Abstract:
Embodiments are generally directed to a flexible overlapping display. An embodiment of a mobile device includes a processor to process data for the mobile device, a bendable and foldable display screen, one or more device sensors to sense an orientation of the mobile device, and one or more display sensors to sense a current arrangement of the display screen. The processor is to identify one or more portions of the display screen that are visible to a user based at least in part on data from the one or more device sensors and the one or more display sensors.
Abstract:
A mobile device may include circuitry, a thermally-conductive panel in thermal communication with the circuitry, and a housing with a user-operable thermal access cover that has a closed position to cover the thermally-conductive panel and an open position to expose the thermally-conductive panel. Embodiments may include a dock with which the mobile device may be engaged, wherein the dock may include a thermal transfer device to engage the thermally-conductive panel of the mobile device.
Abstract:
The present application is directed to dynamic input mode selection. In general, a system may sense a user's finger approaching a surface of a display (e.g., an imminent user touch input) and, depending on at least one trigger condition, may perform at least one output operation. For example, a first trigger condition may cause a display to enlarge at least a portion of a displayed image based on the imminent user touch input, a second trigger condition may cause the display to present a menu corresponding to an object in the enlarged portion, etc. This functionality may be implemented utilizing either an operating system (OS)-aware configuration or an OS-unaware configuration. In an OS-aware configuration, an intent-to-touch (ITT) module may utilize application program interfaces (APIs) in the OS to facilitate display zooming, menu presentation, coordinate translation, etc. In an OS-unaware configuration, the ITT module may facilitate these actions without OS assistance.
Abstract:
Technology for improving performance of a personal display device by variably controlling the emission divergence and/or the emission direction of light from the pixels of the display as a function of the location of the pixel within a display.
Abstract:
The present disclosure relates to microelectronic substrates, such as interposers, motherboards, test platforms, and the like, that are fabricated to have overlapping connection zones, such that different microelectronic devices, such as microprocessors, chipsets, graphics processing devices, wireless devices, memory devices, application specific integrated circuits, and the like, may be alternately attached to the microelectronic substrates to form functional microelectronic packages.
Abstract:
A mobile device may include circuitry, a thermally-conductive panel in thermal communication with the circuitry, and a housing with a user-operable thermal access cover that has a closed position to cover the thermally-conductive panel and an open position to expose the thermally-conductive panel. Embodiments may include a dock with which the mobile device may be engaged, wherein the dock may include a thermal transfer device to engage the thermally-conductive panel of the mobile device.
Abstract:
Methods and apparatus to adjusting a flight path of a drone based on weather data are disclosed herein. An example apparatus includes navigating, via a processor of a drone, according to a flight path; intercepting, via the processor of the drone, weather data identified by a weather source within a threshold range of the flight path; and when the weather data corresponds to undesirable weather data, adjusting, via the processor of the drone, the flight path to avoid a region corresponding to the weather source.
Abstract:
Methods, apparatus, systems and articles of manufacture are disclosed An example apparatus to update a spatially adjustable display disclosed herein includes a display size monitor to acquire an indication of a size of the spatially adjustable display, a service image comparator to compare the indication of the size to a size model, and a source image adjuster to invoke visual configuration adjustments to an output image of the spatially adjustable display based on parameters identified in the size model.
Abstract:
Technologies for utilizing a plurality of displays include a computing device and a plurality of detachable display units physically coupled to the computing device. The computing device executes an application of the computing device and assigns the application to a detachable display unit of the plurality of detachable display units. The detachable display unit monitors for detachment of the detachable display unit from the computing device and maintains execution of the assigned application in response to detachment of the detachable display unit.
Abstract:
An electronic device includes a power control circuit to generate a power mode signal and a plurality of voltage regulators to receive the power mode signal. Each voltage regulator reduces an output voltage in response to the power mode signal, and the reduced output voltage of each voltage regulator is used to power a different circuit of or function to be performed in the electronic device.