The exemplary teachings herein pertain to methods and techniques for printing and protecting financial, transactional, identification and other security cards or the like, and in particular, to a process of producing a protected card with an image. Specifically, the present disclosure relates to a process for the single step construction of a card having an image and a protective overlay, and to the products made by the process.
Standard card printing technology typically involves first printing the card with personalized information and photographs via, dye diffusion thermal transfer (D2T2) printing on card personalization machines. The cards are then protected by the application of an overlay or a patch. This application is done in a second step. The major drawback to this method is that resolution is limited. With increasing security concerns, the market, especially the personal identification market, needs increased resolution that the typical dye diffusion thermal transfer printing method cannot provide.
A more recent card printing technology involves an intermediate transfer method. In this method, a release film is provided. It is printed via dye diffusion thermal transfer printing and then is indexed through the machine to a point where the image is hot stamped onto the card. Subsequently, the cards are protected by the applications of an overlay or patch. As above, this application is done in a second step.
Therefore, a need exists for an improved method of printing and protecting card substrates, which is directed toward overcoming these and other disadvantages of prior art methods. Accordingly, to address the above stated issues, an improved method for printing and protecting financial, transactional, identification and other security cards is needed. The exemplary teachings herein fulfill such a need. It is desired that the methods and techniques for providing the above benefits be applicable to any instances or applications wherein images are to be printed on a substrate and protected.
The exemplary technique(s), system(s) and method(s) presented herein provide for a finished card construction, having an image and a protective overlay, through a single step process. An overlay transfer film or a web containing a patch is fed into the dye diffusion thermal transfer print module. The overlay or patch is printed with the personalized image via dye sublimation thermal transfer printing. The printed overlay or patch is then indexed though the machine to a point where the image and the protective layer are hot stamped or heat transferred to the card in a single step.
The disclosed methods and techniques eliminate the separate intermediate transfer film used by the more recent card printing technology discussed above, resulting in reduced process steps and costs. Further, the disclosed process uses less film to produce a personalized card and thus is more sustainable. Also, higher resolution images can be obtained.
Additional objects, advantages and novel features will be set forth in part in the description which follows, and in part will become apparent to those skilled in the art upon examination of the following and the accompanying drawings or may be learned by production or operation of the examples.
The drawing figures depict one or more implementations in accordance with the present teachings, by way of example only, not by way of limitation. In the drawing figures, like reference numerals refer to the same or similar elements.
The following description refers to numerous specific details which are set forth by way of examples to provide a thorough understanding of the relevant teachings. It should be apparent to those skilled in the art that the present teachings may be practiced without such details. In other instances, well known methods, procedures, and components have been described at a relatively high-level, without detail, in order to avoid unnecessarily obscuring aspects of the present teachings.
Referring now to
The printed overlay or patch is then indexed or registered with the blank card stock in the hot stamp module, at which time it is hot stamped onto the card by the hot stamp module to produce the finished, printed card. Accordingly, a single step, card printing and protection method is realized.
As illustrated in
While the foregoing discussion presents the teachings in an exemplary fashion with respect to the disclosed methods and techniques for card printing and protection, and the products produced by the methods and techniques, it will be apparent to those skilled in the art that the teachings may apply to any type of card printing and protection system that requires multiple steps to produce the finished card. Further, while the foregoing has described what are considered to be the best mode and/or other examples, it is understood that various modifications may be made therein and that the subject matter disclosed herein may be implemented in various forms and examples, and that the teachings may be applied in numerous applications, only some of which have been described herein.