Abstract:
The invention relates to a chip module for an RFID system, in particular for an RFID-label, a coupling label for use in an RFID-label, an RFID-Inlay for an RFID-label, and an RFID label produced using an RFID inlay on a strip-shaped backing material (5, 8), in particular a backing film; an RFID chip (3) and a coupling antenna (4) that is electrically, in particular galvanically, connected to the RFID-chip (3), are arranged on the strip-shaped backing material.
Abstract:
The invention relates to a device (1) for continuously selecting defective components (2) from a certain amount of components (2) which are arranged in a detachable manner on a carrier strip (3) in at least one continuous row, and a device (80) and method for continuously producing a carrier strip (3), which is void of defects, from a carrier strip (3) whereon components (2) are arranged in at least one continuous row, and which comprises defective components (2) and components which are void of defects (2). Said device (1) for continuously selecting defective components (2) comprises a control device (10) which is used to determine defective components, a transfer device (20) which is used to transfer selected, defective components (2), at least one separation device (30, 31, 32), which at least partially separates each component (2) from the carrier strip (3) and replaces it in an offset manner in relation to the preceding position on the carrier strip (3), and at least one selection device (40), which selects a component (2) which is determined as defective by the control device (10) and at least partially separates it from the carrier strip (3) in such a manner that said component is removed by the transfer device (20). Said device can be used, for example, in the production of labels (smart labels).
Abstract:
The problem of the invention is to provide a material web, comprising a supporting web and information carriers positioned thereon, in which the supporting web is constructed as a continuous web and on which are only located faultless information carriers. According to the invention from one material web are separated at least the faulty information carriers and a uniform sequence of faultless information carriers is produced on a supporting web.
Abstract:
From a web of paper a mailing item (10) comprising envelope and contents is printed personalized on a first conveying section (2) in individual stations. After being turned over the web of paper is supplemented, where necessary, by further paper parts, it then being cut to contour laterally and provided with side flaps folded inwards for the envelope. After this, the cut-to-size item is parted as a unit from the web of paper by a cross-cutter (43) and the contents folded on themselves transversely as well as on the cut-to-size item for the envelope. This unit is then diverted at right angles to a second conveying section (3) in which the cover sheets of the envelope are folded open with interposition of the contents, the cover sheets thereby being secured to each other by the side flaps. After this, the envelope opening is closed by the closing flap.
Abstract:
A web layer (2) is deflected on conical deflectors (31, 34) in laterally opposite directions, thereby permitting lateral but parallel displacement of the downstream web section (10) with respect ot the upstream web section (6) at low hight extension of the device (1) and at small deflector angles. The deflectors (31, 34) can be separately positionally adjusted in a tumbling motion and are fixed to a support (14) with cardan joint (54).
Abstract:
A device for folding layer material, the layer material defining layer sections including at least one folded layer section and a connecting layer section laterally directly connecting to the at least one folded layer section, comprises: a device base; a conveying path for conveying the layer material relative to the device base in a conveying direction along a folding path section; and, a folding member including guiding members for longitudinally folding the layer material from an initial layer state to a folded state only within the folding path section while the layer material is conveyed therethrough. The folding path section defines folding path ends including a beginning end where the layer material initially begins to be folded by partly erecting the at least one folded layer section from the initial layer state with respect to the connecting layer section and with respect to the device base, and a finishing end where the layer material reaches and then maintains the folded state. The guiding members deflect the connecting layer section while simultaneously folding the at least one folded layer section to the folded state from the beginning to the finishing ends. A first guide member engages the layer material on a first side and a second guide member engages the layer material on a second side while opposing the first guide member. The first and second guide members are positionally adjustable about a substantially common guide axis. The folding member can comprise a plow folder.
Abstract:
In a production line both the base frame and also the working area is subdivided into modular assemblable modules, the base unit having three reception positions which can be provided with slide-in working units and receptacles for driving units and a trolley transferring the particular working unit. The working unit, after a control console has moved out of the sliding in path, can be moved in and out parallel to the horizontal separating plane and transversely to the conveying direction and can then be adjusted and locked. Thus, with the same base units a randomly long basic frame can be created for randomly succeeding working stations.