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    • 5. 发明申请
    • END PIECE FOR OPTICAL FIBRES
    • END CAP光纤
    • WO0014582A3
    • 2000-06-02
    • PCT/DE9902425
    • 1999-08-04
    • HEIDELBERGER DRUCKMASCH AGJUERGENSEN HEINRICH
    • JUERGENSEN HEINRICH
    • G02B6/24G02B6/32G02B6/36G02B6/38G02B6/42
    • G02B6/3624G02B6/241G02B6/32G02B6/3652G02B6/366G02B6/3814G02B6/4296
    • The invention relates to an end piece for optical fibres (5, 28) which consists of an elongated housing having a continuous cylindrical hole extending in an axial direction for receiving an optical fibre and outer fitting seats (134) which serve as reference surfaces for mounting the housing in the mountings. At the end of the housing (123) at which the optical fibre (5, 28) is introduced into same, said optical fibre (5, 28) is taken up and guided inside the housing. A short-focus positive lens (133) is fixed to the other end of the housing (132). Inside the continuous cylindrical hole (130) extending in an axial direction the end of the optical fibre (5, 28) and the positive lens (133) are aligned in relation to each other and fixed in such a way that the point where the beam exits the optical fibre (5, 28) is located approximately in the focal point of the positive lens (133) and the laser beam (144) bundle exiting from the positive lens is aligned in a defined manner in relation to the fitting seats (134).
    • 端接件对光纤(5,28)由具有连续的细长外壳的,在轴向方向上延伸的,用于接收光纤维和外部配件(134)作为基准表面用于包含在插座圆筒形开口。 在其上发生的光纤(5,28)的壳体(123)的端部,光纤(5,28)被接收,并且在所述壳体内引导。 在壳体(132)的另一端具有一个短焦距聚焦透镜(133)被附接。 光纤(5,28)和所述会聚透镜(133)的端部内的连续排列,在轴向方向上,圆筒形孔(130)相对于彼此延伸,并固定成使从光纤(5,28中的辐射的出口点 对准)大致位于所述会聚透镜(133)和相对于所述管件(134)被定义离开所述激光束(144)的光线的会聚透镜束的光的焦点。
    • 6. 发明申请
    • METHOD FOR ELECTROFORMING A STUDDED PLATE AND A COPY DIE, ELECTROFORMING DIE FOR THIS METHOD, AND COPY DIE
    • 用于电铸研磨板和复印机的方法,用于该方法的电加工模具和复印机
    • WO2006112696A3
    • 2007-06-07
    • PCT/NL2006000183
    • 2006-04-07
    • STORK VECO BVHEIDELBERGER DRUCKMASCH AGKNOL HARM GERRITHERZBACH LARS CRISTIAN
    • KNOL HARM GERRITHERZBACH LARS CRISTIAN
    • C25D1/00
    • C25D1/10B65H29/52B65H2404/50C25D1/00C25D1/20
    • Method for electroforming a plate (20) having a working side provided with separate elevations (22), which method comprises the steps of: providing a flat conductive electroforming die (10) with insulating regions (12) that are separated from one another; electrolytically depositing a screen layer (18), which comprises a network of dykes (30), which dykes (30) delimit screen openings (32), of metal on the electroforming die (10), the dykes (30), as seen in section, having at least one convex surface part; passivating the uncovered surface of the screen layer (18); electrolytically depositing a continuous metal layer (20) on the passivated surface of the screen layer (18), in such a manner that at least the screen openings (32) are filled and the passivated surface is completely covered, separating the continuous metal layer (20) having a working side (52) provided with separate elevations (22), which elevations, when seen in section, have at least one concave surface part (26), as the said plate, from the screen layer (18).
    • 一种用于电铸具有设置有单独高度(22)的工作侧的板(20)的方法,该方法包括以下步骤:提供具有彼此分离的绝缘区域(12)的平面导电电铸模(10) 电沉积屏幕层(18),其包括在电铸模具(10)上的金属(堤)(30)上的堤(30)的堤(30)的网络(30),所述堤(30)限定屏幕开口(32) 具有至少一个凸表面部分; 钝化屏幕层(18)的未覆盖表面; 在屏幕层(18)的钝化表面上电解沉积连续金属层(20),至少填充筛网孔(32)并钝化表面被完全覆盖,将连续金属层( 其具有设置有单独的高度(22)的工作侧(52),当从截面看时,该高度从屏幕层(18)至少具有作为所述板的至少一个凹面部分(26)。
    • 7. 发明申请
    • DEVICE FOR INDIVIDUALLY FEEDING SHEET-TYPE PRINTING MATERIALS FROM A STACK TO A TRANSPORT PATH ENTRANCE
    • DEVICE办法供纸片状的印刷从堆栈到传输路径用入口
    • WO2004087547A8
    • 2005-01-06
    • PCT/EP2004003555
    • 2004-04-02
    • HEIDELBERGER DRUCKMASCH AGWELTZ REINHARD
    • WELTZ REINHARD
    • B65H3/12B65H3/48B65H7/18
    • B65H7/18B65H3/128B65H3/48B65H2511/11B65H2511/514B65H2513/10B65H2513/106B65H2513/512B65H2557/24B65H2557/242B65H2701/1311B65H2701/1313B65H2220/01B65H2220/02
    • The invention relates to a device for individually feeding sheet-type printing materials (1) from a stack (5) to an entrance (82) of a transport path (84). Said device comprises a negative-pressure chamber (32), which is located above the stack (5) in the vicinity of the transport path entrance (82), a perforated, continuous transport belt (34) which is looped around the negative-pressure chamber (32) and a drive (38). According to the invention, the negative-pressure chamber (32) and the transport belt (34) co-operate in such a way that the latter can exert a negative pressure on the uppermost printing material sheet (1) of the stack (5) of sheet-type printing material (1), said pressure sucking the uppermost printing material sheet (1) against the transport belt (34) and conveying said sheet to the transport path entrance (84) by means of the drive (38) of the transport belt (34). The device (100) comprises a controller (50), which controls the drive (38) of the transport belt (34) in the transport direction (31, 80), in accordance with the length of the sheet-type printing material (1).
    • 本发明涉及一种用于薄片状基片(1)的片材明智馈送从堆(5)的输送路径(84)的输入端(82)的装置,具有在所述附近的真空室(32)在堆(5) 传送路径输入端(82)被布置成与穿孔环形传送带(34),其中,所述传输带(34)到所述真空室(32)被卷绕,并具有一个驱动器(3 8),和(其中,所述真空腔室(3 2)和传送带 合作34),使得(由传送带34)在最上面的片状承印(1)的片状承印堆(5)根据(1)能够被加载的负压在其最上面的片状承印(1)(对传送带34) 吸入并通过传送带(34),用于传送路径输入(84)的驱动器(38)的装置可以被输送,其中所述设备(100)包括传输带的控制器(50)(在驱动器(38) 34)(根据在输送方向(31,80)驱动器片状打印材料1)的长度。
    • 9. 发明申请
    • METHOD OF GAUGING CUPS
    • 方法用于测量井
    • WO0066361A3
    • 2001-05-31
    • PCT/DE0001132
    • 2000-04-12
    • HEIDELBERGER DRUCKMASCH AGWEIDLICH ERNST RUDOLF GOTTFRIE
    • WEIDLICH ERNST-RUDOLF GOTTFRIE
    • B41C1/045G01B11/02H04N1/40H04N1/00
    • B41C1/045G01B11/024H04N1/40025H04N2201/0075
    • The invention relates to a method and to a device for determining the dimensions of engraved cups in an electronic engraving machine. A graver (28) of an engraving element (27), which graver is controlled by an engraving control signal (GS), engraves a number of cups (13) into a rotary printing cylinder (3). The dimensions of said cups (13) represent the actual tonalities. In a test engraving step, the cups (13) are engraved for predetermined desired tonalities. The actual dimensions of the cups (13) are gauged by means of a gauging device and are compared with the desired dimensions that represent the desired tonalities in order to arrive at adjustment values for the calibration of the engraving control signal (GS). The gauging device is configured as a mobile cup gauging device (1) that is placed on the respective printing cylinder (3) to be gauged. The dimensions of the cups (13) obtained by the mobile cup gauging device (1) are transmitted wirelessly to a stationary receiver of the gauged values (15) in the engraving machine and are processed there. The functions of the mobile cup gauging device (1) are controlled via a manually operated, mobile control device (2).
    • 本发明涉及一种用于确定在电子雕刻雕刻单元的尺寸的方法和设备。 阿由雕刻控制(GS)控制的雕刻的雕刻(27)在旋转的印版滚筒(3)刻孔(13)的序列,其中所述细胞(13)的尺寸表示实际的灰度值的工具(28)。 在测试雕刻杯(13)用于刻预设的期望色调值。 将细胞(13)的实际尺寸是通过测量装置来测量和比较所述预设的期望与色调值确定的目标尺寸,以获得设定值的雕刻控制信号(GS)的校准。 所述测量装置被配置为被分别放置在所述压力被测量汽缸(3)的移动的细胞测量单元(1)。 与(1)所述杯(13)的尺寸是无线地发送到在雕刻机的固定测量值的接收器(15),用于进一步处理所述移动单元测量单元来确定。 移动Näpfchenmessgerätes(1)的功能是可控制的通过手动操作的,移动操作装置(2)。
    • 10. 发明申请
    • METHOD FOR SELECTING FONTS FOR CREATING PRINTED PRODUCTS
    • 选择用于制造印刷产品的脚本的方法
    • WO9918521A3
    • 1999-07-15
    • PCT/DE9802948
    • 1998-10-02
    • HEIDELBERGER DRUCKMASCH AGSTEINERT BRUNOHOEHL BERND
    • STEINERT BRUNOHOEHL BERND
    • G06F17/21
    • G06F17/214
    • The invention relates to a method for creating a printed product using a computer and a selection program stored in the computer. In this method, the fonts are stored in digitalized form in a data medium which can be read by the computer. Each font is assigned at least one table in which a plurality of characteristics are entered as search keys. The table or tables are stored together with the font in the data medium. The computer keyboard is used to enter the characteristics for the print job, regarding the font which is to be selected for the print job. The tables of all the fonts stored in the data medium are checked for consistency with the entered characteristics. The selection programme in the computer establishes a list of fonts, using the characteristics stored in the tables and the entered characteristics. The fonts for which the entered characteristics matched the characteristics stored in the tables are entered into this list. The fonts in the list are sorted in accordance with the number of consistencies. One of the fonts is then selected from the list and used for creating the desired printing product.
    • 被分配给用于生产使用计算机的印刷产品的,并存储在计算机选择程序,其中,所述字体存储在数字形式在盘上,其中多个由特征输入作为搜索条件,所述表的每个字型的至少一个表 与在输入的磁盘,它是工作特性的被打印作业脚本中,通过在使用存储在表中的特性数据的计算机选择程序创建字体的列表中选择来输入的打印的特性上的著作和特性一起存储 在其中找到输入的特征与存储在表格中的特征的匹配,列表中的字体按照特征匹配的次数排序,其中一种字体从列表中选择,并且与此Schr 如果创建了所需的打印产品。