G06K19/022

Transaction card with secured magnetic strip and method for making the same
10664733 · 2020-05-26 · ·

A transaction card construction and a method for making transaction cards provides increased security for transaction card magnetic strips. The transaction card construction includes a card inlay and a clear card body. The card inlay is formed via a lamination press process with the magnetic strip attached to a back surface of the card inlay. The card body may have a window through which a data storage element may be exposed for accessing, such as by a magnetic stripe reader or EMV chip reader. The card body may be formed by adhering the card inlay to the clear card body.

Apparatus, method and device for making products incorporating an RFid

An apparatus (1) for the creation of products incorporating devices for radio frequency identification (RFID), said apparatus (1) being configured to operate according to a continuous processing line which includes, in sequence: a supply unit (2) of a substrate material; an add-chip unit (4), having means for the application of chips on the substrate material (41); an aerial-making assembly comprising: an aerial posing unit (5), configured to deposit a metal wire at each chip; an electrical connection unit, configured for electrically connecting the metal wire and a respective chip therebetween; a coupling unit (7), adapted to place a coating material on the substrate material; and a plurality of reading means (42, 62, 9) of each chip, arranged along said processing line, wherein said unit of aerial posing (5) comprises a plurality of devices (100) for realizing an aerial, wherein each device (100) is provided with a putting wire head (150) arranged at one end of a main body (101) and having a translational degree of freedom in a longitudinal direction (L), said putting wire head (150) comprising a guide element (102) rotatable according said longitudinal direction (L) and adapted to engage and guide the wire to deposit it on a substrate and a beak-like element (103) adapted to selectively abut in abutment on said rotatable element.

WEIGHTED TRANSACTION CARD
20200117964 · 2020-04-16 ·

Weighted transaction cards and methods of manufacturing the same. The weighted transaction cards may include a tungsten member that comprises at least a portion of a layer of the transaction card. The tungsten member may be encapsulated and/or disposed in an opening of a surround to define an inlay. The inlay may be laminated with one or more additional layers according to traditional card manufacturing techniques (e.g., a hot lamination process). The weighted transaction cards may have a weight significantly greater than traditional plastic transaction cards.

CARD AND METHOD FOR MAKING THE SAME
20240086671 · 2024-03-14 · ·

A transaction card construction and a method for making transaction cards provides increased security for transaction card magnetic strips. The transaction card construction includes a card inlay and a clear card body. The card inlay is formed via a lamination press process with the magnetic strip attached to a back surface of the card inlay. The card body may have a window through which a data storage element may be exposed for accessing, such as by a magnetic stripe reader or EMV chip reader. The card body may be formed by adhering the card inlay to the clear card body.

Manufacturing Method for Portable Data Carriers

A method for manufacturing a portable data carrier by means of a continuous manufacturing method, comprises the steps: providing at least one foil as a rolled good, unrolling at least one first foil, with at least a first foil being coated at least partly with an adhesive on at least one side, with at least the first foil being scored on at least one side along at least one creasing edge, with at least the first foil being folded up in precise fit along at least one creasing edge and bonded, with the foil being folded up in the direction of the side which is coated with adhesive, with the side coated with adhesive being arranged on the opposite side of the foil which has at least one scored creasing edge along which it is folded.

Manufacturing Method for Portable Data Carriers

A method for manufacturing a portable data carrier by means of a continuous manufacturing method, comprises the steps: providing at least one foil as a rolled good, unrolling at least one first foil, with at least a first foil being coated at least partly with an adhesive on at least one side, with at least the first foil being scored on at least one side along at least one creasing edge, with at least the first foil being folded up in precise fit along at least one creasing edge and bonded, with the foil being folded up in the direction of the side which is coated with adhesive, with the side coated with adhesive being arranged on the opposite side of the foil which has at least one scored creasing edge along which it is folded.

Manufacturing Method for Portable Data Carriers

A method for manufacturing a portable data carrier by means of a continuous manufacturing method, comprises the steps: providing at least one foil as a rolled good, unrolling at least one first foil, with at least a first foil being coated at least partly with an adhesive on at least one side, with at least the first foil being scored on at least one side along at least one creasing edge, with at least the first foil being folded up in precise fit along at least one creasing edge and bonded, with the foil being folded up in the direction of the side which is coated with adhesive, with the side coated with adhesive being arranged on the opposite side of the foil which has at least one scored creasing edge along which it is folded.

Methods of Storing Information Using Nucleic Acids
20240070422 · 2024-02-29 ·

The present invention relates to methods of synthesizing de novo a polynucleotide storing data using a programmable template independent polymerase.

Laser-personalized card having a hard coat subassembly and a core subassembly having non-metal layers with carbon particles
11915074 · 2024-02-27 · ·

Cards embodying the invention include a core subassembly whose elements define the functionality of the card and a hard coat subassembly attached to the top and/or bottom sides of the core subassembly to protect the core subassembly from wear and tear and being scratched. The core subassembly may be formed solely of plastic layers or of different combinations of plastic and metal layers and may include all the elements of a smart card enabling contactless RF communication and/or direct contact communication. The hard coat subassembly includes a hard coat layer, which typically includes nanoparticles, and a buffer or primer layer formed so as to be attached between the hard coat layer and the core subassembly for enabling the lasering of the core subassembly without negatively impacting the hard coat layer and/or for imparting color to the card.

Methods of storing information using nucleic acids

The present invention relates to methods of storing data using one or more nucleic acids.