This application claims the priority benefit of Taiwan application serial no. 96113972, filed on Apr. 20, 2007. The entirety the above-mentioned patent application is hereby incorporated by reference herein and made a part of specification.
1. Field of the Invention
The invention relates to a clip module and, more particularly, to a clip module which is used for fixing a heat dissipation apparatus.
2. Description of the Related Art
In recent years, along with the enormous progress of the science and technology, the number of transistors included in various type of electronic components becomes larger and larger, and then the working temperature of the electronic components becomes higher and higher. Taking a central processing unit (CPU) of a computer as an example, since the operating speed of the CPU is continuously increased, the heat generating power of the CPU also continuously rises. To prevent the CPU from being overheated and the computer from loosing effectiveness temporarily or permanently, the computer needs to have sufficient heat dissipation ability to enable the CPU to work normally. To dissipate the heat energy generated by the CPU which is computing in a high speed and to make the CPU maintain the normal state when the CPU is computing in the high speed, in the conventional technology, a heat dissipation apparatus is directly assembled on the CPU (or other heat sources) to make the heat energy generated by the CPU rapidly dissipated to the ambient environment via the heat dissipation apparatus.
In the conventional technology, the clip module 130 includes a body 132, a fastener 134 and a cam pressing element 136. The body 132 is provided across the heat sink 120, and is suitable to press the heat sink 120 to make the heat sink 120 tightly attached to the heat source 10. One end of the body 132 is fastened to a hook 112 of the RM 110, and the fastener 134 is connected to the other end of the body 132 and is suitable to be fastened to another hook 114 of the RM 110. In addition, the cam pressing element 136 is pivotally connected to the fastener 134 via a bolt 138 to make the cam pressing element 136 rotate around the axis L (X axis) of the bolt 138 and further apply a downward pressure to the body 132.
Since the cam pressing element has only one force applying point, which makes force application difficult, and the stress is excessively concentrated on the cam pressing element, developing a new clip module is needed to be done and is the emphasis of the invention.
The invention provides a clip module used for fixing a heat dissipation element to a heat source steadily.
The invention provides a clip module which is applied to fix a heat dissipation element on a base. The clip module includes a body, two pressing elements, a fastener and two linkage elements. The body has a pressing part and a pivot part, wherein the pressing part is suitable to press the heat dissipation element, and the pivot part is located at one end of the body. The pressing element has a first linkage point, and one end of each of the two pressing elements is coupled to the pivot part. The fastener is suitable to be fastened to the base and has two second linkage points. The linkage elements connect the first linkage points and the second linkage points, respectively. The pressing elements rotate around the pivot part to drive the linkage elements to rotate around the corresponding second linkage points so that the fastener is fastened to the base and the pressing part presses the heat dissipation element.
In one embodiment of the invention, the above base has a first fastening part, and another end of the body which is opposite to the pivot part has a third fastening part, and the third fastening part is fastened to the first fastening part.
In one embodiment of the invention, the above first fastening part has two hooks, and the third fastening part has two fastening holes which are suitable to be fastened with the hooks.
In one embodiment of the invention, the above base has a second fastening part, and the fastener has a corresponding fourth fastening part which is fastened to the second fastening part.
In one embodiment of the invention, the above second fastening part has two hooks, and the fourth fastening part has two fastening holes which are suitable to be fastened with the hooks.
In one embodiment of the invention, the above fastener has a slide slot which is located between the two linkage points, and the pivot part slides in the slide slot when the pressing elements relatively rotate around the pivot part so that the fastener is fastened to the base.
Since the invention utilizes pressing elements to drive these linkage elements to relatively rotate around these second linkage points to make the fastener move to a locking position from a release position, a user can apply force easily, and a clip module can also make a heat dissipation element fixed to a heat source with relatively uniform external force.
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.
In the embodiment, the base 300 is, for example, a retention module provided on a printed circuit board 600. The heat dissipation element 400 is, for example, an extrusion heat sink, a radiating fin or heat dissipation elements with other appropriate type. The heat source 500 is, for example, the central processing unit (CPU) provided on the circuit board 600.
In the embodiment, since the base 300 has the first fastening part 310 and the second fastening part 320, the clip module 200 can be assembled to the base 300 by fastening the third fastening part 214 and the fourth fastening part 234 of the clip module 200 to the first fastening part 310 and the second fastening part 320 of the base 300, respectively. However, the mode of assembling the clip module 200 to the base 300 is not limited by the method of fastening corresponding fastening parts to each other. For example, one end of the clip module 200 can be connected to one side of the base 300 via a pivotal connecting mode, and the other end of the clip module 200 can be assembled to the other side of the base 300 via a fastening part. Therefore, the embodiment only is an example to illustrate that the invention can be carried out and is not used to limit the scope of the invention.
The pressing element 220 has a first linkage point 222 and a pressing part 226. One end of the pressing element 220 is coupled to the pivot part 216 of the body 210, and the pressing part 226 is located at the other end of the pressing element 220, and the first linkage point 222 is located between the two ends of the pressing element 220. The fastener 230 has two second linkage points 232 which are opposite to each other, a fourth fastening part 234 and a slide slot 236. The fourth fastening part 234 is suitable to be fastened to the second fastening part 320 (as shown in
When the clip module 200 is assembled to the base 300 to make the third fastening part 214 of the body 210 and the fourth fastening part 234 of the fastener 230 fastened to the first fastening part 310 and the second fastening part 320 of the base 300, respectively, the pressing part 212 of the body 210 is located above the heat dissipation element 400 (as shown in
In further details, when the fastener 230 is located at the release position shown in
In the embodiment, one end of each pressing element 220 can be connected to the pivot part 216 of the body 210 in a rivet connecting mode or a bolt locking mode to make the pressing elements 220 be suitable to rotate relatively to the pivot part 216 of the body 210. Similarly, two ends of each linkage element 240 can also be connected to the first linkage point 222 of each pressing element 220 and each second linkage element 232 of the fastener 230 in the rivet connecting mode or the bolt locking mode, so that the pressing elements 220 are suitable to rotate relatively to the linkage elements 240 and drive the linkage elements 240 to rotate relatively to the second linkage points 232 of the fastener 230.
In addition, the first fastening part 310 of the base 300 has, for example, two hooks, and the third fastening part 214 of the body 210 has, for example, two fastening holes which are suitable to be fastened to the hooks. The fastening holes are located at, for example, the two opposite ends of the third fastening part 214 to make the connecting position of the pressing part 212 and the third fastening part 214 be located between the fastening holes. Similarly, the second fastening part 320 of the base 300 has, for example, two hooks, and the fourth fastening part 234 of the fastener 230 has, for example, two fastening holes which are suitable to be fastened to the hooks. The fastening holes are located at, for example, the two opposite ends of the fourth fastening part 234 to make the second linkage points 232 of the fastener 230 be located between the fastening holes.
However, the invention is not limited by the above embodiment. For example, the third fastening part 214 of the body 210 and the fourth fastening part 234 of the fastener 230 can have two hooks, respectively, and the first fastening part 310 and the second fastening part 320 of the base 300 can respectively have two fastening holes which are suitable to be fastened to the hooks. The third fastening part 214 of the body 210 and the fourth fastening part 234 of the fastener 230 can also be fastened to the first fastening part 310 and the second fastening part 320 of the base 300 in other modes. In addition, the number of the hooks or the fastening holes of the first fastening part 310, the second fastening part 320, the third fastening part 214 and the fourth fastening part 234 is not limited to be two, and can also be one or more.
To sum up, since the clip module of the invention drives a fastener to move from a release position to a locking position and makes the pressing part of the body move downward to fix a heat dissipation element to a heat source by pushing two pressing elements to relatively rotate, the clip module of the invention has two force applying points and a user can apply force easily and make the clip module uniformly bear the force, and then stresses cannot be concentrated on the two pressing elements, further to enhance the damage resistance of the clip module.
Although the present invention has been described in considerable detail with reference to certain preferred embodiments thereof, the disclosure is not for limiting the scope of the invention. Persons having ordinary skill in the art may make various modifications and changes without departing from the scope and spirit of the invention. Therefore, the scope of the appended claims should not be limited to the description of the preferred embodiments described above.
Number | Date | Country | Kind |
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96113972 | Apr 2007 | TW | national |