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    • 32. 发明申请
    • Hearing Assistance Systems Configured To Detect And Provide Protection To The User From Harmful Conditions
    • 助听器系统被配置为检测并向用户提供有害的保护
    • US20160302012A1
    • 2016-10-13
    • US15190688
    • 2016-06-23
    • HearGlass, Inc.
    • Peter J. SpragueWayne D. BoyleJanet M. Baker
    • H04R25/00G02C5/14G02C5/12H04R1/10G02C11/06
    • H04R25/30G02C5/02G02C5/12G02C5/14G02C11/06G10L13/043G10L21/0208H04R1/1066H04R1/1083H04R25/405H04R25/407H04R25/554H04R25/558H04R25/602H04R25/604H04R25/65H04R25/652H04R2225/0213H04R2225/41H04R2225/43H04R2225/61H04R2430/21H04R2460/01
    • The present universal wearable computing device relates to a hearing assistance system, device, method, and apparatus that provide a discreet approach to user hearing assistance, without relying on a conventional hearing aid. The hearing assistance system and the requisite electronics may be incorporated into frames that also function as eyeglasses with earphone(s) that may be connected to the frame to assist user hearing. An earphone may be configured with minimal electronics, such that a power source enable sound transmissions to the ear, is provided by a connection to the frame of the eyeglasses. In another example, the earphone is configured without any electronics and sound is transmitted to the user/listener's ear(s) via a psychoacoustic system. The sound quality of the transmissions to the earphones may be optimized using a tuning/equalizer application operating from a computing device, such as an app on a mobile device. The tuning/equalizer application can be used by the user/listener to optimize volume input levels to the earphone(s). The hearing assistance system may also protect from damaging environmental noise, provide heightened hearing capabilities, collect and process physiological and physical measurements, and provide communication capabilities for interacting with other computing devices.
    • 本通用可佩戴计算设备涉及在不依赖于常规助听器的情况下为用户听力辅助提供谨慎方法的助听系统,设备,方法和设备。 助听器系统和必要的电子设备可以并入也可用作眼镜的框架,耳机可以连接到框架以辅助用户听力。 耳机可以被配置为具有最小的电子设备,使得通过与眼镜的框架的连接来提供电源使得能够传输到耳朵的声音。 在另一示例中,耳机被配置为没有任何电子设备,并且声音通过心理声学系统传送到用户/听众的耳朵。 可以使用从诸如移动设备上的应用的计算设备操作的调谐/均衡器应用来优化到耳机的传输的声音质量。 调谐/均衡器应用可以由用户/收听者使用来优化到耳机的音量输入电平。 助听器系统还可以保护免受破坏性的环境噪声,提供更高的听觉能力,收集和处理生理和物理测量,并且提供与其他计算设备交互的通信能力。