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    • 21. 发明申请
    • IMAGING LENS, CAMERA MODULE, AND PORTABLE TERMINAL APPARATUS
    • 成像镜头,相机模块和便携式终端设备
    • US20080239510A1
    • 2008-10-02
    • US12032483
    • 2008-02-15
    • Kenichi SatoMinoru Taniyama
    • Kenichi SatoMinoru Taniyama
    • G02B13/18
    • G02B13/0035G02B9/16G02B13/18
    • An imaging lens comprises, in order from an object side: a first lens having a positive refractive power and a meniscus shape and having a convex surface directed to the object side; a second lens having a negative refractive power in the vicinity of an optical axis of the imaging lens; and a third lens having a positive refractive power in the vicinity of the optical axis, wherein at least one surface of each of the second lens and the third lens is an aspheric surface; and the imaging lens satisfies the following conditional expression expressions: 0.7
    • 成像透镜从物体侧依次包括具有正折射力和弯月形状并且具有指向物侧的凸面的第一透镜; 在成像透镜的光轴附近具有负折射力的第二透镜; 以及在所述光轴附近具有正折光力的第三透镜,其中,所述第二透镜和所述第三透镜中的每一个的至少一个表面是非球面; 并且成像透镜满足以下条件表达式:<?in-line-formula description =“In-line formula”end =“lead”?> 0.7 <| f1 / f | <0.8(1)<? -formulae description =“In-line Formulas”end =“tail”?> <?in-line-formula description =“In-line Formulas”end =“lead”?> 0.3 <| f2 / f | <0.8(2 )<?in-line-formula description =“In-line Formulas”end =“tail”?> <?in-line-formula description =“In-line Formulas”end =“lead”?> 75 << SUB> ?= d> = = <<<<<<<<<<<<<<<<“”“”“”“”“”“”“”“?”“”“?”“ “in-line formula”end =“lead”?> TL / 2Y <0.9(4)<?in-line-formula description =“In-line Formulas”end =“tail”?>其中f: 成像镜头; f 1:第一透镜的焦距; f 2:第二透镜的焦距; 第一透镜的阿贝数为d线; TL:第一透镜的物体侧表面与成像透镜的图像形成位置之间的长度; Y:最大图像高度。
    • 22. 发明授权
    • Imaging lens
    • 成像镜头
    • US07342729B2
    • 2008-03-11
    • US11727606
    • 2007-03-27
    • Kenichi SatoMinoru Taniyama
    • Kenichi SatoMinoru Taniyama
    • G02B13/04G02B13/18
    • G02B13/0035G02B9/16G02B13/18G02B13/22
    • An imaging lens comprises, in order from an object side: a first lens having a positive refractive power; a second lens having a negative refractive power whose concave surface faces to the object; and a third lens having a positive refractive power and having a meniscus form that has a convex surface, facing to the object, in a portion at and around an optical axis of the imaging lens; wherein the first, second and third lenses have at least one aspheric surface, and wherein the imaging lens satisfies conditional expressions given below: 0.7
    • 成像透镜从物体侧依次包括具有正折光力的第一透镜; 具有凹面朝向物体的负屈光力的第二透镜; 以及第三透镜,其具有正屈光力并且具有弯月形,其在成像透镜的光轴的周围和周围具有面向物体的凸表面; 其中所述第一,第二和第三透镜具有至少一个非球面,并且其中所述成像透镜满足以下给出的条件表达式:<?in-line-formula description =“In-line Formulas”end =“lead”?> 0.7 < f1 / f <1.3(1)<?in-line-formula description =“在线公式”end =“tail”?> <?in-line-formula description =“In-line Formulas”end =“lead” ?> 0.3 <?in-line-formula description =“In-line Formulas”end =“lead”?> 1.0 <| f2 / f | <3.0(3)<?in-line-formula description =“In-line Formulas”end =“tail”?> <?in-line-formula description = 在线公式“end =”lead“?> 1.2 其中f:焦距 f 1:第一透镜的焦距,f 2:第二透镜的焦距,f 3:第三透镜的焦距,以及D 2:在光轴上的间隔, 在第一透镜和第二透镜之间。
    • 23. 发明申请
    • Electromagnetic Fuel Injection Valve
    • 电磁燃油喷射阀
    • US20070241299A1
    • 2007-10-18
    • US10591904
    • 2005-02-25
    • Akira AkabaneKenichi Sato
    • Akira AkabaneKenichi Sato
    • F02M51/06
    • F02M61/12F02M51/005F02M51/0664F02M51/0678F02M61/16F02M61/165F02M61/18F02M2200/07F02M2200/505F02M2200/8084
    • In an electromagnetic fuel injection valve in which a valve assembly formed by integrally connecting a valve element and a movable core to each other is contained in a valve housing, and a first journal part and a second journal part are provided in the valve assembly so as to be supported slidably in the guide hole in a valve housing, the outside surface of the first journal part (21) is formed by a sliding surface (45) slidable on the inside surface of the guide hole (14) and a pair of tapered tilt surfaces (46, 47) connecting to both the front and rear sides of the sliding surface (45); at least the tilt surface (47) on the movable core side, of both the tilt surfaces (46, 47), is formed of a first tilt surface part (47a) connecting to an end part of the sliding surface (45) and a second tilt surface part (47b) connecting to the first tilt surface part (47a); and an angle that the first tilt surface part (47a) makes with a plane perpendicular to the axis line of a valve shaft part (19b) is set larger than an angle that the second tilt surface part (47b) makes with the plane. Whereby a decrease in initial fitting property and an increase in abrasion loss can be avoided, and the weight of the valve assembly can be reduced while good response and flow characteristic are maintained.
    • 在电磁燃料喷射阀中,其中通过将阀元件和可动铁心彼此一体地连接形成的阀组件容纳在阀壳体中,并且在阀组件中设置有第一轴颈部件和第二轴颈部件,以便 在阀壳体的导向孔中可滑动地支撑,第一轴颈部分(21)的外表面由可在导向孔(14)的内表面上滑动的滑动表面(45)形成,并且具有一对锥形 连接到滑动表面(45)的前侧和后侧的倾斜表面(46,47); 至少两个倾斜表面(46,47)的可动铁芯侧上的倾斜表面(47)由连接到滑动表面(45)的端部的第一倾斜表面部分(47a)和 连接到第一倾斜表面部分(47a)的第二倾斜表面部分(47b); 并且第一倾斜面部(47a)与垂直于阀轴部(19b)的轴线的平面所成的角度被设定为大于第二倾斜面部(47b)与 飞机 由此可以避免初始拟合性能的降低和磨损量的增加,并且可以降低阀组件的重量,同时保持良好的响应和流动特性。
    • 25. 发明申请
    • Active vibration insulator
    • 主动振动绝缘子
    • US20060287799A1
    • 2006-12-21
    • US11450277
    • 2006-06-12
    • Hiroyuki IchikawaTakayoshi YasudaTakehiko FushimiDaichi MizushimaKenichi Sato
    • Hiroyuki IchikawaTakayoshi YasudaTakehiko FushimiDaichi MizushimaKenichi Sato
    • G06F17/00
    • F16F13/266
    • An active vibration insulator includes an electromagnetic actuator, a control-signals generator, a control-signals compensator, and a driver. The electromagnetic actuator generates vibrating forces depending on electric-current supplies. The control-signals generator generates control signals, which actively inhibit vibrations generated by a vibration generating source of a vehicle from transmitting to a specific part of the vehicle, based on cyclic pulsating signals output from the vibration generating source. The control-signals compensator compensates the cyclic control signals, which the control-signals generator generates, depending on output voltages of a battery. The driver is connected between the battery and the electromagnetic actuator, and makes the electric-current supplies variable based on the cyclic control signals, which the control-signals compensator has compensated, and the output voltages of the battery, thereby driving the electromagnetic actuator.
    • 主动振动绝缘体包括电磁致动器,控制信号发生器,控制信号补偿器和驱动器。 电磁执行器根据电流供应产生振动。 控制信号发生器基于从振动发生源输出的循环脉动信号产生控制信号,该控制信号主动地抑制由车辆的振动发生源产生的振动从车辆的特定部分发送到车辆的特定部分。 控制信号补偿器根据电池的输出电压补偿控制信号发生器产生的循环控制信号。 驱动器连接在电池和电磁致动器之间,并且基于控制信号补偿器已经补偿的循环控制信号和电池的输出电压使得电流供应可变,从而驱动电磁致动器。
    • 27. 发明申请
    • Active vibration insulator
    • 主动振动绝缘子
    • US20060139840A1
    • 2006-06-29
    • US11317049
    • 2005-12-27
    • Takayoshi YasudaHideki OshimaHiroyuki IchikawaDaichi MizushimaTakehiko FushimiKenichi Sato
    • Takayoshi YasudaHideki OshimaHiroyuki IchikawaDaichi MizushimaTakehiko FushimiKenichi Sato
    • H01H47/00
    • G05B13/041F16F13/26F16F15/03F16F2230/24G05B23/0243
    • An active vibration insulator includes an electromagnetic actuator, a control-signals generating device, a driver, a calculator, and a judging device. The electromagnetic actuator generates vibrating forces depending on electric-current supplies. The control-signals generating device generates cyclic control signals based on cyclic pulsating signals output from a vibration generating source of a vehicle. The cyclic control signals actively inhibit vibrations generated by the vibration generating source from transmitting to a specific part of the vehicle. The driver drives the electromagnetic actuator by making the electric-current supplies variable based on the cyclic control signals. The calculator calculates an estimated transfer function composed of estimated values of a transfer function for a transfer system including the electromagnetic actuator and the driver. The judging device judges an inoperative malfunction of the electromagnetic actuator based the estimated transfer function.
    • 主动振动绝缘体包括电磁致动器,控制信号产生装置,驱动器,计算器和判断装置。 电磁执行器根据电流供应产生振动。 控制信号生成装置基于从车辆的振动发生源输出的循环脉动信号生成循环控制信号。 循环控制信号主动地抑制振动发生源产生的振动,从而传递到车辆的特定部分。 驱动器通过使电流供应器基于循环控制信号而变化来驱动电磁致动器。 计算器计算由包括电磁致动器和驱动器的传送系统的传递函数的估计值组成的估计传递函数。 判断装置基于估计的传递函数来判断电磁致动器的不操作故障。
    • 28. 发明申请
    • Single focus lens with particular optical distortion
    • 具有特殊光学失真的单焦点透镜
    • US20050073753A1
    • 2005-04-07
    • US10951635
    • 2004-09-29
    • Kenichi Sato
    • Kenichi Sato
    • G02B13/00G02B13/18G02B27/00G02B15/14G02B9/04
    • G02B13/003G02B13/18G02B27/0025
    • A single focus lens includes, in order from the object side: a diaphragm stop; and first and second lens components, each lens component being of positive refractive power and each having a convex surface on the object side near the optical axis. Each of the two lens components has two aspheric surfaces, may be a lens element, and preferably is made of plastic. The single focus lens may include no other lens elements and the diaphragm stop may be on the object side of the single focus lens. Specified on-axis conditions are satisfied in order to reduce aberrations and to make the single focus lens compact. Additionally, satisfying a condition related to the optical distortion at the maximum image height and at fifty percent of the maximum image height helps reduce the actual observed distortion of an image.
    • 单焦点透镜从物体侧依次包括:光阑止动件; 以及第一和第二透镜部件,每个透镜部件具有正折光力并且每个在物体侧具有靠近光轴的凸表面。 两个透镜部件中的每一个具有两个非球面,可以是透镜元件,并且优选地由塑料制成。 单焦点透镜可以不包括其他透镜元件,并且光阑止挡可以在单焦点透镜的物体侧上。 为了减少像差并使单焦点透镜紧凑,满足轴上条件的指定。 此外,满足与最大图像高度处的光学失真相关的条件和最大图像高度的百分之五十有助于减少实际观察到的图像失真。