WO2006062586A1 - Image laser recording structure - Google Patents
Image laser recording structure Download PDFInfo
- Publication number
- WO2006062586A1 WO2006062586A1 PCT/US2005/037525 US2005037525W WO2006062586A1 WO 2006062586 A1 WO2006062586 A1 WO 2006062586A1 US 2005037525 W US2005037525 W US 2005037525W WO 2006062586 A1 WO2006062586 A1 WO 2006062586A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- layer
- reflective layer
- laser
- imaging
- optical disc
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
Links
Classifications
-
- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B7/00—Recording or reproducing by optical means, e.g. recording using a thermal beam of optical radiation by modifying optical properties or the physical structure, reproducing using an optical beam at lower power by sensing optical properties; Record carriers therefor
- G11B7/24—Record carriers characterised by shape, structure or physical properties, or by the selection of the material
- G11B7/241—Record carriers characterised by shape, structure or physical properties, or by the selection of the material characterised by the selection of the material
- G11B7/252—Record carriers characterised by shape, structure or physical properties, or by the selection of the material characterised by the selection of the material of layers other than recording layers
-
- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B23/00—Record carriers not specific to the method of recording or reproducing; Accessories, e.g. containers, specially adapted for co-operation with the recording or reproducing apparatus ; Intermediate mediums; Apparatus or processes specially adapted for their manufacture
- G11B23/38—Visual features other than those contained in record tracks or represented by sprocket holes the visual signals being auxiliary signals
- G11B23/40—Identifying or analogous means applied to or incorporated in the record carrier and not intended for visual display simultaneously with the playing-back of the record carrier, e.g. label, leader, photograph
-
- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B7/00—Recording or reproducing by optical means, e.g. recording using a thermal beam of optical radiation by modifying optical properties or the physical structure, reproducing using an optical beam at lower power by sensing optical properties; Record carriers therefor
- G11B7/002—Recording, reproducing or erasing systems characterised by the shape or form of the carrier
- G11B7/0037—Recording, reproducing or erasing systems characterised by the shape or form of the carrier with discs
-
- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B7/00—Recording or reproducing by optical means, e.g. recording using a thermal beam of optical radiation by modifying optical properties or the physical structure, reproducing using an optical beam at lower power by sensing optical properties; Record carriers therefor
- G11B7/24—Record carriers characterised by shape, structure or physical properties, or by the selection of the material
- G11B7/24094—Indication parts or information parts for identification
-
- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B7/00—Recording or reproducing by optical means, e.g. recording using a thermal beam of optical radiation by modifying optical properties or the physical structure, reproducing using an optical beam at lower power by sensing optical properties; Record carriers therefor
- G11B7/24—Record carriers characterised by shape, structure or physical properties, or by the selection of the material
-
- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B7/00—Recording or reproducing by optical means, e.g. recording using a thermal beam of optical radiation by modifying optical properties or the physical structure, reproducing using an optical beam at lower power by sensing optical properties; Record carriers therefor
- G11B7/24—Record carriers characterised by shape, structure or physical properties, or by the selection of the material
- G11B7/2403—Layers; Shape, structure or physical properties thereof
- G11B7/24062—Reflective layers
Definitions
- Materials that produce color change upon stimulation with energy such as laser radiation may have possible applications in imaging.
- such materials may be useful in allowing the laser labeling and imaging of optical discs such as DVDs, and blue laser discs.
- One method of performing laser labeling or imaging of an optical disc involves layering onto the disc an imaging composition that changes color upon the application of laser light.
- some of the laser radiation may not be absorbed by the imaging composition and may pass into the other layers of the disc. Thus, because of this wasted energy, imaging may take longer than expected. Additionally, the radiation may reflect off of internal layers of the optical disc and be absorbed by the laser labeling layer in undesirable locations, possibly causing fuzzy images.
- the laser imaging system may efficiently use the laser energy available for labeling, while minimizing or decreasing the laser energy that is wasted or not used to produce the color change or causes color change in undesirable locations.
- Such an efficient system may increase the shelf life and/or sharpness of the images created on the optical disc.
- imaging materials and methods of making imaging materials may include a reflective layer disposed proximate to and below a laser imageable layer.
- Figure 1 shows a schematic cross-sectional drawing of an optical disc in accordance with embodiments of the present invention.
- Figure 2 shows a schematic cross-sectional drawing of an optical disc in accordance with embodiments of the present invention.
- optical disc is defined to include any optical disc (e.g., DVD or blue laser disc) having a data recording side upon which data is recorded by a laser having a wavelength of 750nm or less.
- data is recorded onto a DVD by a laser having a wavelength of about 650nm and data is recorded onto a blue laser disc by a laser having a wavelength of between about 400nm and about 500nm.
- spatially relative terms e.g., lower, upper, below, above
- these terms are used merely for convenience and clarity and that the scope of the present invention will encompass any spatial configuration of the optical discs (by way of example only, upside-down, right-side-up, vertical, horizontal).
- an optical disc 200 comprising several layers: lower polycarbonate 260, data layer 250, data reflective layer 240, upper polycarbonate layer 230, imaging reflective layer 290, protective layer 270, and laser labeling layer 220.
- Optical disc 200 (e.g., a recordable DVD) comprises two polycarbonate layers (lower and upper) 260 and 230.
- polycarbonate layers 260 and 230 are about 0.6mm thick.
- Sandwiched between polycarbonate layers 260 and 230 is a data layer 250, backed by data reflective layer 240.
- a laser is shown through lower polycarbonate layer 260 onto data layer 250. The laser causes changes in data layer 240 which corresponds to the data being recorded.
- laser labeling layer 220 which comprises a laser imageable composition which changes color upon the application of laser energy.
- the composition may comprise an antenna for absorbing laser energy, a leuco dye, an activator, and a matrix such as, by way of example only, described in United States Patent Application Publication No. 2004/0146812.
- the laser labeling layer 220 may be about 0.5 ⁇ m to about 14 ⁇ thick and be deposited, for example, by sputter coating, silk screening, spin coating, offset printing, flexographic printing, pad printing, or any type of printing or deposition process which may deposit a substantially uniform layer. In some embodiments, the laser labeling layer 220 may be about 7 ⁇ m to about 8 ⁇ m thick.
- the laser labeling layer 220 may be about 4 ⁇ m to about 7 ⁇ m and in yet other embodiments, the laser labeling layer 220 may be about 1 ⁇ m to about 4 ⁇ m thick.
- Beneath laser labeling layer 220 is imaging reflective layer 290.
- imaging reflective layer 290 may be closer than about 50 ⁇ m below laser labeling layer 220 and may be greater than about 40nm thick.
- imaging reflective layer 290 may be about 30nm to about 200nm thick. It is not necessary that image reflective layer 290 be immediately adjacent or with only protective layer 270 between imaging reflective layer 290 and laser labeling layer 220.
- imaging reflective layer 290 may between about 0.5 ⁇ m to about 600 ⁇ m below laser labeling layer 220. In still other embodiments, imaging reflective layer 290 may be between about 0.5 ⁇ m and about 200 ⁇ m, between about 0.5 ⁇ m and about 50 ⁇ m, or between about 0.5 ⁇ m and about 10 ⁇ m below laser labeling layer 220. However, as imaging reflective layer 290 moves farther away from laser labeling layer 220, the effectiveness of imaging reflective layer 290 may be decreased. [0011] Imaging reflective layer 290 may comprise any reflective coating capable of reflecting a substantial amount of the laser light 280 which is not absorbed by laser imageable layer 220 back up into laser imageable layer 220 where it has a second chance to cause a color change in laser imageable layer 220.
- imaging reflective layer 290 may comprise sputter coated or vacuum deposited Ag, Al, Au, Al/Cu alloy, Ag/AI alloy, metallic Si, Cu, brass, Zn, or any other metal, alloy, or composition which reflects laser light.
- Vacuum deposition may comprise using resistive heating to vaporize the metal to coat a substrate (e.g., an optical disc).
- Sputter coating may comprise creating a voltage difference between the substrate and the metal to create a plasma.
- imaging reflective layer 290 is covered by protective layer 270.
- Protective layer 270 may be a lacquer which protects imaging reflective layer 270 from air and oxidation.
- acceptable lacquers may include spin coated UV curable acrylates such as Daicure Clear SD2200 or SD2407 (available from DIC Imaging Products U.S.A., Inc., Oak Creek, Wl) and may be less than about 10 ⁇ m thick.
- protective layer 270 may be about 4 ⁇ m to about 8 ⁇ m thick.
- the laser labeling layer may protect the reflective layer from oxidation and a separate protective layer may not be present.
- laser radiation 280 is directed imagewise to laser labeling layer 220 where it makes a mark. At least a portion of the laser radiation 280 that is not initially absorbed by laser labeling layer 220 reflects back up to laser labeling layer 220 and some of the reflected laser radiation is then absorbed to enhance the mark.
- Laser radiation 280 may be any laser radiation which makes a mark on laser labeling layer 220. In some embodiments, the laser radiation may be of the same wavelength as the laser which writes data on the data layer 250 of the optical disc 200. In some embodiments, the laser radiation may have a wavelength of about 780nm, about 650nm, or about 400nm - 500nm. [0013] Referring now to Figure 2, there is shown an optical disc 300 comprising several layers: lower polycarbonate layer 360, data layer 350, data reflective layer 340, upper polycarbonate layer 330, imaging reflective layer 370, and laser labeling layer 320.
- optical disc 300 (e.g., a recordable DVD) comprises two polycarbonate layers (lower and upper) 360 and 330.
- polycarbonate layers 360 and 330 are about 0.6mm thick.
- Sandwiched between polycarbonate layers 360 and 330 is a data layer 350, backed by data reflective layer 340.
- a laser is shown through lower polycarbonate layer 360 onto data layer 350. The laser causes changes in data layer 340 which corresponds to the data being recorded.
- laser labeling layer 320 which comprises a laser imageable composition which changes color upon the application of laser energy.
- the composition may comprise an antenna for absorbing laser energy, a leuco dye, an activator, and a matrix such as, by way of example only, described in United States Patent Application Publication No. 2004/0146812.
- Laser labeling layer 320 may be about 7 ⁇ m to about 8 ⁇ m thick and be deposited, for example, by sputter coating, silk screening, or spin coating.
- Beneath laser labeling layer 320 is imaging reflective layer 370.
- imaging reflective layer 370 may be less than 50 ⁇ m below laser labeling layer 320 and may be greater than about 40nm thick. In still other embodiments, imaging reflective layer 370 may be about 70nm thick. It is not necessary that image reflective layer 370 be immediately adjacent to laser labeling layer 320. In some embodiments, imaging reflective layer may be between about 0.5 ⁇ m to about 600 ⁇ m below laser labeling layer 320. In still other embodiments, imaging reflective layer 290 may be between about 0.5 ⁇ m and about 200 ⁇ m, between about 0.5 ⁇ m and about 50 ⁇ m, or between about 0.5 ⁇ m and about 10 ⁇ m below laser labeling layer 220.
- Imaging reflective layer 370 may comprise a lacquer containing suspended metal flakes which reflect light that is not absorbed by laser imageable layer 320 back up into laser imageable layer 320 where it has a second chance to cause a color change in laser imageable layer 320.
- imaging reflective layer 370 may comprise a paste/lacquer containing aluminum flakes (called “silver paste”); copper flakes (called “gold paste”); brass flakes (called “bronze paste”); or Ag, Cu, or Zn suspended in a paste or lacquer.
- the "silver paste” may be Eckart SP8700 UV-curable lacquer (available from Eckart America L.P., Louisville, KY).
- imaging reflective layer 370 may comprise solvent-based undercoats such as Eckart SX9102 (metal flakes suspended in propylene glycol and butoxyl ethanol).
- laser radiation 380 is directed imagewise to laser labeling layer 320 where it makes a mark. At least a portion of the laser radiation 380 that is not initially absorbed by laser labeling layer 320 reflects back up to laser labeling layer 320 and some of the reflected laser radiation is then absorbed to enhance the mark.
- Laser radiation 380 may be any laser radiation which makes a mark on laser labeling layer 320.
- the laser radiation may be of the same wavelength as the laser which writes data on the data layer 350 of the optical disc 300. In some embodiments, the laser radiation may have a wavelength of about 780nm, about 650nm, or about 400nm - 500nm. Examples
- Example 1 A 50nm to 100nm thick reflective layer of Al was sputter coated onto a DVD. The reflective layer was then spin coated with Daicure SD2200 protective lacquer and cured for 1-3 seconds. An 8 ⁇ m laser labeling layer was screen printed over the cured lacquer and reflective layer. After the laser labeling layer was cured, a mark was made using a 38.25 mW/780nm laser. In measuring shelf life over the course of 48 hours at 30% relative humidity the disc having a reflective layer performed better than marks made on DVDs which did not include a reflective layer. After 48 hours, the optical density of DVD with the Al undercoat had faded about 33% less than the mark on the uncoated DVD.
- Example 2 A reflective layer of UV curable Eckart SP8700 "silver paste" was screen printed onto a DVD and cured for 1 to 3 seconds. An 8 ⁇ m laser labeling layer was screen printed over the cured lacquer and reflective layer. After the laser labeling layer was cured, a mark was made using a 38.25 mW/780nm laser. In measuring shelf life over the course of 48 hours at 30% relative humidity the disc having a reflective layer performed better than marks made on DVDs which did not include a reflective layer. After 48 hours, the optical density of DVD with the silver paste undercoat had faded about 10% less than the mark on the uncoated DVD.
Landscapes
- Thermal Transfer Or Thermal Recording In General (AREA)
- Optical Record Carriers And Manufacture Thereof (AREA)
- Optical Recording Or Reproduction (AREA)
Abstract
Description
Claims
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| GB0713065A GB2437668A (en) | 2004-12-07 | 2007-07-05 | Image laser recording structure |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US11/006,060 US20060121234A1 (en) | 2004-12-07 | 2004-12-07 | Systems, compositions, and methods for laser imaging |
| US11/006,060 | 2004-12-07 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2006062586A1 true WO2006062586A1 (en) | 2006-06-15 |
Family
ID=36574611
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/US2005/037525 Ceased WO2006062586A1 (en) | 2004-12-07 | 2005-10-20 | Image laser recording structure |
Country Status (5)
| Country | Link |
|---|---|
| US (1) | US20060121234A1 (en) |
| CN (1) | CN101073122A (en) |
| GB (1) | GB2437668A (en) |
| TW (1) | TW200625299A (en) |
| WO (1) | WO2006062586A1 (en) |
Families Citing this family (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US7700175B2 (en) * | 2006-09-11 | 2010-04-20 | Hewlett-Packard Development Company, L.P. | Storage disc |
| US20080063900A1 (en) * | 2006-09-11 | 2008-03-13 | Hewlett-Packard Development Company Lp | Optical storage medium |
| JP2008159217A (en) * | 2006-12-26 | 2008-07-10 | Fujifilm Corp | Recording method of optical recording medium |
| US8722167B2 (en) | 2008-06-25 | 2014-05-13 | Hewlett-Packard Development Company, L.P. | Image recording media, methods of making image recording media, imaging layers, and methods of making imaging layers |
| US8652607B2 (en) * | 2008-06-25 | 2014-02-18 | Hewlett-Packard Development Company, L.P. | Image recording media and imaging layers |
Citations (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US5809003A (en) * | 1995-03-29 | 1998-09-15 | Kabushiki Kaisha Toshiba | Optical disk and optical information reproducing apparatus |
| US20010026531A1 (en) * | 2000-03-31 | 2001-10-04 | Pioneer Corporation | Information recording and reproducing medium |
| US6329035B1 (en) * | 1998-07-28 | 2001-12-11 | Ricoh Company, Ltd. | Optical data storage medium capable of reversibly displaying information |
| US20020191517A1 (en) * | 2000-10-30 | 2002-12-19 | Kazuhiko Honda | Method of printing label on optical disk, optical disk unit, and optical disk |
| WO2004039556A1 (en) * | 2002-11-01 | 2004-05-13 | Novem International B.V. | Information carrier and method and apparatus for manufacturing same |
| WO2004064053A1 (en) * | 2003-01-08 | 2004-07-29 | Mitsubishi Chemical Corporation | Optical information recording medium |
| EP1562196A2 (en) * | 2004-02-05 | 2005-08-10 | Fuji Photo Film Co., Ltd. | Optical recording medium and method of recording an image |
Family Cites Families (13)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| KR870006534A (en) * | 1985-12-09 | 1987-07-13 | 나가이 아쯔시 | Optical record carrier and its manufacturing method |
| US4961077A (en) * | 1988-02-19 | 1990-10-02 | E. I. Du Pont De Nemours And Company | Method for affixing information on read-only optical discs |
| US5075147A (en) * | 1989-03-24 | 1991-12-24 | Fuji Photo Film Co., Ltd. | Method for optically recording information and information recorded medium |
| KR100230448B1 (en) * | 1996-10-10 | 1999-11-15 | 윤종용 | Optical recording media |
| JP3302919B2 (en) * | 1997-11-27 | 2002-07-15 | 株式会社リコー | Method and apparatus for initializing optical recording medium |
| JP2000090579A (en) * | 1998-07-15 | 2000-03-31 | Ricoh Co Ltd | Optical disk formatting device, formatting method and optical disk |
| JP3900811B2 (en) * | 2000-09-12 | 2007-04-04 | 大日本インキ化学工業株式会社 | Metallic hologram |
| US7060654B2 (en) * | 2003-10-28 | 2006-06-13 | Hewlett-Packard Development Company | Imaging media and materials used therein |
| US6773614B2 (en) * | 2002-04-16 | 2004-08-10 | Hewlett-Packard Development Company, L.P. | Method of patterning conductive films |
| US6867793B2 (en) * | 2002-05-31 | 2005-03-15 | Hewlett-Packard Development Company, L.P. | Method and materials for entitling compact discs |
| US6974661B2 (en) * | 2003-01-24 | 2005-12-13 | Hewlett-Packard Development Company, L.P. | Compositions, systems, and methods for imaging |
| US7148182B2 (en) * | 2004-04-27 | 2006-12-12 | Hewlett-Packard Development Company, L.P. | Multilayered color compositions and associated methods |
| US7993807B2 (en) * | 2004-04-28 | 2011-08-09 | Hewlett-Packard Development Company, L.P. | Compositions, systems, and methods for imaging |
-
2004
- 2004-12-07 US US11/006,060 patent/US20060121234A1/en not_active Abandoned
-
2005
- 2005-10-20 CN CNA2005800419457A patent/CN101073122A/en active Pending
- 2005-10-20 WO PCT/US2005/037525 patent/WO2006062586A1/en not_active Ceased
- 2005-11-07 TW TW094138963A patent/TW200625299A/en unknown
-
2007
- 2007-07-05 GB GB0713065A patent/GB2437668A/en not_active Withdrawn
Patent Citations (8)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US5809003A (en) * | 1995-03-29 | 1998-09-15 | Kabushiki Kaisha Toshiba | Optical disk and optical information reproducing apparatus |
| US6329035B1 (en) * | 1998-07-28 | 2001-12-11 | Ricoh Company, Ltd. | Optical data storage medium capable of reversibly displaying information |
| US20010026531A1 (en) * | 2000-03-31 | 2001-10-04 | Pioneer Corporation | Information recording and reproducing medium |
| US20020191517A1 (en) * | 2000-10-30 | 2002-12-19 | Kazuhiko Honda | Method of printing label on optical disk, optical disk unit, and optical disk |
| WO2004039556A1 (en) * | 2002-11-01 | 2004-05-13 | Novem International B.V. | Information carrier and method and apparatus for manufacturing same |
| WO2004064053A1 (en) * | 2003-01-08 | 2004-07-29 | Mitsubishi Chemical Corporation | Optical information recording medium |
| EP1583089A1 (en) * | 2003-01-08 | 2005-10-05 | Mitsubishi Chemical Corporation | Optical information recording medium |
| EP1562196A2 (en) * | 2004-02-05 | 2005-08-10 | Fuji Photo Film Co., Ltd. | Optical recording medium and method of recording an image |
Also Published As
| Publication number | Publication date |
|---|---|
| GB2437668A (en) | 2007-10-31 |
| US20060121234A1 (en) | 2006-06-08 |
| TW200625299A (en) | 2006-07-16 |
| GB0713065D0 (en) | 2007-08-15 |
| CN101073122A (en) | 2007-11-14 |
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