Abstract:
Embodiments of the invention are directed towards passive cooling systems for handheld mobile computing devices. An electro-hydrodynamic air mover (EAM) may be included in a handheld mobile computing device, the EAM to include an inlet and an outlet. The inlet and outlet are each included in at least one surface side of the handheld mobile computing device.In embodiments of the invention the EAM produces an airflow by accelerating charged particles surrounding an electrode near the inlet towards an second electrode near the outlet in response to an electric field applied to the electrodes. The airflow will result from air drawn into the inlet of the EAM (i.e., air external to the computing device) and air expelled from the outlet of the EAM (i.e., air expelled away from the computing device).
Abstract:
A mechanism is described for chimney-based cooling of computer components. A method of embodiments of the invention includes determining heat-emitting components of a computing device. The method further includes coupling a chimney to one or more of the heat-emitting components such that chimney effect of the chimney is used to guide air associated with a component in and out of the chimney.
Abstract:
An electronic device comprises a housing, at least one heat generating component in the housing, and at least one thermal management device in thermal communication with the at least one heat generating component, wherein the at least one thermal management device selectively allocates heat flow to one or more portions of the housing. Other embodiments may be described.
Abstract:
A system, apparatus and method for cool touch housings are described. The apparatus may include a housing arranged to at least partially enclose at least one internal component of a mobile device. A portion of the housing may include an exterior surface spreader, a thin active heat pump with a first side and a second side, wherein the first side of the thin active heat pump is thermally coupled to the exterior surface spreader, and an interior surface spreader thermally coupled to the second side of the thin active heat pump. Other embodiments are described and claimed.
Abstract:
A cooling system may include a fan which may be placed near the center of the system board. The fan may include bottom inlet and may draw air through an opening in the bottom skin of the computer system and may generate a positive pressure within the computer system. Exhaust vents may be positioned at the periphery.
Abstract:
In one embodiment, a system comprises a portable computing device comprises a housing, at least one temperature sensitive radio frequency signal source proximate the housing and at least one radio frequency interface to receive a radio signal generated by the at least one temperature sensitive radio frequency signal source.
Abstract:
A cooling system may include a fan which may be placed near the center of the system board. The fan may include bottom inlet and may draw air through an opening in the bottom skin of the computer system and may generate a positive pressure within the computer system. Exhaust vents may be positioned at the periphery.
Abstract:
Apparatuses, systems and methods associated with flexible heat spreader design are disclosed herein. In embodiments, an electronic device may include a component, a heat dissipation member, and a flexible member. The heat dissipation member may be coupled to the component via a flexible portion of the electronic device, the component located on a first side of the flexible portion and the heat dissipation member located on a second side of the flexible portion. The flexible member may be thermally coupled to the component and the heat dissipation member, wherein the flexible member extends along the flexible portion from the first side to the second side and is to transfer heat from the component to the heat dissipation member. Other embodiments may be described and/or claimed.
Abstract:
Various systems and methods for providing a smart entry system are described herein. A smart entry system includes a detector to detect a person near a portal to a room; a transceiver to attempt to establish a wireless connection between the smart entry system and a user device associated with the person; and a user interface to present a notification to the person based on a state of the wireless connection.
Abstract:
Technologies for contextual platform recommendations including a computing device with a number of platform capabilities, including any combination of hardware capabilities and software capabilities. The computing device stores context data based on the current context of the computing device and determines a user profile based on the context data. The user profile is indicative of typical behavior of the user of the computing device. The computing device determines a recommended platform capability from a number of available platform capabilities based on the user profile. The computing device notifies the user of the recommended platform capability. The computing device may also provide the notification only when the recommended platform capability is relevant to the current device context. The computing device may transmit the user profile to a recommendation service, which may generate additional recommendations for platform capabilities. Other embodiments are described and claimed.