摘要:
A system (2) for monitoring the status and/or performance of one or more hearing devices (8) is disclosed. The system (2) comprises a number of access points (4, 5) configured to receive wireless signals (14) transmitted by the hearing devices (8), wherein the access points (4, 5) are connected to a central unit (10) communicatively connected to the Internet/cloud (12), wherein the system (2) is configured to automatically monitor the status and/or performance of one or more parameter of the one or more hearing devices (8) received by access points (4, 5), wherein the monitored parameters are accessible from the central unit (10) and/or from a cloud service (12).
摘要:
Disclosed herein is a hearing aid. In some examples, the hearing aid includes an input unit configured to convert a sound in an environment of the hearing aid to at least one electrical input signal representative of the sound. The hearing aid can include an ultrasonic transceiver configured to output an ultrasonic signal and to receive a reflected ultrasonic signal from the environment. The hearing aid can include a signal processor configured to determine, based on the reflected ultrasonic signal and optionally the at least one electrical input signal, an audio parameter indicative of an object in the environment.
摘要:
A hearing aid system configured to compensate for a hearing impairment of a use comprises A) a wearable device adapted for being worn by the user and comprising a1) an input stage comprising at least one input transducer for converting sound around the user to at least one electric input signal representing said sound, and a2) an input stage for providing stimuli representative of a processed version of said least one electric input signal to said user, said stimuli being perceivable by said user as sound; and B) a non-wearable device comprising b1) a processor, and b2) a power supply interface for providing power to the processor. The wearable device and the non-wearable device comprise respective transceiver circuitry for establishing a low latency wireless audio communication link between them. The processor of the non-wearable device comprises an audio processor configured to process said at least one electric input signal, or a signal originating therefrom, to at least partially compensate for the hearing impairment of the user and to provide said processed version thereof. The power supply interface of the non-wearable device is electrically connected to an electricity network. Thereby an improved processing power of a hearing aid may be provided. The invention may e.g. be used in flexible hearing aid systems with a situation-dependent configurable processing power.
摘要:
The invention relates to an audio assist system, comprising a hearing aid, an external handheld device and an audio system comprising a Bluetooth audio transmitter, wherein the hearing aid comprises a Bluetooth receiver. The hearing aid and the external handheld device are temporarily connected via a wireless data link, and both the audio system and the external handheld device each comprise an infrared receiver and/or transmitter for establishing an at least unidirectional IR link between the external handheld device and the audio system. The external handheld device is adapted to transmit an automatic Bluetooth pairing trigger signal to the hearing aid via the wireless data link, when the external handheld device receives and/or transmits an IR signal via the IR link from or to the audio system, respectively, and the hearing aid is configured to perform Bluetooth pairing with the Bluetooth audio transmitter in response to receiving the automatic Bluetooth pairing trigger signal from said external handheld device.
摘要:
A hearing aid system configured to compensate for a hearing impairment of a use comprises A) a wearable device adapted for being worn by the user and comprising a1) an input stage comprising at least one input transducer for converting sound around the user to at least one electric input signal representing said sound, and a2) an input stage for providing stimuli representative of a processed version of said least one electric input signal to said user, said stimuli being perceivable by said user as sound; and B) a non-wearable device comprising b1) a processor, and b2) a power supply interface for providing power to the processor. The wearable device and the non-wearable device comprise respective transceiver circuitry for establishing a low latency wireless audio communication link between them. The processor of the non-wearable device comprises an audio processor configured to process said at least one electric input signal, or a signal originating therefrom, to at least partially compensate for the hearing impairment of the user and to provide said processed version thereof. The power supply interface of the non-wearable device is electrically connected to an electricity network. Thereby an improved processing power of a hearing aid may be provided. The invention may e.g. be used in flexible hearing aid systems with a situation-dependent configurable processing power.
摘要:
A hearing device comprising a housing configured to be arranged in the ear canal or behind the outer ear of a user, wherein an attachment arrangement is mechanically connected to the housing. The attachment arrangement comprises at least one first attachment part and at least one second attachment part, which is configured to be arranged relative to each other by means of one or more attraction members provided on each of said first and second attachment parts.
摘要:
A system (2) for monitoring the status and/or performance of one or more hearing devices (8) is disclosed. The system (2) comprises a number of access points (4, 5) configured to receive wireless signals (14) transmitted by the hearing devices (8), wherein the access points (4, 5) are connected to a central unit (10) communicatively connected to the Internet/cloud (12), wherein the system (2) is configured to automatically monitor the status and/or performance of one or more parameter of the one or more hearing devices (8) received by access points (4, 5), wherein the monitored parameters are accessible from the central unit (10) and/or from a cloud service (12).