IP Library Assignment 070110/0392
Patent Assignment
Reel/Frame 070110/0392

Assignment of Assignor's Interest

Recorded: 2025-02-04 Pages: 11
Assignor
Assignee
PINE CASTLE INVESTMENTS LIMITED
VISTRA CORPORATE SERVICES CENTRE, WICKHAMS CAY II, ROAD TOWN, TORTOLA, VG1110, VIRGIN ISLANDS, BRITISH
Covered Properties (82)
Transparent Conductors Comprising Metal Nanowires
Patent: 8,049,333 →
Application: 11/504,822 →
Publication: US 2007/0074316
Methods of Controlling Nanostructure Formations and Shapes
Patent: 8,454,721 →
Application: 11/766,552 →
Publication: US 2008/0210052
Nanowire-Based Transparent Conductors and Applications Thereof
Patent: 8,094,247 →
Application: 11/871,767 →
Publication: US 2008/0143906
Nanowires-Based Transparent Conductors
Patent: 9,899,123 →
Application: 12/098,329 →
Publication: US 2008/0286447
Nanowires-Based Transparent Conductors
Patent: 8,865,027 →
Application: 12/098,337 →
Publication: US 2008/0283799
Composite Transparent Conductors and Methods of Forming the Same
Patent: 8,018,563 →
Application: 12/106,193 →
Publication: US 2008/0259262
Method and composition for screen printing of conductive features
Patent: 8,815,126 →
Application: 12/380,294 →
Publication: US 2009/0223703
Nanowire-Based Transparent Conductors and Applications Thereof
Patent: 8,018,568 →
Application: 12/712,096 →
Publication: US 2010/0243295
Nanowire-Based Transparent Conductors and Applications Thereof
Patent: 8,760,606 →
Application: 12/905,664 →
Publication: US 2011/0088770
Nanostructure-Based Transparent Conductors Having Increased Haze and Devices Comprising the Same
Patent: 9,586,816 →
Application: 12/960,316 →
Publication: US 2011/0163403
Transparent Conductors Comprising Metal Nanowires
Patent: 8,618,531 →
Application: 12/969,430 →
Publication: US 2011/0285019
Low-Haze Transparent Conductors
Application: 13/007,305 →
Publication: US 2011/0174190
Photosensitive Ink Compositions and Transparent Conductors and Method of Using the Same
Patent: 9,534,124 →
Application: 13/021,274 →
Publication: US 2011/0192633
Methods of Controlling Nanostructure Formations and Shapes
Patent: 8,709,125 →
Application: 13/040,549 →
Publication: US 2011/0185852
Etch Patterning of Nanostructure Transparent Conductors
Patent: 9,023,217 →
Application: 13/069,837 →
Publication: US 2011/0253668
Composite Transparent Conductors and Methods of Forming the Same
Application: 13/206,279 →
Publication: US 2012/0033367
Nanowire-Based Transparent Conductors and Applications Thereof
Patent: 8,174,667 →
Application: 13/211,205 →
Publication: US 2011/0297642
Anisotropy Reduction in Coating of Conductive Films
Patent: 9,573,163 →
Application: 13/535,112 →
Publication: US 2013/0040106
Opto-Electrical Devices Incorporating Metal Nanowires
Patent: 8,637,859 →
Application: 13/651,128 →
Publication: US 2013/0105770
Methods for Reducing Diffuse Reflection of Nanostructure-Based Transparent Conductive Films and Touch Panels Made of the Same
Application: 13/668,006 →
Publication: US 2013/0120846
Conductive Films Having Low-Visibility Patterns and Methods of Producing the Same
Patent: 8,957,322 →
Application: 13/791,086 →
Publication: US 2014/0158400
Methods for Reducing Diffuse Reflection of Nanostructure-Based Transparent Conductive Films and Touch Panels Made of the Same
Patent: 9,568,646 →
Application: 13/801,322 →
Publication: US 2013/0194671
Electrical Contacts in Layered Structures
Patent: 9,490,048 →
Application: 13/839,689 →
Publication: US 2013/0273315
Methods to Incorporate Silver Nanowire-Based Transparent Conductors in Electronic Devices
Application: 13/840,864 →
Publication: US 2014/0234618
Low-Haze Transparent Conductors
Patent: 9,672,950 →
Application: 13/934,678 →
Publication: US 2013/0291683
Opto-Electrical Devices Incorporating Metal Nanowires
Patent: 9,076,988 →
Application: 14/109,164 →
Publication: US 2014/0175407
Methods to Incorporate Silver Nanowire-Based Transparent Conductors in Electronic Devices
Application: 14/181,523 →
Publication: US 2014/0234661
Methods of Controlling Nanostructure Formations and Shapes
Patent: 9,440,291 →
Application: 14/247,689 →
Publication: US 2014/0216207
Conductive Nanostructure-Based Films with Improved Esd Performance
Patent: 9,763,313 →
Application: 14/260,888 →
Publication: US 2014/0340811
Nanowire-Based Transparent Conductors and Applications Thereof
Application: 14/281,685 →
Publication: US 2014/0338735
Transparent Electrically Conductive Substrate and Manufacturing Method Thereof
Patent: 9,776,209 →
Application: 14/378,716 →
Publication: US 2015/0321220
Silver Nanostructure-Based Optical Stacks and Touch Sensors with Uv Protection
Patent: 9,759,846 →
Application: 14/460,999 →
Publication: US 2015/0090573
Light Stability of Nanowire-Based Transparent Conductors
Application: 14/664,679 →
Publication: US 2015/0270024
Methods of Controlling Nanowire Morphology
Application: 14/684,313 →
Publication: US 2015/0290715
Grid and Nanostructure Transparent Conductor for Low Sheet Resistance Applications
Patent: 9,860,993 →
Application: 14/703,830 →
Publication: US 2015/0313022
Opto-Electrical Devices Incorporating Metal Nanowires
Patent: 9,559,335 →
Application: 14/746,105 →
Publication: US 2015/0287955
Electrical Contacts in Layered Structures
Patent: 9,801,287 →
Application: 14/795,748 →
Publication: US 2016/0014896
Methods of Controlling Nanostructure Formations and Shapes
Application: 15/234,272 →
Publication: US 2016/0346843
Method of Forming Metal Nanostructure-Based Structure
Application: 15/292,265 →
Publication: US 2017/0031225
Anisotropy Reduction in Coating of Conductive Films
Application: 15/343,595 →
Publication: US 2017/0050216
Opto-Electrical Devices Incorporating Metal Nanowires
Patent: 9,905,763 →
Application: 15/415,105 →
Publication: US 2017/0133595
Short-Chain Fluorosurfactants with Iodide Additives for Forming Silver Nanowire-Based Transparent Conductive Films
Application: 15/523,113 →
Publication: US 2017/0342280
Silver Nanostructure-Based Optical Stacks and Touch Sensors with Uv Protection
Application: 15/682,528 →
Publication: US 2018/0356571
Electrical Contacts in Layered Structures
Application: 15/691,751 →
Publication: US 2017/0367196
Nanowires-Based Transparent Conductors
Application: 15/871,949 →
Publication: US 2018/0218802
Opto-Electrical Devices Incorporating Metal Nanowires
Application: 15/877,683 →
Publication: US 2018/0159040
Organic Solar Module and/or Fabrication Method
Application: 16/012,162 →
Publication: US 2018/0366670
Low-Haze Transparent Conductors
Application: 16/026,019 →
Publication: US 2018/0322978
Short-Chain Fluorosurfactants with Iodide Additives for Forming Silver Nanowire-Based Transparent Conductive Films
Application: 16/030,846 →
Publication: US 2018/0312703
Methods of Controlling Nanowire Morphology
Application: 16/136,260 →
Publication: US 2019/0030610
Methods of Controlling Nanostructure Formations and Shapes
Application: 16/226,613 →
Publication: US 2019/0111491
Composite Transparent Conductors and Methods of Forming the Same
Application: 16/283,808 →
Publication: US 2019/0191569
Anisotropy Reduction in Coating of Conductive Films
Application: 16/373,712 →
Publication: US 2019/0224713
Method of Forming Electrical Contacts in Layered Structures
Application: 16/398,666 →
Publication: US 2019/0258128
Methods of Controlling Nanostructure Formations and Shapes
Application: 16/416,569 →
Publication: US 2019/0275590
Double-Sided Electrode Structure and Patterning Process Thereof
Application: 16/426,102 →
Publication: US 2019/0371830
Touch Sensing Panel and Manufacturing Method Thereof
Application: 16/441,256 →
Publication: US 2019/0384429
Opto-Electrical Devices Incorporating Metal Nanowires
Application: 16/454,258 →
Publication: US 2019/0319192
Planar Heating Structure
Application: 16/580,357 →
Publication: US 2020/0037401
Short-Chain Fluorosurfactants with Iodide Additives for Forming Silver Nanowire-Based Transparent Conductive Films
Application: 16/583,672 →
Publication: US 2020/0017695
Touch Panel and Manufacturing Method Thereof
Application: 16/674,273 →
Publication: US 2020/0301557
Nanowires-Based Transparent Conductors
Application: 16/747,906 →
Publication: US 2020/0161017
Electrode Structure and Touch Panel Thereof
Application: 16/787,586 →
Publication: US 2020/0272263
Silver Nanostructure-Based Optical Stacks and Touch Sensors with Uv Protection
Application: 16/854,814 →
Publication: US 2020/0249381
Opto-Electrical Devices Incorporating Metal Nanowires
Application: 16/859,071 →
Publication: US 2020/0259092
Transparent Conductive Laminated Structure Including a First Conductive Film and First Adhesive Layer Disposed on the First Conductive Film and Touch Panel
Application: 16/934,215 →
Touch Panel
Application: 16/941,662 →
Publication: US 2021/0357054
Touch Panel and Manufacturing Method Thereof
Application: 16/943,072 →
Publication: US 2021/0041986
Transparent Conductive Film
Application: 16/944,244 →
Conductive Laminated Structure and Foldable Electronic Device
Application: 16/983,225 →
Publication: US 2022/0035406
Touch Panel and Manufacturing Method Thereof
Application: 16/994,088 →
Publication: US 2021/0157447
Touch Panel and Manufacturing Method Thereof
Application: 16/998,301 →
Publication: US 2021/0157448
Photosensitive Electrically Conductive Structure and Touch Sensor
Application: 17/030,843 →
Publication: US 2022/0088909
Short-Chain Fluorosurfactants with Iodide Additives for Forming Silver Nanowire-Based Transparent Conductive Films
Application: 17/062,825 →
Publication: US 2021/0079236
Transparent Conductive Film
Application: 17/157,667 →
Publication: US 2022/0037052
Transparent Heat-Insulating Film
Application: 17/347,644 →
Publication: US 2022/0396053
Anisotropy Reduction in Coating of Conductive Films
Application: 17/394,950 →
Publication: US 2021/0362183
Conductive Nanostructure Purification
Application: 17/600,719 →
Publication: US 2022/0168807
Thin Electrically Conductive Film
Application: 17/600,765 →
Publication: US 2022/0172859
Stretch-Deforming Electrode and Biological Sensing System
Application: 17/695,971 →
Publication: US 2022/0386920
Transparent Conductive Film
Application: 17/979,044 →
Publication: US 2024/0145119
Anisotropy Reduction in Coating of Conductive Films
Application: 18/322,780 →
Publication: US 2023/0294127
Related Assignments (25)
Other recorded transfers of the patents in this record — the chain of ownership.
Assignment of Assignor's Interest Dec 1, 2006
From: ALDEN, JONATHAN S.; DAI, HAIXIA; KNAPP, MICHAEL R.; NA, SHUO
To: CAMBRIOS TECHNOLOGIES CORPORATION
Reel/Frame 018575/0198 →
Assignment of Assignor's Interest Sep 17, 2007
From: ALLEMAND, PIERRE-MARC
To: CAMBRIOS TECHNOLOGIES CORPORATION
Reel/Frame 019837/0099 →
Assignment of Assignor's Interest Feb 26, 2008
From: ALLEMAND, PIERRE-MARC; DAI, HAIXIA; NA, SHUO; PAKBAZ, HASH
To: CAMBRIOS TECHNOLOGIES CORPORATION
Reel/Frame 020563/0332 →
Assignment of Assignor's Interest Jul 7, 2008
From: JONES, DAVID; PSCHENITZKA, FLORIAN; QUAN, XINA; SPAID, MICHAEL A.
To: CAMBRIOS TECHNOLOGIES CORPORATION
Reel/Frame 021201/0040 →
Security Agreement Oct 3, 2008
From: CAMBRIOS TECHNOLOGIES CORPORATION
To: SILICON VALLEY BANK
Reel/Frame 021633/0172 →
Assignment of Assignor's Interest May 12, 2009
From: WINOTO, ADRIAN
To: CAMBRIOS TECHNOLOGIES CORPORATION
Reel/Frame 022691/0116 →
Assignment of Assignor's Interest Mar 22, 2011
From: BHATIA, RIMPLE; PAKBAZ, HASH; SEPA, JELENA; RAMOS, TERESA
To: CAMBRIOS TECHNOLOGIES CORPORATION
Reel/Frame 025998/0404 →
Assignment of Assignor's Interest Mar 23, 2011
From: ALLEMAND, PIERRE-MARC; DAI, HAIXIA; NA, SHUO; PAKBAZ, HASH
To: CAMBRIOS TECHNOLOGIES CORPORATION
Reel/Frame 026005/0603 →
Assignment of Assignor's Interest Mar 31, 2011
From: SEPA, JELENA; WALLACE, FRANK
To: CAMBRIOS TECHNOLOGIES CORPORATION
Reel/Frame 026056/0533 →
Assignment of Assignor's Interest Apr 18, 2011
From: ALLEMAND, PIERRE-MARC
To: CAMBRIOS TECHNOLOGIES CORPORATION
Reel/Frame 026145/0258 →
Assignment of Assignor's Interest Jun 30, 2011
From: WINOTO, ADRIAN; WOLK, JEFFREY
To: CAMBRIOS TECHNOLOGIES CORPORATION
Reel/Frame 026532/0107 →
Release Jul 21, 2011
From: SILICON VALLEY BANK
To: CAMBRIOS TECHNOLOGIES CORPORATION
Reel/Frame 026632/0532 →
Assignment of Assignor's Interest Jan 17, 2014
From: JONES, DAVID; PSCHENITZKA, FLORIAN; QUAN, XINA; SPAID, MICHAEL A.
To: CAMBRIOS TECHNOLOGIES CORPORATION
Reel/Frame 031999/0746 →
Assignment of Assignor's Interest Jan 17, 2014
From: ALLEMAND, PIERRE-MARC
To: CAMBRIOS TECHNOLOGIES CORPORATION
Reel/Frame 031998/0183 →
Assignment of Assignor's Interest Jan 17, 2014
From: ALDEN, JONATHAN S.; DAI, HAIXIA; KNAPP, MICHAEL R.; NA, SHUO
To: CAMBRIOS TECHNOLOGIES CORPORATION
Reel/Frame 031998/0929 →
Assignment of Assignor's Interest Jan 17, 2014
From: ALDEN, JONATHAN S.; DAI, HAIXIA; KNAPP, MICHAEL R.; NA, SHUO
To: CAMBRIOS TECHNOLOGIES CORPORATION
Reel/Frame 031999/0044 →
Assignment of Assignor's Interest Jan 17, 2014
From: ALLEMAND, PIERRE-MARC; DAI, HAIXIA; NA, SHUO; PAKBAZ, HASH
To: CAMBRIOS TECHNOLOGIES CORPORATION
Reel/Frame 031999/0434 →
Lien Feb 10, 2016
From: CAMBRIOS TECHNOLOGIES CORPORATION
To: SEED IP LAW GROUP PLLC
Reel/Frame 037760/0806 →
Release of Lien Mar 17, 2016
From: SEED IP LAW GROUP PLLC
To: CAMBRIOS TECHNOLOGIES CORPORATION
Reel/Frame 038146/0630 →
Assignment of Assignor's Interest Mar 29, 2016
From: CAMBRIOS TECHNOLOGIES CORPORATION
To: CHAMP GREAT INT'L CORPORATION
Reel/Frame 038295/0845 →
Assignment of Assignor's Interest Oct 11, 2016
From: CHAMP GREAT INTERNATIONAL CORPORATION
To: CAM HOLDING CORPORATION
Reel/Frame 039982/0258 →
Assignment of Assignor's Interest Oct 12, 2016
From: CHAMP GREAT INTERNATIONAL CORPORATION
To: CAM HOLDING CORPORATION
Reel/Frame 040322/0944 →
Change of Name Sep 30, 2018
From: CAM HOLDING CORPORATION
To: CAMBRIOS FILM SOLUTIONS CORPORATION
Reel/Frame 048172/0510 →
Security Interest Oct 24, 2018
From: CAMBRIOS FILM SOLUTIONS CORPORATION
To: INVENTIVE POWER LIMITED
Reel/Frame 047297/0351 →
Change of Name Nov 13, 2018
From: CAM HOLDING CORPORATION
To: CAMBRIOS FILM SOLUTIONS CORPORATION
Reel/Frame 047508/0135 →