EP0244441A1

Apparatus and method for controlling a thermal printer apparatus.

Abstract

A thermal printer includes a print head (18) having a plurality of thermal pixel groups (50). The thermal pixels (50) in each group are simultaneously addressed in parallel. Each group is addressed a plurality of times. The device includes a circuit (42) selectively energizing the thermal pixels (50) of each group when addressed, until each thermal pixel reaches a temperature where it can impart energy to an organ of support and applies a certain amount of dye to a receiver corresponding to a desired dye density in an image pixel.

Term

Term ended

Projected expiry passed 12 September 2006, 20 years ago.

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4 claims: 3 independent, 1 dependent

  1. 1
    Claims of equivalent WO 8701890 A2 Claims :1. Method of forming an image composed of dye image pixels, each pixel having N different possible dye density levels, in which thermal pixels of a thermal head are heated according to N distinct temperature levels by selectively energizing each thermal pixel in accordance with distinct signals corresponding to the required density of each image pixel, said method characterized by the steps of: combining the thermal pixels into a plurality of groups, the thermal pixels of each group being simultaneously addressable in parallel;sequentially addressing one group of thermal pixels at a time during the thermal decay of the other groups;and selectively energizing each thermal pixel of a group each time said group is addressed depending upon the states of the distinct signals corresponding to the addressed thermal pixels.
  2. 2
    Thermal printer apparatus including a) a print head having a number of thermal pixels, one for each image pixel, b) a storage device having a plurality of stages, one for each thermal pixel, c) means for addressing each thermal pixel N times in order to obtain N different possible temperature levels for the thermal pixels, the temperature level of any given thermal pixel depends upon the corresponding signals stored in the stages of the storage device, d) means for selectively energizing each thermal pixel each time it is addressed depending upon the state of its corresponding stage in a storage device, apparatus characterized in that the means for addressing the pulses contains:e) means for assembling the thermal pixels into a plurality of groups, the thermal pixels of each group being simultaneously addressable in parallel, and f) means for sequentially addressing each group of thermal pixels during the thermal decay of the other groups.
  3. 4
    Thermal printing system for forming a color image composed of dye image pixels, each image pixel having N different possible dye density levels, characterized by:a. a thermal print head for printing a line of dye image pixels at a time and including a plurality of groups of thermal pixels, the thermal pixels of each group being simultaneously addressable in parallel, each thermal pixel corresponding to an image pixel in a line, and each thermal pixel being adapted when addressed to be selectively energized;b. a carrier including at least one ' heat transferable dye and being positionable in relation to the thermal pixels such that the amount of dye sublimed for each image pixel is proportional to the energy provided by an energized thermal pixel;c. a receiver disposed in relation to the carrier sheet and the print head for receiving sublimed dye to form dye image pixels;d. a storage device having a plurality of states, one for each thermal pixel;e. means for sequentially storing N digital signals in the stages of said shift register in which the state of each stage corresponds to whether or not a corresponding thermal pixel is to be energized;f. means for sequentially addressing each group of thermal pixels during the thermal decay of the other groups, one for each time a digital signal is stored in said shift register such that each group of thermal pixels is addressed N times;and g. means for selectively energizing each thermal pixel each time it is addressed depending upon the state of its corresponding storage device stage until each thermal pixel is at one of N possible temperatures and which causes dye to transfer from the carrier and be received by the receiver at a desired dye density level.