loadpatents
name:-0.077038049697876
name:-0.020876169204712
name:-0.023704051971436
Lyding; Joseph W. Patent Filings

Lyding; Joseph W.

Patent Applications and Registrations

Patent applications and USPTO patent grants for Lyding; Joseph W..The latest application filed is for "scanning probe and electron microscope probes and their manufacture".

Company Profile
3.13.14
  • Lyding; Joseph W. - Champaign IL
*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
Scanning Probe and Electron Microscope Probes and Their Manufacture
App 20220128595 - Lyding; Joseph W. ;   et al.
2022-04-28
Scanning probe and electron microscope probes and their manufacture
Grant 11,237,188 - Lyding , et al. February 1, 2
2022-02-01
Scanning probe and electron microscope probes and their manufacture
Grant 11,169,177 - Lyding , et al. November 9, 2
2021-11-09
Carbon-metal Oxide Composite Electrode For A Supercapacitor And Method Of Making A Carbon-metal Oxide Composite Electrode
App 20210319958 - WANG; Gang ;   et al.
2021-10-14
Surface Contaminant Reduction In Controlled Environments
App 20200176248 - OWEN; JAMES ;   et al.
2020-06-04
Scanning Probe and Electron Microscope Probes and Their Manufacture
App 20190219611 - Lyding; Joseph W. ;   et al.
2019-07-18
Scanning Probe and Electron Microscope Probes and Their Manufacture
App 20180328960 - Lyding; Joseph W. ;   et al.
2018-11-15
Scanning probe and electron microscope probes and their manufacture
Grant 10,060,948 - Lyding , et al. August 28, 2
2018-08-28
Scanning Probe and Electron Microscope Probes and Their Manufacture
App 20180045755 - Lyding; Joseph W. ;   et al.
2018-02-15
Nanometer-scale sharpening of conductor tips
Grant 8,819,861 - Lyding , et al. August 26, 2
2014-08-26
Asymmetric Magnetic Field Nanostructure Separation Method, Device And System
App 20140166545 - Lyding; Joseph W. ;   et al.
2014-06-19
Electrochemical cells comprising laminar flow induced dynamic conducting interfaces, electronic devices comprising such cells, and methods employing same
Grant 8,283,090 - Markoski , et al. October 9, 2
2012-10-09
Nanometer-scale Sharpening Of Conductor Tips
App 20120159678 - LYDING; Joseph W. ;   et al.
2012-06-21
Nanometer-scale sharpening of conductor tips
Grant 8,070,920 - Lyding , et al. December 6, 2
2011-12-06
Electrochemical cells comprising laminar flow induced dynamic conducting interfaces, electronic devices comprising such cells, and methods employing same
Grant 7,651,797 - Markoski , et al. January 26, 2
2010-01-26
Nanometer-scale Sharpening Of Conductor Tips
App 20080105539 - Lyding; Joseph W. ;   et al.
2008-05-08
Electrochemical Cells Comprising Laminar Flow Induced Dynamic Conducting Interfaces, Electronic Devices Comprising Such Cells, And Methods Employing Same
App 20080026265 - Markoski; Larry J. ;   et al.
2008-01-31
Electrochemical cells comprising laminar flow induced dynamic conducting interfaces, electronic devices comprising such cells, and methods employing same
App 20060035136 - Markoski; Larry J. ;   et al.
2006-02-16
Semiconductor devices, and methods for same
Grant 6,888,204 - Lyding , et al. May 3, 2
2005-05-03
Deuterium treatment of semiconductor device
Grant 6,833,306 - Lyding , et al. December 21, 2
2004-12-21
Electrochemical cells comprising laminar flow induced dynamic conducting interfaces, electronic devices comprising such cells, and methods employing same
Grant 6,713,206 - Markoski , et al. March 30, 2
2004-03-30
Electrochemical cells comprising laminar flow induced dynamic conducting interfaces, electronic devices comprising such cells, and methods employing same
App 20030134163 - Markoski, Larry J. ;   et al.
2003-07-17
Deuterium treatment of semiconductor devices
App 20020031920 - Lyding, Joseph W. ;   et al.
2002-03-14
Deuterium-treated semiconductor devices
Grant 5,872,387 - Lyding , et al. February 16, 1
1999-02-16
Variable temperature scanning tunneling microscope
Grant 4,841,148 - Lyding June 20, 1
1989-06-20

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