Abstract:
A headphone system comprising a physiological sensor and a method of fitting a headphone system comprising a physiological sensor to a user is provided. The headphone system comprises a headphone having a speaker, a physiological sensor configured to be positioned for measuring physiological data, and a processor connected to the physiological sensor to receive the measured physiological data and process the measured physiological data to output physiological information and a fitting parameter. An application program is associated with the headphone, and is configured to receive the physiological information and the fitting parameter. The application program may evaluate at least the fitting parameter to indicate to a user whether the headphone is properly positioned, and issue a first notification in dependence on the evaluation of the fitting parameter.
Abstract:
A wireless communications device (2) and an interface unit (3) in a mobile communications system are configured. The interface unit (3) is connected to the wireless communications device (2) according to a wireless communication protocol and to a computing device (1) connected to a communications network (5) via an access point (7) having an address. The computing device (1) is requested to visit a service provider (8) on the network (5), which based on the address of said access point (7) can provide location information regarding said access point (7). In dependence thereof one of a number of stored configuration profiles are determined, and the interface unit (3) is configured accordingly. A configuration request comprising said determined configuration profile is transmitted to the wireless communications device (2), which is then configured accordingly, and a communications link can be established between the interface unit (3) and the wireless communications device (2).
Abstract:
A method of and a system for synchronizing isochronous audio data frames provided by a USB interface to a clock of a wireless RF communication device is provided. The USB interface and the wireless RF communication device are connected via an I2S link, the method comprising receiving the isochronous audio data frames and the wireless RF communication device clock in a streaming controller, phase locking the isochronous audio data frames to a USB interface clock, counting start-of-frame pulses of the phase locked isochronous audio data frames, comparing the counted start-of-frame pulses with the wireless RF communication device clock to determine a difference signal, the difference signal triggering a synchronization event code when a threshold difference has been reached, rate matching the isochronous audio data frames to the wireless RF communication device clock upon receiving the synchronization event code.
Abstract:
This disclosure provides a headset comprising a first earphone with a first face facing the head of a user wearing the headset, a headband attached at a first end to the first earphone and a microphone arm rotatably attached to the first earphone. The microphone arm can rotate about a first axis essentially perpendicular to the first side, whereby the microphone arm can be rotated into to a rest position, where it extends along the headband. The headband comprises a first magnetic holding element and the microphone arm comprises at a co-operating second magnetic holding element, whereby the microphone arm can be magnetically adhered against the headband in the rest position.
Abstract:
Disclosed are audio accessory devices and systems for being connected to one or more user devices and related methods. The system comprises an audio accessory device having at least one speaker and being configured to connect to at least one user device for providing audio from the user device to the audio accessory device and a computer program application accessible from the at least one user device. A verification ID is provided external of the audio accessory device and comprises audio accessory device identification information identifying a specific audio accessory device. The system furthermore comprises a user interface facilitating interaction between a user of the audio accessory device and the user device, and allows for user facilitated entering of the verification ID. A verification server may be configured to receive the verification ID from the user device and to verify the user device for use with the computer program application, if the verification ID is valid.
Abstract:
A headset base unit comprising a base housing, a first connection device, by means of which the headset base unit is connectable to at least one telecommunication device, such as a desk phone or a PC phone. Furthermore, the headset base unit comprises a second connection device, by means of which the headset base unit is connectable to a headset, and a device holder for holding a mobile communication device with a device user interface. The headset base comprises control means, by means of which an audio channel can be opened between the headset base unit and a selected one of the telecommunication devices. The headset base unit is adapted to receive control commands from the mobile communication device for controlling the selected telecommunication device connected to the first connection device, whereby a user can control the telecommunication device by means of the device user interface.
Abstract:
A communication device (1) comprising a speaker (2), a microphone (3), a noise detection module (7) adopted to determine an ambient noise level (NL) from a microphone signal received from the microphone (3) and an automatic volume control module (4), which in dependence of a change in noise level adjusts the speaker volume level (SL) to an adjusted level during an adaption time interval (TA). The communication device (1) comprises a motion sensor (5), and the length of the adaption time interval (TA) depends on a motion signal received from the motion sensor (5).
Abstract:
The invention relates to a method of programming a processing unit by firmware in a protocol converter for providing first data received from a telephone device in accordance with a first protocol to a headset system in accordance with a second protocol and for providing second data received from the headset system in accordance with the second protocol to the telephone in accordance with the first protocol, the operation of the protocol converter being controlled by the processing unit. The invention further relates to a protocol converter, such as an Electronic Hook Switch adapter, for providing first data received from a telephone device in accordance with a first protocol to a headset system in accordance with a second protocol and for providing second data received from the headset system in accordance with the second protocol to the telephone device in accordance with the first protocol. The headset system provides firmware to the protocol converter in accordance with the second protocol.
Abstract:
A wireless communications device (2) and an interface unit (3) in a mobile communications system are configured. The interface unit (3) is connected to the wireless communications device (2) according to a wireless communication protocol and to a computing device (1) connected to a communications network (5) via an access point (7) having an address. The computing device (1) is requested to visit a service provider (8) on the network (5), which based on the address of said access point (7) can provide location information regarding said access point (7). In dependence thereof one of a number of stored configuration profiles are determined, and the interface unit (3) is configured accordingly. A configuration request comprising said determined configuration profile is transmitted to the wireless communications device (2), which is then configured accordingly, and a communications link can be established between the interface unit (3) and the wireless communications device (2).