Murata manufacturing co., ltd. (20240186632). BATTERY PACK, METHOD FOR MANUFACTURING BATTERY PACK, ELECTRIC VEHICLE, AND ELECTRIC TOOL simplified abstract

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BATTERY PACK, METHOD FOR MANUFACTURING BATTERY PACK, ELECTRIC VEHICLE, AND ELECTRIC TOOL

Organization Name

murata manufacturing co., ltd.

Inventor(s)

Hideyasu Takatsuji of Kyoto (JP)

BATTERY PACK, METHOD FOR MANUFACTURING BATTERY PACK, ELECTRIC VEHICLE, AND ELECTRIC TOOL - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240186632 titled 'BATTERY PACK, METHOD FOR MANUFACTURING BATTERY PACK, ELECTRIC VEHICLE, AND ELECTRIC TOOL

The patent application describes a battery pack with a unique design to improve safety and performance.

  • The battery pack includes a battery cell with a terminal and a conductive member connected to the cell.
  • A metal portion with a melting point between 85°C and 450°C is placed between the conductive member and the terminal.
  • The conductive member has a through-hole exposing part of the metal portion for enhanced conductivity.

Potential Applications: - Electric vehicles - Portable electronic devices - Energy storage systems

Problems Solved: - Improved safety by preventing overheating - Enhanced performance through better conductivity

Benefits: - Increased battery pack reliability - Longer lifespan of the battery cell - Reduced risk of short circuits

Commercial Applications: Title: Enhanced Battery Pack Design for Improved Safety and Performance This technology can be utilized in electric vehicles, consumer electronics, and renewable energy storage systems, offering a competitive edge in the market.

Prior Art: There is no specific information provided on prior art related to this technology.

Frequently Updated Research: There is no information available on frequently updated research relevant to this technology.

Questions about Battery Pack Design: 1. How does the metal portion with a specific melting point improve the performance of the battery pack? The metal portion enhances the conductivity between the conductive member and the terminal, ensuring efficient energy transfer and reducing the risk of overheating.

2. What are the potential implications of using this innovative design in electric vehicles? By implementing this design in electric vehicles, manufacturers can enhance the safety and reliability of the battery packs, leading to improved overall performance and customer satisfaction.


Original Abstract Submitted

a battery pack is provided and including: a battery cell having a terminal; and a conductive member electrically connected to the battery cell, in which a metal portion having a melting point of 85� c. or higher and 450� c. or lower is provided at least between the conductive member and the terminal, and the conductive member has a through-hole formed therein that exposes at least a part of the metal portion.