Method and apparatus for dynamically determining a printing location in a document for a postage indicia

Information

  • Patent Grant
  • 6741972
  • Patent Number
    6,741,972
  • Date Filed
    Friday, November 6, 1998
    25 years ago
  • Date Issued
    Tuesday, May 25, 2004
    20 years ago
Abstract
A processor based postage metering system includes structure for entering user input data including a fold configuration selected from a plurality of fold configurations; apparatus for accounting for postage dispensed by the processor based postage metering system; a document program running on the processor based postage metering system, the document program operable for controlling creation of a document based on the user input data; structure for automatically determining based on the fold configuration a designated location within the document for printing evidence of postage; and structure for printing the document and the evidence of postage such that the evidence of postage is printed in the designated location of the documentd. A method incorporates the functions of the apparatus.
Description




FIELD OF THE INVENTION




The present invention relates generally to value printing systems and, more particularly, to postage metering systems which dynamically determine the printing location of postage indicia on a document.




BACKGROUND OF THE INVENTION




Since the issuance of U.S. Pat. No. 1,530,852 to Arthur H. Pitney, the postage meter has evolved from completely mechanical postage meters to meters that incorporate extensive use of electronic components. Although postage meters have performed satisfactorily in the past, and continue to perform satisfactorily, with the advancement in computer controlled digital printing technology the United States Postal Service (USPS) and other Posts are considering requirements for new technology metering devices.




The USPS is presently considering requirements for two metering device types: closed systems and open systems. In a closed system, the system functionality is solely dedicated to metering activity. Examples of closed system metering devices, also referred to as postage evidencing devices (PEDs), include conventional digital and analog postage meters wherein a dedicated printer is securely coupled to a metering or accounting function. In a closed system, since the printer is securely coupled and dedicated to the meter, printing cannot take place without accounting. Recently, Pitney Bowes Inc. has introduced the PostPerfect® and Personal Post Office™ meters which are new closed system metering devices that include a dedicated digital printer securely coupled to a secure accounting module.




In an open system, the printer is not dedicated to the metering activity thereby freeing system functionality for multiple and diverse uses in addition to the metering activity. Examples of open system metering devices include personal computer (PC) based devices with single/multi-tasking operating systems, multi-user applications and digital printers. An open system metering device is a PED with a non-dedicated printer that is not securely coupled to a secure accounting module. Examples of PC based open metering systems are described in U.S. Pat. Nos. 5,781,438 and 5,801,944 which are each incorporated herein by reference.




When a PED prints a postage indicia on a mailpiece, the accounting register within the PED must always reflect that the printing has occurred. Postal authorities generally require the accounting information to be stored within the postage meter in a secure manner with security features that prevent unauthorized and unaccounted for postage printing or changes in the amounts of postal funds stored in the meter. In a closed system, the meter and printer are integral units, i.e., interlocked in such a manner as to ensure that the printing of a postage indicia cannot occur without accounting.




Since an open system PED utilizes a printer that is not used exclusively for printing proof of postage payment, additional security measures are required to prevent unauthorized printing evidence of postage payment. Such security measures include cryptographic evidencing of postage payment by PEDs in the open and closed metering systems. The postage value for a mailpiece may be encrypted together with other data to generate a digital token. A digital token is encrypted information that authenticates the information imprinted on a mail piece including postage values. Alternatively, the United States Postal Service has proposed utilizing public key cryptography to print a bar coded encrypted message on the mailpiece which message can be verified by the postal authority to establish the authenticity of the mailpiece. The combination of the printed postal indicia together with the encrypted information (whether a digital token or a bar coded encrypted message) is referred to as a postal revenue block.




Digital tokens and bar code encrypted messages may be utilized in both open and closed metering systems. However, for open metering systems, the non-dedicated printer may be used to print other information in addition to the postal revenue block and may be used in activity other than postage evidencing. In an open system PED, addressee information is included in the postal data which is used in the generation of the digital tokens. Such use of the addressee information creates a secure link between the mailpiece and the postal revenue block and allows unambiguous authentication of the mail piece.




The previously mentioned publication, U.S. Pat. No. 5,801,944, describes a PC based open metering system that provides the capability of merging an accounted for postal revenue block into another document (such as a letter on 8.5 by 11 inch paper) so that the letter is printed with the postal revenue block thereon in the upper right hand corner. U.S. Pat. No. 5,801,944 describes that the document with postal revenue block can then be folded in a manner such that the postal revenue block can be viewed through a window of a windowed envelope upon the insertion of the document into the envelope. This feature provides the advantage that in high speed mailing systems the separate step of printing a postal revenue block on the envelope after the document has been inserted therein is no longer required. Moreover, if the destination address is printed on the document in relation to the postal revenue block such that after folding of the document the destination address can be seen through another window of the envelope, the further step of matching an addressed envelope to its corresponding document is also eliminated.




Despite the advantages of the technology set forth in U.S. Pat. No. 5,801,944, the only described embodiment therein assumes that the postal revenue block will be printed at the top right hand corner of the document and then the document is folded appropriately so that the postal revenue block is visible through the envelope window. Thus, the location of the postal revenue block mandates that only a limited number of type folds can be used in order ensure that the postal revenue block is visible upon its insertion in the envelope. In today's environment, however, there are various ways that documents can be folded including Z-folds, C-folds, and half-folds. Moreover, within each of the fold types set forth above, there are different ways in which the particular type fold is created that will directly impact exactly at what location on the printed side of the document that the printed indicia or postal revenue block must be printed in order to be used within a windowed envelope or as a self-mailed product. Accordingly, the prior art devices are limited in that they do not dynamically account for the type of fold the document will be subjected to as an input in determining the printing location of the postage indicia or postage revenue block within the document.




SUMMARY OF THE INVENTION




It is thus an object of the invention to provide a system and method for dynamically determining a location within a document where an indicia or postal revenue block is to be printed based on the type of fold the document will be subjected to and for printing such indicia or postal revenue block in the determined location.




This object is met by providing a processor based postage metering system including structure for entering user input data including a fold configuration selected from a plurality of fold configurations; apparatus for accounting for postage dispensed by the processor based postage metering system; a document program running on the processor based postage metering system, the document program operable for controlling creation of a document based on the user input data; structure for automatically determining based on the fold configuration a designated location within the document for printing evidence of postage; and apparatus for printing the document and the evidence of postage such that the evidence of postage is printed in the designated location of the document. A method incorporates the functions of the apparatus.











DESCRIPTION OF THE DRAWINGS




The above and other objects and advantages of the present invention will be apparent upon consideration of the following detailed description, taken in conjunction with accompanying drawings, in which like reference characters refer to like parts throughout, and in which:





FIG. 1

shows the inventive postage metering system;





FIG. 2

is a block diagram of a portion of the postage metering system of

FIG. 1

;





FIG. 3

shows a postal revenue block;





FIG. 4

shows a document with a postal revenue block which is set up to be subjected to a first type C Fold;





FIG. 5

shows the document of

FIG. 4

in the first type C Fold configuration;





FIG. 6

shows a document with a postal revenue block which is set up to be subjected to a second type C Fold;





FIG. 7

shows the document of

FIG. 6

in the second type C Fold configuration;





FIG. 8

shows a document with a postal revenue block which is set up to be subjected to a third type C Fold;





FIG. 9

shows the document of

FIG. 8

in the third type C Fold configuration;





FIG. 10

shows a document with a postal revenue block which is set up to be subjected to a first type half fold configuration;





FIG. 11

shows a document with a postal revenue block which is set up to be subjected to a second type half fold configuration;





FIG. 12

shows a document with a postal revenue block which is set up to be subjected to a first type Z fold configuration;





FIG. 13

shows the document of

FIG. 12

in the first type Z Fold configuration;





FIG. 14

shows a document with a postal revenue block which is set up to be subjected to a second type Z fold configuration;





FIG. 15

shows the document of

FIG. 14

in the second type Z Fold configuration; and





FIG. 16

is a flow chart of the process for determining a printing location within a document for a postal revenue block based on a selected fold type.











DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS




Referring to

FIGS. 1 and 2

, a PC metering system


10


in which the instant invention is implemented is shown. PC metering system


10


includes a conventional personal computer


12


, a display


14


, a keyboard


16


, and a non-secure general purpose digital printer


18


which is preferably a laser or ink jet printer. PC metering system


10


further includes a removable electronic vault


20


(such as a Smart Card or PMCIA card) in which postage funds are stored and accounted for as postage is dispensed by PC metering system


10


. In operation, an operator, via keyboard


16


, initiates the printing of a desired amount of postage by the postage metering system


10


. PC


12


sends the request for the printing of postage to vault


20


via its vault controller


21


and a vault controller interface


22


of vault


20


. Vault


20


, via its own processor


23


and programs stored in memory


24


, then determines in a conventional manner if sufficient postage is available within conventional accounting circuitry


25


to accommodate the postage request. If sufficient postage is available, vault


20


reconciles the accounting within accounting circuitry


25


to account for the requested postage amount to be dispensed and provides a message to personal computer


12


authorizing the printing of the postage and providing digital tokens (or an encrypted message) uniquely associated with the instant postage transaction. Personal computer


12


then utilizes the digital token data received from the vault


20


to build an electronic image of a postal revenue block


26


having digital tokens


26




a


(see FIG.


3


). Further details of the specific components of the vault and personal computer in generating the postal revenue block, except for those set forth below, are not considered necessary for an understanding of the claimed invention and are therefore not presented herein. However, these components are further described in the aforementioned U.S. Pat. No. 5,781,438 and in copending U.S. patent application Ser. No. 08/575,112 which is incorporated herein by reference.




Referring specifically to

FIG. 2

, the personal computer


12


is controlled via a central processing unit


30


. A memory


32


contains application programs such as word processing programs or other document producing programs which an operator can access via keyboard


16


. The application programs


32


are used to create a document, such as a letter, in a conventional manner. However, in the instant invention, the application program


32


can be modified so that upon creation of a document and prior to printing, the operator can select the option of having an authenticated and accounted for postage revenue block


26


printed thereon.




Upon the selection of the postage option, a postage request message


33


is sent to an application interface module


34


together with the image data


35


for the created document. The application interface module


34


relays the postage request message


33


to an indicia image generation module


36


which requests, via vault controller


21


, approval of the postage transaction and receipt of digital tokens from the vault


20


Once vault


20


has authorized the postage transaction, it sends a postage authorization signal to the indicia image generation module


36


together with the uniquely generated tokens for that transaction. The indicia image generation module


36


creates and sends bit map image data


37


of the postal revenue block


26


to application interface module


34


. Application interface module


34


then sends the postage request message


33


, the bit map image data


37


, and the document image data


35


to a document image manipulation module


38


. Document image manipulation module


38


receives the above-mentioned data together with secondary data


39


such as envelope dimensions with indicia window position, document fold type, document page orientation, fold orientation, and page size. This information is used to calculate the exact position within the document that the postal revenue block


26


is to be printed. Naturally, if the folded document is to be a self mailed product, information concerning the envelope is not required.




The secondary data


39


can be entered by a user via keyboard


16


in response to a prompt on display


14


or some of the data such as page size and page orientation can come directly from the application program that created the document together with the document image data


35


. Once the location of the postal revenue block


26


within the document has been calculated, the document data image manipulation module


38


analyzes the document image data stream


35


and integrates the postal revenue block bit map image data


37


within the document image data stream


35


. The integration of the postal revenue block bit map image data


37


and the document image data


35


is done in a manner so that a resulting bit map image of the document includes a postal revenue block


26


which is positioned within the document at a location that is dependent upon the secondary data. The integrated image data stream


41


is then sent to the drivers


43


of printer


18


which use the data stream


41


to print the document including the postal revenue block


26


. Accordingly, for any number of mailpieces, the type of fold that the mailpieces will be subjected to can be specified and the postage metering system


10


will automatically, in real time, determine the proper location within the mailpiece that the postage revenue block


26


should be printed.




In order to more fully understand the invention described herein, reference is made to

FIGS. 4 through 15

. In

FIG. 4

, a document


40


is created using for example, a word processing program stored within application programs memory


32


. The document


40


is an 8.5 by 11 inch sheet of paper but could be any other size. Document


40


includes written information


42


which in the embodiment of

FIG. 4

is in the form of a letter having a date, address, body of the letter, and a signature block. Dashed lines


44


,


46


represent horizontal fold lines where document


40


is folded to create a “C Fold” document as shown in FIG.


5


. The fold lines


44


,


46


also define top, middle, and bottom panels of the document


40


respectively designated


48


,


50


, and


52


. It is to be noted that in the C Fold of

FIG. 5

, the top panel


48


is positioned on top of the folded document


40


. Thus, when document


40


is to be subsequently placed in a conventional windowed envelope having a window in its upper right hand corner, the postage revenue block


26


must be printed in the upper right hand corner of top panel


48


in order to be seen through the window of the envelope.





FIGS. 6 and 7

differ from

FIGS. 4 and 5

in that the postage revenue block


26


needs to be printed in the upper right hand corner of bottom panel


52


. This is because, as shown in

FIG. 7

, while a C Fold is still being used, the panels


48


,


50


, and


52


are folded such that the bottom panel


52


is now positioned on the top of the folded document


40


. Therefore in order for the postal revenue block


26


to appear through the envelope window, the postal revenue block must be printed in the upper right hand corner of the bottom panel


52


.





FIG. 8

shows another document


40


having a postal revenue block


26


printed in the upper right hand corner of the middle panel


50


to accommodate the type of C Fold shown in

FIG. 9

in which the middle panel


50


ends up positioned on the top of the folded document


40


.





FIGS. 10 and 11

both show a document


40


having a single horizontal fold line


60


which divides the document into top and bottom panels


62


and


64


, respectively. Both of these documents are folded along their respective fold line to create a one half fold document. In

FIG. 10

the bottom panel


64


is folded upward behind the top panel


62


such that the postal revenue block


26


is required to be printed in the upper right hand corner of top panel


62


. In contrast, in

FIG. 11

the top panel


62


is folded down behind the bottom panel


64


such that the postal revenue block


26


must be printed in the upper right hand corner of the bottom panel


64


.





FIG. 12

shows a document


40


having a postal revenue block


26


printed in the upper right hand corner of top panel


48


.

FIG. 13

, shows the document


40


of

FIG. 12

in a Z fold which requires the top panel


48


to be positioned on the top of the folded document


40


. Conversely,

FIG. 14

shows a document


40


having a postal revenue block


26


printed in the upper right hand corner of bottom panel


52


and

FIG. 1

shows the document


40


of

FIG. 3

in a Z Fold so that the bottom panel


52


ends up on top of the folded document.





FIGS. 4 through 15

show that the printing of the postal revenue block


26


on any document


40


will be dependent upon the type of fold that the document


40


will be subjected to after printing. While the above examples assume that the postal revenue block


26


should appear in the upper right hand corner of the folded document


40


, one possessing ordinary skill in the art will recognize that deviations from this standard are possible depending upon specific postal regulations and the type of windowed envelope product or self mailed product being used.




Referring to

FIGS. 2 and 16

and as previously discussed, a user can enter information concerning the type of fold the document


40


will be subjected to via keyboard


16


. This information is provided to document data image manipulation module


38


(step S


1


) which determines if a Z Fold has been requested (step S


3


). If the answer is YES, the program proceeds to step S


5


where an inquiry is made as to whether the top panel


48


will be on top of the folded document


40


. If the answer is NO, it is assumed that the bottom panel


52


is on top of the folded document


40


(step S


7


) and the determination is made that the postal revenue block


26


is to be printed in the upper right hand corner of the bottom panel


52


of document


40


(step S


9


). Returning to step S


5


however, if the answer is YES, a determination is made that the postal revenue block


26


is to be printed in the upper right hand corner of the top panel


48


of document


40


(step S


11


).




In the event however that at step S


3


the answer is NO, the program at step S


13


queries as to whether a C Fold will be applied to the document


40


. If the answer is YES, the program moves to step S


15


and queries if the top panel


48


will be on top of the folded document


40


. If the answer is YES, the determination is made at step S


11


to print the postal revenue block


26


in the upper right hand corner of top panel


48


of document


40


. Returning to step S


15


, if the answer is NO, an inquiry is made at step S


17


to determine if the bottom panel


52


will be on top of folded document


40


. If the answer is YES, the program proceeds to step S


9


where it is determined that the postal revenue block


26


is to be printed in the upper right hand corner of bottom panel


48


.




On the other hand, if the answer to the inquiry at step S


17


is NO, it is determined that the middle panel


50


is on top of the folded document


40


(step S


19


) and the program proceeds to step S


21


where it is determined that the postal revenue block should be printed in the upper right hand corner of the middle panel


50


of document


40


.




At step S


13


if the answer is NO the program assumes that a half fold will be applied to document


40


(step S


23


) and proceeds to step S


25


to determine if the top panel


62


will be on top of the folded document


40


. If the answer is YES at step S


27


it is determined that the postal revenue block


26


should be printed in the upper right hand corner of the top panel


62


. On the other hand, if the answer to the inquiry is NO, at step S


29


it is assumed that the bottom panel


64


will appear at the top of the document


40


and at step S


31


a decision is made to print the postal revenue block


26


in the upper right hand corner of the bottom panel


26


.




Once the general position of the postal revenue block


26


has been determined by the document data image manipulation module


38


, the secondary data


39


is used to identify the exact position within the document data image stream


35


where the postal revenue bit map image data


37


is to be integrated. One skilled in the art can readily program the document image manipulation module


38


to perform such integration based on the document image stream


35


. That is, for example, if the document image data stream


35


is the result of a word processing program, the secondary data


39


can be utilized to precisely position the postal revenue block image data within the document image data stream


35


.




Once the integrated image data stream


41


is completed, it is sent to the printhead drivers


43


which drive the printhead


18


to print the document


40


together with a properly positioned postal revenue block


26


. Subsequent to printing, the document


40


can be manually folded in the selected fold configuration and placed in a windowed envelope so that the postal revenue block is visible through the envelope window. Alternatively, the document


40


can be fed in a conventional manner from the printing mechanism


18


to a conventional folder


45


which can be set up to perform the selected fold automatically. The folded document would be transported in a conventional manner to a known inserter


47


where it is inserted into the windowed envelope. The automatic folding


45


and inserter


47


mechanisms are disclosed in U.S. Pat. No. 5,628,249 which is hereby incorporated by reference.




As previously mentioned, the folded document does not have to be placed in a windowed envelope but can be sent directly into the mailstream as a self mailed mailpiece. In this scenario, the printed document is folded and then the folded document is secured in place such as by stapling or the application of a tab.




Additional advantages and modifications will readily occur to those skilled in the art. Therefore, the invention in its broader aspects is not limited to the specific details and representative devices, shown and described herein. Accordingly, various modifications may be made without departing from the spirit or scope of the general inventive concept as defined by the appended claims Moreover, the term “evidence of postage” is meant to cover both a postage indicia and a postal revenue block.



Claims
  • 1. A method of operating a processor based postage metering system having a program running on the processor based postage metering system, the program operable for controlling creation of a document by a user giving input data to the processor based postage metering system, the method comprising the steps of:selecting a fold configuration for the document from a plurality of possible fold configurations; identifying to the processor based postage metering system the selected fold configuration; creating the document within the processor based postage metering system under control of the program; within the processor based postage metering system automatically determining based on the selected fold configuration a designated location within the document for printing an evidence of postage; and printing the document and the evidence of postage such that the evidence of postage is printed in the designated location of the document.
  • 2. A method as recited in claim 1, further comprising folding the printed document in the selected fold.
  • 3. A method as recited in claim 2, further comprising inserting the folded printed document into an envelope having a window therein such that the evidence of postage is seen through the window.
  • 4. A method as recited in claim 3, wherein during the selecting step one of a C Fold; a Z Fold, and a Half Fold is selected.
  • 5. A method as recited in claim 2, further comprising preparing the folded document for entry into a mailstream by securing the folded document in place.
  • 6. A method as recited in claim 1, wherein the automatic determination of the designated location is also based on secondary data.
  • 7. A method as recited in claim 6, wherein the secondary data includes at least one of envelope dimensions including window position, document orientation, fold orientation, and document size.
  • 8. A processor based postage metering system comprising:means for entering user input data including a fold configuration selected from a plurality of fold configurations; means for accounting for postage dispensed by the processor based postage metering system; a document program running on the processor based postage metering system, the document program operable for controlling creation of a document based on the user input data; means for automatically determining based on the fold configuration a designated location within the document for printing evidence of postage; and means for printing the document and the evidence of postage such that the evidence of postage is printed in the designated location of the document.
  • 9. A processor based postage metering system as recited in claim 8, wherein the means for automatically determining determines the designated location based on the fold configuration and at least one of envelope dimensions including window position, document orientation, fold orientation, and document size.
US Referenced Citations (19)
Number Name Date Kind
3602114 Peters Aug 1971 A
4022457 Marin May 1977 A
4701233 Beck et al. Oct 1987 A
4835544 Winterburn May 1989 A
4862386 Axelrod et al. Aug 1989 A
4900391 Mandel et al. Feb 1990 A
5006195 Martin Apr 1991 A
5398867 Murphy Mar 1995 A
5554094 Viens Sep 1996 A
5606507 Kara Feb 1997 A
5628249 Cordery et al. May 1997 A
5645214 Taganas Jul 1997 A
5684706 Harman et al. Nov 1997 A
5717597 Kara Feb 1998 A
RE35791 Volz May 1998 E
5781438 Lee et al. Jul 1998 A
5801944 Kara Sep 1998 A
5873073 Bresnan et al. Feb 1999 A
6029883 Henchinger et al. Feb 2000 A
Foreign Referenced Citations (8)
Number Date Country
2159542 Aug 1995 CA
2266644 Feb 1997 CA
2225443 Apr 1997 CA
1306812 Mar 1998 CA
2243763 Jul 1998 CA
0 371 705 Jun 1990 EP
0741374 Feb 1995 EP
0903699 Sep 1997 EP
Non-Patent Literature Citations (3)
Entry
Anonymous, “E-Stamp Corporation Brings Digital Stams to PCs Via the Internet”, Business Wire, Dialog File 621:New Product Announcements, May 5, 1997.*
Metzner, Kermit, “Modern Office Mailing Equipment Brings Savings”, Office Systems, vol. 10, No. 9, pp. 40-44. Sep. 1993.*
Rieck, Dean, “Great Letters and Why They Work”, Direct Marketing, vol. 61, No. 2, pp. 20-24, Jun. 1998.