The present invention relates to a retaining structure and a server structure having the same, and particularly to a retaining structure for retaining a circuit board on a server structure.
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In the prior art, in order to solve the above technical problems, a tray or a bracket is usually implemented for retaining the circuit board 20. However, the structure of the conventional tray or bracket is complex, and huge quantities of material are consumed. Also, the purpose for retaining the circuit board 20 on the server structure 10 is achieved by using mounting processes. Accordingly, it is necessary to provide a retaining structure to solve the above technical problems.
To resolve the above technical problems, an objective of the present invention is to provide a retaining structure for retaining a circuit board on a chassis of a server structure. By utilizing the retaining structure to be abutting against the circuit board, a mating force applied on the circuit board is buffered, thereby preventing a bad electrical connection problem, or preventing damage to contacting pads of the circuit board and/or terminals of a relative connector.
To achieve the above-mentioned inventive objective, the present invention provides a retaining structure for retaining a circuit board on a chassis. The circuit board comprises a first connection portion and a second connection portion for respectively mating with a first connector and a second connector. The retaining structure comprises: a plurality of side walls commonly defining a channel for accommodating a region of the circuit board, a backstop section located within the channel and abutting against a protrusion of the circuit board for buffering a mating force applied from the second connection portion to the first connection portion, and a damping snapper located on one of said side walls for clamping the retaining structure to the chassis.
In a preferable embodiment of the present invention, one of said side walls comprises a first fastening screw hole for receiving a first fastening screw to fasten the retaining structure with the circuit board.
In a preferable embodiment of the present invention, one of said side walls comprises a second fastening screw hole for receiving a second fastening screw to fasten the retaining structure to the chassis.
In a preferable embodiment of the present invention, one of said side walls is provided with a damping snapper on a first surface thereof, and a second surface opposite the first surface corresponds to the channel; and the clamping snapper further comprises a connection section connected with the first surface and a vertically elastic arm section for clamping the retaining structure to the chassis.
In a preferable embodiment of the present invention, the plurality of side walls further comprise a first side wall, a second side wall opposite the first side wall, and a third side wall connecting with the first side wall and the second side wall.
In a preferable embodiment of the present invention, an engagement section is formed on a wall surface of one of said side was for engaging within a geometric edge of the circuit board, and the engagement section and the geometric edge are structurally complementary.
Another objective of the present invention is to provide a server structure. The server structure comprises a retaining structure for retaining a circuit board on a chassis of the server structure. By utilizing the retaining structure to abut against the circuit board, a mating force applied on the circuit board is buffered.
To achieve the above-mentioned inventive objective, the present invention provides a server structure comprising: a chassis, where a recessed surface is formed thereon, a circuit board comprising a first connection portion and a second connection portion for respectively mating with a first connector and a second connector of the server structure, and a retaining structure comprising: a plurality of side walls commonly defining a channel for accommodating a region of the circuit board, a backstop section located within the channel and abutting against a protrusion of the circuit board for buffering a mating force applied from the second connection portion to the first connection portion, and a clamping snapper located on one of said side walls for clamping the retaining structure to the chassis.
In a preferable embodiment of the present invention, one of said side walls comprises a first fastening screw hole for receiving a first fastening screw to fasten the retaining structure with the circuit board.
In a preferable embodiment of the present invention, one of said side walls comprises a second fastening screw hole for receiving a second fastening screw to fasten the retaining structure to a hole of the chassis.
In a preferable embodiment of the present invention, one of said side walls is provided with a clamping snapper on a first surface thereof, and a second surface opposite the first surface corresponds to the channel; and the clamping snapper further comprises a connection section connected with the first surface and a vertically elastic arm section for clamping the retaining structure to the chassis.
In a preferable embodiment of the present invention, the plurality of side walls further comprise a first side wall, a second side wall opposite the first side wall, and a third side wall connecting with the first side wall and the second side wall.
In a preferable embodiment of the present invention, an engagement section is formed on a wall surface of one of said side walls for engaging within a geometric edge of the circuit board, and the engagement section and the geometric edge are structurally complementary.
These and other features, aspects, and advantages of the present invention will become better understood with regard to the following description, appended claims, and accompanying drawings.
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In this embodiment, by assembling the retaining structure 600 with the circuit board 200 and retaining the retaining structure 600 and the circuit board 200 on the chassis 500, a horizontal mating force applied from the second connector 400 to the first connector 300 is buffered when the second connector 400 is horizontally plugged in or unplugged from the second connection portion 220. Therefore, the first connection portion 210 and the first connector 300 will not be offset from each other due to the horizontal mating force, thereby preventing a bad electrical connection problem between the first connection portion 210 and the first connector 300, or preventing damage to contacting pads of the first connection portion 210 and/or terminals of the first connector 300.
In another embodiment, the retaining structure 600 of the present invention may be assembled with more than one circuit board. The circuit boards are retained on a chassis by using the retaining structures 600. Thus, a horizontal mating force applied from a second connector to a first connector is buffered. In addition, the retaining structure 600 of the present invention may be a one-piece plastic element, thereby decreasing a manufacturing cost of the server structure 100.
The above descriptions are merely preferable embodiments of the present invention, and are not intended to limit the scope of the present invention. Any modification or replacement made by those skilled in the art without departing from the spirit and principle of the present invention should fall within the protection scope of the present invention. Therefore, the protection scope of the present invention is subject to the appended claims.
Number | Date | Country | Kind |
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201410697581.9 | Nov 2014 | CN | national |