Abstract:
Изобретение относится к носителям информации и более конкретно - к носителю в виде карты, которая может использоваться как персональная бизнес-карта, содержащая сведения о конкретном лице, а также как рекламный носитель или средство продвижения товаров или услуг. Карта по изобретению содержит по крайней мере оптический носитель, предназначенный для хранения информации, считываемой с использованием лазерного луча, а также второй информационный носитель, предназначенный для хранения визуально считываемой информации, причем первый и второй носители соединены между собой. Соединение между носителями выполняется предпочтительно неразъемным. Второй носитель может выполняться из картона, бумаги, пластика, оптически прозрачных материалов из группы: поликарбонат, полиметилметакрилат или лавсан, или иных оптически прозрачных материалов, содержать графическую информацию с одной или обеих сторон, а также обеспечивать хранение цифровой информации, которая может быть считана с использованием лазерного луча со стороны расположения оптического носителя. Оптический и второй носители могут быть соединены с возможностью перемещения друг относительно друга (в частности, углового перемещения). В результате карта характеризуется достаточно большим объемом хранимой информации, сравнительной простой и недорогой технологией изготовления, а также может быть считана в стандартных приводах современных считывающих устройств.
Abstract:
The present invention relates to a storage element carrier (20) comprising a first part (21) with a storage element (30) and a second part (22) with an optical recording medium (10). The invention further relates to an optical recording medium (10) comprising a clamping area (1), a recording area (2) and an outer area (3) outside of the recording area (2). According to a first or second aspect of the invention a first elevated ring (4) or a first set of protrusions (4') respectively is located in the clamping area (1). According to a third aspect of the invention the thickness (T2) of the optical recording medium (10) in at least one part of the recording area (2) is smaller than the thickness (T1) of the optical recording medium (10) in the clamping area (1). According to a fourth aspect the thickness (T3) of the optical recording medium (10) in at least one part of the outer area (3) is greater than the thickness (T2) in the recording area (2).
Abstract:
Improved optical data cards 20, and compatibly-configured systems, methods, and software are useful in advertising, communications, and the completion of on-line and other electronically-processed transactions. Optical data cards 20 comprise optically readable data comprising unique card identifiers and seating devices configured for seating the cards 20 in an optical reading devices. When used in accordance with suitably-configured systems and processes, the cards 20 are useful, for example, in furthering secure electronic transactions in goods and services. Optical data cards 20 also may comprise a non-optical data set readable by non-optical reading devices such as for example magnetic swipe readers and RFID readers.
Abstract:
Der Datenträger basiert auf dem CD oder DVD Standard, hat aber die Form einer Visitenkarte und zudem die Funktionalität einer Transponder Card. Der Datenträger kann unter anderem in Lesegeräten mit Schublade ausgelesen werden, was durch die Zentrierkante (5) ermöglicht wird. Innerhalb der Zentrierkante (5) ist der Datenträger ca. 1.3 mm, ausserhalb nur ca. 0.4 mm dick. Der Datenträger weist zwei Schichten (1, 2) auf, wobei die erste Schicht (1) Datenbereiche gemäss dem CD oder DVD Standard aufweist und die zweite Schicht (2) als Transponder Card mit einer integrierten Schaltung (10) und einer Antenne ausgestaltet ist. Die beiden Schichten (1, 2) werden separat gefertigt und erst später zusammengeklebt. Die Herstellung ist dadurch kostengünstig. Die zweite Schicht (2) ist aus PVC. Der Datenträger ist dadurch bruchfester als bekannte Datenträger dieser Art.
Abstract:
A system comprises a first data carrier (MOD) and a second data carrier (CDC). The first data carrier (MOD) is inserted in the second data carrier (CDC). The system is characterized in that, the first data carrier (MOD) is removable from the second data carrier (CDC), in that the first data carrier (MOD) is readable by a first reading machine, and in that the second data carrier (CDC) is readable by a second reading machine, which is different than the first reading machine.
Abstract:
The present invention relates to a non-hole optical disc for data storage and reading, it belongs to the field of the high density digital optical storage technique. The optical disc includes a substrate layer, a cover layer and an information record layer, The substrate layer, the cover layer and the information record layer are stacked together in this order. From the center to the periphery, the information record layer is divided into a lead-out area, a data area and a lead-in area, or is divided into a lead-in area, a data area and a lead-out area, or is formed as a data record layer in its entirety. The data area of the non-hole optical disc has closely-arranged circular information tracks or spiral information tracks. The non-hole optical disc further comprises a decorating area; it is provided on the periphery of the disc, the shape of the decorating area could be square, circle or other geometric shape. The material of the periphery part of the center of the optical disc can be the same as or different from that of other parts of the optical disc. The non-hole optical disc according to the present invention increases the data storage area of optical disc; therefore it has larger memory capacity. The present invention is suitable for the optical information pick up/record apparatus for the optical disc or other information pick up/record mechanism.
Abstract:
The present invention relates to a non-hole optical disc for data storage and reading, it belongs to the field of the high density digital optical storage technique. The optical disc includes a substrate layer, a cover layer and an information record layer, The substrate layer, the cover layer and the information record layer are stacked together in this order. From the center to the periphery, the information record layer is divided into a lead-out area, a data area and a lead-in area, or is divided into a lead-in area, a data area and a lead-out area, or is formed as a data record layer in its entirety. The data area of the non-hole optical disc has closely-arranged circular information tracks or spiral information tracks. The non-hole optical disc further comprises a decorating area; it is provided on the periphery of the disc, the shape of the decorating area could be square, circle or other geometric shape. The material of the periphery part of the center of the optical disc can be the same as or different from that of other parts of the optical disc. The non-hole optical disc according to the present invention increases the data storage area of optical disc; therefore it has larger memory capacity. The present invention is suitable for the optical information pick up/record apparatus for the optical disc or other information pick up/record mechanism.
Abstract:
A media card (10), having a flat body, so dimensioned that it may be enclosed by a media disk (30). The flat body of the media card defines an opening arranged to be mounted on a spindle of a media device. The flat body includes first and second sides (13), a digitally encoded portion (21) on the second side (13) arranged to interact with the media device, a code for facilitating usage of the media card, and a cover which conceals the code and which may be removed for exposing the code in order to exercise usage of the media card (10).