Claims
- 1. A thermal printer, comprising:an ink sheet, comprising a plurality of sets of colorant regions, each set of colorant regions comprising a first colorant region, a second colorant region, a third colorant region, a fourth colorant region, each colorant region having a front edge and a rear edge, a first mark formed within the third colorant region and adjacent to the second colorant region, and a second mark formed within the first colorant region and adjacent to the fourth colorant region; a first light source for emitting a first light toward the ink sheet, the first light being able to pass through the first colorant region and the fourth colorant region with a first level energy, and pass through the second and third colorant regions with a second level energy; a second light source for emitting a second light toward the ink sheet, the second light being able to pass through the first, second, third and fourth colorant regions with a third level energy, and pass through the first mark and the second mark with a fourth level energy; a first sensor generating a first signal when detecting the first level energy of the first light passing through the ink sheet; a second sensor generating a second signal when detecting the fourth level energy of the second light passing through the ink sheet; and a forwarding device, for forwarding the ink sheet to perform a movement relative to the first and second light sources; wherein which colorant region is positioned before the first and second light sources is determined by a combination of the first and second signals.
- 2. A thermal printer according to claim 1, wherein the first mark and a front edge of the third colorant region are both adjacent to a rear edge of the second colorant region, and the second mark and a front edge of the first colorant region are both adjacent to a rear edge of the fourth colorant region.
- 3. A thermal printer, comprising:an ink sheet, comprising a plurality of sets of colorant regions, each set of colorant regions comprising a first colorant region, a second colorant region, a third colorant region, each colorant region having a front edge and a rear edge, and a first mark formed within the third colorant region and adjacent to the second colorant region; a first light source for emitting a first light toward the ink sheet, the first light being able to pass through the first colorant region with a first level energy, and pass through the second, and third colorant regions with a second level energy; a second light source for emitting a second light toward the ink sheet, the second light being able to pass through the first, second, and third colorant regions with a third level energy, and pass through the first mark with a fourth level energy; a first sensor generating a first signal when detecting the first level energy of the first light passing through the ink sheet; a second sensor generating a second signal when detecting the fourth level energy of the second light passing through the ink sheet; and a forwarding device, for forwarding the ink sheet to perform a movement relative to the first and second light sources; wherein which colorant region is positioned before the first and second light sources is determined by a combination of the first and second signals.
- 4. A thermal printer according to claim 3, wherein the first mark and a front edge of the third colorant region are both adjacent to a rear edge of the second colorant region.
- 5. A thermal printer, comprising:an ink sheet, comprising a plurality of sets of colorant regions, each set of colorant regions comprising a first colorant region, a second colorant region, a third colorant region, a fourth colorant region, each colorant region having a front edge and a rear edge, a first mark formed within the third colorant region and adjacent to the second colorant region, and a second mark formed within the fourth colorant region and adjacent to the third colorant region; a first light source for emitting a first light toward the ink sheet, the first light being able to pass through the first colorant region with a first level energy, but pass through the second, third and fourth colorant regions with a second level energy; a second light source for emitting a second light toward the ink sheet, the second light being able to pass through the first, second, third and fourth colorant regions with a third level energy, and pass through the first mark and second mark with a fourth level energy; a first sensor generating a first signal when detecting the first level energy of the first light passing through the ink sheet; a second sensor generating a second signal when detecting the fourth level energy of the second light passing through the ink sheet; and a forwarding device, for forwarding the ink sheet to perform a movement relative to the first and second light sources; wherein which colorant region is positioned before the first and second light sources is determined by a combination of the first and second signals.
- 6. A thermal printer according to claim 5, wherein the first mark and a front edge of the third colorant region are both adjacent to a rear edge of the second colorant region, and the second mark and a front edge of the fourth colorant region are both adjacent to a rear edge of the third region.
- 7. A thermal printer, comprising:an ink sheet, comprising a plurality of sets of colorant regions, each set of colorant regions comprising a first colorant region, a second colorant region, a third colorant region, a fourth colorant region, each colorant region having a front edge and a rear edge, a first mark formed between the third colorant region and the second colorant region, and a second mark formed between the first colorant region and the fourth colorant region; a first light source for emitting a first light toward the ink sheet, the first light being able to pass through the first colorant region and the fourth colorant region with a first level energy, and pass through the second and third colorant regions with a second level energy; a second light source for emitting a second light toward the ink sheet, the second light being able to pass through the first, second, third and fourth colorant regions with a third level energy, and pass through the first mark and the second mark with a fourth level energy; a first sensor generating a first signal when detecting the first level energy of the first light passing through the ink sheet; a second sensor generating a second signal when detecting the fourth level energy of the second light passing through the ink sheet; and a forwarding device, for forwarding the ink sheet to perform a movement relative to the first and second light sources; wherein which colorant region is positioned before the first and second light sources is determined by a combination of the first and second signals.
- 8. A thermal printer, comprising:an ink sheet, comprising a plurality of sets of colorant regions, each set of colorant regions comprising a first colorant region, a second colorant region, a third colorant region, each colorant region having a front edge and a rear edge, and a first mark formed between the third colorant region and the second colorant region; a first light source for emitting a first light toward the ink sheet, the first light being able to pass through the first colorant region with a first level energy, and pass through the second, and third colorant regions with a second level energy; a second light source for emitting a second light toward the ink sheet, the second light being able to pass through the first, second, and third colorant regions with a third level energy, and pass through the first mark with a fourth level energy; a first sensor generating a first signal when detecting the first level energy of the first light passing through the ink sheet; a second sensor generating a second signal when detecting the fourth level energy of the second light passing through the ink sheet; and a forwarding device, for forwarding the ink sheet to perform a movement relative to the first and second light sources; wherein which colorant region is positioned before the first and second light sources is determined by a combination of the first and second signals.
- 9. A thermal printer, comprising:an ink sheet, comprising a plurality of sets of colorant regions, each set of colorant regions comprising a first colorant region, a second colorant region, a third colorant region, a fourth colorant region, each colorant region having a front edge and a rear edge, a first mark formed between the third colorant region and the second colorant region, and a second mark formed between the fourth colorant region and the third colorant region; a first light source for emitting a first light toward the ink sheet, the first light being able to pass through the first colorant region with a first level energy, but pass through the second, third and fourth colorant regions with a second level energy; a second light source for emitting a second light toward the ink sheet, the second light being able to pass through the first, second, third and fourth colorant regions with a third level energy, and pass through the first mark and second mark with a fourth level energy; a first sensor generating a first signal when detecting the first level energy of the first light passing through the ink sheet; a second sensor generating a second signal when detecting the fourth level energy of the second light passing through the ink sheet; and a forwarding device, for forwarding the ink sheet to perform a movement relative to the first and second light sources; wherein which colorant region is positioned before the first and second light sources is determined by a combination of the first and second signals.
Priority Claims (1)
| Number |
Date |
Country |
Kind |
| 88118249 |
Oct 1999 |
TW |
|
Parent Case Info
This application is a continuation of U.S. patent application Ser. No. 09/638,918, Filed Aug. 16, 2000, now U.S. Pat. No. 6,504,561.
US Referenced Citations (16)
Foreign Referenced Citations (4)
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Date |
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| 60-96473 |
May 1985 |
JP |
| 60-154093 |
Aug 1985 |
JP |
| 63-41177 |
Feb 1988 |
JP |
| 11-180016 |
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Continuations (1)
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Number |
Date |
Country |
| Parent |
09/638918 |
Aug 2000 |
US |
| Child |
10/184906 |
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US |