IP Library › Granted Patent US 8,668,307
Granted Patent B2
US 8,668,307 · App. 13/773,074 · Granted Mar 11, 2014

Printing system

Inventors: Arnon Lewartowski (Ramat Gan, IL); Yaakov Levi (Kefar Yona, IL); Rom Condrea (Even Yehuda, IL)
Assignee: DIP-Tech Ltd
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Quick Facts
Patent No.
US 8,668,307
App. No.
13/773,074
Granted
Mar 11, 2014
Kind
B2
Abstract

A printing system including an ink deposition unit that could be oriented and move along a long axis of an image segment to be printed. The system prints images occupying a number of segments of a substrate surface at a substantially shorter time than the existing printing systems operating in raster mode would print.

Claims (29)

1. A method of printing comprising:

providing a printer including an ink deposition unit configured to be oriented in a direction of, and move along a long axis of an image segment to be printed;

moving the ink deposition unit along a first axial image segment and activating the ink deposition unit to deposit ink along the first axial image segment and print the first axial image segment; and

upon completion of the first axial image segment printing, orienting the ink deposition unit along at least a second axial image segment and activating the ink deposition unit to deposit ink along the second axial image segment to print the second axial image segment; and

wherein the printing of the first and second axial image segments is performed in a single continuous pass of the ink deposition unit.

2. The method of printing according to claim 1 , wherein the first axial image segment and the second axial image segment are at an angle to each other.

3. The method of printing according to claim 2 , wherein the angle is less than 180 degrees.

4. The method according to claim 2 , wherein the axial image segments of images printed are at least one of a group of segments sharing at least one common portion and segments sharing no common portions.

5. The method according to claim 4 further comprising scrambling image data for printing the common portions of the first axial image segment and the second axial image segment.

6. The method of printing according to claim 1 , further comprising orienting the ink deposition unit along a long axis of an axial image segment such that a leading edge of the ink deposition unit remains the leading edge with respect to ink deposition unit movement direction throughout the printing process.

7. The method of printing according to claim 6 , wherein orienting the ink deposition unit such that the leading edge of the ink deposition unit remains the leading edge with respect to the ink deposition unit movement direction maintains color printing order and mitigates color shift.

8. The method according to claim 1 wherein the printing is performed in multipass printing mode.

9. The method according to claim 8 wherein all of multipass printing mode passes are in same direction of printing.

10. A printing system comprising:

a substrate support;

an ink deposition unit to deposit a liquid ink to the substrate disposed on the substrate support to form images thereon, the ink deposition unit having a leading edge and a trailing edge;

a movement system to provide relative movement between the substrate support and the ink deposition unit; and

wherein the ink deposition unit to form an image is oriented such that its leading edge remains a leading edge regardless of ink deposition unit orientation and movement direction.

11. The printing system according to claim 10 further comprising a control computer including an ink deposition unit orientation unit configured to control at least the ink deposition unit orientation.

12. The printing system according to claim 10 further comprising a bridge configured to support and move the ink deposition unit across the substrate.

13. The printing system according to claim 12 wherein the bridge is configured to move the ink depositing unit in at least a first direction and wherein the ink deposition unit is configured to move on the bridge in second direction and wherein the first and second directions are at an angle to each other.

14. The image forming apparatus according to 10 wherein the ink deposition unit orientation unit orients the ink depositing unit at a point being an intersection of the first and second ink deposition unit movement directions.

15. The image forming apparatus according to 14 wherein the first and the second ink deposition unit movement directions are at an angle to each other.

16. The image forming apparatus according to 14 , wherein the first and the second ink deposition unit movement directions are at an angle to each other less than 180 degrees.

17. The printing system according to claim 10 wherein the system is printing in a multipass printing mode.

18. The printing system according to claim 17 wherein all of the multipass printing mode passes are in same ink deposition unit movement direction.

19. The printing system according to claim 10 , wherein orienting the ink deposition unit such that the leading edge of the ink deposition unit remains the leading edge with respect to the ink deposition unit movement direction, maintains color printing order and reduces color shift.

20. The printing system according to claim 19 , wherein the control computer scrambles image data for printing the common segments of a first axial image segment and a second axial image segment.

21. The printing system according to claim 10 , wherein the control computer scrambles image data for printing the common segments of a first axial image segment and a second axial image segment.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 21, 2013
From: LEWARTOWSKI, ARNON; LEVI, YAAKOV; CONDREA, ROM
To: DIP-TECH LTD
Reel/Frame 029851/0920 →
Continuity (2)
Provisional Application 61601209 · Feb 21, 2012
Related Publication 20130215196A1 · Aug 22, 2013