Claims
- 1. A color thermal printing method for thermally recording a plurality of color images in a plane sequential scheme during a relative motion between a thermal head and a recording paper, said thermal head having a plurality of heating elements disposed in a line in a main scan direction, said color thermal printing method comprising the steps of:
- (a) generating a bias heat energy for bias heating a pixel by each of said plurality of heating elements;
- (b) generating an image heat energy in accordance with a record density of said pixel following said step (a), to develop color of said pixel at a desired density by adding said bias heat energy and said image heat energy; and
- (c) starting said relative motion upon starting the generating of said image heat energy at said step (b) or upon a lapse of a predetermined delay time from the starting of the generating said image heat energy at said step (b).
- 2. A color thermal printing method according to claim 1, wherein said plurality of color images a yellow image, a magenta image, and a cyan image.
- 3. A color thermal printing method according to claim 1, wherein said recording paper is mounted on a platen drum, said color thermal printing method further comprising the step of rotating said platen drum in a subsidiary scan direction perpendicular to said main scan direction for said relative motion to effect recording of said recording paper one line after another.
- 4. A color thermal printing method according to claim 3, wherein said platen drum is driven by a pulse motor via a belt.
- 5. A color thermal printing method according to claim 3, wherein said pulse motor is driven by a pulse having a period, wherein said period is divided by a predetermined integer and is equal to a time required for thermally recording one line of pixels.
- 6. A color thermal printing method according to claim 3, wherein said platen drum starts moving by an amount corresponding to said one line synchronously with starting the generating of said image heat energy at said step (b).
- 7. A color thermal printing method according to claim 3, wherein said platen drum starts moving by an amount corresponding to said one line synchronously with substantially a middle point of a period in which said image heat energy is generated at said step (b).
- 8. A color thermal printing method for thermally recording an image on a recording paper having a plurality of thermosensitive coloring layers formed on a supporting material in a plane sequential scheme, said color thermal printing method comprising the steps of:
- (a) heating said thermosensitive coloring layers respectively by using heating elements of a thermal head during a relative motion of said recording paper with said thermal head and a light-fixing light source;
- (b) applying ultraviolet rays from said light-fixing light source to optically fix a thermally recorded area;
- (c) generating from each of said heating elements image heat energy in accordance with density data of a pixel on each of said thermosensitive coloring layers after generation of bias heat energy specific to each of said thermosensitive coloring layers to thermally record said pixel on each of said thermosensitive coloring layers, wherein said bias heat energy is supplied to said heating elements of said thermal head in common, to develop color of said pixel at a desired density by adding up said bias heat energy and said image heat energy; and
- (d) starting said relative motion upon starting the generating of said image heat energy at said step (c) or upon a lapse of a predetermined delay time from the starting of the generating of said image heat energy at said step (c) to thermally record said pixel.
- 9. A color thermal printing method according to claim 8, wherein said heating elements are disposed in a line in a main scan direction.
- 10. A color thermal printing method according to claim 9, wherein said recording paper is mounted on a platen drum and further comprising the step of rotating said platen drum in a subsidiary scan direction perpendicular to said main scan direction for said relative motion to effect thermal recording of said recording paper one line after another.
- 11. A color thermal printing method according to claim 10, wherein said platen drum is driven by a pulse motor via a belt.
- 12. A color thermal printing method according to claim 10, wherein said pulse motor is driven by a pulse having a period, wherein said period is divided by a predetermined integer and is equal to a time required for thermally recording one line pixels.
- 13. A color thermal printing method according to claim 8, wherein said plurality of thermosensitive coloring layers comprise a yellow thermosensitive coloring layer, a magenta thermosensitive coloring layer, and a cyan thermosensitive coloring layer.
- 14. A color thermal printing device for thermally recording a plurality of color images in a plane sequential scheme on a recording paper comprising:
- a thermal head including a plurality of heating elements disposed in a line in a main scan direction;
- bias heat energy generating means for generating a bias heat energy to bias heat a pixel by each of said plurality of heating elements;
- image heat energy generating means for generating an image heat energy in accordance with a record density of said pixel following said bias heat energy generated by said bias heat energy generating means, to develop color of said pixel at a desired density by adding said bias heat energy and said image heat energy; and
- motion starting means for starting a relative motion between said thermal head and the recording paper upon starting the generating of said image heat energy by said image heat energy generating means or upon a lapse of a predetermined delay time from starting generating of said image heat energy from said image heat energy generating means.
- 15. A color thermal printing device according to claim 14, wherein the plurality of color images comprise a yellow image, a magenta image and a cyan image.
- 16. A color thermal printing device according to claim 14, further comprising a platen drum for mounting the recording paper thereon and rotating means for rotating said platen drum in a subsidiary scan direction perpendicular to said main scan direction for said relative motion to effect thermally recording the recording paper one line after another.
- 17. A color thermal printing device according to claim 16, further comprising a pulse motor for driving said platen drum via a belt.
- 18. A color thermal printing device according to claim 16, wherein said pulse motor is driven by a pulse having a period, wherein said period is divided by a predetermined integer and is equal to a time required for thermally recording one line of pixels.
- 19. A color thermal printing device according to claim 16, wherein said motion starting means starts to move by an amount corresponding to said one line synchronously with the start of the generating of said image heat energy by said image heat energy generating means.
- 20. A color thermal printing device according to claim 16, wherein said motion starting means starts to move by an amount corresponding to said one line synchronously with substantially a middle point of a period in which said image heat energy is generated by said image heat energy generating means.
- 21. A color thermal printing device for thermally recording paper having a plurality of thermosensitive coloring layers formed on a supporting material in a plane sequential scheme comprising:
- a thermal head including heating elements for heating the thermosensitive coloring layers respectively during a relative motion of the recording paper with said thermal head and a light-fixing light source;
- ultraviolet ray applying means for applying ultraviolet rays from said light-fixing light source to optically fix the thermally recorded area;
- image heat energy generating means for generating image heat energy from each of said heating elements in accordance with density data of a pixel on each of the thermosensitive coloring layers after generation of bias heat energy specific to each of said thermosensitive coloring layers to thermally record said pixel on each of said thermosensitive coloring layers, wherein said bias heat energy is supplied to said heating elements of said thermal heat in common, to develop color of said pixel at a desired density by adding said bias heat energy and said image heat energy; and
- motion starting means for starting said relative motion upon starting the generating of said image heat energy or upon a lapse of a predetermined delay time from the starting of the generating of said image heat energy from said image heat energy generating means to thermally record said pixel.
- 22. A color thermal printing device according to claim 21, wherein said heating elements are disposed in a line in a main scan direction.
- 23. A color thermal printing device according to claim 22, further comprising a platen drum for mounting the recording paper thereon and rotating means for rotating said platen drum in a subsidiary scan direction perpendicular to said main scan direction for said relative motion to effect thermally recording the recording paper one line after another.
- 24. A color thermal printing device according to claim 23, further comprising a pulse motor for driving said platen drum via a belt.
- 25. A color thermal printing device according to claim 23, wherein said pulse motor is driven by a pulse having a period, wherein said period is divided by a predetermined integer and is equal to a time required for thermally recording one line of pixels.
- 26. A color thermal printing device according to claim 21, wherein the plurality of thermosensitive coloring layers comprise a yellow thermosensitive coloring layer, a magenta thermosensitive coloring layer and a cyan thermosensitive coloring layer.
Priority Claims (1)
Number |
Date |
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4-266243 |
Oct 1992 |
JPX |
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Parent Case Info
This application is a continuation of application Ser. No. 08/132,961 filed on Oct. 5, 1993, now abandoned.
US Referenced Citations (5)
Foreign Referenced Citations (1)
Number |
Date |
Country |
153045 |
May 1992 |
JPX |
Continuations (1)
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Number |
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Parent |
132961 |
Oct 1993 |
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