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    • 11. 发明授权
    • Method of manufacturing semiconductor device
    • US06607964B2
    • 2003-08-19
    • US09874110
    • 2001-06-06
    • Hidenori SatoShinya Soeda
    • Hidenori SatoShinya Soeda
    • H01L2120
    • H01L27/10894H01L21/28518H01L21/823418H01L21/823468H01L27/10873
    • A first silicide protection film is deposited on a silicon substrate, a first resist pattern having an opening at a prescribed position is formed, a portion of the first silicide protection film exposed from the opening of the first resist pattern is removed to form a first opening in the first silicide protection film, an N+ diffusion layer is formed in a portion of the silicon substrate exposed from the first opening, the first resist pattern is removed, and a metallic film is deposited to form a first silicide layer on the N+ diffusion layer according to a silicide process. Thereafter, a second silicide protection film is deposited, a second resist pattern having an opening at a prescribed position is formed, portions of the first and second silicide protection films exposed from the opening of the second resist pattern are removed to form a second opening in the first and second silicide protection films, a P+ diffusion layer is formed in a portion of the silicon substrate exposed from the second opening, the second resist pattern is removed, and a metallic film is deposited to form a second silicide layer on the P+ diffusion layer according to the silicide process. Therefore, silicide layers having characteristics optimum to the diffusion layers can be formed, and the number of mask matching operations can be reduced.
    • 12. 发明授权
    • Back mirror comprising automatic glare-proof function
    • 后视镜包括自动防眩功能
    • US06364495B1
    • 2002-04-02
    • US09660682
    • 2000-09-13
    • Mitsuyoshi NagaoHidenori Sato
    • Mitsuyoshi NagaoHidenori Sato
    • G02B508
    • B60R1/088
    • A back mirror 1 comprising an automatic glare-proof function of the present invention includes a battery E1, a daytime/nighttime deciding circuit 3 for deciding whether the current time is daytime or nighttime, an integrating circuit 4, an electronic switch FET1, a glare-proof/glare-non-proof deciding circuit 5 for deciding whether an EC mirror 2 is set to a glare-proof state or a glare-non-proof state, and a driving circuit 6 for applying a DC voltage to the EC mirror 2. The daytime/nighttime deciding circuit 3 is being constantly applied with a DC voltage from the battery E1. When the daytime/nighttime deciding circuit 3 has decided that the current time is daytime, the electronic switch FET1 is turned off, and when the daytime/nighttime deciding circuit 3 has decided that the current time is nighttime, the electronic switch FET1 is turned on. Therefore, the voltage is applied to the glare-proof/glare-non-proof deciding circuit 5 and the driving circuit 6 only when a decision has been made that the current time is nighttime. Thereby, the power consumption of the battery E1 can be decreased.
    • 包括本发明的自动防眩功能的后视镜1包括电池E1,用于判定当前时间是白天还是夜间的白天/夜间判定电路3,积分电路4,电子开关FET1,眩光 用于判定EC反射镜2是否被设定为防眩光状态或防眩光状态的防光/防眩光判定电路5以及用于向EC反射镜2施加直流电压的驱动电路6 白天/夜间判定电路3由电池E1持续施加直流电压。 当白天/夜间判定电路3判定当前时间为白天时,电子开关FET1截止,当白天/夜间判定电路3判定为当前时间为夜间时,电子开关FET1导通 。 因此,仅当判定当前时间是夜间时,才将电压施加到防眩光/防眩光判定电路5和驱动电路6。 由此,可以降低电池E1的功耗。
    • 13. 发明授权
    • Device for driving an EC antiglare mirror
    • 用于驾驶EC防眩光镜的装置
    • US5486952A
    • 1996-01-23
    • US418062
    • 1995-04-06
    • Mitsuyoshi NagaoHidenori SatoMichiaki Hattori
    • Mitsuyoshi NagaoHidenori SatoMichiaki Hattori
    • G02F1/15B60R1/04B60R1/08G02F1/163G02B27/00G01J1/20G02B5/08
    • B60R1/088
    • In a device for driving an EC antiglare mirror in which reflectivity is variably controlled by an EC element, a surrounding light quantity detection circuit detects quantity of light surrounding a vehicle. A rear light quantity detection circuit detects quantity of light in the rear of the vehicle. An oscillation circuit is constructed so that duration of an "H" level of an oscillation signal and duration of an "L" level of the oscillation signal are individually controlled. An inversion period control circuit variably controls duration of one of the "H" and "L" levels of the oscillation signal generated by the oscillation circuit in response to light quantity detected by the surrounding light quantity detection circuit and also variably controls duration of the other level in response to light quantity detected by the rear light quantity detection circuit. An EC element drive circuit inverts, in accordance with the level of the oscillation signal, the polarity of drive voltage supplied from a drive power source and applies the inverted voltage to the EC element and thereby controls the amount of coloration in accordance with duty factor of the oscillation signal.
    • 在用于驱动EC反射镜的装置中,其中反射率由EC元件可变地控制,周围光量检测电路检测车辆周围的光量。 后部光量检测电路检测车辆后方的光量。 构成振荡电路,使得振荡信号的“H”电平和振荡信号“L”电平的持续时间的持续时间被单独控制。 反转周期控制电路响应于由周围光量检测电路检测到的光量,可变地控制由振荡电路产生的振荡信号的“H”和“L”电平之一的持续时间,并且还可变地控制另一个的持续时间 响应于由后光量检测电路检测到的光量的电平。 EC元件驱动电路根据振荡信号的电平反转从驱动电源提供的驱动电压的极性,并将反相电压施加到EC元件,从而根据占空比来控制着色量 振荡信号。
    • 14. 发明授权
    • Valve timing adjuster
    • 阀门定时调节器
    • US4967701A
    • 1990-11-06
    • US462401
    • 1990-01-09
    • Kimiyoshi IsogaiShinji IshidaToshinobu NishiHidenori SatoKenji Yamada
    • Kimiyoshi IsogaiShinji IshidaToshinobu NishiHidenori SatoKenji Yamada
    • F01L1/344
    • F01L1/344F01L2820/031
    • A valve timing adjuster according to the present invention, comprises a pulley rotationally connected to one of an output shaft of engine and a cam shaft, a sleeve which is supported on the pulley, which is rotatable within a predetermined angle of rotation on the pulley and which is rotationally connected to the other one of the output shaft of engine and the cam shaft, an electromagnet mounted on one of the pulley and the sleeve, an armature mounted on the other one of the pulley and the sleeve so that magnetic flux including a magnetic flux component extending in the circumferential direction of the valve timing adjuster is generated, the armature is drawn by the magnetic flux toward the electromagnet and the sleeve is rotated within the predetermined angle of rotation on the pulley when the electromagnet is energized, and a control device which controls the operation of electromagnet so that the phase difference between the cam shaft and the output shaft is suitably adjusted during operation of a vehicle. Since the valve timing adjuster according to the present invention does not need means for converting an axial movement of the pulley to a circumferential or rotational movement thereof, does not have many friction regions and does not have the hydraulically-operated actuator and the hydraulic pipe lines, the durability and response speed are increased and the cost of modification of engine is not needed.
    • 根据本发明的气门正时调节器包括一个可旋转地连接到发动机的输出轴和凸轮轴中的一个的滑轮,一个被支撑在滑轮上的套筒,该套筒可以在滑轮上的预定旋转角度内旋转, 其旋转地连接到发动机的输出轴和凸轮轴中的另一个,安装在滑轮和套筒中的一个上的电磁体,安装在滑轮和套筒中的另一个上的电枢,使得包括一个 产生在气门正时调节器的圆周方向上延伸的磁通量分量,当电磁铁通电时,电枢被磁通量吸引向电磁体并且套筒在滑轮上的预定旋转角度内旋转,并且控制 控制电磁铁的操作的装置,使得凸轮轴和输出轴之间的相位差适当地调节 车辆的运行。 由于根据本发明的气门正时调节器不需要用于将滑轮的轴向运动转换成周向或旋转运动的装置,所以不具有许多摩擦区域,并且不具有液压操作的致动器和液压管路 ,耐久性和响应速度增加,并且不需要发动机的修改成本。
    • 17. 发明授权
    • Apparatus for making bodily fluid absorbent pad
    • 用于制造体液吸收垫的装置
    • US09314379B2
    • 2016-04-19
    • US13586313
    • 2012-08-15
    • Hidenori Sato
    • Hidenori Sato
    • A61F13/15A61F13/475
    • A61F13/15731A61F13/15699A61F13/15723A61F13/4756Y10T83/0429Y10T83/343Y10T156/12
    • A bodily fluid absorbent pad has a shape symmetric in a longitudinal direction as well as in a transverse direction. A dimension of the pad in the transverse direction is larger in opposite end regions than in an intermediate region. The pad is formed along opposite side edges with first and second compressed lines. Paired compression rolls are used to form the first and second compressed lines, and at least one roll constituting the paired compression rolls is formed on a peripheral surface thereof with compressing units projecting from the peripheral surface. The compressing units are arranged in a circumferential direction to form one row and at least one additional row adjacent to the one row in an axial direction of the roll. There is an offset between the compressing unit in the one row and the compressing units in the other row in the circumferential direction.
    • 体液吸收垫具有在纵向方向和横向上对称的形状。 相对于中间区域,焊盘在横向上的尺寸在相对端部区域较大。 衬垫沿着具有第一和第二压缩线的相对侧边缘形成。 使用成对的压缩辊来形成第一和第二压缩线,并且在其外周表面上形成至少一个构成一对压缩辊的辊,其中压缩单元从周向表面突出。 压缩单元沿圆周方向布置以在辊的轴向方向上形成一排和邻近一排的至少一个附加行。 在一行中的压缩单元与沿圆周方向的另一排中的压缩单元之间存在偏移。