Abstract:
The present disclosure relates to a waterproof open earphone. The waterproof open earphone may include a housing, at least one button, at least one elastic pad, and at least one pair of speaker units. The housing may be placed on a head or at least one ear of a user while not blocking an ear canal of the user. The at least one button may be set on the housing, wherein each of the at least one button corresponds to a button hole. The at least one elastic pad may correspond to the at least one button, respectively, wherein each elastic pad prevents the corresponding button from moving relative to the button hole. Each pair of the at least one pair of speaker units may generate sound within a frequency range from two sound guiding holes through two sound guiding tubes.
Abstract:
Apparatus comprises adapter and speaker system. Adapter is configured to plug into port of personal digital audio player. Speaker system is in communication with adapter, and comprises multiple acoustic transducers, programmable processor circuit, and wireless communication circuit. In first operational mode, processor circuit receives, via adapter, and processes digital audio content from personal digital audio player into which adapter is plugged, and the multiple acoustic transducers output the received audio content from the personal digital audio player. In second operational mode, wireless communication circuit receives digital audio content from a remote digital audio source over a wireless network, processor circuit processes the digital audio content received from remote digital audio source, and the multiple acoustic transducers output the audio content received from the remote digital audio source.
Abstract:
A customizable headphone having a removable and interchangeable housing includes an earphone having a transducer for reproducing sound a sound port, and a body portion. A first housing sized to accommodate the body portion is coupled to and partially encloses the body portion using a resilient releasable connection without obstructing the sound port when affixed to the body portion. Upon biasing the first housing to separate from the body portion, the first housing may be fully removed and replaced with a second housing with a different appearance and characteristics. The releasable connection may include a retaining ring coupled to the body portion in a channel to engage the interior of a housing in a pressure fit.
Abstract:
The present disclosure relates to a method for obtaining music data, an earphone and a music player. The method includes: reading an identification code from a memory card; sending the identification code to a mobile terminal so that the mobile terminal sends the identification code to a server, and the server returns stored music data, corresponding to the identification code, to the mobile terminal; receiving a music signal converted by the mobile terminal after the mobile terminal obtains the music data from the server; and outputting the music signal.
Abstract:
Aspects of the present disclosure relate to a head-wearable assembly. The head-wearable assembly includes a band that has a first end, a second end, an inner surface, an outer surface, and a generally U-shaped curve between the first end and the second end. On the outer surface of the band is a threaded housing proximal to the first end of the band. The threaded housing has an outer end that faces away from the band and an inner end. The head-wearable assembly also includes an earphone structure, which includes an earphone connected to a threaded arm configured to be coupled with the threaded housing such that the earphone is held at a distance from the first end of the band. When the earphone structure is twisted, the distance between the earphone and the first end of the band is adjusted.
Abstract:
A wiring structure is provided for an electroacoustic transducer directly converting digital signals from a single sound source to sound waves without conversion to analog signals. The structure includes a diaphragm, and a plurality of voice coils fixed to the diaphragm. The voice coils are connected to respective cables each consisting of a stranded pair of positive and negative input lines.
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:
A system includes at least one wireless ear piece comprising an ear piece housing and a wireless transceiver disposed within the ear piece housing, a software application for executing on a computing device having a display associated therewith, and wherein the software application provides a user interface for use by a user of the at least one wireless ear piece to interact with the at least one ear piece.
Abstract:
A protective helmet has a shell, a liner, and a control device that includes a receiver. A recess is formed in an outer surface of the liner adjacent a rear edge of the shell, to receive the control device. A battery operably connected with the control device, and side recesses formed in the outer surface of the liner adjacent the side edges of the shell contain speakers electronically connected to the control device. The control device streams music from the portable electronic device to the speakers.
Abstract:
The present disclosure relates to a method for obtaining music data, an earphone and a music player. The method includes: reading an identification code from a memory card; sending the identification code to a mobile terminal so that the mobile terminal sends the identification code to a server, and the server returns stored music data, corresponding to the identification code, to the mobile terminal; receiving a music signal converted by the mobile terminal after the mobile terminal obtains the music data from the server; and outputting the music signal.