CN105336270A - Display equipment - Google Patents

Display equipment Download PDF

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Publication number
CN105336270A
CN105336270A CN201410314170.7A CN201410314170A CN105336270A CN 105336270 A CN105336270 A CN 105336270A CN 201410314170 A CN201410314170 A CN 201410314170A CN 105336270 A CN105336270 A CN 105336270A
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CN
China
Prior art keywords
framework
display module
induction electrode
upper shed
shed portion
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201410314170.7A
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Chinese (zh)
Inventor
何宽鑫
云花
赵峰
李荣华
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
TPK Touch Solutions Xiamen Inc
Original Assignee
TPK Touch Solutions Xiamen Inc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by TPK Touch Solutions Xiamen Inc filed Critical TPK Touch Solutions Xiamen Inc
Priority to CN201410314170.7A priority Critical patent/CN105336270A/en
Priority to TW103128064A priority patent/TWI546591B/en
Priority to TW103214592U priority patent/TWM497798U/en
Publication of CN105336270A publication Critical patent/CN105336270A/en
Pending legal-status Critical Current

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Abstract

The invention relates to the technical field of touch control, and provides display equipment, which comprise a frame body, a display module, a protective cover plate, a first adhesive layer and a light baffle component, wherein the frame body is provided with an upper opening part and an accommodating space; an opening is formed in the upper opening part in an encircling manner; the display module is accommodated inside the accommodating space, and a gap is reserved between the display module and the upper opening part of the frame body; the protective cover plate is arranged above the opening, and the protective cover plate, on the edge facing the side face of the opening, is provided with a light shading layer; the first adhesive layer is arranged between the display module and the protective cover plate; and the light baffle component is arranged between the display module and the upper opening part of the frame body, so that the gap is sealed. According to the display equipment disclosed by the invention, light transmitted from a backlight source of the display panel through the gap is shaded by the light baffle component, so that the problems of light leakage and poor appearance of display equipment in the prior art due to narrowing of the frame body or the shading layer are solved.

Description

Display device
Technical field
The invention relates to a kind of display device.
Background technology
Flourish along with electronic product, the application of display device is more and more wider, and Portable mobile device all can be integrated with touch control display device to household electrical appliance such as, is developed to various conformability commodity easy to use.
As shown in Figure 9, the structure of the display device of prior art consists predominantly of cover sheet 80, display module 81, framework 82 and for connecting the mucigel 83 of this cover sheet 80 and this display module 81, and this framework 82 has a upper shed portion 821.In time assembling; first this display module 81 to be arranged within this framework 82 and to be adjacent to the upper shed portion 821 of this framework 82; with the display image making beholder can see display module 81, finally this cover sheet 80 is covered on this mucigel 83 through mucigel 83, then completes assembling.
As shown in Figure 9, the display device of prior art, its display module 81 is installed in after within framework 82, that there is a suitable gap 84 between this display module 81 and this framework 82, light from display module 81 bottom can be penetrated via this gap 84, cause the display device of prior art to there is the problem of light leak.In order to solve the problem of light leak, prior art then one of to establish the light shield layer 801 with suitable width in the lower edge of cover sheet 80, cover the light penetrated by this gap 84, solve leakage problem by this light shield layer 801.
But for pursuing attractive in appearance and design sense, the display device of prior art phases down the width of light shield layer 801 to make contactor control device towards narrow frame trend development.But thus, beholder, when with certain side angle degree viewing image, can see the light penetrated by the gap 84 between framework 82 and display module 81, then create leakage problem again on the contrary, and cause the problem of the bad outward appearance of display device.
Summary of the invention
Because the shortcoming of above-mentioned prior art, one of the present invention object is to provide a kind of display device, its can solve because of narrow framework and reduction light shield layer width the leakage problem that derives, and then reach the demand of good appearance.
In order to reach aforementioned goal of the invention, the technological means that the present invention takes makes this display device, comprises:
One framework, it has a upper shed portion and an accommodation space, and this upper shed portion is around formation one opening;
One display module, it has in the face of one of this opening upper side and is be placed in the accommodation space of this framework, and has a gap between the upper shed portion of this display module and this framework;
One cover sheet, it is arranged at the overthe openings that it is arranged at this framework, and the edge of the side in the face of opening of its this cover sheet is provided with a light shield layer;
One first mucigel, it is arranged between this display module and this cover sheet; And
One light blocking unit, its be arranged at this display module and this framework upper shed portion between, use this gap closed.
Preferably, this first mucigel is made by solid transparent glue or liquid clear glue.Wherein, when use liquid clear optical cement this first mucigel shaping, before the solidification of liquid clear optical cement, liquid clear optical cement is stopped by this light blocking unit and can not flow in this gap, then this display module can be avoided to light the rear problem occurring the color lump being difficult to cover up.Accordingly, described display device except can solve because of narrow framework and reduction light shield layer width except the leakage problem that derive, also can solve derivative strike-through and color lump problem because use Liquid optical clear adhesive, and reach the effect with good appearance.
Preferably, one second mucigel is provided with between this cover sheet and this first mucigel.Accordingly, cover sheet can be fixed with framework simultaneously, and to improve the laminating reliability of display device, and this first mucigel to eliminate the difference in height between the upper side of framework and the upper side of display module; Like this: the second mucigel that solid transparent optical cement is made is avoided because this difference in height cannot be fitted in upper shed position and occurs the problem of aberration, and then improve optical property and binding yield; The second mucigel that liquid clear optical cement is made can be avoided producing bubble because once filling a large amount of Liquid optical clear adhesive, makes this first mucigel and this second mucigel containing less pore, can improve light transmission and binding yield.
Preferably, this light blocking unit includes a substrate layer and two bonding coats, and this two bonding coat is located on the two relative lateral surfaces of this substrate layer, and this two bonding coat connects with this display module with peristome on this framework respectively.
Better, the substrate layer of this light blocking unit is foamed cotton layer, oneself two ester layer or layer of polycarbonate of poly terephthalic acid.One is better, and the thickness of the substrate layer of this light blocking unit is between 25 millimeters to 35 millimeters.
Preferably, this light blocking unit is that the opaque liquid adhesive curing being more than 10,000 centipoise (centipoises, CP) by viscosity forms.
Better, this light blocking unit is 10,000 centipoise to 20 by viscosity, and the opaque liquid adhesive curing of 000 centipoise forms.
By between the upper shed portion this light blocking unit being located at this display module and this framework to close this gap, come from the backlight of display panel and the light appeared by this gap be can effectively cover by this light blocking unit, thus, beholder is in time watching image, watch the light all cannot seen and being penetrated by this gap at any angle, then effectively solve the light leak because narrow framework or narrow light shield layer cause and bad problem of appearance.
Accompanying drawing explanation
Fig. 1 is the side elevational cross-section schematic diagram of the display device of the embodiment 1 of the present invention.
Fig. 2 is the partial enlargement side-looking diagrammatic cross-section of the display device of the embodiment 2 of the present invention.
Fig. 3 is the partial enlargement side-looking diagrammatic cross-section of the display device of the embodiment 3 of the present invention.
Fig. 4 is the partial enlargement side-looking diagrammatic cross-section of the display device of the embodiment 4 of the present invention.
Fig. 5 is the partial enlargement side-looking diagrammatic cross-section of the display device of the embodiment 5 of the present invention.
Fig. 6 is the partial enlargement side-looking diagrammatic cross-section of the display device of the embodiment 6 of the present invention.
Fig. 7 is the partial enlargement side-looking diagrammatic cross-section of the display device of the embodiment 7 of the present invention.
Fig. 8 is the partial enlargement side-looking diagrammatic cross-section of the display device of the embodiment 8 of the present invention.
Fig. 9 is the display device partial enlargement side-looking diagrammatic cross-section of prior art.
Embodiment
The technological means below coordinating preferred embodiment that is graphic and the present invention to set forth the present invention further to take for reaching predetermined goal of the invention.Orientation alleged in the content of following examples " on ", D score, " interior ", " outward ", " side " be only used to expression graphic in relative position relation.
Embodiment 1
As shown in Figure 1, the display device of the present embodiment includes framework 10, display module 20, cover sheet 30,1 first mucigel 40 and a light blocking unit 60.
As shown in Fig. 1 and 2, the upper side of framework 10 is shaped a upper shed portion 11, upper shed portion 11 is around formation one opening, an accommodation space and framework 10 inside is shaped, upper shed portion 11 includes medial surface 111, end face 112 and a lateral surface 113, and end face 112 joint forming is between medial surface 111 and lateral surface 113.
Display module 20 is placed in the accommodation space of framework 10, and have a gap between the upper shed portion 11 of display module 20 and framework 10.Furthermore, the edge of the upper side of display module 20 is covered by the upper shed portion 11 of framework 10, the upper side of display module 20 is the medial surfaces in the upper shed portion 11 in the face of framework 10, and gap is between the upper side of display module 20 and the medial surface 111 in the upper shed portion 11 of framework 10.Display module 20 has a upper side, and upper side is in the face of the upper shed portion 11 of framework 10 around the opening formed, and observer is through the image of opening viewing display module 20 upper side display by this.Display module 20 comprises from top to bottom sequentially recline polaroid 21, substrate 22, filter layer 23, liquid crystal layer 24, thin film transistor (TFT) 25, once polaroid 26, diffusion sheet 27 and a backlight 28 on overlapping one, wherein filter layer 23 be formed at substrate 22 on the surface of liquid crystal layer 24.Another display module 20 comprises a seal assembly 241, and seal assembly 241 to be connected between filter layer 23 and thin film transistor (TFT) 25 and to be positioned at the edge of liquid crystal layer 24, uses and is closed between substrate 22 and thin film transistor (TFT) 25 liquid crystal to form liquid crystal layer 24.
Cover sheet 30 is arranged at the overthe openings of framework 10, and the edge of the side in the face of opening of cover sheet 30 is provided with a light shield layer 31, and light shield layer 31 affects the assembly of outward appearance in order to the end face 112 and display device covering peristome 11 on framework 10.
First mucigel 40 to be arranged between display module 20 and cover sheet 30 and to be positioned at the opening that on framework 10, peristome 11 is formed, in order to connect display module 20 and cover sheet 30.First mucigel 40 can by solid transparent optical cement or liquid clear optical cement made.In the present embodiment, the first mucigel 40 solidifies through ultraviolet illumination after the upper side of Polarizer 21 on LCD MODULE 20 applies one deck liquid clear optical cement by the mode of coating or the mode of printing.In other embodiments, the first mucigel 40 can be made up of two-layer solid transparent optical cement or two-layer liquid optical cement.
With the gap between the upper side of Polarizer 21 on the upper shed portion 11 of closed framework 10 and LCD MODULE 20 between the upper shed portion 11 that light blocking unit 60 is arranged at display module 20 and framework 10.In the present embodiment, with the gap between the upper side of Polarizer 21 on the upper shed portion 11 of closed framework 10 and LCD MODULE 20 between the upper side that light blocking unit 60 is arranged at the end face 112 in the upper shed portion 11 of framework 10 and the upper polaroid 21 of display module 20, but look actual design demand in other embodiments, the position of light blocking unit 60 can correspondingly adjust.Light blocking unit 60 can be formed by opaque liquid glue or the solidification of opaque resin material.Preferably, if the material viscosity of light blocking unit 60 is greater than 10,000 centipoise, and light blocking unit 60 is in dark-coloured.When the material viscosity of formation light blocking unit 60 is too small, it is understood the clearance leakage between the upper side of Polarizer 21 on the upper shed portion 11 and LCD MODULE 20 of framework 10 and drops to display module 20, and the material forming light blocking unit 60 can adhere on other assembly and then occur that display module 20 lights the rear color lump occurring being difficult to cover up.In the present embodiment, light blocking unit 60 is that the opaque liquid adhesive curing being 10,000 centipoise by viscosity forms, and light blocking unit 60 connects with the lateral margin of the first mucigel 40.
Because light blocking unit 60 is connected between this display module 20 and upper shed portion 11 of this framework 10 with the gap between the upper side of Polarizer 21 on the upper shed portion 11 of closed framework 10 and LCD MODULE 20.Come from the backlight 28 of display panel and the light appeared by this gap effectively to be covered by light blocking unit 60, thus, beholder is in time watching image, no matter watch the light also cannot seen and being penetrated by this gap at any angle, then effectively solve because narrowing framework 10 or narrowed by light shield layer 31 caused light leak and bad problem of appearance.Simultaneously, if the liquid clear optical cement that the first mucigel 40 is less than light blocking unit 60 by viscosity is made, light blocking unit 60 can play and prevent liquid clear optical cement to overflow the effect of glue, liquid clear optical cement is in the process of coating by this, can not from the gap seepage between the upper side of Polarizer 21 on the upper shed portion 11 of framework 10 and LCD MODULE 20, and drop in display module 20, can prevent liquid clear optical cement from adhering on other assembly, and then avoid the color lump that occurs being difficult to cover up after display module 20 is lighted.
Embodiment 2
As shown in Figure 2, the present embodiment is roughly the same with embodiment 1.Only, the present embodiment difference from Example 1 is: the present embodiment display device, except including framework 10, display module 20, cover sheet 30, first mucigel 40 and this light blocking unit 60, more comprises an induction conductive structure 50.Induction conductive structure 50 is arranged between this cover sheet 30 and this first mucigel 40, is make the display device of the present embodiment have touch controllable function.Light shield layer 31 covers induction conductive structure 50 periphery wire (figure does not illustrate) simultaneously.What deserves to be explained is at this; in the present embodiment, respond to conductive structure 50 comprise one deck induction conductive layer; directly be formed at cover sheet 30 in the face of upper shed portion 11 surface on; but in other embodiments; induction conductive structure 50 can comprise the induction conductive layer of two-layer mutually insulated, and the present embodiment is not as limit.Separately, induction conductive layer is made up of transparent conductive material or netted metal material, and wherein transparent conductive material is such as: indium tin oxide, Nano Silver, Graphene etc., the present invention is not as limit.
Embodiment 3
As shown in Figure 3, the present embodiment is roughly the same with embodiment 2.Only; the present embodiment difference from Example 1 is: the display device of the present embodiment, except including framework 10A, display module 20A, cover sheet 30A, the first mucigel 40A, induction conductive layer 50A and light blocking unit 60A, more includes one second mucigel 70A.Second mucigel 70A is arranged between the first mucigel 40A and induction conductive layer 50A, and cover sheet 30 can be fixed with framework 10, to improve the laminating reliability of display device simultaneously by this.Second mucigel 70A is made by liquid clear optical cement or solid transparent optical cement.That there is certain altitude difference between the upper side of framework 10A and the upper side of display module 20A, the present embodiment makes this difference in height eliminate through this first mucigel 40A, the upper side of the second mucigel 70A in the first mucigel 40A and the upper side of framework 10A are set again, like this: the second mucigel 70A that solid transparent optical cement is made avoids because this difference in height cannot be fitted in 11A position, upper shed portion and occurs the problem of aberration, and then improve optical property and binding yield; The second mucigel 70A that liquid clear optical cement is made can avoid producing bubble because once filling a large amount of Liquid optical clear adhesive, makes this first mucigel 40A and this second mucigel 70A containing less pore, can improve light transmission and binding yield.
Again, in the present embodiment, light blocking unit 60A is arranged between the upper side of the medial surface 111A of the upper shed portion 11A of framework 10A and the upper polaroid 21A of display module 20A, uses this gap closed.Preferably, if the material viscosity of light blocking unit 60A is greater than 10,000 centipoise, and light blocking unit 60A is in dark-coloured.But in the present embodiment, light blocking unit 60A is that the opaque liquid adhesive curing being 15,000 centipoise by viscosity forms.
Due to this light blocking unit 60A be connected at this display module 20A and this framework 10A upper shed portion 11A between with the gap of the upper shed portion 11A of closed display module 20A and this framework 10A, come from the backlight 28A of display panel, and the light appeared by this gap is can crested effectively, thus, beholder is in time watching image, no matter watch the light also cannot seen and being penetrated by this gap at any angle, then effectively solve the light leak because narrow framework or narrow light shield layer cause and bad problem of appearance.Simultaneously, in encapsulation procedure, before the liquid clear optical cement for the formation of the first mucigel 40A not yet solidifies, this liquid clear optical cement can be limited to this light blocking unit 60A and can not flow in the gap of upper shed portion 11A of display module 20A and this framework 10A, also cannot be infiltrated in this display module 20A by the beside of this display module 20A, so display module 20A light after there will not be the color lump being difficult to cover up.Therefore, in the present embodiment, by this light blocking unit 60A except can effectively solve because to be narrowed by framework 10A or light shield layer 31A narrows except caused leakage problem, also can avoid the display device of prior art that the problem of strike-through easily occurs.
Embodiment 4
As shown in Figure 4, the display device of the present embodiment is roughly the same with embodiment 3.Only, the present embodiment difference from Example 3 is: light blocking unit 60B includes a base material 61B and two adhesion layer 62B, this two adhesion layer 62B is covered on the two relative sides of base material 61B respectively, and this two adhesion layer 62B connects with the upper side of the medial surface 111B of the upper shed portion 11B of framework 10B and the upper polaroid 21B of display module 20B respectively.Wherein, this base material 61B is that foam or plastic material are made, and the thickness of this base material 61B is 30 millimeters.Plastic material can be tygon, polypropylene, Polyvinylchloride, polystyrene, polycarbonate, the own diester of poly terephthalic acid etc.
Embodiment 5
As shown in Figure 5, the display device of the present embodiment is roughly the same with embodiment 1.The display device of the present embodiment includes framework 10C, display module 20C, cover sheet 30C, the first mucigel 40C, the second mucigel 70C and light blocking unit 60C.The display device difference from Example 1 of the present embodiment is as described below.
In the present embodiment, the second mucigel 70C is arranged between the first mucigel 40C and cover sheet 30C.Light blocking unit 60C covers medial surface 111C and the end face 112C of upper shed portion 11C simultaneously, and light blocking unit 60C connects with the first mucigel 40C and the second mucigel 70C simultaneously.Preferably, if the material viscosity of light blocking unit 60C is greater than 10,000 centipoise, and light blocking unit 60C is in dark-coloured.But in the present embodiment, light blocking unit 60C is that the opaque liquid adhesive curing being 18,000 centipoise by viscosity forms.
In addition, in the present embodiment, display module 20C more includes an induction electrode structure 29C, induction electrode structure 29C reclines and is arranged between polaroid 21C and substrate 22C, induction electrode structure 29C includes one first induction electrode 291C, one second induction electrode 292C and an insulation course 293C, first induction electrode 291C and the second induction electrode 292C recline respectively be arranged at insulation course 293C two sides on, and the first induction electrode 291C connects with the downside of polaroid 21C on this.The material of insulation course 293C can be silicon dioxide, polyimide or glue, and the present embodiment is not as limit.
By induction electrode structure 29C, in the present embodiment, display module 20C is with touch-control and display effect, then the display device of the present embodiment is except having Presentation Function, also has touch controllable function.
Embodiment 6
As shown in Figure 6, the display device of the present embodiment is roughly the same with embodiment 5.The display device of the present embodiment includes framework 10D, display module 20D, cover sheet 30D, the first mucigel 40D, the second mucigel 70D and light blocking unit 60D.The display device difference from Example 5 of the present embodiment is as described below.
In the present embodiment, light blocking unit 60D covers medial surface 111D, end face 112D and the lateral surface 113D of this upper shed portion 11D simultaneously.Preferably, if the material viscosity of light blocking unit 60D is greater than 10,000 centipoise, and light blocking unit 60D is in dark-coloured.But in the present embodiment, light blocking unit 60D is that the opaque liquid adhesive curing being 20,000 centipoise by viscosity forms.
In addition, in the present embodiment, the induction electrode structure 29D of display module 20D reclines and is arranged between polaroid 21D and the first mucigel 40D, the first induction electrode 291D of induction electrode structure 29D and the second induction electrode 292D recline respectively be arranged at insulation course 293D two sides on, and the first induction electrode 291D connects with the downside of the first mucigel 40D, the second induction electrode 292D connects with the upper side of upper polaroid 21D.
In addition, as shown in Figure 6, the framework 10C compared to embodiment 5 is formed in one.In the present embodiment, framework 10D carries on the back frame 101D by frame 100D and before formed.Front frame 100D is covered on back of the body frame 101D.
Embodiment 7
As shown in Figure 7, the display device of the present embodiment is roughly the same with embodiment 5.The display device of the present embodiment includes framework 10E, display module 20E, cover sheet 30E, the first mucigel 40E, the second mucigel 70E and light blocking unit 60E.The display device difference from Example 4 of the present embodiment is as described below.
In the present embodiment, upper shed portion 11E has a medial surface 111E, medial surface 111E is the beside in the face of this display module 20E, and gap is between the medial surface 111E of peristome 11E on framework 10E and the beside of this display module 20E, light blocking unit 60E is provided between the medial surface 111E of the beside of this display module 20E and the upper shed portion 11E of this framework 10E, and this light blocking unit 60E connects with this first mucigel 40E.
In addition, in the present embodiment, the induction electrode group 29E of this display module 20E includes one first induction electrode 291E and one second induction electrode 292E, this the first induction electrode 291E and this second induction electrode 292E recline respectively be arranged at polaroid 21E on this two sides on, and this first induction electrode 291E connects with the downside of this first mucigel 40E, this second induction electrode 292E connects with the upper side of this substrate 22E.
Embodiment 8
As shown in Figure 8, the display device of the present embodiment is roughly the same with embodiment 7.Only, the present embodiment difference from Example 7 is: between the medial surface 111F that light blocking unit 60F is connected at the upper shed portion 11F of framework 10F and the beside of display module 20F, and light blocking unit 60F includes a base material 61F and two adhesion layer 62F, this two adhesion layer 62F is covered on the two relative sides of base material 61F respectively, and this two adhesion layer 62F connects with the medial surface 111F of upper shed portion 11F of framework 10F and the beside of display module 20F respectively.
In addition, as shown in Figure 8, the framework 10E compared to embodiment 7 is formed in one.In the present embodiment, framework 10F carries on the back frame 101F by frame 100F and before formed.This front frame 100F is covered on this back of the body frame 101F.
In sum, due to this light blocking unit be connected at this display module and this framework upper shed portion between and close this gap, come from the backlight of display panel and the light appeared by this gap is can crested effectively, thus, beholder is in time watching image, no matter watch the light also cannot seen and being penetrated by this gap at any angle, then effectively solve the light leak because narrow framework or narrow light shield layer cause and bad problem of appearance.And when use liquid clear optical cement this first mucigel shaping, before the solidification of liquid clear optical cement, this light blocking unit has the effect stopping liquid clear optical cement, make liquid clear optical cement can not flow in this gap, then this display module can be avoided to light the rear problem occurring the color lump being difficult to cover up.
The foregoing is only illustrative, but not be restricted person.Any spirit and category not departing from the present invention, and to its equivalent modifications of carrying out or change, all should be contained in rear attached claim.

Claims (19)

1. a display device, wherein comprises:
One framework, it has a upper shed portion and an accommodation space, and this upper shed portion is around formation one opening;
One display module, it has in the face of one of this opening upper side and is be placed in the accommodation space of this framework, has a gap between the upper shed portion of this display module and this framework;
One cover sheet, it is arranged on the opening of this framework, and the edge of the side in the face of opening of this cover sheet is provided with a light shield layer;
One first mucigel, it is arranged between this display module and this cover sheet; And
One light blocking unit, its be arranged at this display module and this framework upper shed portion between, to close this gap.
2. display device according to claim 1, it is characterized in that, the edge of the upper side of this display module is covered in the upper shed portion of this framework, and the upper shed portion of this framework includes a medial surface, this medial surface is the upper side regarding to this display module, and this gap is between the medial surface and the upper side of this display module in the upper shed portion of this framework.
3. display device according to claim 2, is characterized in that, between the medial surface that this light blocking unit is connected at the upper shed portion of this framework and the upper side of display module.
4. display device according to claim 2, is characterized in that, the upper shed portion of this framework includes an end face connected with this opening, between the end face that this light blocking unit is connected at the upper shed portion of this framework and the upper side of display module.
5. display device according to claim 4, is characterized in that, this light blocking unit covers medial surface and the end face in the upper shed portion of this framework simultaneously.
6. display device according to claim 4, it is characterized in that, the upper shed portion of this framework includes a lateral surface, the end face joint forming in the upper shed portion of this framework is between this lateral surface and medial surface, and this light blocking unit covers the medial surface in the upper shed portion of this framework, end face and lateral surface simultaneously.
7. display device according to claim 1, it is characterized in that, the upper shed portion of this framework includes a medial surface, and this medial surface is the beside regarding to this display module, and this gap is between the medial surface and the beside of display module in the upper shed portion of this framework.
8. display device according to any one of claim 1 to 7, is characterized in that, this light blocking unit connects with this first mucigel.
9. display device according to any one of claim 1 to 7, is characterized in that, is provided with one second mucigel between this cover sheet and this first mucigel.
10. display device according to any one of claim 1 to 7, it is characterized in that, this light blocking unit includes a substrate layer and two bonding coats, this two bonding coat is located on the two relative lateral surfaces of this substrate layer respectively, and this two bonding coat connects with this display module with peristome on this framework respectively.
11. display devices according to claim 10, is characterized in that, the substrate layer of this light blocking unit is foamed cotton layer, oneself two ester layer or layer of polycarbonate of poly terephthalic acid.
12. display devices according to claim 10, is characterized in that, the thickness of the substrate layer of this light blocking unit is between 25 millimeters to 35 millimeters.
13. display devices according to any one of claim 1 to 7, is characterized in that, this light blocking unit is greater than by viscosity and equals 10, and the opaque liquid adhesive curing of 000 centipoise forms.
14. display devices according to any one of claim 1 to 7, is characterized in that, this first mucigel is made by Liquid optical clear adhesive or solid state optics transparent adhesive tape.
15. display devices according to any one of claim 1 to 7, is characterized in that, are provided with an induction conductive structure between this cover sheet and this first mucigel.
16. display devices according to any one of claim 1 to 7, is characterized in that, this display module includes polaroid on, and this gap is on this on polaroid and this framework between peristome.
17. display devices according to claim 16, it is characterized in that, this display module includes an induction electrode structure, this induction electrode structure connects with polaroid on this, it includes one first induction electrode and one second induction electrode, and this first induction electrode and this second induction electrode are arranged at upper side and the downside of polaroid on this respectively.
18. display devices according to claim 16, it is characterized in that, this display module includes an induction electrode structure, on the upper side of this induction electrode vibrational power flow polaroid on this, and this induction electrode structure includes one first induction electrode, one second induction electrode and an insulator, this first induction electrode and this second induction electrode are arranged on the two sides of this insulator respectively, and this second induction electrode connects with the upper side of polaroid on this.
19. display devices according to claim 16, it is characterized in that, this display module includes an induction electrode structure, on the downside of this induction electrode vibrational power flow polaroid on this, and this induction electrode structure includes one first induction electrode, one second induction electrode and an insulator, this first induction electrode and this second induction electrode are arranged on the two sides of this insulator respectively, and this first induction electrode connects with the downside of polaroid on this.
CN201410314170.7A 2014-07-03 2014-07-03 Display equipment Pending CN105336270A (en)

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Application Number Priority Date Filing Date Title
CN201410314170.7A CN105336270A (en) 2014-07-03 2014-07-03 Display equipment
TW103128064A TWI546591B (en) 2014-07-03 2014-08-15 Display device
TW103214592U TWM497798U (en) 2014-07-03 2014-08-15 Display device

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Application Number Priority Date Filing Date Title
CN201410314170.7A CN105336270A (en) 2014-07-03 2014-07-03 Display equipment

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TW (2) TWM497798U (en)

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