IL205166A

Rfid tag especially for use near conductive objects

Abstract

This record has no abstract on file.

IL205166A, drawing sheet 1
Sheet 1 of 10

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

50 claims: 19 independent, 31 dependent

  1. 1
    WHAT IS CLAIMED IS:1. An RFID tag comprising: a) an antenna assembly, including: i) a shielding layer comprising an electromagnetic shielding material having a first side and a second side, said shielding layer configured to substantially reduce the magnitude of eddy currents induced in a conductive material by a magnetic field passing through said shielding layer;ii) a radio frequency loop antenna with a loop plane located at a distance from said first side of said shielding layer;and iii) a spacer comprising a spacer material interposed between said antenna and said shielding layer, said spacer material having a permittivity (ε) less than about 2;and b) an RFID circuit functionally associated with said antenna.
  2. 3
    The RFID tag of any of claims 1 and 2, wherein said permittivity of said spacer material is less than about 1.5.
  3. 4
    The RFID tag of any of claims 1-3, wherein said permittivity of said spacer material is less than about 1,3.
  4. 5
    The RFID tag of any of claims 1-4, wherein said permittivity of said spacer material is less than about 1.1.
  5. 6
    The RFID tag of any of claims 1-5, wherein said spacer material comprises polymethacrylimide foam.
  6. 7
    The RFID tag of any of claims 1-6, wherein said shielding layer is at least about 0.2 mm thick.
  7. 8
    The RFID tag of any of claims 1-7, wherein said shielding layer is no more than about 5 mm thick.
  8. 9
    The RFID tag of any of claims 1-8, wherein said electromagnetic shield material comprises ferrite.
  9. 10
    The RFID tag of any of claims 1-9, wherein said antenna is encased in an antenna casing associated with said spacer material.
  10. 11
    The RFID tag of any of claims 1 -9, wherein said antenna is surrounded by said spacer material.
  11. 12
    The RFID tag of any of claims 1-9, wherein said antenna is embedded in said spacer.
  12. 13
    The RFID tag of any of claims 1-9, wherein said antenna is deposited on a surface of said spacer material.
  13. 14
    The RFID tag of any of claims 1-9, wherein said circuit is at least partially contained within said shielding layer.
  14. 15
    The RFID tag of any of claims 1-9, wherein said circuit is at least partially contained within said spacer material.
  15. 16
    The RFID tag of any of claims 1-15, further comprising at least one non-conducting second spacer layer on said second side of said shielding layer.
  16. 20
    The RFID tag any of claims 1-19, further comprising a casing substantially containing said antenna and said spacer.
  17. 22
    The RFID tag of any of claims 1-21, wherein said antenna, said spacer material and said shielding layer are provided with a hole therethrough allowing the RFID tag to fit over an object.
  18. 23
    A method of making a passive radio-frequency RFID tag comprising:a) providing a sheet of an electromagnetic shielding material having a first side and a second side as a shielding layer, said shielding layer configured to substantially reduce the magnitude of eddy currents induced in a conductive material by a magnetic field passing through said shielding layer;b) providing a solid material having a permittivity (ε) less than about 2 having a top surface and a bottom surface as a spacer;c) associating a radio frequency loop antenna with said top surface of said spacer;d) associating said spacer with said shielding layer so that said bottom surface of said spacer faces said first side of said shielding layer whereby said antenna is maintained at a distance from said shielding layer;and e) functionally associating an RFID circuit with said antenna.
  19. 25
    The method of any of claims 23-24, wherein said antenna and said spacer are devoid of direct attachment.
  20. 26
    The method of any of claims 23-25 further comprising, at least partially encasing said shielding layer in said casing so that said bottom surface of said spacer faces said first side of said layer wherein said casing serves to hold together, at least partially, said shielding layer and said spacer.
  21. 28
    The method of any of claims 23-27, wherein said functional associating of said RFID circuit with said antenna is such that current produced in said antenna by induction is useable for operation of said RFID circuit.
  22. 29
    The method of any of claims 23-28, wherein said distance at which said antenna is maintained from said shielding layer is substantially the thickness of said spacer between said top surface and said bottom surface.
  23. 30
    The method of any of claims 23-29, further comprising:e) adding at least one non-conducting second spacer layer to said second side of said shielding layer.
  24. 33
    The method of any of claims 23-29, further comprising:e) applying an adhesive layer to said second side of said shielding layer.
  25. 34
    The method of any of claims 23-33, wherein said associating of said antenna with said top surface of said spacer comprises attaching said antenna to said top surface.
  26. 36
    The method of any of claims 23-35, wherein said associating said antenna with said top surface of said spacer comprises embedding said antenna in said spacer.
  27. 37
    The method of any of claims 23-36, wherein said associating said antenna with said top surface of said spacer comprises depositing a suitable material on said top surface of said spacer so as to constitute said antenna.
  28. 38
    The method of any of claims 23-37, wherein said associating said antenna with said top surface of said spacer comprises sandwiching said antenna between said spacer and an additional cover layer of a material.
  29. 39
    The method of any of claims 23-38, wherein said associating of said spacer with said shielding layer comprises attaching said spacer to said shielding layer.
  30. 41
    The method of any of claims 23-40, further comprising embedding said RFID circuit in said shielding layer.
  31. 42
    The method of any of claims 23-40, further comprising sandwiching said RFID circuit between said shielding layer and said spacer.
  32. 43
    The method of any of claims 23-40, further comprising embedding said RFID circuit in said spacer.
  33. 46
    A method of identifying a vehicle comprising:a) securing to said vehicle an RFID tag of claim I so that said shielding layer is located between said antenna and said vehicle;b) placing an identification tag reader in proximity of said antenna;c) activating said identification tag reader to provide power to said RFID circuit through said antenna so that said RFID circuit transmits identification data;and d) receiving said transmitted identification data.
Independent claims33