Abstract:
An earpiece device (10, 110, 210, 210′) provides advanced communication to the user thereof, for controlling a total sound dose (TND), including an audio output from an audio source (16) reaching an ear of the user occluded at the outer ear canal (15) by an in-ear device (14), for allowing an external ambient sound to be heard by the ear of the user, and for allowing a voice (NSV) of the user to be transmitted to a telecommunication transmission link (TTL). The present invention also contemplates a method of operation of the earpiece device (10, 110, 210, 210′).
Abstract:
An earpiece device (10, 110, 210, 210′) provides advanced communication to the user thereof, for controlling a total sound dose (TND), including an audio output from an audio source (16) reaching an ear of the user occluded at the outer ear canal (15) by an in-ear device (14), for allowing an external ambient sound to be heard by the ear of the user, and for allowing a voice (NSV) of the user to be transmitted to a telecommunication transmission link (TTL). The present invention also contemplates a method of operation of the earpiece device (10, 110, 210, 210′).
Abstract:
The present invention relates to a head-mounted display including a pair of headphones having a built-in speaker for outputting sound, a first arm rotatably coupled to the pair of headphones to display an image, a second arm coupled to the pair of headphones so as to relatively rotate with the first arm to cover or uncover a front surface of the first arm, and a control unit controlling the image output to the first arm and the sound output to the headphones according to positions of the first arm and the second arm.
Abstract:
A system and method for supplying power to a headset, and for transmitting multiple signals generated in the headset to a terminal using frequency division multiplexing. An audio signal and a carrier signal are generated in the terminal and summed together to form a composite uplink signal. The composite uplink signal is provided to a headset over a first physical channel. At the headset, the audio and carrier signals are separated, and the carrier signal is used to generate power in the headset. Signals generated by a plurality of acoustic sensors in the headset are combined using frequency division multiplexing to generate a composite downlink signal, which is transmitted to the terminal over a second physical channel. One or more carrier signals used to generate the composite downlink signal are provided by either a carrier source in the headset, or by recovering the carrier signal from the composite uplink signal.
Abstract:
A system for detecting a jack configuration comprising a first plurality of switches configured to couple a first headphone jack position to ground. A second plurality of switches configured to couple a second headphone jack position to ground. A microphone bias circuit for applying a microphone bias signal to the second headphone jack position when the first headphone jack position is coupled to ground, and for applying the microphone bias signal to the first headphone jack position when the second headphone jack position is coupled to ground.
Abstract:
Adapter devices are provided herein which are connectable to an audio connector of a media device. The audio connector of the media device is configured to receive an audio input from an external microphone and to output an audio output signal to an earphone. The adapter device includes a male plug adapted to be plugged into the audio connector of the media device, a female receptacle electrically connected to the male plug. The female receptacle is adapted to mate with an audio plug of a listening device. The adapter includes an audio signal coupling configured to couple a portion of the audio output signal from the audio connector of the media device into an input of the media device.
Abstract:
An electronic device of the present invention includes: a first body having an arch shape corresponding to the neck of a user so as to be worn around the neck of the user; second bodies respectively attached to both ends of the first body and including one or more joints by which the second bodies move relative to the first body; and a directional speaker provided to at least part of the second bodies to output sound in a specific direction. According to the present invention, a directional speaker is provided to a wearable device that can be worn around the neck of the user so as to effectively transmit sound to the user.
Abstract:
A cable assembly for electronic devices such as cellular telephones and music devices is disclosed. The cable assembly can comprise either one or two earpieces, each of which is configured to be received into the concha of a user's ear. The earpiece(s) can be configured so as to be held in place by at least one anatomical structure of the concha. A speaker can be in acoustic communication with each earpiece. A cable can be configured to communicate a signal representative of sound from the electronic device to each earpiece. A microphone can be permanently attached or removably attachable to the cable to facilitate use with a cellular telephone. The cable assembly can facilitate hands free operation of a cellular telephone and can facilitate listening to a music device. Other implementations and related methods are also disclosed.
Abstract:
The invention is about a real wireless earphone set including of two no-wire linking earphone assemblies. The earphone set communicates to an audio source with wireless protocol directly or through a wireless transmitter assembly plugged in the audio source. One of the earphone assemblies may be integrated with a microphone for two-way communicating. Users can check and set some parameters for each of the earphone assemblies by the control software of the earphone set installed and run in the compatible audio source. Since there is no audio wire between the two earphone assemblies, they can be wireless paired to the audio source separately, and the users can set for the right/left or mono channel of the earphone assemblies with the control software, the invention offers more convenience, safety and fluency for users that users can choice to use only one or two earphone assemblies depending on different situations.
Abstract:
A communication shield assembly covers a mouth of a wearer when the wearer speaks into a mouthpiece. The assembly includes an audio headset including a head strap and a speaker. The speaker is coupled to the head strap. A microphone has an arm member and a mouthpiece. A first end of the arm member is coupled to the audio headset and a second end of the arm member is coupled to the mouthpiece. The mouthpiece extends in front of a mouth of a user for transmitting audio information to an external receiver when the user speaks into the mouthpiece. A shield is coupled to the microphone and is positioned adjacent to the mouthpiece wherein the shield covers the mouth of the user when the user speaks into the mouthpiece.