Abstract:
Es wird ein kontaktfreier Daten-Sender/Empfänger bereitgestellt, umfassend einen IC-Chip, eine erste Antenne, an die der IC-Chip angeschlossen ist, und eine zweite Antenne zur Verwendung als Verstärker, die zusammen mit der ersten Antenne kontaktfrei schwingt. Die erste Antenne ist eine ringförmige Antenne mit mindestens drei geradlinigen Abschnitten ist. Die zweite Antenne weist einen zentralen Abschnitt auf, der derart gebogen ist, dass sich Teile des zentralen Abschnitts jeweils entlang den drei geradlinigen Abschnitten der ersten Antenne erstrecken und sich zueinander in einem Winkel befinden, der größer oder gleich 90° ist. Der IC-Chip ist an den drei geradlinigen Abschnitten der ersten Antenne vorgesehen und an den geradlinigen Abschnitten mit der ersten Antenne verbunden.
Abstract:
268 NON-CONTACT IC LABEL, MANUFACTURING METHOD AND MANUFACTURING APPARATUS THEREFOR A BSI R_ACT A NON-CONINCL IC LABEL COMPRISING AN CLECIRICALLY INSULATING FIRST SUBSIMIC: AN 5 CLECTRICALIV CONNECTED ANTENRIA COIL AND IC: CHIP PROVIDED ON ORIC SURFACE OF SAID SUBSTIAIE, A MAGNETIC LAVER PROVIDED ON SAID ONE SURFACE OF SAID SUBSTRATE SO AS TO COVER SAID ANTENNA COIL AND SAID IC CHIP. A FIRST ADHESIVE LAVER PIOVIDED ON SAID MAGNETIC LAVER. AN ELECTRICATTV INSULATING SECOND SUBSTRATE PTOVIDED ON SAID FIRST
Abstract:
A noncontact IC label includes an electrically insulating first board; an antenna coil provided on one plane of the first board; an IC chip electrically connected to the antenna coil; a magnetic layer provided to cover the antenna coil and the IC chip on the one plane of the first board; a first adhesive layer provided through the magnetic layer; an electrically insulating second board provided through the first adhesive layer; a second adhesive layer provided through the second board; peeling paper provided through the second adhesive layer; and an upper member provided on the other plane of the first board through a third adhesive layer.
Abstract:
A noncontact data receiver/transmitter (10) is provided with an inlet (14), which is composed of a base material (11), an antenna (12) provided on one plane of the base material and connected therewith, and an IC chip (13); and a magnetic material layer (15) arranged to cover the antenna (12) and/or the IC chip (13) constituting the inlet (14). The main ingredient of the magnetic material layer (15) is a resin containing a filler composed of magnetic fine particles. The average diameter of the magnetic fine particle is 3μm or more but not more than 200μm.
Abstract:
PROBLEM TO BE SOLVED: To provide a radio IC mounting article in which a radio IC is mounted and a manufacturing method of the same capable of adjusting directivity and reading distance and capable of broadening directivity without performing detailed resonance setting even when an IC chip and an antenna for a microwave band or an ultra-high frequency band are used, and a management method of the radio IC mounting article.SOLUTION: A radio IC mounting article, which is a radio IC mounting article communicating in a microwave band or an ultra-high frequency band, includes: a substrate in which an IC chip and an antenna electrically connected with the IC chip are mounted; a first booster antenna which is electromagnetically coupled with the antenna; a second booster antenna which is electromagnetically coupled with the first booster antenna; and an article in which the substrate, the first booster antenna and the second booster antenna are mounted.
Abstract:
PROBLEM TO BE SOLVED: To provide a non-contact type data reception/transmission body whose communication performance is not deteriorated, even if being exposed to high-temperature/high-pressure conditions or being applied with external force.SOLUTION: A non-contact type data reception/transmission body 10 includes: a base material 11; an inlet 20 provided on one surface 11a of the base material 11, and having an IC chip 12 and a first antenna 13 electrically connected with each other; and a second antenna 30 for a booster arranged oppositely to the first antenna 13 in a non-adhesion state. The second antenna 30 is made from conductive fibers.
Abstract:
PROBLEM TO BE SOLVED: To provide an IC tag capable of enlarging the directivity of an antenna to perform communications from all directions, without having to adjust the position of the antenna.SOLUTION: The IC tag 10 includes a housing 11, an inlet 21 and a fixing means. The housing 11 is installed onto a rod-shaped member 32A. In addition, the housing 11 is connected to and fixed to the rod-shaped member 32A by the fixing means; the housing includes an antenna loaded section 12 and an IC chip loaded section 13; the antenna loaded section is connected onto and fixed to the rod-shaped member 32A; further, at least a part of the tip end 25a of a radiating element 25 in the antenna 24 is arranged at the antenna loaded section 12; an IC chip 23 is arranged at the IC chip loaded section; when the antenna loaded section is connected onto and fixed to the rod-shaped member 32A, the tip end 25a of the radiating element 25 is arranged along with one surface of the antenna loaded section 12 so that at least a part of the tip end 25a at the radiating element 25 faces at and crosses to the rod-shaped member 32A; and the IC chip 23 is arranged an region made of a non-conductive member, within the IC chip loaded sections 13.
Abstract:
PROBLEM TO BE SOLVED: To provide a non-contact data receiver/transmitter capable of being stuck to a three-dimensionally curved surface such as a gas cylinder without causing wrinkles, and a gas cylinder therewith. SOLUTION: The non-contact data receiver/transmitter 10 includes: a stretchable base material 11; an adhesive layer 12 formed on one surface 11a of the base material 11; an antenna 13 and an IC chip 14 which are arranged at one side 12a of the adhesive layer 12 and connected with each other; and a magnetic layer 15 formed so as to cover the antenna 13 and the IC chip 14 at the one side 12a of the adhesive layer 12. The base material 11 is formed of polyurethane resin or polyethylene resin. COPYRIGHT: (C)2011,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide an RFID label sheet and an RFID label capable of eliminating waste of resources by eliminating the need for a release paper, making it hard to be peeled off after attachment to an article, and improving work efficiency in attaching to the article. SOLUTION: In an RFID label sheet 11, a first base 12 and a second base 13, having an inlet sheet 14 provided with an RFID inlet 15, are stacked and adhered between a first adhesive region 21A and a second adhesive region 22A. On adhesive surfaces of a first release adhesive region 21B and a second release adhesive region 22B, an adhesive layer 31A and a release agent layer 32B are adhered each other while a release agent layer 31B and an adhesive layer 32A are adhered. COPYRIGHT: (C)2010,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a non-contact data transceiving body which prevents the deterioration of communication characteristics of an antenna by reducing a housing area which directly contacts with the antenna while weather resistance and flexibility are excellent. SOLUTION: The non-contact type data transceiving body 10 of the invention is provided with a housing 11 in which a concave part 16 is prepared, an inlet 12 which is built in the concave part 16 and a sealing material 18 which is placed on the inlet 12 in the concave part 16, and seals the housing 11. At least end parts 21a, 22a of opposite sides of a feeding point form a ring shape, and at least holes 17 of nearly the same shape as the end parts 21a, 22a are prepared in a facing part of the end parts 21a, 22a of the housing 11 in the antenna 15 of the inlet 12. COPYRIGHT: (C)2008,JPO&INPIT