CN103164063A - Touch panel module and touch stereoscopic display device - Google Patents

Touch panel module and touch stereoscopic display device Download PDF

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Publication number
CN103164063A
CN103164063A CN2011104215066A CN201110421506A CN103164063A CN 103164063 A CN103164063 A CN 103164063A CN 2011104215066 A CN2011104215066 A CN 2011104215066A CN 201110421506 A CN201110421506 A CN 201110421506A CN 103164063 A CN103164063 A CN 103164063A
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China
Prior art keywords
sensing serials
touch
control
display device
sensing
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CN2011104215066A
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Chinese (zh)
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张郁旼
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Acer Inc
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Acer Inc
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Priority to CN2011104215066A priority Critical patent/CN103164063A/en
Publication of CN103164063A publication Critical patent/CN103164063A/en
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Abstract

The invention relates to a touch panel module which comprises a base, a protective plate, a plurality of first sensing arrays and a plurality of second sensing arrays. The base is provided with a first surface and a second surface relative to the first surface. The protective plate is connected with the base and is provided with a third surface and a fourth surface relative to the third surface. The fourth surface is located between the first surface and the third surface. The second surface is located between the first surface and the first sensing arrays. The second sensing arrays and the first sensing arrays are staggered in a serial mode, and are electrically insulated. The second sensing arrays are located on the fourth surface and are contacted with the fourth surface. According to the special configuration method, the distances between the first sensing arrays and the second sensing arrays are far, so that control signals read out by the second sensing arrays cannot be easily disturbed by the internal signals of a display panel, and furthermore, touch effects of touch panel modules are improved. Touch sensitivity of the touch panel modules and the touch display device is improved.

Description

Touch panel module and touch-control 3 d display device
Technical field
The present invention relates to a kind of electronic installation, and be particularly related to a kind of touch panel module and touch-control 3 d display device.
Background technology
Contact panel is used in various electronic product at present widely because of the advantage with operation interface hommization, and mobile electronic product particularly is as mobile phone, panel computer etc.Distinguish with the sensing principle, contact panel can be divided into resistance-type, condenser type and optical profile type.Wherein, better with the sensing effect of capacitance touching control panel, and become the main flow of contact panel now.
Common capacitance touching control panel comprises substrate, a plurality of the first sensing serials that are electrically insulated each other and a plurality of the second sensing serials.The first sensing serials and the second sensing serials are positioned on the same surface of substrate.The first sensing serials and the second sensing serials are interlocked and are electrically insulated.Yet, because the first sensing serials and the second sensing serials are to be positioned on same surface, cause the distance of the first sensing serials and the second sensing serials shorter, and then make the capacitance (capacitance) between the first sensing serials and the second sensing serials large.So, just can be excessive in order to the load (loading) of the wafer that drives capacitance touching control panel, and make the sensitivity (sensitivity) of capacitance touching control panel descend.
In addition, in the prior art, capacitance touching control panel and display panel are fitted and are formed touch control display apparatus.Along with the trend of touch control display apparatus slimming, the first sensing serials and the distance between the second sensing serials and display panel of capacitance touching control panel are more and more nearer, and then cause the display panel internal signal to disturb the problem of touching signals.
Summary of the invention
The invention provides a kind of touch panel module, it has high touch-control sensitivity (sensitivity).
The invention provides a kind of touch-control 3 d display device, it also has high touch-control sensitivity.
The invention provides a kind of touch panel module, comprise substrate, fender, a plurality of the first sensing serials and a plurality of the second sensing serials.Substrate has first surface and with respect to the second surface of first surface.Fender has the 3rd surface and with respect to the 4th surface on the 3rd surface.Fender is arranged at a side of substrate.The 4th surface of fender is between the first surface of the 3rd surface and substrate.The first sensing serials is arranged on the second surface of substrate and contacts with second surface, so that second surface is between first surface and the first sensing serials.The second sensing serials be arranged at the 4th surface of fender upper and with the 4th Surface Contact.The second sensing serials and the first sensing serials are interlocked and are electrically insulated.The 4th surface is between the 3rd surface and the second sensing serials.
The invention provides a kind of touch-control 3 d display device, comprise fender, parallax grating (Parallax Barrier), display panel, a plurality of the first sensing serials and a plurality of the second sensing serials.Fender has the 5th relative surface and the 6th surface.Parallax grating is connected with fender, and has the 7th relative surface and the 8th surface.The 7th surface is between the 6th surface and the 8th surface.The 8th surface is between the 7th surface and display panel.The first sensing serials and the second sensing serials are interlocked and are electrically insulated.The first sensing serials and the second sensing serials lay respectively at the 6th surface, the 7th surface and the 8th surface wherein any two surfaces upper and respectively with these Surface Contacts.
In one embodiment of this invention, the first above-mentioned sensing serials is used for being transfused to sweep signal, and the second sensing serials is used for reading touch-control news signal.
In one embodiment of this invention, above-mentioned touch panel module can further comprise display panel.Display panel is connected with second surface.
In one embodiment of this invention, the first above-mentioned sensing serials and the second sensing serials lay respectively at the 7th the surface with the 6th surface on, and respectively with the 7th the surface with the 6th Surface Contact.
In one embodiment of this invention, the first above-mentioned sensing serials and the second sensing serials lay respectively at the 8th the surface with the 7th surface on, and respectively with the 8th the surface with the 7th Surface Contact.
In one embodiment of this invention, the first above-mentioned sensing serials and the second sensing serials lay respectively at the 8th the surface with the 6th surface on, and respectively with the 8th the surface with the 6th Surface Contact.
In one embodiment of this invention, above-mentioned parallax grating is used for making the touch-control 3 d display device to switch between two dimensional mode and 3-D display pattern.
Based on above-mentioned, compared to prior art, in touch panel module of the present invention and touch-control 3 d display device, distant between the first sensing serials and the second sensing serials, and make the first sensing serials and the formed capacitance of the second sensing serials less.Thus, just less in order to the load of the wafer that drives touch-control 3 d display device or touch-control 3 d display device, and then make touch panel module of the present invention and touch-control 3 d display device have high touch-control sensitivity.
Description of drawings
Figure 1A is the sectional view of the touch panel module of first embodiment of the invention.
Figure 1B is the vertical view of the touch panel module of first embodiment of the invention.
Fig. 2 A is the sectional view of the touch-control 3 d display device of one embodiment of the invention.
Fig. 2 B is the vertical view of the touch panel module of one embodiment of the invention.
Fig. 3 is the sectional view of the touch-control 3 d display device of another embodiment of the present invention.
Fig. 4 is the sectional view of the touch-control 3 d display device of further embodiment of this invention.
Wherein,
100: touch panel module 110: substrate
110a: first surface 110b: second surface
120,210: fender 120a: the 3rd surface
120b: the 4th surface 130,240: the first sensing serials
132: the first rhombus sensor pads 140,250: the second sensing serials
142: the second rhombus sensor pads 150,170: adhesive coating
160,230: display panel 162: the membrane transistor substrate
164: colored filter substrate 200,200A, 200B: the touch-control 3 d display device
210a: the 5th surperficial 210b: the 6th surface
220: parallax grating 220a: the 7th surperficial 220b: the 8th surface
Embodiment
State feature and advantage on the present invention and can become apparent for allowing, embodiment cited below particularly, and coordinate appended graphic being described in detail below.
Embodiment 1
Figure 1A is the sectional view of the touch panel module of first embodiment of the invention.Figure 1B is the vertical view of the touch panel module of first embodiment of the invention.Particularly, Figure 1A is the hatching line AA ' corresponding to Figure 1B.Please be simultaneously with reference to Figure 1A and Figure 1B, the touch panel module 100 of the present embodiment comprises substrate 110, fender 120, a plurality of the first sensing serials 130 that are electrically insulated each other and a plurality of the second sensing serials 140 that are electrically insulated each other.In the present embodiment, substrate 110 and fender 120 materials select material take high light transmission rate and high reliability as good, substrate 110 comprises glass, quartz, organic polymer or other material applicatory with the material of fender 120.
The substrate 110 of the present embodiment has first surface 110a and with respect to the second surface 110b of first surface 110a.The fender 120 of the present embodiment is connected with substrate 110.Further say, fender 120 can see through adhesive coating 150 and connect and substrate 110.Adhesive coating 150 is for example UV cured glue.Fender 120 and have the 3rd surperficial 120a and with respect to the 4th surperficial 120b of the 3rd surperficial 120a.The 4th surperficial 120b is between first surface 110a and the 3rd surperficial 120a.Second surface 110b is between first surface 110a and the first sensing serials 130.The second sensing serials 140 and the first sensing serials 130 are interlocked (being plotted in Figure 1B) and are electrically insulated.The second sensing serials 140 is positioned at the 4th surperficial 120b upward and contacts with the 4th surperficial 120b.
Please refer to Figure 1B, in the present embodiment, each first sensing serials 130 and each the second sensing serials 140 can be respectively formed by a plurality of the first rhombus sensor pads 132 that are electrically connected to each other and a plurality of the second rhombus sensor pads 142 of being electrically connected to each other.Yet the present invention does not limit the external form of the first sensing serials 130 and each the second sensing serials 140, and it all can actual demand do suitable design.In the present embodiment, the material of the first sensing serials 130 and the second sensing serials 140 select material take light high conductivity and high light transmission rate as good, for example indium tin oxide, indium-zinc oxide, aluminium tin-oxide, aluminium zinc oxide, indium germanium zinc oxide or other suitable oxide or above-mentioned at least both stack layer.
The first sensing serials 130 and second sensing serials 140 of the present embodiment can form the touch-control sensing layer.When the user touched touch panel module 100, the capacitance that the first sensing serials 130 and the second sensing serials are 140 can change.Thus, make touch panel module 100 just can sense the position of user's touching, and then make corresponding action.
Referring again to Figure 1B, it should be noted that first sensing serials 130 of the present embodiment and second surface 110b that the second sensing serials 140 lays respectively at substrate 110 and the 4th surperficial 120b of fender 120.In other words, compared to prior art, 140 of the first sensing serials 130 and the second sensing serials distant, and make the capacitance of 140 of the first sensing serials 130 and the second sensing serials less.Thus, just less in order to the load of the wafer that drives touch panel module 100, and then make the touch-control sensitivity (sensitivity) of the touch panel module 100 of the present embodiment increase.
The touch panel module 120 of the present embodiment optionally comprises display panel 160, and makes touch panel module 120 have simultaneously the function of touch-control and demonstration concurrently.In the present embodiment, display panel 160 can be connected with the second surface 110b of substrate 110 by adhesive coating 170.The display panel 160 of the present embodiment can be display panels (liquid crystal display panel), and it comprises membrane transistor substrate (TFT substrate) 162, colored filter substrate (color filter substrate) 164 and the liquid crystal layer (not illustrating) between membrane transistor substrate 162 and colored filter substrate 164.Yet, the present invention is not as limit, in other embodiments, display panel 160 also can be the display panel of organic electric-excitation luminescent displaying panel (organic electroluminescent display panel), electrophoretic display panel (electrophoretic display panel), Electrowetting display panel (electrowetting display panel) or other appropriate formats.
It is worth mentioning that, be subject to the interference of display panel 160 internal signals for fear of reading of touching signals.In the present embodiment, preferably, the first sensing serials 130 is used for being transfused to sweep signal, and the second sensing serials 140 is used for reading touching signals.In other words, be to be positioned to read 160 of the second sensing serials 140 of touching signals and display panels in order to the first sensing serials 130 of input scan signal.Thus, the first sensing serials 130 placed in the middle just can be the second sensing serials 140 electrical shielding is provided, and then makes the touching signals of being read by the second sensing serials 140 not be vulnerable to the interference of display panel 160 internal signals.But, the invention is not restricted to this, in other embodiments, the second sensing serials 140 also can be used for being transfused to sweep signal, and the first sensing serials 130 also can be used for reading touching signals.
Embodiment 2
Fig. 2 A is the sectional view of the touch-control 3 d display device of one embodiment of the invention.Fig. 2 B is the vertical view of the touch panel module of one embodiment of the invention.Particularly, Fig. 2 A is the hatching line BB ' corresponding to Fig. 2 B.Please be simultaneously with reference to Fig. 2 A and Fig. 2 B, the touch-control 3 d display device 200 of the present embodiment is similar to the touch panel module of the first embodiment.Both are main difference: the touch-control 3 d display device 200 of the present embodiment also comprises parallax grating 220, and the position that the first sensing serials 240 and the second sensing serials 250 configure in the present embodiment is with different in the first embodiment.Below explain for this different part, both just no longer repeat something in common.
The touch-control 3 d display device 200 of the present embodiment comprises fender 210, parallax grating 220, display panel 230, a plurality of the first sensing serials 240 that are electrically insulated each other and a plurality of the second sensing serials 250 that are electrically insulated each other.In the present embodiment, parallax grating 220 is converted to 3-dimensional image in order to the bidimensional image that display panel 230 is presented.The parallax grating 220 of the present embodiment is for example adjustable parallax grating, and it can make touch-control 3 d display device 200 switch between two dimensional mode and 3-D display pattern.Yet, the invention is not restricted to this, in other embodiments, parallax grating 220 also can be fixing parallax grating.
The fender 210 of the present embodiment has the 5th relative surperficial 210a and the 6th surperficial 210b.Parallax grating (Parallax Barrier) 220 is connected with fender 210.Parallax grating 220 has the 7th relative surperficial 220a and the 8th surperficial 220b.The 7th surperficial 220a is between the 6th surperficial 210b and the 8th surperficial 220b.The 8th surperficial 220b is between the 7th surperficial 220a and display panel 230.The first sensing serials 240 and the second sensing serials 250 are interlocked (being plotted in Fig. 2 B) and are electrically insulated.The first sensing serials 240 and the second sensing serials 250 lay respectively at the 6th surperficial 210b, the 7th surperficial 220a and the 8th surperficial 220b wherein any two surfaces upper and respectively with these Surface Contacts.
For example, as shown in Fig. 2 A, in the present embodiment, the first sensing serials 240 and the second sensing serials 250 can lay respectively on the 7th surperficial 220a and the 6th surperficial 210b, and contact with the 6th surperficial 210b with the 7th surperficial 220a respectively.In other words, first sensing serials 240 of the present embodiment and the second sensing serials 250 can be incorporated in fender 210 and parallax grating 220, and then make the touch-control 3 d display device 200 of the present embodiment have the advantage of slimming.In addition, compared to prior art, in the present embodiment, 250 of the first sensing serials 240 and the second sensing serials distant, and make the capacitance of 250 of the first sensing serials 240 and the second sensing serials less.Thus, just less in order to the load of the wafer that drives touch-control 3 d display device 200, and then make the touch-control sensitivity of touch-control 3 d display device 200 of the present embodiment higher.
It is worth mentioning that, for fear of the interference that is subject to display panel 230 internal signals of reading of the touching signals of touch-control 3 d display device 200.In the present embodiment, preferably, the first sensing serials 240 is used for being transfused to sweep signal, and the second sensing serials 250 is used for reading touching signals.In other words, be between in order to second sensing serials 250 and display panel 230 of reading touching signals in order to the first sensing serials 240 of input scan signal.Thus, the first sensing serials 240 placed in the middle just can be the second sensing serials 250 electrical shielding is provided, and then makes the touching signals of being read by the second sensing serials 250 not be vulnerable to the interference of display panel 230 internal signals.But, the invention is not restricted to this, in other embodiments, the second sensing serials 250 also can be used for being transfused to sweep signal, and the first sensing serials 240 also can be used for reading touching signals.
In addition, in touch-control 3 d display device of the present invention, the configuration mode of the first sensing serials 240 and the second sensing serials 250 is not limited to shown in Fig. 2 A.Fig. 3 is the sectional view of the touch-control 3 d display device 200A of another embodiment of the present invention.Please refer to Fig. 3, in this embodiment, the first sensing serials 240 and the second sensing serials 250 can lay respectively at the 8th surperficial 220b and the 7th surperficial 220a, and contact with the 7th surperficial 220a with the 8th surperficial 220b respectively.The first sensing serials 240 is used for being transfused to sweep signal, and the second sensing serials 250 is used for reading touching signals.Touch-control 3 d display device 200A also has the advantages such as interference with the similar slimming of touch-control 3 d display device 200, high touch-control sensitivity and reduction display panel 230 internal signals.
Fig. 4 is the sectional view of the touch-control 3 d display device 200B of further embodiment of this invention.Please refer to Fig. 4, in this embodiment, the first sensing serials 240 and the second sensing serials 250 lay respectively on the 8th surperficial 220b and the 6th surperficial 210b, and contact with the 6th surperficial 210b with the 8th surperficial 220b respectively.The first sensing serials 240 is used for being transfused to sweep signal, and the second sensing serials 250 is used for reading touching signals.Touch-control 3 d display device 200B also has the advantages such as interference with the similar slimming of touch-control 3 d display device 200, high touch-control sensitivity and reduction display panel 230 internal signals.
In sum, make distant between the first sensing serials and the second sensing serials by special configuration mode in the touch panel module of one embodiment of the invention and touch control display apparatus.Thus, the capacitance between the first sensing serials and the second sensing serials is just less, and then makes the touch-control sensitivity of touch panel module and touch control display apparatus improve.
In addition, in the touch panel module and touch control display apparatus of one embodiment of the invention, in order to the first sensing serials of input scan signal between in order to second sensing serials and display panel of reading touching signals.Thus, the first sensing serials placed in the middle just can be the second sensing serials electrical shielding is provided, and makes the touching signals of being read by the second sensing serials not be vulnerable to the interference of display panel internal signal, and then promotes the touch-control effect of touch panel module.
Although the present invention with preferred embodiment openly as above; be not to limit the present invention, any those skilled in the art, without departing from the spirit and scope of the present invention; when can do a little change and retouching, so protection scope of the present invention is as the criterion when the scope with the application's claims.

Claims (9)

1. touch panel module comprises:
One substrate has a first surface and with respect to a second surface of this first surface;
One fender has one the 3rd surface and with respect to one the 4th surface on the 3rd surface, wherein this fender is arranged at a side of this substrate, and the 4th surface of this fender is between this first surface of the 3rd surface and this substrate;
A plurality of the first sensing serials are arranged on this second surface of this substrate and contact with this second surface, so that this second surface is between this first surface and those the first sensing serials; And
A plurality of the second sensing serials, be arranged at the 4th surface of this fender upper and with the 4th Surface Contact, staggered and be electrically insulated with those first sensing serials so that the 4th surface is between the 3rd surface and those second sensing serials.
2. touch panel module as claimed in claim 1, is characterized in that, those first sensing serials are used for being transfused to the one scan signal, and those second sensing serials are used for reading a touching signals.
3. touch panel module as claimed in claim 2, is characterized in that, also comprises a display panel, and this display panel is connected with this second surface.
4. touch-control 3 d display device comprises:
One fender has one the 5th relative surface and one the 6th surface;
One parallax grating is connected with this fender, and has one the 7th relative surface and one the 8th surface, and wherein the 7th surface is between the 6th surface and the 8th surface;
One display panel, the 8th surface is between the 7th surface and this display panel;
A plurality of the first sensing serials and a plurality of the second sensing serials, those first sensing serials and those the second sensing serials are staggered and be electrically insulated, those first sensing serials and this second sensing serials lay respectively at the 6th surface, the 7th surface and the 8th surface wherein any two surfaces upward and respectively with those Surface Contacts.
5. touch-control 3 d display device as claimed in claim 4, is characterized in that, those first sensing serials are used for being transfused to the one scan signal, and those second sensing serials are used for reading a touching signals.
6. touch-control 3 d display device as claimed in claim 5, is characterized in that, those first sensing serials and this second sensing serials lay respectively at the 7th the surface with the 6th surface on, and respectively with the 7th the surface with the 6th Surface Contact.
7. touch-control 3 d display device as claimed in claim 5, is characterized in that, those first sensing serials and this second sensing serials lay respectively at the 8th the surface with the 7th surface on, and respectively with the 8th the surface with the 7th Surface Contact.
8. touch-control 3 d display device as claimed in claim 5, is characterized in that, those first sensing serials and this second sensing serials lay respectively at the 8th the surface with the 6th surface on, and respectively with the 8th the surface with the 6th Surface Contact.
9. as claim 4 a described touch-control 3 d display device, it is characterized in that, this parallax grating is used for making this touch-control 3 d display device to switch between two dimensional mode and 3-D display pattern.
CN2011104215066A 2011-12-15 2011-12-15 Touch panel module and touch stereoscopic display device Pending CN103164063A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104461109A (en) * 2013-09-17 2015-03-25 胜华科技股份有限公司 Touch panel

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102109690A (en) * 2009-12-25 2011-06-29 上海天马微电子有限公司 Embedded touch-screen LCD (liquid crystal display) device and control method
WO2011125373A1 (en) * 2010-04-01 2011-10-13 シャープ株式会社 Display device
CN102279660A (en) * 2010-06-12 2011-12-14 陈维钏 Method for manufacturing touch panel
CN102279676A (en) * 2010-06-12 2011-12-14 陈维钏 Method for manufacturing touch panel
CN202075721U (en) * 2011-03-23 2011-12-14 上海立体数码科技发展有限公司 Means integrating parallax barrier and capacitance touch screen and display device having the same

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102109690A (en) * 2009-12-25 2011-06-29 上海天马微电子有限公司 Embedded touch-screen LCD (liquid crystal display) device and control method
WO2011125373A1 (en) * 2010-04-01 2011-10-13 シャープ株式会社 Display device
CN102279660A (en) * 2010-06-12 2011-12-14 陈维钏 Method for manufacturing touch panel
CN102279676A (en) * 2010-06-12 2011-12-14 陈维钏 Method for manufacturing touch panel
CN202075721U (en) * 2011-03-23 2011-12-14 上海立体数码科技发展有限公司 Means integrating parallax barrier and capacitance touch screen and display device having the same

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104461109A (en) * 2013-09-17 2015-03-25 胜华科技股份有限公司 Touch panel

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Application publication date: 20130619