18585831. METHOD FOR FORMING AN ELECTRICALLY CONDUCTIVELY FORMED CONNECTION AND BATTERY MODULE simplified abstract (Robert Bosch GmbH)

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METHOD FOR FORMING AN ELECTRICALLY CONDUCTIVELY FORMED CONNECTION AND BATTERY MODULE

Organization Name

Robert Bosch GmbH

Inventor(s)

Ralph Glemser of Brackenheim (DE)

Markus Schmitt of Tamm (DE)

Silvio Grund of Wurzen (DE)

METHOD FOR FORMING AN ELECTRICALLY CONDUCTIVELY FORMED CONNECTION AND BATTERY MODULE - A simplified explanation of the abstract

This abstract first appeared for US patent application 18585831 titled 'METHOD FOR FORMING AN ELECTRICALLY CONDUCTIVELY FORMED CONNECTION AND BATTERY MODULE

Simplified Explanation: The patent application describes a method for creating an electrically conductive connection between a power bus connected to a battery cell and a power bus connected to a control unit in a battery module.

Key Features and Innovation:

  • Method for forming an electrically conductive connection between power buses in a battery module.
  • Utilizes an assembly aid and connecting element to create the connection.
  • Ensures a secure mechanical and electrical connection between the power buses.

Potential Applications: This technology can be applied in various battery modules for electric vehicles, energy storage systems, and other applications requiring reliable power connections.

Problems Solved:

  • Ensures a secure and reliable electrical connection between power buses.
  • Facilitates efficient power distribution within a battery module.

Benefits:

  • Improved safety and reliability of power connections.
  • Simplified assembly process for battery modules.
  • Enhanced performance and longevity of battery systems.

Commercial Applications: The technology can be utilized in electric vehicles, renewable energy systems, and industrial applications requiring advanced battery modules with secure power connections.

Prior Art: Readers can explore prior patents related to battery module power connections, electrical connectors, and battery management systems to understand the existing technology landscape.

Frequently Updated Research: Stay informed about the latest developments in battery module technology, power distribution systems, and electric vehicle advancements to enhance the understanding of this innovation.

Questions about Battery Module Power Connections: 1. How does this technology improve the efficiency of power distribution within battery modules? 2. What are the potential safety benefits of using this method for forming electrically conductive connections in battery modules?


Original Abstract Submitted

A method for forming an electrically conductively formed connection between a first power bus, which is electrically conductively connectable or connected to a voltage tap of a terminally arranged battery cell of a plurality of electrically conductively interconnected battery cells, and a second power bus, which is electrically conductively connected to a control unit of a battery module. The plurality of battery cells, the control unit, and the first power bus and the second power bus are accommodated in a housing of the battery module. An opening is provided in the housing, and an assembly aid is inserted into the opening. A connecting element is accommodated in the mounting aid, and a mechanical connection is formed between the first power bus and the second power bus by the connecting element, such that an electrically conductively formed connection is formed between the first power bus and the second power bus.