Abstract:
PROBLEM TO BE SOLVED: To provide a non-contact type data receiving and transmitting object for repeatedly sticking on a metallic object and becoming usable by being induced with electromotive force sufficiently exceeding operation electromotive force of an IC chip even when it contacts with the metallic object. SOLUTION: A non-contact type data receiving and transmitting object 10, comprising a base material 11; an inlet 14 disposed on one surface 11a of the base material 11 and composed of an antenna 12 and an IC chip 13 connected with each other; a magnetic layer 15 disposed on the other surface 11b of the base material 11; a paramagnetic layer 16 disposed on one surface 15a of the magnetic layer 15 not to be magnetized; and a ferromagnetic layer 17 disposed on one surface 16a of the paramagnetic layer 16 and having spontaneous magnetization is provided. COPYRIGHT: (C)2006,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To provide a non-contact type data receiving and transmitting object for repeatedly sticking on a metallic object and becoming usable by being induced with electromotive force sufficiently exceeding operation electromotive force of an IC chip even when it contacts with the metallic object. SOLUTION: A non-contact type data receiving and transmitting object 10, comprising a base material 11; an inlet 14 disposed on one surface 11a of the base material 11 and composed of an antenna 12 and an IC chip 13 connected with each other; a magnetic layer 15 disposed on the other surface 11b of the base material 11; and a ferromagnetic layer 16 disposed one surface 15a of the magnetic layer 15 and having spontaneous magnetization is provided. COPYRIGHT: (C)2006,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To provide a semiconductor part for relocating each semiconductor chip at a prescribed position to a desired base without taking out of a substrate, or the like, and to provide a method for manufacturing the semiconductor part. SOLUTION: The semiconductor part 20 in which at least one portion of a semiconductor chip 12 is in contact with a base 11 made of a first synthetic resin is injected toward a body 40 to be deposited in the state of a solid. The semiconductor part 20 flying in space to the body 40 to be deposited after injection is heated, the base 11 is liquefied partially or entirely, and the semiconductor part 20 in which the base 11 is liquefied partially or entirely is passed through the atmosphere of adhesive vapor. A method for mounting the semiconductor part 20 for depositing the semiconductor part 20 to the body 40 to be deposited is provided by using one portion or entirety of the liquefied base 11 in which adhesive vapor is deposited. COPYRIGHT: (C)2006,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To provide a semiconductor part for relocating each semiconductor chip at a prescribed position to a desired base without taking out of a substrate, or the like, and to provide a method for manufacturing the semiconductor part. SOLUTION: The semiconductor part 20 in which at least one portion of a semiconductor chip 12 is in contact with a base 11 made of a first synthetic resin is injected toward a body 40 to be deposited in the state of a solid. The semiconductor part 20 flying in space to the body 40 to be deposited after injection is heated, and the base 11 is liquefied partially or entirely. A method for mounting the semiconductor part 20 for depositing the semiconductor part 20 to the body 40 to be deposited is provided by using one portion or entirety of the liquefied base 11. COPYRIGHT: (C)2006,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To provide a method for manufacturing a noncontact data reception/transmission body, capable of accurately and stably disposing an antenna for a booster and an inlet in a proximity state.SOLUTION: The method for manufacturing a noncontact data reception/transmission body includes: a step A of joining a set of clothes 11 to form a storage part 12 that has a locking part for locking at least a part of an inlet 15; a step B of locking at least the part of the inlet 15 to the locking part and storing the inlet in the storage part 12; and a step C of forming a holding part 17 at an opening side of the storage part 12 along a part of the outer edge of the inlet 15 stored in the storage part 12, for holding the inlet 15 in the storage part 12. The second antenna 16 is formed of conductive fibers and the locking part is formed in the step A, and/or the second antenna 16 is formed of the conductive fibers and the holding part 17 is formed in the step C.
Abstract:
PROBLEM TO BE SOLVED: To provide an IC tag that can be fitted to two adjoining columnar members even if the interval between the columnar members somewhat varies, and a method of managing objects by using the IC tag.SOLUTION: An IC tag has equally shaped fixing members 20A and 20B being fitted to each other with two adjoining columnar members in-between. Each of the paired fixing members 20A and 20B has a first external fitting part 21 and a second external fitting part 22 disposed away from each other and externally fitted to one or the other of the two adjoining columnar members. The shape of the face of the first external fitting part 21 opposing a columnar member is equal to the external shape of what results from bisecting the columnar member in its lengthwise direction. The second external fitting part 22 has a first region αequal in shape to one of two regions resulting from perpendicularly bisecting the first external fitting part 21 in its widthwise direction, a second region γequal in shape to the other of the two regions, and a third region β intervening between the first region αand the second region γand extending in the widthwise direction of the first external fitting part 21.
Abstract:
PROBLEM TO BE SOLVED: To provide a non-contact data receiver/transmitter which is excellent in adhesion to a surface to be adhered having a large curvature, and prevents the deterioration of communication characteristics of an antenna. SOLUTION: The non-contact data receiver/transmitter 10 includes: an inlet 11; a coating material 12 for coating the inlet 11; and an adhesive layer 13 installed on one face 12a of the coating material 12. The coating material 12 is formed of silicone rubber or vulcanized rubber, and has a plurality of recessed parts 14 having intervals on the one face 12a of the coating material 12 along the longitudinal direction of the coating material 12 between the coating material 12 and the adhesive layer 13. COPYRIGHT: (C)2011,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a new form of an RFID label capable of improving work efficiency in attaching to an article, and separating an RFID inlet from the surface of the article by making it hard to be peeled off after attachment to the article. SOLUTION: In a first base 12A and a second base 12B, a first erected part 14 and a second erected part 15 are formed by respective slits 13A, 13B separated from a folding line 12C, and are overlapped each other. An RFID inlet 16 is held bonded at the end parts of the first erected part 14 and the second erected part 15. By opening the first base 12A and the second base 12B, the first erected part 14 and the second erected part 15 with the end parts bonded thereto have the RFID inlet 16 to be erected. COPYRIGHT: (C)2010,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a non-contact data receiver/transmitter which has excellent flexibility and resistance to chemicals, weather, and heat further, preventing the decrease of the communication characteristics of an antenna. SOLUTION: The non-contact data receiver/transmitter includes: an inlet; an adhesive that coats the inlet; and a first substrate and a second substrate that sandwich the inlet with the adhesive therebetween. The adhesive comprises liquid silicone rubber, and the first and second substrates comprise silicone rubber or vulcanized rubber. COPYRIGHT: (C)2010,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a contactless data receiving/transmitting body which has wide reading/writing directivity and a long reading/writing distance in a state of being pasted directly to metal. SOLUTION: In a contactless data receiving/transmitting body 10 which is equipped with; a substrate 11 which is constituted foldable so that a first area 11A and a second area 11B face mutually different directions; a first antenna 12A prepared in the first area 11A and a second antenna 12B prepared in the second area 11B; an IC chip 13 prepared in the first area 11A and connected to the first antenna 12A; and a magnetic layer 14 arranged in the other face 11b of the substrate 11, the first antenna 12A and the second antenna 12B are set up so that electromagnetic induction may arise in the first area 11A and the second area 11B. COPYRIGHT: (C)2008,JPO&INPIT