IP Library Granted Patent US 8,318,237
Granted Patent B2
US 8,318,237 · App. 11/950,858 · Granted Nov 27, 2012

Pixel observation system, drawing system, liquid material drawing method, color filter manufacturing method, and organic EL element manufacturing method

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Quick Facts
Patent No.
US 8,318,237
App. No.
11/950,858
Granted
Nov 27, 2012
Kind
B2
Abstract

A pixel observation system includes a memory unit, a coordinate generation unit, and an observation unit. The memory unit is configured to store at least nozzle information indicative of discharge states of a liquid material in a plurality of nozzles and arrangement information indicative of an arrangement of each of the nozzles with respect to each of a plurality of pixel regions in relative movement of the nozzles and a substrate. The coordinate generation unit is configured to generate observation coordinates of observation regions on the substrate based on the nozzle information and the arrangement information, and to include coordinates of at least some of the pixel regions over which the nozzles scan through one cycle of the relative movement in the observation coordinates. The observation unit is configured and arranged to observe the pixel regions positioned at the observation coordinates generated by the coordinate generation unit.

Claims (35)

1. A liquid material drawing method for discharging a liquid material including a functional material from a plurality of nozzles to a plurality of pixel regions on a substrate in synchronization with relative movement of the substrate and the nozzles to form a plurality of pixels, the liquid material drawing method comprising:

discharging from the nozzles droplets of the liquid material onto a test discharge object which is different from the substrate;

checking discharge states of the liquid material on the test discharge object;

storing nozzle information indicative of the discharge states of the liquid material, the nozzle information including information of a defective nozzle in which a discharge defect occurs;

generating a pixel list indicative of each of the pixel regions corresponding to the defective nozzle based on the nozzle information;

generating observation coordinates indicating observation regions to be observed in the pixel regions on the substrate based on the pixel list and arrangement information indicative of an arrangement of each of the nozzles with respect to each of the pixel regions in the relative movement;

discharging and drawing droplets of the liquid material in the pixel regions on the substrate from the nozzles based on the arrangement information;

observing the observation regions in the pixel regions positioned at the observation coordinates of the substrate after the liquid material is discharged and drawn on the substrate;

identifying a defective nozzle corresponding to a defective pixel among the pixel regions; and

correcting the arrangement information when the defective pixel is detected,

the generating of the observation coordinates including generating coordinates of at least some of the pixel regions over which the nozzles scan through one cycle of the relative movement as the observation coordinates.

2. The liquid material drawing method according to claim 1 , further comprising

updating the nozzle information based on information of the defective nozzle identified.

3. The liquid material drawing method according to claim 1 , wherein

the generating of the observation coordinates includes generating coordinates of the pixel region corresponding to the defective nozzle and the pixel regions disposed adjacent to the pixel region corresponding to the defective nozzle as the observation coordinates.

4. The liquid material drawing method according to claim 1 , wherein

the identifying of the defective nozzle includes identifying at least one of a clogged nozzle, a landing-position-deviated nozzle, and an abnormal discharge quantity nozzle as the defective nozzle.

5. The liquid material drawing method according to claim 1 , further comprising

discharging droplets of the liquid material onto a test discharge object from the nozzles, and

measuring a landing diameter and a landing position deviation of the droplets discharged onto the test discharge object,

the generating of the observation coordinates including generating the observation coordinates based on the nozzle information including dimensional information of the nozzles indicative of the landing diameter and the landing position deviation.

6. The liquid material drawing method according to claim 5 , wherein

the discharging of the droplets includes discharging the droplets while the nozzles and the test discharge object are moved relative to each other so that the droplets are landed on an imaginary straight line in each of a forward movement and a reverse movement of a relative movement of the nozzles and the test discharge object.

7. The liquid material drawing method according to claim 1 , wherein

the arrangement information includes selection information of a nozzle for discharging the droplets, and

the correcting of the arrangement information includes correcting the arrangement information so that the defective nozzle is not selected, and one of the nozzles other than the defective nozzle is selected to discharge the liquid material to make up for a deficiency in the liquid material discharged onto each of the pixel regions.

8. The liquid material drawing method according to claim 1 , wherein

the arrangement information includes a drive condition for discharging the droplets for each of the nozzles, and

the correcting of the arrangement information includes identifying one of a landing-position-deviated nozzle and an abnormal discharge quantity nozzle as the defective nozzle, and varying the drive condition for discharging the droplets from the defective nozzle.

9. A method for manufacturing a color filter having at least three colors of color layers in the pixel regions partitioned on the substrate, the color filter manufacturing method comprising:

performing the liquid material drawing method according to claim 1 to discharge and draw at least three colors of the liquid material in the pixel regions with the liquid material including a color layer formation material; and

curing the liquid material discharged and drawn on the substrate to form the at least three colors of the color layers.

10. A method for manufacturing an organic EL element having at least a luminescent layer in the pixel regions partitioned on the substrate, the organic EL manufacturing method comprising:

performing the liquid material drawing method according to claim 1 to discharge and draw the liquid material including a luminescent layer formation material in the pixel regions; and

curing the liquid material discharged and drawn on the substrate to form the luminescent layer.

Assignments (7)
SECURITY INTEREST Recorded Apr 19, 2022
From: KATEEVA CAYMAN HOLDING, INC.
To: HB SOLUTION CO., LTD.
Reel/Frame 059727/0111 →
SECURITY INTEREST Recorded Mar 17, 2022
From: KATEEVA, INC.; KATEEVA CAYMAN HOLDING, INC.
To: SINO XIN JI LIMITED
Reel/Frame 059382/0053 →
SECURITY AGREEMENT Recorded Jan 23, 2020
From: KATEEVA, INC.
To: SINO XIN JI LIMITED
Reel/Frame 051682/0212 →
RELEASE OF SECURITY INTEREST Recorded Jan 22, 2020
From: EAST WEST BANK, A CALIFORNIA BANKING CORPORATION
To: KATEEVA, INC.
Reel/Frame 051664/0802 →
SECURITY INTEREST Recorded Apr 4, 2019
From: KATEEVA, INC.
To: EAST WEST BANK
Reel/Frame 048806/0639 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 6, 2017
From: SEIKO EPSON CORP
To: KATEEVA, INC.
Reel/Frame 044719/0414 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 5, 2007
From: KINOSHITA, TOYOTARO
To: SEIKO EPSON CORPORATION
Reel/Frame 020199/0784 →