Title of Invention

LIQUID CRYSTAL DISPLAY DEVICE

Abstract Without housing a bare chip type liquid crystal driver within a package, to surely shield or absorb the light which reaches the liquid crystal driver (107) so that erroneous display due to the photoelectric effect can be prevented. A light shielding tape (109) is affixed to the top surface of an upper panel (101) of a liquid crystal display panel (10) at an area which is opposite to the mounting area of a liquid crystal driver (107) mounted on the bottom surface of the upper panel (101). The light shielding tape (109) serves to shield the outer light incident on the liquid crystal driver (107). A diffusion sheet (40) composed of a light diffusing area (401)and a light absorbing area (402) located on the outer periphery thereof is arranged below the liquid display panel (10). The light diffusing area (401) serves to diffuse illumination light from a light source (202) to the liquid crystal display panel (10) and the light absorbing area (402) serves to absorb the extraneous light incident on the liquid crystal driver (107).
Full Text LIQUID CRYCTAL DISPLAY DEVICE
The present inven-tion relates to a liquid crystal display device packaged or mounted on a variety of electric appliances such as a portable telephone terminal, and more particularly to a liquid crystal display device capable of assuring lightproofing of a bare-chip type liquid crystal driver. 2.Description of the related Art
Conventionally, in a liquid crystal display device to be mounted in a variety of electric appliances, a bare chip constituting a liquid crystal driver therefor is housed in a package so that the light reaching the bare chip is shielded.
With recent progress of low-profiling and downsizing of a variety of electric appliances, a system of mounting or packaging the liquid crystal driver has been shifted from surface mounting, in which a chip is completely light-shielded by a molding material, to COB {Chip on Board), TCP (Tape Carrier Package) and COG (Chip on Glass) . In these systems , in which a bare chip of the liquid crystal driver is-mounted on a circuit board, the bare chip is susceptible to influence by

light .
However, in the liquid crystal display device as described above, in which display is generally made by reflection of light, the bare chip which is not housed in a package ts susceptible to influence by reflected light for display. Then, because of the reflected tight, the liquid crystal driver gives rise to photoelectric effects leading to erroneous display. In addition, mounting the bare chip in a package hinders low-profiling and down-sizing of electric appliances.
The present invention intends to solve the conventional problem as stated above and to provide a liquid crystal display device capable of surely shielding or absorbing light to reach a liquid crystal driver to prevent erroneous display due to the photoelectric effect of the liquid crystal
driver.
Especially the object of the present invention is to prevent erroneous display due to the photoelectric effect of the liquid crystal driver in a very thin type of the liquid crystal display device.
In order to solve the above problem, the liquid

crystal display device comprises a liquid crystal driver mounted on a bottom surface of an upper panel constituting a liquid crystal display panel and a light shielding film affixed to a top surface of the upper panel at an area which is opposite to a mounting position of the liquid crystal driver and serves to shield extraneous light incident on the liquid crystal driver , In accordance with the present invention, without housing the bare chip type liquid crystal driver within a package, the light which reaches the liquid crystal driver is surely shielded or absorbed so that erroneous display due to the photoelectric effect can be prevented,
The present invention relates to a liquid crystal display device which comprises:
a liqpuid crystal panel constituted by a first plate disposed on a displaying side, a second plate disposed on a reverse side of the displaying side, and liquid crystal cells held therebetween;
a liquid crystal driver electrically connected with the liquid crystal panel through a circuit pattern;
a light shielding material disposed on the displaying side of said liquid crystal driver so as to prevent an outer light from being incident to said liquid crystal driver. The shielding film surely

shields the light to reach the liquid crystal driver.
Preferably the present invention further comprises a diffusion sheet located below the liquid crystal display panel and composed of a light diffusing area and a light absorbing area located on the outer periphery thereof, the light diffusing area serving to diffuse light from a light source to the liquid crystal display panel, and the light absorbing area serving to absorb the extraneous light incident on the liquid crystal driver. The tight absorbing area of the diffusing sheet absorbs the extraneous light incident on the liquid crystal driver so that the light, to be transmitted to the liquid crystal driver is surely shielded.
Preferably the present Invention is characterized In that the light which reflects from said diffusion sheet to reach the liquid crystal driver is shielded by resin applied for protecting a transparent electrode of the liquid crystal display panel. The resin shields the light reflected by the diffusion sheet to transmit to the liquid crystal driver.
Preferably the invention Is characterized in that the light shielding film, light absorbing area of the diffusion sheet and resin are colored In black. This configuration improves the shielding effect of light to reach the liquid crystal driver.

Brief Description of Fig. 1 is a perspective view of the exploded main part of a liquid crystal display device according to a first embodiment of the present invention.
Fig. 2 is a side view of the liquid crystal panel portion of the liquid crystal display device according to the first embodiment of the present invention.
Fig. 3 is a side view of the entire configuration of the liquid crystal display device according to the first embodiment of the present invention
Fig. 4 is a side view of the liquid crystal panel portion of the liquid crystal display device according to the second embodiment of the present invention.
Fig. 5 is a side view of the liquid crystal panel portion of the liquid crystal display device according to the third embodiment of the present invention.
Fig. 6 is a side view of the liquid crystal panel portion of the liquid crystal display device according to the fourth embodiment of the present invention.
Description of the preferred Embodiments
Embodiment 1

Now referring to Figs. 1 to 3, an explanation will
be given of a first embodiment of the present invention .
Fig. 1 is a perspective view of the exploded main part
of a liquid crystal display device according to the
first embodiment of the present invention. Fig. 2 is
a side view of the liquid crystal panel portion of the
liquid crystal display device according to the
embodiment of the present invention. Fig, 3 is a side
view of the entire configuration of the liquid crystal
display device according to the embodiment of the
present invention. ^
The liquid crystal display device to be mounted in a portable telephone terminal, as seen from Figs. 1 to 3, includes a 10, a circuit board
20 and a holder 30 for holding the liquid crystal display panel 10 on the circuit board 20.
The liquid display panel 10, as apparent from Fig. 2, includes an upper panel 101 as a first plate , a lower panel 102 as a second plate, an upper polarized plate 103 stacked on the upper surface of the upper panel 101, a lower polarized plate 104 stacked on the lower surface of the lower panel 102, a reflection plate 105 affixed to the lower surface of the lower polarized plate and having a certain reflectivity and-permittivity, a first transparent electrode 106A arranged on the bottom

surface of the upper panel 101 opposite to the lower panel 102, a second transparent electrode 106B arranged on a upper surface of the lower panel 102, liquid crystal cell 100 sandwiched between the upper and lower panel 101,102 and a liquid crystal driver 107 electrically connected to the first transparent electrode 106A. 100s Is a seal portion for sealing the liquid crystal celt 100. The one end of a film carrier 108 Is connected to the upper panel 101 opposite to a mounting area of the liquid crystal driver 107, whereas the other end of the film carrier 108 is folded bacic to the bottom surface of the liquid crystal panel 10. The folding-bacic terminal Is connected to a connector 201 mounted on the circuit board 20. The film carrier 108 consists of a resin film and circuit pattern formed on the resin film, and also act as a heat seal. A light shielding film
109 Is affixed to the upper surface of the upper panel 101 opposite to the mounting area of the liquid crystal driver 107 and a connecting portion of "tbe film carrier 108. The light shielding film 109 Is colored In black In order to enhance the light shielding effect. Silicon resin as a light shielding resin 110 is applied to the bottom surface of the upper panel 101 In order protect the first transparent electrode 106. The silicon resin
110 is colored In blacic In order to enhance the light shielding effect of the

liquid crystal driver 107.
A diffusion sheet 40 Is affixed to the top surface of the holder which is opposite to the bottom surface of the liquid crystal display panel. A light diffusion area 401 of the diffusion sheet, opposite to the reflection plate 105 of the liquid display panel 10, is colored In white as shown in Fig. 1. A light absorption area 402, which is located at the outer periphery of the light diffusion area 401 and opposite to the bottom surface of the upper panel. Is colored In black.
Four light sources 202 each being an LEO are mounted on a circuit board 20 so as to face to both sides of the holder 30 so that the light radiated by the light sources 202 are diffused with no luminance variation by the light diffusion area 401 of the diffusion sheet 40 and the liquid crystal display panel 10 Is Illuminated from Its bottom side.
Additionally, In Fig. 3, reference numeral 50 denotes a housing panel of an electric appliance such as a portable telephone terminal, and reference 501 denotes a transparent housing cover which covers a display window made on the housing panel oppositely to the upper polarized plate of the liquid display panel

Now referring to Fig. 3, an explanation will be given of the operation of the embodiment configured as described above. The liquid display device according to the embodiment adopts a semi-translucent display system as a light gathering system in which the reflection plate 105 having a certain reflectivity and permeability is arranged on the bottom surface of the lower polarized plate 104 so that at a bright site, incident light rays (outer light rays )A and B are used (reflection type) whereas in a~dark side, the light sources are lit up (transparent type).
The operation where the extraneous light rays A and B are used for display is as follows. The light ray A having certain energy, which is incident through the housing cover 501, is to enter the liquid crystal driver 107 from the upper panel 101. The light ray A, however, is shielded by the light shielding film 109 so that it does not reach the liquid crystal driver 107. A part of the incident light ray B having certain energy is reflected by the diffusion sheet 40. The reflected light reaches the liquid crystal driver 107, but is shielded by the silicon resin 110. A part of the incident light ray B is also absorbed by the light absorption area 402 of the diffusion sheet 40 so that

it does not reach the liquid crystal driver 107.
Thus, in accordance with this embodiment, the light ray to directly transmit to the liquid crystal driver Is shielded by the light shielding tape 109, and the reflected light ray which transmits to the liquid crystal driver can be partially absorbed by the diffusion sheet 40. Therefore, without housing the bare chip type liquid crystal driver within a package, the light which reaches the liquid crystal driver is surely shielded or absorbed so erroneous display due to the photoelectric effect can be prevented.
Embodiment 2
Now referring to Fig. 4, an explanation will be given of a second embodiment of the present Invention. Flg.4 Is a side view of the liquid crystal panel portion of TCP type of the liquid crystal display device according to the second embodiment of the present Invention.
In the second embodiment, a liquid crystal driver 107 is mounted on a displaying side surface on a extended part of a lower panel 102, and electrically connected to the first transparent electrode 106A. And the structure Is characterized in that a displaying side

surface of the liquid crystal driver 107 is covered with a light shielding resin and a light shielding tape is affixed on the reverse side of the extended part of the lower panel corresponding to opposite region to a mounting area of the liquid crystal driver 107.
Another parts are constructed in a same manner as the first embodiment, same members are numbered same as the first embodiment.
According to the second embodiment, both surfaces of the a bare chip of the liquid crystal driver 107 are covered with a light shielding resin 110 and light shielding tapel07, thereby the light which reaches the liquid crystal driverl07 is surely shielded or absorbed so that the erroneous display due to the photoelectric effect can be prevented.
Embodiment 3
How referring to Fig. 5, an explanation will be given of a third embodiment of the present invention.
Fig. 5 is a side view of the liquid crystal panel portion of TCP type of the liquid crystal display device according to the third embodiment of the present invention.
In the third embodiment, a liquid crystal driver 107 is mounted on a displaying side surface of the folded

portion of a film carrier 108 folded under the display panel 10, and electrically connected to the circuit pattern on the film carrier in a face down manner. In Fig.5, same members are numbered same as the first embodiment. And the structure is characterized in that a both surface of a bare chip of the liquid crystal driver 107 are covered with a light shielding resin 110 and a light shielding tape 109,respectively.
Another parts are constructed same as the first embodiment, same members are numbered same as the first embodiment.
According to the third embodiment, the liquid crystal driver 107 is disposed under the display panel 10 and both surfaceSof the bare chip of the liquid crystal driver 107 are covered with a light shielding resin 110 and light shielding tape 109, thereby the light which reaches the liquid crystal driverlO? is surely shielded or absorbed so that the erroneous display due to the photoelectric effect can be prevented.
Embodiment 4
Now referring to Fig. 6, an explanation will be given of a fourth embodiment of the present invention.

Fig. 6 is a side view of the liquid crystal panel portion of TCP type of the liquid crystal display device according to the third embodiment of the present invention. In the fourth embodiment, a liquid crystal driver 107 is mounted on a displaying side surface of the folded portion of a film carrier 108 folded under the display panel 10, like as the third embodiment. A chip of the liquid crystal display device is electrically connected to the circuit pattern on the film carrier in a face up manner. In Fig. 6, same members are numbered same as the first embodiment. And the structure is characterized in that a displaying side surface of a bare chip of the liquid crystal driver 107 is covered with a light shielding resin 110 and a light shielding tape 109.
Another parts are constructed same as the first embodiment, same members are numbered same as the first embodiment.
And the present invention is applicable to resin shield type of a chip as well as bare chip type of a liquid crystal driver. In the case that resin shield type of the chip is a thin type, -the resin is not able to prevent a incident light to the chip sufficiently.

But according to the present invention, the incident light to the chip is shielded sufficiently.
As described above, without housing the bare chip type liquid crystal driver within a package, the light which reaches the liquid crystal driver is surely shielded or absorbed so that the erroneous display due to the photoelectric effect can be prevented.


We Claim: 1. A liquid crystal display device comprising:
a liquid crystal panel (10) comprising liquid crystal cells, a first plate (101) disposed on a displaying side of the cells, and a second plate (102) disposed on a reverse side of the cells;
a liquid crystal drive (107) electricaliy connected with the liquid crystal panel through a circuit pattern 106A, lO6B
"
a tight shielding material (109) disposed adfacent said liquid crystal driver so as to prevent external light from being incident on said liquid crystal driver; and
further comprising a difusion sheet (40) located adjacent said liquid crystal display panel, wherein said diffusion sheet is composed of a light diffusing area (401) and a light absorbing area (402) located on the outer periphery thereof, the light diffusing area serving to diffuse Illumination light from a light source (202) to the liquid crystal display panel, and the light absorbing area serving to absorb external light which would otherwise be incident on said liquid crystal driver.
The liquid crystal display device as claimed In dalm 1, wherein said first plate has a reverse side facing the liquid crystal cells and an opposite displaying side, the liquid crystal driver being mounted on the reverse side of the first plate; and
said light shielding material comprises a light shielding film affixed to the displaying side of said first plate- so as to cover an area which is opposite to a mounting position of said liquid crystal driver.
The liquid crystal display device as claimed In claim 1, wherein said second plate has a displaying side facing the liquid crystal cells and an opposite reverse side and said liquid crystal driver is mounted on the displaying side of the second plate; and
said light shielding material comprises a light shielding film affixed to the reverse side of the second plate.
The liquid crystal display device as claimed in claim 1, wherein said circuit pattern is formed on a film carrier;

said liquid crystal driver is mounted on the film carrier and disposed under the second plate; and
said light shielding material comprises a light shielding film positioned over a surface of said liquid crystal driver fading the second plate.
5. The liquid crystal display device as claimed in claim 4, wherein said liquid crystal
driver is mounted On a surface of said film carrier facing the second plate; and
a surface of said liquid crystal driver opposite the second plate Is covered with fight shielding resin.
6. The liquid crystal display device as claimed In claim 4, wherein said liquid crystal
driver is mounted on a surface of said film carrier opposite to a surface which
faces the second plate; and
a surface of said liquid crystal driver facing the light shielding film Is covered with light shielding resin.
7. The liquid crystal display device as claimed In any one of the perceding claims, wherein the device is mounted In a portat>le telephone terminal.
8. The liquid crystal display device as claimed in claim 1 or daim 2, wherein the first plate has a first transparent electrode, the second plate has a second transparent electrode, and the liquid crystal cells are positioned between the first and second transparent electrodes; and
the device further comprises a light shielding resin covering an exposed area of the first transparent electrode which extends beyond the liquid crystal cells so that the light which would otherwise be reflected from said diffusion sheet to reach the liquid crystal driver is shielded.
9. The liquid crystal display device as claimed in daim 5, 6 or 8, wherein said light shielding resin and/or said tight absorbing area of said diffusion sheet are coloured black.
10. A liquid crystal display device comprising:
a liquid crystal panel (10) comprising liquid crystal cells, a first plate (101) disposed on a displaying side of the cells, and a second plate (102) disposed on a reverse side of the cells;

a liquid crystal driver (107) etectrically connected with the liquid crystal panel through a circuit pattern i06A, 106B;
a first light shielding material 109 disposed adjacent a face of said liquid crystal driver so as to prevent externa) light from being incident on said liquid crystal driver; and
a second light shielding material (110) disposed adjacent an opposite face of said liquid crystal driver so as to prevent external light from being incident on said liquid crystal driver.
11. The liquid crystal display device as claimed in claim (10), further comprising a diffusion sheet (40) located acljacent said liquid crystal display panel, wherein said diffusion sheet is composed of a light diffusing area (401) and a light absorbing ares (402) located on the outer periphery thereof, the tight diffusing area serving to diffuse Illumination fight from a light source to the liquid crystal display panel, and the light absorbing area serving to absorb external light which would otherwise be incident on said liquid crystal driver.
12. The liquid crystal display device as claimed in claim (10), wherein said second plate has a displaying side facing the liquid crystal cells and an opposite reverse side and said liquid crystal driver Is mounted on the displaying side of the second plate; and
said first light shielding materia) comprises a light shielding film affbeed to the reverse side of the second plate.
13. A liquid crystal display device comprising:
a liquid crystal panel (10) comprising liquid crystal cells, a first plate (101) disposed on a displaying side of the cells, and a second plate (102) disposed on a reverse side of the cells;
a Hquld crystal driver (107) electrically connected with the liquid crystal panel through a circuit pattern 106A, 1D6B; and
a light shielding material (109) disposed adjacent said liquid crystal driver so as to prevent external light from being incident on said liquid crystal driver,
wherein said liquid crystal driver is mounted on the liquid crystal panel by a light shielding resin (110) disposed on said liquid crystal panel so as to cover one end of a film carrier (108) and a side surface of said liquid crystal driver.

14. The liquid crystal display device as claimed In dalm 13, wherein one end of sakJ liquid crystal panel is located on the film carrier and satd end Is covered wKh a light shielding film extending from said liquid crystal panel to said film carrier.
15. The Squid crystal display device as daimed in daim 13 or daim 14, wherein said first plate has a reverse side fadng the liquid crystal ceHs and an opposite displaying side said liquid crystal driver Is mounted on the reverse side of the first plate; and
said light shielding material comprises a light shielding film affixed tx) the displaying side of said first plate so as to cover an area which is opposite to a mounting position of said liquid crystal driver.
16. The liquid crystal display device as claimed in daim 13 or daim 14, wherein said
second plate has a displaying side facing the liquid crystal cells and an opposite
reverse side and said liquid crystal driver is mounted on the displaying side of the
second plate; and
said light shielding material comprises a light shielding film affixed to the reverse side of the second plate.
17. The liquid crystal display device as claimed In any one of daims 10 to 16, wherein the device is mounted in a portable telephone terminal.
18. The liquid crystal display device as claimed In dalm 13 or dalm 14, further comprising a diffusion sheet located adjacent said liquid crystal display panel, wherein said diffusion sheet is composed of a light diffusing area and a light absorbing area located on the outer periphery thereof, the light diffusing area serving to diffuse illumination light from a light source to the liquid crystal display panel, and the light absorbing area serving to absorb external light which would otherwise be incident on said liquid crystal driver.
19. The liquid crystal display device as daimed in anyone of claims 13 to 15, wherein the first plate has a first transparent electrode, the second plate has a second transparent electrode, and the liquid crystal ceHs are positioned between the first and second transparent electrodes; and
the light shielding resin covers an exposed area of the first transparent electrode which extends beyond the liquid crystal cells so that the light which would othenvlse be reflected from said diffusion sheet to reach the liquid crystal driver is shielded.

20. The liquid crystal display device as claimed In daim 18, wherein said light shielding resin and/or said fight absorbing area of said diffusion sheet are coloured Mack.
21. A liquid crystal display device comprising:
a liquid crystal panel (10) comprising liquid crystal cells, a first plate (101) disposed on a displaying side of the cells, and a second plate (102) disposed on a reverse side of the cells;
a liquid crystal drive (107) electrically connected with the liquid crystal panel through a circuit pattern lOGA, 106B and
a light shielding film (109) disposed adjacent said liquid crystal driver so as to prevent external light from being incident on said Kquid crystal driver;
wherein one end of said liquid crystal panel is located on a film carrier (106) and said end is covered with the light shielding film which extends from said liquid crystal panel to said film carrier.
22. The liquid crystal display device as claimed in claim 21, wherein said first plate
has a reverse side facing the liquid crystal cells and an opposite displaying side,
the iiquid crystal driver being mounted on the reverse side of the first plate, and
said light shielding film is affixed to the displaying side of said first plate so as to cover in area which is opposite to a mounting position of said liquid crystal driver.
23. The liquid crystal display device as claimed In claim 21 or claim 72, further comprising a diffusion sheet located adjacent said liquld crystal display panel, wherein said diffusion sheet is composed of a light diffusing area and a light absorbing area located on the outer periphery thereof, the light diffusing area serving to diffuse illumination, light from a light source to the liquid crystal display panel, and the light absorbing area serving to absorb external light which would otherwise be incident on said liquid crystal driver.
24. The liquid crystal display device as claimed in anyone of daims 21 to 23, wherein the first plate has a first transparent electrode, the second plate has a second transparent electrode, and the liquid crystal cells are positioned between the first and second transparent electrodes; and

the device further comprises ■ fight shielding resin which extends beyond an exposed area of the first transparent electrode from the liquid crystal cells so that the light which would otherwise be reflected from said diffusion sheet to reach the liquid crystal driver is shielded.
25. The liquid crystal display device as claimed In claim 21, wherein said second
plate has a displaying side facing the liquid crystal cells and an opposite reverse
side and said liquid crystal driver is mounted on the displaying side of the second
plate; end
said light shiekfing fHm Is affixed to the reverse side of the second plate.
26. The liquid crystal display device as claimed in daim 24 when dependent upon
daim 23, wherein said light shielding resin and/or said liglit absorbing area of
said diffusion sheet are coloured black.
Z7. A liquid crystal display device substantlany as described with reference to the acompanying drawings.

Documents:

1098-mas-98 abstract.jpg

1098-mas-98 abstract.pdf

1098-mas-98 claims-duplicate.pdf

1098-mas-98 claims.pdf

1098-mas-98 correspondences-others.pdf

1098-mas-98 correspondences-po.pdf

1098-mas-98 drawings.pdf

1098-mas-98 form-19.pdf

1098-mas-98 form-2.pdf

1098-mas-98 form-26.pdf

1098-mas-98 form-4.pdf

1098-mas-98 form-6.pdf

1098-mas-98 others.pdf

1098-mas-98 petition.pdf

1098-mas-98 description (complete)-duplicate.pdf

1098-mas-98 description (complete).pdf


Patent Number 217224
Indian Patent Application Number 1098/MAS/1998
PG Journal Number 21/2008
Publication Date 23-May-2008
Grant Date 26-Mar-2008
Date of Filing 22-May-1998
Name of Patentee MATSUSHITA ELECTRIC INDUSTRIAL CO. LTD.
Applicant Address 1006, KADOMA, KADOMA-SHI, OSAKA 571,
Inventors:
# Inventor's Name Inventor's Address
1 MIKA GOMI 5-29-4-207, HIYOSHI, KOHOKU-KU, YOKOHAMA-SHI, KANAGAWA 223,
2 YOJI INOMATA 3-9-62, HASHIDO, SEYA-KU, YOKOHAMA-SHI, KANAGAWA 226,
PCT International Classification Number G02 F01/00
PCT International Application Number N/A
PCT International Filing date
PCT Conventions:
# PCT Application Number Date of Convention Priority Country
1 HEI. 9-148427 1997-05-23 Japan