Abstract:
A portable audio device is configured to generate acoustic output in conjunction with an auxiliary audio device when the portable audio device and the auxiliary audio device both reside within a given boundary. When the portable audio device enters a region defined by the boundary, the portable audio device determines optimized device settings and/or parameters for the portable audio device and for the auxiliary audio device based on differences between the operational capabilities of those two audio devices. When the portable audio device exits the region defined by the boundary, the portable audio device returns to nominal operation.
Abstract:
Embodiments of the disclosure may provide a low cost audio system including a dock and a dongle. The dock may be passive and may include a plurality of inputs and a plurality of outputs. The outputs of the plurality of outputs may be connected to a single output port, which may be configured to be communicatively coupled with the dongle. The plurality of inputs of the dock may be connected to one or more audio outputs of one or more gaming consoles. The dongle may be configured to be wirelessly connected to a headset and may include a plurality of contacts that are configured to be connected to the plurality of outputs when the dongle is communicatively coupled to the port. The dongle may be also configured to be communicatively coupled to gaming platforms other than the gaming consoles that are connected to the dock.
Abstract:
Embodiments of the present disclosure relate to a headphone or speaker assembly that contains two or more audio components that are configured to be magnetically coupled together by use of a complementary magnetic pole configuration in the headphone or speaker assembly to provide one or more useful functions. These useful functions may include elements that are able to sense that the two or more audio components are in contact with each other, or are at least proximate to each other, so that their audio playback capability can be suspended while they are in this unused state. Since the two or more audio components can be brought into contact with each other and be retained in this state by use of a magnetic force created between one or more magnetic components in each of the audio components, this design can provide a useful mechanism that will allow the headphone assembly to be easily retained on the user.
Abstract:
Embodiments disclosed herein generally relate to electronics powered by thermal energy. More particularly, embodiments of the present disclosure relate to wireless headphones that are powered by thermoelectric generators. One embodiment provides a wireless headphone having a wireless audio device capable of generating an acoustic output from signals received through a wireless communication link, and a thermoelectric generator assembly configured to provide electrical power to the wireless audio device.
Abstract:
A portable audio device is configured to generate acoustic output in conjunction with an auxiliary audio device when the portable audio device and the auxiliary audio device both reside within a given boundary. When the portable audio device enters a region defined by the boundary, the portable audio device determines optimized device settings and/or parameters for the portable audio device and for the auxiliary audio device based on differences between the operational capabilities of those two audio devices. When the portable audio device exits the region defined by the boundary, the portable audio device returns to nominal operation.