Abstract:
The present invention relates to a monaural wireless headset (20) that may e.g. be connected to a mobile phone by means of a Bluetooth connection.The present invention provides a monaural wireless headset (20) comprising a housing (21) with a main body (22) and a microphone boom (23), a microphone (27), a wireless transceiver (28), a speaker driver (39) and a rechargeable battery (29). The monaural wireless headset (20) is adapted to be arranged at an ear (1) of a user in a wearing position wherein at least a portion of the main body (22) resides on the inwards side of the crest (7) of the ear's antitragus (6) and wherein the microphone boom (23) at least partly extends outside the ear's pinna (1) towards the user's mouth. The microphone (27) is arranged in the microphone boom (23) and is adapted to receive a voice signal from the user and provide a microphone signal to the wireless transceiver (28) in dependence on the voice signal. The wireless transceiver (28) is adapted to transmit a wireless output signal in dependence on the microphone signal. Furthermore, the wireless transceiver (28) is adapted to receive a wireless input signal and provide an audio output signal to the speaker driver (39) in dependence on the wireless input signal. The speaker driver (39) is arranged and adapted to transmit a sound signal into the ear (1) in dependence on the audio output signal, and the rechargeable battery (29) is adapted to provide electric power to the wireless transceiver (28) and the speaker driver (39).The monaural wireless headset (20) is characterized in that the speaker driver (39) and the rechargeable battery (29) are arranged in the main body (22) in such a way that the speaker driver (39) and at least a portion of the rechargeable battery (29) reside on the inwards side of the crest (7) of the antitragus (6) when the monaural wireless headset (20) is in the wearing position.This may provide a monaural wireless headset (20) that allows a comfortable wearing and a secure holding of the headset (20) when in use.
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:
An electrical connector device (1), which extends along a longitudinal axis (X) and having an interface part (2) comprising a first set (3) of electrical contact elements (3a, 3b, 3c, 3d) arranged along a first line (L1), which is orthogonal to the longitudinal axis (X). The connector device (1) comprises mechanical engagement elements (17, 18, 19) being shaped such that the electrical connector device (1) can be electrically and mechanically connected with an identical connector device (1) when they are aligned along the longitudinal axis (X) and one of them rotated 180 degrees about a transversal axis (Y) parallel with the first line (L1). The interface part (2) comprises a second set (4) of electrical contact elements (4a, 4b, 4c, 4d) and a third set (5) of electrical contact elements (5a, 5b, 5c, 5d). The second and third sets (4, 5) are symmetrically arranged on opposite sides of the first line (L1) in a first plane (P1) through the first line (L1), such that for each contact element (4a, 4b, 4c, 4d) of the second set (4) there is a corresponding contact element (5a, 5b, 5c, 5d) of the third set (5), which is arranged with equal distance to the first line (L1). Each contact element (4a, 4b, 4c, 4d) of the second (4) set is electrically connected to its corresponding contact element (5a, 5b, 5c, 5d) of the third set (5).
Abstract:
A car speakerphone (10; 32; 47; 48; 49) to be attached to a sun visor (4) in the cabin of a car (5), which sun visor (4) is of the type, that can be rotated about a first axis (38) into different adjustment positions (P). The speakerphone (10; 32; 47; 48; 49) comprises a speaker housing (11), at least a first microphone device (2, 9, 45, 53, 55) with a directivity (41) and including at least a first microphone (2, 14-21). The speakerphone comprises adjustment means (22, 23, 24, 25; 27; 31) for adjusting the directivity (41) of said microphone device (2, 9, 45, 53, 55) in relation to the sun visor (4). The adjustment means (22, 23, 24, 25; 27; 31) are adapted to automatically adjust the directivity (41) of the microphone device (2, 9, 45, 53, 55) as a function of the adjustment position (P) of the sun visor (4).
Abstract:
A communication headset system (1) for connecting to a two-way communication device (10). The communication headset system (1) comprising an earphone (15) with a speaker (2) for receiving a speaker signal (3) and converting it into speaker sound, a voice microphone (4) for receiving a user's voice and converting it into a voice signal (5). The communication headset system (1) further comprises an ambient microphone (6), arranged at a distance from the voice microphone (4), for receiving ambient sound and converting it into an ambient sound signal (7), and a control circuit (8) for receiving the ambient sound signal (7) and an input signal (12) from the telecommunication device (10), and for transmitting the speaker signal (3) to the speaker (2). The control circuit (8) comprises a switching circuit (9) for switching the headset system between an ambient mode in which the speaker signal (3) comprises the ambient sound signal (7) and not the input signal (12) and a communication mode in which the speaker signal (3) comprises the input signal (12) and not the ambient sound signal (7).
Abstract:
A hands free communication device (2), such as a headset, adapted to be simultaneously connected to a first telecommunication device (2) and a second telecommunication device (3). The hands free communication device (2) is adapted to send a call status signal to the first telecommunication device (3) upon reception of a corresponding call status signal from the second telecommunication device (4) and to send a call status signal to the second telecommunication device (4) upon reception of a corresponding call status signal from the first telecommunication device (3). The invention also relates to a system implementing such a hands free device (2) and a method using such a system.
Abstract:
An earphone device (1) to be worn in the ear, which earphone device (1) comprising a main body (18) to be arranged in the concha (19) of the outer ear (14) of a user and an optical sensor (35), which optical sensor (35) comprises a light emitter (16) and a light detector (17). The earphone device (1) comprises window means (8, 9) through which light emitted by the light emitter (16) can be transmitted. The window means (8, 9) comprises an end face (31) adapted to abut a conchal wall (37) at a sensing position (36). The main body (18) comprises a speaker protrusion (26) to be inserted into to ear canal (15). The distance between the speaker protrusion (26) and the end face (31) is adjustable.