1. Field of the Invention
The present invention relates to a heat dissipating device.
2. Description of Related Art
During operation of an electronic component of an electronic device such as a central processing unit (CPU) of a computer, a large amount of heat is often produced. The heat must be quickly removed from the CPU to prevent unstable operation of or damage to the CPU. A heat sink is typically attached to an outer surface of the CPU to absorb the heat from the CPU. The heat absorbed by the heat sink is then dissipated to the air via a fan mounted to the heat sink.
Typically, the fan is mounted to the heat sink via a plurality of screws extending through the fan and screwed into the heat sink. It is cumbersome and inefficient to manipulate the screws when attaching or detaching the fan to or from the heat sink.
Consequently, it is required to provide a heat dissipating device which facilitates mounting or removing the fan to or from the heat sink.
A heat dissipation device includes a heat sink and a fan. The heat sink includes two first fins, and a plurality of second fins between the first fins. A locking portion extends outward from each first fin. The locking portions are located higher than the second fins. A sliding guideway is defined in each locking portion. Two flanges extend from two opposite sides of the fan respectively. The flanges are capable of engaging in the guideways of the heat sink to mount the fan to the heat sink.
Other advantages and novel features of the present invention will become more apparent from the following detailed description of preferred embodiment when taken in conjunction with the accompanying drawings, in which:
Referring to
The heat sink 10 includes a base 12, two spaced first fins 14 extending from the base 12, and a plurality of second fins 16 extending in parallel from the base 12 between the first fins 14. Two generally U-shaped locking portions 15 are formed oppositely on top portions of the first fins 14 respectively. The locking portions 15 are higher than the second fins 16. Two opposite sliding guideways 151 are defined in the locking portions 15 respectively. Each locking portion 15 includes a bottom wall 152 extending outward from the top portion of the corresponding first fin 14, a sidewall 154 extending upward from a free side of the bottom wall 152, and a top wall 156 extending inward from a top edge of the sidewall 154. The bottom walls 152 are generally located in a same plane with the top portions of the second fins 16. Two recessed portions 158 are defined in each bottom wall 152. Each recessed portion 158 has an arc-shaped bottom wall.
Referring also to
Referring also to
To detach the fan 20 from the heat sink 10, the fan 20 is pushed to disengage the blocks 222 of the flanges 22 from the recessed portions 158 of the bottom wall 152, the fan 20 is thus ready to be detached from the heat sink 10 along the guideways 151.
Alternatively, the blocks 222 can be formed on another surface of the flanges 22 respectively, for example, a lateral surface or top surface of the flange. Correspondingly, the recessed portions 158 are defined in an inner surface of the sidewall 154 or a bottom surface of the top wall 156.
It is to be understood, however, that even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and function of the invention, the disclosure is illustrative only, and changes may be made in detail, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.
Number | Date | Country | Kind |
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200710200509.0 | Apr 2007 | CN | national |