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    • 1. 发明授权
    • Infrared sensor and method for manufacturing infrared sensor
    • 红外传感器和红外传感器制造方法
    • US07763855B2
    • 2010-07-27
    • US12233901
    • 2008-09-19
    • Koji HayashiHitoshi TagaTakeshi Takeda
    • Koji HayashiHitoshi TagaTakeshi Takeda
    • G01J5/04G02B7/02
    • H01L31/0203H01L31/02162H01L31/09H01L2224/48091H01L2224/48227H01L2924/00014
    • An economical and highly reliable infrared sensor with a wide field of view and a method for economically manufacturing a highly reliable infrared sensor with a wide field of view includes a package having supporting portions that support an optical filter at a location below the upper surfaces of sidewalls of the package and recessed portions that communicate with gaps between side surfaces of the optical filter supported by the supporting portions and the sidewalls of the package. An adhesive is supplied to the recessed portions while the optical filter is supported by the supporting portions such that the adhesive flows into the gaps between the optical filter and the sidewalls of the package by capillary action and such that the optical filter is fixed to an opening of the package via the adhesive. The optical filter is fixed to the package via the adhesive by applying the adhesive such that the adhesive spreads over substantially the entire circumference of the optical filter.
    • 具有宽视野的经济且高度可靠的红外传感器和用于经济地制造具有宽视野的高度可靠的红外传感器的方法包括具有支撑部分的封装,所述支撑部分在侧壁的上表面下方的位置处支撑滤光器 以及与由支撑部分支撑的滤光器的侧表面与封装的侧壁之间的间隙连通的凹部。 粘合剂被供给到凹部,同时滤光器被支撑部支撑,使得粘合剂通过毛细管作用流入滤光器和封装的侧壁之间的间隙中,并且使得滤光器固定到开口 的包装。 通过施加粘合剂将滤光器通过粘合剂固定到包装上,使得粘合剂在光学滤光器的基本上整个圆周上扩展。
    • 2. 发明授权
    • Infrared sensor
    • 红外传感器
    • US07626167B2
    • 2009-12-01
    • US11937218
    • 2007-11-08
    • Koji HayashiTakeshi Takeda
    • Koji HayashiTakeshi Takeda
    • G01J5/02
    • G01J1/04G01J1/0271G01J1/0407G01J2001/0276
    • A small infrared sensor has a wide infrared light-receiving area (viewing angle), high electromagnetic shielding characteristics, and excellent electromagnetic-wave resistance characteristics. In the infrared sensor, supporting portions are disposed at four corners of a substantially rectangular opening in a package. The supporting portions support an optical filter, disposed so as to cover the opening, at positions that are lower than an upper end of an inner peripheral wall defining the opening. While the optical filter is supported by the supporting portions as a result of inserting a portion of a surface side of the optical filter facing the supporting portions into the opening, the optical filter is secured to the package. The optical filter and the package are joined and secured, and electrically connected to each other through a conductive adhesive.
    • 小型红外线传感器具有宽的红外光接收面积(视角),高电磁屏蔽特性和优异的电磁波电阻特性。 在红外传感器中,支撑部分设置在包装件中的大致矩形开口的四个角处。 所述支撑部支撑设置成覆盖所述开口的光学过滤器,所述光学过滤器位于比限定所述开口的内周壁的上端低的位置处。 当由于将滤光器的面对支撑部分的表面侧的一部分插入到开口中而由支撑部分支撑滤光器时,滤光器固定在封装上。 光学滤波器和封装被接合并固定,并通过导电粘合剂彼此电连接。
    • 3. 发明授权
    • Infrared sensor
    • 红外传感器
    • US07919751B2
    • 2011-04-05
    • US12424565
    • 2009-04-16
    • Koji HayashiTakeshi Takeda
    • Koji HayashiTakeshi Takeda
    • H01L31/0232H01L31/0203G01J5/02
    • G01J1/04G01J1/0271G01J1/0407G01J2001/0276
    • A small infrared sensor has a wide infrared light-receiving area (viewing angle), high electromagnetic shielding characteristics, and excellent electromagnetic-wave resistance characteristics. In the infrared sensor, supporting portions are disposed at four corners of a substantially rectangular opening in a package. The supporting portions support an optical filter, disposed so as to cover the opening, at positions that are lower than an upper end of an inner peripheral wall defining the opening. While the optical filter is supported by the supporting portions as a result of inserting a portion of a surface side of the optical filter facing the supporting portions into the opening, the optical filter is secured to the package. The optical filter and the package are joined and secured, and electrically connected to each other through a conductive adhesive.
    • 小型红外线传感器具有宽的红外光接收面积(视角),高电磁屏蔽特性和优异的电磁波电阻特性。 在红外传感器中,支撑部分设置在包装件中的大致矩形开口的四个角处。 所述支撑部支撑设置成覆盖所述开口的光学过滤器,所述光学过滤器位于比限定所述开口的内周壁的上端低的位置处。 当由于将滤光器的面对支撑部分的表面侧的一部分插入到开口中而由支撑部分支撑滤光器时,滤光器固定在封装上。 光学滤波器和封装被接合并固定,并通过导电粘合剂彼此电连接。
    • 4. 发明申请
    • INFRARED SENSOR AND METHOD FOR MANUFACTURING INFRARED SENSOR
    • 红外传感器和制造红外传感器的方法
    • US20090026372A1
    • 2009-01-29
    • US12233901
    • 2008-09-19
    • Koji HayashiHitoshi TagaTakeshi Takeda
    • Koji HayashiHitoshi TagaTakeshi Takeda
    • G01J5/10H01L21/00
    • H01L31/0203H01L31/02162H01L31/09H01L2224/48091H01L2224/48227H01L2924/00014
    • An economical and highly reliable infrared sensor with a wide field of view and a method for economically manufacturing a highly reliable infrared sensor with a wide field of view includes a package having supporting portions that support an optical filter at a location below the upper surfaces of sidewalls of the package and recessed portions that communicate with gaps between side surfaces of the optical filter supported by the supporting portions and the sidewalls of the package. An adhesive is supplied to the recessed portions while the optical filter is supported by the supporting portions such that the adhesive flows into the gaps between the optical filter and the sidewalls of the package by capillary action and such that the optical filter is fixed to an opening of the package via the adhesive. The optical filter is fixed to the package via the adhesive by applying the adhesive such that the adhesive spreads over substantially the entire circumference of the optical filter.
    • 具有宽视野的经济且高度可靠的红外传感器和用于经济地制造具有宽视野的高度可靠的红外传感器的方法包括具有支撑部分的封装,所述支撑部分在侧壁的上表面下方的位置处支撑滤光器 以及与由支撑部分支撑的滤光器的侧表面与封装的侧壁之间的间隙连通的凹部。 粘合剂被供给到凹部,同时滤光器被支撑部支撑,使得粘合剂通过毛细管作用流入滤光器和封装的侧壁之间的间隙中,并且使得滤光器固定到开口 的包装。 通过施加粘合剂将滤光器通过粘合剂固定到包装上,使得粘合剂在光学滤光器的基本上整个圆周上扩展。
    • 5. 发明授权
    • Multistage furnace system
    • 多级炉系统
    • US09127886B2
    • 2015-09-08
    • US13826688
    • 2013-03-14
    • Koji HayashiTaichi Shimizu
    • Koji HayashiTaichi Shimizu
    • F27D3/06F27B1/02F27B9/02F27D9/00F27B1/20F27B9/24F27B9/38F27B9/39F27B9/40
    • F27B1/02F27B1/20F27B9/021F27B9/028F27B9/2469F27B9/38F27B9/39F27B9/40F27D9/00
    • The invention provides a multistage heating system including a compact multistage furnace of which the installation area in a factory is decreased and a work carrier machine. A multistage furnace is configured by piling up a plurality of furnace units in the vertical direction. Each of the furnace units includes an upper heater and a lower heater, support pipes disposed on the upper heater and extending in the horizontal direction, and a plurality of work support bars mounted over the support pipes. A work carrier machine includes work carrier bars extending in the horizontal direction, a horizontal motion mechanism connecting the ends of the work carrier bars and move the work carrier bars on horizontal rails, and a vertical motion mechanism moving the body of the work carrier machine including the horizontal rails on vertical rails.
    • 本发明提供了一种多级加热系统,其包括紧凑型多级炉,其中工厂的安装面积减小,工作承载机。 多级炉通过在垂直方向上堆叠多个炉单元构成。 每个炉单元包括上加热器和下加热器,设置在上加热器上并在水平方向上延伸的支撑管,以及安装在支撑管上的多个工作支撑杆。 工作载体机器包括沿水平方向延伸的工作承载杆,连接工作承载杆的端部并将工作承载杆移动到水平轨道上的水平运动机构,以及使工作承载机的主体移动的垂直运动机构,包括 垂直导轨上的水平导轨。
    • 7. 发明授权
    • Multistage furnace
    • 多级炉
    • US08989565B2
    • 2015-03-24
    • US13800950
    • 2013-03-13
    • Koji HayashiTaichi Shimizu
    • Koji HayashiTaichi Shimizu
    • F26B19/00F27D11/12F27D99/00F27D9/00F27B9/02F27B9/06F27B9/24F27B9/38F27B9/39F27B9/40
    • F27D11/12F27B9/021F27B9/063F27B9/2469F27B9/38F27B9/39F27B9/40F27D9/00F27D99/00
    • The invention provides a compact multistage furnace of which the installation area in a factory is decreased. A multistage furnace is configured by piling up a plurality of furnace units in the vertical direction. Each of the furnace units includes an upper heater and a lower heater layered in the vertical direction and holding a heat insulator therebetween, a support pipe disposed on one end of the upper heater and extending in the horizontal direction, a support pipe disposed on other end of the upper heater and extending in the horizontal direction, and a plurality of work support bars mounted over the support pipes. The back surface of a work supported by the work support bars is opposed to the upper heater and the front surface of the work is opposed to the lower heater of the adjacent furnace unit disposed above.
    • 本发明提供一种紧凑型多级炉,其中工厂中的安装面积减小。 多级炉通过在垂直方向上堆叠多个炉单元构成。 每个炉单元包括沿垂直方向分层并在其间保持隔热件的上加热器和下加热器,支撑管设置在上加热器的一端并沿水平方向延伸,支撑管设置在另一端 的上部加热器并沿水平方向延伸,并且多个工作支撑杆安装在支撑管上。 由工作支撑杆支撑的工件的后表面与上加热器相对,并且工件的前表面与设置在上方的相邻炉单元的下加热器相对。
    • 9. 发明申请
    • DRIVE CONTROL DEVICE FOR HYBRID VEHICLE
    • 用于混合动力车辆的驱动控制装置
    • US20150051770A1
    • 2015-02-19
    • US14385825
    • 2012-03-21
    • Koji HayashiHiroyasu HaradaTomohito OnoHiroyuki Ishii
    • Koji HayashiHiroyasu HaradaTomohito OnoHiroyuki Ishii
    • B60W20/00B60K6/365B60W10/02B60W10/06B60W10/08
    • B60W20/10B60K6/365B60K6/445B60K2006/381B60K2006/4841B60W10/02B60W10/06B60W10/08B60W20/20B60W20/40Y02T10/6239Y02T10/6286Y02T10/7258Y10S903/93
    • A drive control device for a hybrid vehicle is provided with a differential device including four rotary elements; and an engine, first and second electric motors and an output rotary member which are respectively connected to the four rotary elements. One of the four rotary elements is constituted by a rotary component of a first differential mechanism and a rotary component of a second differential mechanism selectively connected through a clutch, and one of the rotary components is selectively fixed to a stationary member through a brake. The hybrid vehicle is selectively placed in one of drive modes including a first hybrid drive mode in which the brake is placed in an engaged state while the clutch is placed in a released state, and a second hybrid drive mode in which the brake is placed in a released state while the clutch is placed in an engaged state. The drive control device comprises: an engine stop control portion configured to switch the hybrid drive mode from the second hybrid drive mode to the first hybrid drive mode, before stopping the engine according to a requirement to stop the engine in the second hybrid drive mode; a resonance restriction control portion configured to initiate positive reduction of an operating speed of the engine with an operation of the first electric motor when the operating speed of the engine has dropped below a predetermined determination value; and a torque offsetting control portion configured to control the second electric motor so as to offset a reaction force which acts on the output rotary member as a result of the positive reduction of the operating speed of the engine by the first electric motor.
    • 用于混合动力车辆的驱动控制装置设置有包括四个旋转元件的差速装置; 以及分别连接到四个旋转元件的发动机,第一和第二电动机和输出旋转构件。 四个旋转元件中的一个由第一差速机构的旋转部件和通过离合器选择性地连接的第二差速机构的旋转部件构成,并且其中一个旋转部件通过制动器选择性地固定到固定部件。 混合动力车辆选择性地放置在一种驱动模式中,包括第一混合动力驱动模式,其中制动器处于接合状态,同时离合器处于释放状态;以及第二混合动力驱动模式,其中制动器被放置在 当离合器处于接合状态时的释放状态。 驱动控制装置包括:发动机停止控制部,被配置为在根据在第二混合动力驱动模式下停止发动机的要求停止发动机之前将混合动力驱动模式从第二混合动力驱动模式切换到第一混合动力驱动模式; 共鸣限制控制部,被配置为当所述发动机的运转速度降低到预定的确定值以下时,通过所述第一电动机的运转来启动所述发动机的运转速度的正的降低; 以及扭矩补偿控制部,其被配置为通过由所述第一电动机正向降低所述发动机的操作速度来控制所述第二电动机,以抵消作用在所述输出旋转部件上的反作用力。