CN201159989Y - Double-end DVD9 optical disk producing system - Google Patents

Double-end DVD9 optical disk producing system Download PDF

Info

Publication number
CN201159989Y
CN201159989Y CNU2007200598650U CN200720059865U CN201159989Y CN 201159989 Y CN201159989 Y CN 201159989Y CN U2007200598650 U CNU2007200598650 U CN U2007200598650U CN 200720059865 U CN200720059865 U CN 200720059865U CN 201159989 Y CN201159989 Y CN 201159989Y
Authority
CN
China
Prior art keywords
substrate
assembly
transport tape
cooling
high temperature
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.)
Expired - Fee Related
Application number
CNU2007200598650U
Other languages
Chinese (zh)
Inventor
范继良
杨明生
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.)
Henan Kerry Digital Co., Ltd.
Original Assignee
Dongguan Anwell Digital Machinery 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 Dongguan Anwell Digital Machinery Co Ltd filed Critical Dongguan Anwell Digital Machinery Co Ltd
Priority to CNU2007200598650U priority Critical patent/CN201159989Y/en
Application granted granted Critical
Publication of CN201159989Y publication Critical patent/CN201159989Y/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Landscapes

  • Manufacturing Optical Record Carriers (AREA)

Abstract

The utility model relates to the production system technique filed of optical data carrier discs, particularly relating to a production system of double-headed DVDR9 CDs, wherein a substrate L0 molded by an L0 substrate injection molding machine directly enters a spin-coating component to be coated by dyestuff after evenly dissipating heat through an L0 substrate cooling transmission device; a substrate L1 molded by an L1 substrate injection molding machine evenly dissipates heat through an L1 substrate cooling transmission device and is splashed with a reflective layer and then coated by dyestuff; the substrates coated with dyestuff are dried by a vertical rotating high-temperature drying system and then enter a splashing station to be splashed with semi-reflective layers; the splashed substrates are sent to a bonding device to be bonded and coated by whirling and then solidified and bonded by a UV light system to become a complete DVDR9 CD, and finally the DVDR9 CD is tested and graded by a disc quality testing device. The production system has the advantages of saving space, improving production efficiency and increasing product yield rate.

Description

Double-end DVD 9 optical disk producing system
Technical field:
The utility model relates to optical data carrier disc production system technical field, particularly double-end DVD 9 optical disk producing system.
Background technology:
DVD (Data Versatile Dsic) CD be a kind ofly have that storage density height, volume are little, the optical information recording medium of advantage such as storage period limit for length, height with low cost, compatible and data error rate are low.DVDR then is a kind of new optical disc storage form that grows up after the technology of comprehensive DVD and CDR CD, it is except the advantage with above DVD CD, can also carry out an imprinting, can utilize corresponding CD writer in the DVDR CD, to write data by the user, this shows that the DVDR CD is a kind of novel optical information storage medium that designs for domestic consumer's canned data.
DVDR is of a great variety, divides according to the size of memory space, and present DVDR CD mainly contains DVDR5, DVDR9, DVDR10 and DVDR18 etc.DVDR5 is a single-surface single-layer, the information that can store 4.4GB; DVDR9 is a single-surface double-layer, the information that can store 8.5GB; DVDR10 then is two-sided single layer structure, the information that can store 9.4GB; DVDR18 is two-sided double-decker, the information that can store 17.1GB.The DVDR CD that memory space is big more is also high more to technological requirement, and what develop comparative maturity at present is the manufacturing of DVDR5 and DVDR9 CD.In some occasion, the memory capacity of DVDR5 can not be satisfied the demand, so market is to the demand constantly increase of more jumbo DVDR9 CD.
The dish base that the DVDR9 CD is 0.6mm by two thickness is formed, and wherein a dish base is coated with semi-reflective layer, and another dish base then is coated with semi-reflective layer and total reflection layer is two-layer.Being used for this sputter material of three layers comprises: gold, aluminium, silicon, silver and silver alloy etc.In addition, go back spin coating on two substrates dye coating is arranged.The various piece position of existing light disk producing system is reasonable inadequately, and wasting space and optical disc production cycle are longer, and production efficiency, product yields are not high.
The utility model content:
The purpose of this utility model is to provide double-end DVD 9 optical disk producing system at the deficiencies in the prior art, it has saves the space, has improved Production Line efficient, improves the advantage of product yields, can produce accurately concentric, intermediate adhesion layer thickness uniformity, not have the DVDR9 CD of bubble.
For achieving the above object, the utility model adopts following technical scheme:
Double-end DVD 9 optical disk producing system includes the L0 substrate injection machine that is used to make the L0 substrate, be used to make the L1 substrate injection machine of L1 substrate, L0 substrate cooling transmitting device, L1 substrate cooling transmitting device, L1 total reflection layer sputter station, L0 semi-reflective layer sputter station, the side washing assembly, L0 and L1 substrate are bonded as the bonder of a video disc, be used to solidify the UV lamp system of adhesive glue, video disc quality inspection assembly, it is characterized in that: it also includes L0 substrate dyestuff spin coating assembly, L1 substrate dyestuff spin coating assembly, the upright Rotary drying of high temperature system, L1 semi-reflective layer sputter station, video disc classification storage assembly for storing, L0 substrate injection machine, L0 substrate cooling transmitting device, L0 substrate dyestuff spin coating assembly is installed in a side of the upright Rotary drying of high temperature system successively, L1 substrate injection machine, L1 substrate cooling transmitting device, L1 total reflection layer sputter station, L1 substrate dyestuff spin coating assembly is installed in the opposite side of the upright Rotary drying of high temperature system successively, L0 substrate dyestuff spin coating assembly, L1 substrate dyestuff spin coating assembly is adjacent with the upright Rotary drying of high temperature system respectively, the output terminal of the upright Rotary drying of high temperature system is provided with the sputter transport tape, the both sides of sputter transport tape are provided with L0 semi-reflective layer sputter station and L1 semi-reflective layer sputter station respectively, the output terminal of sputter transport tape connects side washing assembly, side washing assembly, bonder, the UV lamp system, video disc quality inspection assembly, video disc classification storage assembly for storing connects successively.
The upright Rotary drying of described high temperature system is provided with and is used for the sign indicating number instrument at quarter that the L0 substrate is carved sign indicating number.
Described L0 substrate cooling transmitting device comprises the cooling transport tape, substrate is delivered to connecing the dish hand, temporarily depositing the temporary assembly of substrate and be arranged on the vertical screw type screw rod cooling transfer system of cooling transport tape one side of cooling transport tape from L0 substrate injection machine; Temporary assembly comprises temporary rotating disk, substrate is delivered to the conveying robot of temporary rotating disk from the cooling transport tape.
Described L1 substrate cooling transmitting device comprise the cooling transport tape, with substrate from L1 substrate injection machine deliver to the cooling transport tape connect the dish hand, temporarily deposit substrate temporary assembly, the buffering transmission band adjacent with L1 substrate dyestuff spin coating assembly, be arranged on the cooling transmission rotating disk between cooling transport tape and the buffering transport tape; Temporary assembly comprises temporary rotating disk, substrate is delivered to the conveying robot of temporary rotating disk from the cooling transport tape.
Described dyestuff spin coating assembly comprises that two are separately positioned on 360 ° of single armed transmission manipulators of its input end and output terminal, the transport tape that is connected two mechanical arms, six spin coating bowls, two " V " shape mechanical arms, the travelling belt both sides are provided with three spin coating bowls and " V " shape mechanical arm respectively, and per three spin coating bowls become semicircle to surround " V " shape mechanical arm.
The upright Rotary drying of described high temperature system melts down drying system by two that are symmetrically distributed and constitutes, melt down drying system and comprise the upright Rotary drying stove of high temperature, be arranged on the central transport tape of upright Rotary drying stove one side of high temperature, to deliver to 360 ° of the upright Rotary drying stove of high temperature rotation single armeds from the substrate that central transport tape comes out and send the dish mechanical arm, substrate is turned over the dish mechanical arm from what the upright Rotary drying stove of high temperature was sent, 360 ° of rotation single armeds that substrate after the upset is sent go out the dish mechanical arm, be used to deposit the temporary axle of substrate and send video disc the passback mechanical arm of central transport tape back to from keeping in axle, the two ends of central transport tape extend to entering the dish district and going out the dish district of the upright Rotary drying stove of high temperature respectively.
Described UV lamp system is connected by turning over the dish assembly with video disc quality inspection assembly.
Described video disc classification storage assembly for storing comprises that rotatable 360 ° transfer robot, qualified video disc are deposited rotating disk, defective video disc is deposited axle, qualified video disc is deposited rotating disk, defective video disc is deposited axle and is distributed in around the transfer robot, and transfer robot is provided with four clamping limbs.
The utility model beneficial effect is:, directly entered dyestuff spin coating assembly and carry out the coating of dyestuff after L0 substrate cooling transmitting device carries out Homogeneouslly-radiating by the substrate L0 of L0 substrate injection machine moulding; L1 substrate first sputter one deck total reflection layer after L1 substrate cooling transmitting device carries out Homogeneouslly-radiating by the moulding of L1 substrate injection machine just carries out the coating of dyestuff then.The substrate that has been coated with dyestuff is by the upright Rotary drying of high temperature system hyperthermia drying, enter the sputter station again and carry out the sputter of semi-reflective layer, substrate behind the sputter is sent to bonding, the whirl coating that bonder carries out two substrates subsequently, then settable cementitious by the UV lamp system again is complete DVDR9 CD, last DVDR9 CD carries out quality testing by the video disc quality detection device handles with classification, its have save the space, improved Production Line efficient, the advantage of raising product yields.
Description of drawings:
Fig. 1 is a structural representation of the present utility model;
Fig. 2 is the structural representation of the utility model dyestuff spin coating assembly;
Fig. 3 is the structural representation that the utility model melts down drying system.
Embodiment:
Below in conjunction with accompanying drawing the utility model is further described, see Fig. 1~Fig. 3, double-end DVD 9 optical disk producing system, include the L0 substrate injection machine 1 that is used to make the L0 substrate, be used to make the L1 substrate injection machine 2 of L1 substrate, L0 substrate cooling transmitting device 3, L1 substrate cooling transmitting device 4, L1 total reflection layer sputter station 2-9, L0 semi-reflective layer sputter station 3-13, side washing assembly 7, L0 and L1 substrate are bonded as the bonder 8 of a video disc, be used to solidify the UV lamp system 3-26 of adhesive glue, video disc quality inspection assembly 3-29, the dyestuff spin coating assembly 5 of L0 substrate, the dyestuff spin coating assembly 5 of L1 substrate, the upright Rotary drying of high temperature system 6, L1 semi-reflective layer sputter station 3-14, video disc classification storage assembly for storing 9, L0 substrate injection machine 1, L0 substrate cooling transmitting device 3, the dyestuff spin coating assembly 5 of L0 substrate is installed in a side of the upright Rotary drying of high temperature system 6 successively, L1 substrate injection machine 2, L1 substrate cooling transmitting device 4, L1 total reflection layer sputter station 2-9, the dyestuff spin coating assembly 5 of L1 substrate is installed in the opposite side of the upright Rotary drying of high temperature system 6 successively, the dyestuff spin coating assembly 5 of L0 substrate, the dyestuff spin coating assembly 5 of L1 substrate is adjacent with the upright Rotary drying of high temperature system 6 respectively, the output terminal of the upright Rotary drying of high temperature system 6 is provided with the sputter transport tape, the both sides of sputter transport tape are provided with L0 semi-reflective layer sputter station 3-13 and L1 semi-reflective layer sputter station 3-14 respectively, the output terminal of sputter transport tape connects side washing assembly 7, side washing assembly 7, bonder 8, UV lamp system 3-26, video disc quality inspection assembly 3-29, video disc classification storage assembly for storing 9 connects successively.The upright Rotary drying of high temperature system 6 is provided with and is used for the sign indicating number instrument 1-19 at quarter that the L0 substrate is carved sign indicating number.
Entire system is down " h " font arranges, the dyestuff spin coating assembly 5 of the dyestuff spin coating assembly 5 of L0 substrate injection machine 1, L0 substrate cooling transmitting device 3, L0 substrate, the upright Rotary drying of high temperature system 6, L1 substrate injection machine 2, L1 substrate cooling transmitting device 4, L1 total reflection layer sputter station 2-9, L1 substrate is linearly arranged.
Wherein, the temporary assembly of substrate that L0 substrate cooling transmitting device 3 is had comprises one 4 temporary rotating disk 1-6 and a cooling transmission manipulator 1-7; the temporary assembly of substrate that L1 substrate cooling transmitting device 4 is had comprises one 6 temporary rotating disk 2-6 and a cooling transmission manipulator 2-4; the effect of the temporary assembly of substrate is: after cooling transmitting device downstream production line was shut down, cooling transport tape 1-3 and cooling transport tape 2-3 were sent to L0 and L1 substrate respectively among temporary rotating disk 1-6 and the temporary rotating disk 2-6 by mechanical arm 1-7 and mechanical arm 2-4 and preserve.
Dyestuff spin coating assembly 5 comprises two the 360 ° of single armed transmission manipulator 1-9 and mechanical arm 1-11, the transport tape 3-10 that is connected two mechanical arms, six spin coating bowl 3-6, two " V " shape mechanical arm 3-8 that are separately positioned on its input end and output terminal, travelling belt 3-10 both sides are provided with three spin coating bowl 3-6 and " V " shape mechanical arm 3-8 respectively, per three spin coating bowl 3-6 become semicircle to surround " V " shape mechanical arm 3-8, this layout can be processed a plurality of substrates simultaneously, enhances productivity.
The upright Rotary drying of high temperature system 6 melts down drying system by two that are symmetrically distributed and constitutes; melt down the temporary assembly that drying system has and comprise temporary axle 3-7 and single armed passback mechanical arm 3-9; effect that should temporary assembly is: when the production line of the upright Rotary drying system downstream of high temperature hinders and when shutting down for some reason; for preventing that substrate from producing disc warpage because of cooling; the substrate that goes out the drying that dish mechanical arm 3-5 comes out the upright Rotary drying stove of high temperature 3-3 is sent to a temporary axle 3-7; and send back to central transport tape 1-16 by single armed passback mechanical arm 3-9 and go up and repeat high temperature drying and handle; reduce the substrate warpage; make substrate have identical stress history, guarantee the quality of substrate.
The sputter transport tape is made of the first sputter transport tape 3-11, the second sputter transport tape 3-12, two clamping limbs with " V " shape mechanical arm 3-15 of two clamping limbs are not movable, and two open angles of clamping limb are by the distance decision between the first sputter transport tape 3-11 and the second sputter transport tape 3-12.Simultaneously, distance between two travelling belts in the side washing assembly 7 need equate with the distance between the first sputter transport tape 3-11 and the second sputter transport tape 3-12, so that " V " shape mechanical arm 3-15 can just be placed on the upper and lower travelling belt of side washing assembly 7 from the first sputter transport tape 3-11 L0 substrate that picks up and the L1 substrate that picks up from the second sputter transport tape 3-12.
360 ° of central robot 3-19 with three clamping limbs have the scroll chuck structure, when picking up the video disc that is bonded together, by tightening the center pit of two substrates, effectively prevented the contingent relative slip in transport process of two substrates, avoid causing the relative dislocation of two substrates.
In high speed whirl coating assembly 3-25, two substrates that tentatively bond together by the UV adhesive glue, after centralized positioning, high speed rotating, UV adhesive glue between two substrates is spread out fast by centrifugal force and immersional wetting, form the adhesive glue water layer of a thickness uniformity.By reasonable setting, can easily obtain the needed accurate glue layer thickness of DVDR9 to the whirl coating technological parameter.
The device layout of double-end DVD 9 optical disk producing systems is described according to Fig. 1,2,3 below.
Meet dish hand 1-2 and access the L0 substrate of injection mo(u)lding from L0 substrate injection machine 1, and be placed on cooling transport tape 1-3, the first cooling transmission manipulator 1-4 picks up the L0 substrate from transport tape 1-3 and delivers to vertical screw type screw rod cooling transfer system 1-5 and cool off once more; Connect dish hand 2-2 then accesses injection mo(u)lding from L1 substrate injection machine 2 L1 substrate, and be placed on the second cooling transport tape 2-3, the L1 substrate turns over dish by turning over dish hand 2-7 earlier in the cooling transport process, deliver to cooling transmission rotating disk 2-5 by the second cooling transmission manipulator 2-4 again and carry out secondary cooling transmission.When cooling transport tape 1-3 and cooling transport tape 2-3 downstream production line are shut down, then use the 3rd cooling transmission manipulator 1-7 and the second cooling transmission manipulator 2-4 that the L0 of injection mo(u)lding and L1 substrate are left in respectively on 4 temporary rotating disk 1-6 and the 6 temporary rotating disk 2-6.
After evenly cooling off, the L0 substrate turns over dish hand 1-8 turn-over by a L0 substrate, and be sent to dyestuff spin coating assembly 5 by the first mechanical arm 1-9, during spin coating, by " V " shape mechanical arm 3-8 in the spin coating assembly substrate is sent to the spin coating bowl from the spin coating travelling belt, following dyestuff mechanical arm is the coating of the substrate in spin coating bowl dyestuff then.
The L1 substrate carries out totally reflected sputter through being transported to L1 total reflection layer sputter station 2-9 by a L1 video disc conveying robot 2-8 after evenly cooling off, sputter totally reflected L1 substrate be sent to buffering transmission band 2-11 by the 2nd L1 video disc conveying robot 2-10, and be sent on the dyestuff spin coating assembly 5 by the second mechanical arm 2-12, the dyestuff spin coating step according to above-mentioned L0 substrate is coated with dyestuff to video disc equally.
Spin coating the L0 of dyestuff and L1 substrate deliver on the censorship transport tape 1-12 by mechanical arm 1-11, first both arms detection mechanical arm 1-13 delivers to the first dyestuff detector 1-14 with the L0 substrate and carries out online detection, wherein qualified dyestuff sheet is placed on central transport tape 1-16 to be continued to transmit toward the downstream, the underproof temporary axle of the unacceptable product 1-15 that then is sent to.
Afterwards, the L0 substrate that the 5th mechanical arm 1-17 sends central transport tape 1-16 here is delivered to laser sign indicating number at a quarter instrument 1-19 place and is carried out laser code labeling at quarter, owing to carve the restriction of sign indicating number speed, the 5th mechanical arm 1-17 can temporarily be stored in partial L 0 substrate on the first temporary 1-18 herein.The L0 substrate that is labeled is then by drying in first left side screw rod that send dish mechanical arm 3-1 to deliver to the upright Rotary drying stove of high temperature 3-3.
With the L0 substrate differently be, qualified L1 substrate does not need to carry out laser to be carved code labeling and directly delivers to the one 180 ° of exchange rotating disk 2-22 by the 6th mechanical arm 2-20, afterwards by drying in second screw rod that send dish mechanical arm 3-2 to deliver to the upright Rotary drying stove of high temperature 3-3 the right.Because the restriction of rate of drying, the 6th mechanical arm 2-20 can temporarily be stored in partial L 1 substrate on the second temporary 2-21.
Enter central transport tape 1-16 behind substrate spin coating dye coating, by sending dish mechanical arm 3-1 to send the upright Rotary drying stove of high temperature 3-3 to, the substrate after the oven dry turns over dish by turning over dish mechanical arm 3-4 again, and substrate is delivered to the sputter transport tape by going out dish mechanical arm 3-5 then.When the production line stop in the upright Rotary drying stove of high temperature 3-3 downstream; going out dish mechanical arm 3-5 will deliver on the temporary axle 3-7 through the substrate after the high temperature drying, then send central transport tape 1-16 back to by single armed passback mechanical arm 3-9 and go up and repeat above drying course and start shooting again until the downstream.
After L0 and L1 substrate were sent to sputter transport tape 3-11 and 3-12, the L0 substrate entered the sputter that L0 semi-reflective layer sputter station 3-13 carries out semi-reflective layer, and the L1 substrate then enters the sputter that L1 semi-reflective layer sputter station 3-14 carries out semi-reflective layer.Be sent on the travelling belt below the side washing assembly 7 by " V " shape mechanical arm 3-15 after the good L0 substrate of sputter, and carry out side washing by two side washing bowls below 7 and side washing mechanical arm; The L1 substrate that sputter is good then is sent to the travelling belt above the side washing assembly 7, and carries out the side washing processing in two side washing bowls on 7.
Washing the L0 on limit and L1 substrate is next delivered to by 360 ° of central robot 3-17 and carries out the bonding of two substrates in the bonding system.The substrate L0 of 360 ° of central robot 3-17 after with side washing delivers to two substrates buffering rotating disk 3-20 up and down, and turns over dish hand 3-21 by two the 2nd L0 substrates and turn over dish; Substrate L1 is then delivered to the 2 180 ° of exchange rotating disk 3-18 by 360 ° of central robot 3-17, then delivers to two following glue rotating disk 3-24 by 360 ° of central robot 3-19, by glue under the following glue mechanical arm 3-23.Turn over that L0 substrate behind the dish is delivered to down glue rotating disk 3-24 by 180 ° of transfer robot 3-22 and the L1 substrate carries out bonding.
Bonding good video disc is delivered to two whirl coating assembly 3-25 by 360 ° of central robot 3-19 and is carried out the high speed whirl coating.The video disc that whirl coating finishes is sent to UV lamp system 3-26 by 360 ° of central robot 3-19 again and carries out the curing of adhesive glue.The video disc that has solidified then turns over dish by turning over dish assembly 3-27, video disc is delivered to video disc quality inspection assembly 3-29 by four arm transfer robot 3-28 afterwards, qualified after testing video disc is delivered to two qualified video discs by four arm transfer robot 3-28 again and is deposited on the rotating disk 3-30, wherein leave in the rotating disk on the left side by the bonding video disc of last bonding system, in the rotating disk that then leaves the right in of following bonding system, underproof after testing video disc then is sent to two defective video discs and deposits on the 3-31.So far, the whole process of production of DVDR9 has just been finished.
The utility model, is directly entered dyestuff spin coating assembly 5 and carries out the coating of dyestuff after L0 substrate cooling transmitting device 3 carries out Homogeneouslly-radiating by the substrate L0 of L0 substrate injection machine moulding 1-1; L1 substrate first sputter one deck total reflection layer behind L1 substrate cooling transmitting device 4 by 2 moulding of L1 substrate injection machine just carries out the coating of dyestuff then.The substrate that has been coated with dyestuff is by the upright Rotary drying of high temperature system 6 hyperthermia dryings, enter the sputter station again and carry out the sputter of semi-reflective layer, substrate behind the sputter is sent to bonding, the whirl coating that bonder 8 carries out two substrates subsequently, then settable cementitious by UV lamp system 3-26 again is complete DVDR9 CD, and last DVDR9 CD carries out quality testing by video disc quality inspection assembly 3-29 and classification is handled; It has saves the space, has improved Production Line efficient, improves the advantage of product yields, can produce accurately concentric, intermediate adhesion layer thickness uniformity, not have the DVDR9 CD of bubble.
The above embodiment, it is preferred embodiments of the present utility model, be not to limit the utility model practical range,, all should be included in the utility model patent claim so all equivalences of doing according to the described structure of the utility model claim, feature and principle change or modify.

Claims (8)

1, double-end DVD 9 optical disk producing system, include the L0 substrate injection machine that is used to make the L0 substrate, be used to make the L1 substrate injection machine of L1 substrate, L0 substrate cooling transmitting device, L1 substrate cooling transmitting device, L1 total reflection layer sputter station, L0 semi-reflective layer sputter station, the side washing assembly, L0 and L1 substrate are bonded as the bonder of a video disc, be used to solidify the UV lamp system of adhesive glue, video disc quality inspection assembly, it is characterized in that: it also includes L0 substrate dyestuff spin coating assembly, L1 substrate dyestuff spin coating assembly, the upright Rotary drying of high temperature system, L1 semi-reflective layer sputter station, video disc classification storage assembly for storing, L0 substrate injection machine, L0 substrate cooling transmitting device, L0 substrate dyestuff spin coating assembly is installed in a side of the upright Rotary drying of high temperature system successively, L1 substrate injection machine, L1 substrate cooling transmitting device, L1 total reflection layer sputter station, L1 substrate dyestuff spin coating assembly is installed in the opposite side of the upright Rotary drying of high temperature system successively, L0 substrate dyestuff spin coating assembly, L1 substrate dyestuff spin coating assembly is adjacent with the upright Rotary drying of high temperature system respectively, the output terminal of the upright Rotary drying of high temperature system is provided with the sputter transport tape, the both sides of sputter transport tape are provided with L0 semi-reflective layer sputter station and L1 semi-reflective layer sputter station respectively, the output terminal of sputter transport tape connects side washing assembly, side washing assembly, bonder, the UV lamp system, video disc quality inspection assembly, video disc classification storage assembly for storing connects successively.
2, double-end DVD 9 optical disk producing system according to claim 1 is characterized in that: the upright Rotary drying of described high temperature system is provided with and is used for the sign indicating number instrument at quarter that the L0 substrate is carved sign indicating number.
3, double-end DVD 9 optical disk producing system according to claim 1 is characterized in that: described L0 substrate cooling transmitting device comprises the cooling transport tape, substrate is delivered to connecing the dish hand, temporarily depositing the temporary assembly of substrate and be arranged on the vertical screw type screw rod cooling transfer system of cooling transport tape one side of cooling transport tape from L0 substrate injection machine; Temporary assembly comprises temporary rotating disk, substrate is delivered to the conveying robot of temporary rotating disk from the cooling transport tape.
4, double-end DVD 9 optical disk producing system according to claim 1 is characterized in that: described L1 substrate cooling transmitting device comprise the cooling transport tape, with substrate from L1 substrate injection machine deliver to the cooling transport tape connect the dish hand, temporarily deposit substrate temporary assembly, the buffering transmission band adjacent with L1 substrate dyestuff spin coating assembly, be arranged on the cooling transmission rotating disk between cooling transport tape and the buffering transport tape; Temporary assembly comprises temporary rotating disk, substrate is delivered to the conveying robot of temporary rotating disk from the cooling transport tape.
5, double-end DVD 9 optical disk producing system according to claim 1, it is characterized in that: described dyestuff spin coating assembly comprises that two are separately positioned on 360 ° of single armed transmission manipulators of its input end and output terminal, the transport tape that is connected two mechanical arms, six spin coating bowls, two " V " shape mechanical arms, the travelling belt both sides are provided with three spin coating bowls and " V " shape mechanical arm respectively, and per three spin coating bowls become semicircle to surround " V " shape mechanical arm.
6, double-end DVD 9 optical disk producing system according to claim 1, it is characterized in that: the upright Rotary drying of described high temperature system melts down drying system by two that are symmetrically distributed and constitutes, melt down drying system and comprise the upright Rotary drying stove of high temperature, be arranged on the central transport tape of upright Rotary drying stove one side of high temperature, to deliver to 360 ° of the upright Rotary drying stove of high temperature rotation single armeds from the substrate that central transport tape comes out and send the dish mechanical arm, substrate is turned over the dish mechanical arm from what the upright Rotary drying stove of high temperature was sent, 360 ° of rotation single armeds that substrate after the upset is sent go out the dish mechanical arm, be used to deposit the temporary axle of substrate and send video disc the passback mechanical arm of central transport tape back to from keeping in axle, the two ends of central transport tape extend to entering the dish district and going out the dish district of the upright Rotary drying stove of high temperature respectively.
7, double-end DVD 9 optical disk producing system according to claim 1 is characterized in that: described UV lamp system is connected by turning over the dish assembly with video disc quality inspection assembly.
8, double-end DVD 9 optical disk producing system according to claim 1, it is characterized in that: described video disc classification storage assembly for storing comprises that rotatable 360 ° transfer robot, qualified video disc are deposited rotating disk, defective video disc is deposited axle, qualified video disc is deposited rotating disk, defective video disc is deposited axle and is distributed in around the transfer robot, and transfer robot is provided with four clamping limbs.
CNU2007200598650U 2007-11-20 2007-11-20 Double-end DVD9 optical disk producing system Expired - Fee Related CN201159989Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNU2007200598650U CN201159989Y (en) 2007-11-20 2007-11-20 Double-end DVD9 optical disk producing system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNU2007200598650U CN201159989Y (en) 2007-11-20 2007-11-20 Double-end DVD9 optical disk producing system

Publications (1)

Publication Number Publication Date
CN201159989Y true CN201159989Y (en) 2008-12-03

Family

ID=40110574

Family Applications (1)

Application Number Title Priority Date Filing Date
CNU2007200598650U Expired - Fee Related CN201159989Y (en) 2007-11-20 2007-11-20 Double-end DVD9 optical disk producing system

Country Status (1)

Country Link
CN (1) CN201159989Y (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101197157B (en) * 2007-11-20 2010-09-15 东莞宏威数码机械有限公司 Double-end DVD9 optical disk producing system
WO2011091561A1 (en) * 2010-01-27 2011-08-04 东莞宏威数码机械有限公司 Production system and method for producing single-sided dual-layer blu-ray discs

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101197157B (en) * 2007-11-20 2010-09-15 东莞宏威数码机械有限公司 Double-end DVD9 optical disk producing system
WO2011091561A1 (en) * 2010-01-27 2011-08-04 东莞宏威数码机械有限公司 Production system and method for producing single-sided dual-layer blu-ray discs

Similar Documents

Publication Publication Date Title
CN101197157B (en) Double-end DVD9 optical disk producing system
CN201159989Y (en) Double-end DVD9 optical disk producing system
CN101295522B (en) Production system for manufacturing single-face single-layer DVDR recordable optical disk
CN100576326C (en) A kind of BD Blu-ray Disc and the system and method for making this BD Blu-ray Disc
CN201111901Y (en) Producing system for manufacturing pedion single layer DVDR writing and recording optical disk
CN2842653Y (en) Production system for producing DVD9 CD
CN100369142C (en) Method and apparatus for adhesion of mfg. DVD light disk
CN201629147U (en) Single-sided double-layer disc production system
CN201626979U (en) Sputtering device with accurate positioning
CN101826347B (en) Single-side double-layer light disk producing system and method for manufacturing single-side double-layer light disk
CN101831612B (en) Precise positioning sputtering device and positioning method thereof
CN201638560U (en) Production system for manufacturing blue-ray recording compact disk
CN201758000U (en) Blue light disk glue spreading device
US6699556B2 (en) Optical information recording medium and information recording method
US20070147223A1 (en) Optical disc and method of producing the same
CN2893853Y (en) Monolayer digital universal optical disc
CN101377936B (en) Apparatus for producing CD optical disk
CN201465543U (en) Thin type DVD burning disc with thickened gripping area
CN201629150U (en) Adjusting device in optical disc production line
CN201204042Y (en) Mixed production machine for fabricating DVD5 and CD-disc
CN201629148U (en) Production system for manufacturing single-sided and double-layered blue-ray disc
CN201698747U (en) Single-sided dual-layer optical disc
US20060134369A1 (en) Optical disc and method of producing the same
CN202049738U (en) Mother disc used for bluray disc
CN101656086B (en) Optical disc manufacture system and method for manufacturing blue-ray discs and DVD discs by using optical disk manufacture system

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
EE01 Entry into force of recordation of patent licensing contract

Assignee: Henan Kairui Digital Co., Ltd.

Assignor: Dongguan Hongwei Digital Machinery Co., Ltd.

Contract fulfillment period: 2009.11.20 to 2017.11.19

Contract record no.: 2010410000007

Denomination of utility model: Double-end DVD9 optical disk producing system

Granted publication date: 20081203

License type: Exclusive license

Record date: 20100126

LIC Patent licence contract for exploitation submitted for record

Free format text: EXCLUSIVE LICENSE; TIME LIMIT OF IMPLEMENTING CONTACT: 2009.11.20 TO 2017.11.19; CHANGE OF CONTRACT

Name of requester: HENAN KAIRUI DIGITAL CO., LTD.

Effective date: 20100126

EM01 Change of recordation of patent licensing contract

Change date: 20121227

Contract record no.: 2010410000007

Assignee after: Henan Kerry Digital Co., Ltd.

Assignee before: Henan Kairui Digital Co., Ltd.

LICC Enforcement, change and cancellation of record of contracts on the licence for exploitation of a patent or utility model
ASS Succession or assignment of patent right

Owner name: HE'NAN KERRY DIGITAL CO., LTD.

Free format text: FORMER OWNER: DONGGUAN HONGWEI DIGITAL MACHINERY CO., LTD.

Effective date: 20130703

C41 Transfer of patent application or patent right or utility model
COR Change of bibliographic data

Free format text: CORRECT: ADDRESS; FROM: 523081 DONGGUAN, GUANGDONG PROVINCE TO: 455000 ANYANG, HENAN PROVINCE

TR01 Transfer of patent right

Effective date of registration: 20130703

Address after: 455000 east section of Haihe Road, Anyang hi tech Industrial Development Zone, Henan

Patentee after: Henan Kerry Digital Co., Ltd.

Address before: 523081, 6, Dalong Road, Shigu village, Nancheng District, Guangdong, Dongguan

Patentee before: Dongguan Hongwei Digital Machinery Co., Ltd.

PE01 Entry into force of the registration of the contract for pledge of patent right

Denomination of utility model: Double-end DVD9 optical disk producing system

Effective date of registration: 20130918

Granted publication date: 20081203

Pledgee: Beijing AVIC Information Technology Co., Ltd.

Pledgor: Henan Kerry Digital Co., Ltd.

Registration number: 2013990000685

PLDC Enforcement, change and cancellation of contracts on pledge of patent right or utility model
PP01 Preservation of patent right

Effective date of registration: 20131205

Granted publication date: 20081203

RINS Preservation of patent right or utility model and its discharge
PD01 Discharge of preservation of patent

Date of cancellation: 20140905

Granted publication date: 20081203

PP01 Preservation of patent right

Effective date of registration: 20140905

Granted publication date: 20081203

RINS Preservation of patent right or utility model and its discharge
PD01 Discharge of preservation of patent

Date of cancellation: 20150905

Granted publication date: 20081203

PP01 Preservation of patent right

Effective date of registration: 20150905

Granted publication date: 20081203

RINS Preservation of patent right or utility model and its discharge
PD01 Discharge of preservation of patent
PD01 Discharge of preservation of patent

Date of cancellation: 20171120

Granted publication date: 20081203

CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20081203

Termination date: 20151120