1. A data creating device comprising:
a data storing portion that stores data that is used by an applicable instrument that is connected through a network;
a displaying portion that displays visibly data that is stored in the data storing portion;
a data inputting portion that receives changed data that changes data that is stored in the data storing portion;
a composite data creating portion that creates a copy of the data that is stored in the data storing portion and creates composite data by applying the changed data that has been inputted through the data inputting portion;
a comparing portion that compares the composite data created by the composite data creating portion and the data that is stored in the data storing portion to extract from the composite data the parts that are different from the data; and
a display controlling portion that displays, on the displaying portion, the data that is stored in the data storing portion along with the composite data, in a form wherein it is possible to identify the parts in the composite data that are different, extracted by the comparing portion, and the parts that are the same.
2. The data creating device as set forth in claim 1, wherein:
the display controlling portion displays, on the displaying portion, composite data wherein the display colors are different for the parts that are different and the parts that are the same.
3. The data creating device as set forth in claim 1, wherein:
the comparing portion extracts, from the composite data, parts wherein the data is changed and parts that are new wherein there was no data, as parts that are different; and
the display controlling portion displays, on the displaying portion, the composite data in a form wherein the parts that have been changed and the parts that are new in the composite data, extracted by the comparing portion, and the parts that are the same can each be identified.
4. The data creating device as set forth in claim 3, wherein:
the display controlling portion displays the composite data wherein parts that have been changed, parts that are new, and parts that are the same are each displayed in different colors.
5. The data creating device as set forth in claim 1, comprising:
a data setting portion that receives an instruction for applying a change and applies, to the data that is stored in the data storing device, changed data that has been received from the data inputting portion.
6. A data creating method comprising:
a data storing step for storing data that is used by an applicable instrument that is connected through a network;
a data inputting step for receiving changed data that changes data that was stored in the data storing step;
a composite data creating step for creating a copy of the data that was stored in the data storing step and creating composite data by applying the changed data that has been inputted in the data inputting step;
a comparing step for comparing the composite data created in the composite data creating step and the data that was stored in the data storing step to extract from the composite data the parts that are different from the data; and
a display controlling step for displaying the data that was stored in the data storing step along with the composite data, in a form wherein it is possible to identify the parts in the composite data that are different, extracted in the comparing step, and the parts that are the same.
7. The data creating method as set forth in claim 6, wherein:
in the display controlling step, composite data wherein the display colors are different for the parts that are different and the parts that are the same are displayed.
8. The data creating method as set forth in claim 6, wherein:
in the comparing step, parts wherein the data is changed and parts that are new wherein there was no data, as parts that are different are extracted, from the composite data; and
in the display controlling step, the composite data is displayed in a form wherein the parts that have been changed and the parts that are new in the composite data, extracted by the comparing portion, and the parts that are the same can each be identified.
9. The data creating method as set forth in claim 8, wherein:
in the display controlling step, composite data is displayed wherein parts that have been changed, parts that are new, and parts that are the same are each displayed in different colors.
10. The data creating method as set forth in claim 6, comprising:
a data setting step for receiving an instruction for applying a change, and for applying, to the data that was stored in the data storing step, changed data that was received in the data inputting portion.
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 method for adjusting an area ink coverage, produced using a volume of an ink transferred to a print substrate by an inking unit of a printing press and having at least one ink forme roller including:
reaching a final phase of a first printing process carried out by the printing press;
at least one of disengaging and interrupting an ink feed to the inking unit in at least one of several zones in the inking unit;
selecting a target value for the area ink coverage as being equal to an area ink coverage for the same ink and predefined for a pre-print run of a second printing process;
continuing to transfer a volume of ink remaining on the print substrate side of the inking unit after the one of disengagement and interruption of the ink feed in the inking unit in the final phase of the first printing process being executed in the printing press until the area ink coverage produced with the volume of ink transferred to the print substrate (02) equals the target value for the area ink coverage;
providing an automatically running control process;
changing over the printing press from the first printing process running in said printing press to the second printing process using the control process that runs automatically;
transferring the same ink from the inking unit to the print substrate in the second printing process as in the first printing process; and
carrying out the changing over of the printing process using the control process and reaching the predefined target value for the area ink coverage predefined for the pre-print run of the second printing process.
2. The method according to claim 1 further including providing a first printing forme, inked by the inking unit in the printing press for the purpose of executing the first printing process, and replacing the first printing forme by another printing forme which is provided for the purpose of executing the second printing process only after the area ink coverage produced on the print substrate with the volume of ink remaining in the inking unit equals the target value for area ink coverage predefined for the pre-print run of the second printing process.
3. The method according to claim 1 further including providing a control unit and using the control unit for comparing the area ink coverage detected during the pre-print run of the second printing process as an actual value with a target value for the area coverage predefined for said pre-print run, which target valve is stored in a memory unit.
4. The method according to claim 3, further including providing a computer unit and using the computer unit for making at least the comparison, carried out by the control unit, of the actual value for the detected area coverage with the target value thereof, predefined for the pre-print run of the second printing process, and calculating a number of sheets of the print substrate, with this number of sheets indicating how many additional sheets must be printed with the volume of ink remaining in the inking unit until the area ink coverage equals the target value for area coverage predefined for the pre-print run of the second printing process.
5. The method according to claim 4 further including calculating one of the number of sheets and a number of printed images, taking into consideration at least one of a rotational velocity of an ink fountain roller belonging to the respective inking unit and at least one time constant for at least one of building up and reducing an ink layer thickness in one of the respective inking unit and the printing couple.
6. The method according to claim 4 further including providing a display device and displaying the calculated one of number of sheets and printed images on the display device.
7. The method according to claim 1 further including providing the printing press having a plurality of printing couples each having at least one printing forme with each printing couple being assigned its own inking unit and using at least two of these printing couples for transferring different inks to the same print substrate being transported through the printing press.
8. The method according to claim 7 further including using a computer unit and calculating, for each of the plurality of the printing couples a specific number of sheets of the print substrate and indicating how many additional sheets must be printed with the volume of the particular ink remaining in the respective inking unit until the area coverage produced in connection with the respective inking unit equals the target value, predefined for the pre-print run of the second print process, for the area coverage to be produced in connection with each respective inking unit.
9. The method according to claim 7 further including disengaging, in the respective inking unit, the at least one ink forme roller thereof from the printing forme inked in the relevant printing couple as soon as a number of sheets, that are required before the area coverage produced in connection with the respective inking unit equals the target value for the area coverage to be produced in connection with the respective inking unit, and predefined for the pre-print run of the subsequent printing process, have been imprinted in the relevant printing couple.
10. The method according to claim 1, further including transferring the ink in the printing press to one of a sheet-type and a web-type print substrate.
11. The method according to claim 1, further including adjusting the area ink coverage with respect to one a total area of the printed image and with respect to a partial area thereof.
12. The method according to claim 1 further including adjusting the area ink coverage with respect to a plurality of different partial areas of the same printed image, and wherein, for each of a plurality of these partial areas, the associated area coverage is adjusted.
13. The method according to claim 1 further including adjusting the area ink coverage in each case by an ink dosing system having a plurality of dosing elements that act in zones, and wherein a plurality of ink zones are arranged side by side, transversely to a transport direction of the print substrate that is transported through the printing press.
14. The method according to claim 1 further including disengaging the ink feed to the inking unit at least in zones by actuating an ink dosing system, and wherein at least one dosing element of the ink dosing system is closed by this actuation.
15. The method according to claim 14 further including actuating the ink dosing system and closing the dosing element, which is active in at least one ink zone, of the ink dosing system, which ink dosing system comprises a plurality of ink zones arranged in a row transversely to a direction of transport of the print substrate.
16. The method according to claim 1 further including interrupting the ink feed in one of the inking unit and in the respective inking unit in each case by disengaging a ductor roller.
17. The method according to claim 1 further including producing an ink measuring strip on the print substrate in the pre-print run of the second printing process.
18. The method according to claim 1 further including detecting at least during the pre-print run of the second printing process, an ink density of the area coverage produced on the print substrate.
19. The method according to claim 18 further including detecting the ink density within the printing press by using at least one sensing device.
20. The method according to claim 18 further including detecting the ink density by using an inline inspection system.
21. A method for adjusting an area ink coverage and usable for execution in a printing press comprising a plurality of printing couples including:
using the plurality of printing couples and applying at least two different inks to a print substrate being transported along a transport path thereof through the printing press for producing a printed image on the print substrate;
providing an ink controller and using the ink controller for calculating how many additional printed images must be imprinted by each of the respective printing couples involved in producing these printed images, following at least one of a zonal disengagement and an interruption of an ink feed in each of these printing couples until a volume of ink remaining on a print substrate side in each respective printing couple and forming an area ink coverage produced in each of the printing couples, using the volume of ink transferred to the print substrate, equals a target value for an area ink coverage;
producing the area coverage, in each case, by transferring a volume of ink to the print substrate by an inking unit belonging to the respective printing couple;
replacing, in the respective printing couple, at least one printing forme, inked by the inking unit for the purpose of executing a first printing process, by another printing forme provided for the purpose of executing a second printing process only after the area ink coverage produced on the print substrate with the volume of ink remaining in the relevant inking unit equals the target value for area ink coverage;
carrying out a changeover of the printing press from the first printing process currently running in said printing press to the second printing process in a control process that runs automatically;
transferring ink to the print substrate in the second printing process from each of the inking units involved in executing the second printing process as in the first printing process;
defining a respective target value for the area ink coverage being equal in each case to the area ink coverage predefined for a pre-print run of the second printing process; and
carrying out the changing over of the printing press using the control process executed by the ink controller and reaching the respective predefined target value for the area ink coverage predefined for the pre-print run of the second printing process.