Abstract:
A wireless communications adapter adapted for connection to a direct audio input of a hearing assistance device, the wireless communications adapter adapted for radio frequency communications with a remote device. Varying embodiments enable communication using a protocol compatible with a BLUETOOTH standard to reach a hearing assistance device through a direct audio input. Some examples of the wireless communication adaptor offer microphone options to receive audio information and transmit it with far field communications.
Abstract:
Described is a modular acoustic interface that includes a communication port that exchanges data with a handheld terminal, the data including audio data and a speaker to broadcast the audio data received from the handheld terminal, wherein the modular acoustic interface operates when directly coupled to the handheld terminal and indirectly coupled to the handheld terminal.
Abstract:
A headphone assembly includes a pair of headphones that are operationally coupled together. Each of the headphones includes a housing having a first wall, a second wall and a peripheral wall extending between the first and second walls. A plurality of openings extends into first wall. A sound emitter is mounted within the housing. A tubular member has a first end and a second end. Each of the first and second ends is open. A fastener is adapted for selectively attaching the first end of the tubular member to the peripheral wall of the housing such that the first wall is positioned within the tubular member. Each of the second ends of the tubular members may be selectively positioned over an ear lobe such that the ear lobe is positioned within the tubular member.
Abstract:
Various devices are provided for conveniently storing, transporting and recharging wireless headsets and associated devices. According to some embodiments, a dongle is formed to receive a portion of a wireless headset, thereby bringing together electrical contacts of the dongle and electrical contacts of the wireless headset, thereby permitting convenient recharging of the wireless headset. In some embodiments, a dongle is integrated into a holster or carrying case for a wireless headset and/or an external device such as a telephone.
Abstract:
A headset with a light incorporated within is disclosed. A representative embodiment of the invention may be construed as an aviation-style headset that includes a first earcup and a second earcup each comprising active noise reduction (ANR) circuitry, a headband interconnecting the first earcup and the second earcup, and a boom microphone coupled to one of the first and second earcups. The headset also includes a rotating housing coupled to at least one of the earcups. A first light-emitting diode (LED) is mounted in the rotating housing. The rotating housing is rotated to point light from the LED in a desired direction. The headset also includes a switch mounted to one of the earcups for controlling the LED. The ANR circuitry is electrically coupled to at least the first LED to deliver power to the LED. Other systems and devices are also disclosed.
Abstract:
An all-in-one headset worn on the user's head, comprises a head band, a first housing arranged at the head band, a communication unit having selectable at least two communication channels and selectable at least two communication modes, an operating panel mounted on the outside wall of the first housing for selecting one communication channel and one communication mode, an ear-speaker mounted on the inside wall of the first housing, a microphone, a second housing for housing the microphone, a boom member for supporting the second housing to the first housing, an indicating unit for indicating the indication indicative of the selected communication channel and the selected communication mode.
Abstract:
A headset with a light incorporated within is disclosed. A representative embodiment of the invention may be construed as an aviation-style headset that includes a first earcup and a second earcup each comprising active noise reduction (ANR) circuitry, a headband interconnecting the first earcup and the second earcup, and a boom microphone coupled to one of the first and second earcups. The headset also includes a rotating housing coupled to at least one of the earcups. A first light-emitting diode (LED) is mounted in the rotating housing. The rotating housing is rotated to point light from the LED in a desired direction. The headset also includes a switch mounted to one of the earcups for controlling the LED. The ANR circuitry is electrically coupled to at least the first LED to deliver power to the LED. Other systems and devices are also disclosed.
Abstract:
A headset for communication with a device is configured for processing audio signals captured by the headset to detect user speech and transmitting, to the device, sampled representations of the captured audio signals generally only when user speech is detected.
Abstract:
A personal audio set, such as a headphone, earphone, or headset, that includes a pivoting clip-type mounting portion is disclosed. A pair of arms are pivotally secured to the mounting portion to define a substantially c-shape for engaging the ear-base of a wearer's ear. Each arm is pivotally secured to the mounting portion preferably at a common first pivot, and biased to a neutral position with respect to each other. The arms move apart from each other about the pivot when being installed or removed from an ear, and seek to return to their neutral positions when placed on an ear, thereby securing the personal audio set on the base of a wearer's ear. Preferably, the mounting portion is also pivotally secured to the personal audio set at a second pivot hat is substantially perpendicular to the first pivot and biased to a neutral position such that the audio set is biased against the wearer's ear. More preferably, the mounting portion and personal audio set have a longitudinal center line and are a mirror image along that center line thereby allowing the personal audio set to be detachably secured to either a wearer's left or right ears.
Abstract:
An ear mounted speaker assembly provides improved internal and external stability of a “in-the-ear” headset. A housing containing a speaker further contains an extender, audio portion and electrical compartment. The extender is adapted to rest in the intertragic notch of the ear. The audio portion is mounted to the extender and is of greater width than the extender. The audio portion is adapted to be positioned within the lower concha behind the tragus and antitragus of the ear. The compressible retainer extends from the surface of the housing and presses against the upper concha of the ear. The strut extends from the lower surface of the housing below the extender and extends downward outside the intertragic notch and presses against skin to stabilize the speaker assembly within the ear. Compressible retainers may be interchangeable and may come in a kit containing a plurality of interchangeable compressible retainers of a variety of shapes.