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    • 3. 发明申请
    • METHOD AND APPARATUS FOR PRINTING VISCOUS MATERIAL
    • 印刷材料的方法和装置
    • WO2006019802A1
    • 2006-02-23
    • PCT/US2005/024828
    • 2005-07-13
    • SPEEDLINE TECHNOLOGIES, INC.WILLSHERE, Richard
    • WILLSHERE, Richard
    • B23K3/06
    • B41F15/42B23K3/0638B41P2215/132H05K3/0097H05K3/1233H05K2203/0126H05K2203/0139
    • A method for printing a viscous material on substrates within a stencil printer includes supplying viscous material to a dispensing region of a print head, positioning a first substrate into a print position, printing on the first substrate by means of a pair of blades (52, 54) in contact with a stencil (16) during a first print stroke in which the pair of blades travel in a first direction (80), the dispensing region being defined between the pair of blades, positioning a second substrate into a print position, and printing on the second substrate during a second print stroke in which the pair of blades travel in a second direction (82), opposite to the first direction, the pair of blades maintaining contact with the stencil when transitioning between the first and second print strokes. A print head and a stencil printer are further disclosed.
    • 一种用于在模板印刷机中的基板上印刷粘性材料的方法包括:将粘性材料供应到打印头的分配区域,将第一基板定位到打印位置,借助于一对叶片(52,52)在第一基板上进行印刷, 54)在第一打印行程期间与模板(16)接触,其中所述一对刀片沿着第一方向(80)行进,所述分配区域被限定在所述一对刀片之间,将第二衬底定位到打印位置, 并且在第二打印行程期间在第二打印行程中打印第二打印行程,其中所述一对刀片沿与第一方向相反的第二方向(82)行进,所述一对刀片在第一和第二打印笔划之间转换时保持与模板的接触 。 进一步公开了打印头和模版印刷机。
    • 5. 发明授权
    • METHOD AND APPARATUS FOR HOLDING A PRINTED CIRCUIT BOARD IN A PRECISE POSITION DURING PROCESSING
    • 方法和设备保持电路板的位置准确的处理期间,
    • EP1228676B1
    • 2004-06-16
    • EP00990505.0
    • 2000-11-08
    • Speedline Technologies, Inc.
    • ASHTON, Augustus, T.WILLSHERE, Richard
    • H05K13/00H05K13/04
    • H05K13/0069H05K3/1216
    • A printed circuit board holding mechanism includes a vertically movable pin support table having at least one tooling pin mounted thereon. A pair of elongated conveyor rails are separated and oriented parallel with respect to each other. The conveyor rails each support a number of pulleys, which pulleys have a drive belt mounted thereon. A segment of each conveyor rail includes a clamping rail that is spring biased downwardly. Clamping rails mounted on opposing rails are oriented to face each other so that foils associated with each clamping rail can engage opposite top edges of a printed circuit board when the movable pin support table is actuated upwardly. The movable pin support table is actuated upwardly so that the tooling pin mounted thereon contacts a bottom surface of the printed circuit board to move the printed circuit board up and off of the drive belts and into engagement with the foils associated with the clamping rails. On or more slotted support strips mounted on the rails are contacted by the pin support table and move with the table to contact the bottom surface of the printed circuit board to provide edge support for the board. In this orientation, the printed circuit board is no longer supported by the resilient drive belts, rather, the printed circuit board is securely held between the clamping rails and the tooling pin.
    • 6. 发明公开
    • METHOD AND APPARATUS FOR HOLDING A PRINTED CIRCUIT BOARD IN A PRECISE POSITION DURING PROCESSING
    • 方法和设备保持电路板的位置准确的处理期间,
    • EP1228676A2
    • 2002-08-07
    • EP00990505.0
    • 2000-11-08
    • Speedline Technologies, Inc.
    • ASHTON, Augustus, T.WILLSHERE, Richard
    • H05K13/00H05K13/04
    • H05K13/0069H05K3/1216
    • A printed circuit board holding mechanism includes a vertically movable pin support table having at least one tooling pin mounted thereon. A pair of elongated conveyor rails are separated and oriented parallel with respect to each other. The conveyor rails each support a number of pulleys, which pulleys have a drive belt mounted thereon. A segment of each conveyor rail includes a clamping rail that is spring biased downwardly. Clamping rails mounted on opposing rails are oriented to face each other so that foils associated with each clamping rail can engage opposite top edges of a printed circuit board when the movable pin support table is actuated upwardly. The movable pin support table is actuated upwardly so that the tooling pin mounted thereon contacts a bottom surface of the printed circuit board to move the printed circuit board up and off of the drive belts and into engagement with the foils associated with the clamping rails. On or more slotted support strips mounted on the rails are contacted by the pin support table and move with the table to contact the bottom surface of the printed circuit board to provide edge support for the board. In this orientation, the printed circuit board is no longer supported by the resilient drive belts, rather, the printed circuit board is securely held between the clamping rails and the tooling pin.