CN108445656A - A kind of more dimension glass adsorbing mechanisms for COF and LCD prepressing devices - Google Patents

A kind of more dimension glass adsorbing mechanisms for COF and LCD prepressing devices Download PDF

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Publication number
CN108445656A
CN108445656A CN201810337293.0A CN201810337293A CN108445656A CN 108445656 A CN108445656 A CN 108445656A CN 201810337293 A CN201810337293 A CN 201810337293A CN 108445656 A CN108445656 A CN 108445656A
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China
Prior art keywords
lcd
placement platform
gas circuit
cof
absorption gas
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Granted
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CN201810337293.0A
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Chinese (zh)
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CN108445656B (en
Inventor
吴加富
缪磊
张天恩
蔡建明
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Suzhou RS Technology Co Ltd
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Suzhou RS Technology Co Ltd
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    • GPHYSICS
    • G02OPTICS
    • G02FOPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
    • G02F1/00Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics
    • G02F1/01Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour 
    • G02F1/13Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour  based on liquid crystals, e.g. single liquid crystal display cells
    • G02F1/1303Apparatus specially adapted to the manufacture of LCDs
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P40/00Technologies relating to the processing of minerals
    • Y02P40/50Glass production, e.g. reusing waste heat during processing or shaping
    • Y02P40/57Improving the yield, e-g- reduction of reject rates

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  • Physics & Mathematics (AREA)
  • Nonlinear Science (AREA)
  • Engineering & Computer Science (AREA)
  • Manufacturing & Machinery (AREA)
  • Chemical & Material Sciences (AREA)
  • Crystallography & Structural Chemistry (AREA)
  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Liquid Crystal (AREA)
  • Container, Conveyance, Adherence, Positioning, Of Wafer (AREA)

Abstract

The invention discloses a kind of more dimension glass adsorbing mechanisms for COF and LCD prepressing devices, including:Support base;And the placement platform with support base rotation connection, the placement platform extend in the horizontal plane, wherein placement platform is set to the top of support base, and placement platform is equipped with multiple binding domains for adsorbing different workpieces size.According to the present invention, in the colleague for improving glass position state automation regulated efficiency and precision, additionally it is possible to adapt to the glass of sizes, there is higher market application prospect.

Description

A kind of more dimension glass adsorbing mechanisms for COF and LCD prepressing devices
Technical field
The present invention relates to liquid crystal display panel automated manufacturing technical fields, more particularly to a kind of to be used for COF and LCD prepressing devices More dimension glass adsorbing mechanisms.
Background technology
Liquid crystal display panel is also referred to as liquid crystal display i.e. LCD (Liquid Crystal Display), is the display of planar ultra-thin Equipment, it is made of a certain number of colored or monochrome pixels, is positioned in front of light source or reflecting surface.
The displaying principle of LCD is the filling liquid crystal material between two blocks of parallel-plates, is changed in liquid crystal material by voltage Part comes column-shaped condition, to achieve the purpose that shading and the light transmission image deep mixed, in picturesque disorder to show, and only The filter layer of three-primary colours is added between two pieces of tablets, so that it may realize and show chromatic image.Monochromatic LCD is almost moved back at present Go out laptop market, and colored LCD still sustainable developments.Color LCD is mainly divided into as two kinds of STN and TFT, wherein TFT (Thin Film Transistor) LCD, also known as active electric crystalline substance thin film transistor liquid crystal display screen, that is, by many people The very color liquid crystal display being commonly called as;DSTN (Dual-Scn Twisted Nematic) LCD, i.e., it is double to scan liquid crystal display, be A kind of display mode of STN LCD, has logged out market now.
The electric signal component of liquid crystal display is mainly made of backlight circuit and display circuit, and wherein display circuit is used for Transmission liquid crystal panel pixel drives required charge and control signal, mainly utilizes printed circuit board, that is, PCB (Printed Circuit Board) it transmits, while need to be through the IC that overdrives (Driver IC) by charge and control signal transmission to liquid crystal surface In plate.It is generally one end connection liquid crystal display panel of Driver IC, other end connection PCB.Usually by liquid crystal display panel adjacent two Side is divided into the ends Gate and the ends Source, and the Driver IC at the ends Gate are linked to the ends Gate of liquid crystal display panel, and it is brilliant to be responsible for each row The switch of body pipe, when scanning, once open the transistor of a permutation, the Driver IC at the ends Source be linked to liquid crystal display panel it The ends Gate, when transistor is opened, the Driver IC at the ends Source can be line by line by control brightness, the control of grayscale, color The channel that voltage is formed through the ends transistor Source, the ends Drain enters in the picture element of liquid crystal display panel.Thus in manufacture liquid crystal During display screen, need successively to press liquid crystal display panel, Driver IC and PCB three.
Currently, the interconnection of liquid crystal display drive chip Driver IC and liquid crystal display panel LCD mainly uses chip on film COF (chip-on-flex) encapsulation technology.Referring to Fig.1, chip on film COF encapsulation technologies refer to that will drive the bare chip of liquid crystal cells It is directly encapsulated on immunity substrate, then immunity substrate is connect with LCD and PCB respectively, in this interconnection technique, driving chip The electric signal of IC reaches the pixel controlled via the metallic circuit on the bonding point of chip and substrate, substrate.Therefore it needs COF is connected with liquid crystal display LCD and printing board PCB pressing respectively, by the step, we can reach two A purpose is connected first, COF can be made to pass through conducting particles with the circuit of PCB and LCD respectively, to allow current signal to circulate, Second is that board pressing provides certain temperature, pressure, by controlling pressing time, is at high temperature connected in two kinds of different materials Enough working strengths can be provided together, prevent from mutually falling off, influence service life.
In existing COF and LCD pressing steps, the adjustment of the location status of liquid crystal display LCD is aligned usual More using the step of manually adjusting, needing human assistance, which not only improves adjustment times, and positional precision is difficult to protect Card;In addition, existing LCD placement platforms are for needing the LCD size for carrying positioning to require to fix, bad adaptability does not adapt to The similar product of other sizes considerably increases workload, drops for frequently replacing the specifications of LCD placement platforms, for pattern Low production efficiency.In view of this, it is really necessary to develop a kind of more dimension glass adsorption machines for COF and LCD prepressing devices Structure, to solve the above problems.
Invention content
For the shortcomings of the prior art, the object of the present invention is to provide one kind to be pressed in advance for COF and LCD The more dimension glass adsorbing mechanisms set, while improving glass position state automation regulated efficiency with precision, additionally it is possible to The glass of sizes is adapted to, there is higher market application prospect.
In order to realize above-mentioned purpose according to the present invention and other advantages, one kind is provided for COF and LCD prepressing devices More dimension glass adsorbing mechanisms, including:
Support base;And
With the placement platform of support base rotation connection, which extends in the horizontal plane,
Wherein, placement platform is set to the top of support base, and placement platform is equipped with for adsorbing different workpieces size Multiple binding domains.
Preferably, support base includes:
Bottom plate;
The support plate supported by bottom plate, the support plate vertically extend;
The top plate being slidably connected with support plate;And
Lifting drive component for driving top plate selectively to lift,
Wherein, rotating driver is installed, the power output end Joint of placement platform and rotating driver is put on top plate The selectivity rotation in the horizontal plane under the driving of rotating driver of horizontalization platform.
Preferably, lifting drive component includes:
With the lift actuator of support plate Joint;And
The elevating lever being sequentially connected with the power output end of lift actuator,
Wherein, elevating lever is sequentially connected with top plate so that top plate selectively lifts under the driving of lift actuator.
Preferably, fixed connecting plate is connected in support plate, lift actuator is installed on fixed connecting plate.
Preferably, the outside of support plate is equipped at least one riser guide vertically extended, on riser guide Sliding lifts top and the top plate Joint of link block with lifting link block is connected to, and lifting link block is sequentially connected with elevating lever So that lifting link block selectively lifts under the driving of lift actuator.
Preferably, the lower surface of placement platform is connected with triangle connecting plate, and corner is connected on triangle connecting plate Sensor.
Preferably, the limiting plate for limiting placement platform minimum altitude is additionally provided between top plate and placement platform.
Preferably, the binding domain includes:
First binding domain of multigroup lateral arrangement;
Second binding domain of multigroup lateral arrangement;
The third binding domain of multigroup lateral arrangement;And
At least one set of mini binding domain.
Preferably, the first binding domain includes:
The first absorption gas circuit that multistage is interconnected;
First supporting plane made of gas circuit surrounds is adsorbed by multistage first;
The branch being connected with the first absorption gas circuit adsorbs gas circuit;And
The first suction hole being connected with branch absorption gas circuit,
Wherein, the first absorption gas circuit is recessed in the upper table of placement platform downwards with branch absorption gas circuit, and the first support is flat Face and the upper surface of placement platform are flush, and the first suction hole is set to the end of branch absorption gas circuit.
Preferably, the second binding domain includes:
The second absorption gas circuit that multistage is interconnected;
Second supporting plane made of gas circuit surrounds is adsorbed by multistage second;And
The second suction hole being connected with the second absorption gas circuit,
Wherein, the second absorption gas circuit is recessed downwards in the upper table of placement platform, the second supporting plane and placement platform) Upper surface is flush, and the second suction hole is set to the outer ring of the second absorption gas circuit.
Compared with prior art, the present invention advantage is:It is improving glass position state automation regulated efficiency With the colleague of precision, additionally it is possible to adapt to the glass of sizes, there is higher market application prospect.
Description of the drawings
Fig. 1 illustrates for COF encapsulation technologies in the prior art;
Fig. 2 is to be tied for COF and the three-dimensional of more dimension glass adsorbing mechanisms of LCD prepressing devices according to of the present invention Structure view;
Fig. 3 is to be regarded another according to more dimension glass adsorbing mechanisms of the present invention for COF and LCD prepressing devices Three-dimensional structure view under angle;
Fig. 4 is according to the vertical view of the present invention for COF and more dimension glass adsorbing mechanisms of LCD prepressing devices Figure;
Fig. 5 is to be regarded according to the explosion of more dimension glass adsorbing mechanisms of the present invention for COF and LCD prepressing devices Figure.
Specific implementation mode
Present invention will be described in further detail below with reference to the accompanying drawings, foregoing end other objects of the invention, feature, side Face and advantage will be apparent, to enable those skilled in the art that can implement according to this with reference to specification word.In the accompanying drawings, For clarity, shape and size can be amplified, and will be indicated using identical reference numeral in all figures identical Or similar component.In the following description, such as center, thickness, height, length, front, back, rear portion, the left side, the right, top The words such as portion, bottom, top, lower part are to be based on the orientation or positional relationship shown in the drawings.Particularly, " height " is equivalent to from top Portion is to the size of bottom, and " width " is equivalent to size from left to right, and " depth " is equivalent to vertical size.These Relative terms are to be not intended to for convenience and usually need specifically to be orientated.It is related to the term of attachment, connection etc. (for example, " connection " and " attachment ") refer to these structures by intermediate structure is fixed directly or indirectly to one another or is attached relationship, And movable or rigidly attached or relationship, unless otherwise clearly stating.
With reference to Fig. 2~Fig. 5, more dimension glass adsorbing mechanisms 22 for COF and LCD prepressing devices include:
Support base 221;And
The placement platform 222 being rotatablely connected with support base 221, the placement platform 222 extend in the horizontal plane,
Wherein, placement platform 222 is set to the top of support base 221, and placement platform 222 is equipped with for adsorbing different works Multiple binding domains of part size.
With reference to Fig. 5, support base 221 includes:
Bottom plate 2211;
The support plate 2212 supported by bottom plate 2211, the support plate 2212 vertically extend;
The top plate 2214 being slidably connected with support plate 2212;And
Lifting drive component for driving top plate 2214 selectively to lift,
Wherein, rotating driver 224 is installed, placement platform 222 and the power of rotating driver 224 are defeated on top plate 2214 Outlet Joint, the selectivity rotation in the horizontal plane under the driving of rotating driver 224 of placement platform 222.
Further, lifting drive component includes:
With the lift actuator 223 of 2212 Joint of support plate;And
The elevating lever 2233 being sequentially connected with the power output end of lift actuator 223,
Wherein, elevating lever 2233 is sequentially connected with top plate 2214 so that top plate 2214 is under the driving of lift actuator 223 Selectivity lifting.
Further, fixed connecting plate 2231 is connected in support plate 2212, lift actuator 223, which is installed on, to be fixedly connected On plate 2231.
Further, the outside of support plate 2212 is equipped at least one riser guide 2213 vertically extended, rises Sliding lifts top and 2214 Joint of top plate of link block 2232, rises with lifting link block 2232 is connected on drop guide rail 2213 Drop link block 2232 is sequentially connected with elevating lever 2233 to be selected so that lifting link block 2232 under the driving of lift actuator 223 Property lifting.
Further, the lower surface of placement platform 222 is connected with triangle connecting plate 2216, on triangle connecting plate 2216 It is connected with rotary angle transmitter.
Further, it is additionally provided between top plate 2214 and placement platform 222 for limiting placement platform (222) minimum altitude Limiting plate 2215.
With reference to Fig. 2 and Fig. 4, the binding domain includes:
First binding domain 225 of multigroup lateral arrangement;
Second binding domain 226 of multigroup lateral arrangement;
The third binding domain 227 of multigroup lateral arrangement;And
At least one set of mini binding domain 228.
Further, the first binding domain 225 includes:
The first absorption gas circuit 2251 that multistage is interconnected;
First supporting plane 2252 made of gas circuit 2251 surrounds is adsorbed by multistage first;
The branch being connected with the first absorption gas circuit 2251 adsorbs gas circuit 2253;And
The first suction hole 2254 being connected with branch absorption gas circuit 2253,
Wherein, the first absorption gas circuit 2251 is recessed in the upper table of placement platform 222 downwards with branch absorption gas circuit 2253, The upper surface of first supporting plane 2252 and placement platform 222 is flush, and the first suction hole 2254 is set to branch and adsorbs gas circuit 2253 End.In a preferred embodiment, the first absorption gas circuit 2251 is surrounded by multiple rectangular configurations and spaced apart first Supporting plane 2252, first supporting plane 2251 extend transversely.
Further, the second binding domain 226 includes:
The second absorption gas circuit 2261 that multistage is interconnected;
Second supporting plane 2262 made of gas circuit 2261 surrounds is adsorbed by multistage second;And
The second suction hole 2263 being connected with the second absorption gas circuit 2261,
Wherein, the second absorption gas circuit 2261 is recessed downwards in the upper table of placement platform 222, the second supporting plane 2262 with The upper surface of placement platform 222 is flush, and the second suction hole 2263 is set to the outer ring of the second absorption gas circuit 2261.Preferred real It applies in mode, the second absorption gas circuit 2261 is surrounded by multiple rectangular configurations and spaced apart second supporting plane 2262, this Two supporting planes 2262 extend longitudinally.
Number of devices and treatment scale described herein are the explanations for simplifying the present invention.To the present invention application, Modifications and variations will be readily apparent to persons skilled in the art.
Although the embodiments of the present invention have been disclosed as above, but it is not limited in listed fortune in specification and embodiments With it can be fully applied to various fields suitable for the present invention, for those skilled in the art, can be easily real Now other modification, therefore without departing from the general concept defined in the claims and the equivalent scope, the present invention is not limited to Specific details and legend shown and described herein.

Claims (10)

1. a kind of more dimension glass adsorbing mechanisms (22) for COF and LCD prepressing devices, which is characterized in that including:
Support base (221);And
With the placement platform (222) of support base (221) rotation connection, which extends in the horizontal plane,
Wherein, placement platform (222) is set to the top of support base (221), and placement platform (222) is equipped with for adsorbing difference Multiple binding domains of workpiece size.
2. being used for more dimension glass adsorbing mechanisms (22) of COF and LCD prepressing devices as described in claim 1, feature exists In support base (221) includes:
Bottom plate (2211);
The support plate (2212) supported by bottom plate (2211), the support plate (2212) vertically extend;
The top plate (2214) being slidably connected with support plate (2212);And
Lifting drive component for driving top plate (2214) selectively to lift,
Wherein, rotating driver (224) is installed, placement platform (222) is dynamic with rotating driver (224) on top plate (2214) Power output end Joint, placement platform (222) selectivity rotation in the horizontal plane under the driving of rotating driver (224).
3. being used for more dimension glass adsorbing mechanisms (22) of COF and LCD prepressing devices as claimed in claim 2, feature exists In the lifting drive component includes:
With the lift actuator (223) of support plate (2212) Joint;And
The elevating lever (2233) being sequentially connected with the power output end of lift actuator (223),
Wherein, elevating lever (2233) makes top plate (2214) in the drive of lift actuator (223) with top plate (2214) drive connection Dynamic lower selectivity lifting.
4. being used for more dimension glass adsorbing mechanisms (22) of COF and LCD prepressing devices as claimed in claim 3, feature exists In being connected with fixed connecting plate (2231) in support plate (2212), lift actuator (223) is installed on fixed connecting plate (2231) On.
5. being used for more dimension glass adsorbing mechanisms (22) of COF and LCD prepressing devices as claimed in claim 3, feature exists In the outside of support plate (2212) is equipped at least one riser guide (2213) vertically extended, riser guide (2213) sliding lifts top and top plate (2214) Joint of link block (2232) with lifting link block (2232) is connected on, Link block (2232) is lifted to be sequentially connected with elevating lever (2233) so that lifting link block (2232) in lift actuator (223) The lower selectivity lifting of driving.
6. being used for more dimension glass adsorbing mechanisms (22) of COF and LCD prepressing devices as claimed in claim 2, feature exists In the lower surface of placement platform (222) is connected with triangle connecting plate (2216), is connected with and turns on triangle connecting plate (2216) Angle transducer.
7. being used for more dimension glass adsorbing mechanisms (22) of COF and LCD prepressing devices as claimed in claim 2, feature exists In being additionally provided with the limiting plate for limiting placement platform (222) minimum altitude between top plate (2214) and placement platform (222) (2215)。
8. being used for more dimension glass adsorbing mechanisms (22) of COF and LCD prepressing devices as described in claim 1, feature exists In the binding domain includes:
The first binding domain (225) of multigroup lateral arrangement;
The second binding domain (226) of multigroup lateral arrangement;
The third binding domain (227) of multigroup lateral arrangement;And
At least one set of mini binding domain (228).
9. being used for more dimension glass adsorbing mechanisms (22) of COF and LCD prepressing devices as claimed in claim 8, feature exists In the first binding domain (225) includes:
The first absorption gas circuit (2251) that multistage is interconnected;
First supporting plane (2252) made of gas circuit (2251) surrounds is adsorbed by multistage first;
The branch absorption gas circuit (2253) being connected with the first absorption gas circuit (2251);And
The first suction hole (2254) being connected with branch absorption gas circuit (2253),
Wherein, the first absorption gas circuit (2251) is recessed downwards in the upper table of placement platform (222) with branch absorption gas circuit (2253) It falls into, the first supporting plane (2252) and the upper surface of placement platform (222) are flush, and the first suction hole (2254) is adsorbed set on branch The end of gas circuit (2253).
10. being used for more dimension glass adsorbing mechanisms (22) of COF and LCD prepressing devices as claimed in claim 8, feature exists In the second binding domain (226) includes:
The second absorption gas circuit (2261) that multistage is interconnected;
Second supporting plane (2262) made of gas circuit (2261) surrounds is adsorbed by multistage second;And
The second suction hole (2263) being connected with the second absorption gas circuit (2261),
Wherein, the second absorption gas circuit (2261) is recessed downwards in the upper table of placement platform (222), the second supporting plane (2262) It is flush with the upper surface of placement platform (222), the second suction hole (2263) is set to the outer ring of the second absorption gas circuit (2261).
CN201810337293.0A 2018-04-16 2018-04-16 Multi-size glass adsorption mechanism for COF and LCD pre-pressing device Active CN108445656B (en)

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
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CN116300167B (en) * 2023-05-23 2023-08-04 中电科风华信息装备股份有限公司 Workbench for adjusting flatness of liquid crystal glass based on bonding process

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