Abstract:
Examples disclosed herein provide a platform for autonomously rotating a computing device having display surfaces that may be disposed on multiple sides of the computing device. One example method includes monitoring information displayed on the display surfaces and determining there is relevant information from one of the display surfaces to be directed towards a user of the computing device. The method further includes detecting a location of the user with respect to the computing device and rotating the computing device so that the display surface with the relevant information is to be directed towards the detected location of the user.
Abstract:
A computing device is disclosed. The computing device includes a processing device having a rating of a first power amount. The computing device includes a processing infrastructure coupled to the processing device. The processing infrastructure is configured for a second power amount in which the second power amount is greater than the first power amount. The processing device is configurable to operate at the first power amount and the second power amount.
Abstract:
Examples relate to managing a display input. An example system to manage a display input is provided herein. Management of display input includes a determination of a display mode selected. Management of display input also includes control of connections and transfer of data between an external device and an internal device. Management of display input further includes adjustment of a display setting based on display mode.
Abstract:
An example display device includes a universal serial bus interface to couple to a host computing device; and a power delivery controller interconnected with the universal serial bus interface. The power delivery controller is to obtain from a host state register stored at the display device, a current power state of the host computing device responsive to a change in state of the display device from a first power state to a second power state. The power delivery controller is further to send a power delivery protocol message to the host computing device to synchronize a power state of the host computing device to an updated power state corresponding to the second power state when the current power state of the host computing device corresponds to the first power state. The power delivery controller is further to update the host state register to reflect the updated power state.
Abstract:
An example intrusion detection system for a computer includes: an ambient light sensor to detect an increase in ambient light indicative of a housing of the computer being opened; and a super input/output integrated circuit (SIO) to receive a signal from the ambient light sensor indicating that the housing of the computer has been opened.
Abstract:
An example method includes receiving an indication of a first level of authentication for an electronic device, the first authentication being associated with a first authentication device associated with the user; receiving an indication of a second level of authentication for the electronic device, the second authentication being associated with a second authentication device associated with the user, the second authentication device being different from the first authentication device; and upon receiving the indication of at least the first level of authentication and the second level of authentication, allow access to the electronic device.
Abstract:
Example thermal modules are disclosed. An example thermal module for use with an electronic device includes a first heatsink defining a first airflow exit. The first heatsink including a first set of fins having a first height and a second set of fins having a second height. The second height being less than the first height. The second set of fins being adjacent the first airflow exit. A second heatsink defines a second airflow exit. The second heatsink is spaced from the first heatsink to form a gap therebetween. The second heatsink is thermally coupled to the first heatsink via a heat pipe.
Abstract:
Examples disclosed herein provide a computing device to charge a rechargeable device. An example computing device can include a module with an enclosure to accommodate the rechargeable device. The computing device can include a transmitter within the module to wirelessly charge the rechargeable device via a receiver disposed within the rechargeable device. The computing device can include a display surface to replicate content illustrated on a screen of the rechargeable device, when the rechargeable device is to be disposed within the enclosure.
Abstract:
In an example implementation according to aspects of the present disclosure, a method may include detecting, by a first computing device, a second computing device when the second computing device is in physical proximity to the first computing device, and establishing a secure wireless connection between the first and second computing devices while the first and second computing devices remain in physical proximity to each other. The method further includes determining, for each file stored on the second computing device, whether the file or a corresponding file stored on the first computing device is the later version, and updating, by the first computing device, the file and the corresponding file stored on the first computing device to the later version.
Abstract:
In some examples, a non-transitory machine-readable medium can include instructions executable by a processing resource to: monitor system power for a computing system that includes a first computing component type and a second computing component type, determine a power event type for the computing system based on the monitored system power, and alter a power limit of the second computing component type by a predetermined increment based on the power event type while maintaining a power limit of the first computing component type when the second computing component type is a sub-system of the computing system.