IP Library Granted Patent US 10,948,853
Granted Patent B2
US 10,948,853 · App. 16/487,743 · Granted Mar 16, 2021

Liquid electro-photographic printing transfer devices

Inventors: Lavi Cohen (Ness Ziona, IL); Doron Schlumm (Ness Ziona, IL); Asaf Shoshani (Ness Ziona, IL)
Assignee: HP Indigo B.V.
G03G15/105G03G15/0216G03G15/0266
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Quick Facts
Patent No.
US 10,948,853
App. No.
16/487,743
Granted
Mar 16, 2021
Kind
B2
Abstract

In an example, charged particles suspended in a non-conductive fluid are fed to a transfer device. A width of a charged particles layer of uniform density on a surface of the transfer device is controlled. Charged particles are transferred from the charged particles layer to a photo imaging plate of a liquid electro-photographic printing system.

Claims (21)

1. A binary ink developer for a liquid electro-photographic printing system, comprising:

a developer roller to transfer charged particles in an ink from a surface of the developer roller onto a photo imaging plate, the developer roller having multiple conductive segments each individually controllable to attract or repel charged particles to/from the surface of the developer roller;

an ink supply path along which the ink is fed toward the surface of the developer roller; and

an electrode having multiple conductive segments each located opposite a corresponding one or more of the roller segments and each individually controllable to generate an electric field attracting or repelling charged particles in the ink to/from the surface of the developer roller.

2. The binary ink developer of claim 1 , wherein the electrode comprises:

a first electrode having multiple, individually controllable conductive first segments; and

a second electrode having multiple, individually controllable conductive second segments each located opposite a corresponding one or more of the first segments.

3. A binary ink developer for a liquid electro-photographic printing system, comprising:

a transfer device to transfer charged particles from a surface of the transfer device onto a photo imaging plate;

an ink supply path to feed the charged particles suspended in a non-conductive fluid to the transfer device;

an electrode arrangement to generate an electric field attracting or repelling charged particles to/from the surface of the transfer device;

wherein the surface of the transfer device is dividable into segments, and attracting or repelling charged particles to/from the segments is individually controllable; and

a squeegee roller with a plurality of segments made of conductive material, the segments being arranged along a direction parallel to an axis of rotation of the squeegee roller, wherein the segments are electrically insulated from each other.

4. A binary ink developer assembly usable with a printing system, comprising:

a developer roller having a surface to receive charged particles from an ink reservoir and transfer charged particles to a photo imaging plate; and

a device to generate an electric field attracting or repelling charged particles to/from the developer roller surface, the device including an electrode opposite the developer roller surface with multiple conductive segments each individually controllable to generate multiple different electric fields along a width of the developer roller surface to attract or repel charged particles to/from the developer roller surface.

5. The binary ink developer assembly of claim 4 , wherein the electrode comprises:

a first electrode having multiple, individually controllable conductive first segments; and

a second electrode having multiple, individually controllable conductive second segments each located opposite a corresponding one or more of the first segments.

6. The binary ink developer assembly of claim 5 , wherein the developer roller includes multiple conductive segments each located opposite a corresponding one or more of the electrode segments and each individually controllable to attract or repel charged particles to/from the developer roller surface.

7. The binary ink developer assembly of claim 6 , comprising a squeegee roller located opposite the developer roller downstream from the electrodes in a direction of rotation of the developer roller, the squeegee roller having multiple conductive segments each located opposite a corresponding one or more of the developer roller segments and each individually controllable to control a concentration of charged particles on the developer roller surface.

Assignments (2)
CHANGE OF NAME Recorded Nov 5, 2019
From: HEWLETT-PACKARD INDIGO B.V.
To: HP INDIGO B.V.
Reel/Frame 050927/0866 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 29, 2019
From: COHEN, LAVI; SCHLUMM, DORON; SHOSHANI, ASAF
To: HEWLETT-PACKARD INDIGO B.V.
Reel/Frame 050872/0090 →
Continuity (1)
Related Publication 20200233339A1 · Jul 23, 2020