This Nonprovisional application claims priority under 35 U.S.C. § 119(a) on Patent Application No.10-2005-0005978 filed in Korea on Jan. 21, 2005 the entire contents of which are hereby incorporated by reference.
1. Field of the Invention
The present invention relates to a heat dissipation sheet for a flat display apparatus and a flat display apparatus including the same.
2. Description of the Background Art
Generally, a flat display apparatus comprises a liquid crystal display (LCD), a filed emission display (FED), an organic electroluminescence panel (EL), a plasma display apparatus, and the like. Particularly, in the plasma display apparatus, when an inert gas existing between a front substrate and a rear substrate which are made of soda-lime glass is discharged by a high frequency voltage, vacuum ultraviolet rays are radiated and phosphors formed in the plasma display apparatus are light-emitted by the vacuum ultraviolet rays. As a result, images are implemented.
As shown in
Further, the plasma display apparatus comprises a filter 150 which is formed on a front surface of the plasma display panel 120 and spaced a give distance from the plasma display panel 120 by adhering a film on a transparent glass substrate, a finger spring gasket 160 which supports the filter 150 and electrically connects the filter 150 to the back cover 112, and a module supporter 180 which supports a filter supporter 170 and the plasma display apparatus including the driving section 130.
As shown in
However, there is a problem in that heat dissipating efficiency of the heat dissipation sheet for dissipating the heat generated by driving the plasma display panel to the outside is low, which causes misdischarge in the plasma display panel.
Further, if heat generated by driving the plasma display panel is not sufficiently dissipated to the outside of the plasma display panel, the driving section for driving the plasma display panel is damaged due to the heat. This causes a reduction in the quality of the plasma display apparatus.
The reduction in heat dissipating efficiency of the heat dissipation sheet is a problem of not only the above-described plasma display apparatus but other flat display apparatuses that includes a heat dissipation sheet.
Accordingly, an object of the present invention is to solve at least the problems and disadvantages of the background art.
The present invention provides a heat dissipation sheet for a flat display apparatus capable of efficiently dissipating heat generated by driving the flat display apparatus and a flat display apparatus including the same.
According to one aspect of the present invention, there is provided a heat dissipation sheet for a flat display apparatus comprising a metal mixture and an adhesive.
According to another aspect of the present invention, there is provided a flat display apparatus comprising a display panel, a frame formed on a rear surface of the display panel, and a heat dissipation sheet including a metal mixture and an adhesive, formed between the display panel and the frame.
According to still another aspect of the present invention, there is provided a flat display apparatus comprising a display panel, a frame formed on a rear surface of the display panel, and a heat dissipation sheet including a graphite layer and an adhesive layer, formed between the display panel and the frame.
The present invention can prevent a misoperation of a flat display apparatus by increasing heat dissipating efficiency of a heat dissipation sheet.
The accompany drawings, which are included to provide a further understanding of the invention and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and together with the description serve to explain the principles of the invention. In the drawings:
Reference will now be made in detail to embodiments of the present invention, examples of which are illustrated in the accompanying drawings.
A flat display apparatus according to the present invention comprises a display panel, a frame formed on a rear surface of the display panel, and a heat dissipation sheet including a metal mixture and an adhesive, formed between the display panel and the frame.
The metal mixture comprises silicon resin and a conductive material.
A composition ratio of the conductive material ranges from 10% to 50% of a total composition ratio of the heat dissipation sheet.
The conductive material comprises one or more of Cu, Ag, Ti, Zn, Cr, Al and Au.
The metal mixture comprises urethane resin and a conductive material
A composition ratio of the conductive material ranges from 10% to 50% of a total composition ratio of the heat dissipation sheet.
The conductive material comprises one or more of Cu, Ag, Ti, Zn, Cr, Al and Au.
The resistance of the heat dissipation sheet ranges from 10Ω to 50Ω.
A flat display apparatus according to the present invention comprises a display panel, a frame formed on a rear surface of the display panel, and a heat dissipation sheet including a graphite layer and an adhesive layer, formed between the display panel and the frame.
The resistance of the heat dissipation sheet ranges from 10Ω to 50Ω.
A heat dissipation sheet for a flat display apparatus according to the present invention comprises a metal mixture and an adhesive.
Hereinafter, exemplary embodiments of the present invention will be described in detail with reference to the attached drawings.
As shown in
The plasma display panel 610 comprises a front substrate (not shown) and a rear substrate (not shown) which are coupled to each other at a given distance.
The functional filter 620 is formed as a film type and adhered to the front surface of the plasma display panel 610 by a laminating method and many other methods.
The heat dissipation sheet 630, like the functional filter 620, is adhered to the plasma display panel 610 or the frame 640 by a laminating method and many other methods. The plasma display panel 610 is adhered to the frame 640 by the heat dissipation sheet 630, and at the same time, heat generated by driving the plasma display apparatus is transmitted to the frame 640 through the heat dissipation sheet 630.
As shown in
The adhesive and the metal mixture in the heat dissipation sheet 630 each may be formed as the form of a layer. That is, one metal mixture layer may be formed using the metal mixture and the adhesive may be formed on an upper surface and a lower surface of the metal mixture layer as an adhesive layer, respectively.
Various materials can be used as a material of the metal mixture. However, the metal mixture comprising silicon resin and a conductive material or the metal mixture comprising urethane resin and a conductive material are preferable.
Silicon resin has a chemically thermal oxidization stability even at a high temperature and is excellent in water-resistance and an electrical insulating property. Thus, if silicon resin is mixed with a highly conductive material, the heat dissipating efficiency of the heat dissipation sheet 630 increases.
Since urethane resin, like silicon resin, has a chemically thermal oxidization stability even at a high temperature and is excellent in water-resistance, an electrical insulating property and adhesiveness, urethane resin is suitable as a sealing material.
Any materials having a thermally conductive characteristic can be used as the conductive material. However, it is preferable that the conductive material comprises one or more of Cu, Ag, Ti, Zn, Cr, Al and Au.
It is preferable that a composition ratio of the conductive material in both the metal mixture including silicon resin and the conductive material and the metal mixture including urethane resin and the conductive material ranges from 10% to 50% of a composition ratio of the heat dissipation sheet 630.
The conductive material is selected so that a total resistance of the heat dissipation sheet 630 ranges from 10Ω to 50Ω. The reason for the selected total resistance range is that if the composition ratio of the conductive material added to the heat dissipation sheet 630 exceeds 50% and a resistance of the conductive material exceeds 50Ω, an adhesive strength between the plasma display panel 610 and the frame 640 decreases. Moreover, a large amount of heat generated by driving the plasma display apparatus does not dissipate efficiently to the frame 640 through the heat dissipation sheet 630 due to the relatively high resistance of the conductive material.
As shown in
The graphite layer 630a is a mineral belong to the hexagonal system in the form of carbon and chemicalky stable. Therefore, the graphite layer 630a possesses an excellent thermal oxidization stability and a heat-resistant property even at a high temperature.
The conductive material is selected so that a total resistance of the heat dissipation sheet 630 ranges from 10Ω to 50Ω.
The above-described heat dissipation sheet can be applied to other flat display apparatuses such as a LCD and a FED as well as the above-described plasma display apparatus.
It will be apparent to those skilled in the art that various modifications and variation can be made in the present invention without departing from the spirit or scope of the invention. Thus, it is intended that the present invention cover the modifications and variations of this invention provided they come within the scope of the appended claims and their equivalents.
Number | Date | Country | Kind |
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10-2005-0005978 | Jan 2005 | KR | national |