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    • 6. 发明公开
    • Printer
    • 德鲁克
    • EP2517887A3
    • 2013-07-31
    • EP12164535.2
    • 2012-04-18
    • STAR MICRONICS CO., LTD.
    • Kondo, TomoyukiOgawa, Takeshi
    • B41J11/70B41J15/04B26D1/06B41J13/10
    • B41J15/042B26D1/065B26D7/1818B41J11/70B41J13/106Y10T83/2074Y10T83/2098Y10T83/8691
    • Provided is a printer in which a cut-off paper is pushed into a paper stacking portion without an additional power source while reducing the maximum load applied to driving means for driving a movable blade.
      A printer 1 includes: a movable blade 161 for cutting a paper P1 disposed between a fixed blade and a movable blade as it moves in a forward direction and separating a printed part as a cut-off paper; driving means 162 for moving the movable blade 161 in a reciprocating manner; a pushing member 72 which is driven to push a cut-off paper P2 in a thickness direction of the cut-off paper P2; a paper stacking portion 77 for stacking the cut-off paper P2 pushed by the pushing member 72; and a driving force transferring mechanism 70 for transferring a driving force of the driving means 162 to the pushing member 72 to drive the pushing member 72.
    • 提供了一种打印机,其中,在减少施加到用于驱动可动刀片的驱动装置的最大负载的同时,将切断纸推入纸堆叠部分而不需附加电源。 打印机1包括:可动刀片161,用于当沿着向前方向移动时,将设置在固定刀片和可动刀片之间的纸张P1切割并分离作为截止纸的打印部件; 用于以往复方式移动可动刀片161的驱动装置162; 推动构件72,其被驱动以在切断纸P2的厚度方向上推动切断纸P2; 用于堆叠由推动构件72推动的切断纸P2的纸张堆叠部分77; 以及用于将驱动装置162的驱动力传递到推动构件72以驱动推动构件72的驱动力传递机构70。
    • 10. 发明公开
    • METHOD AND SYSTEM FOR PRODUCING NOTES OF SECURITIES
    • 方法和系统证券生产
    • EP2139685A1
    • 2010-01-06
    • EP08737753.7
    • 2008-04-07
    • KBA-GIORI S.A.
    • SCHAEDE, Johannes Georg
    • B41F11/02B41F13/64B41M3/14
    • B41F11/02B41F13/64Y10T83/04Y10T83/0448Y10T83/0467Y10T83/2092Y10T83/2098
    • Method and system for producing notes of securities, in particular banknotes, wherein individual printed sheets or successive printed portions of a continuous web are cut into individual notes (150) on a sheet-fed or web-fed processing system (300), and wherein these individual notes are subsequently processed by a single-note processing system (400) comprising a plurality of single-note processing stations (SNPS 1 to SNPS 4, 401 to 404). Individual notes (150) corresponding to independent production cycles (A, B, C, D) or dependent production cycles (A1, A2, A3, A4) are produced on the sheet-fed or web-fed processing system (300), each production cycle (A, B, C, D; A1, A2, A3, A4) being processed on a separate one of the single-note processing stations (SNPS 1 to SNPS 4, 401 to 404). Each production cycle (A, B, C, D; A1, A2, A3, A4) is subdivided into a sequence of distinct production sub-cycles (A.i, B.i, Ci, D.i; A1. i, A2.i, A3.i, A4.i, i = 1, 2, 3,...) corresponding to successive subsets of individual notes (150) that are to be processed on the single-note processing stations (SNPS 1 to SNPS 4, 401 to 404), the subsets of individual notes (150) being produced on the sheet-fed or web-fed processing system (300) according to a time-wise interleaved sequence of production sub-cycles (A.i, B.i, Ci, D.i,- A1. i, A2.i, A3.i, A4.i, i = 1, 2, 3,...) corresponding to distinct production cycles (A, B, C, D; A1, A2, A3, A4).