18521745. APPARATUS AND METHOD FOR IMPROVED WIRELESS CHARGING simplified abstract (HONEYWELL INTERNATIONAL INC.)

From WikiPatents
Revision as of 16:13, 14 June 2024 by Wikipatents (talk | contribs) (Creating a new page)
(diff) ← Older revision | Latest revision (diff) | Newer revision → (diff)
Jump to navigation Jump to search

APPARATUS AND METHOD FOR IMPROVED WIRELESS CHARGING

Organization Name

HONEYWELL INTERNATIONAL INC.

Inventor(s)

En Yi Chen of Charlotte NC (US)

Hang Tian of Charlotte NC (US)

Zhi Peng Ou of Charlotte NC (US)

APPARATUS AND METHOD FOR IMPROVED WIRELESS CHARGING - A simplified explanation of the abstract

This abstract first appeared for US patent application 18521745 titled 'APPARATUS AND METHOD FOR IMPROVED WIRELESS CHARGING

Simplified Explanation: The abstract describes a wireless charging system with power receiving coils secured on a curved portion of a receiver and a charging relay component with ferromagnetic material.

  • The wireless charging system includes multiple power receiving coils.
  • These coils are placed on the inner curved surface of a curved portion of the power receiver.
  • A charging relay component is present, made of ferromagnetic material.
  • The charging relay component defines a curved surface for the receiver relay.

Key Features and Innovation:

  • Plurality of power receiving coils on a curved portion of the receiver.
  • Charging relay component with ferromagnetic material.
  • Curved surface defined by the charging relay component.

Potential Applications: The technology can be applied in various industries such as consumer electronics, automotive, and medical devices for wireless charging solutions.

Problems Solved: The system addresses the need for efficient and convenient wireless charging by utilizing power receiving coils and a charging relay component.

Benefits:

  • Simplifies the process of wireless charging.
  • Provides a more secure and efficient charging solution.
  • Enhances user experience with wireless charging technology.

Commercial Applications: The technology can be used in smartphones, electric vehicles, and wearable devices to offer wireless charging capabilities, potentially impacting the consumer electronics market.

Prior Art: Readers can explore prior research on wireless charging systems, ferromagnetic materials, and power receiving coils to understand the background of this technology.

Frequently Updated Research: Stay updated on advancements in wireless charging technology, ferromagnetic materials, and power transmission efficiency to enhance the performance of the system.

Questions about Wireless Charging Systems: 1. How does the placement of power receiving coils on a curved portion of the receiver impact charging efficiency? 2. What are the advantages of using ferromagnetic material in the charging relay component?


Original Abstract Submitted

Example wireless charging systems are provided. For example, an example wireless charging system includes a plurality of power receiving coils secured on a receiver inner curved surface of a power receiver curved portion; and a charging relay component comprising ferromagnetic material and defining a receiver relay curved surface.