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    • 22. 发明授权
    • Die packing device
    • 模具包装设备
    • US06760968B2
    • 2004-07-13
    • US10014251
    • 2001-10-26
    • Tsutomu MimataOsamu Kakutani
    • Tsutomu MimataOsamu Kakutani
    • B23P1900
    • H01L21/67144H01L21/67132H01L21/6838H01L24/75H01L2224/13H01L2924/00014Y10T29/49144Y10T29/53178Y10T29/53191Y10T29/53265Y10T156/1771Y10T279/11H01L2224/0401
    • A die packing device including die holding mechanism comprising a connecting wire receiving shaft which is movable up and down, a pair of die holding levers which have die holding sections for holding the die and are installed so that these levers are free to open and close, and opening-and-closing levers that open and close the die holding levers. A die formed with connecting wires on its upper surface is pushed up by a die push-up device and the wires of to die come into contact with the connecting wire receiving shaft of the die holding mechanism. When the connecting wire receiving shaft is raised by a given amount by the upward movement of the die, the die holding levers are closed so that the die holding sections of the die holding levers are positioned beneath the undersurface of the die. Afterward, the push-up needles of the die push-up device are lowered, resulting in that the die is held by the die holding levers. The die holding mechanism is moved to above a tray or a substrate so that the die is packed in the tray or bonded to the substrate.
    • 一种模具包装装置,包括:模具保持机构,包括可上下移动的连接线容纳轴;一对模具保持杆,具有用于保持模具的模具保持部,并且安装成使得这些杆自由地打开和关闭, 以及打开和关闭模具夹持杆的打开和关闭杆。 在其上表面上形成有连接线的模具被模具上推装置向上推动,模具的电线与模具保持机构的连接线接收轴接触。 当连接线接收轴通过模具的向上移动而升高给定量时,模具保持杆被关闭,使得模具保持杆的模具保持部分位于模具的下表面之下。 之后,模具上推装置的上推针被降低,导致模具被模具夹持杆保持。 将模具保持机构移动到托盘或基板的上方,使得模具被包装在托盘中或结合到基板。
    • 23. 发明授权
    • Manufacturing method
    • 制造方法
    • US4763827A
    • 1988-08-16
    • US38939
    • 1987-04-16
    • Kenji WatanabeIsamu YamazakiRyuichi KyomasuNobuhiro TakasugiTsutomu MimataOsamu Kakutani
    • Kenji WatanabeIsamu YamazakiRyuichi KyomasuNobuhiro TakasugiTsutomu MimataOsamu Kakutani
    • B23K20/00H01L21/00B23K31/00
    • H01L24/78B23K20/005H01L21/67144H01L21/67248H01L21/67259H01L2224/78H01L2924/00014H01L2924/01033H01L2924/01039H01L2924/01082
    • The invention relates to a manufacturing apparatus which comprises moving means which continuously moves the works that are transferred along a frame chute, and detector means which detects at least a portion of the work that is moved. The moving means is controlled by kind-of-work data and by a work position signal from the detector means, and the work is set to a predetermined position. Hence, even a work of a different kind can be set to an optimum bonding position without the need of exchanging the unit, making it possible to perform the operation fully automatically and to meet general purposes.Further, provision is made of means which moves the frame chute in a direction at right angles with the direction in which the work is moved, so that even that work that has different widths and shapes in the widthwise direction can be placed in position and subjected to the bonding fully automatically.The detector means can be provided not only at the bonding position but also at a position on the upstream side having a relation relative to the bonding position.The invention can be adapted particularly effectively to a wire bonder and a pellet bonder.
    • 本发明涉及一种制造装置,其包括连续地移动沿着框架槽传送的工件的移动装置和检测至少一部分被移动的工件的检测器装置。 移动装置由工作数据和来自检测装置的工作位置信号控制,工件被设定到预定位置。 因此,即使不同种类的工作也可以被设定为最佳的结合位置,而不需要更换单元,使得可以完全自动地执行操作并且达到一般目的。 此外,提供了使框架滑槽沿与工件移动方向成直角的方向移动的装置,使得即使在宽度方向上具有不同宽度和形状的工件也可以被放置就位 完全自动粘接。 检测器装置不仅可以在接合位置处设置,而且还可以设置在上游侧的位置,具有相对于接合位置的关系。 本发明可以特别有效地适用于引线接合机和颗粒接合机。
    • 25. 发明授权
    • Fuel cell
    • 燃料电池
    • US07482089B2
    • 2009-01-27
    • US10544978
    • 2004-03-02
    • Tomohide ShibutaniOsamu Kakutani
    • Tomohide ShibutaniOsamu Kakutani
    • H01M4/86H01M8/10
    • H01M4/8642H01M4/8605H01M4/926H01M8/1007
    • A fuel cell is provided having a positive electrode layer (13) and a negative electrode layer (14) disposed on the front and rear sides of an electrolyte membrane (12), for generating electricity by bringing hydrogen into contact with a catalyst in the negative electrode layer and bringing oxygen into contact with a catalyst in the positive electrode layer. The positive electrode layer includes the components electrolyte, carbon (36, 37), a catalyst (38) carried on the carbon, a pore-forming material and a water-repellent resin. In the electrolyte membrane vicinity (34) of the positive electrode layer, which is a part where the reaction between the oxygen and the hydrogen ions proceeds readily, the electrolyte/carbon weight ratio and the carried catalyst amount are made large. In parts where product water tends to stagnate, the amounts of the pore-forming material and the water-repellent resin are increased.
    • 设置有具有设置在电解质膜(12)的前后侧的正极层(13)和负极层(14)的燃料电池,用于通过使氢与负极的催化剂接触而发电 并使氧与正极层中的催化剂接触。 正极层包括电解质,碳(36,37),载持在碳上的催化剂(38),成孔材料和拒水性树脂。 在正极层的电解质膜附近(34)中,作为氧和氢离子之间的反应容易进行的部分,电解质/碳重量比和载体催化剂量变大。 在产品水趋于停滞的部位,造孔材料和防水树脂的量增加。
    • 27. 发明申请
    • Fuel cell
    • 燃料电池
    • US20060141337A1
    • 2006-06-29
    • US10544978
    • 2004-03-02
    • Tomohide ShibutaniOsamu Kakutani
    • Tomohide ShibutaniOsamu Kakutani
    • H01M4/94H01M4/96H01M8/02
    • H01M4/8642H01M4/8605H01M4/926H01M8/1007
    • A fuel cell is provided having a positive electrode layer (13) and a negative electrode layer (14) disposed on the front and rear sides of an electrolyte membrane (12), for generating electricity by bringing hydrogen into contact with a catalyst in the negative electrode layer and bringing oxygen into contact with a catalyst in the positive electrode layer. The positive electrode layer includes the components electrolyte, carbon (36, 37), a catalyst (38) carried on the carbon, a pore-forming material and a water-repellent resin. In the electrolyte membrane vicinity (34) of the positive electrode layer, which is a part where the reaction between the oxygen and the hydrogen ions proceeds readily, the electrolyte/carbon weight ratio and the carried catalyst amount are made large. In parts where product water tends to stagnate, the amounts of the pore-forming material and the water-repellent resin are increased.
    • 设置有具有设置在电解质膜(12)的前后侧的正极层(13)和负极层(14)的燃料电池,用于通过使氢与负极的催化剂接触而发电 并使氧与正极层中的催化剂接触。 正极层包括电解质,碳(36,37),载持在碳上的催化剂(38),成孔材料和拒水性树脂。 在正极层的电解质膜附近(34)中,作为氧和氢离子之间的反应容易进行的部分,电解质/碳重量比和载体催化剂量变大。 在产品水趋于停滞的部位,造孔材料和防水树脂的量增加。
    • 29. 发明授权
    • Die holding mechanism for a die with connecting wires thereon
    • 具有连接线的模具的模具保持机构
    • US06505397B1
    • 2003-01-14
    • US09596681
    • 2000-06-19
    • Tsutomu MimataOsamu Kakutani
    • Tsutomu MimataOsamu Kakutani
    • B23P1900
    • H01L21/67144H01L21/67132H01L21/6838H01L24/75H01L2224/13H01L2924/00014Y10T29/49144Y10T29/53178Y10T29/53191Y10T29/53265Y10T156/1771Y10T279/11H01L2224/0401
    • A die holding mechanism comprising a connecting wire receiving shaft which is movable up and down, a pair of die holding levers which have die holding sections for holding the die and are installed so that these levers are free to open and close, and opening-and-closing levers that open and close the die holding levers. A die formed with connecting wires on its upper surface is pushed up by a die push-up device and the wires of the die come into contact with the connecting wire receiving shaft of the die holding mechanism. When the connecting wire receiving shaft is raised by a given amount by the upward movement of the die, the die holding levers are closed so that the die holding sections of the die holding levers are positioned beneath the undersurface of the die. Afterward, the push-up needles of the die push-up device are lowered, resulting in that the die is held by the die holding levers. The die holding mechanism is moved to above a tray or a substrate so that the die is packed in the tray or bonded to the substrate.
    • 一种模具保持机构,包括可上下移动的连接线容纳轴,一对模具保持杆,其具有用于保持模具的模具保持部,并且安装成使得这些杆自由地打开和关闭, 封闭杆,打开和关闭模具夹持杆。 在其上表面形成有连接线的模具被模具上推装置向上推动,并且模具的线与模具保持机构的连接线接收轴接触。 当连接线接收轴通过模具的向上移动而升高给定量时,模具保持杆被关闭,使得模具保持杆的模具保持部分位于模具的下表面之下。 之后,模具上推装置的上推针被降低,导致模具被模具夹持杆保持。 将模具保持机构移动到托盘或基板的上方,使得模具被包装在托盘中或结合到基板。
    • 30. 发明授权
    • Multi-chip bonding method and apparatus
    • 多芯片接合方法和装置
    • US06383844B2
    • 2002-05-07
    • US09748812
    • 2000-12-26
    • Tsutomu MimataOsamu Kakutani
    • Tsutomu MimataOsamu Kakutani
    • H01L2144
    • H01L21/67144Y10S438/907
    • A multi-chip bonding method and apparatus, in which a first wafer ring which has electronic components of a first type is held by a holding device; substrates are fed out to a conveying device from the first storing section; the electronic components of the first type on the holding device are successively bonded to the substrates; the substrates with the electronic components of the first type bonded is accommodated in the second storing section; the first wafer ring held by the holding device is exchanged for a second wafer ring which has electronic components of a second type; the substrates accommodated in the second storing section is fed out to the conveying device; the electronic components of the second type are successively bonded to the substrates; and the substrates with the electronic components of the second type bonded is accommodated in the first storing section.
    • 一种多芯片接合方法和装置,其中具有第一类型的电子部件的第一晶片环由保持装置保持; 基板从第一存储部分送出到输送装置; 保持装置上的第一类型的电子部件依次结合到基板上; 具有第一类型的电子部件的基板被容纳在第二存储部中; 由保持装置保持的第一晶片环被更换为具有第二类型的电子部件的第二晶片环; 容纳在第二存储部中的基板被送出到输送装置; 第二类型的电子部件依次结合到基板上; 并且具有第二类型的电子部件的基板被容纳在第一存储部中。