Abstract:
A mounting apparatus includes a case. The case includes a first bracket and a second bracket. The first bracket defines a space. The second bracket is configured for securing a fan and is connected with the first bracket. The second bracket has a volume equal to or less than the volume of the first bracket space.
Abstract:
A cooling system includes a fixing device and a fan. The fixing device includes a fixing rack and a latching rack. The fixing rack includes a first latching arm and two opposite supporting arms protruding from two ends of the first latching arm. The latching rack includes a second latching arm and two opposite adjusting arms protruding from two ends of the second latching arm. The adjusting arms can be adjustably fixed to the supporting arms at different positions to adjust a distance between the first latching arms and the second latching arm to releasably fix the fan between the first latching arm and the second latching arm.
Abstract:
A rack-mount server system includes a cabinet, a number of server units mounted in the cabinet, and a number of fan modules. Each fan module cools one or a group of server units. Each fan module includes a mounting bracket fixed to the cabinet, a number of fans attached to the mounting bracket, an air flap, and a control box to control the power supply to the fans. The mounting bracket defines an air passage dedicated to each fan, through which air from the fan is guided to the one or a group of server units. Each mounting bracket defines a cutout, through which the air passages of two neighboring fans communicate with each other. The air flap may be slid closed or slid open to redirect or gather a cooling airflow as required, depending on the distribution of server units within the cabinet.
Abstract:
A mounting apparatus for fixing a fan defining fixing notches in an exterior surface of the fan to a chassis includes a frame. The frame includes a base panel fixed to the chassis, two side panels respectively extending up from opposite ends of the base panel, and two elastic fixing portions respectively extending up from the side panels away from the base panel. When the fan is disposed in the frame, the base panel, the side panels, and the fixing portions of the frame resist the exterior surface of the fan and the fixing portions are received in the corresponding fixing notches of the fan.
Abstract:
An electrical connector assembly includes a receiving connector and an insert connector. The receiving connector includes a main body and a locating plate movably attached to the main body. The main body is provided with a first flange. The locating plate is provided with a second flange formed thereon. The first flange and the second flange are spaced from each other. The insert connector includes a base and a fixing plate formed on the base. The fixing plate has a particular width and is positioned between the first flange and the second flange. The locating plate is slidable on the main body between different positions to regulate a gap defined between the first flange and the second flange, to cause the receiving connector to be able to match with the insert connector having the fixing plate of the particular width or other width.
Abstract:
A heat dissipation device is used to dissipate heat generated by a number of memory chips of a motherboard. The heat dissipation device includes a bracket attached to the motherboard and at one side of the memory chips, at least one fan, and at least one connection member attached to the corresponding fan. The fan is adjustably attached to the bracket by the connection member.
Abstract:
A computer includes a rear panel, a peripheral component, and a security device. The peripheral component includes a connector connected to the rear panel and a cable. The security device is attached to the rear panel and covers the connector. The security device defines a guiding slot. The cable extends through the guiding slot and the security device blocks the connector from moving out of the rear panel.
Abstract:
A computer casing includes several electronic components, a first heat sink, a side plate, a second heat sink, a container, a pump, and a tube. The first heat sink is attached to an electronic component, and defines a channel including an inlet and an outlet. The side plate defines an opening. The second heat sink is fixed to the side plate and covers the opening. The second heat sink includes a first side facing the opening and an opposite side external to the side plate. The container is used to store coolant and is fixed to the first side of the second heat sink. A pump is connected to the container. The tube includes a first end connected to the pump and a second end connected to the inlet of the channel of the first heat sink, and stays in contact with the first side of the second heat sink.
Abstract:
A water tank includes a box, an air valve body, a valve core, a cap, and an elastic element. The box defines an accommodating space and a vent communicating with the accommodating space. The air valve body is extended out from the box and adjacent to the vent. The valve core is mounted to the valve body to airproof the vent, and comprises a first end inserted into the accommodating space through the vent and a second end opposite to the first end. The elastic element is arranged between the cap and the valve core. The valve core will open the vent to deform the elastic member and allow heated air in the accommodating space to leak out of the accommodating space through the vent, in response to an air pressure in the box is greater a reference air pressure.
Abstract:
An exemplary mounting structure is adapted for supporting an apparatus of a computer. The mounting structure includes a securing bracket and a connecting bracket. The connecting bracket is mounted on the securing bracket and is slidable along a first axis relative to the securing bracket. The connecting bracket is adapted for supporting the apparatus thereon. The apparatus is slidable along a second axis relative to the connecting bracket.