Micron Technology, Inc. (20240274113). AUDIO COMMUNICATION BETWEEN PROXIMATE DEVICES simplified abstract

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AUDIO COMMUNICATION BETWEEN PROXIMATE DEVICES

Organization Name

Micron Technology, Inc.

Inventor(s)

Nicholas R. Tapias of Boise ID (US)

Anthony J. Kanago of Boise ID (US)

AUDIO COMMUNICATION BETWEEN PROXIMATE DEVICES - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240274113 titled 'AUDIO COMMUNICATION BETWEEN PROXIMATE DEVICES

Simplified Explanation: The patent application describes techniques for wireless communication between proximate devices, allowing users to communicate effectively even in noisy environments.

Key Features and Innovation:

  • Utilizes a first microphone on a wearable audio device to receive audio signals from a second user and analyze them to determine primary audio directed to the first user.
  • Compares the primary audio to other audio signals received through wireless communication channels with other wearable audio devices.
  • Outputs audio signals that are determined to be similar to the primary audio, enabling accurate communication between users in noisy environments.

Potential Applications: This technology could be applied in various settings where clear communication between users in noisy environments is essential, such as in crowded public spaces, workplaces, or during outdoor activities.

Problems Solved: This technology addresses the challenge of effective communication between users in noisy environments where ambient noise can interfere with speech clarity.

Benefits:

  • Improved communication between users in noisy environments.
  • Enhanced user experience with wearable audio devices.
  • Increased efficiency and productivity in various settings.

Commercial Applications: Potential commercial applications of this technology include the development of advanced wearable audio devices for communication in noisy environments, catering to industries such as hospitality, manufacturing, and entertainment.

Questions about Wireless Communication Between Proximate Devices: 1. How does the technology differentiate between primary audio and ambient noise? 2. What are the potential limitations of this technology in extremely noisy environments?

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Original Abstract Submitted

techniques, apparatuses, and systems for wireless communication between proximate devices are disclosed. a first microphone on a first wearable audio device of a first user receives first audio signals that include speech from a second user proximate to the first user and ambient noise from an environment surrounding the first wearable audio device. the first audio signals are analyzed to determine primary audio directed to the first user. the primary audio is compared to other audio signals received through wireless communication channels between the first wearable audio device and one or more other wearable audio devices. in doing so, some of the other audio signals are determined to be similar to the primary audio and are thus output to the first wearable audio device. as a result, two users can accurately communicate, even in a noisy environment.