Card printing mechanism with card return path

US10049320B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10049320-B2
Application numberUS-201615395309-A
CountryUS
Kind codeB2
Filing dateDec 30, 2016
Priority dateJan 8, 2016
Publication dateAug 14, 2018
Grant dateAug 14, 2018

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

Card processing mechanisms and methods whereby after a card has been processed on one surface thereof at a card processing station such as, but not limited to, a card printing mechanism, the card can be recirculated back upstream of the card processing station along a return card travel path that is separate from the primary card travel path through the card processing station where the card can then be reintroduced back into the primary card travel path and transported through the card processing station a second time. As the card is being returned along the return card travel path, the card can be flipped over so that when the card is transported back through the card processing station, the opposite surface of the card can be processed.

First claim

Opening claim text (preview).

The invention claimed is: 1. A card processing system, comprising: a card processing path; a card feed mechanism configured to contain cards to be fed onto the card processing path; a card printing mechanism disposed along the card processing path downstream from the card feed mechanism, the card printing mechanism includes: a primary card travel path along which cards can travel in a downstream direction; at least one drop-on-demand print station on the primary card travel path that performs a printing operation on a surface of a card on the primary card travel path, the drop-on-demand print station includes at least one print head; a return card travel path, separate from the primary card travel path, along which cards can travel to be returned back to the primary card travel path at a position upstream of the drop-on-demand print station, the return card travel path including a portion that is substantially parallel to but displaced from the primary card travel path; a smart card programming mechanism disposed in the card processing path and not disposed on the return card travel path, the smart card programming mechanism configured to program a chip embedded in a card fed from the card feed mechanism. 2. The card processing system of claim 1 , further comprising a card output located downstream of the card printing mechanism into which processed cards are output. 3. The card processing system of claim 1 , further comprising a card processing mechanism located downstream of the card printing mechanism and receiving cards therefrom. 4. The card processing system of claim 3 , wherein the smart card programming mechanism has a first card processing rate, the card printing mechanism has a second card processing rate that is greater than the first card processing rate, and the card processing mechanism located downstream of the card printing mechanism has the first card processing rate. 5. The card processing system of claim 3 , wherein the card processing mechanism located downstream of the card printing mechanism is configured to process a card while the card is in a first card orientation, the card printing mechanism is configured to process a card while the card is in a second card orientation, and the first card orientation is 90 degrees relative to the second card orientation. 6. The card processing system of claim 1 , wherein the at least one drop-on-demand print station comprises a plurality of print heads. 7. The card processing system of claim 1 , wherein the return card travel path includes at least one card flipper mechanism. 8. A method of processing cards in a card processing system that includes a card printing mechanism with a print station, the method comprising: within the card processing system prior to reaching the card printing mechanism, inputting a first card into a smart card programming mechanism and programming a chip embedded in the first card and inputting a second card into the smart card programming mechanism and programming a chip embedded in the second card; after programming the chip in the first card and the chip in the second card, inputting the first card into the card printing mechanism followed by inputting the second card into the card printing mechanism; printing on a first side of the first card using the print station of the card printing mechanism; after printing on the first side of the first card, printing on a first side of the second card using the print station; after printing on the first side of the first card, recirculating the first card along a return card travel path without traveling through the smart card programming mechanism to a location upstream of the print station and downstream of the smart card programming mechanism, inputting the first card back into the print station and printing on a second side of the first card using the print station; after printing on the first side of the first card and before printing on the second side of the first card, printing on one of a first side or a second side of a plurality of cards in addition to the second card using the print station. 9. The method of claim 8 , wherein after printing on the first side of the first card, discharging the first card from the print station to a location downstream of the print station and thereafter transporting the first card along the return card travel path to a location upstream of the print station without passing through the print station. 10. The method of claim 9 , wherein after printing on the first side of the first card and before printing on the second side of the first card, flipping the first card 180 degrees as the first card is being transported to the location upstream of the print station. 11. The card processing system of claim 1 , wherein the portion of the return card travel path that is substantially parallel to but displaced from the primary card travel path is located on a same plane as the primary card travel path. 12. The card processing system of claim 1 , wherein the card printing mechanism is configured so that a first card, a second card, and a third card are located in sequential order on the primary card travel path; each of the first card, the second card and the third cards has a first side and a second side opposite the first side; the first card and the third card are oriented with the first sides thereof facing upward, and the second card is positioned between the first card and the third card and the second card is oriented with the second side thereof facing upward. 13. A method of printing cards in a card printing mechanism having a print station, the cards having first and second sides, the method comprising: inputting a first card, a second card and a third card from a card feed mechanism onto a card processing path; transporting the first card, the second card and the third card along the card processing path to the card printing mechanism disposed downstream from the card feed mechanism; printing on the first side of the first card in the card printing mechanism using the print station, followed immediately thereafter by printing on the second side of the second card in the card printing mechanism using the print station, followed immediately thereafter by printing on the first side of the third card in the card printing mechanism using the print station; wherein the first card, the second card, and the third card are arranged in sequential order on a primary card travel path of the card printing mechanism; after printing on the first side of the first card, the second side of the second card and the first side of the third card, recirculating at least one of the first card, the second card or the third card along a return card travel path to a location upstream of the print station on the primary card travel path, the return card travel path including a portion that is substantially parallel to but displaced from the primary card travel path, and the recirculated first card, second card or third card travels in a direction toward the card feed mechanism when being recirculated on the portion that is substantially parallel to but displaced from the primary card travel path; and printing on the recirculated first card, second card or third card. 14. The method of claim 13 , wherein the portion that is substantially parallel to but displaced from the primary card travel path is located in a same plane as the primary card travel path.

Assignees

Inventors

Classifications

  • Transporting of cards between stations · CPC title

  • specially adapted for {small} cards, envelopes, or the like {, e.g. credit cards, cut visiting cards} · CPC title

  • B41J3/60Primary

    for printing on both faces of the printing material · CPC title

  • with intermittent movement; Braking or stopping movement · CPC title

  • G06K19/10Primary

    at least one kind of marking being used for authentication, e.g. of credit or identity cards (verification of coded identity or credit cards in mechanisms actuated by them G07F7/12) · CPC title

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What does patent US10049320B2 cover?
Card processing mechanisms and methods whereby after a card has been processed on one surface thereof at a card processing station such as, but not limited to, a card printing mechanism, the card can be recirculated back upstream of the card processing station along a return card travel path that is separate from the primary card travel path through the card processing station where the card ca…
Who is the assignee on this patent?
Entrust Datacard Corp
What technology area does this patent fall under?
Primary CPC classification B41J3/60. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Aug 14 2018 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).