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Eric S White, 39Lake Wylie, SC

Eric White Phones & Addresses

Clover, SC   

Chester, SC   

York, SC   

Mc Cormick, SC   

Mentions for Eric S White

Eric White resumes & CV records

Resumes

Eric White Photo 10

Eric White - York, SC

Work:
grinding specialist - York, SC Nov 2011 to Jul 2014
eqi
Eric White Photo 11

Eric White - Gastonia, NC

Work:
Difference Makers Foundation 2008 to Present
Founder/Board President
Radar Concepts 2008 to Present
Social Worker/Group Counselor
Savannah River Challenge - Sylvania, GA Jan 2008 to May 2008
Director of Operations
Joseph's Home for Boys May 2006 to May 2008
Social Worker
Joseph's Home for Boys - Statesboro, GA May 2004 to May 2008
Social Worker
Cleveland Family Services - Shelby, NC Nov 2003 to Jan 2004
Community Support Worker
All Care Providers - Shelby, NC May 2003 to Aug 2003
Paraprofessional
Shelby City Park May 2001 to Aug 2001
Summer Camp Counselor
Education:
Georgia Southern University 2005
Bachelor of Science in Sociology/Social Work
Eric White Photo 12

Eric White - Gastonia, NC

Work:
Optical Experts Manufacturing, Inc. Jul 2011 to 2000
Graphic Designer / Production Artist
Account Manager/ Graphic Designer 2010 to 2000 Production Artist/ Graphic Designer 2009 to 2010 Office Manager/ Graphic Artist 2005 to 2009 SignCut Pro 2003 to 2007
imagesetter film processor
Filemaker Pro 2002 to 2003
Production Artist for Flexographic printing
Print Software, Internet - Charlotte, NC 1997 to 2001
production artist
Education:
The Art Institute of Charlotte Jan 1999 to Jan 2002
AS in graphic design

Publications & IP owners

Us Patents

Laminated Multilayer Membranes, Separators, Batteries, And Methods

US Patent:
2021038, Dec 9, 2021
Filed:
Aug 23, 2021
Appl. No.:
17/409363
Inventors:
- Charlotte NC, US
Eric Robert White - Fort Mill SC, US
Kang Karen Xiao - Mississauga, CA
Robert A. Nark - Charlotte NC, US
Insik Jeon - Tega Cay SC, US
Kristoffer K. Stokes - Lunenburg MA, US
Paul Vido - Rock Hill SC, US
Zhengming Zhang - Rock Hill SC, US
International Classification:
H01M 50/449
B32B 5/16
B32B 27/32
B32B 3/26
H01M 10/42
H01M 50/44
H01M 50/403
H01M 50/411
H01M 50/431
H01M 50/446
H01M 50/581
Abstract:
Disclosed herein are novel or improved microporous battery separator membranes, separators, batteries including such separators, methods of making such membranes, separators, and/or batteries, and/or methods of using such membranes, separators and/or batteries. Further disclosed are laminated multilayer polyolefin membranes with exterior layers comprising one or more polyethylenes, which exterior layers are designed to provide an exterior surface that has a low pin removal force. Further disclosed are battery separator membranes having increased electrolyte absorption capacity at the separator/electrode interface region, which may improve cycling. Further disclosed are battery separator membranes having improved adhesion to any number of coatings. Also described are battery separator membranes having a tunable thermal shutdown where the onset temperature of thermal shutdown may be raised or lowered and the rate of thermal shutdown may be changed or increased. Also disclosed are multilayer battery separator membranes having enhanced web handling performance during manufacturing processes and coating operations.

Microlayer Membranes, Improved Battery Separators, And Methods Of Manufacture And Use

US Patent:
2021037, Dec 2, 2021
Filed:
Jul 1, 2021
Appl. No.:
17/365736
Inventors:
- Charlotte NC, US
Eric Joseph Penegar - Fort Mill SC, US
Takahiko Kondo - Shiga, JP
Robert Nark - Fort Mill SC, US
Eric Robert White - Fort Mill SC, US
Xiaomin Zhang - Charlotte NC, US
Kristoffer K. Stokes - Lunenburg MA, US
International Classification:
H01M 50/449
H01M 10/0525
B01D 71/26
B01D 69/12
H01M 50/411
Abstract:
In accordance with at least selected embodiments, a battery separator or separator membrane comprises one or more co-extruded multi-microlayer membranes optionally laminated or adhered to another polymer membrane. The separators described herein may provide improved strength, for example, improved puncture strength, particularly at a certain thickness, and may exhibit improved shutdown and/or a reduced propensity to split.

Battery Separators, Coated Battery Separators, Batteries, And Related Methods

US Patent:
2021025, Aug 19, 2021
Filed:
May 10, 2019
Appl. No.:
17/054196
Inventors:
- Charlotte NC, US
Allen M. Donn - Rock Hill SC, US
Stefan Reinartz - Waxhaw NC, US
Changqing Wang Adams - Fort Mill SC, US
Masaaki Okada - Charlotte NC, US
Brian R. Stepp - Scottsdale AZ, US
Eric Robert White - Fort Mill SC, US
Katharine Chemelewski - Campbell CA, US
International Classification:
H01M 50/449
H01M 50/423
H01M 50/46
H01M 10/0525
H01M 50/417
Abstract:
A new or improved microporous monolayer, bilayer, trilayer, or multilayer membrane, separator membrane, separator, or coated separator is disclosed. The membrane is preferably made up of at least one resin or polymer and at least one additive. The additive may comprise at least one material that improves adhesion of the microporous membrane to a coating, including a polyaramid-containing coating and a PCS coating, or to a different material such as a metallic surface, including an electrode surface. Improvements in adhesion are based on comparisons to similar microporous membranes without the at least one additive. In some preferred embodiments, the at least one additive may comprise, consist of, or consist essentially of a functionalized polymer or the combination of a functionalized polymer and an elastomer. In some embodiments, the functional group of the functionalized polymer may be maleic anhydride (MAH). Also disclosed is a battery separator or coated separator comprising the new or improved microporous membrane. The battery separator may comprise the microporous membrane coated with a polyaramid-containing coating. Also disclosed is a new or improved separator, composite, battery, secondary lithium ion battery, and/or vehicle or device comprising the separator, composite, or battery.

Additives For Improved Battery Performance, Improved Additive-Containing Membranes, Improved Battery Separators, Improved Batteries, And Related Methods

US Patent:
2020016, May 21, 2020
Filed:
Nov 7, 2017
Appl. No.:
16/347664
Inventors:
- Charlotte NC, US
Kang Karen Xiao - Mississauga, CA
Stefan Reinartz - Waxhaw NC, US
Masaaki Okada - Charlotte NC, US
Brian R. Stepp - Scottsdale AZ, US
Yao Lu - Harrisburg NC, US
Eric Robert White - Fort Mill SC, US
Katharine Chemelewski - Campbell CA, US
International Classification:
H01M 2/16
H01M 10/052
Abstract:
Described herein, are battery separators, comprising the following: a microporous polymeric film; and an optional coating layer on at least one side of the microporous polymeric film, wherein at least one of the microporous polymeric film and the optional coating comprises an additive. The additive is selected from the group consisting of a lubricating agent, a plasticizing agent, a nucleating agent, a shrinkage reducing agent, a surfactant, an SEI improving agent, a cathode protection agent, a flame retardant additive, LiPFsalt stabilizer, an overcharge protector, an aluminum corrosion inhibitor, a lithium deposition agent or improver, or a solvation enhancer, an aluminum corrosion inhibitor, a wetting agent, and a viscosity improver. Also, described herein are batteries, including lithium-ion batteries, comprising one or more of the described separators. Methods for making the battery separators are also described.

Improved Microlayer Membranes, Mproved Battery Separators, And Related Methods

US Patent:
2020002, Jan 23, 2020
Filed:
Nov 10, 2017
Appl. No.:
16/348658
Inventors:
- Charlotte NC, US
Eric J. Penegar - Fort Mill SC, US
Takahiko Kondo - Charlotte NC, US
Robert Nark - Fort Mill SC, US
Eric R. White - Fort Mill SC, US
Xiaomin Zhang - Charlotte NC, US
Kristoffer K. Stokes - Lunenburg MA, US
Stefan Reinartz - Waxhaw NC, US
Masaaki Okada - Charlotte NC, US
International Classification:
H01M 2/16
H01M 10/0525
Abstract:
Described herein is a multilayer microporous film or membrane that may exhibit improved properties, including improved dielectric break down and strength, compared to prior monolayer or tri-layer microporous membranes of the same thickness. The preferred multilayer microporous membrane comprises microlayers and one or more lamination barriers. Also disclosed is a battery separator or battery comprising one or more of the multilayer microporous films or membranes. The inventive battery and battery separator is preferably safer and more robust than batteries and battery separators using prior monolayer and tri-layer microporous membranes. Also, described herein is a method for making the multilayer microporous separators, membranes or films described herein.

Laminated Multilayer Membranes, Separators, Batteries, And Methods

US Patent:
2019033, Oct 31, 2019
Filed:
Jul 8, 2019
Appl. No.:
16/505502
Inventors:
- Charlotte NC, US
Eric Robert White - Fort Mill SC, US
Kang Karen Xiao - Mississauaga CA, US
Robert A. Nark - Charlotte NC, US
Insik Jeon - Tega Cay SC, US
Kristoffer K. Stokes - Lunenburg MA, US
Paul Vido - Rock Hill SC, US
Zhengming Zhang - Rock Hill SC, US
International Classification:
H01M 2/16
H01M 2/34
B32B 27/32
H01M 10/42
B32B 5/16
H01M 2/14
B32B 3/26
Abstract:
Disclosed herein are novel or improved microporous battery separator membranes, separators, batteries including such separators, methods of making such membranes, separators, and/or batteries, and/or methods of using such membranes, separators and/or batteries. Further disclosed are laminated multilayer polyolefin membranes with exterior layers comprising one or more polyethylenes, which exterior layers are designed to provide an exterior surface that has a low pin removal force. Further disclosed are battery separator membranes having increased electrolyte absorption capacity at the separator/electrode interface region, which may improve cycling. Further disclosed are battery separator membranes having improved adhesion to any number of coatings. Also described are battery separator membranes having a tunable thermal shutdown where the onset temperature of thermal shutdown may be raised or lowered and the rate of thermal shutdown may be changed or increased. Also disclosed are multilayer battery separator membranes having enhanced web handling performance during manufacturing processes and coating operations.

Improved Microlayer Membranes, Mproved Battery Separators, And Related Methods

US Patent:
2019026, Aug 29, 2019
Filed:
Nov 13, 2017
Appl. No.:
16/348680
Inventors:
- Charlotte NC, US
Eric J. Penegar - Fort Mill SC, US
Takahiko Kondo - Charlotte NC, US
Robert Nark - Fort Mill SC, US
Eric R. White - Fort Mill SC, US
Xiaomin Zhang - Charlotte NC, US
Kristoffer K. Stokes - Lunenburg MA, US
Stefan Reinartz - Waxhaw NC, US
Masaaki Okada - Charlotte NC, US
International Classification:
H01M 2/16
H01M 2/14
B29C 48/00
B29C 48/08
B29C 48/21
B32B 27/08
B32B 27/32
Abstract:
Described herein is a multilayer microporous film or membrane that may exhibit improved properties, including improved dielectric break down and strength, compared to prior monolayer or tri-layer microporous membranes of the same thickness. The preferred multilayer microporous membrane comprises microlayers and one or more lamination barriers. Also disclosed is a battery separator or battery comprising one or more of the multilayer microporous films or membranes. The inventive battery and battery separator is preferably safer and more robust than batteries and battery separators using prior monolayer and tri-layer microporous membranes. Also, described herein is a method for making the multilayer microporous separators, membranes or films described herein.

Microlayer Membranes, Improved Battery Separators, And Methods Of Manufacture And Use

US Patent:
2018032, Nov 8, 2018
Filed:
Nov 11, 2016
Appl. No.:
15/773201
Inventors:
- Charlotte NC, US
Eric Joseph PENEGAR - Fort Mill SC, US
Takahiko KONDO - Charlotte NC, US
Robert NARK - Charlotte NC, US
Eric Robert WHITE - Fort Mill SC, US
Xiaomin ZHANG - Charlotte NC, US
Kristoffer K. STOKES - Lunenburg MA, US
International Classification:
H01M 2/16
H01M 10/0525
Abstract:
In accordance with at least selected embodiments, a battery separator or separator membrane comprises one or more co-extruded multi-microlayer membranes optionally laminated or adhered to another polymer membrane. The separators described herein may provide improved strength, for example, improved puncture strength, particularly at a certain thickness, and may exhibit improved shutdown and/or a reduced propensity to split.

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