Heat sink and its assembly
The present invention discloses a heat sink assembly comprising a plurality of heat sinks having the same shape and being latched by at least one fixing bar, so that the heat sinks and the fixing bar can be connected together to form the heat sink assembly, enabling each heat sink to be placed individually onto a flat surface and be erected securely on the flat surface without falling down.
1. Field of the Invention
The present invention relates to heat sinks, more particularly to a heat sink assembly comprising a plurality of heat sinks having the same shape and being latched by a fixing bar, so that the heat sinks and the fixing bar can be connected together to form the heat sink assembly, enabling each heat sink to be placed individually onto a flat surface and be erected securely on the flat surface without falling down.
2. Description of the Related Art
At present, the development of information technology has entered into a new era, and various information products are derived from the computer. The development process of information products is not only fast, but also brings tremendous convenience and improvements to our life, and thus these information products become an integral part of our life. In recent years, the population of computer users increases constantly, and consumers have more and more requirements on computers. In addition to the light, thin, short and compact requirements, but the computer also requires a fast computation speed, a high stability, a dense component function and a low price. With such requirements, the clock of the central processing unit (CPU) and the density of transistors keep on increasing. As a result, the power consumed is getting larger and larger, and thus the quantity of heat produced is getting amazingly higher and higher.
Since the density of transistors of a conventional CPU is not high and the traditional CPU will not produce too much heat, therefore it is not necessary to install a heat sink onto the conventional CPU. On the other hand, the present products produce too much heat, and thus if a CPU is not installed onto the surface of the CPU, the CPU will have a risk of being destroyed by overheat. Therefore, the ways of lowering the temperature at the surface of the CPU during its operation such that the computer will not crash due to overheat and effectively maintaining the normal operation of the computer have become an important urgent issue now.
Further, with the high demands from the e-Commerce market, computer system manufacturers will make substantial changes, because the personal computer not only requires a fast computation speed and a large storage capacity, but also treats the personal computer as a server which is turned on all year round and plays the important roles of an internal system management, an external link and data access. Therefore, the stability of the personal computer is very important, and the system crash due to overheat is a big issue and inconvenient matter to computer users. The way of effectively achieving the heat dissipations for CPU is a big challenge to the computer industry. In other words, it is necessary to solve the issue of the heat dissipation for CPUs when developing a computer with a higher speed. In addition, the heat dissipation for other electronic components (such as a memory) in a computer is also a major issue as well as a hot discussion topic in the computer industry.
The structure of the conventional heat dissipating components for CPUs is divided into aluminum compressed fins or copper fins, and these fins come with various different shapes and structures. Many patents have been granted for these structures. Please refer to
However, there are many slots or openings in most of the heat sink assembly designs and the heat sinks may fall easily before the heat sinks are connected with each other. It makes the manufacturing process very complicated, increases the overall price, and slows down the manufacture of the heat sink assembly. As to the economy, it is a win-win situation for both of the manufacturers and consumers to achieve a fast assembling with a low cost while keeping the same or even better effects (such as the heat dissipation effect). Therefore, the way of developing an appropriate heat sink to achieve the foregoing objectives with ease not only brings tremendous convenience to the extensive consumers, but also makes a substantial breakthrough for the information industry.
SUMMARY OF THE INVENTIONIn view of the shortcomings of the prior art, the inventor of the present invention conducted extensive researches and experiments, and finally developed a heat sink and its assembly in accordance with the invention.
The primary objective of the present invention is to provide a heat sink assembly which comprises a plurality of heat sinks, each heat sink further comprises a board member, a plurality of first extended boards and at least one second extended board; wherein the first extended board is disposed at one edge of the board member and extended towards one lateral surface away from the board member, and the second extended board is disposed between any two adjacent first extended boards and extended towards another lateral surface away from the board member. The board members, the first extended board or the second extended board comprises at least one embedded connection hole, at least one fixing bar, and a plurality of first latch members disposed on the fixing bar, and the first latch member is latched into the embedded connection hole, such that when the heat sinks are connected next to each other, the second extended board is inserted into the position of the first extended boards between two adjacent heat sinks, so that the second extended board of the heat sink is clamped between the first extended boards adjacent to the heat sink, and the moving direction of the second extended boards is restricted by the first extended board and integrated to form a heat sink assembly. The first latch member of the fixing bar is latched into the embedded hole of each heat sink, so that the heat sink and the fixing bar are connected together without being loosened apart. In addition, if each heat sink is placed individually onto a flat surface, the heat sink will be erected securely on the flat surface without falling down due to the support provided by the first and second extended boards.
Another objective of the present invention is to set a latch member on the fixing bar at the position corresponding to each embedded connection hole, such that each of the heat sinks connected to the fixing bar will not be loosened apart.
A further objective of the present invention is to set one first latch member on the fixing bar at an interval of at least one embedded hole, and the embedded hole is latched by the first latch member of different fixing bars, so that the heat sinks are latched individually onto different fixing bars and will not be loosened apart.
Another further objective of the present invention is to latch any one of the fixing bars into an embedded hole of at least one heat sink of another fixing bar, so that the heat sinks at different fixing bars are connected to other fixing bars at the same time, and thus giving a more secure connection to the heat sinks.
The above and other objects, features and advantages of the present invention will become apparent from the following detailed description taken with the accompanying drawings.
BRIEF DESCRIPTION OF THE DRAWINGS
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The first latch member 90 according to a preferred embodiment as shown in
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While the invention has been described by means of specific embodiments, numerous modifications and variations could be made thereto by those skilled in the art without departing from the scope and spirit of the invention set forth in the claims.
Claims
1. A heat sink assembly, comprising:
- a plurality of heat sinks, and said each heat sink further comprising:
- a plurality of first extended boards, being disposed on at least one edge of a board member and extended in a direction towards a lateral side away from said first extended board; and
- at least one second extended board, being disposed on said first extended board between any two adjacent board members and extended in a direction towards another lateral side away from said first extended board;
- thereby said second extended board of said heat sink being inserted into a position of said first extended board between any two adjacent heat sinks, so that said second extended board of said heat sink being clamped between said adjacent first extended boards and said heat sinks constituting said heat sink assembly.
2. The heat sink assembly of claim 1, wherein said board member of said heat sink, said first extended board and said second extended board comprises at least one embedded connection hole and at least one fixing bar, and said fixing bar individually comprises a first latch member, and said first latch member is latched into said embedded connection hole, so that said heat sink assembly is latched into said embedded connection hole by said first latch member to couple said heat sinks with said fixing bar.
3. The heat sink assembly of claim 2, wherein said board member comprises a plurality of cutting lines, such that a folded section is formed by folding board member between some of said cutting lines and said embedded connection hole is disposed on said folded section.
4. The heat sink assembly of claim 2, wherein said board member, said first extended board and said second extended board individually comprises a recession around said embedded connection hole.
5. The heat sink assembly of claim 2, wherein said first latch member is disposed on at least one linear position of said fixing bar, and said first latch member aligns precisely with said each embedded connection hole, and said first latch member is latched precisely into said embedded connection hole of said adjacent heat sinks, such that said all heat sinks are coupled with said fixing bar.
6. The heat sink assembly of claim 2, wherein said first latch member is disposed on at least one linear position of said fixing bar, and said first latch member is aligned precisely with said each embedded connection hole and said first latch member is latched precisely into said embedded connection hole of said adjacent heat sinks, so that said all heat sinks are coupled with said fixing bar.
7. The heat sink assembly of claim 2, wherein said first latch member is disposed on at least one linear position of said fixing bar, and at least one embedded connection hole is disposed between said first latch members at different linear positions, such that any two adjacent heat sinks are latched by said first latch members of different fixing bars and said heat sinks are latched onto said different fixing bars.
8. The heat sink assembly of claim 2, wherein said first latch member comprises a neck section, and one end of said neck section is coupled with said fixing bar, and the other end of said neck section comprises two shoulder sections, and said shoulder section is tapered from the end coupled to said neck section to the end away from said neck section, so that both sides of said shoulder section form an aslant surface, and said two said shoulder section comprises an open groove.
9. The heat sink assembly of claim 2, wherein said first latch member comprises a neck section, and one end of said neck section is coupled with said fixing bar, and the other end of said neck section comprises a shoulder section, and said shoulder section is tapered from the end coupled to said neck section to the end away from said neck section, so that said shoulder section forms an aslant surface.
10. The heat sink assembly of claim 7, wherein said one fixing bar is latched to said embedded connection hole of said at least one heat sink latched to said other fixing bar.
11. A heat sink assembly, comprising:
- a plurality of heat sinks, each comprising:
- a plurality of first extended boards, being disposed on an edge of said board member and extended in a direction away from a lateral side of said board member;
- at least one second extended board, being disposed between any two adjacent first extended boards and extended in a direction away from another lateral side of said board member; and
- a flat board, being disposed on another edge of said board member;
- thereby said second extended board of said heat sink being inserted between any two adjacent first extended boards, and said second extended board of said heat sink being clamped between said adjacent first extended boards, and said heat sinks constitute a heat sink assembly.
12. A heat sink, comprising:
- a board member;
- a plurality of first extended boards, being disposed on at least one edge of said board member and extended in a direction away from a lateral side of said board member; and
- at least one second extended board, being disposed between any two adjacent first extended boards and extended in a direction away from another lateral side of said board member.
Type: Application
Filed: Jun 3, 2004
Publication Date: Dec 8, 2005
Applicant: MAKUHARI CORPORATION (Sanchung City)
Inventor: Tsan-Jung Chen (Taipei Hsien)
Application Number: 10/859,228