Apple inc. (20240272681). HIGH TOLERANCE CONNECTION BETWEEN ELEMENTS simplified abstract

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HIGH TOLERANCE CONNECTION BETWEEN ELEMENTS

Organization Name

apple inc.

Inventor(s)

Scott A. Myers of Saratoga CA (US)

Mattia Pascolini of Cupertino CA (US)

Richard Hung Minh Dinh of Cupertino CA (US)

Trent Weber of San Francisco CA (US)

Robert Schlub of Palo Alto CA (US)

Josh Nickel of Cupertino CA (US)

Robert Hill of Morgan Hill CA (US)

Nanbo Jin of Cupertino CA (US)

Tang Yew Tan of Palo Alto CA (US)

HIGH TOLERANCE CONNECTION BETWEEN ELEMENTS - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240272681 titled 'HIGH TOLERANCE CONNECTION BETWEEN ELEMENTS

Abstract: This patent application is focused on connecting two or more elements using an intermediate element made from a material that changes between states. The method involves providing a material in a first state where it flows between the elements before transitioning to a second state where it adheres to the elements, creating a structurally sound connection. Internal surfaces of the elements may have features to enhance the bond with the material.

  • Simplified Explanation:

- The patent application describes a method of connecting elements using a material that changes states. - The material flows between the elements in one state before adhering to them in another state, creating a strong connection. - Internal surfaces of the elements may have features to improve the bond with the material.

  • Key Features and Innovation:

- Use of a material that transitions between states to connect elements. - Internal features on elements to enhance bonding with the material. - Creation of structurally sound connections with reduced size or cross-section.

  • Potential Applications:

- Electronics manufacturing - Construction industry - Automotive sector

  • Problems Solved:

- Providing strong connections between elements - Reducing the size or cross-section of connections - Ensuring high tolerances in component construction

  • Benefits:

- Improved structural integrity - Enhanced precision in component construction - Efficient use of materials

  • Commercial Applications:

- "State-changing material for element connection in electronics manufacturing"

  • Questions about the Technology:

1. How does the material transition between states to create a strong connection? 2. What are the potential limitations of using this method in different industries?

  • Frequently Updated Research:

- Stay updated on advancements in materials science for improved connection methods.


Original Abstract Submitted

this is directed to connecting two or more elements using an intermediate element constructed from a material that changes between states. an electronic device can include one or more components constructed by connecting several elements. to provide a connection having a reduced or small size or cross-section and construct a component having high tolerances, a material can be provided in a first state in which it flows between the elements before changing to a second state in which it adheres to the elements and provides a structurally sound connection. for example, a plastic can be molded between the elements. as another example, a composite material can be brazed between the elements. in some cases, internal surfaces of the elements can include one or more features for enhancing a bond between the elements and the material providing the interface between the elements.