Abstract:
A computer including a base and a display selectively removable from the base. The base includes a processor, a base wireless chip, and a power source. The display includes a screen for displaying a video output, a display wireless chip in communicating with the base wireless chip, and a power wireless chip in communication with the power source. The base wireless chip transmits data from the processor to the display. Also, when the display is at least in one position with respect to the base, the power source transmits power to the power transition member of the display.
Abstract:
A method comprising providing multiple video units in an array, playing video content on the video units in a synchronized manner, and detecting when one of the video units is removed from the array. In response to detecting removal of the video unit, the video content played on the video units remaining in the array in a synchronized manner is adjusted.
Abstract:
This is directed to rotating an entire user interface of a portable electronic device. In particular, this is directed to defining a UI orientation mode in which a user can direct the device to rotate a UI. When the UI orientation mode is enabled, the electronic device can detect particular inputs, for example based on the outputs of motion sensing components such as an accelerometer and a magnetometer, to determine how to rotate the UI. Once the UI has been rotated to a desired orientation, a user can lock the UI orientation and exit the UI orientation mode.
Abstract:
An invisible, light-transmissive display system with a light resistant material is provided. Substantially invisible holes penetrate through at least a portion of the light resistant material in a predetermined light-transmissive display pattern.
Abstract:
There are provided systems, devices and methods for operating a housing for an electronic device as an input/output (I/O) device. In one embodiment, an electronic device includes a housing configured to function as an integrated housing and I/O device and one or more sensors obscured by a panel of the housing. The one or more sensors being configured to sense via the panel of the housing. The electronic device further includes a processing unit communicatively coupled to the one or more sensors and configured to interpret electrical signals generated by the one or more sensors. One or more output devices are communicatively coupled to the processing unit and configured to provide an output in response to the one or more sensors generating an electrical signal.
Abstract:
There are provided systems, devices and methods for operating a light source to match a white point of ambient light. In one embodiment, a light control system is provided. The light control system includes a light source and a light sensor. The light sensor is configured to operate in conjunction with the light source to provide a visual effect. A controller is electrically coupled to the light source and the light sensor and configured to determine the intensity and color of light to which the light sensor is exposed and dynamically adjust the output of the light source to match the determined intensity and color of light to which the light sensor is exposed.
Abstract:
Methods and apparatuses are disclosed that allow measurement of a user's interaction with the housing of an electronic device. Some embodiments may measure the electrical characteristics of a housing of an electrical device, where the housing is capable of being temporarily deformed by the user's interaction. By measuring the electrical characteristics of the housing, such as the housing's capacitance, the user's interaction with the housing can be measured in a manner that is independent of the user's electrical characteristics and/or in a manner that may allow the pressure applied to the housing to be quantified.
Abstract:
This is directed to rotating an entire user interface of a portable electronic device. In particular, this is directed to defining a UI orientation mode in which a user can direct the device to rotate a UI. When the UI orientation mode is enabled, the electronic device can detect particular inputs, for example based on the outputs of motion sensing components such as an accelerometer and a magnetometer, to determine how to rotate the UI. Once the UI has been rotated to a desired orientation, a user can lock the UI orientation and exit the UI orientation mode.
Abstract:
A system for displaying multiple colors individually or in combination with one another. The system may emit red, green and blue light from light emitting diodes and may additionally provide white light to brighten the color provided by the red, green and blue light emitting diodes. The white light source may also be used to increase the power efficiency of the system, thus increasing the lifetime of the system for displaying multiple colors. The white light source may be used to backlight the color provided by the red, green and blue light emitted by the light emitting diodes, or may also be used as an additional light source to the light provided by the red, green and blue light emitting diodes.
Abstract:
This is directed to controlling media playback based on particular touch gestures detected by a touch-sensing interface. The electronic device can identify particular touch inputs, such as combinations of tapping and holding a touch sensitive surface, or circular motions. In response to detecting a particular touch gesture, the electronic device can perform a playback operation specifically associated with the detected touch gesture. To provide a consistent user interface with the device, some of the particular touch gestures can match other inputs provided using a button, for example a button integrated on a wired headset. In such an embodiment, the same combination of tapping and holding a touch input and pressing and holding a button can control the same electronic device operations.