CN208547787U - A kind of Liquid Crystal Module improving display area area - Google Patents

A kind of Liquid Crystal Module improving display area area Download PDF

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Publication number
CN208547787U
CN208547787U CN201821195710.4U CN201821195710U CN208547787U CN 208547787 U CN208547787 U CN 208547787U CN 201821195710 U CN201821195710 U CN 201821195710U CN 208547787 U CN208547787 U CN 208547787U
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China
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glass substrate
liquid crystal
lower glass
display area
circuit board
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CN201821195710.4U
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Chinese (zh)
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张小齐
庄世强
彭益
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Shenzhen Longli Technology Co Ltd
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Shenzhen Longli Technology Co Ltd
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Abstract

The utility model discloses a kind of Liquid Crystal Module for improving display area area, it include: liquid crystal display, backlight module, FPC and IC, backlight module is set to below liquid crystal display, liquid crystal display includes: top glass substrate, lower glass substrate, liquid crystal, anisotropic conductive film, TFT, circuit board and DRIVE LSI, gap is equipped between top glass substrate and lower glass substrate, liquid crystal is distributed in the gap of top glass substrate and lower glass substrate, IC and DRIVE LSI is integrated on the circuit board, circuit board is set to below backlight module, it is connect by the FPC with lower glass substrate.The utility model shifts original DRIVE LSI and IC in lower glass substrate, lower glass substrate is disengaged it to concentrate on a circuit board, it is transferred into below backlight module, it shifts in this way, so that Liquid Crystal Module shortens the distance of 3-5mm, the display area that Liquid Crystal Module can be increased reduces the area of non-display area, improves screen accounting.

Description

A kind of Liquid Crystal Module improving display area area
Technical field
The utility model relates to technical field of liquid crystal display more particularly to a kind of liquid crystal moulds for improving display area area Block.
Background technique
In recent years, smart phone or flat sheet industries were all carrying forward vigorously comprehensive screen, and Liquid Crystal Module is in mobile phone or plate Key component.As shown in Figure 1, Liquid Crystal Module generally comprise backlight module 100, polaroid 200, liquid crystal display 300, FPC400 and other components.Wherein liquid crystal display 300 includes top glass substrate 301 and lower glass substrate 302, TFT (thin film transistor (TFT)) 303, Sealant (frame glue) 304, anisotropic conductive film 305, IC500 etc. are distributed in top glass substrate 301 Between lower glass substrate 302, lead to the non-display area for having 3-5mm, i.e., the black surround region 600 in figure is unfavorable for shielding accounting Increase.
Therefore, the prior art is defective, needs to improve.
Utility model content
The purpose of the utility model is to overcome the deficiencies in the prior art, provide a kind of liquid crystal mould for improving display area area Block is conducive to increase screen accounting.
The technical solution of the utility model is as follows: providing a kind of Liquid Crystal Module for improving display area area, comprising: liquid crystal Display, backlight module, FPC and IC, the backlight module are set to below liquid crystal display, and the liquid crystal display includes: Top glass substrate, lower glass substrate, liquid crystal, anisotropic conductive film, TFT, circuit board and DRIVE LSI, the upper glass base Gap is equipped between plate and lower glass substrate, the liquid crystal is distributed in the gap of top glass substrate and lower glass substrate, described IC and DRIVE LSI is integrated on the circuit board, and the circuit board is set to below the backlight module, by described FPC is connect with lower glass substrate.
Further, the anisotropic conductive film is set in the lower glass substrate, close to the edge of lower glass substrate Setting, and its gap between top glass substrate and lower glass substrate, described one end FPC pass through the anisotropic conductive film It overlays in the top surface of lower glass substrate, the other end is connect with the circuit board.
Further, the anisotropic conductive film is set to the lower glass substrate side, and described one end FPC passes through the different side Property conductive film overlay in the side of lower glass substrate, the other end and the circuit board are electrically connected.
Further, the length of the backlight module is greater than the length of the lower glass substrate, and backlight module is close to different side Property conductive film one end exceed the lower glass substrate, the other end is aligned with lower glass substrate, and the backlight module is close to different side Property conductive film one end towards lower glass substrate be equipped with chamfering.
Further, the FPC is close to the lower glass substrate side and the setting of backlight module side.
Further, the anisotropic conductive film is placed in vertical.
Further, clearance body and frame glue are additionally provided between the top glass substrate and lower glass substrate.
Further, the top glass substrate is equipped with upper light polarizing film and colored filter, in the lower glass substrate Equipped with lower light polarizing film.
Further, the circuit board uses glass substrate.
Using the above scheme, compared with prior art, the DRIVE that the utility model will be originally set in lower glass substrate LSI and IC transfer, disengages it from lower glass substrate and concentrates on a circuit board, is transferred into below backlight module, passes through This mode shifts, so that Liquid Crystal Module shortens the distance of 3-5mm, can increase the display area of Liquid Crystal Module, reduce non-display The area in region improves screen accounting.
Detailed description of the invention
Fig. 1 is the structural schematic diagram of conventional liquid crystal module.
Fig. 2 is the structural schematic diagram of an embodiment of the present invention.
Fig. 3 is the contrast schematic diagram of the utility model and conventional liquid crystal module.
Fig. 4 is the structural schematic diagram of another embodiment of the utility model.
Specific embodiment
Below in conjunction with the drawings and specific embodiments, the utility model is described in detail.
Referring to Fig. 2, the utility model provides a kind of Liquid Crystal Module for improving display area area, comprising: liquid crystal display Device 1, backlight module 2, FPC3 and IC4, the backlight module 2 are set to 1 lower section of liquid crystal display.The liquid crystal display 1 wraps It includes: top glass substrate 11, lower glass substrate 12, liquid crystal 13, anisotropic conductive film 14, TFT15, circuit board 16 and DRIVE LSI17, is equipped with gap between the top glass substrate 11 and lower glass substrate 12, the liquid crystal 13 is distributed in top glass substrate 11 In the gap of lower glass substrate 12.IC4 the and DRIVE LSI17 is integrated on the circuit board 16, the circuit board 16 are set to 2 lower section of backlight module, are connect by the FPC3 with lower glass substrate 12.Preferably, the circuit board 16 Using glass substrate, glass substrate is able to maintain good flatness, is conducive to be routed on the board 16.
The anisotropic conductive film 14 is set in the lower glass substrate 12, and the edge close to lower glass substrate 12 is set It sets, and its gap between top glass substrate 11 and lower glass substrate 12, described one end FPC3 is led by the anisotropy Electrolemma 14 is overlayed in the top surface of lower glass substrate 12, and the other end is connect with the circuit board 16.As shown in figure 3, in this way TFT15 and DRIVE LSI17 is transferred out from lower glass substrate 12, black surround 5, corresponding top glass substrate 11 can be shortened At a distance from membrane material attached in lower glass substrate 12 and top glass substrate 11 and lower glass substrate 12, as S is contracting in Fig. 3 Short distance, that is, reduce the area of non-display area, increase screen accounting.
Clearance body (spacer) 18 and frame glue are additionally provided between the top glass substrate 11 and lower glass substrate 12 (sealant) 19, the effect of the clearance body 18 be maintain top glass substrate 11 at a distance from lower glass substrate 12, with prevent because Thickness control is uneven and liquid crystal response characteristics is caused to change, so that it is fuzzy to cause picture to show.The effect of the frame glue 19 is to make Obtaining top glass substrate 11 can closely stick with lower glass substrate 12.
The top glass substrate 11 is equipped with upper light polarizing film and colored filter, and the lower glass substrate 12 is equipped with down Light polarizing film.
Referring to Fig. 4, being another embodiment of the utility model, unlike the embodiments above, the anisotropy is led Electrolemma 20 is set to 12 side of lower glass substrate, and described one end FPC21 is overlayed by the anisotropic conductive film 20 in lower glass The side of substrate 12, the other end and the circuit board 16 are electrically connected.
Since anisotropic conductive film 20 to be set to the side of lower glass substrate 12, therefore the black surround 22 of Liquid Crystal Module can be smaller by one A bit, the size constancy of backlight module 2, therefore the length of backlight module 2 is greater than the length of the lower glass substrate 12, backlight module 2 exceed the lower glass substrate 12 close to one end of anisotropic conductive film 20, and the other end is aligned with lower glass substrate 12.It is described FPC21 is close to 12 side of lower glass substrate and the setting of 2 side of backlight module.Correspondingly, the outline border of mobile phone or plate Sideline is set as fillet 23, and design in this way can accommodate the part that backlight module 2 exceeds, and mobile phone or plate is made to seem that screen accounts for It is bigger than more, give preferably visual experience.Since the outer frame edges of mobile phone or plate is fillet 23, backlight module 2 is leaned on One end of nearly anisotropic conductive film 20 is equipped with chamfering towards lower glass substrate 12 to adapt to the radian of outer frame edges fillet 23 FPC21 provides the space of installation, and can reduce the radian of outer frame edges fillet 23, increases the screen accounting of mobile phone or plate.Root The chamfering can be set as to right angle or fillet according to actual conditions.
Preferably, the anisotropic conductive film 20 is placed in vertical, can further decrease the area of non-display area.
In conclusion compared with prior art, the utility model will original DRIVE LSI in lower glass substrate with And IC transfer, it disengages it from lower glass substrate and concentrates on a circuit board, be transferred into below backlight module, in this way Transfer can increase the display area of Liquid Crystal Module, reduce non-display area so that Liquid Crystal Module shortens the distance of 3-5mm Area improves screen accounting.
The above is only the preferred embodiments of the present utility model only, is not intended to limit the utility model, all practical at this Made any modifications, equivalent replacements, and improvements etc., should be included in the guarantor of the utility model within novel spirit and principle Within the scope of shield.

Claims (9)

1. a kind of Liquid Crystal Module for improving display area area, comprising: liquid crystal display, backlight module, FPC and IC, it is described Backlight module is set to below liquid crystal display, which is characterized in that the liquid crystal display includes: top glass substrate, lower glass base Plate, liquid crystal, anisotropic conductive film, TFT, circuit board and DRIVE LSI, set between the top glass substrate and lower glass substrate There is gap, the liquid crystal is distributed in the gap of top glass substrate and lower glass substrate, IC the and DRIVE LSI is integrated in On the circuit board, the circuit board is set to below the backlight module, is connect by the FPC with lower glass substrate.
2. the Liquid Crystal Module according to claim 1 for improving display area area, which is characterized in that the anisotropy is conductive Film is set in the lower glass substrate, is arranged close to the edge of lower glass substrate, and it is located at top glass substrate and lower glass Gap between substrate, described one end FPC are overlayed by the anisotropic conductive film in the top surface of lower glass substrate, the other end with The circuit board connection.
3. the Liquid Crystal Module according to claim 1 for improving display area area, which is characterized in that the anisotropy is conductive Film is set to the lower glass substrate side, and described one end FPC is overlayed by the anisotropic conductive film in the side of lower glass substrate, The other end and the circuit board are electrically connected.
4. the Liquid Crystal Module according to claim 3 for improving display area area, which is characterized in that the backlight module Length is greater than the length of the lower glass substrate, and backlight module exceeds the lower glass base close to one end of anisotropic conductive film Plate, the other end are aligned with lower glass substrate, and the backlight module is set close to one end of anisotropic conductive film towards lower glass substrate There is chamfering.
5. the Liquid Crystal Module according to claim 4 for improving display area area, which is characterized in that the FPC is close to institute State lower glass substrate side and the setting of backlight module side.
6. the Liquid Crystal Module according to claim 2 or 3 for improving display area area, which is characterized in that the anisotropy Conductive film is placed in vertical.
7. the Liquid Crystal Module according to claim 1 for improving display area area, which is characterized in that the top glass substrate And clearance body and frame glue are additionally provided between lower glass substrate.
8. the Liquid Crystal Module according to claim 1 for improving display area area, which is characterized in that the top glass substrate It is equipped with upper light polarizing film and colored filter, the lower glass substrate is equipped with lower light polarizing film.
9. the Liquid Crystal Module according to claim 1 for improving display area area, which is characterized in that the circuit board uses Glass substrate.
CN201821195710.4U 2018-07-26 2018-07-26 A kind of Liquid Crystal Module improving display area area Active CN208547787U (en)

Priority Applications (1)

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CN201821195710.4U CN208547787U (en) 2018-07-26 2018-07-26 A kind of Liquid Crystal Module improving display area area

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Application Number Priority Date Filing Date Title
CN201821195710.4U CN208547787U (en) 2018-07-26 2018-07-26 A kind of Liquid Crystal Module improving display area area

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108761871A (en) * 2018-07-26 2018-11-06 深圳市隆利科技股份有限公司 A kind of Liquid Crystal Module improving display area area

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108761871A (en) * 2018-07-26 2018-11-06 深圳市隆利科技股份有限公司 A kind of Liquid Crystal Module improving display area area

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