Claims
- 1. An assembly for printing and encoding proximity cards comprising:a printer for printing cards, said printer having a print station, a reservoir for storing a plurality of cards and a transport mechanism for transporting one of said cards from said reservoir to said print station; at least one proximity card initially positioned in said reservoir, said proximity card having an embedded circuit; a housing having a region for positioning an antenna proximate to said transport mechanism and a controller for generating a signal for encoding or detecting said proximity device, said housing defining a first encoding and detecting station proximate to said transport mechanism and a second encoding and detecting station remote from said transport mechanism; means for controlling operation of said transferring mechanism to position said proximity card at said first encoding and detecting station prior to encoding said proximity card; and means for transferring encoding signals to said antenna for encoding and detecting said proximity card at said first encoding and detecting station or a second proximity device at said second encoding and detecting station; a computer for executing program instructions associated with said controlling means and said transferring means; first bus means for coupling said computer to said printer; second bus means for coupling said computer to said controller; a database, associated with said computer, for maintaining printable and encoding information; and an application program interface (API) for importing functions operable on said printable and encoding information in said database from third party application programs.
- 2. The assembly for printing and encoding proximity cards of claim 1 further comprising:means for detecting a failure to encode said proximity card; and a flipper mechanism for changing the orientation of said proximity card, said flipper mechanism coupled to said encoding station by said transport mechanism.
- 3. The assembly for printing and encoding proximity cards of claim 2 further comprising a reject bin for collecting proximity cards that are not properly encoded, said reject bin coupled to said encoding station by said transport mechanism.
- 4. The assembly for printing and encoding proximity cards of claim 1 wherein said housing is positioned above said transport mechanism.
- 5. The assembly for printing and encoding proximity cards of claim 1 further comprising means for creating an audit trail.
- 6. The housing of claim 1 wherein said antenna is aligned along a transport path defined by said transport means, said antenna offset from said transport path.
- 7. The housing of claim 1 wherein said antenna is aligned along a transport path and canted at an angle with respect to said transport path to minimize the distance between said proximity card and said antenna when said proximity card is positioned at said encoding and detecting station.
- 8. A method for selectively reading and encoding proximity cards during a printing operation on a computer based platform, said platform having a database for storing information, a reservoir for storing a plurality of proximity cards, a printer for printing information on said proximity cards and an encoder module for reading and encoding encoded information on said proximity cards, said printer and encoder module coupled to said reservoir by a transport path, said method comprising the steps of:positioning one of said plurality of proximity cards at an encoding and reading station proximate to said encoder module; said positioning step comprising the step off transporting said proximity card in a first direction from said reservoir to said encoding and reading station; detecting the presence of said proximity card at said encoding and reading station; transferring information from said database to an embedded circuit associated with said proximity card; verifying the correct transfer of information from said database to said embedded circuit; repositioning said proximity card in response to a failure to verify the correct transfer of information; and if said verifying step determines that the transfer of information was successful, transporting said proximity card in a second direction to said printer where said printer is between said reservoir and said first encoding and reading station.
- 9. The method of claim 8, wherein said repositioning step further includes the steps of:adjusting the position of said proximity card along said transport path in said first direction; programming embedded circuit; and verifying the correct transfer of information from said database to said embedded circuit.
- 10. The method of claim 9 wherein said repositioning step further includes the steps of:if said verifying step indicates a failure to transfer said information after moving said proximity card in said first direction, adjusting the position of said proximity card along said transport path in said second direction opposite from said first direction; programming said embedded circuit; verifying the correct transfer of information from said database to said embedded circuit; in response to a failure to verify, transporting said proximity card to a flipping station; repositioning said proximity card; and repeating said positioning, programming and verifying steps.
- 11. The method of claim 10, further comprising the step of generating an advisory message to improve the throughput rate of said proximity cards.
- 12. The method of claim 8 further comprising the steps of:moving said proximity card to said print station following a successful verification of the transfer of information from said database to said embedded circuit; and transferring printable information from said database to said printer.
- 13. The method of claim 8 further comprising the steps of:positioning a proximity card at a second encoding and reading station; operating said second encoding and reading station to detect an encoded password; and initiating operation of said computer based platform in response to a valid password.
- 14. A method for encoding proximity cards comprising the steps of:loading a plurality of un-encoded proximity cards into a reservoir; moving one of said plurality of proximity cards in a first direction from said reservoir past a print station to a proximity encoding station; encoding said proximity card; if said proximity card is to be printed, moving said proximity card, in a second direction opposite from said first direction, to said print station for printing; when both encoding and printing is complete, moving said proximity cards, in said first direction, to an output bin; if a card defect is detected during either the print or the encode process, moving said proximity card to a reject bin; and repeating the preceding steps for each of said proximity cards in said reservoir or until a printer/encoder program signals that no additional cards are to be programmed.
- 15. The method of claim 14 further comprising the steps of:providing a master-encoded proximity card having encoded password information for initiating said encoding and printing steps; and placing said encoded proximity card on said proximity encoding station.
CROSS-REFERENCES TO RELATED APPLICATIONS
This application claims priority from co-pending U.S. Provisional Patent Application Ser. No. 60/228,606, filed Aug. 28, 2000 entitled “PROXIMITY CARD PRINTER AND ENCODER SYSTEM”, the disclosure of which is incorporated herein by reference in its entirety for all purposes.
US Referenced Citations (8)
Provisional Applications (1)
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Number |
Date |
Country |
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60/228606 |
Aug 2000 |
US |