Abstract:
An RFID information medium transmits and receives data to and from an external reader in a noncontact manner. The RFID information medium is provided with a main body section having an insulating member, either an antenna or an antenna member arranged on the main body section, and a conductor arranged on the main body section. The conductor has a conductive material layer. The conductive material layer partially overlaps the antenna or the antenna member in the thickness direction of the main body section.
Abstract:
A non-contact IC label includes a magnetic sheet, an IC chip arranged on the magnetic sheet, a first antenna portion including a first connection portion connected to the IC chip and arranged on the magnetic sheet to extend in a first direction from the first connection portion, and a second antenna portion including a second connection portion connected to the IC chip and arranged on the magnetic sheet to extend in a second direction from the second connection portion, wherein each of the first direction and the second direction is along one side of the magnetic sheet, the first direction and the second direction differ from each other, and each of a length of the first antenna portion in a direction perpendicular to the first direction and a length of the second antenna portion in a direction perpendicular to the second direction ranges from 2 mm to 15 mm.
Abstract:
An RFID information medium transmits and receives data to and from an external reader in a noncontact manner. The RFID information medium is provided with a main body section having an insulating member, either an antenna or an antenna member arranged on the main body section, and a conductor arranged on the main body section. The conductor has a conductive material layer. The conductive material layer partially overlaps the antenna or the antenna member in the thickness direction of the main body section.
Abstract:
A non-contact IC label includes a magnetic sheet, an IC chip arranged on the magnetic sheet, a first antenna portion including a first connection portion connected to the IC chip and arranged on the magnetic sheet to extend in a first direction from the first connection portion, and a second antenna portion including a second connection portion connected to the IC chip and arranged on the magnetic sheet to extend in a second direction from the second connection portion, wherein each of the first direction and the second direction is along one side of the magnetic sheet, the first direction and the second direction differ from each other, and each of a length of the first antenna portion in a direction perpendicular to the first direction and a length of the second antenna portion in a direction perpendicular to the second direction ranges from 2 mm to 15 mm.
Abstract:
A printer has transportation paths for conveying media in two directions, including a first transportation path P1 and a second transportation path P2 (or third transportation path P3) perpendicular to the first transportation path P1. The printer is constructed and configured to provide a single compact unit that can be used for media processing by reading and printing the media, as well as for printing receipts and validation printing.
Abstract:
An apparatus includes a passage along which a recording medium with magnetic information recorded thereon can travel and an information read head disposed along the passage for reading the magnetic information. The apparatus also includes a first print head disposed on the first side of the passage and a second print head disposed on the second side of the passage. The first print head prints information on a first surface of the recording media based on data obtained by the information read head and the second print head prints information on a second surface of the recording media based on the data obtained by the information read head. Methods of processing a recording medium with magnetic information recorded thereon also are disclosed.
Abstract:
A space for housing an optical sensor is formed between a detection gear of a drive transfer gear and a frame for supporting the detection gear. A detected part shaped like comb teeth is formed integrally on inner walls of the detection gear. The optical sensor is placed so that the detected part passes through a space between a photo emitter and a photo receptor of the optical sensor. Since the detection gear and the frame protect the optical sensor from stray light and interfering substances such as paper powder, or the like, a high-reliability, small-sized detection mechanism can be provided.
Abstract:
A printing method for printing a barcode forms a plurality of dots on a print medium from one end of the bars to the other end by discharging ink droplets from print nozzles assigned to print the bars from among a plurality of nozzles aligned in a direction intersecting the bars. The printing method divides the barcode in the direction of the length of the bars into a plurality of segments, changes which of the plural nozzles are assigned as print nozzles in each of the segments, and discharges ink from the print nozzles in each of the segments to print the barcode.
Abstract:
A printer 1 has transportation paths for conveying media in two directions, that of a first transportation path P1 and that of a second transportation path P2 (or third transportation path P3) perpendicular to the first transportation path P1. With this printer 1 a single compact unit can be used for media processing by reading and printing the media, as well as for printing receipts and validation printing.
Abstract:
A composition includes a binder component and a conductive powder and a high-refractive-index powder both dispersed in the binder component, wherein the conductive powder includes 0.1 to 30 mass % of a tin hydroxide powder and 70 to 99.9 mass % of other conductive powder. The composition enables to form a transparent conductive film having excellent scratch resistance, excellent antistatic properties, an extremely high visible light transmittance and a controllable refractive index. Also described is the transparent conductive film. Further described is a display having the transparent conductive film on the display surface.