Abstract:
According to various embodiments, a face mask includes a cover shield, an input and an output fan. The cover shield is shaped to cover nose and mouth of a wearer, and defines an inner space between the cover shield and the skin of the wearer. The input fan is coupled to the cover shield, and is configured to draw air from outside into the inner space. The output fan is coupled to the cover shield, and is configured to expel air out of the inner space.
Abstract:
According to various embodiments, a wristband may be provided. The wristband may include: a receiver configured to receive data; a first display; a second display; a display controller configured to control the first display to display first abstract information of a first level of detail based on the received data, and further configured to control the second display to display second abstract information of a second level of detail based on the received data; and a sensor configured to determine a condition of the wristband. The display controller is further configured to control at least one of the first display or the second display based on the determined condition.
Abstract:
A headset may include a headband; first and second earcups respectively attached to first and second ends of the headband; a first light display unit; a headset receiver configured to receive data from a processor-based device; and a headset control unit. Each of the first and second earcups may include an interior surface and an exterior surface, where the interior surfaces of the first and second earcups may face each other and the exterior surfaces of the first and second earcups may face away from each other. The first light display unit may include a matrix of independently controllable light emitting elements arranged along a boundary of the exterior surface of the first earcup. The headset control unit may be configured to control the light emitting elements of the first light display unit based on the data received by the headset receiver.
Abstract:
According to various embodiments, a display device may be provided. The display device may include: a receiver configured to receive user data based on an electroencephalography measurement; at least one light source; and a controller configured to control the at least one light source based on the user data.
Abstract:
According to various embodiments, a radio communication system may be provided. The radio communication system may include: a portable device; a beacon receiving device; and a server. The portable device may include: a transmitter configured to repeatedly transmit signals; and a receiver configured to receive data from the server. The beacon receiving device may include: a receiver configured to receive signals from the portable device; and a transmitter configured to transmit an indication to the server based on the received signal. The server may include: a receiver configured to receive the indication from the beacon receiving device; and a transmitter configured to transmit data to the portable device based on the indication.
Abstract:
A headset may include a headband; first and second earcups respectively attached to first and second ends of the headband; a first light display unit; a headset receiver configured to receive data from a processor-based device; and a headset control unit. Each of the first and second earcups may include an interior surface and an exterior surface, where the interior surfaces of the first and second earcups may face each other and the exterior surfaces of the first and second earcups may face away from each other. The first light display unit may include a matrix of independently controllable light emitting elements arranged along a boundary of the exterior surface of the first earcup. The headset control unit may be configured to control the light emitting elements of the first light display unit based on the data received by the headset receiver.
Abstract:
A method, a computer readable medium, and an apparatus for providing haptic feedback through a plurality of haptic devices are provided. The apparatus may receive a multi-channel audio stream. The apparatus may split the multi-channel audio stream into a plurality of audio channels. For each haptic signal of a plurality of haptic signals, the apparatus may generate the haptic signal based on one or more audio channels of the plurality of audio channels. For each haptic signal of the plurality of haptic signals, the apparatus may transmit the haptic signal to a corresponding haptic device of the plurality of haptic devices to produce the haptic feedback.
Abstract:
A mouse for communication with a processor-based device. The mouse may include a housing having a base surface. The base surface may be configured to face a tracking surface on which the mouse may be placed on. The mouse may further include a plurality of mouse foot protrusions projecting from the base surface. A distal end of at least one of the plurality of mouse foot protrusions may be configured to contact the tracking surface on which the mouse may be placed on and the distal end may include a first color. An intermediate portion of the at least one of the plurality of mouse foot protrusions between the distal end of the at least one of the plurality of mouse foot protrusions and the base surface may include a second color, which may be different from the first color.
Abstract:
A method, a computer readable medium, and an apparatus for providing haptic feedback through a plurality of haptic devices are provided. The apparatus may receive a multi-channel audio stream. The apparatus may split the multi-channel audio stream into a plurality of audio channels. For each haptic signal of a plurality of haptic signals, the apparatus may generate the haptic signal based on one or more audio channels of the plurality of audio channels. For each haptic signal of the plurality of haptic signals, the apparatus may transmit the haptic signal to a corresponding haptic device of the plurality of haptic devices to produce the haptic feedback.
Abstract:
According to various embodiments, a device may be provided. The device may include: a switch; a memory configured to store information indicating a debounce time; a switch closed determination circuit configured to determine whether the switch is depressed based on the debounce time; and an age compensation circuit configured to update the debounce time based on an age of the device.