Abstract:
The description relates to devices that can include a base assembly, upper assembly, an arm, and a conductor. In one example the base assembly can include a base shaft and the upper assembly can include an upper shaft. The arm can be secured to the base shaft and the upper shaft to translate a range of rotation of the arm around the base shaft to rotation around the display shaft. The conductor can extend from the base assembly into the arm parallel to the base shaft and extend from the arm into the upper assembly parallel to the upper shaft.
Abstract:
The description relates to devices, such as computing devices having displays that can be rotated through a range of travel. The device can counter-balance the display to create a near weightless feel for the user when repositioning the display.
Abstract:
Techniques are described herein that are capable of performing deflection-based and/or proximity-based switching of a component state. For instance, a computing device may include a display and a component. The component may be switched from an “on” state to an “off” state in response to a deflection of the display toward another portion (e.g., the component) of the computing device by at least a designated amount, in response to deflection of another portion of the computing device toward the display by at least a designated amount, in response to an object being within a designated proximity of the display or a portion thereof, in response to the object coming toward (e.g., approaching or being pressed against) the display with at least a designated intensity, etc.
Abstract:
The description relates to devices, such as computing devices having displays that can be rotated through a range of travel. In some cases, a display can be readily adjusted to a desired physical location. The device can counter-balance the display to create a near weightless feel for the user when repositioning the display.