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US Patent 11770095 Energy harvesting and electrical power generation

Patent 11770095 was granted and assigned to SolarEdge Technologies, Inc. on September, 2023 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent

Patent attributes

Patent Applicant
SolarEdge Technologies, Inc.
SolarEdge Technologies, Inc.
Current Assignee
SolarEdge Technologies, Inc.
SolarEdge Technologies, Inc.
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
11770095
Patent Inventor Names
Ilan Yoscovich
Bryon Roos Gomberg
Date of Patent
September 26, 2023
Patent Application Number
17132250
Date Filed
December 23, 2020
Patent Citations
‌
US Patent 9027289 Integrated thermal module and back plate structure and related methods
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US Patent 9103563 Integrated thermal module and back plate structure and related methods
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US Patent 7579701 Insulation and power generation system for buildings
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US Patent 8210792 Wind energy system
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US Patent 8368240 Roof installed wind turbine vent and solar panel electric power generation system
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US Patent 8375936 Method and system for operating a thermal solar system using a reverse motor configuration
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US Patent 8386197 Method and system for processing information from a combination of a solar thermal system and a photovoltaic apparatus
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US Patent 8487463 Enhanced multi-mode power generation system
Patent Citations Received
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US Patent 12110875 Installation for the combined conversion of wave, wind and solar energies into electrical energy
0
Patent Primary Examiner
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Pedro J Cuevas
CPC Code
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Y02E 10/728
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Y02E 10/74
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H02S 10/10
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H02S 20/00
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H02S 20/10
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H02S 40/32
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H02S 40/425
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F03G 7/05
...
Patent abstract

An apparatus for harvesting energy, such as solar, wind, wave, thermal, and the like, including a solar panel and a duct supporting the solar panel at an operational angle. The duct comprises a bottom shroud and side shrouds, therein forming a large aperture, a small aperture, and an oblique frustum shaped cavity. The oblique frustum shaped cavity is configured to direct a flow of fluid from the large aperture to the small aperture. A flow energy generator, such as a turbine, located at the small aperture is configured to collect flow energy. Temperature differences between the solar panel and the environment may be used to harvest thermal energy with a thermoelectric generator. Fluid flow under the solar panel may decrease the panel temperature and increase the efficiency. Generators may be operated in reverse to lower the solar panel temperature and increase efficiency.

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