Abstract:
A server includes a chassis, a protecting component and at least one power supply. The chassis includes a case, a cover and a lid. The cover is disposed on the case to form at least one accommodating space, and the lid is detachably disposed on the case and covers the cover. The protecting component is assembled on the cover and includes a pressed sheet spring and a first blocking sheet spring. Both the pressed sheet spring and the first blocking sheet spring includes a bending section, and the bending sections are separated apart. The two sheet springs are fastened to the cover to form a fastening part, and the two sheet springs are connected to each other to form a movable part. The two sheet springs move simultaneously when the movable part is moved relative to the cover. The power supply is removably disposed in the accommodating space.
Abstract:
A cage assembly is configured to be detachably cooperated with an engagement component having at least one through hole and at least one engagement portion. The cage assembly includes a main cage and a releasing component, the main cage includes at least one engaging structure configured to be inserted into the at least one through hole and engaged with the at least one engagement portion, and the releasing component is slidably disposed on the main cage and is configured to push the engagement component so as to force the at least one engagement portion to be released from the at least one engaging structure.
Abstract:
The disclosure discloses a rapidly assembling/disassembling device including a fixing frame, partitions, pushing brackets, and a fastening member. The fixing frame includes a first side plate and a second side plate. Fan modules are sequentially arranged between the first and second side plates. The second side plate abuts against a second side of the adjacent fan module. Each of the partitions abuts against the second side of the corresponding fan module. Each of the pushing brackets is pivotally connected in the fixing frame. Each of the pushing brackets includes a pushing arm. The fastening member is disposed on the first side plate. When the fastening member pushes the adjacent pushing bracket to abut against a first side of the adjacent fan module, each of the other pushing brackets is pushed by the corresponding pushing arm to abut against the first side of the corresponding fan module.
Abstract:
A latch mechanism is provided, including a rack having a restricting structure and a linkage assembly connected to an electronic device in the rack. The linkage assembly includes a fixed frame, connected to the electronic device; a sliding frame, movable along a first direction relative to the fixed frame; a handle, connected to the sliding frame; a trigger, movably disposed between the handle and the sliding frame; and a latch member, connected to the fixed frame and the restricting structure to restrict the electronic device in the rack. When an external force is exerted on the trigger and the handle to move the sliding frame along the first direction relative the fixed frame, the trigger pushes the latch member to separate from the restricting structure along a second direction perpendicular to the first direction, such that the electronic device can be drawn out of the rack.
Abstract:
A casing assembly includes a frame, a support member, and an elastic holder, where the frame includes a frame bottom plate and a partition, the partition is disposed on the frame bottom plate and includes an engagement structure located at a side of the partition located away from the frame bottom plate, the support member is disposed on the frame bottom plate, and the elastic holder is disposed on the frame bottom plate and includes a holding structure movable with respect to the frame bottom plate.
Abstract:
An electronic device is provided. The electronic device includes a housing, a first riser module, a hard-disk backplane module, and a plurality of hard-disks. The first riser module is disposed in the housing. The first riser module includes a first tray structure and a first riser board. The first riser board is disposed on the first tray structure. The first tray structure is adapted to move the first riser board in a first direction. The hard-disk backplane module is disposed in the housing. The tray structure is adapted to move the first riser board in the first direction to connect the hard-disk backplane module. The hard-disks are connected to the hard-disk backplane module. The modules of the electronic device of the embodiment of the invention can be coupled together more easily.
Abstract:
An electronic device with plugging and unplugging function is provided. The electronic device has a connector. The connector is adapted to be connected to a connection port of an electronic module. The electronic device includes a tray unit, a housing and a moving mechanism. The tray unit is moveably disposed in the housing. The moving mechanism is disposed on the housing, wherein the tray unit moves the moving mechanism, and the moving mechanism moves the connector to be connected to or disconnected from the connection port.
Abstract:
A support device, holding a connector in a casing, includes a base frame and a positioning frame. The base frame includes a first mount plate having a through hole, the through hole has a first end and a second end, a fastener of the casing is disposed through the through hole, and the connector is disposed on the first mount plate. The positioning frame includes a positioning portion. The positioning frame is movably disposed on the base frame to be in a first position or a second position. When the positioning frame is located in the first position, the positioning portion is located between the first end and the second end of the through hole. When the positioning frame is located in the second position, the positioning portion is not located between the first end and the second end.
Abstract:
The disclosure discloses a door device including a panel, a pivoting arm module, and a door. The pivoting arm module includes a holder and a panel-pivoting arm. The holder is located in a doorway of the panel and fixed to the panel. The holder has an entrance and an accommodating trough. The panel-pivoting arm is slidably accommodated in the accommodating trough and can present a received status or an ejected status relative to the holder.The door is pivotally connected to the panel-pivoting arm. When the panel-pivoting arm presents the received status, the door abuts against the panel and closes the doorway, and the appearance surface of the door is flush with that of the panel. When the panel-pivoting arm presents the ejected status, the door leaves the panel and can rotate relative to the panel-pivoting arm to open the doorway.