Abstract:
Provided herein is a device for wirelessly communicating with hearing assistance devices. According to various embodiments, the device includes a first interface for communicating with a programmer and a second interface for wirelessly communicating with a hearing assistance device. The second interface is adapted to receive a plurality of communication modules. Each of the modules is adapted for communication with at least one specific type of hearing assistance device. The device includes a housing for the first interface, the second interface, and electrical connections between the interfaces. The housing adapted to be worn around the neck of a person wearing the hearing assistance device.
Abstract:
One aspect relates to a hearing aid having a housing with a face plate to which a handle is connected. Additionally, an at least partially coiled antenna is located proximal to the face plate. Another aspect relates to an apparatus comprised of a means for locating hearing aid components in a housing, a means for inserting and removing the hearing aid with a handle, a means for connecting the handle to the housing, and a means for integrating an antenna with the handle, wherein the antenna is located proximal to the housing. Another aspect relates to a method of making a hearing aid, including connecting an antenna to a handle and connecting the handle to the hearing aid, wherein the antenna is located proximate to the hearing aid housing.
Abstract:
A heat sink for a handheld device is formed as a one piece chassis for supporting heat-producing circuits inside the device while having heat radiating surfaces outside the device. In another embodiment a battery pack control circuit under microprocessor control allows battery packs having different battery chemistries and characteristics to be interchanged in the same device without switches or adapters. Control of operating modes of the device despite changes in the battery pack including battery chemistry, state of charge, available voltage, or desired operating mode are automatic. The microprocessor measures the battery pack characteristics, using look up tables in a suitable program to adjust the circuit operating modes. The microprocessor also responds to sequential switch contact closures in setting operating modes.
Abstract:
A system for programming one or more hearing aids with a host computer, the system including a hearing aid programmer for wireless communications with the host computer. In various embodiments, the hearing aid programmer has at least one interface connector for communication with at least one hearing aid. Additionally, in various embodiments, the system includes a wireless interface adapted for connecting to the at least one interface connector of the hearing aid programmer, the wireless interface further adapted for wireless communication with one or more hearing aids. Varying embodiments of the present subject matter include a wireless interface which contains signal processing electronics, a memory connected to the signal processing electronics; and a wireless module connected to the signal processing electronics and adapted for wireless communications.
Abstract:
A system for programming one or more hearing aids with a host computer, the system including a hearing aid programmer for wireless communications with the host computer. In various embodiments, the hearing aid programmer has at least one interface connector for communication with at least one hearing aid. Additionally, in various embodiments, the system includes a wireless interface adapted for connecting to the at least one interface connector of the hearing aid programmer, the wireless interface further adapted for wireless communication with one or more hearing aids. Varying embodiments of the present subject matter include a wireless interface which contains signal processing electronics, a memory connected to the signal processing electronics; and a wireless module connected to the signal processing electronics and adapted for wireless communications.
Abstract:
A heat sink for a handheld device is formed as a one piece chassis for supporting heat-producing circuits inside the device while having heat radiating surfaces outside the device. In another embodiment a battery pack control circuit under microprocessor control allows battery packs having different battery chemistries and characteristics to be interchanged in the same device without switches or adapters. Control of operating modes of the device despite changes in the battery pack including battery chemistry, state of charge, available voltage, or desired operating mode are automatic. The microprocessor measures the battery pack characteristics, using look up tables in a suitable program to adjust the circuit operating modes. The microprocessor also responds to sequential switch contact closures in setting operating modes.
Abstract:
Provided herein is a device for wirelessly communicating with hearing assistance devices. According to various embodiments, the device includes a first interface for communicating with a programmer and a second interface for wirelessly communicating with a hearing assistance device. The second interface is adapted to receive a plurality of communication modules. Each of the modules is adapted for communication with at least one specific type of hearing assistance device. The device includes a housing for the first interface, the second interface, and electrical connections between the interfaces. The housing adapted to be worn around the neck of a person wearing the hearing assistance device.
Abstract:
An illumination assembly for a handheld fluorescent task lamp, comprising first and second elongated compact fluorescent bulbs positioned in an upright orientation side by side; a self starting electronic driver circuit operable to start and run the at least first and second compact fluorescent bulbs; and first and second receptacles for connecting the first and second compact fluorescent bulbs to the driver circuit and orienting the first and second compact fluorescent bulbs at a predetermined optimum angle with respect to each other such that an enhanced forward emission field is provided.
Abstract:
A computer-implemented universal automotive maintenance component controller apparatus that may be used as common core enabling a user to interface with, control, and analyze data from, various modular automotive maintenance or diagnostic equipment and/or components regardless of the type or manufacturer of the component. The universal controller of the invention may include a processor and a control application, the control application including one or more software modules that enable the processor to control one or more connected automotive maintenance components. The universal controller may also include one or more component interfaces operatively connected to the processor, wherein each of the one or more component interfaces is configured for one of the plurality of automotive maintenance components. Each of the one or more component interfaces may also include one or more component modules specific to one of the plurality of automotive maintenance components and a port for operatively connecting one of the plurality of automotive maintenance components to the apparatus.