IP Library Granted Patent US 8,567,890
Granted Patent B2
US 8,567,890 · App. 12/786,798 · Granted Oct 29, 2013

Method for controlling droplet discharge device and droplet discharge device

Inventors: Tatsuya Ito (Nagano, JP); Yuji Iwata (Nagano, JP); Osamu Kasuga (Nagano, JP)
Assignee: Seiko Epson Corporation
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Quick Facts
Patent No.
US 8,567,890
App. No.
12/786,798
Granted
Oct 29, 2013
Kind
B2
Abstract

A method is for controlling a droplet discharge device including at least a droplet discharge head having a plurality of nozzles for discharging droplets of a functional liquid, a plurality of drive elements provided corresponding to each of the nozzles, and a vibrating plate which is vibrated by the drive elements to discharge the functional liquid from the nozzles; and a flushing unit in which the vibrating plate undergoes microvibration when the droplet discharge head is in a standby period. The method for controlling a droplet discharge device includes selecting one of a plurality of predetermined microvibration control programs for causing the vibrating plate to undergo microvibration in accordance with information relating to the functional liquid, and controlling the drive elements to cause the vibrating plate to undergo microvibration when the droplet discharge head is in the standby period in accordance with the selected microvibration control program.

Claims (23)

1. A method for controlling a droplet discharge device including at least a droplet discharge head having a plurality of nozzles for discharging droplets of a functional liquid, a plurality of drive elements provided corresponding to each of the nozzles, and a vibrating plate which is vibrated by the drive elements to discharge the functional liquid from the nozzles; and a flushing unit in which the vibrating plate undergoes microvibration when the droplet discharge head is in a standby period, the method for controlling a droplet discharge device comprising:

selecting one of a plurality of predetermined microvibration control programs for causing the vibrating plate to undergo microvibration in accordance with information relating to the functional liquid so that a temperature difference between a saturation temperature of the functional liquid while the nozzles discharges the droplets of the functional liquid on a discharged target for drawing and a saturation temperature of the functional liquid while the vibrating plate is subjected to microvibration is reduced; and

controlling the drive elements to cause the vibrating plate to undergo microvibration when the droplet discharge head is in the standby period in accordance with the selected microvibration control program.

2. The method for controlling a droplet discharge device according to claim 1 , wherein

the information relating to the functional liquid includes viscosity information relating to the functional liquid.

3. The method for controlling a droplet discharge device according to claim 1 , wherein

each of the microvibration control programs is configured to control one of waveform, frequency, and voltage of a control current applied to the drive elements when the vibrating plate is subjected to microvibration.

4. A droplet discharge device comprising:

a droplet discharge head having a plurality of nozzles for discharging droplets of a functional liquid, a plurality of drive elements provided corresponding to each of the nozzles, and a vibrating plate which is vibrated by the drive elements to discharge the functional liquid from the nozzles;

a flushing unit in which the vibrating plate undergoes microvibration when the droplet discharge head is in a standby period; and

a controller configured to control the droplet discharge head,

the controller being further configured to select one of a plurality of predetermined microvibration control programs in accordance with information relating to the functional liquid so that a temperature difference between a saturation temperature of the functional liquid while the nozzles discharges the droplets of the functional liquid on a discharged target for drawing and a saturation temperature of the functional liquid while the vibrating plate is subjected to microvibration is reduced, and to control the drive elements to cause the vibrating plate to undergo microvibration in accordance with the selected microvibration control program.

5. A droplet discharge device comprising:

a droplet discharge head having a nozzle, a drive element provided to the nozzle, and a vibrating plate vibrated by the drive element;

a work stage on which a discharge target is placed; and

a controller configured to control positions of the droplet discharge head and the work stage during a drawing mode to discharge droplets of a functional liquid from the nozzle onto the discharge target,

the controller being further configured to select one of a plurality of predetermined vibration control programs in accordance with information relating to the functional liquid so that a temperature difference between a saturation temperature of the functional liquid during the drawing mode and a saturation temperature of the functional liquid when the vibrating plate is subjected to microvibration is reduced, and to control the drive element, during a standby mode that is different from the drawing mode, to cause the vibrating plate to vibrate to a lesser degree than in the drawing mode in accordance with the selected vibration control program during a standby mode that is different from the drawing mode.

6. The droplet discharge device according to claim 5 , wherein

the information relating to the functional liquid includes at least one of specific gravity, specific heat and viscosity of the functional liquid.

7. The droplet discharge device according to claim 5 , wherein

the controller is configured to select one of the vibration control programs in accordance with a temperature difference between a temperature of the droplet discharge head during the drawing mode and a temperature of the droplet discharge head during the standby mode.

8. The droplet discharge device according to claim 5 , wherein

the vibration control programs are different from each other in at least one of waveform, frequency and voltage of a control current applied to the drive element.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 2, 2016
From: SEIKO EPSON CORPORATION
To: TOKYO ELECTRON LIMITED
Reel/Frame 038769/0522 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 25, 2010
From: ITO, TATSUYA; IWATA, YUJI; KASUGA, OSAMU
To: SEIKO EPSON CORPORATION
Reel/Frame 024436/0632 →
Priority Claims (2)
JP 2009-128599 · May 28, 2009 · national
JP 2010-092914 · Apr 14, 2010 · national
Continuity (1)
Related Publication 20100302296A1 · Dec 2, 2010