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18470596. ENERGY STORAGE DEVICE HAVING CELL WITH SLEEVE simplified abstract (DEERE & COMPANY)

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ENERGY STORAGE DEVICE HAVING CELL WITH SLEEVE

Organization Name

DEERE & COMPANY

Inventor(s)

Thomas L. Kennedy of Bettendorf IA (US)

ENERGY STORAGE DEVICE HAVING CELL WITH SLEEVE - A simplified explanation of the abstract

This abstract first appeared for US patent application 18470596 titled 'ENERGY STORAGE DEVICE HAVING CELL WITH SLEEVE

The energy storage device described in the patent application consists of an energy storage cell enclosed by a sleeve, with multiple devices housed in an energy storage module.

  • The energy storage cell features a metal case with specific dimensions, while the sleeve has a chamber larger than the case to accommodate the cell.
  • Each energy storage device is placed in a compartment within the energy storage module, which is a block structure.
  • An electrically conductive fluid is channeled to the energy devices through a passageway in the block.

Potential Applications: - Energy storage systems for renewable energy sources - Electric vehicles - Portable electronic devices

Problems Solved: - Efficient energy storage and management - Compact design for multiple energy storage devices

Benefits: - Enhanced energy storage capacity - Improved safety with the use of sleeves - Modular design for easy maintenance and replacement

Commercial Applications: "Modular Energy Storage System for Renewable Energy Solutions"

Questions about the technology: 1. How does the sleeve enhance the safety of the energy storage device? 2. What are the advantages of using an electrically conductive fluid in the energy storage module?


Original Abstract Submitted

An energy storage device includes at least one energy storage cell and at least one sleeve disposed around the at least one energy storage cell. The energy storage cell includes a metal case having an outer dimension and the sleeve includes a chamber having an inner dimension larger than the outer dimension of the case, wherein the chamber is configured to receive the energy storage cell. A plurality of energy storage devices are located in an energy storage module, wherein each one of the plurality of energy storage devices is located in one of a plurality of compartments located in a block of the energy storage module. An electrically conductive fluid is directed to the plurality of energy devices through a passageway of the block.

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