diodes
App 20170345813 - Strachan; Andrew D. ;   et al.
2017-11-30
Low dynamic resistance low capacitance diodes
Grant 9,773,777 - Strachan , et al. September 26, 2
2017-09-26
Low Dynamic Resistance Low Capacitance Diodes
App 20170200712 - Strachan; Andrew D. ;   et al.
2017-07-13
Novel Organic Compound, Material Comprising The Same For Organic Electroluminescence Devices, And Organic Electroluminescence Device Comprising The Material
App 20170125678 - Kim; Jin Woo ;   et al.
2017-05-04
Novel Organic Compound, Material Comprising The Same For Organic Electroluminescence Devices, And Organic Electroluminescence Device Comprising The Material
App 20170125677 - KIM; Jin Woo ;   et al.
2017-05-04
Novel Spiro Organic Compound
App 20170125684 - KIM; Jin Woo ;   et al.
2017-05-04
Semiconductor Esd Protection Circuit
App 20170025402 - OPOCZYNSKI; CHRISTOPHER A. ;   et al.
2017-01-26
Precision Surge Clamp With Constant Clamping Voltage And Near-zero Dynamic Resistance Under Various Thermal, Power And Current Levels
App 20150303678 - WANG; Dening ;   et al.
2015-10-22
Low-impedance high-swing power supply with integrated high positive and negative DC voltage protection and electro-static discharge (ESD) protection
Grant 8,760,829 - Wang , et al. June 24, 2
2014-06-24
Low-Impedance High-Swing Power Supply with Integrated High Positive and Negative DC Voltage Protection and Electro-Static Discharge (ESD) Protection
App 20130188286 - Wang; Liang ;   et al.
2013-07-25
Electrostatic discharge trigger circuits for self-protecting cascode stages
Grant 8,130,481 - Yang , et al. March 6, 2
2012-03-06
Driver with electrostatic discharge protection
Grant 7,855,863 - Wang , et al. December 21, 2
2010-12-21
Driver With Electrostatic Discharge Protection
App 20100123985 - Wang; Dening ;   et al.
2010-05-20
Semiconductor device having a gate electrode material feature located adjacent a gate width side of its gate electrode and a method of manufacture therefor
Grant 7,595,245 - Wang September 29, 2
2009-09-29
Electrostatic Discharge Trigger Circuits For Self-protecting Cascode Stages
App 20090040678 - Yang; Jinyu ;   et al.
2009-02-12
ESD clamp with "trailing pulse" suppression
Grant 7,274,545 - Marum , et al. September 25, 2
2007-09-25
Semiconductor device having a gate electrode material feature located adjacent a gate width side of its gate electrode and a method of manufacture therefor
App 20070034969 - Wang; Dening
2007-02-15
ESD clamp with "trailing pulse" suppression
App 20060262470 - Marum; Steven Edward ;   et al.
2006-11-23

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