Abstract:
A headset for voice communication is provided, the headset has a first earphone housing being rotatable about a first rotational axis, and a pickup unit comprising at least one microphone arranged on the earphone housing. The earphone housing comprises an earphone housing circuit, a first speaker for receiving a speaker signal from the earphone housing circuit, and at least a first ring of electrically conductive material formed annularly about the first rotational axis and mounted in electrical contact with the earphone housing circuit. An earphone housing connector part comprises at least a first set of contact members mounted in the earphone housing connector part so as to provide electrical connection between the at least first set of contact members and the at least first ring, to thereby connect the at least first set of contact members to a second speaker and/or an electronic circuit for processing signals.
Abstract:
A method of controlling a communications channel, comprising: receiving a real time digital signal; processing the real time digital signal to provide a control signal; and controlling the base station in response to the control signal. Where the processing comprises in succeeding time slots determining whether predefined signal content is present in the real time digital signal, increasing or decreasing a first value when predefined signal content is present and, respectively, decreasing or increasing the first value when predefined signal content is not present, and changing the control signal when the first value reaches a first target value. The method also relates to controlling a base station for a headset, where the base station and headset communicates via a wireless connection and where the base station communicates with a PC via a wired interface e.g. a USB interface.
Abstract:
A headset system (1; 94) comprising a wireless headset (3; 32) and a headset base unit (2). The wireless headset (3; 32) comprises a headset transceiver (51) for wireless connectivity to the headset base unit (2), a speaker (43) and a microphone (44) and a headset user interface (52, 53). The headset base unit (2) comprises a base housing (4), a headset holder (5, 38), a first connection device (7), by means of which the headset base unit (2) is connectable to at least one telecommunication device (9, 10, 11), such as a PSTN phone (9), a PC phone (10) and a mobile phone (11). In addition, the headset base unit (2) comprises a first base transceiver (27) for wireless connectivity to the wireless headset (3; 32) and a base user interface (6). At least one audio characteristic, such as microphone audio volume, microphone audio equalization, speaker audio volume and speaker audio equalization, can be adjusted equally by the headset user interface (52, 53) and the base user interface (6).
Abstract:
A self configuring headset system comprising an interface unit, a method of setting up a headset system to a telephone device using and interface unit and a telephone interface unit is provided. The telephone interface unit is configured to automatically set up a headset system to a telephone device, the headset system comprising a headset and the telephone interface unit, the telephone interface unit comprising a switching unit configured to switch at least a headset transmit signal line and a headset receive signal line to a telephone transmit signal line and a telephone receive signal line, respectively, and a processor being pre-programmed with one or more telephone device permutation settings, wherein the processor is configured to receive, from the telephone device, telephone configuration information on the basis of which a specific permutation setting is selected among the one or more pre-programmed permutation settings, the processor being configured to control the switching unit according to the specific permutation setting.
Abstract:
A method for automatically configuring an interface unit (112, 212, 912, 1012, 1112) for connecting a headset (110, 210, 910, 1110) and a telephone (100) by electrical connections (992, 993, 1092, 1093). The electrical connections (992, 993, 1092, 1093) between the interface unit (112, 212, 912, 1012, 1112) and the telephone (100) comprise two pairs of electrical paths having a number of distinct permutation settings. Each of the number of distinct permutation settings have a complementary setting together forming a number of distinct complementary setting pairs. The method comprises the steps of: a) receiving a test signal, b) for each distinct permutation setting generating an output signal in response to the test signal, c) determining a least preferred distinct permutation setting based on the output signals, d) selecting the complementary setting to the least preferred distinct permutation setting as a preferred setting.
Abstract:
A communication device comprising a housing with a housing wall encapsulating a housing interior. A microphone is arranged in the housing interior and communicates via an audio passage with the outside of the housing. An electrical socket is adapted to receive an electrical plug through a socket opening, which is accessible from the outside of the housing. The audio passage comprises the socket opening.
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.