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1. Field of the Invention
The present invention relates generally to a radiator fan module, and more particularly to an innovative one which is designed to reduce the width and area of its air outlet with outstanding heat dissipation efficacies.
2. Description of Related Art Including Information Disclosed Under 37 CFR 1.97 and 37 CFR 1.98.
The radiator fan module is of great importance to computer products since it directly affects a CPU's performance, stability and service life. So, the radiator fan module is structurally designed in tune with the design trend of computer products.
The present invention is intended to improve a radiator fan module, which comprises a fan assembly, cooling fin and heat pipe. Such a radiator fan module is now widely applied to laptops. Yet some problems of the structural design still remain unresolved.
In addition to an interface of side-blown air outlet 113, the laptop is also provided with optimal assembly position for CD-ROM, network card, video extension terminal and USB drive. However, when a compact laptop is designed, the available area of its periphery is reduced significantly. When the assembly area of aforementioned interfaces is minimized, the type design of the radiator fan module is a key element. In other words, whether the air outlet of the radiator fan module can be further reduced will directly affect the degree of compactness of the laptop. Even so, there is still a technical consideration as to whether the heat dissipation effect of the radiator fan module is affected.
Thus, to overcome the aforementioned problems of the prior art, it would be an advancement if the art to provide an improved structure that can significantly improve the efficacy.
Therefore, the inventor has provided the present invention of practicability after deliberate design and evaluation based on years of experience in the production, development and design of related products.
The enhanced efficacy of the present invention is as follows:
Based on the unique construction of the present invention wherein the “radiator fan module” allows its air outlet to be set into protruding and width-reducing pattern, such that a notched space is formed externally between the inward extended wall and shell seat, and an inward extended heat conductor is formed by the extension of the inner end of the cooling fin. Besides, the inward extended heat conductor is extended from the inner end of the cooling fin to the extended inner space, thus making up width reduction of the cooling fin arising from area reduction of the air outlet for better heat dissipation effect. The notched space can provide a bigger space for accommodating the connectors within the laptop. Thus, the radiator fan module of the present invention allows to reduce greatly the width and area of its air outlet without loss of heat dissipation effect, such that the radiator fan module can be more flexibly applied to compact computer products with improved applicability and industrial benefits.
Although the invention has been explained in relation to its preferred embodiment, it is to be understood that many other possible modifications and variations can be made without departing from the spirit and scope of the invention as hereinafter claimed.
the air outlet 212 is protruded to form an inward extended wall 213, an outward extended wall 214 and an extended inner space 215 set between the air outlet 212 and fan blade 22;
the air outlet 212 is designed into a width-reducing pattern, such that the inward extended wall 213 is located nearby the corresponding center of the fan blade 22;
a notched space 216, formed externally between the inward extended wall 213 and shell seat 21;
an inward extended heat conductor 31, formed by the extension of the inner end of the cooling fin 30; the inward extended heat conductor 31 is located within the range of the extended inner space 215, and provided with a fan blade corresponding side 311 that is located correspondingly to a peripheral position of the fan blade 22.
Of which, the cooling fin 30 is made of multiple heat-conducting fins 32 arranged vertically or horizontally.
Of which, said heat conductor 40 is either a heat pipe (including: round or flat heat pipe) or hot plate.
Of which, the cooling end 41 of the heat conductor 40 can be mated with either side of the cooling fin 30 (including: upper, lower, left and right sides).
Of which, the fan blade corresponding side 311 of the inward extended heat conductor 31 is available with either of a curved, stepped or corrugated surface. Referring to
Referring to
Based on the aforementioned structural configuration, the core of said radiator fan module lies in that, the air outlet 212 is designed into a protruding and width-reducing pattern, such that a notched space 216 is located externally between the inward extended wall 213 and shell seat 21. Moreover, the inward extended heat conductor 31 is extended from the inner end of the cooling fin 30. With the design of the radiator fan module, when a compact laptop is designed and the available area of its periphery is reduced significantly, the air outlet 212 can be designed into a protruding and width-reducing pattern, such that the area of radiator fan module's air outlet can be reduced greatly. Besides, the inward extended heat conductor 31 is extended from the inner end of the cooling fin 30 to the extended inner space 215, thus making up substantial width reduction of the cooling fin arising from area reduction of the air outlet 212 for better heat dissipation effect. Also, a notched space 216 is located externally between the inward extended wall 213 and shell seat 21. The notched space 216 can provide a bigger space for accommodating the connectors within the laptop.
Of which, an inward bulging margin 23 (shown in
Referring to
Moreover, when the cooling fin 30 is configured transversely (when the radiator fan is located transversely), said cooling fin 30 and the vertical surface of the fan blade 22 of the fan assembly 20 are arranged in perpendicular to each other or in a staggered state (note: this depends on the vertical angle of the fan blade 22). With the configuration design of the cooling fin, as shown in
Number | Date | Country | Kind |
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099211888 | Jun 2010 | TW | national |