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US Patent 10290871 Battery cell engineering and design to reach high energy

Patent 10290871 was granted and assigned to Zenlabs Energy on May, 2019 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent

Patent attributes

Patent Applicant
Envia Systems (company)
Envia Systems (company)
Current Assignee
Zenlabs Energy
Zenlabs Energy
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
10290871
Patent Inventor Names
Haixia Deng0
Herman A. Lopez0
Subramanian Venkatachalam0
Sujeet Kumar0
Yogesh Kumar Anguchamy0
Yongbong Han0
Charan Masarapu0
Date of Patent
May 14, 2019
Patent Application Number
14749099
Date Filed
June 24, 2015
Patent Citations Received
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US Patent 12132193 Silicon-based anode material for lithium ion battery
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US Patent 11069885 Silicon-based anode material for lithium ion battery
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US Patent 11652201 Silicon-based anode material for lithium ion battery
0
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US Patent 11380883 Method of forming negative electrode active material, with lithium preloading
0
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US Patent 11387440 Lithium ions cell designs with high capacity anode materials and high cell capacities
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US Patent 11973178 Lithium ion cells with high performance electrolyte and silicon oxide active materials achieving very long cycle life performance
0
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US Patent 11502299 Battery cell engineering and design to reach high energy
0
Patent Primary Examiner
‌
Michael L Dignan
Patent abstract

Improved high energy capacity designs for lithium ion batteries are described that take advantage of the properties of high specific capacity anode active compositions and high specific capacity cathode active compositions. In particular, specific electrode designs provide for achieving very high energy densities. Furthermore, the complex behavior of the active materials is used advantageously in a radical electrode balancing design that significantly reduced wasted electrode capacity in either electrode when cycling under realistic conditions of moderate to high discharge rates and/or over a reduced depth of discharge.

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