Abstract:
Disclosed herein, among other things, are systems and methods for improved telecommunication for hearing instruments. One aspect of the present subject matter includes a hearing assistance method. The method includes receiving a first signal from a first hearing assistance device, receiving a second signal from a second hearing assistance device, and processing the first signal and the second signal to produce an output signal for use in telecommunication. In various embodiments, processing the first signal and the second signal includes comparing the first signal and the second signal, and selecting one or more of the first hearing assistance device and the second hearing assistance device for use in telecommunication based on the comparison. According to various embodiments, processing the first signal and the second signal includes combining the first signal and the second signal algorithmically to produce the output signal.
Abstract:
An embodiment of a hearing assistance device comprises a housing, a power source, a radio circuit, an antenna and a transmission line. The radio circuit is within the housing and electrically connected to the power source. The antenna has an aperture, and the radio circuit is at least substantially within the aperture. The transmission line electrically connects to the antenna to the radio circuit. Various antenna embodiments include a flex circuit antenna.
Abstract:
A hearing assistance device for a user comprising a housing, a three dimensional electronic substrate disposed in the housing, the substrate adapted to conform to a battery of the hearing assistance device and hearing assistance electronics mounted to the substrate.
Abstract:
An embodiment of a hearing assistance device comprises a housing, a power source, a radio circuit, an antenna and a transmission line. The radio circuit is within the housing and electrically connected to the power source. The antenna has an aperture, and the radio circuit is at least substantially within the aperture. The transmission line electrically connects to the antenna to the radio circuit. Various antenna embodiments include a flex circuit antenna.
Abstract:
An embodiment of a hearing assistance device comprises a housing, a power source, a radio circuit, an antenna and a transmission line. The radio circuit is within the housing and electrically connected to the power source. The antenna has an aperture, and the radio circuit is at least substantially within the aperture. The transmission line electrically connects to the antenna to the radio circuit. Various antenna embodiments include a flex circuit antenna.
Abstract:
An embodiment of a hearing assistance device comprises a housing, a power source, a radio circuit, an antenna and a transmission line. The radio circuit is within the housing and electrically connected to the power source. The antenna has an aperture, and the radio circuit is at least substantially within the aperture. The transmission line electrically connects to the antenna to the radio circuit. Various antenna embodiments include a flex circuit antenna.
Abstract:
An embodiment of a hearing assistance device comprises a housing, a power source, a radio circuit, an antenna and a transmission line. The radio circuit is within the housing and electrically connected to the power source. The antenna has an aperture, and the radio circuit is at least substantially within the aperture. The transmission line electrically connects to the antenna to the radio circuit. Various antenna embodiments include a flex circuit antenna.
Abstract:
Disclosed herein, among other things, are systems and methods for programming and modifying hearing assistance devices via low energy digital communications. One aspect of the present subject matter includes a method of using a hearing assistance device. The method includes providing characteristics and descriptors of the hearing assistance device compatible with a low energy digital communication protocol, the characteristics and descriptors accessible to an external communication device. According to various embodiments, the method also includes accepting individual read/write cycles from an external communication device configured to use the low energy digital communication protocol to read and update the characteristics and descriptors using an abstraction layer. The hearing assistance device is configured to compensate for a wearer's hearing loss based on the updated characteristics and descriptors, in various embodiments.
Abstract:
Disclosed herein, among other things, are systems and methods for programming and modifying hearing assistance devices via low energy digital communications. One aspect of the present subject matter includes a method of using a hearing assistance device. The method includes providing characteristics and descriptors of the hearing assistance device compatible with a low energy digital communication protocol, the characteristics and descriptors accessible to an external communication device. According to various embodiments, the method also includes accepting individual read/write cycles from an external communication device configured to use the low energy digital communication protocol to read and update the characteristics and descriptors using an abstraction layer. The hearing assistance device is configured to compensate for a wearer's hearing loss based on the updated characteristics and descriptors, in various embodiments.
Abstract:
An embodiment of a hearing assistance device comprises a housing, a power source, a radio circuit, an antenna and a transmission line. The radio circuit is within the housing and electrically connected to the power source. The antenna has an aperture, and the radio circuit is at least substantially within the aperture. The transmission line electrically connects to the antenna to the radio circuit. Various antenna embodiments include a flex circuit antenna.