Abstract:
Wireless-enabled loudspeaker includes a wooden capacitive touch user interface. The loudspeaker may comprise at least one electroacoustic transducer, a processor in communication with the at least one electroacoustic transducer, and a wooden exterior surface comprising a capacitive touch user interface that allows a user to control operation of the loudspeaker. The wooden exterior surface acts a dielectric for the capacitive touch user interface. The loudspeaker may comprise a wireless transceiver circuit for receiving and transmitting wireless communication signals via a wireless network. The wireless transceiver circuit may receive wirelessly audio content from streaming audio content servers that are connected to the Internet. The capacitive touch user interface comprises a plurality of user control icons etched in the wooden exterior surface, and a plurality of capacitive sense electrodes located under the wooden exterior surface.
Abstract:
An assembly for holding a personal speaker relative to a user's ear. A headband assembly can include a band, a sleeve attached to an end of the band, and an arm moveably secured to the sleeve. The sleeve can include a pair of laterally opposed detent channels, and the arm can include a pair of spring-loaded bearings. Each spring-loaded bearing can engage one of the laterally opposed detent channels. The headband assembly can be adjusted by moving the arm relative to the sleeve. An arm of the headband assembly can be pivotally secured to a yoke by a magnetic pivot arrangement. The magnetic pivot arrangement can include a groove, a protrusion, and magnetic elements. A yoke can be pivotally secured to a housing by housing pivot arrangement. The housing pivot arrangement can include a pin extending from the yoke and a collar retained in the housing.
Abstract:
An earphone set that comprises a paired set of earphones to be worn simultaneously by a user is disclosed. Each earphone in the paired set comprises at least one acoustic transducer for producing sound to be heard by the user. At least one of the earphones in the pair set comprises a transceiver circuit and at least one button. The transceiver circuit is for wirelessly receiving and transmitting signals via a wireless network. The at least one button is accessible to the user at an exterior of the at least one earphone. Upon activation of the at least one button by the user, an indication for a song played by the pair of earphones is caused to be transmitted wirelessly, by the transceiver circuit via the wireless network, to a remote server connected to the Internet. The song played by the pair of earphones may be streamed from a digital audio content server connected to the Internet.
Abstract:
System comprises a headset and a host server. Headset comprises a wireless communication circuit for receiving content transmitted wirelessly to the headset. Headset comprises a right earphone and a left earphone, each comprising a speaker. Host server is in communication with the headset and is for wirelessly streaming the content to the wireless communication circuit. The host server is configured to prevent wireless streaming of prohibited content for playing by the headset based on a parental control applicable to the headset and a rating for the prohibited content.
Abstract:
Left and right earphones are independently wireless such that the left and right earphones are not physically connected when worn by a user. Each earphone comprises a speaker and a body portion with an SOC. Each SOC comprises a wireless communication circuit and a processor. Each speaker is for playing audio streamed to the earphones in a lossy compressed format.
Abstract:
A personal acoustic system and flexible mount for the same are disclosed. The flexible mount is comprised of an elastomeric material. The personal acoustic system further includes a band comprising a first mount and an earpiece comprising a second mount. An acoustic element is housed within the earpiece. The elastomeric mount is positioned intermediate the first mount and the second mount to flexibly connect the band to the earpiece.
Abstract:
Left and right earphones are independently wireless such that the left and right earphones are not physically connected when worn by a user. Each earphone comprises a speaker, a body portion, and an earbud extending from the body portion. The body portion comprises a downwardly extending portion that extends straight downwardly when the earphone is worn by the user, a wireless communication circuit for receiving signals transmitted wirelessly to the earphone from a remote source, a microphone, a rechargeable battery, a memory and a processor. Each earphone is configured to receive from a remote computing device, and store in the memory, a firmware update.
Abstract:
Left and right earphones are independently wireless such that the left and right earphones are not physically connected when worn by a user. Each earphone comprises a speaker, microphone and a body portion with an SOC. Each SOC comprises a wireless communication circuit and a processor. Each processor comprises a digital signal processor for noise cancellation.
Abstract:
Left and right earphones are independently wireless such that the left and right earphones are not physically connected when worn by a user. Each earphone comprises a speaker and a body portion with an SOC. Each SOC comprises a wireless communication circuit and a processor. Each speaker is for playing audio streamed to the earphones in a lossy compressed format.
Abstract:
Wireless-enabled loudspeaker includes a wooden capacitive touch user interface. The loudspeaker may comprise at least one electroacoustic transducer, a processor in communication with the at least one electroacoustic transducer, and a wooden exterior surface comprising a capacitive touch user interface that allows a user to control operation of the loudspeaker. The wooden exterior surface acts a dielectric for the capacitive touch user interface. The loudspeaker may comprise a wireless transceiver circuit for receiving and transmitting wireless communication signals via a wireless network. The wireless transceiver circuit may receive wirelessly audio content from streaming audio content servers that are connected to the Internet. The capacitive touch user interface comprises a plurality of user control icons etched in the wooden exterior surface, and a plurality of capacitive sense electrodes located under the wooden exterior surface.