EP2012258B2

Article provided with electromagnetically coupled module

Abstract

This record has no abstract on file.

EP2012258B2, drawing sheet 1
Sheet 1 of 39

Term

0.4 yearsleft in the term

Expires 6 March 2027.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

17 claims: 1 independent, 16 dependent

  1. 1
    An article with an electromagnetic-coupling module, comprising an article (200-480), and an electromagnetic-coupling module (1 a-1 r) attached to the article (200-480), wherein the electromagnetic-coupling module (1a-1r) comprises a wireless IC chip (5);and wherein the article (200-480) comprises a radiation plate (20);characterized in that the electromagnetic-coupling module (1a-1r) comprises a feeder circuit board (10) on which the wireless IC chip (5) is mounted and in which a feeder circuit (16) including a resonance circuit having a predetermined resonance frequency is provided;and the radiation plate (20) is configured to radiate a transmission signal supplied from the feeder circuit (16) of the electromagnetic-coupling module via electromagnetic coupling and/or for supplying a received reception signal to the feeder circuit (16) via electromagnetic coupling;and the radiation plate (20) is a metal object that is originally possessed by the article.
  2. 2
    The article with an electromagnetic-coupling module according to Claim 1, wherein the resonance circuit is a lumped-constant resonance circuit formed of a capacitor element (C1, C2) and an inductor element (L).
  3. 3
    The article with an electromagnetic-coupling module according to Claim 2, wherein the lumped-constant resonance circuit is an LC series resonance circuit or an LC parallel resonance circuit.
  4. 4
    The article with an electromagnetic-coupling module according to Claim 3, wherein the lumped-constant resonance circuit is configured to include a plurality of LC series resonance circuits or a plurality of LC parallel resonance circuits.
  5. 5
    The article with an electromagnetic-coupling module according to one of Claims 2 to 4, wherein the capacitor element (C1, C2) is disposed downstream of the wireless IC chip (5) and between the wireless IC chip (5) and the inductor element (L).
  6. 6
    The article with an electromagnetic-coupling module according to one of Claims 2 to 5, wherein the feeder circuit board (10) is a multilayer board (11A-G;31A-F;41A-F;51A-D;71A-F;81A-H;91A-E;101A-E) including a plurality of dielectric layers or magnetic layers, and the capacitor element (C1, C2) and the inductor element (L) are formed inside the multilayer board.
  7. 7
    The article with an electromagnetic-coupling module according to one of Claims 1 to 6, wherein the feeder circuit board (10) is a rigid board made of resin or ceramic.
  8. 8
    The article with an electromagnetic-coupling module according to one of Claims 1 to 7, wherein an electrical length of the radiation plate (20) is an integral multiple of a half wavelength of the resonance frequency.
  9. 9
    The article with an electromagnetic-coupling module according to one of Claims 1 to 8, wherein the wireless IC chip (5) is provided with a chip-side electrode pattern, the feeder circuit board (10) is provided with a first board-side electrode pattern (32;42;52;75a, 75b), and the wireless IC chip (5) and the feeder circuit board (10) are directly connected electrically to each other by the chip-side electrode pattern and the first board-side electrode pattern (32;42;52;75a, 75b).
  10. 10
    The article with an electromagnetic-coupling module according to one of Claims 1 to 9, wherein the wireless IC chip (5) is provided with a chip-side electrode pattern (87a, 87b), the feeder circuit board (10) is provided with a first board-side electrode pattern (86a, 86b), and the wireless IC chip (5) and the feeder circuit board (10) are connected to each other by capacitive coupling between the chip-side electrode pattern (87a, 87b) and the first board-side electrode pattern (86a, 86b).
  11. 11
    The article with an electromagnetic-coupling module according to Claim 10, wherein the chip-side electrode pattern (87a, 87b) and the first board-side electrode pattern (86a, 86b) are mutually parallel planar electrode patterns, and the wireless IC chip (5) and the feeder circuit board (10) are bonded together via a dielectric adhesive layer.
  12. 12
    The article with an electromagnetic-coupling module according to one of Claims 1 to 8, wherein the wireless IC chip (5) is provided with a chip-side electrode pattern (99), the feeder circuit board (10) is provided with a first board-side electrode pattem (92a, 92b;102a), and the wireless IC chip (5) and the feeder circuit board (10) are connected to each other by magnetic coupling between the chip-side electrode pattern (99) and the first board-side electrode pattern (92a, 92b;102a).
  13. 13
    The article with an electromagnetic-coupling module according to Claim 12, wherein each of the chip-side electrode pattern (99) and the first board-side electrode pattern (92a, 92b;102a) is a coil-shaped electrode pattern, and the wireless IC chip (5) and the feeder circuit board (10) are bonded together via an insulating or magnetic adhesive layer.
  14. 14
    The article with an electromagnetic-coupling module according to one of Claims 1 to 13, wherein the feeder circuit board (10) is provided with a second board-side electrode pattern (72a, 72b), and the feeder circuit board (10) and the radiation plate (20) are connected to each other by capacitive coupling between the second board-side electrode pattern (72a, 72b) and the radiation plate (20).
  15. 15
    The article with an electromagnetic-coupling module according to Claim 14, wherein the second board-side electrode pattern (72a, 72b) is a planar electrode pattern disposed in parallel to the radiation plate (20), and the feeder circuit board (10) and the radiation plate (20) are bonded together via a dielectric adhesive layer.
  16. 16
    The article with an electromagnetic-coupling module according to one of Claims 1 to 13, wherein the feeder circuit board (10) is provided with a second board-side electrode pattern (82a, 82b), and the feeder circuit board (10) and the radiation plate (20) are bonded together by magnetic coupling between the second board-side electrode pattern (82a, 82b) and the radiation plate (20).
  17. 17
    The article with an electromagnetic-coupling module according to Claim 16, wherein the second board-side electrode pattern (82a, 82b) is a coil-shaped electrode pattern, and the feeder circuit board (10) and the radiation plate (20) are bonded together via an insulating or magnetic adhesive layer.
Independent claims17