Abstract:
Systems and methods are disclosed for rotationally coupling housing portions of an information handling system. An information handling system may include a housing having a first housing portion and a second housing portion. The information handling system may also include a hinge assembly coupling the first housing portion and the second housing portion, the hinge assembly including a first hinge, a second hinge, and a deformable foam, the first hinge, the second hinge, and the deformable foam may allow the hinge assembly to bend when the first housing portion is rotated in relation to the second housing portion. In addition, the information handling system may include a flexible display coupled to the first housing portion and the second housing portion, the flexible display to be placed over the first housing portion, the second housing portion, and the hinge assembly and configured to bend when the hinge assembly bends.
Abstract:
Projected input and output devices adapt to a desktop environment by sensing objects at the desktop environment and altering projected light in response to the sensed objects. For instance, projection of input and output devices is altered to limit illumination against and end user's hands or other objects disposed at a projection surface. End user hand positions and motions are detected to provide gesture support for adapting a projection work space, and configurations of projected devices are stored so that an end user can rapidly recreate a projected desktop. A projector scan adjusts to limit traces across inactive portions of the display surface and to increase traces at predetermined areas, such as video windows.
Abstract:
Projected input and output devices adapt to a desktop environment by sensing objects at the desktop environment and altering projected light in response to the sensed objects. For instance, projection of input and output devices is altered to limit illumination against and end user's hands or other objects disposed at a projection surface. End user hand positions and motions are detected to provide gesture support for adapting a projection work space, and configurations of projected devices are stored so that an end user can rapidly recreate a projected desktop. A projector scan adjusts to limit traces across inactive portions of the display surface and to increase traces at predetermined areas, such as video windows.
Abstract:
An expansion device couples to a capacitive mat disposed on a desktop surface and communicates power and data through the capacitive mat to perform functions in support of an information handling system. For example, the expansion device powers an inductive charger to charge a peripheral device, accepts end user touch inputs with a capacitive touch sensor, presents visual information at an integrated display in response to pixel values provided by the information handling system though the capacitive mat.
Abstract:
In one or more embodiments, one or more systems, methods, and/or processes may determine that a peripheral is proximate to a display associated with an information handling system; may determine an area of the display that is obscured by the peripheral; may reduce power to the area of the display that is obscured by the peripheral; may determine one or more areas of the display associated with one or more respective transparent materials associated with the peripheral; may increase illumination to the one or more areas of the display; may receive, from the peripheral, touch information associated with a user touching at least one of the one or more transparent materials; may change at least a portion of information displayed by the display; may receive, from the peripheral, user input information associated with user input to the peripheral; and may change at least another portion of the information displayed.
Abstract:
A totem object placed on a touchscreen display provides inputs based upon touches made at the touchscreen display, such as with the rotational orientation or linear location of the totem object relative to a user interface presented outside the totem object. A visual access from the touchscreen display through the totem object passes a visual image from the touchscreen display for presentation at the totem object upper surface, such a numerical value of an input made by totem object position on the touchscreen display.
Abstract:
A totem provides inputs with touches on a touchscreen display by reference to a totem user interface that defines a presentation on the touchscreen display.
Abstract:
Embodiments of keyboard deployment for multi-form factor Information Handling Systems (IHSs) are described. In an embodiment, a method may include engaging an actuator of an IHS, where the IHS comprises a first display coupled to a second display via a hinge, and where a keyboard is coupled to a backside of the second display; and deploying the keyboard.
Abstract:
A totem provides inputs with touches on a touchscreen display by reference to a totem user interface that defines a presentation on the touchscreen display.
Abstract:
Systems and methods are disclosed for rotationally coupling housing portions of an information handling system. An information handling system may include a housing having a first housing portion and a second housing portion. The information handling system may also include a hinge assembly coupling the first housing portion and the second housing portion, the hinge assembly including a first hinge, a second hinge, and a deformable foam, the first hinge, the second hinge, and the deformable foam may allow the hinge assembly to bend when the first housing portion is rotated in relation to the second housing portion. In addition, the information handling system may include a flexible display coupled to the first housing portion and the second housing portion, the flexible display to be placed over the first housing portion, the second housing portion, and the hinge assembly and configured to bend when the hinge assembly bends.