EP1548639A1

Wireless IC tag, and method and apparatus for manufacturing the same

Abstract

In a wireless IC tag (25), metallic antennas as thin films are deposited on the front and back surfaces of a second spacer (7a) made of a heat-resistance glass epoxy material having a desired dielectric constant to form a first antennas (3a) and a second antenna (8a). An IC chip (4) is mounted nearly in the center of the first antennas (3a). The second antenna (8a) functions as an auxiliary antenna for resonating to a desired frequency of a transmission radio wave of the first antennas (3a) to strengthen the intensity of the radio wave. Accordingly, even when the IC tag is mounted to a cable or the like, the tag can be mounted in the interior of the enclosure of the cable and thus the radio wave intensity of the first antennas (3a) can be prevented from being weakened by a metallic member in the cable.

EP1548639A1, drawing sheet 1
Sheet 1 of 11

Term

Term ended

Projected expiry passed 20 December 2024, 1.8 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

16 claims: 10 independent, 6 dependent

  1. 1
    A wireless IC tag including an IC chip (4) having identification information stored therein and a first antenna (3) having a predetermined length and connected to said IC chip, wherein said IC chip transmits said identification information with use of an operating power generated from a radio wave having a predetermined frequency received via said first antenna, said wireless IC tag comprising:a first spacer (6) provided between a member (5) and said first antenna for holding a distance therebetween, with said IC chip being mounted on said member;a second antenna (8) having a predetermined length for resonating to the radio wave having said predetermined frequency;and a second spacer (7) provided between said first antenna and said second antenna for holding a distance between said both antennas.
  2. 5
    A method for manufacturing a wireless IC tag comprising the steps of:mounting a first spacer (6) on one surface of a first antenna (3) for transmitting identification information stored in an IC chip (4);mounting a second spacer (7) on the other surface of said first antenna;and mounting a second antenna (8) for resonating to a radio wave having a predetermined frequency together with said first antenna on a surface of said second spacer opposed to said antenna mounted thereon.
  3. 6
    A method for manufacturing a wireless IC tag, comprising the steps of:mounting a first spacer material (12) on one surface of a first antenna material (11) on which a predetermined number of first antennas (3a) connected to IC chips (4) having identification information stored therein are arranged on a plate-shaped base material (2A) in their width direction in the form of strips, and feeding out said mounted material forward;mounting a plate-shaped second spacer material (13) on the other surface of said first antenna material being fed out, and feeding out said mounted material forward;mounting said plate-shaped antenna material on a surface of said coming second spacer material opposed to said first antenna material mounted thereon, and feeding out said mounted material forward as a wireless IC tag material;and sequentially cutting said wireless IC tag material being fed out to form wireless IC tags (25).
  4. 7
    A method for manufacturing a wireless IC tag, comprising the steps of:mounting a plate-shaped first spacer material (12) on one surface of a first antenna material (11) on which a predetermined number of first antennas (3a) connected to IC chips (4) having identification information stored therein are arranged on a plate-shaped base material (2A) in their width direction in the form of strips, and feeding out said mounted material forward;mounting a plate-shaped second spacer material (13) on the other surface of said first antenna material being fed out, and feeding out said mounted material forward;mounting said second antenna material (14), on which a predetermined number of second antennas (8a) are arranged in their width direction in the form of strips, on a surface of said coming second spacer material opposed to said first antenna material mounted thereon in such a manner that a width-directional position of said first antennas (3a) coincides with width-directional position of said second antenna (8a), and feeding out said mounted material forward as a wireless IC tag material;and sequentially cutting said wireless IC tag material being fed out to form wireless IC tags (25).
  5. 8
    An apparatus for manufacturing a wireless IC tag, comprising:a first feeder (16) for mounting a plate-shaped first spacer material (12) on one surface of a first antenna material (11) on which a predetermined number of first antennas (3a) connected to IC chips (4) having identification information stored therein are arranged on a plate-shaped base material (2A) in their width direction in the form of strips, and feeding out said mounted material forward;a second feeder (17) for mounting a plate-shaped second spacer material (13) on the other surface of said first antenna material being fed out, and feeding out the mounted material forward;a third feeder (18) for mounting as a wireless IC tag material said plate-shaped antenna material (14) on a surface of said coming second spacer material opposed to said first antenna material mounted thereon, and feeding out the mounted material forward;and a cutter (21) for sequentially cutting said wireless IC tag material being fed out to form wireless IC tags (25).
  6. 9
    An apparatus for manufacturing a wireless IC tag, comprising:a first feeder (16) for mounting a plate-shaped first spacer material (12) on one surface of a first antenna material (11) on which a predetermined number of first antennas (3a) connected to IC chips (4) having identification information stored therein are arranged on a plate-shaped base material (2A) in their width direction in the form of strips, and feeding out the mounted material forward;a second feeder (17) for mounting a plate-shaped second spacer material (13) on the other surface of said first antenna material being fed out, and feeding out the mounted material forward;a third feeder (18) for mounting as a wireless IC tag material said plate-shaped second antenna material (14), on which a predetermined number of second antennas (8a) are arranged in their width direction in the form of strips, on a surface of said coming second spacer material opposed to said first antenna material mounted thereon in such a manner that a width-directional position of said first antennas (3a) coincides with width-directional position of said second antenna (8a), and feeding out the mounted material forward;and a cutter for sequentially cutting said wireless IC tag material being fed out to form wireless IC tags (25).
  7. 10
    A wireless IC tag (25) having an IC chip (4) having identification information stored therein an antenna for wirelessly transmitting the identification information recorded in the IC chip, said wireless IC tag comprising:a substrate (61) made of a heat-resistance insulating material;a first antenna (3a) formed on one surface of said substrate and having said IC chip mounted thereon for transmitting the identification information recorded in the IC chip;and a second antenna (8a) formed on the other surface of said substrate and having for resonating to a radio wave having a predetermined frequency at said first antenna.
  8. 12
    A wireless IC tag (25) to be buried in an insulating enclosure (44, 53, 66) of a cable (40, 50, 65, 70, 80) for wirelessly transmitting identification information recorded in an IC chip (4), said wireless IC tag comprising:a second spacer (7a) made of a heat-resistance insulating material;a first antennas (3a) formed on one surface of said second spacer and having said IC chip mounted thereon for transmitting the identification information recorded in the IC chip;and a second antenna (8a) formed on the other surface of said second spacer for resonating to a radio wave having a predetermined frequency at said first antenna,    wherein said insulating enclosure (44, 53, 66) functions as a first spacer for holding a distance between said first antenna and an internal conductor (42, 51, 72, 81) or a shield layer (43, 73) in an interior of said cable.
  9. 13
    A method for manufacturing a wireless IC tag (25) to be buried in an insulating enclosure (44, 53, 66) of a cable (40, 50, 65, 70, 80) for wirelessly transmitting identification information recorded in an IC chip (4), said method comprising the steps of:forming a multiplicity of first antennas (3a) on a first surface of a glass epoxy substrate at equal pitch intervals;forming second antennas (8a) on a second surface of said glass epoxy substrate at respective positions opposed to said first antennas;individually mounting the IC chips (4) on the multiplicity of first antennas respectively in the center thereof to be connected thereto;cutting said glass epoxy substrate into separated wireless IC tags (25) including one of said first antennas on said first surface having one of said IC chips mounted thereon and including one of said second antennas on said second surface;and burying said wireless IC tag in said insulating enclosure (44, 53, 66) during molding of said cable in cable manufacturing steps.
  10. 14
    A wireless IC tag (25) comprising:an IC chip (4) having identification information stored therein;a first antennas (3a) having a predetermined length and connected to said IC chip;a first spacer provided between a member (5) and said first antenna for holding a distance therebetween, with said IC chip being mounted on said member;a second antenna (8a) having a predetermined length for resonating to a radio wave having a predetermined frequency;and a second spacer (7a) provided between said first antenna and said second antenna for holding a distance between said both antennas.