Abstract:
System for audio communication comprising: a peripheral unit and an interface unit, wherein the peripheral unit comprises a microphone and a speaker, and the peripheral unit is connectable to a telephone via the interface unit, the interface unit having a unique interface unit device address, and the peripheral unit having a unique peripheral unit device address, wherein the peripheral unit and the interface unit are mutually connectable via a wireless communication link for audio communication and via a detachable wired communication link for auxiliary data, and wherein the system further comprises automatic pairing routine for pairing the peripheral unit and the interface unit to establish the wireless communication link.
Abstract:
The USB device (e.g. an audio class device) comprises a USB bus interface that connects to an upstream USB port and a USB logical device that provides first USB endpoints for upstream communication on a first channel. The USB host comprises a USB host controller that connects to a downstream USB port, and a USB driver that provides second USB endpoints for downstream communication on a second channel; wherein the USB host operates concurrently with the USB device. The processor is configured to communicate data between the first channel and the second channel via the first USB endpoints and the second USB endpoints, respectively.
Abstract:
A method of updating a headset system firmware and a headset system are provided. The headset system comprises a headset and a base unit, the base unit having a base unit control circuit and being configured to connect to a computer system, the base unit comprises a headset dock to receive the headset. The method comprises the steps of receiving, in the base unit control circuit, a headset system firmware update from the computer system, the headset system firmware update comprising a headset firmware update and/or a base unit firmware update, and updating the base unit control circuit with the base unit firmware update. In a base unit storage, storing the headset firmware update having a headset firmware update version and when a headset having a current headset firmware version is received in the headset dock, controlling the base unit control circuit to check whether the current headset firmware version is the same as the headset firmware update version stored in the base unit storage, and updating the current headset firmware with the stored headset firmware update if one or more conditions are fulfilled.
Abstract:
This disclosure relates to software applications particularly for smart phone which are used to control or access hardware, particularly headsets. The software is available at no cost to anyone, but to control its use, it is coded so that only buyers of designated hardware can use it.
Abstract:
A headset system (10) comprising a headset unit (1) and a detachable wearing device (4). The headset unit (1) comprises a microphone arm (3), which is movable between a compact position and an extended position. A proximity sensor (29; 33) in the headset unit (1) detects whether the microphone arm (3) is in the compact position or the extended position. The headset unit (1) and the wearing device (4) are adapted to be movably attached to each other, so that the headset unit (1) can be moved between a use position and a rest position. The proximity sensor (29; 33) detects, when the headset unit (1) is moved into the rest position.
Abstract:
System for audio communication comprising: a peripheral unit and an interface unit, wherein the peripheral unit comprises a microphone and a speaker, and the peripheral unit is connectable to a telephone via the interface unit, the interface unit having a unique interface unit device address, and the peripheral unit having a unique peripheral unit device address, wherein the peripheral unit and the interface unit are mutually connectable via a wireless communication link for audio communication and via a detachable wired communication link for auxiliary data, and wherein the system further comprises automatic pairing routine for pairing the peripheral unit and the interface unit to establish the wireless communication link.
Abstract:
A personal conferencing device (12) having a base unit (14) and a headset/handset (5), wherein the base unit (14) comprises a first interface (4) to a telephone system, a headset/handset receiving part (19) for receiving a headset/handset (5), and the headset/handset (5) comprises a base connection (31) adapted to be received by the receiving part (19), at least a first microphone (7) for receiving audio from a headset/handset user, and at least a first headset/handset speaker (8) for providing audio to a headset/handset user, a position detecting device (10) for detecting a position and/or a state of the headset/handset (5), and a second headset/handset speaker (9), wherein audio is provided to a headset/handset user via the second headset/handset speaker (9) in response to a first signal provided from the position detecting device (10) whereby the user can choose between a private mode using the at least first headset/handset speaker and a conference mode using the second headset/handset speaker.
Abstract:
A method of combining at least two audio signals for generating an enhanced system output signal is described. The method comprises the steps of: a) measuring a sound signal at a first spatial position using a first transducer, such as a first microphone, in order to generate a first audio signal comprising a first target signal portion and a first noise signal portion, b) measuring the sound signal at a second spatial position using a second transducer, such as a second microphone, in order to generate a second audio signal comprising a second target signal portion and a second noise signal portion, c) processing the first audio signal in order to phase match and amplitude match the first target signal with the second target signal within a predetermined frequency range and generating a first processed output, d) calculating the difference between the second audio signal and the first processed output in order to generate a subtraction output, e) calculating the sum of the second audio signal and the first processed output in order to generate a summation output, f) processing the subtraction output in order to minimise a contribution from the noise signal portions to the system output signal and generating a second processed output, and g) calculating the difference between the summation output and the second processed output in order to generate the system output signal.
Abstract:
An earphone system (1; 23) comprising a wireless earphone (2; 20, 21) and a portable holding device (3; 22). The earphone (2; 20, 21) comprises an ear hook (8) for attaching the earphone (2; 20, 21) to the ear (14) of a user. The holding device (3; 22) comprises an outer surface (25) with an earphone recess (4; 30, 31) adapted for receiving the earphone (2; 20, 21) with the ear hook (8), such that the ear hook (8) follows the outer surface (25) of the holding device (3; 22), and attachment means for attaching the earphone (2; 20, 21) in the earphone recess (4; 30, 31).