1461146805-c2b389fa-308b-4c71-ac0f-e51801ce2bf9

What is claimed is:

1. A printing system comprising an ink-amount control unit for controlling the amount of ink to be supplied to a printing press based upon an image area rate contained in a pre-press data, at least one ink-amount calculation unit for calculating said image area rate, and wherein said ink-amount control unit is connected to said at least one ink-amount calculation unit on a network.
2. A printing system according to claim 1, wherein:
said ink amount control unit creates a file therein;
said file rewritably stores the names of units connected on the network, said units including said ink-amount control unit and said at least one ink-amount calculation unit, and the names of folders created in said units connected on the network, each of said folders storing data representative of said image area rate;
said ink-amount control unit refers to said file, and selects a corresponding data representative of said image data area rate to be used for controlling the amount of ink to be supplied to the printing press.
3. A printing system according to claim 2, wherein:
said at least one ink-amount calculation unit comprises a computer having a keyboard as an information input means; and
said file has a content rewritable via said at least one ink-amount calculation unit.
4. A printing system according to any one of claims 2 and 3, wherein:
said ink-amount calculation unit is provided with a display means for displaying information indicative of a corresponding position of the selected image area rate data with respect to an entire data group stored in the file.

The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

1. A print head protection device for use in connection with an inkjet printer having an inkjet print head, the print head being adapted for elevating, and a media sheet having a lead edge and a trail edge, the media sheet moving in a process direction along a process path, the print head protection device comprising:
a roller having an axis of rotation disposed transverse to the process direction, the roller being mounted for free rotation above the process path, the roller having an outer surface disposed a predetermined distance above the process path;
a cover attached to the roller outer surface, the cover being adapted for traction against the sheet, so as to engage the lead edge of the sheet in the event of sheet curl in excess of a predetermined curl range, and to cause rotation of the roller by engaging the sheet;
a rotary encoder mounted for synchronous rotation with the roller, the rotary encoder being adapted for generating a signal in response to rotation of the roller; and
a control system operative to mitigate print head damage in response to the signal.
2. The print head protection device of claim 1, further comprising:
the rotary encoder being adapted to determine an approximate angular position of the roller when the roller engages the lead edge of the sheet; and
the rotary encoder being adapted to determine an approximate angular position of the roller when the roller ceases rotation, thereby indicating an approximate magnitude of sheet curl, so as to implement mitigation.
3. The print head protection device of claim 1, wherein the control system is adapted to elevate the print head in response to the signal.
4. The print head protection device of claim 1, wherein the control system is adapted to direct the media sheet away from the process path in response to the signal.
5. The print head protection device of claim 1, wherein the roller predetermined distance above the process path is within the range of 0.50 mm to 1.0 mm.
6. The print head protection device of claim 1, wherein the roller predetermined distance above the process path is within the range of 0.40 mm to 2.0 mm.
7. The print head protection device of claim 1, wherein the roller predetermined distance above the process path is within the range of 0.30 mm to 3.0 mm.
8. The print head protection device of claim 1, wherein the cover further comprises a material adapted for traction in a direction counter to the process direction.
9. The print head protection device of claim 8, wherein the cover further comprises a material adapted for traction selected from the group consisting of:
one way felt;
material having elastomeric properties;
material having fibers projecting outward;
material having adhesive properties; and
material having electrostatic properties.
10. A print head protection device for use in connection with an inkjet printer having an inkjet print head, the print head being adapted for elevating, and a media sheet having a lead edge and a trail edge, the media sheet moving in a process direction along a process path, the print head protection device comprising:
a roller having an axis of rotation disposed transverse to the process direction, the roller being mounted for free rotation above the process path, the roller having an outer surface disposed a predetermined distance above the process path;
a cover attached to the roller outer surface, the cover being adapted for traction against the sheet in a direction counter to the process direction, so as to engage the lead edge of the sheet in the event of sheet curl in excess of a predetermined curl range, and to cause rotation of the roller by engaging the sheet; and
a rotary encoder mounted collinear with the roller for synchronous rotation with the roller, the rotary encoder being adapted for generating a signal in response to the roller cover engaging the sheet, so as to elevate the print head in response to the signal.
11. The print head protection device of claim 10, further comprising:
the rotary encoder being adapted to determine an approximate angular position of the roller when the roller engages the lead edge of the sheet; and
the rotary encoder being adapted to determine an approximate angular position of the roller when the roller ceases rotation, thereby indicating an approximate magnitude of sheet curl, so as to determine a distance to elevate the print head.
12. A method for print head protection for use in connection with an inkjet printer having an inkjet print head, the print head being adapted for elevating, and a media sheet having a lead edge and a trail edge, the media sheet moving in a process direction along a process path, the method comprising:
mounting a roller for free rotation above the process path;
disposing an axis of rotation of the roller transverse to the process direction;
disposing an outer surface of the roller a predetermined distance above the process path;
attaching a cover to the roller outer surface and adapting the cover for traction against the sheet;
engaging the lead edge of the sheet with the cover in the event of sheet curl in excess of a predetermined curl range;
rotating the roller by engaging the sheet;
mounting a rotary encoder for synchronous rotation with the roller;
generating a signal with the rotary encoder in response to rotation of the roller; and
mitigating print head damage in response to the signal.
13. The method of claim 12, further comprising:
determining an approximate angular position of the roller with the rotary encoder when the roller engages the lead edge of the sheet;
indicating an approximate magnitude of sheet curl the with the change in angular position of the roller after engaging the sheet; and
determining mitigating print head damage by the magnitude of sheet curl.
14. The method of claim 12, wherein mitigating print head damage further comprises elevating the print head in response to the signal.
15. The method of claim 12, wherein mitigating print head damage further comprises directing the media sheet away from the process path in response to the signal.
16. The method of claim 12, wherein disposing the outer surface of the roller a predetermined distance above the process path further comprises disposing the roller above the process path a distance within the range of 0.50 mm to 1.0 mm.
17. The method of claim 12, wherein disposing the outer surface of the roller a predetermined distance above the process path further comprises disposing the roller above the process path a distance within the range of 0.40 mm to 2.0 mm.
18. The method of claim 12, wherein disposing the outer surface of the roller a predetermined distance above the process path further comprises disposing the roller above the process path a distance within the range of 0.30 mm to 3.0 mm.
19. The method of claim 12, wherein adapting the cover for traction against the sheet further comprises adapting the cover for traction in a direction counter to the process direction.
20. The method of claim 19, wherein adapting the cover for traction further comprises forming the cover from a material selected from the group consisting of:
one way felt;
material having elastomeric properties;
material having fibers projecting outward;
material having adhesive properties; and
material having electrostatic properties.