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    • 75. 发明专利
    • DE69313999T2
    • 1998-01-29
    • DE69313999
    • 1993-12-28
    • MAX CO LTD
    • UDAGAWA HIROSHI
    • B27F7/19B27F7/36B27F7/00B27F7/17
    • A stapler having improved stapling precision is provided. In a preferred embodiment, a stapler has a magazine (1) with a staple driving unit (3), and a staple clinching unit (4) wherein the magazine (1) and the staple clinching unit (4) are separately disposed. The magazine (1) of the stapler is provided with a actuation linkage and guides which cause the magazine (1) having the staple driving unit (3) to consistently move in a substantially vertical direction with respect to the staple clinching unit (4), so that a staple driven thereby is driven in a direction substantially perpendicular to sheets of paper (27) to be stapled, regardless of the thickness of the paper (27). In a variant of the preferred embodiment, the stapler (100) is incorporated in another unit where the stapler (100) is moved from one operating position to another. In order to maintain the alignment of the separately disposed magazine (1) and staple clinching unit (4), alignment members (44) are provided on either a frame (32) supporting the magazine (1) or a frame (36) supporting the clinching unit (4), or on both. Accordingly, the present invention improves stapling precision and avoids poor quality stapling, especially due to poor alignment between the staple driving unit (3) and the staple clinching (4) unit.
    • 76. 发明专利
    • DE69406861D1
    • 1998-01-02
    • DE69406861
    • 1994-08-03
    • MAX CO LTD
    • UDAGAWA HIROSHITORU YOSHIE
    • B25C5/15B25C5/04B25C5/16B27F7/36
    • An electric stapler comprises a cartridge and an electric stapler main body on which the cartridge is detachably mounted. The cartridge integrally including: an accommodating section for accommodating a plurality of staple sheets in multi-layered form, each of the staple sheets being formed by sticking straight staples together in sheet-like form; a staple passage connecting from a lower end of the accommodating section; a pusher for pushing frontward legs of a staple formed into a square U-shape at a front end of the staple passage; and a drive section, arranged at the front of the staple passage, for receiving the formed staple pushed by the pusher and driving the received formed staple in a direction orthogonal to the staple passage. And the electric stapler main body including: an attaching section for attaching the cartridge thereto; a staple feeder for feeding the staple sheets within the cartridge outside; a forming and driving device for sequentially forming a staple of the fed staple sheet from the front end of the staple sheet into a square U-shape and driving the formed staple out; and a clincher section for clinching the legs of the driven staple.
    • 77. 发明专利
    • DE69313999D1
    • 1997-10-23
    • DE69313999
    • 1993-12-28
    • MAX CO LTD
    • UDAGAWA HIROSHI
    • B27F7/19B27F7/36B27F7/00B27F7/17
    • A stapler having improved stapling precision is provided. In a preferred embodiment, a stapler has a magazine (1) with a staple driving unit (3), and a staple clinching unit (4) wherein the magazine (1) and the staple clinching unit (4) are separately disposed. The magazine (1) of the stapler is provided with a actuation linkage and guides which cause the magazine (1) having the staple driving unit (3) to consistently move in a substantially vertical direction with respect to the staple clinching unit (4), so that a staple driven thereby is driven in a direction substantially perpendicular to sheets of paper (27) to be stapled, regardless of the thickness of the paper (27). In a variant of the preferred embodiment, the stapler (100) is incorporated in another unit where the stapler (100) is moved from one operating position to another. In order to maintain the alignment of the separately disposed magazine (1) and staple clinching unit (4), alignment members (44) are provided on either a frame (32) supporting the magazine (1) or a frame (36) supporting the clinching unit (4), or on both. Accordingly, the present invention improves stapling precision and avoids poor quality stapling, especially due to poor alignment between the staple driving unit (3) and the staple clinching (4) unit.
    • 79. 发明专利
    • DE4391422T1
    • 1997-07-31
    • DE4391422
    • 1993-02-26
    • ISABERG AB
    • ERIKSSON STIG
    • B27F7/11B25C5/02B25C5/10B25C5/15B25C1/06B27F7/36
    • PCT No. PCT/SE93/00164 Sec. 371 Date Oct. 6, 1994 Sec. 102(e) Date Oct. 6, 1994 PCT Filed Feb. 26, 1993 PCT Pub. No. WO93/19898 PCT Pub. Date Oct. 14, 1993A stapler for driving staples (5) into an object (6) has a frame (1), a magazine (2) arranged in the frame and containing staples (5), and a drive element (3) adapted to push staples (5) out of the magazine (2) and drive them into the object (6) and, to this end, be reciprocated by means of a drive mechanism. The drive mechanism consists of a drive cylinder (19) rotatably mounted in the frame (1) and having an endless groove (23) in its circumferential surface. The groove (23) extends substantially helically from a starting point to a turning point axially spaced therefrom, and thence substantially helically back to the starting point. The groove (23) accommodates a groove follower (24) connected to the drive element (3) in order, upon rotation of the drive cylinder (19), to reciprocate the drive element (3).
    • 80. 发明专利
    • NL192158B
    • 1996-10-01
    • NL8403155
    • 1984-10-16
    • ELECTRO MATIC STAPLERS
    • H01H9/06H02M9/06H03K17/73H01H1/18B25C5/15H05K1/18B27F7/36
    • An electrically powered hand tool, such as a staple gun, can employ an electrical driver, such as a solenoid, which is actuated by a trigger circuit in response to depression of a trigger on the handle of the device. The trigger circuit can include a circuit board dimensioned to fit into the handle of the staple gun, and having AC input leads. A circuit formed of conventional electronic components delivers a burst of power to output leads which are in turn connected to a driver solenoid. This circuit is actuated to deliver the power burst by opening of a switch formed of two switch members: one switch member has a first flexible resilient conductive leaf formed, e.g., of an alloy of copper, extending beyond an edge of the board; the other member has a flexible resilient leaf with a bent-in pointed end contacting a side of the first blade. These blades are biased against each other to form a normally-closed switch. When the first blade is moved in one direction, the switch opens. When the first blade returns in the other direction to close the switch, the pointed end of the other resilient leaf of blade scratches off corrosion at the contact area of the two members. This permits low current (1 ma) to be used as a control current through the switch.