Abstract:
An apparatus, system, and method are disclosed for providing customized thermal control data structures. The default thermal control data structure is typically stored in a first storage device of the IOS module of the information processing system. A custom thermal control data structure is stored on a second storage device that is separately updatable from the first storage device. The thermal cooling module that provides cooling for the information processing system is directed to use the custom thermal control data structure for cooling components of the information processing system.
Abstract:
A method, apparatus, and system are disclosed for a planar adapter card retainer bracket that is removably attachable to a computer chassis and is formed with a plurality of plunger openings. Each plunger opening is configured to receive a respective adapter card retainer plunger. The adapter card retainer plunger is configured to extend from the bracket into the computer chassis to engage an edge of an adapter card thereby retaining the adapter card in a selected slot even if the adapter card is a low-profile adapter card.
Abstract:
An assisted heat pipe comprises an evaporator section, a condenser section, and a blower. The evaporator section converts a fluid from a liquid form to a vapor form, and the condenser section converts the fluid from a vapor form to back to a liquid form. The blower is encapsulated within the assisted heat pipe and resides between the evaporator section and the condenser section. The blower rotates and assists the vapor to travel from the evaporator section to the condenser section.
Abstract:
An apparatus, system, and method are disclosed for efficient heat dissipation. The apparatus for efficient heat dissipation is provided with a compliant heat pipe configured to conform to adjacent surfaces under a compressive load, a compression member configured to apply the compressive load to the compliant heat pipe, and wherein the compliant heat pipe conforms to the surface of the compression member and the surface of a heat source under the compressive load. Beneficially, such an apparatus, system, and method would provide efficient heat dissipation through effective thermo-coupling between the heat source and the heat pipe. Additionally, the apparatus, system, and method would facilitate the application of a load to thermal grease for further improvements on thermo-coupling between the heat source and the heat pipe.
Abstract:
A new type of device, useful as a fan among other applications, in which fluid flow is induced by providing within the device a chamber of constantly increasing volume and a chamber of constantly decreasing volume. Fluid moves through these chambers impelled by the rotation of a pair of members linked together for rotation about skewed axes. The members move within a chamber having a spherical surface, into which open ports for inward and outward fluid flow. The device may be used to assist in cooling components of an electronic system such as a computer system
Abstract:
A heat removal system for a computer has a heat sink and a spool rotatably disposed in the heat sink. The spool includes fluid inlets and outlets, and water circulates in a closed loop from the inlets, through the spool, through the outlets, past the computer component to be cooled, and between the heat sink and the spool to transfer heat to the heat sink, then back to the inlets. A thermally conductive can is between the heat sink and spool such that the working fluid flows between the can and spool.
Abstract:
A monitor stand assembly includes a base, an arm that includes a monitor joint configured for pivotable attachment to a monitor and a base joint configured for pivotable attachment to the base, and an adjustable force strut. Such a strut may include a strut housing, a strut rod, an adjustment mechanism for adjusting force exerted by the rod with respect to the housing, an arm joint configured for pivotable attachment to the arm and a base joint configured for pivotable attachment to the base. Such an assembly may be suited to accommodate monitors of various weights and provide for flexible ergonomics. Various other apparatuses, systems, methods, etc., are also disclosed.
Abstract:
A computer housing can include a front end and a back end; a back edge; opposing lateral sides; a top side; a base disposed between the front end and the back end and between the opposing lateral sides; and two spherical cap pads attached to the base that define, with respect to the back edge, a maximum tilt angle for downward movement of the back end responsive to upward movement of the front end of the computer housing. Various other apparatuses, systems, methods, etc., are also disclosed.
Abstract:
An apparatus, system, and method are disclosed for providing customized thermal control data structures. The default thermal control data structure is typically stored in a first storage device of the IOS module of the information processing system. A custom thermal control data structure is stored on a second storage device that is separately updatable from the first storage device. The thermal cooling module that provides cooling for the information processing system is directed to use the custom thermal control data structure for cooling components of the information processing system.
Abstract:
A drive cage can include a base side and a top side that define altitude of the drive cage; a front end and a back end that define longitude of the drive cage; a lateral side disposed between the front end and the back end and between the base side and the top side; drive bays where each drive bay extends longitudinally; a first wire bundle clip fixed to the top side that extends longitudinally to a free end; and a second wire bundle clip fixed to the lateral side that extends altitudinally to a free end. Such an example may further include a wire bundle clipped to the drive cage via the first wire bundle clip and the second wire bundle clip. Various other apparatuses, systems, methods, etc., are also disclosed.