HEAT DISSIPATION MODULE
A heat dissipation module comprises an aluminum cooling block and a copper base. The cooling block has a plurality of fins extending outward radially from the periphery of the cooling block. The base fits with the cooling block. A central recess is disposed at the bottom of the cooling block with at least an elongated through hole piercing the cooling block from the recess to the top of the cooling block. The base fits with the recess and has at least a support leg corresponding to the respective through hole to insert into the respective through hole. The heat dissipation module is less in cost and weight and enables the heat source to transmit to the fins of the cooling block rapidly and effectively.
1. Field of the Invention
The present invention is related to a heat dissipation module and particularly to a heat dissipation module, which is capable of removing the heat effectively and lowering the cost greatly.
2. Brief Description of the Related Art
It is known that various electronic devices have been developed with incessantly progress of technology. Taking the most popular electronic device, the computer, as an example, the central processing unit (CPU) on the main board runs in company with the heat generation. The generated heat increases along with better performance of the CPU. In order to keep running normally for the computer, it is necessary to lower the temperature of the CPU. Usually, the prior art to solve the problem of heat dissipation is to add more heat sinks for removing the generated heat outward. The conventional heat sink is made of copper or aluminum. The aluminum heat sink is lighter and cheaper than the copper heat sink but the heat transfer efficiency of the copper heat sink is better than the aluminum heat sink.
In order to overcome the preceding problems, a heat sink shown in
Although the improved heat sink shown in
In order to overcome the deficiencies of the prior art, an object of the present invention is to provide a heat dissipation module, which is capable of not only enhancing the heat transfer efficiency but also lower the cost and the weight thereof effectively.
Accordingly, a heat dissipation module according to the present invention comprises an aluminum cooling block and a copper base. The cooling block has a plurality of fins extending outward radially from the periphery of the cooling block. The base fits with the cooling block. A central recess is disposed at the bottom of the cooling block with at least an elongated through hole piercing the cooling block from the recess to the top of the cooling block. The base fits with the recess and has at least a support leg corresponding to the respective through hole to insert into the respective through hole. The heat dissipation module is less in cost and weight and enables the heat source to transmit to the fins of the cooling block rapidly and effectively.
The detail structure, the applied principle, the function and the effectiveness of the present invention can be more fully understood with reference to the following description and accompanying drawings, in which:
Referring to
The base 12, which is made of copper, is employed to fit with the central recess of the cooling block 11 and provides a plurality of elongated upright support legs 121 corresponding to the through holes 112. That is, the number of the support legs 121 is the same as the number of the through holes 121. Further, the support legs 121 are arranged to have different lengths.
The base 12 fits with the cooling block 11 in such a way of the support legs 121 inserting into the through holes 112 and the base 12 fitting with the central recess at the bottom of the cooling block 11 such that the base 12 is joined to the cooling block 11 as shown in
Referring to
The base 22, which is made of copper, is employed to fit with the central recess of the cooling block 21 and provides a plurality of elongated upright circular support legs 221 corresponding to the through holes 212. That is, the number of the support legs 221 is the same as the number of the through holes 121. Further, the support legs 221 are arranged to have different lengths.
The base 22 fits with the cooling block 21 in such a way of the support legs 221 inserting into the through holes 212 and the base 22 fitting with the central recess at the bottom of the cooling block 21 to enable the heat conduction between the cooling block 21 and the base 22 effectively.
The through holes (112, 212) of the cooling block (11, 21) can be provided with a triangular or polygon periphery and the support legs (121, 221) can be provided with a triangular or polygon cross section respectively instead.
Referring to
It is appreciated that the heat dissipation module according to the present invention has the following advantages:
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- (1) The aluminum cooling block is joined to the copper base to form a complete heat dissipation module instead of the conventional copper heat sink for greatly lowering down the production cost directly.
- (2) The through holes provided in the cooling block are inserted with the support legs of the base such that the cooling block can be attached to the base firmly.
While the invention has been described with referencing to the preferred embodiments thereof, it is to be understood that modifications or variations may be easily made without departing from the spirit of this invention, which is defined by the appended claims.
Claims
1. A heat dissipation module comprising:
- an aluminum cooling block with a plurality of fins extending outward radially from a periphery of said cooling block; and
- a copper base fitting with said cooling block;
- wherein, a central recess is disposed at the bottom of said cooling block to fit with said base, at least an elongated through hole pierces said cooling block from said recess to the top of said cooling block, at least a support leg extends outward from said base to correspond to the respective through hole such that said base is joined to said cooling block firmly in such a way of the respective support leg inserting into the respective through hole.
2. The heat dissipation module as defined in claim 1, wherein the respective through hole has a periphery with a shape of circle, triangle, rectangle or polygon and the respective support leg has a cross-section with a shape corresponding to said periphery.
3. The cooling fin as defined in claim 1, wherein the respective support leg is different from each in length.
Type: Application
Filed: Apr 10, 2008
Publication Date: Oct 15, 2009
Applicant: ASIA VITAL COMPONENTS CO., LTD. (KAOHSIUNG)
Inventor: CHING-HANG SHEN (Kaohsiung)
Application Number: 12/101,076