IP Library Granted Patent US 9,299,959
Granted Patent B2
US 9,299,959 · App. 14/389,000 · Granted Mar 29, 2016

Inkjet device and manufacturing method for organic el device

Inventors: Masashi Goto (Hyogo, JP); Hirotaka Nanno (Kyoto, JP); Masakazu Takata (Osaka, JP)
Assignee: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.
H01L51/56B41J2/0459B41J2/04581B41J2/04588B41J2/04593B41J2/04596B41J2/04598B41J2/14233H01L51/0005H05B33/10B41J2202/09H01L27/3246H01L51/5012
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,299,959
App. No.
14/389,000
Granted
Mar 29, 2016
Kind
B2
Abstract

An ink jet device includes: an ink jet head including a nozzle through which ink droplet is ejected by applying voltage to piezoelectric element; and an ejection control unit controlling ink droplet ejection amount by varying voltage, voltage waveform of the voltage includes: preliminary vibration wave form part for preliminary drive operation of pushing ink toward outer edge of the nozzle to the extent that the droplet is not ejected; and main vibration waveform part for main drive operation of ejecting the droplet through the nozzle after the preliminary drive operation, the ejection control unit performs the preliminary and main drive operations according to the preliminary vibration waveform part and the main vibration waveform part, respectively, and proportion of displacement amount X of the voltage for the preliminary drive operation to displacement amount Y of the voltage for the main drive operation is set to 20%≦X/Y≦40%.

Claims (52)

1. An ink jet device comprising:

an ink jet head including an ink housing that houses therein ink, a pressure applicator that applies pressure to the ink by applying voltage to a piezoelectric element according to a voltage waveform, and a nozzle through which a droplet of the ink is ejected; and

an ejection controller that controls an ejection amount of the droplet of the ink by varying an application voltage to be applied to the piezoelectric element, wherein

the voltage waveform of the application voltage includes a preliminary vibration waveform part and a main vibration waveform part,

the preliminary vibration waveform part is for performing a preliminary drive operation of pushing the ink toward an outer edge of the nozzle to the extent that the droplet of the ink is not ejected through the nozzle,

the main vibration waveform part is for performing a main drive operation of ejecting the droplet of the ink through the nozzle after performance of the preliminary drive operation,

the ejection controller performs the preliminary drive operation and the main drive operation according to the preliminary vibration waveform part and the main vibration waveform part, respectively, and

a ratio of a displacement amount X of the application voltage applied for performing the preliminary drive operation to a displacement amount Y of the application voltage applied for performing the main drive operation is set so that the relation 20%≦X/Y≦40% is satisfied, and

the preliminary vibration waveform part and the main vibration waveform part are independent of each other and a constant application voltage waveform part is provided between the preliminary vibration waveform part and the main vibration waveform part.

2. The ink jet device of claim 1 , wherein

the ink housing, the pressure applicator, and the nozzle are each included in plural in the ink jet head,

with respect to one or more of the nozzles, the ejection controller performs the preliminary drive operation and the main drive operation, and

with respect to a remainder of the nozzles, the ejection controller does not perform the preliminary drive operation.

3. The ink jet device of claim 1 , wherein

the preliminary drive operation is set so that a flight speed V of a droplet of the ink to be ejected in the main drive operation satisfies 4 m/s≦V≦10 m/s.

4. The ink jet device of claim 1 , wherein

the voltage waveform of the application voltage further includes a vibration suppression waveform part for performing a vibration suppression operation that suppresses vibration occurring on a surface of the ink due to the main drive operation, and

with respect to the nozzle with respect to which the preliminary drive operation is performed, the ejection controller performs the vibration suppression operation according to the vibration suppression waveform part.

5. The ink jet device of claim 4 , wherein

the surface of the ink at a start time of the main drive operation after performance of the preliminary drive operation is positioned more downward than the surface of the ink at a start time of the main drive operation without performance of the preliminary drive operation.

6. A method of manufacturing an organic EL device comprising:

forming a first electrode on a substrate;

forming one or more functional layers including a light-emitting layer on the first electrode;

forming a second electrode on the functional layers, wherein

in the forming of the one or more functional layers, the one or more functional layers, including at least the light-emitting layer, are formed by applying ink including material of the functional layer and solvent with use of the ink jet device of claim 1 , and at least evaporating and drying the solvent.

7. An ink jet device comprising:

an ink jet head including an ink housing that houses therein ink, a pressure applicator that applies pressure to the ink by applying voltage to a piezoelectric element according to a voltage waveform, and a nozzle through which a droplet of the ink is ejected; and

an ejection controller that controls an ejection amount of the droplet of the ink by varying an application voltage to be applied to the piezoelectric element, wherein

the voltage waveform of the application voltage includes a preliminary vibration waveform part and a main vibration waveform part,

the preliminary vibration waveform part is for performing a preliminary drive operation of pushing the ink toward an outer edge of the nozzle to the extent that the droplet of the ink is not ejected through the nozzle,

the main vibration waveform part is for performing a main drive operation of ejecting the droplet of the ink through the nozzle after performance of the preliminary drive operation,

the ejection controller performs the preliminary drive operation and the main drive operation according to the preliminary vibration waveform part and the main vibration waveform part, respectively, and

a ratio of a displacement amount X of the application voltage applied for performing the preliminary drive operation to a displacement amount Y of the application voltage applied for performing the main drive operation is set so that the relation 20%≦X/Y≦40% is satisfied, and

the preliminary vibration waveform part and the main vibration waveform part are not inclined with respect to time.

8. An ink jet device comprising:

an ink jet head including an ink housing that houses therein ink, a pressure applicator that applies pressure to the ink by applying voltage to a piezoelectric element according to a voltage waveform, and a nozzle through which a droplet of the ink is ejected; and

an ejection controller that controls an ejection amount of the droplet of the ink by varying an application voltage to be applied to the piezoelectric element, wherein

the voltage waveform of the application voltage includes a preliminary vibration waveform part and a main vibration waveform part,

the preliminary vibration waveform part is for performing a preliminary drive operation of pushing the ink toward an outer edge of the nozzle to the extent that the droplet of the ink is not ejected through the nozzle,

the main vibration waveform part is for performing a main drive operation of ejecting the droplet of the ink through the nozzle after performance of the preliminary drive operation,

the ejection controller performs the preliminary drive operation and the main drive operation according to the preliminary vibration waveform part and the main vibration waveform part, respectively, and

a ratio of a displacement amount X of the application voltage applied for performing the preliminary drive operation to a displacement amount Y of the application voltage applied for performing the main drive operation is set so that the relation 20%≦X/Y≦40% is satisfied, and

the preliminary vibration waveform part and the main vibration waveform part provide respective movements of the ink in a same direction.

9. An ink jet device comprising:

an ink jet head including an ink housing that houses therein ink, a pressure applicator that applies pressure to the ink by applying voltage to a piezoelectric element according to a voltage waveform, and a nozzle through which a droplet of the ink is ejected; and

an ejection controller that controls an ejection amount of the droplet of the ink by varying an application voltage to be applied to the piezoelectric element, wherein

the voltage waveform of the application voltage includes a preliminary vibration waveform part and a main vibration waveform part,

the preliminary vibration waveform part is for performing a preliminary drive operation of pushing the ink toward an outer edge of the nozzle to the extent that the droplet of the ink is not ejected through the nozzle,

the main vibration waveform part is for performing a main drive operation of ejecting the droplet of the ink through the nozzle after performance of the preliminary drive operation,

the ejection controller performs the preliminary drive operation and the main drive operation according to the preliminary vibration waveform part and the main vibration waveform part, respectively, and

a ratio of a displacement amount X of the application voltage applied for performing the preliminary drive operation to a displacement amount Y of the application voltage applied for performing the main drive operation is set so that the relation 20%≦X/Y≦40% is satisfied, and

the preliminary vibration waveform part is for expanding and shrinking the ink housing.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 27, 2015
From: PANASONIC CORPORATION
To: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.
Reel/Frame 035269/0827 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 20, 2014
From: GOTO, MASASHI; NANNO, HIROTAKA; TAKATA, MASAKAZU
To: PANASONIC CORPORATION
Reel/Frame 034225/0206 →
Priority Claims (1)
JP 2012-129269 · Jun 6, 2012 · national
Continuity (1)
Related Publication 20150072458A1 · Mar 12, 2015