Abstract:
Embodiments are generally directed to a camera to capture multiple sub-images for the generation of an image. An embodiment of a camera assembly includes one or more lenses to transmit light from a scene, and an image sensor to simultaneously capture a plurality of sub-images of the scene via the one or more lenses, the plurality of sub-images including a first sub-image and a second sub-image. A processing element is to process the sub-images sensed by the image sensor, the processing of the sub-images includes combining at least the first sub-image and the second sub-image to generate a combined image of the scene.
Abstract:
A computing device may include a touch-sensitive display. Display logic may control a size of an active area of the touch-sensitive display and a size of an inactive area of the touch-sensitive display. The display logic to set the active area to a first size when the touch-sensitive display is in a first mode. Display logic to set the active area to a second size when the touch-sensitive display is in a second mode. In one embodiment, the computing device may be a convertible computer system. In another embodiment, the computing device may be a tablet computer system.
Abstract:
A chassis for an electronic device may include a first metal layer to form an inner surface of the chassis, an insulating layer on the first metal layer, and a second metal layer on the insulating layer. The second metal layer may be connected to a ground area of a circuit board to be provided in the chassis.
Abstract:
Embodiments are generally directed to a wireless stylus with force expression capability. An embodiment of an apparatus includes a body; a microcontroller; a force sensor to detect a pressure applied against the body of the apparatus; one or more motion sensors; and a wireless transmitter and antenna, the microcontroller to transmit force data from the force sensor and motion data from the one or more motion sensors via the wireless transmitter and antenna.
Abstract:
Methods and apparatus for reducing energy consumed by drones during flight are disclosed. A drone includes a housing, a motor, receiver circuitry carried by the housing, and a route manager. The receiver circuitry is to receive airborne drone-generated wind data from an airborne drone located in an area within which a segment of a flight of the drone is to occur. The airborne drone-generated wind data is to be determined by an inertial measurement unit of the airborne drone. The route manager is to generate a route for the flight of the drone based on wind data, the wind data including the airborne drone-generated wind data. The route is to be followed by the drone during the flight. The route manager is to select at least one portion of the route to cause the drone to be at least partially propelled by wind to reduce energy consumed by the drone during the flight.
Abstract:
Systems, apparatuses and methods may provide for a thermal protection apparatus comprising a substrate including surfaces defining one or more channels and an array of openings adjacent to the one or more channels and an outer layer coupled to the substrate. The outer layer may include a plurality of opaque elastic regions positioned adjacent to the array of openings. Additionally, a fluid may be positioned within the one or more channels. In one example, the plurality of opaque elastic regions are expandable to become protrusions including one or more of a rectangular shape, a donut shape or a dome shape.
Abstract:
Systems, apparatuses and methods may provide for a wireless charging system that includes a charge circuit and a housing configuration having a substantially conical outer profile. Additionally, one or more charge coils may be positioned within the housing configuration and coupled to the charge circuit, wherein the one or more charge coils define a charge field direction that is perpendicular to the substantially conical outer profile. In one example, the housing configuration includes a plurality of segments arranged in a stacked configuration.
Abstract:
Methods and apparatus relating to embedded magnetic field indicator array for display of uniformity or boundary of magnetic field are described. In an embodiment, a diode is coupled to a coil in series. The coil receives wireless energy from a wireless power transmitter and generates an electrical current in response to the receipt of the wireless energy to cause the diode to emit light. The coil is to be formed by at least two coil loops (which may be spiral or overlapping). Other embodiments are also disclosed and claimed.