This application claims the benefit of the filing date of Taiwan Patent Application No. 103220528, filed on, 2014 Nov. 19, in the Taiwan Intellectual Property Office, R.O.C., the disclosure of which is incorporated herein in its entirety by reference.
1. Technical Field
This disclosure relates to fastening structure applied on a circuit board, in particular, to a slat fastening assembly.
2. Related Art
On a circuit board, various forms of radiators are usually used in order to achieve the heat dissipation for a particular electronic component or the whole system. Moreover, on the circuit board, various fixing structures or fixing pillars are also usually used for installing attached components on the circuit board.
Sometimes, an attached component, such as an enhancing component for heat dispassion or a decorative component, is attached to the radiator, the fixing structure, or the fixing pillar. A common approach to fix the attached component is to drill a screw hole on the radiator, the fixing structure or the fixing pillar, and to drill a via hole on the attached component; through a screw running through a via hole and engaged into the corresponding screw hole, the attached component is fixed to the radiator, the fixing structure, or the fixing pillar. A tool, such as a screw driver, is required to drive the screw.
An alternative approach is to use a jig to fix the attached component to the radiator, the fixing structure or the fixing pillar. The jig can be manipulated without tools, but the jig must match the size and the configuration of the clamped object; if the clamped object replaced by another clamped object having different size and different configuration, this jig may not be suitable for the new clamped object.
Therefore, a new approach to fix the attached component is required in this technical field.
In view of the foregoing problems, this disclosure provides a slat fastening assembly, which is able to be operated without tools.
The slat fastening assembly according to the embodiments of this disclosure is applicable to a circuit board. The slat fastening assembly includes a slat, at least one first fastening member, a base, and at least one second fastening member.
The first fastening member is disposed on the slat; the base is fixed on the circuit board. The second fastening member is disposed on the base. The first fastening member is detachably combined with the second fastening member, so that the slat is detachably combined with the base.
In one or more embodiments, the first fastening member and the second fastening member are two magnets.
In one or more embodiments, the first fastening member and the second fastening member are a magnet and a ferrous metal component.
In one or more embodiments, the first fastening member and the second fastening member are an embedded hole and a protruding part, and the protruding part is engaged within the embedded hole in a tight-fit manner.
In one or more embodiments, the protruding part is a resilient component.
In one or more embodiments, the slat has a top surface and a bottom surface, and the first fastening member is disposed on the bottom surface.
In one or more embodiments, the base is an air-cooled radiator.
In one or more embodiments, the base is a fixing pillar having an upper end and a lower end; the second fastening member is disposed on the upper end, while the lower end is fixed to the circuit board.
In one or more embodiments, the fixing pillar includes a screw thread disposed near the lower end; the fixing pillar is screwed into a fixing hole of the circuit board.
In one or more embodiments, the base includes a combination portion and two fixing portions, the two fixing portions respectively extend from two ends of the combination portion and are fixed on the circuit board, such that a gap exists between the combination portion and the circuit board, and the second fastening member is disposed on the combination portion.
In one or more embodiments, the first fastening member is a guide piece disposed on one side edge of the slat; the second fastening member is a sunken groove track on the base, and at least one sidewall of the sunken groove track forms a guide groove; and the guide piece slides in the guide groove, so as to combine the slat with the base.
In one or more embodiments, the slat fastening assembly further includes at least one resilient component, and the slat has a top surface and a bottom surface. The resilient component is disposed on the bottom surface.
In this disclosure, the slat is able to be detachably combined with the base. Fastening or removing the slat does not need to use any tools or additional jigs. It only requires the users to hold the slat with hands. Therefore, the users can quickly replace with the slat of different forms to achieve the purposes of enhancing heat dissipation or changing the decoration effects.
The present invention will become more fully understood from the detailed description given herein below for illustration only, and thus not limitative of the present invention, wherein:
Referring to
As shown in
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In the first embodiment, the first fastening member 200 and the second fastening member 400 are two magnets, the combination of a magnet and a ferrous metal component. Through magnetism attracts, the first fastening member 200 and the second fastening member attract each other. The combination relationship between the first fastening member 200 and the second fastening member 400 can be the combination in other forms, for example, the combination in a tight-fit manner.
As described above, the configuration, the attached structure, the size, etc. of the slat 100, are not limited in this disclosure. For example, in
Referring to
The second embodiment is approximately the same as the first embodiment, except that in the second embodiment the first fastening member 200 and the second fastening member 400 are the combination of the protruding part and the embedded hole. The protruding part is a resilient component, such as the rubber plug. The protruding part is engaged within the embedded hole in a tight-fit manner. In the drawings of this disclosure, it appears that the first fastening member 200 is a protruding part and the second fastening member 400 is the embedded hole. Alternatively, the first fastening member 200 is an embedded hole and the second fastening member 400 is a protruding part.
Likewise, the configuration, the attached structure, the size, etc. of the slat 100, are not limited in the second embodiment. For example, in
Referring to
As shown in
Similarly, in the third embodiment, the first fastening member 200 and the second fastening member 400 are two magnets, the combination of a magnet and a ferrous metal component. Through magnetism attracts, the first fastening member 200 and the second fastening member attract each other. The first fastening member 200 and the second fastening member 400 are the combination of the protruding part and the embedded hole, and the protruding part is a resilient component, such as the rubber plug. The protruding part is engaged within the embedded hole in a tight-fit manner.
Similarly, the configuration, the attached structure, the size, etc. of the slat 100, are not limited in the third embodiment. For example, in
As shown in
Similarly, in the fourth embodiment, the first fastening member 200 and the second fastening member 400 are two magnets, the combination of a magnet and a ferrous metal component. Through magnetism attracts, the first fastening member 200 and the second fastening member 400 attract each other. The first fastening member 200 and the second fastening member 400 are the combination of a protruding part and an embedded hole, and the protruding part is a resilient component, such as the rubber plug. The protruding part combines within the embedded hole in a tight-fit manner.
Similarly, the configuration, the attached structure, the size, etc. of the slat 100, are not limited in the fourth embodiment. For example, in
Referring to
As shown in
The resilient component 500 presses against the bottom surface of the sunken groove track, such that the guide pieces contact the inner wall of the guide grooves 410 tightly, so as to prevent the slat 100 sliding relative to the base 300.
Similarly, the configuration, the attached structure, the size, etc. of the slat 100, are not limited in the fifth embodiment. For example, in
In this disclosure, the slat is able to be detachably combined with the base. Fastening or removing the slat does not need to use any tools or additional jigs. It only requires the users to hold the slat with hands. Therefore, the users can quickly replace with the slat of different forms to achieve the purposes of enhancing heat dissipation or changing the decoration effects.
Number | Date | Country | Kind |
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103220528 | Nov 2014 | TW | national |