Abstract:
A headphone is disclosed that includes left and right receivers (20, 30) each including an outer housing (21), an inner housing (22) secured to the outer housing by snapping, a first disk (23), a second disk (24), a speaker (25), and a clapper (26) wherein the first and second disks are mounted in a space formed by the inner and the outer housings, and the speaker (25) and the clapper (26) are mounted in a space formed by the inner housing (21) and the second disk (24); a swivel microphone (40) secured to an outer surface of either receiver by snapping; and a band (10) having both ends secured to the left and right receivers by snapping. It is possible of quickly fastening or unfastening components of the headphone.
Abstract:
A communications headset may be worn on an ear of a user. The headset may include a housing provided with a protruding concha-engaging part and a hook. The hook has an ear-engaging part and a joint part. The joint part is connected to the housing in that it is retained by a lug which is provided on an upper surface of a bottom wall of the housing. The joint part has an end portion which is configured as a rotation axis around which the hook is rotatable.
Abstract:
The headset according to the invention has an elongate cabinet adapted for placement behind the ear lobe, a speaker enclosure hinged to the cabinet part and extending downwards from the upper portion of the cabinet part and a microphone boom extending from the lover tip of the cabinet part. The microphone boom is fastened to the cabinet part in rotatable fashion, and the speaker enclosure has sound exit openings pointing in a direction toward the ear and away from the ear. According to the invention the speaker enclosure has a circumferentially extending band which is detachable from the speaker enclosure.
Abstract:
An electric device (100) is suitable for use in first orientations (101) and in second orientations (102). The electric device (100) has a first function (103), a second function (104) and a user interface (105) with a first part (106) and a second part (107). In response to activating either of the parts (106), (107), one of the functions (103), (104) is performed by the electric device (100). To achieve a more consistent user interface (105), the mapping from part activated to function performed is adapted in dependence upon an orientation in use. The orientation in use is detected with a detector (108) comprising a gravity sensor (109). The gravity sensor (109) can contribute to distinguishing left from right and inside in from inside out.
Abstract:
The present invention relates to a wireless earphone, which mainly comprises a main part of the wireless earphone, a sunken part, a hole which are set on the top of the main part, several slots and position holes which are set around the sunken part to make the upper cover be positioned and joined. Therefore, the upper cover is easy to be assembled and disassembled. In addition, a base is extended form the bottom of the main part and further has a rotating part, which can rotate, inside. A channel is set on the rotating part to let the ear-hanger be inserted into the channel and be able to rotate in the channel such that the ear-hanger can be hanged at the left/right ear of the user and can be adjusted properly due to thickness of the user's ear style. The hole of the top of the main part can be joined with a position set. A joining hole is set on the position set to be joined with a head-ring and make the head-ring rotate in the joined hole such that the head-ring also can be adjusted to make the user can choose a wireless earphone of ear-hang type or headphone type due to his/her requirement.
Abstract:
A self-supporting headset (10) worn on the ear of a user without a headband (30) or placed in a stand (10 or 40) as a desktop microphone system by a switch-function (100) installed in the headset (10). The headset (10) includes a housing (20) which accommodates a receiver means (21), an arcuate earband (30) connected by a spring (90) to the housing (20) and a pivotally connected boom microphone (50) which extends from the housing (20) to near the lips of a user. The arcuate housing (30) is placed over the entire outer ear to transmit audio signals without any need for an ear tube. An earband member (40) can have a female member (15) on the bottom surface so as to connect a member to mate with a male member (15) located on the stand (10 or 40). The headset (10) can be equipped with noise cancellation technology to remove background noise for optional use on with telephones, computers, or any of the like.
Abstract:
A wireless sound equipment includes a cradle including a pair of earbuds and a pair of holders having the earbuds coupled thereto. Each earbud includes an ear housing; a sound passage extended from a first surface of the ear housing; a sound output unit outputting sound via the sound passage; a wireless communication unit located in the ear housing; an earbud controller driving the sound output unit based on a signal transmitted by using the wireless communication unit; a main battery supplying an electric power; a plurality of earbud terminals exposed to the first surface of the ear housing and connected with the earbud controller; and a control button located in a second surface of the ear housing.
Abstract:
This application relates to earbuds configured with one or more biometric sensors. At least one of the biometric sensors is configured to be pressed up against a portion of the tragus for making biometric measurements. In some embodiments, the housing of the earbud can be symmetric so that the earbud can be worn interchangeably in either a left or a right ear of a user. In such an embodiment, the earbud can include a sensor and circuitry configured to determine and alter operation of the earbud in accordance to which ear the earbud is determined to be positioned within.
Abstract:
A wireless module for providing wireless transmission of audio to an audio playback apparatus, such as a set of headphones or speakers, is provided. The wireless module comprises a wireless transceiver configured for receiving an audio stream, an audio output interface configured for sending an audio output stream, and a fastener for fastening the wireless transceiver to the audio playback apparatus. The fastener may be a spring loaded grasping fastener, a magnetic or sticky fastener, a clamping fastener or a clip fastener.
Abstract:
The communication terminal (205) comprises: - a digital communication circuit (255) using time division multiplexing on a single radio channel, which may be selected from a given frequency band, said system implementing a wireless communication in "conference" and "hands-free" mode on an independent network between at least two wearers of similar devices and - a means of automatic synchronisation (250), named "Sync All", to the signal of any other terminal of a group of terminals in order to synchronise the internal clock thereof to a time common to all the terminals of the group, thereby making it possible to ensure continuity of communication between each of the terminals of the group within radio range of one another, even if communication is lost with any of the other terminals of the group, no particular terminal of the group being necessary to maintaining the synchronisation of the group.