Abstract:
Headset connector systems and headset engaging connector systems are provided. Headset connector systems can include two or more headset connector contact regions. Headset engaging connector systems can include two or more headset engaging contact regions to provide at least one of power and data. The headset connector system or the headset engaging connector system can include switching circuitry electrically coupled to the respective contact regions. The switching circuitry can be operative to determine an interface orientation between the headset connector contact regions and the headset engaging contact regions. The switching circuitry can also be operative to selectively route received signals based on the determined interface orientation. At least a portion of the headset connector system or the headset engaging connector system can be magnetically attractive.
Abstract:
A wireless headset device that includes an earbud assembly and a primary housing assembly, fixed to the earbud assembly, is provided. The earbud assembly can include an earbud flexible circuit board having mounted thereon a receiver and processing circuitry. The primary housing assembly can include a microphone and a primary housing flexible circuit board electrically coupled to the earbud circuit board and the microphone. In some embodiments, the headset device can include at least one flexible circuit board and the primary housing can include a connector assembly. The at least one flexible circuit board can be electrically coupled to the connector assembly and can include Universal Serial Bus (USB) circuitry operative to process USB protocol communications and serial circuitry operative to process serial protocol communications.
Abstract:
A headset device that includes an earbud housing, a primary housing, a threaded neck, an earbud screw, and a primary housing screw is provided. The earbud housing can include an earbud through-hole and a first neck engaging surface. The primary housing can include a housing through-hole and a second neck engaging surface. The threaded neck can include first and second neck surfaces that can mate, respectively to the first and second neck engaging surface. The earbud screw can fit through the earbud through-hole and can interlock with the threaded neck to fix the earbud housing to the threaded neck. The primary housing screw can fit through the housing through-hole and can interlock with the threaded neck to fix the primary housing to the threaded neck. The threaded neck can include a through-hole for enabling circuitry disposed in the earbud housing to electrically couple to circuitry disposed in the primary housing.
Abstract:
An electronic device is provided that includes a housing and a connector assembly coupled to the housing. The connector assembly can include a microphone port. The electronic device can further include a microphone mounted within the housing and a channel that fluidically couples the microphone to the microphone port. A joint connector and microphone assembly is also provided. The assembly can include a microphone with a top surface and side surfaces. The top surface of the microphone can include a microphone input. The assembly can include a microphone boot mounted to the microphone such that the boot interfaces with a portion of the top surface and the side surfaces to form a seal around the microphone input. The microphone boot can include a connector sealing portion and an aperture for fluidically coupling the microphone input to a microphone port. The assembly can include a connector plate mounted to the connector sealing portion.
Abstract:
An electronic device having a housing structure that is configured to receive at least one glass cover is disclosed. The glass cover serves to cover a display assembly provided within the electronic device. The glass cover can be secured to the housing structure so as to facilitate providing a narrow border between an active display area and an outer edge of the housing structure. The enclosure for the electronic device can be thin yet be sufficiently strong to be suitable for use in electronic devices, such as portable electronic devices.
Abstract:
An antenna and button assembly is provided for a compact portable wireless device such as a wireless headset for a handheld electronic device. An antenna structure is mounted within a button structure. The button structure includes a switch actuation member that extends past the antenna structure and into engagement with a switch. The switch actuation member may reciprocate within the button structure. A user may press upon an exposed end of the switch actuation member to operate the switch. The switch may be used to control the application of power to the compact portable wireless device or to perform other suitable functions. The button structure may be formed using dielectric materials such as plastic. By forming the button structure from dielectric, clearance is provided between the antenna structure and conductive portions of the compact portable wireless device so that the antenna of the compact wireless device operates properly.