Heat dissipating module having auxiliary fan
11304331 ยท 2022-04-12
Assignee
Inventors
Cpc classification
H05K7/20409
ELECTRICITY
H05K7/20145
ELECTRICITY
International classification
Abstract
A heat dissipating module includes a heat dissipating assembly, a centrifugal fan, an airflow guiding hood and an auxiliary fan. The heat dissipating assembly includes a heat dissipating board and fins disposed thereon. Heat dissipating channels are formed between the fins. The centrifugal fan is disposed at a side of the heat dissipating channels. The airflow guiding hood covers the heat dissipating assembly and the centrifugal fan and is provided with a first airflow opening over the centrifugal fan, a second airflow opening over the fins and a third airflow opening at another side of the heat dissipating channels. The auxiliary fan is disposed between the fins and the second airflow opening.
Claims
1. A heat dissipating module comprising: a heat dissipating assembly, comprising a heat dissipating board and fins disposed thereon, and heat dissipating channels being formed between the fins, wherein the fins are formed with a recess portion downward from a top thereof; a centrifugal fan disposed at a side of the heat dissipating channels, wherein an inside of the recess portion has an L-shaped inner wall adjacent to the centrifugal fan; an airflow guiding hood, covering the heat dissipating assembly and the centrifugal fan, and provided with a first airflow opening over the centrifugal fan, a second airflow opening over the fins and a third airflow opening at another side of the heat dissipating channels; an auxiliary fan disposed between the fins and the second airflow opening, wherein the auxiliary fan is received in the recess portion, and the auxiliary fan is a down-blowing axial fan; and a partition disposed between the auxiliary fan and the fins and attached on the L-shaped inner wall.
2. The heat dissipating module of claim 1, wherein two ends of each heat dissipating channel have a first passing opening and a second passing opening, each first passing opening is arranged correspondingly to the centrifugal fan, and each second passing opening is arranged correspondingly to the third airflow opening.
3. The heat dissipating module of claim 2, wherein the auxiliary fan is aslant arranged relative to the heat dissipating board in a manner gradually increasing height from the first passing openings to the second passing openings.
4. The heat dissipating module of claim 3, wherein the recess portion has a slant bottom which gradually increases height from the first passing openings to the second passing openings, and the auxiliary fan is fixed on the slant bottom.
5. The heat dissipating module of claim 1, wherein the heat dissipating board is a thermos-conductive block or a vapor chamber.
6. The heat dissipating module of claim 1, further comprising a bottom plate, wherein the heat dissipating board and the centrifugal fan are mounted on the bottom plate, the bottom plate is formed with an aperture exposing the heat dissipating board, the airflow guiding hood covers and is fixed to the bottom plate, and the airflow guiding hood is extended with an airflow blocking plate abutting against the bottom plate and disposed at a side of the centrifugal fan, which is located apart from the heat dissipating assembly.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
(7) To further disclose the features and technical contents of the invention, please refer to the following description and the drawings. However, the drawings are used for reference and description only, not for limitation to the invention.
(8) Please refer to
(9) As shown in
(10) Also, the fins 12 are formed with a recess portion 121 downward from the top. The inside of the recess portion 121 has an L-shaped inner wall 122 adjacent to the centrifugal fan 2.
(11) As shown in
(12) As shown in
(13) As shown in
(14) As shown in
(15) As shown in
(16) In addition, the airflow guiding hood 3 covers and is fixed to the bottom plate 6. The airflow guiding hood 3 is extended with an airflow blocking plate 34 abutting against the bottom plate 6 and disposed at a side of the centrifugal fan 2, which is located apart from the heat dissipating assembly 1.
(17) As shown in
(18) In addition, the auxiliary fan 4 is disposed between the fins 12 and the second airflow opening 32. Because the auxiliary fan 4 in this embodiment is a down-blowing axial fan, the sown-blowing axial fan will generate a second airflow from the second airflow opening 32 toward the fins 12. The second airflow is guided by the first airflow to jointly accelerate to blow heat out of the third airflow opening 33 to enhance efficiency of heat dissipation of the heat dissipating module 10.
(19) Also, the fins 12 are formed with a recess portion 121 downward from the top. The auxiliary fan 4 is embedded inside the fins 12 so as to make the heat dissipating module 10 keep its original thickness to keep light and thin in volume of the heat dissipating module 10.
(20) Further, the heat dissipating module 10 of the invention further includes a partition 5, the inside of the recess portion 121 has an L-shaped inner wall 122 adjacent to the centrifugal fan 2, and the partition 5 is disposed between the auxiliary fan 4 and the fins 12 and attached on the L-shaped inner wall 122, so the partition 5 at the L-shaped inner wall 122 can block the second airflow and isolate the first airflow to avoid the second airflow from blowing toward the centrifugal fan 2 and stably guide the first airflow to pass the heat dissipating channels 13 to enhance efficiency of heat dissipation of the heat dissipating module 10.
(21) Please refer to
(22) In detail, the auxiliary fan 4 is an up-blowing axial fan, so the up-blowing axial fan generates a second airflow from the third airflow opening 33 toward the second airflow opening 32 via the fins 12, and the first airflow is guided by the second airflow to jointly accelerate to blow heat out of the second airflow opening 32 to enhance efficiency of heat dissipation of the heat dissipating module 10.
(23) Also, the second airflow of this embodiment does not conflict with the first airflow in direction, so the second embodiment can omit the partition 5 of the first embodiment as shown in
(24) Please refer to
(25) In detail, the recess portion 121 has a slant bottom 123 which gradually increases height from the first passing openings 131 to the second passing openings 132. When the auxiliary fan 4 is fixed on the slant bottom 123, the auxiliary fan 4 is aslant arranged relative to the heat dissipating board 11 in a manner gradually increasing height from the first passing openings 131 to the second passing openings 132.
(26) The auxiliary fan 4 of the embodiment is an down-blowing axial fan, so the down-blowing axial fan generates a second airflow aslant toward the third airflow opening 33, and the second airflow is guided by the first airflow to jointly accelerate to blow heat out of the third airflow opening 33 to enhance efficiency of heat dissipation of the heat dissipating module 10.
(27) Also, the second airflow of this embodiment does not conflict with the first airflow in direction, so the third embodiment can omit the partition 5 of the first embodiment as shown in
(28) Please refer to
(29) In detail, the auxiliary fan 4 is a centrifugal fan, so the centrifugal fan generates a second airflow from the second airflow opening 32 toward the third airflow opening 33 via the fins 12, and the first airflow is guided by the second airflow to jointly accelerate to blow heat out of the second airflow opening 32 to enhance efficiency of heat dissipation of the heat dissipating module 10.
(30) Also, the second airflow of this embodiment does not conflict with the first airflow in direction, so the fourth embodiment can omit the partition 5 of the first embodiment as shown in
(31) Please refer to
(32) It will be appreciated by persons skilled in the art that the above embodiments have been described by way of example only and not in any limitative sense, and that various alterations and modifications are possible without departure from the scope of the invention as defined by the appended claims.