Bose Corporation (20240334666). Wearable Device Control Module with Electrostatic Discharge (ESD) Protection simplified abstract

From WikiPatents
Revision as of 11:54, 8 October 2024 by Wikipatents (talk | contribs) (Creating a new page)
(diff) ← Older revision | Latest revision (diff) | Newer revision → (diff)
Jump to navigation Jump to search

Wearable Device Control Module with Electrostatic Discharge (ESD) Protection

Organization Name

Bose Corporation

Inventor(s)

James Piper Miglietta of Stow MA (US)

Daniel D. Gonsalves of Hudson NH (US)

Wearable Device Control Module with Electrostatic Discharge (ESD) Protection - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240334666 titled 'Wearable Device Control Module with Electrostatic Discharge (ESD) Protection

Simplified Explanation: The patent application discusses wearable devices with electrostatic discharge (ESD) mitigating features, including a control module with ESD protection for electronic components.

  • The control module connects to a wearable device.
  • The housing of the control module has at least one ESD ingress location.
  • An electronic component is housed within the control module.
  • A shield plate contained in the housing is connected to ground, providing ESD protection for the electronic component.

Key Features and Innovation:

  • ESD mitigating features in wearable devices.
  • Control module with ESD protection for electronic components.
  • Shield plate connected to ground for ESD protection.
  • Integration of ESD protection within wearable technology.
  • Enhanced durability and reliability of wearable devices.

Potential Applications:

  • Wearable technology industry.
  • Consumer electronics market.
  • Healthcare and fitness devices.
  • Industrial and commercial applications.
  • Research and development in ESD protection.

Problems Solved:

  • Protection of electronic components from ESD damage.
  • Increased reliability of wearable devices.
  • Prevention of malfunctions due to ESD.
  • Enhanced safety for users of wearable technology.
  • Improved performance and longevity of wearable devices.

Benefits:

  • Extended lifespan of wearable devices.
  • Reduced risk of ESD-related failures.
  • Enhanced user experience with reliable technology.
  • Increased trust in wearable device performance.
  • Potential cost savings on device maintenance and replacements.

Commercial Applications: The technology can be applied in various industries such as consumer electronics, healthcare, fitness, and industrial sectors. It offers improved reliability and durability for wearable devices, enhancing user experience and reducing maintenance costs.

Questions about Wearable Devices with ESD Mitigating Features: 1. How does the shield plate in the control module provide ESD protection for electronic components? 2. What are the potential market implications of integrating ESD protection in wearable devices?

Frequently Updated Research: Stay updated on advancements in ESD protection technology for wearable devices to ensure optimal performance and reliability in the rapidly evolving wearable technology market.


Original Abstract Submitted

various aspects include wearable devices with electrostatic discharge (esd) mitigating features. in some examples, a control module is configured to connect to a wearable device, the control module including: a housing having at least one electrostatic discharge (esd) ingress location, an electronic component in the housing, and a shield plate contained in the housing and connected to ground, the shield plate providing esd protection for the electronic component.