RADIO FREQUENCY IDENTIFICATION SHEET MATERIAL (VARIATIONS)
20220309301 · 2022-09-29
Inventors
Cpc classification
G06K19/07749
PHYSICS
B32B27/12
PERFORMING OPERATIONS; TRANSPORTING
B32B27/304
PERFORMING OPERATIONS; TRANSPORTING
G06K19/07722
PHYSICS
G06K19/0723
PHYSICS
G06K19/025
PHYSICS
B32B5/02
PERFORMING OPERATIONS; TRANSPORTING
B32B2250/40
PERFORMING OPERATIONS; TRANSPORTING
B32B7/12
PERFORMING OPERATIONS; TRANSPORTING
G06K19/063
PHYSICS
International classification
Abstract
The group of inventions relates to the field of radio-frequency identification, in particular, to materials containing radio-frequency tags in their layers and intended for printing and stamping by commonly available printing methods. The technical result is the creation of the technical solution as an alternative to the known one. The sheet material with the radio frequency identification is characterized by the fact that it is made in the form of a rectangular paper sheet with a length of 450-485 mm, width of 300-330 mm (according to the first variant) and a length of 700-750 mm, width of 500-530 mm (according to the second variant), and it contains an antenna and a chip located inside the sheet, what's more, one of the corners of the sheet is made geometrically different from three other corners.
Claims
1. A sheet material for radio frequency identification (RFID), comprising: a rectangular sheet including: a layer for printing, an antenna, placed inside the sheet, and a chip, placed inside the sheet, wherein one corner of the sheet is geometrically different from three other corners of the sheet.
2. (canceled)
3. The sheet material of claim 1, wherein the geometrically different corner is made with a bevel.
4. The sheet material of claim 1, wherein the geometrically different corner is made with a bevel with dimensions of 3-50 mm.
5. The sheet material of claim 1, wherein the geometrically different corner is made with a bevel at an angle of 10-80°.
6. The sheet material of claim 1, wherein the geometrically different corner is rounded.
7. The sheet material of claim 1, wherein the geometrically different corner is made with a recess.
8. The sheet material of claim 1, wherein the rectangular sheet includes more than one antenna and more than one chip.
9. The sheet material of claim 1, wherein the rectangular sheet includes one or more additional electronic components.
10. The sheet material of claim 1, wherein the rectangular sheet has a length of 450-485 mm and a width of 300-330 mm.
11. The sheet material of claim 1, wherein the rectangular sheet has a length of 700-750 mm and a width of 500-530 mm.
12. The sheet material of claim 9, wherein the one or more additional electronic components are selected from light emitting diodes (LEDs), sensors, transducers, thin-film batteries, capacitors, resistors, microcontrollers, and any combination thereof.
13. The sheet material of claim 1, wherein the geometrically different corner of the sheet is configured to allow locating the sheet material in at least one stage for producing an RFID product.
14. The sheet material of claim 1, wherein a RFID product manufactured from the sheet material is selected from a card, a tag, a label, a sticker, a packaging and a bracelet.
15. The sheet material of claim 1, wherein the sheet of material is formed in a sandwich structure, comprising: a first printing layer; a first layer of synthetic plastic adhesive on top of the first printing layer; a substrate layer on top of the first layer of synthetic plastic adhesive, the substrate layer comprising the antenna, the chip being mounted on the antenna; a second layer of synthetic plastic adhesive on top of the substrate layer, the second layer of synthetic plastic adhesive encapsulating the chip; and a second printing layer on top of the second layer of synthetic plastic adhesive.
16. The sheet material of claim 15, wherein each of the first and second printing layers is selected from offset paper, craft paper, recycled paper, cardboard, synthetic paper, Polyethylene terephthalate, Polyvinyl chloride, Polypropylene, Polyethylene, natural fabric, synthetic fabric, and a combination thereof.
17. The sheet material of claim 1, wherein a plurality of RFID products are manufactured from the sheet material, each RFID product including the chip and at least one antenna.
18. The sheet material of claim 1, further comprising a plurality of positional elements located inside the sheet, the positional elements being usable for locating a plurality of RFID products during an operation selected from printing, cutting and punching of the sheet material.
19. The sheet material of claim 18, wherein a thickness of the sheet material varies between 0.15 mm and 1.0 mm according to locations of the plurality of positional elements.
20. The sheet material of claim 1, wherein: a machine-readable bar code, QR code or graphic element is printed on the sheet material; and one or more RFID product manufactured from the sheet material is identified by the machine-readable bar code, QR code or graphic element.
21. A method for manufacturing an RFID product, comprising: mounting the sheet material as defined in claim 1 into a printer, the geometrically different corner of the sheet being used for proper positioning of the sheet material in the printer.
Description
[0016] The inventions group is explained using
[0017]
[0018]
[0019]
[0020] Positions 1-16 are shown in
[0037] The sheet material with the radio frequency identification, according to the first variant, is made in the form of rectangular sheet 1 with a length of 450-485 mm—the large side of sheet 4—and a width of 300-330 mm—the smaller side of sheet 3, while one of the angles of the sheet is made using geometrically different angle 11 from the three others.
[0038] The sheet material with radio the frequency identification, according to the second variant, is made in the form of the rectangular sheet 1 with a length of 700-750 mm—the large side of the sheet 4—and a width of 500-530 mm—the smaller side of the sheet 3, while one of the angles of the sheet is made using geometrically different angle 11 from the three others.
[0039] Geometrically different angle 11 is a positional angle and it ensures the correct location of the sheet at various stages of the final product production by printing plants: typing, stamping, and die-cutting. The position angle, in contrast to the graphically plotted angle, is more convenient and universal, as it allows to check the correct location of the sheet in the middle of the stack. The position angle can be made with a bevel, for example, 3-50 mm in size or at an angle, for example, 10-80°, including 45°. The position angle can be made in the form of a fillet or a notch, for example, a semicircular, triangular or rectangular shape. The position angle can be made in any other way, which makes it possible to determine the correct position of the sheet in the bundle.
[0040] The device is a sandwich structure (
[0041] The substrate where antenna 16 and chip 15 are located can be made, for example, of PET, special paper, or another suitable flexible material. Antenna 16 can be made by means of etching or aluminum sputtering, alloys based on copper, silver, tin, gold, graphite, or other conductive materials suitable for chip 15's operation.
[0042] MIFARE Ultralight C, MIFARE Ultralight EV1, MIFARE Ultralight Nano, NTAG 215, NTAG DNA, ICODE SLIX 2, UCODE 8, UCODE DNA, and others can be used as chip 15.
[0043] As such, antenna 16 and chip 15 are placed inside sheet 1.
[0044] Antenna 16, in this particular case, is made in a rectangular form and has a length of 10-100 mm and a width of 10-70 mm. What's more, in this example, distance 5 from the smaller side of the sheet to the edge of the antenna 16 is 10-30 mm, while distance 6 from the larger side of the sheet to the edge of the antenna 16 is 30-40 mm.
[0045] Antenna 16 can be made as a round shape and has a radius of 15-60 mm, as well as a square shape with a side length of 15-60 mm or any other suitable shape.
[0046] Depending on the purpose, more than one antenna 16 with a chip 15 can be located in the sheet. Twenty-four RFID tags, which respectively comprise twenty-four antennas 16 on the substrate, are shown in
[0047] LEDs, sensors, transducers, thin-film batteries, and other electronic components can also be placed inside sheet 1.
[0048] Positional elements can be located inside the sheet, whereby the induction sensors find the location of the RFID tags for positioning the sheet during printing, cutting, or other necessary operations in punching and other printing machines. The resulting sheet thickness varies from 0.15 mm to 1.0 mm.
[0049] The machine-readable unique sheet number can be applied on each sheet, for example, the barcode, QR code, and other graphic elements. The tags located on the RFID sheet are linked by this number. When forming a print file, the unique numbers of RFID tags located inside the sheet material are known to the printing house in advance, which makes it possible to print this information in one pass, thereby avoiding additional manipulations for reading data from RFID tags and their subsequent additional application of graphics to RFID products.
[0050] After printing, the sheet material with radio frequency identification can be further processed, for example, partial foil stamping, varnishing, application of laminating films based on BOPP (biaxially oriented polypropylene film), PVC, PET.
[0051] The sheet material with radio frequency identification can have a front and back side made of one or different grades and colors of paper, or contain the paper on one side and synthetic material on the other side, fabric, or have a siliconized layer on one side and other combinations, including those containing the metallized layers, magnetic layers, and other materials.
[0052] The sheet 1 is shown in
[0053] The sheet material is used as follows.
[0054] The sheet material is to be placed in the equipment for printing images. The bevel of one of the angles 11 is necessary for the sheet material positioning when printing. The sheet material is placed in the machine for subsequent high-precision cutting of products of various shapes or other processing (folding, embossing, embossing, etc.) after printing.
[0055] The claimed sheet material can be used to produce classic paper cards with an RFID tag: transport cards, key cards (Skipass, hotel, office), parking cards, labels, tags, postcards, packages, stickers, and other similar products containing the RFID tag inside.