IP Library Granted Patent US 9,061,535
Granted Patent B2
US 9,061,535 · App. 14/287,865 · Granted Jun 23, 2015

High efficiency printing system for improved image quality

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Quick Facts
Patent No.
US 9,061,535
App. No.
14/287,865
Granted
Jun 23, 2015
Kind
B2
Abstract

A high efficiency thermal printing system, comprising: a donor ribbon having donor material; a receiver medium; a test pattern to be printed on the receiver medium using the donor ribbon; a print head, a sensor, and a processor is disclosed. The present invention is adapted to print the test pattern on the receiver medium by heating the donor ribbon to cause the donor material to transfer from the donor ribbon onto the receiver medium, thereby depleting donor material on the donor ribbon. Moreover, the sensor is adapted to measure a depletion amount of the donor material on the donor ribbon after printing the test pattern, and the processor is adapted to calibrate the thermal printing system by adjusting a lookup table in response to the measured depletion amount of donor material.

Claims (28)

1. A high efficiency thermal printing system, comprising:

a donor ribbon having donor material;

a receiver medium;

a test pattern to be printed on the receiver medium using the donor ribbon, wherein the test pattern includes at least two portions with different code values, whereby the different code values cause different amounts of donor material to be transferred from the donor ribbon onto the receiver medium;

a print head located in a thermal printer, wherein the print head is adapted to print the test pattern on the receiver medium by heating the donor ribbon to cause the donor material to transfer from the donor ribbon onto the receiver medium, thereby depleting donor material on the donor ribbon;

a sensor adapted to measure a depletion amount of the donor material on the donor ribbon after printing the test pattern; and

a processor adapted to calibrate the thermal printing system by adjusting a lookup table in response to the measured depletion amount of donor material.

2. The thermal printing system of claim 1 wherein the color of the donor material on the donor ribbon includes yellow, magenta, cyan, red, green, blue, gray, black, gold or silver or combinations thereof.

3. The thermal printing system of claim 1 wherein the donor ribbon further includes a plurality of colored patches of donor material, and the color of the patches is chosen from the group consisting of magenta, cyan, yellow, red, green, blue, gray, black, gold or silver or combinations thereof.

4. The thermal printing system of claim 1 wherein the sensor is an optical sensor comprising an emitter and detector pair adapted to emit light of a particular wavelength from the emitter onto the used donor ribbon, to transmit or reflect the light from the used donor ribbon onto the detector, and to measure a response of the transmitted or reflected light from the detector.

5. The thermal printing system of claim 4 wherein the sensor is a tri-color sensor with red, green, and blue light emitters and corresponding detectors.

6. The thermal printing system of claim 1 wherein a first code value associated with a first portion of the test pattern causes the print head to transfer about 0% or about 100% of the donor material onto the receiver medium and a second code value associated with a second portion of the test pattern causes the print head to transfer between 5% and 95% of the donor material onto the receiver medium.

7. The thermal printing system of claim 6 wherein the sensor measures a difference between the amount of depletion of donor material at the first and second code values to compute an adjustment for the lookup table.

8. A high efficiency thermal printing system comprising:

a donor ribbon having donor material;

a receiver medium;

a test pattern to be printed on the receiver medium using the donor ribbon;

a print head located in a thermal printer, wherein the print head is adapted to print the test pattern on the receiver medium by heating the donor ribbon to cause the donor material to transfer from the donor ribbon onto the receiver medium, thereby depleting donor material on the donor ribbon;

a sensor adapted to measure a depletion amount of the donor material on the donor ribbon after printing the test pattern; and

a processor adapted to detect incorrect media in the thermal printer when the measured depletion amount of donor material is different from an expected depletion amount by a particular threshold.

9. The thermal printing system of claim 8 wherein the color of the donor material on the donor ribbon includes yellow, magenta, cyan, red, green, blue, gray, black, gold or silver or combinations thereof.

10. The thermal printing system of claim 8 wherein the donor ribbon further includes a plurality of colored patches of donor material, the color of the patches including magenta, cyan, yellow, red, green, blue, gray, black, gold or silver or combinations thereof.

11. The thermal printing system of claim 8 wherein the test pattern includes at least two portions with different code values, whereby the different code values cause different amounts of donor material to be transferred from the donor ribbon onto the receiver medium.

12. The thermal printing system of claim 11 wherein a first code value associated with a first portion of the test pattern causes the print head to transfer about 0% or about 100% of the donor material onto the receiver medium and a second code value associated with a second portion of the test pattern causes the print head to transfer between 5% and 95% of the donor material onto the receiver medium.

13. The thermal printing system of claim 8 wherein the sensor is an optical sensor comprising an emitter and detector pair, further including emitting light of a particular wavelength from the emitter onto the used donor ribbon, transmitting or reflecting the light from the used donor ribbon onto the detector, and measuring a response of the transmitted or reflected light from the detector.

14. The thermal printing system of claim 13 wherein the sensor is a tricolor sensor with red, green, and blue light emitters and corresponding detectors.

15. The thermal printing system of claim 8 wherein the particular threshold is up to 5% difference between the measured amount of depletion and the expected amount of depletion.

16. The thermal printing system of claim 8 wherein the particular threshold is up to 10% difference between the measured amount of depletion and the expected amount of depletion.

Assignments (8)
SHORT-FORM PATENTS SECURITY AGREEMENT Recorded Sep 5, 2025
From: KODAK ALARIS LLC
To: ENCINA PRIVATE CREDIT SPV 2, LLC, AS COLLATERAL AGENT
Reel/Frame 072818/0674 →
RELEASE OF SECURITY INTEREST Recorded Aug 29, 2025
From: FGI WORLDWIDE LLC
To: KODAK ALARIS LLC
Reel/Frame 072740/0681 →
CHANGE OF NAME Recorded Oct 31, 2024
From: KODAK ALARIS INC.
To: KODAK ALARIS LLC
Reel/Frame 069282/0866 →
RELEASE OF SECURITY INTEREST Recorded Aug 7, 2024
From: THE BOARD OF THE PENSION PROTECTION FUND
To: KODAK ALARIS INC.
Reel/Frame 068481/0300 →
SECURITY AGREEMENT Recorded Aug 2, 2024
From: KODAK ALARIS INC.
To: FGI WORLDWIDE LLC
Reel/Frame 068325/0938 →
ASSIGNMENT OF SECURITY INTEREST Recorded Nov 17, 2021
From: KPP (NO. 2) TRUSTEES LIMITED
To: THE BOARD OF THE PENSION PROTECTION FUND
Reel/Frame 058175/0651 →
SECURITY INTEREST Recorded Oct 5, 2020
From: KODAK ALARIS INC.
To: KPP (NO. 2) TRUSTEES LIMITED
Reel/Frame 053993/0454 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 8, 2014
From: GARBACZ, GREGORY JAMES; MINDLER, ROBERT FREDRIC; TOWNSEND, MARCUS M.
To: KODAK ALARIS INC.
Reel/Frame 033688/0222 →