H04R2201/103

ACOUSTIC OUTPUT APPARATUS AND METHOD THEREOF

The present disclosure relates to an acoustic output apparatus. The acoustic output apparatus may include an earphone core including at least one acoustic driver for outputting sound though one or more sound guiding holes set on the acoustic output apparatus, a controller configured to cause the at least one acoustic driver to output sound, a power source assembly configured to provide electrical power to the earphone core, the one or more sensors, and the controller, and an interactive control component configured to allow an interaction between a user and the acoustic output apparatus.

Headphones Workstation Assembly
20210377647 · 2021-12-02 ·

A headphones workstation assembly includes a pair of headphones that is wearable on a user. A microphone is coupled to and extends across the headphones to record audible sounds. An audio workstation is integrated into the headphones to record the audible sounds captured by the microphone. A first touch screen is coupled to a respective one of the headphones and the first touch screen displays indicia comprising operational icons and words pertaining to the audio workstation. A sound processor is integrated into the headphones for producing music that can be recorded into the audio workstation. A second touch screen is coupled to a respective one of the headphones and the second touch screen displays indicia comprising operational icons and words pertaining to the sound processor.

REMOVABLE COMMUNICATION DEVICE
20210373632 · 2021-12-02 ·

A removable communication device is described herein. The removable communication device is configured to communicatively couple to a variety of receiving devices via a physical and/or electrical connection. When coupled the removable communication device can control the variety of receiving devices at least in part by using a touchscreen user interface located on the removable communication device.

Open earphone

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.

HEADSET WITH INTERNAL GIMBAL
20230276158 · 2023-08-31 ·

A method and system for a headset with internal gimbal, where the headset comprises a headband, a headband, and ear cups coupled to the headband, wherein each ear cup may be coupled to the headband utilizing an internal gimbal. The internal gimbal may comprise a tip that is wider than its base. The tip may be rounded. The headband may comprise headband endcaps at each end of the headband. A headband slide may be coupled to each headband endcap. The headband ear cups may be coupled to the headband via the headband slides. Each headband slide may be coupled to a headband endcap via a headband pivot. The headband pivot may provide rotational motion of the ear cups with respect to the headband. The force on ears of a user of the headset may be spread evenly by the internal gimbals.

Acoustic output apparatus and method thereof

The present disclosure relates to an acoustic output apparatus. The acoustic output apparatus may include an earphone core including at least one acoustic driver for outputting sound though one or more sound guiding holes set on the acoustic output apparatus, a controller configured to cause the at least one acoustic driver to output sound, a power source assembly configured to provide electrical power to the earphone core, the one or more sensors, and the controller, and an interactive control component configured to allow an interaction between a user and the acoustic output apparatus.

WIRELESS EARPHONE THAT TRANSITIONS BETWEEN WIRELESS NETWORKS

A wireless earphone that comprises a transceiver circuit for receiving streaming audio from a data source over a local ad hoc wireless network. When the data source and the earphone are out of range, they transition automatically to an infrastructure wireless network. If there is no common infrastructure wireless network for both the data source and the speakerphone set, the earphone connects to a host server via an available wireless network.

IN-EAR HEADPHONE

A low-profile earbud is disclosed that sits securely within an ear of a user. The earbud includes a protruding portion that passes through a channel defined by the tragus and anti-tragus of the ear. In some embodiments, the protruding portion can take the form of a cable configured to supply power and transfer data to the earbud. In some embodiments, the protruding portion can provide additional space for electrical components and sensors supporting the earbud.

Charger and Charging System for Hearing Devices
20220140628 · 2022-05-05 · ·

A charger and a charging system for charging one or more hearing devices are provided, wherein the charger comprises a charging bay configured to receive the one or more hearing devices for charging and/or storage, one or more microphones and a radio transceiver configured for wireless communication with the one or more hearing devices, wherein the charger is configured to either work in a charging mode charging the one or more hearing devices or in a table microphone mode forwarding audio data picked up by the one or more microphones to the one or more hearing devices by the radio transceiver if at least one table microphone mode condition is met including that the one or more hearing devices are outside the charging bay.

Wooden or other dielectric capacitive touch interface and loudspeaker having same

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.