CN206075244U - A kind of contactor control device with mechanics inducing function - Google Patents

A kind of contactor control device with mechanics inducing function Download PDF

Info

Publication number
CN206075244U
CN206075244U CN201620727385.6U CN201620727385U CN206075244U CN 206075244 U CN206075244 U CN 206075244U CN 201620727385 U CN201620727385 U CN 201620727385U CN 206075244 U CN206075244 U CN 206075244U
Authority
CN
China
Prior art keywords
conductive layer
electrode
contact point
line
control device
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.)
Active
Application number
CN201620727385.6U
Other languages
Chinese (zh)
Inventor
吕岳敏
张高民
郑清交
林铿
孙楹煌
陈远明
许冀雁
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.)
Shantou Goworld Display Co Ltd
Shantou Goworld Display Technology Co Ltd
Original Assignee
Shantou Goworld Display Technology Co Ltd
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 Shantou Goworld Display Technology Co Ltd filed Critical Shantou Goworld Display Technology Co Ltd
Priority to CN201620727385.6U priority Critical patent/CN206075244U/en
Application granted granted Critical
Publication of CN206075244U publication Critical patent/CN206075244U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Abstract

This utility model is related to a kind of contactor control device with mechanics inducing function, including transparency carrier and it is arranged on the first conductive layer, insulating barrier and second conductive layer in the first face of transparency carrier, first conductive layer is patterned into touch sensible electrode, the first line, first make contact and the second contact point, touch sensible electrode includes multiple X electrodes and multiple Y electrodes, second conductive layer is patterned into multiple first strain resistors, the second line and the 3rd contact point, and the first strain resistor passes through the second line and the 3rd contact portion;Insulating barrier is provided with through hole, and the second conductive layer is provided with wire jumper, and the X electrode mutually gone together is connected with each other by same wire jumper through through hole and is connected to the second contact point.Make use of the second conductive layer of mechanics inducing function to make wire jumper, wire jumper is used for the X electrode mutually gone together, so that X electrode can pass through second contact point and external connection of negligible amounts, so as to reduce the width of line, and external connection is less, it is to avoid the difficulty of external connection.

Description

A kind of contactor control device with mechanics inducing function
Technical field
This utility model is related to a kind of contactor control device, more particularly to a kind of contactor control device with mechanics inducing function.
Background technology
The capacitive touch screen of monolayer multiple spot, generally comprises transparency carrier and setting conductive layer on the transparent substrate, The transparency carrier is divided into mesozone and Zhou Bianqu, the conductive layer be patterned into touch sensible electrode, the first line, first Contact point, the touch sensible electrode are arranged on mesozone, and touch sensible electrode includes multiple X electrodes and Y electrode, and the Y is electric Pole extends along y directions, and the plurality of X electrode is arranged and can be divided into multiple rows, the first make contact along the side of Y electrode Zhou Bianqu is arranged on, the touch sensible electrode is connected with first make contact by the first line, and final first make contact passes through Flexible circuit board (FPC) is connected to external circuitses.
The quantity that first make contact be can be seen that from above-mentioned contact portion at least needs to be set to X electrode with Y electrode Sum, the quantity of first make contact are very more, cause difficult (the certain face of FPC pins needs of the connection between the first contact and FPC Product, therefore the area of junction is very big).
On the other hand, in order to realize mechanics inducing function, it is thus proposed that further arrange other electrode on the touchscreen Layer, and strain resistor is patterned into, to reach by strain resistor come the purpose of pressing force on detecting touch screen, however, Strain resistor needs more external lead wires, when touch screen adopts above-mentioned monolayer multi-point design, further increases external connection It is difficult.
The content of the invention
The technical problems to be solved in the utility model is to provide a kind of contactor control device with mechanics inducing function, this band The contactor control device for having mechanics inducing function can not only adopt the touch control layer of monolayer multiple spot to design, and external connection is less, it is to avoid outward The difficulty of wiring.Using technical scheme it is as follows:
A kind of contactor control device with mechanics inducing function, including transparency carrier and it is arranged on the first face of transparency carrier First conductive layer, transparency carrier are divided into mesozone and Zhou Bianqu, the first conductive layer be patterned into touch sensible electrode, first Line, first make contact and the second contact point, touch sensible electrode are arranged on mesozone, and touch sensible electrode includes that multiple X are electric Pole and multiple Y electrodes, Y electrode extend along the Y direction, and multiple X electrodes are arranged along the side of Y electrode and are divided at least one OK, the first contact, the second contact point are arranged on Zhou Bianqu, and touch sensible electrode is connected with first make contact by the first line, It is characterized in that:Also include insulating barrier and the second conductive layer, insulating barrier, the second conductive layer are successively set on first conductive layer On;Second conductive layer is patterned into multiple first strain resistors, the second line and the 3rd contact point, and the first strain resistor sets Put in the mesozone, the 3rd contact point is arranged on Zhou Bianqu, the first strain resistor passes through the second line and the 3rd contact portion; Insulating barrier is additionally provided with multiple through holes corresponding with the first make contact, and the second conductive layer is additionally provided with a plurality of wire jumper, mutually goes together X electrode be connected with each other by same wire jumper through through hole and be connected to the second contact point.
Above-mentioned transparency carrier can be transparency carrier or plastic base, and above-mentioned first conductive layer, the second conductive layer can be The transparent oxide conductive film of transparent conductive oxide film, such as ITO (tin indium oxide), AZO (zinc oxide aluminum) etc, except this Outside, which can also be the transparent conductive film of nano-silver thread dispersion membrane, carbon fiber dispersion membrane etc, and PEDOT etc Transparent conductive polymer thin film.
This contactor control device with mechanics inducing function is designed using the touch control layer of monolayer multiple spot, make use of mechanics to sense Making wire jumper, wire jumper is used for the X electrode mutually gone together to second conductive layer of function, so that X electrode can pass through negligible amounts The second contact point and external connection, so as to reduce the width of line, and external connection is less, it is to avoid the difficulty of external connection.
Used as preferred version of the present utility model, the insulating barrier is transparent photosensitive resin material, and the through hole passes through Developing process is made.Using photosensitive resin material as insulating barrier and by developing process making pupil, can cause exhausted Edge layer it is smooth, and through hole is more smooth, is conducive to the conducting between wire jumper and first make contact)
Used as the further preferred version of this utility model, the thickness of insulating layer is 2~10 microns.By thickness of insulating layer 2~10 microns are set to, more suitable thickness, processing are more prone to.
Used as preferred version of the present utility model, the surface resistance of second conductive layer is electric more than the face of the first conductive layer Resistance.The surface resistance of the second conductive layer is set greater than into the surface resistance of the first conductive layer, first made by the second conductive layer should Become resistance, its resistance value is higher, it is possible to reduce the track lengths of its resistance, and the resistance of the first conductive layer is relatively low, is more beneficial for The transmission of touching signals.
Used as preferred version of the present utility model, first strain resistor is corresponding with Y electrode.Generally, Y is electric Pole is arranged to emission electrode, and X electrode is arranged to receiving electrode, and the first strain resistor is set to relative with Y electrode Should, i other words, among the first strain resistor is in the upright projection of Y electrode, so as to avoid the first strain resistor Chong Die with X electrode And interfere.
Used as preferred version of the present utility model, also including the 3rd conductive layer, the 3rd conductive layer is arranged on the transparent base Second face of plate, the 3rd conductive layer are patterned into multiple second strain resistors, the 3rd line and the 4th contact point, and second should Change resistance is corresponding with first strain resistor, and the second strain resistor is connected with the 4th contact point by the 3rd line.
Used as the further preferred version of this utility model, first strain resistor, the second strain resistor have identical Figure.First strain resistor, the second strain resistor are set to identical figure, overcome temperature to float such that it is able to be compared to each other The problem of shifting.
This utility model compared with prior art, with as follows a little:
This contactor control device with mechanics inducing function is designed using the touch control layer of monolayer multiple spot, make use of mechanics to sense Making wire jumper, wire jumper is used for the X electrode mutually gone together to second conductive layer of function, so that X electrode can pass through negligible amounts The second contact point and external connection, so as to reduce the width of line, and external connection is less, it is to avoid the difficulty of external connection.
Description of the drawings
Fig. 1 is the structural representation of this utility model preferred implementation;
Fig. 2 is the top view of Fig. 1;
Fig. 3 is the structural representation that wire jumper is connected with X electrode and the second contact point.
Specific embodiment
It is described further with preferred implementation of the present utility model below in conjunction with the accompanying drawings.
As shown in Figure 1, 2, 3, this contactor control device with mechanics inducing function, including transparency carrier 1 and set successively Put the first conductive layer 2, insulating barrier on 1 first face of transparency carrier(Fig. 1, covered by other layers in 2), the second conductive layer 3 With the 3rd conductive layer 4;Transparency carrier 1 is divided into mesozone 5 and Zhou Bianqu 6;First conductive layer 2 is patterned into touch sensible electricity Pole 201, the first line 202, first make contact 203 and the second contact point 204, touch sensible electrode 201 are arranged on mesozone 5, Touch sensible electrode 201 includes multiple X electrodes 2011 and multiple Y electrodes 2012, Y electrode along 2012 Y-direction extend, multiple X Electrode 201 is arranged along the side of Y electrode 2011 and is divided into multirow;First contact 203, the second contact point 204 are arranged on week Border area 6, touch sensible electrode 201 are connected with first make contact 203 by the first line 202;Second conductive layer 3 is patterned into Multiple first strain resistors 301, the second line 302 and the 3rd contact point 303, the first strain resistor 301 are arranged on mesozone 5, the first strain resistor 301 is corresponding with Y electrode 2012, and the 3rd contact point 303 is arranged on Zhou Bianqu 6, the first strain resistor 301 It is connected with the 3rd contact 303 by the second line 302;Insulating barrier is additionally provided with multiple through holes corresponding with first make contact 203 7, the second conductive layer 3 is additionally provided with a plurality of wire jumper 8, and the X electrode 2011 mutually gone together is connected with each other by same wire jumper 8 through through hole 7 And it is connected to the second contact point 204;3rd conductive layer 4 is arranged on the second face of transparency carrier 1, and the 3rd conductive layer 4 is patterned immediately For multiple second strain resistors 401, the 3rd line 402 and the 4th contact point 403, the second strain resistor 401 and the first strain Resistance 301 is corresponding, and the first strain resistor 301, the second strain resistor 401 have identical figure, and the second strain resistor 401 leads to Cross the 3rd line 402 to be connected with the 4th contact point 403.
Above-mentioned insulating barrier is transparent photosensitive resin material, and thickness of insulating layer is 5 microns(2~10 microns can);On State through hole to be made by developing process.
Surface resistance of the surface resistance of above-mentioned second conductive layer 3 more than the first conductive layer 2.
Furthermore, it is necessary to illustrate, the specific embodiment described in this specification, its each several part title etc. can not Together, the equivalent or simple change done by all constructions according to described in this utility model inventional idea, feature and principle, is included in this In the protection domain of utility model patent.This utility model person of ordinary skill in the field can be to described concrete reality Apply example to make various modifications or supplement or using similar mode replacement, without departing from structure of the present utility model or Surmount scope defined in the claims, protection domain of the present utility model all should be belonged to.

Claims (7)

1. a kind of contactor control device with mechanics inducing function, including transparency carrier and the of the first face of transparency carrier is arranged on One conductive layer, transparency carrier are divided into mesozone and Zhou Bianqu, and the first conductive layer is patterned into touch sensible electrode, the first company Line, first make contact and the second contact point, touch sensible electrode are arranged on mesozone, and touch sensible electrode includes multiple X electrodes With multiple Y electrodes, Y electrode extends along y directions, and multiple X electrodes arrange and be divided at least a line along the side of Y electrode, First contact, the second contact point are arranged on Zhou Bianqu, and touch sensible electrode is connected with first make contact by the first line, and which is special Levying is:Also include insulating barrier and the second conductive layer, insulating barrier, the second conductive layer are successively set on first conductive layer;The Two conductive layers are patterned into multiple first strain resistors, the second line and the 3rd contact point, and the first strain resistor is arranged on The mesozone, the 3rd contact point are arranged on Zhou Bianqu, and the first strain resistor passes through the second line and the 3rd contact portion;Insulation Layer is additionally provided with multiple through holes corresponding with the first make contact, and the second conductive layer is additionally provided with a plurality of wire jumper, and the X for mutually going together is electric Pole is connected with each other by same wire jumper through through hole and is connected to the second contact point.
2. contactor control device as claimed in claim 1, is characterized in that:The insulating barrier is transparent photosensitive resin material, described Through hole is made by developing process.
3. contactor control device as claimed in claim 2, is characterized in that:The thickness of insulating layer is 2~10 microns.
4. contactor control device as claimed in claim 1, is characterized in that:The surface resistance of second conductive layer is more than the first conductive layer Surface resistance.
5. contactor control device as claimed in claim 1, is characterized in that:First strain resistor is corresponding with Y electrode.
6. contactor control device as claimed in claim 1, is characterized in that:Also include the 3rd conductive layer, the 3rd conductive layer is arranged on institute The second face of transparency carrier is stated, the 3rd conductive layer is patterned into multiple second strain resistors, the 3rd line and the 4th contact Point, the second strain resistor are corresponding with first strain resistor, and the second strain resistor passes through the 3rd line and the 4th contact point Connection.
7. contactor control device as claimed in claim 6, is characterized in that:First strain resistor, the second strain resistor have phase Same figure.
CN201620727385.6U 2016-07-12 2016-07-12 A kind of contactor control device with mechanics inducing function Active CN206075244U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620727385.6U CN206075244U (en) 2016-07-12 2016-07-12 A kind of contactor control device with mechanics inducing function

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620727385.6U CN206075244U (en) 2016-07-12 2016-07-12 A kind of contactor control device with mechanics inducing function

Publications (1)

Publication Number Publication Date
CN206075244U true CN206075244U (en) 2017-04-05

Family

ID=58424541

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201620727385.6U Active CN206075244U (en) 2016-07-12 2016-07-12 A kind of contactor control device with mechanics inducing function

Country Status (1)

Country Link
CN (1) CN206075244U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110249295A (en) * 2017-07-03 2019-09-17 黄丽华 A kind of multi-point touch application apparatus

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110249295A (en) * 2017-07-03 2019-09-17 黄丽华 A kind of multi-point touch application apparatus

Similar Documents

Publication Publication Date Title
US9857923B2 (en) Touch panel including an elastic intermediate layer
CN205353968U (en) Pressure sensing input device
US8607651B2 (en) Hybrid capacitive force sensors
CN101639745B (en) Touch panel and display unit
KR101093651B1 (en) Touch panel using metallic thin-film and manufacture method thereof
CN203350852U (en) Touch panel of electrostatic capacitance coupled mode
CN103329076B (en) Coordinate input device
JP2014149861A (en) Touch panel and method for manufacturing the same
CN104216543A (en) Touch screen
US8917157B2 (en) Touch panel
KR101956086B1 (en) Touch panel, display and method of the same
EP2928080B1 (en) Capacitive touch-sensitive device
KR101765950B1 (en) Touch panel
CN103988155A (en) Electrode pattern of touch panel and method of manufacturing the same
CN105493015A (en) Combination of capacitive touch screen and flexible printed circuit board
CN211479096U (en) Capacitive touch screen with ultra-narrow frame and terminal equipment
CN108762580A (en) Show equipment, touch sensing and preparation method thereof
CN104714680A (en) Touch control panel
CN106201040A (en) The manufacture method of touch screen, display device and touch screen
JP2011028699A (en) Capacitance type touch panel structure
CN206075244U (en) A kind of contactor control device with mechanics inducing function
KR20210114140A (en) Touch Sensor and Method for Manufacturing the Same
JP2015200600A (en) Pressure sensitive element, pressure sensor and display device
US9342171B2 (en) Touch panel with first and second electrodes extending in the same direction but on opposite surfaces of a substrate
KR20130107682A (en) Touch panel

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant
CB03 Change of inventor or designer information
CB03 Change of inventor or designer information

Inventor after: Lv Yuemin

Inventor after: Zhang Gaomin

Inventor after: Zheng Qingjiao

Inventor after: Lin Keng

Inventor after: Sun Yinghuang

Inventor after: Chen Yuanming

Inventor after: Xu Yiyan

Inventor before: Lv Yuemin

Inventor before: Zhang Gaomin

Inventor before: Zheng Qingjiao

Inventor before: Lin Keng

Inventor before: Sun Yinghuang

Inventor before: Chen Yuanming

Inventor before: Xu Jiyan