Claims
- 1. A vacuum holddown apparatus, having a vacuum source, comprising:at least two sheets of material, said sheets separating a substrate held by vacuum from the vacuum source, wherein each of the sheets is provided with a plurality of vacuum ports and each sheet has a different pattern of the vacuum ports, wherein said sheets are mounted in sliding contact engagement such that shifting said engagement varies the pattern of vacuum application through the pair, one of said sheets having a surface for exerting a vacuum force on said substrate through the respective vacuum ports thereof, such that sliding said at least two sheets relative to each other causes re-distribution of the vacuum force at said surface in accordance with the immediate alignment of the at least two sheets, and re-alignment of the sheets provides vacuum distribution adjustment in a direction of travel of the substrate.
- 2. The apparatus as set forth in claim 1, comprising:re-alignment of the sheets further provides vacuum distribution adjustment across the direction of travel of the substrate.
- 3. The apparatus as set forth in claim 1, wherein re-aligning the sheets provides dynamic vacuum distribution.
- 4. The apparatus as set forth in claim 1, comprising:re-alignment of the sheets provides predetermined vacuum distribution depletion zones across the surface.
- 5. The apparatus as set forth in claim 1, comprising:re-alignment of the sheets provides substantially simultaneous, dynamic, vacuum distribution adjustment in a direction of substrate travel and n a direction across the direction of substrate travel.
- 6. A method for distributing a vacuum holddown vacuum force to a substrate holding surface having a plurality of vacuum transmitting first apertures therethrough in a first predetermined pattern, the method comprising:adjacently to said surface, mounting a valve for redistributing the vacuum force between predetermined sets of channels wherein said valve has a complementary shape and size with respect to said surface, said valve means having vacuum transmitting second apertures therethrough arrayed in a second predetermined pattern; selectively moving the valve to align selected ones of said second apertures to selected ones of said first apertures in accordance with producing a predetermined vacuum force distribution at said first surface; establishing predetermined, variable, vacuum distributions associated with predetermined flexible sheet material parameters for a given holding surface configuration by realigning the first predetermined pattern and the second predetermined pattern in combination; capturing the flexible sheet material on the outer surface by aligning the first predetermined pattern and the second predetermined pattern to a first position wherein the vacuum force is distributed only to channels substantially under a leading edge of the flexible sheet material; and dynamically realigning the first predetermined pattern and the second predetermined pattern by sliding the valve means correspondingly in synchronization with the receipt of downstream regions of the leading edge of the flexible sheet material.
- 7. The method as set forth in claim 6, the method further comprising:varying the predetermined pattern of second apertures to accommodate a variety widths, lengths and thicknesses of the substrate to be held.
- 8. A hard copy apparatus, having a vacuum source producing a predetermined vacuum force, the apparatus comprising:a platen having a holddown surface and a plurality of vacuum transmitting first apertures therethrough channels in a first predetermined array, each of the first apertures fluidically coupling the vacuum force to the surface; and mounted in sliding abutment and separating the platen from the vacuum source, at least one vacuum distribution altering device having vacuum transmitting second apertures therethrough in a second predetermined array such that discrete positions of the vacuum distribution altering device with respect to the platen produce discrete vacuum force patterns at the surface, thereby capturing sheet media on the surface by aligning the first predetermined pattern and the second predetermined pattern to a first position wherein the vacuum force is distributed only to channels substantially under a leading edge of the sheet media, and dynamically realigning the first predetermined pattern and the second predetermined pattern by sliding the valving device correspondingly in synchronization with the receipt of downstream regions of the leading edge of the sheet media.
- 9. The apparatus set forth in claim 8, further comprising:said sliding abutment establishes predetermined, variable, vacuum distributions associated with predetermined print media parameters for a given said surface configuration by realigning the first predetermined pattern and the second predetermined pattern in combination.
- 10. The apparatus set forth in claim 8, the vacuum distribution altering device comprising:a valving device for redistributing the vacuum force between predetermined sets of vacuum transmitting apertures wherein said valving device has a complementary shape and size with respect to said surface, and the valving device is mounted in the sliding abutment for moving the valving device to align selected ones of said second apertures to selected ones of said first apertures in accordance with producing a predetermined vacuum force distribution at said surface.
- 11. The apparatus as set forth in claim 10, second predetermined pattern further comprising:varied patterns of the second apertures for accommodating a variety widths, lengths and thicknesses of print media held.
- 12. A vacuum holddown apparatus, having a vacuum source, comprising:at least two sheets of material, said sheets separating a substrate held by vacuum from the vacuum source, wherein each of the sheets is provided with a plurality of vacuum ports and each sheet has a different pattern of the vacuum ports; and said sheets are mounted in sliding contact engagement such that shifting said engagement varies the pattern of vacuum application through the pair, one of said sheets having a surface for exerting a vacuum force on said substrate through the respective vacuum ports thereof, such that sliding said at least two sheets relative to each other causes redistribution of the vacuum force at said surface in accordance with the immediate alignment of the at least two sheets and re-aligning the sheets provides dynamic vacuum distribution in the direction of travel of the substrate.
- 13. The apparatus as set forth in claim 12, comprising:re-alignment of the sheets provides vacuum distribution width adjustment the direction of travel of the substrate.
- 14. A vacuum holddown apparatus, having a vacuum source, comprising:at least two sheets of material, said sheets separating a substrate held by vacuum from the vacuum source, wherein each of the sheets is provided with a plurality of vacuum ports and each sheet has a different pattern of the vacuum ports; and said sheets are mounted in sliding contact engagement such that shifting said engagement varies the pattern of vacuum application through the pair, one of said sheets having a surface for exerting a vacuum force on said substrate through the respective vacuum ports thereof, such that sliding said at least two sheets relative to each other causes redistribution of the vacuum force at said surface in accordance with the immediate alignment of the at least two sheets, re-alignment of the sheets provides predetermined vacuum distribution depletion zones across the surface.
- 15. The apparatus as set forth in claim 14, comprising:re-alignment of the sheets provides vacuum distribution width adjustment the direction of travel of the substrate.
- 16. The apparatus as set forth in claim 14, comprising:re-alignment of the sheets provides vacuum distribution length adjustment the direction of travel of the substrate.
- 17. A vacuum holddown apparatus, having a vacuum source, comprising:at least two sheets of material, said sheets separating a substrate held by vacuum from the vacuum source, wherein each of the sheets is provided with a plurality of vacuum ports and each sheet has a different pattern of the vacuum ports; and said sheets are mounted in sliding contact engagement such that shifting said engagement varies the pattern of vacuum application through the pair, one of said sheets having a surface for exerting a vacuum force on said substrate through the respective vacuum ports thereof, such that sliding said at least two sheets relative to each other causes redistribution of the vacuum force at said surface in accordance with the immediate alignment of the at least two sheets, and re-alignment of the sheets provides substantially simultaneous, dynamic, vacuum distribution n the direction of travel of the substrate and in the direction across the direction of substrate travel.
- 18. The apparatus as set forth in claim 17, comprising:re-alignment of the sheets provides vacuum distribution width adjustment the direction of travel of the substrate.
Parent Case Info
This is a continuation of copending application Ser. No. 09/377,368 filed on Aug. 18, 1999.
US Referenced Citations (6)
Continuations (1)
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Number |
Date |
Country |
Parent |
09/377368 |
Aug 1999 |
US |
Child |
09/693262 |
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US |