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    • 16. 发明授权
    • Exhaust gas purifying system
    • 废气净化系统
    • US06276132B1
    • 2001-08-21
    • US09609903
    • 2000-06-30
    • Hiroyuki KanesakaHitoshi OnoderaKatsuo Suga
    • Hiroyuki KanesakaHitoshi OnoderaKatsuo Suga
    • F01N300
    • B01J23/63B01D53/9431B01J23/56
    • An exhaust gas purifying system for an internal combustion engine of an automotive vehicle. The exhaust gas purifying system comprises an exhaust gas composition regulating device for producing a low HC concentration reducing agent in a lean exhaust gas atmosphere where air-fuel ratio is leaner than a stoichiometric value. The exhaust gas composition regulating device is disposed in an exhaust gas passageway of the engine. The low HC concentration reducing agent is low in concentration of hydrocarbons to have an exhaust gas composition having a volume ratio of NOx/HC not less than 50 in the exhaust gas passageway immediately downstream of the exhaust gas composition regulating device. Additionally, a NOx treating catalyst is disposed in the exhaust gas passageway and located downstream of the exhaust gas composition regulating device. The NOx treating catalyst is arranged to reduce NOx in the presence of the low HC concentration reducing agent supplied from the exhaust gas composition regulating device. The exhaust gas composition of the low HC concentration reducing agent is obtained in the exhaust gas passageway immediately upstream of the NOx reducing catalyst.
    • 一种用于机动车辆的内燃机的废气净化系统。 排气净化系统包括废气组成调节装置,用于在空气 - 燃料比稀化于化学计量值的贫排气气氛中产生低HC浓度还原剂。 废气组成调节装置设置在发动机的废气通道中。 低HC浓度还原剂在排气组成调节装置紧下游的废气通道中,烃浓度低,具有NOx / HC体积比不小于50的废气组成。 此外,NOx处理催化剂设置在废气通道中并位于排气组合物调节装置的下游。 NO x处理催化剂被设置为在由排气组合物调节装置供应的低HC浓度还原剂的存在下还原NOx。 在NOx还原催化剂的紧上游的排气通路中获得低HC浓度还原剂的废气组成。
    • 18. 发明授权
    • Method for mounting components and apparatus therefor
    • 组件及其装置的安装方法
    • US5570993A
    • 1996-11-05
    • US103353
    • 1993-08-09
    • Hitoshi OnoderaHiroshi Sakurai
    • Hitoshi OnoderaHiroshi Sakurai
    • B23P21/00H05K13/04H05K13/08
    • H05K13/08H05K13/0413Y10T29/53178Y10T29/53191
    • A component mounting device adapted to mount components such IC or the like on a printed circuit board that includes replaceable pick up nozzles to accommodate different types of components to be picked up. A sensing station is provided that permits the pick up nozzle to be verified as the correct one and also to determine, if desired, its orientation and misalignments in its axis of rotation so as to permit adjustment in the mounted to accommodate for errors. In addition, a reference height position may be set so that the same sensing station can be employed to sense both the orientation of a component that is picked up and also whether the component is correctly oriented for deposit. This is done by measuring projected lengths in a plane with a photo sensitive device and by making calculations in accordance with trigonometric relationships.
    • 一种适于将IC等组件安装在印刷电路板上的部件安装装置,该印刷电路板包括可更换的拾取喷嘴以适应要拾取的不同类型的部件。 提供了一种感测站,其允许将拾取喷嘴验证为正确的喷嘴,并且如果需要,还确定其拾取旋转轴线的取向和不对准,以便允许调整安装以适应错误。 此外,可以设置参考高度位置,使得可以使用相同的感测站来感测拾取的部件的取向以及组件是否被正确定向以进行沉积。 这是通过用光敏设备测量平面中的投影长度并通过根据三角关系进行计算来完成的。
    • 20. 发明授权
    • Component attracted state detecting system for component mounting machine
    • 组件吸附状态检测系统
    • US5839186A
    • 1998-11-24
    • US480153
    • 1995-06-07
    • Hitoshi Onodera
    • Hitoshi Onodera
    • B23P21/00H05K13/04H05K13/08
    • H05K13/0413H05K13/08Y10T29/53087
    • A method and apparatus of mounting components and recognizing two different types of components, one by a photographic recognition practice and the other by an optical recognition practice. At least two pick-up devices are carried by a mounting head and a light source and background device is moveable supported by the mounting head into a first position wherein a photographic recognition method can be practiced on a component mounted on one of the pick-up devices, a second position wherein one or both of the pick-up devices may hold components for recognition by the optical device and a third position where a camera carried by the mounting head can be employed for recognizing a substrate. The control routines for each type of sensing operation are disclosed.
    • 一种安装部件并识别两种不同类型部件的方法和装置,一种是通过摄影识别实践,另一种由光学识别实践。 至少两个拾取装置由安装头和光源承载,并且背景装置可由安装头支撑移动到第一位置,其中可以在安装在拾取器之一上的部件上实施照相识别方法 装置,第二位置,其中一个或两个拾取装置可以保持用于由光学装置识别的部件和第三位置,其中由安装头承载的相机可以用于识别基板。 公开了用于每种类型的感测操作的控制程序。