WO2012144703A1 - Appareil de classification de puces led - Google Patents

Appareil de classification de puces led Download PDF

Info

Publication number
WO2012144703A1
WO2012144703A1 PCT/KR2011/007505 KR2011007505W WO2012144703A1 WO 2012144703 A1 WO2012144703 A1 WO 2012144703A1 KR 2011007505 W KR2011007505 W KR 2011007505W WO 2012144703 A1 WO2012144703 A1 WO 2012144703A1
Authority
WO
WIPO (PCT)
Prior art keywords
sorting
stage
led chip
plate
unit
Prior art date
Application number
PCT/KR2011/007505
Other languages
English (en)
Korean (ko)
Inventor
정태진
Original Assignee
주식회사 이노비즈
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
Priority claimed from KR1020110037055A external-priority patent/KR101057797B1/ko
Priority claimed from KR1020110073565A external-priority patent/KR101092966B1/ko
Application filed by 주식회사 이노비즈 filed Critical 주식회사 이노비즈
Publication of WO2012144703A1 publication Critical patent/WO2012144703A1/fr

Links

Images

Classifications

    • GPHYSICS
    • G01MEASURING; TESTING
    • G01RMEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
    • G01R31/00Arrangements for testing electric properties; Arrangements for locating electric faults; Arrangements for electrical testing characterised by what is being tested not provided for elsewhere
    • G01R31/01Subjecting similar articles in turn to test, e.g. "go/no-go" tests in mass production; Testing objects at points as they pass through a testing station
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B07SEPARATING SOLIDS FROM SOLIDS; SORTING
    • B07CPOSTAL SORTING; SORTING INDIVIDUAL ARTICLES, OR BULK MATERIAL FIT TO BE SORTED PIECE-MEAL, e.g. BY PICKING
    • B07C5/00Sorting according to a characteristic or feature of the articles or material being sorted, e.g. by control effected by devices which detect or measure such characteristic or feature; Sorting by manually actuated devices, e.g. switches
    • B07C5/36Sorting apparatus characterised by the means used for distribution
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01RMEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
    • G01R31/00Arrangements for testing electric properties; Arrangements for locating electric faults; Arrangements for electrical testing characterised by what is being tested not provided for elsewhere
    • G01R31/26Testing of individual semiconductor devices
    • G01R31/2607Circuits therefor
    • G01R31/2632Circuits therefor for testing diodes
    • G01R31/2635Testing light-emitting diodes, laser diodes or photodiodes

Definitions

  • the present invention relates to an LED chip sorting apparatus, and more particularly, to an LED chip sorting apparatus capable of quickly classifying LED chips.
  • LED Light Emitting Diode
  • Luminescent diode is a kind of light emitting device that emits light by power supply and is also called a Luminescent diode.
  • This LED is small, long life, low power consumption, high speed response, and has recently been widely used as a backlight unit of various display devices that require a light source, a light source for small lamps and various instruments have.
  • the LED is manufactured in the form of a small chip using a semiconductor process.
  • a general LED chip manufacturing process is an epitaxial process (EPI) for preparing an epi wafer on a substrate, which is a base material, and a wafer for manufacturing a plurality of LED chips.
  • EPI epitaxial process
  • the classification process classifies the LED chips inspected in the inspection process into good and defective products, and classifies the LED chips of the good by grade according to their performance and characteristics.
  • the LED chip is used to perform the classification process.
  • a chip sorting device is provided.
  • the conventional LED chip sorting apparatus 1 is a sorting unit 10 for classifying the LED chips (L) delivered in the inspection process by grade, as shown in a simplified block diagram in Figure 1, and the sorting unit 10 It includes a loading unit 20 for classifying and loading the classified LED chips (L) by the grade, and the pickup unit 30 for transferring the LED chip (L) from the sorting unit 10 to the loading unit (20).
  • the sorting unit 10 receives the supply plate 11 to which the LED chips L, which have been inspected in the inspection process, is attached to the sorting stage 13 horizontally installed to classify the LED chips L by grade, and is transferred from the inspection process. And a sorting transfer unit (not shown) for transferring the supply plate 11 to the sorting stage 13.
  • the stacking unit 20 includes a bin stage 23 horizontally installed to allow the sorting plate 21 to wait to classify and load the LED chips L sorted by the sorting stage 13 for each class, and the bin stage 23. ) Is provided with a loading transfer unit (not shown) for moving the completed sorting plate 21 to the loading magazine 25.
  • the pickup unit 30 is a swing arm 31 for reciprocating rotation between the sorting stage 13 and the empty stage 23, a swing arm driver 33 for rotating the swing arm 31, and a swing arm (
  • a picker 35 which is provided at the free end of 31 and picks up the LED chip L on the supply plate 11 positioned on the sorting stage 13 and moves it to the sorting plate 21 on the empty stage 23 side;
  • a lift driver 37 which drives the swing arm 31 or the picker 35 in a Z-axis lift and drop to a pickup and a pickup release position is provided.
  • the conventional LED chip sorting apparatus 1 classifies the LED chips L, which are transferred through the buffer part from the inspection process in the manufacturing process of the LED chip L, by the sorting unit 10 by grade, and the classified LED chips L By loading the) in the loading unit 20 for each grade, the LED chip (L) can be classified by the grade according to the performance and characteristics.
  • the swing arm 31 is rotated to the sorting stage 13 and the empty stage 23, and then the swing arm 31 is used to pick up or release the LED chip L. 31) or because the picker 35 needs to be lifted and lowered on the Z axis using the lift driver 37, there is a problem that the sorting speed of the LED chip is slowed down as the Z axis lift driving time increases.
  • an object of the present invention to provide an LED chip sorting apparatus capable of quickly classifying LED chips.
  • an LED chip sorting apparatus comprising: a sorting stage for loading a supply plate having an attachment sheet to which LED chips are attached and capable of flowing in at least a plane direction; An empty stage installed spaced apart from the sorting stage, the classifying plate having an attachment sheet to which the LED chips are attached, and capable of flowing in at least a plane direction; A pickup unit having at least one swing arm reciprocating to both the sorting stage and the empty stage, and a picker provided on the swing arm to pick up and release the LED chip of the supply plate and to pick-up and release the pick-up plate from the sorting plate; And an unloading pressurizing unit and a loading pressurizing unit which are provided on the sorting stage and the empty stage, respectively, to press the attachment sheets of the supply plate and the classification sorting plate toward the pickup unit.
  • the unloading pressurizing unit has an unloading pressurizing member for pressing the attachment sheet of the supply plate toward the pickup unit and an unloading pressurizer for driving the unloading pressurizing member.
  • the loading pressurizing unit has a loading pressurizing member for urging the attachment sheet of the sorting plate toward the pickup unit and a loading pressurizer for driving the loading pressurizing member.
  • the unloading pressurizing unit controls the driving of the unloading pressurizing unit so as to press the attachment sheet of the supply plate on which the LED chip is attached to the picker side, and the picker of the sorting stage.
  • the loading pressurizing unit further comprises a control unit for controlling the driving of the loading pressurizing unit to press the attachment sheet of the sorting plate toward the picker side.
  • the sorting stage and the empty stage are more effectively arranged vertically.
  • the sorting stage and the empty stage are preferably arranged vertically opposite to each other.
  • the sorting stage and the empty stage are effectively arranged horizontally.
  • one of the sorting stage and the empty stage may be disposed vertically, and the other may be disposed horizontally.
  • a plurality of swing arms are provided, and a picker is provided in each of the swing arms.
  • the pickers are provided in pairs which are repeatedly positioned at the pick-up position of the sorting stage and the pick-up release position of the sorting stage by rotating the swing arm;
  • the unloading pressurizing unit controls the attaching sheet of the supply plate to which the LED chip is attached to the picker side of the pick-up position, and the loading pressurizing unit controls the pressurizing sheet of the sorting plate to the picker side of the pick-up release position. It is preferable to further include a control unit.
  • the controller controls the sorting stage and the unloading pressure unit to move the LED chips of the same grade among the LED chips attached to the supply plate to the sorting plate loaded on the empty stage, based on the coordinates and the grade of the LED chips detected by the information sensor. It is desirable to control the driving of the loading press unit, the pickup unit and the bin stage.
  • the apparatus may further include a sorting magazine for storing sorting plates for different grades, and a sorting plate transfer means for reciprocating one of the sorting plates loaded in the stacking magazine from the stacking magazine to the empty stage;
  • the control unit controls the driving of the stacking magazine and the sorting plate transfer means so that the LED chips of the same grade among the LED chips attached to the supply plate can be loaded on the sorting plate of the corresponding class among the sorting plates loaded on the stacking magazine. effective.
  • an LED chip sorting apparatus capable of quickly classifying an LED chip.
  • 1 is a plan view of a conventional LED chip sorting device
  • FIG. 2 is an enlarged view of area “A” of FIG. 1;
  • FIG. 3 is a schematic block diagram of an LED chip sorting apparatus according to the present invention.
  • FIG. 6 is a control block diagram of the LED chip classification apparatus according to the present invention.
  • FIG. 7 to 10 is an enlarged front view showing the main drive state of the LED chip sorting apparatus of Figs.
  • 11 and 12 are enlarged front views of main parts of the LED chip sorting apparatus according to another embodiment of the present invention.
  • FIG. 13 and 16 are enlarged plan views of main parts of the LED chip sorting apparatus according to another embodiment of the present invention.
  • the LED chip sorting apparatus 101 includes a sorting unit 300 and a sorting unit (300) for classifying the LED chips (L) delivered in the inspection process of the device by grade.
  • Loading unit 400 for classifying and loading the LED chips (L) classified in the 300 by grade
  • pickup unit 500 for transferring the LED chip (L) from the sorting unit 300 to the loading unit 400
  • the control unit 600 controls the driving of the device.
  • the sorting unit 300 includes a vertical sorting stage 310 for vertically loading the supply plate 311 to which the LED chips L are attached, and the sorting stage 310 in a vertical, front and rear or left and right directions (for convenience of description below). Press the LED chip L attached to the feed plate 311 loaded on the sorting stage 310 and the pick-up unit 500 to reciprocate in the " horizontal direction " It includes an unloading pressure unit 330.
  • the sorting stage 310 is coupled to the sorting stage driver 321 which will be described later so that the plate surface is disposed in the vertical direction, the unloading driving space of the unloading pressure unit 330 is located in the center area of the sorting stage 310.
  • the feed plate support slot 318 into which the feed plate 311 is inserted is formed at both end portions in the vertical direction.
  • the sorting stage 310 is provided with an information sensor 315 such as a barcode reader which detects an identification mark such as a barcode attached to the supply plate 311 and transmits it to the control unit 600.
  • the supply plate 311 loaded on the sorting stage 310 may have a frame shape in which a central space corresponding to the unloading driving space of the sorting stage 310 is formed, and an adhesive material is included in the central space. Attachment sheet 314 such as a blue tape may be provided.
  • the supply plate 311 is loaded on the sorting stage 310 with the LED chips L having the inspection process completed on the attachment sheet 314.
  • the supply plate 311 is provided with an identification mark such as a bar code including the coordinate information of the LED chips L and the grade information of the LED chips L positioned at the corresponding coordinates.
  • the LED chip sorting apparatus 101 When the LED chip sorting apparatus 101 according to the present invention is provided with the LED chip L inspection apparatus that performs the inspection process in the LED chip L manufacturing process, the LED chips L transmitted from the inspection process are supplied. It is attached to the plate 311, and then supply plate transfer means (not shown) such as a gripper through a buffer stage (not shown) or a buffer moving machine (not shown) provided between the inspection process and the LED chip (L) sorting device It can be delivered to the sorting stage 310 by using. At this time, the supply plate 311 transmitted to the sorting stage 310 is switched in the direction to be transmitted in the vertical direction.
  • the direction change of the supply plate 311 may be made in the process of being transferred to the buffer stage (not shown) or the buffer moving machine (not shown) in the inspection process.
  • the LED chip sorting apparatus 101 when the LED chip sorting apparatus 101 according to the present invention is provided as a separate device from the LED chip (L) inspection apparatus in the LED chip (L) manufacturing process, the LED chip (L) through the inspection process is loaded
  • a separate supply plate storage unit capable of accommodating a plurality of supply plates 311 is provided adjacent to the sorting stage 310, and a supply plate using a supply plate transfer means (not shown) such as a gripper.
  • the supply plate 311 stored in the storage unit (not shown) may be transferred to the sorting stage 310.
  • the supply plate 311 transmitted to the sorting stage 310 is changed in direction so as to be transmitted in a vertical direction.
  • the change of the direction of the supply plate 311 may be provided by providing a structure of the supply plate storage unit (not shown) as a vertical storage structure.
  • the sorting stage driving unit 320 supports the sorting stage 310 in the vertical direction, and the sorting stage driving body 321 and the sorting stage driving body 321 for reciprocating the sorting stage 310 in all four directions. It is composed of a sorting stage driver 327 for driving.
  • the sorting stage driver 321 is coupled to the sorting stage support 323 disposed in a vertical direction on one side inside the casing (not shown) of the device, so as to reciprocally move in a horizontal direction with respect to the sorting stage support 323.
  • the sorting stage horizontal driver 324 and the sorting stage vertical driver 325 coupled to the sorting stage horizontal driver 324 to be reciprocated in a vertical direction to support the sorting stage 310 may be configured. have.
  • the installation position of the sorting stage horizontal drive body 324 and the sorting stage vertical drive body 325 can be changed to the position of the other party according to the conditions, the moving direction of the sorting stage horizontal drive body 324 is the casing of the device ( It is moved in the front and rear or left and right directions from the inside of the (not shown).
  • the sorting stage driver 327 may include a sorting stage horizontal driver 328 for reciprocating the sorting stage horizontal driver 324 in a horizontal direction, and a sorting stage for reciprocating the sorting stage vertical driver 325 in a vertical direction. It may be configured as a vertical driver 329.
  • the unloading pressurizing unit 330 is provided in the unloading driving space of the sorting stage 310 to unload the mounting sheet 314 of the supply plate 311 loaded on the sorting stage 310 toward the pickup unit 500.
  • the pressurizing member 331 and the unloading pressurizer 333 for driving the unloading pressurizing member 331 may be configured.
  • the unloading pressing member 331 may be provided in the form of a pressing pin for pressing a region of the attachment sheet 314 to press each of the LED chip (L) to the pickup unit 500 side individually, Therefore, it may be provided in the form of a pressure chuck to press the entire area of the attachment sheet 314 to press the entire LED chip (L) toward the pickup unit 500.
  • the unloading pressurizer 333 drives the unloading pressurizing member 331 in the pressing direction and the return direction according to the control signal of the controller 600.
  • the unloading pressurizer 333 may be provided in various forms such as a pneumatic cylinder or a solenoid.
  • the loading unit 400 is a vertical bin stage 410 and the empty stage 410 to vertically load the sorting plate 411 to which the LED chip (L) transmitted from the sorting unit 300 is to be attached for each grade; And an attachment sheet of the sorting plate 411 stacked on the bin stage driving unit 420 and the bin stage driving unit 420 for reciprocating in the vertical, front and rear or left and right directions (collectively referred to as "horizontal direction" for convenience of description).
  • the loading press unit 430 pressurizing the 414 to the pickup unit 500 side, the loading magazine 440 for accommodating the classification plate 411 for each grade, and the classification plate 411 with the empty stage 410 and the loading magazine ( 440 includes a sorting plate transfer means 450 for reciprocating both sides.
  • the empty stage 410 is coupled to the empty stage driver 421 to be described later so that the plate surface is disposed in the vertical direction, the loading driving space of the loading pressure unit 430 is formed in the central region of the empty stage 410
  • the sorting plate support slot 418 into which the sorting plate 411 is inserted is formed at both end portions in the vertical direction.
  • the sorting plate 411 loaded on the empty stage 410 has the same structure as the supply plate 311 used in the sorting unit 300 described above, and corresponds to the loading driving space of the empty stage 410. It may have a frame shape in which a central space is formed, and an attachment sheet 414 such as a blue tape including an adhesive material may be provided in the central space. Grade LED chips L transmitted by the pickup unit 500 from the sorting unit 300 are attached to the attachment sheet 414.
  • the bin stage 410 is preferably disposed spaced apart from the sorting stage 310, as shown in Figures 4 and 5 and 7 to 12, which is the sorting stage 310 and the empty stage
  • the planar installation space of the sorting stage 310 and the empty stage 410 can be minimized. Accordingly, the planar volume of the device can be minimized and it is very advantageous to secure the installation space.
  • the empty stage driving unit 420 supports the empty stage 410 in the vertical direction, while the empty stage driving unit 421 reciprocates the empty stage 410 in all directions in the vertical plane direction, and the empty stage driving unit 421. It consists of a bin stage driver 427 for driving.
  • the bin stage driver 421 is coupled to the bin stage support 423 disposed in a vertical direction on one side inside the casing (not shown) of the device so as to reciprocate in a horizontal direction with respect to the bin stage support 423.
  • the empty stage horizontal driver 424 and the empty stage vertical driver 425 coupled to the reciprocating movement in the vertical direction with respect to the empty stage horizontal driver 424 may support the empty stage 410. have.
  • the installation position of the empty stage horizontal drive body 424 and the empty stage vertical drive body 425 can be changed to the position of the other party according to the conditions, the moving direction of the empty stage horizontal drive body 424 is the casing of the device ( It is moved in the front and rear or left and right directions from the inside of the (not shown).
  • the bin stage driver 427 includes a bin stage horizontal driver 428 for reciprocating the bin stage horizontal driver 424 in a horizontal direction, and a bin stage for reciprocating the bin stage vertical driver 425 in a vertical direction. It may be configured as a vertical driver 429.
  • the loading and pressing unit 430 is provided in the loading driving space of the empty stage 410 and the loading pressing member for pressing the attachment sheet 414 of the sorting plate 411 loaded on the empty stage 410 toward the pickup unit 500 ( 431 and a loading pressurizer 433 for driving the loading pressurizing member 431.
  • the loading pressing member 431 may be provided in the form of a pressing pin for pressing a region of the attachment sheet 414 to press each of the LED chip (L) to the pickup unit 500 side, in some cases, It may be provided in the form of a pressure chuck to press the entire area of the attachment sheet 414 to press the entire LED chip (L) to the pickup unit 500 side.
  • the loading pressurizer 433 drives the loading pressurizing member 431 in the pressing direction and the return direction according to the control signal of the controller 600.
  • the loading presser 433 may be provided in various forms such as a pneumatic cylinder or a solenoid.
  • the loading magazine 440 includes a magazine body 441 having a plurality of grade loading slots 442, and a grade loading slot 442 of any one of the grade loading slots 442.
  • Has a magazine driver 443 which drives the magazine body 441 adjacent to the sorting plate transfer means 450.
  • the magazine body 441 may have a rectangular cylindrical shape having at least one side open while having a predetermined length, and in a state in which the open side faces the empty stage 410 side, the longitudinal direction is horizontally reciprocated to move horizontally.
  • the graded loading slots 442 formed in the magazine body 441 are also disposed in the vertical direction.
  • the magazine driver 443 has a magazine such that the graded loading slot 442 selected from the graded loading slots 442 is located adjacent to the gripper 451 of the classification plate transfer means 450 which will be described later according to the control signal of the controller 600.
  • the main body 441 is reciprocated in the horizontal direction.
  • the sorting plate transfer means 450 includes a gripper 451 for holding and releasing the sorting plate 411 loaded on the magazine body 441 or the empty stage 410, and the gripper 451 for the empty stage 410. ) And a gripper feeder 453 that reciprocates to both sides of the loading magazine 440.
  • the sorting plate transfer means 450 moves any selected one of the sorting plates 411 for each grade loaded on the magazine body 441 to the empty stage 410 according to the control signal of the controller 600, or the empty stage.
  • the sorting plate 411 loaded on the 410 is moved to the corresponding stacking slot 442 of the magazine body 441.
  • the pickup unit 500 includes a swing arm 510 for reciprocating both sides of the sorting stage 310 and the empty stage 410, a swing arm driver 520 for rotating the swing arm 510, and a swing arm.
  • the picker 530 which is provided at the free end of the 510 and picks up the LED chip L from the supply plate 311 positioned on the sorting stage 310 and moves the picker chip 411 to the sorting plate 411 on the empty stage 410 side.
  • the swing arm 510 of the pickup unit 500 is rotated between the sorting stage 310 and the empty stage 410 facing each other in a direction perpendicular to each other, and the rotation distance of the swing arm 510 is always constant. Do.
  • the picker 530 is coupled to the free end of the swing arm 510, the nozzle port (not shown) is preferably provided in the form of a suction nozzle in the radial direction.
  • the nozzle holes (not shown) of the picker 530 are supplied to the sorting stage 310 and the empty stage 410 according to the reciprocating rotation of the swing arm 510, and the sorting plate 411.
  • the attachment sheets 314 and 414 are positioned in a direction perpendicular to the vertical plane.
  • the swing arm 510 and the picker 530 be provided in at least one pair to speed up the LED chip L sorting speed.
  • the swing arm 510 and the picker 530 may be provided with a single swing arm 510 and the picker 530.
  • the pickup unit 500 is to be composed of a pair of swing arm 510 and the picker 530 in a single swing arm driver 520, as shown in Figures 3 to 5 and 7 to 10. 12, each of the independent pairs of swiss arm drivers 520 may have a single swing arm 510 and a picker 530.
  • control unit 600 detects an identification mark of the supply plate 311 loaded on the sorting stage 310 in the information sensor 315 provided in the sorting stage 310 to supply the plate. Check the grade of the LED chips (L) loaded on the (311).
  • the sorting stage of the sorting unit 300 is withdrawn so that the sorting plate 411 of the stacking unit 400 corresponding to the identified level of the LED chip L is removed from the stacking magazine 440 and loaded on the empty stage 410.
  • the driving unit 320, the unloading pressure unit 330, and the pickup unit 500, the empty stage driving unit 420, the loading pressure unit 430, and the loading magazine of the loading unit 400 are provided.
  • a classification process for each class of the LED chip L by the LED chip classification apparatus 101 according to the present invention having such a configuration will be described with reference to FIGS. 6 to 10.
  • the information sensor 315 is supplied to the supply plate.
  • An identification mark such as a barcode provided in 311 is sensed, and each coordinate of the LED chips L and grade information data of the LED chips L positioned at the corresponding coordinates are transmitted to the controller 600.
  • the coordinates and grade information of the LED chip (L) attached to the supply plate 311 may be input in the inspection process.
  • the controller 600 receiving information data according to the coordinates and coordinates of the LED chips L from the information sensor 315 drives the magazine driver 443 of the loading magazine 440 to classify the LED chips L to be classified.
  • the sorting plate 411 stored in the rating stacking slot 442 of the magazine body 441 corresponding to the loading magazine 440 moves to a position where it can be gripped by the gripper 451 of the sorting plate transfer means 450. ).
  • control unit 600 controls the driving of the gripper 451 so that the gripper 451 of the classification plate transfer means 450 grips and pulls the classification plate 411 of the corresponding grade from the magazine body 441.
  • the driving of the gripper conveyer 453 is controlled to move the sorting plate 411 to the empty stage 410 (see FIG. 3).
  • the control unit 600 releases the grip operation of the gripper 451.
  • control unit 600 is the LED chip (L) that is the sorting object corresponding to the class of the sorting plate 411 pickup unit 500 Control the driving of the sorting stage driving unit 320 on the basis of the coordinate value of the LED chip (L) received from the information sensor 315 to be located at the pickup position.
  • the controller 600 controls driving of the swing arm driver 520 of the pickup unit 500 so that the picker 530 of one side of the sorting stage 310 The swing arm 510 is rotated to be at the pickup position.
  • the control unit 600 drives the unloading pressurizer 333 of the unloading pressurizing unit 330 of the sorting unit 300 as shown in FIG.
  • the member 331 presses the attachment sheet 314 of the supply plate 311 toward the picker 530.
  • the controller 600 controls the pickup driving of the pickup unit 500 so that the corresponding LED chip L is picked up to the picker 530.
  • the pickup drive of the pickup unit 500 may be a suction drive of the picker 530 using an air compressor (not shown).
  • the controller 600 releases the unloading pressurizer 333 of the unloading pressurizing unit 330 to return the unloading pressurizing member 331 to its original position. .
  • the controller 600 controls the drive of the swing arm driver 520 to pick up the LED chip (L) picked up 530
  • the swing arm 510 is rotated in the opposite direction to be located at the pickup release position of the empty stage 410.
  • the opposite picker is rotated to the pick-up position of the sorting stage 310 by the rotation of the swing arm 510.
  • the control unit 600 stores the loading unit 400.
  • the loading pressurizing member 431 of the loading pressurizing unit 433 of the loading pressurizing unit 430 and the unloading pressurizing unit 333 of the unloading pressurizing unit 330 of the sorting unit 300 is driven to the empty stage 410.
  • the unloading pressure member 331 attaches the sheet 314 of the supply plate 311 of the sorting stage 310.
  • the sorting stage 310 is already moved so that the LED chip (L) which is another pickup target is located at the pickup position.
  • the LED chip (L) is attached to the sorting plate 411 loaded on the empty stage 410, the control unit 600, the pick-up unit 500 so that the LED chip (L) is picked up off the picker (530) Control the pickup release operation.
  • another LED chip loaded on the sorting stage 310 is picked up by the corresponding LED chip (L) to the picker (530).
  • both pickers 530 of the pickup unit continuously rotate the sorting stage 310 and the empty stage 410, and the picker positioned on the sorting stage 310 side picks up the LED chip, and at the same time, the opposite bin Pickers located on the stage 410 side are simultaneously picked up and picked up and driven to pick up and unload the LED chip, as shown in FIGS. 9 and 10.
  • the sorting stage 310 is pre-driven and controlled so that the next pick-up target LED chip L is positioned at the pick-up position during the swinging of the swing arm 510, and the area where the next pick-up target LED chip is to be picked-up is released.
  • the bin stage 410 is driven in advance to be positioned.
  • both side pickers 530. 9 and 10 may be driven to pick up and unpick up the LED chip for the sorting stage 310 and the empty stage 410 simultaneously and continuously.
  • the control unit 600 controls the driving of the gripper 451 and the gripper transporter 453 of the sorting plate transporting means 450 to attach the completed LED chips L from the empty stage 410.
  • the sorting plate 411 is stored in the corresponding loading slot 442 of the magazine body 441 (see Fig. 3).
  • the LED chips L of different grades among the LED chips L remaining on the supply plate 311 loaded on the sorting stage 310 are classified as the classification plates of each class of the loading part 400 in the same manner as described above. 411) are loaded and sorted.
  • the sorting stage 310 and the empty stage 410 of the LED chip sorting apparatus 101 according to the present invention are vertically disposed to face each other, is described. 13 and 14, the sorting stage 310 and the empty stage 410 may be spaced apart vertically or horizontally so that the stacking planes are located on the same plane.
  • the LED chip sorting apparatus may have a structure in which the sorting stage 310 is disposed vertically and the empty stage 410 is arranged horizontally, as shown in FIG. 15, and the sorting stage 310 is illustrated in FIG. 16. ) May be arranged horizontally and the bin stage 410 may be arranged vertically.
  • the unloading pressurizing unit 330 and the loading pressurizing unit 430 have the same configuration as the above-described embodiment, but correspond to the arrangement structure of the sorting stage 310 and the empty stage 410. It can be arranged in a suitable structure that can perform the function smoothly.
  • the sorting stage driving unit 320 and the empty stage driving unit 420 may also be arranged in a suitable structure that can smoothly perform the function corresponding to the arrangement structure of the sorting stage 310 and the empty stage 410. have.
  • the installation structure of the pickup unit 500 as shown in Figure 13 to 16, the swing section of the swing arm 510 may correspond to the arrangement structure of the sorting stage 310 and the empty stage 410
  • the picker 530 may be properly changed to a structure such that the picker 530 has a suitable structure so that the LED chip L may be picked up or released in a direction orthogonal to the stacking surface of the sorting stage 310 and the empty stage 410.
  • the swing arm 510 may be installed.
  • a picker for picking up or releasing the LED chip L is selected.
  • the picker 530 is always located at a constant turning radius and pick-up position and pick-up release position, and the unloading pressing unit 330 on the sorting stage 310 side.
  • the LED chip L approaches and is separated from the picker 530 by the driving of the loading pressure unit 430 on the empty stage 410 side, the driving of the pick-up unit 500 is performed very quickly. As a result, the sorting speed of the LED chip L is further improved.

Landscapes

  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Container, Conveyance, Adherence, Positioning, Of Wafer (AREA)
  • Testing Of Individual Semiconductor Devices (AREA)

Abstract

La présente invention porte sur un appareil de classification de puces de diodes électroluminescentes (LED). L'appareil de classification de puces de diodes électroluminescentes comprend : une platine de tri, qui charge une plaque d'alimentation ayant une feuille d'attachement sur laquelle sont attachées des puces de diodes électroluminescentes, et qui est mobile au moins horizontalement dans quatre directions ; une platine vide qui est espacée de la platine de tri, qui charge des plaques de classification par qualité ayant des feuilles d'attachement sur lesquelles les puces de diodes électroluminescentes sont destinées à être attachées, et qui est mobile au moins horizontalement dans quatre directions ; une unité de saisie qui a au moins un bras oscillant tournant dans un sens et dans un autre tout à la fois vers la platine de tri et vers la platine vide, et qui a un élément de saisie disposé sur le bras oscillant, qui saisit des puces de diodes électroluminescentes sur la plaque d'alimentation, et qui libère les puces de diodes électroluminescentes saisies sur la plaque de classification ; et une unité de pressurisation de déchargement et une unité de pressurisation de chargement qui sont respectivement disposées sur la platine de tri et sur la platine vide, et qui compriment les feuilles d'attachement de la plaque d'alimentation et de la plaque de classification par qualité vers l'unité de saisie. Par conséquent, un appareil de classification de puces de diodes électroluminescentes apte à classer rapidement des puces de diodes électroluminescentes est procuré.
PCT/KR2011/007505 2011-04-21 2011-10-11 Appareil de classification de puces led WO2012144703A1 (fr)

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
KR10-2011-0037055 2011-04-21
KR1020110037055A KR101057797B1 (ko) 2011-04-21 2011-04-21 엘이디 칩 분류장치
KR1020110073565A KR101092966B1 (ko) 2011-07-25 2011-07-25 엘이디 칩 분류장치
KR10-2011-0073565 2011-07-25

Publications (1)

Publication Number Publication Date
WO2012144703A1 true WO2012144703A1 (fr) 2012-10-26

Family

ID=47041775

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/KR2011/007505 WO2012144703A1 (fr) 2011-04-21 2011-10-11 Appareil de classification de puces led

Country Status (2)

Country Link
TW (1) TWI486599B (fr)
WO (1) WO2012144703A1 (fr)

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103077914A (zh) * 2013-01-09 2013-05-01 广东志成华科光电设备有限公司 一种全自动晶粒分选设备及全自动晶粒分选方法
TWI636270B (zh) * 2017-12-08 2018-09-21 昀業科技有限公司 Continuous automatic detection equipment
CN109597002A (zh) * 2018-12-28 2019-04-09 陈清尧 一种led测试检测装置
CN111261539A (zh) * 2018-11-30 2020-06-09 马鞍山杰生半导体有限公司 Led芯片分拣装置及方法
CN111415880A (zh) * 2019-01-08 2020-07-14 鸿劲精密股份有限公司 电子元件作业设备
CN113083707A (zh) * 2021-03-20 2021-07-09 珠海达明科技有限公司 一种芯片测试自动化产线的芯片等级分选装置及方法

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103389200B (zh) * 2013-07-29 2016-04-13 浙江福森电子科技有限公司 Led高速分光测试装置

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2002196042A (ja) * 2000-10-10 2002-07-10 Mire Kk デバイステストハンドラ及びその作動方法
US20070262769A1 (en) * 2006-05-12 2007-11-15 Mirae Corporation Handler for sorting packaged chips
KR20080072131A (ko) * 2007-02-01 2008-08-06 미래산업 주식회사 반도체 소자 테스트 핸들러용 소팅장치 및 소팅방법
KR20080088897A (ko) * 2007-03-30 2008-10-06 미래산업 주식회사 테스트 핸들러 및 이를 이용한 테스트 트레이 이송 방법

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7306695B2 (en) * 2003-04-10 2007-12-11 Matsushita Electric Industrial Co., Ltd. Apparatus and method for picking up semiconductor chip
WO2011016607A1 (fr) * 2009-08-02 2011-02-10 (주)큐엠씨 Appareil préhenseur, et appareil classificateur de microcircuits à diodes électroluminescentes équipé dudit appareil préhenseur

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2002196042A (ja) * 2000-10-10 2002-07-10 Mire Kk デバイステストハンドラ及びその作動方法
US20070262769A1 (en) * 2006-05-12 2007-11-15 Mirae Corporation Handler for sorting packaged chips
KR20080072131A (ko) * 2007-02-01 2008-08-06 미래산업 주식회사 반도체 소자 테스트 핸들러용 소팅장치 및 소팅방법
KR20080088897A (ko) * 2007-03-30 2008-10-06 미래산업 주식회사 테스트 핸들러 및 이를 이용한 테스트 트레이 이송 방법

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103077914A (zh) * 2013-01-09 2013-05-01 广东志成华科光电设备有限公司 一种全自动晶粒分选设备及全自动晶粒分选方法
TWI636270B (zh) * 2017-12-08 2018-09-21 昀業科技有限公司 Continuous automatic detection equipment
CN111261539A (zh) * 2018-11-30 2020-06-09 马鞍山杰生半导体有限公司 Led芯片分拣装置及方法
CN109597002A (zh) * 2018-12-28 2019-04-09 陈清尧 一种led测试检测装置
CN109597002B (zh) * 2018-12-28 2021-02-26 陈清尧 一种led测试检测装置
CN111415880A (zh) * 2019-01-08 2020-07-14 鸿劲精密股份有限公司 电子元件作业设备
CN113083707A (zh) * 2021-03-20 2021-07-09 珠海达明科技有限公司 一种芯片测试自动化产线的芯片等级分选装置及方法

Also Published As

Publication number Publication date
TW201303325A (zh) 2013-01-16
TWI486599B (zh) 2015-06-01

Similar Documents

Publication Publication Date Title
WO2012144703A1 (fr) Appareil de classification de puces led
KR100931323B1 (ko) 엘이디 칩 분류장치
WO2016068491A1 (fr) Dispositif pour transférer un gabarit de cellule de dispositif de pose de languettes de contact
TW201142273A (en) Apparatus for inspecting light emitting diode package and inspecting method using the same
WO2011016607A1 (fr) Appareil préhenseur, et appareil classificateur de microcircuits à diodes électroluminescentes équipé dudit appareil préhenseur
KR100986248B1 (ko) 멀티 암 구조체 및 이를 포함하는 대상물 분류장치
KR20090133141A (ko) 전자부품 시험장치, 전자부품 시험 시스템 및 전자부품의 시험방법
KR101910354B1 (ko) 반도체 패키지의 트레이 자동교체장치
KR100986274B1 (ko) 일체형 엘이디 칩 검사 및 분류 장비
KR101057797B1 (ko) 엘이디 칩 분류장치
KR101333435B1 (ko) 테스트 핸들러
JP4466976B1 (ja) 分類装置
WO2020213961A1 (fr) Appareil de transfert de plateau
WO2013042906A2 (fr) Appareil de fixation de plaque d'élément destiné à fixer une plaque d'élément sur un fpc, et unité de séparation de plaque d'élément et unité de presse servant à celui-ci
WO2014092228A1 (fr) Appareil de transfert de puce et procédé de commande de celui-ci
KR101092966B1 (ko) 엘이디 칩 분류장치
JPH0964147A (ja) ウェーハリングの供給・返送装置
KR20120106491A (ko) 소자핸들러 및 소자이송방법
KR101189176B1 (ko) 엘이디소자핸들러
CN218433549U (zh) 一种芯片上料装置
KR102249574B1 (ko) 전자부품 언로딩장비
CN111083919A (zh) 具有甄别功能的插件机
KR20210002187A (ko) 반도체 제조장치
KR20190043731A (ko) 다이 본딩 장치
WO2019245354A1 (fr) Appareil de tri de dispositifs

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 11863981

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 11863981

Country of ref document: EP

Kind code of ref document: A1