Abstract:
A radio tag is disclosed that includes an inlet having a base member, an antenna pattern, and a circuit chip for performing radio communications, the antenna pattern and the circuit chip being provided in the base member and includes a spacer on which the inlet is provided. The spacer has a length in a longitudinal direction thereof twice or more as great as a length of the inlet in the longitudinal direction. The spacer has a flection part at which the spacer is foldable in such a manner as to form an attached surface to be attached to an attached subject of the radio tag.
Abstract:
A radio tag is disclosed that includes an inlet having a base member, an antenna pattern, and a circuit chip for performing radio communications, the antenna pattern and the circuit chip being provided in the base member and includes a spacer on which the inlet is provided. The spacer has a length in a longitudinal direction thereof twice or more as great as a length of the inlet in the longitudinal direction. The spacer has a flection part at which the spacer is foldable in such a manner as to form an attached surface to be attached to an attached subject of the radio tag.
Abstract:
A radio-frequency identification (RFID) tag includes: a plate-shaped sealing piece made of an elastic material. An inlet is enclosed within the sealing piece. The inlet includes an electronic component and an antenna connected to the electronic component. A pair of reinforcing pieces are located respectively on the front and back surfaces of the sealing piece so as to sandwich the electronic component. The reinforcing pieces are made of a first material harder than the elastic material. A joint piece configured to couple the reinforcing pieces to each other. The joint piece is made of a second material harder than the elastic material.
Abstract:
In a manufacturing method of a thin and small RFID tag, an antenna metal pattern is formed on a substrate, going once around a dielectric plate, and a recess is formed on the substrate to house an IC chip. A strap on which the IC chip is mounted is connected and fastened to the substrate in the position and orientation in which the IC chip is housed in the recess.
Abstract:
An RFID tag includes a dielectric member, an antenna pattern formed on and around a surface of the dielectric member, and an IC chip that is electrically connected to the antenna pattern by means of two chip pads.
Abstract:
According to an aspect of the invention, a wireless tag includes a base member that is flexible and on a surface of which a wiring pattern is formed, a wireless circuit chip that is mounted on the base member and connected to the wiring pattern; protective members that cover the base member and the wireless circuit chip and are lower in hardness than the base member, and a plurality of spherical projections that are arranged on the surfaces of the protective members, higher in hardness than the base member, and so arranged as to interfere with other adjacent spherical projections when at least the protective members are bent beyond a predetermined angle.
Abstract:
A RFID tag, which decreases a bending stress and simultaneously prevents an antenna break, is provided. The RFID tag includes a base, an antenna for communication which extends on the base, a circuit chip which performs radio communication through the antenna. The RFID tag further includes a chip reinforcement member which covers a periphery of the circuit chip and a portion of the antenna and a covering member which cover the base, the antenna, the circuit chip and the chip reinforcement member. The covering member is more flexible than the chip reinforcement member.
Abstract:
An RFID tag has an IC chip and an antenna connected to the IC chip, the RFID tag including: a spacer that has elasticity; a first locking section that is formed around the IC chip; a second locking section that is arranged in a position apart from the first locking section across the spacer, is displaced toward the first locking section and locked on the first locking section by pressing force with which the spacer is pressed, and applies reactive force against the pressing force around the IC chip via the first locking section when the pressing force is removed; and a destruction section that destroys the IC chip or the antenna with the reactive force from the second locking section.
Abstract:
A radio-frequency identification (RFID) unit includes a radio-frequency identification (RFID) tag configured to receive radio signals having a wavelength λ. A block has the top surface on which the radio-frequency identification tag is set. The block is made of a metallic material. The height of the block is set equal to or larger than one sixteenth the wavelength λ.
Abstract:
A radio-frequency-identification tag antenna includes a film base, a plurality of antenna patterns for transmission and reception, which is formed in parallel on the film base, and a cut line that is formed on the film base between adjacent antenna patterns along the antenna patterns from an inside to an outer edge of the film base. A part of the film base on which the antenna patterns are formed is folded or bent in a predetermined direction using the cut line.