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    • 41. 发明授权
    • Rotary feed mechanism
    • 旋转进给机构
    • US5386740A
    • 1995-02-07
    • US953025
    • 1992-09-29
    • Hiroshi NomuraNorio Sato
    • Hiroshi NomuraNorio Sato
    • F16H19/00F16H25/20G02B7/10F16H27/02G02B7/02
    • F16H19/04F16H25/20G02B7/10F16H2025/2081Y10T74/188
    • A rotary feed mechanism including gears provided on an outer peripheral surface of an inner ring, male threads on an outer peripheral surface of an inner ring, and an outer ring having female threads which .engage with the male threads of the inner ring. At least one male thread formed between the gears of the inner ring is engaged with a female thread provided on the outer ring, and at least one pinion engages with at least one of the gears, regardless of the axial position of the inner ring with respect to the outer ring. When the at least one pinion is rotated, the rotation is transmitted to the inner ring, and the inner ring is moved in an optical axis direction, with respect to the outer ring, in accordance with the engagement between the male and female threads.
    • 一种旋转进给机构,其包括设置在内圈的外周面上的齿轮,内圈的外周面上的外螺纹,以及具有内螺纹的外螺纹的外圈,内圈的内螺纹与内圈的外螺纹接合。 形成在内圈的齿轮之间的至少一个外螺纹与设置在外圈上的阴螺纹接合,并且至少一个小齿轮与至少一个齿轮接合,而不管内圈的轴向位置如何 到外圈。 当至少一个小齿轮旋转时,旋转被传递到内圈,并且根据阳螺纹和阴螺纹之间的接合,内环相对于外环在光轴方向上移动。
    • 43. 发明授权
    • Secondary working apparatus
    • 二次加工设备
    • US4479294A
    • 1984-10-30
    • US388135
    • 1982-06-14
    • Hironobu SekimotoNorio Sato
    • Hironobu SekimotoNorio Sato
    • B21H5/00B23F19/00B23F19/10B23F23/12B23P15/14B23F19/06
    • B23F19/00B23F19/10B23F23/1237Y10T29/49471Y10T409/101113Y10T409/101272Y10T409/107632
    • A secondary working apparatus for secondarily machining a blank preliminarily formed with internal serrations, splines or teeth on a cylindrical plane, comprising a stationary housing structure, support means for supporting the blank with the center axis of the cylindrical plane fixed with respect to the housing structure, a plurality of shafts each having a center axis parallel with the center axis of the cylindrical plane and rotatable with respect to the housing structure about an axis coincident with the center axis of the shaft and an axis coincident with the center axis of the cylindrical plane, each of the shafts having a cylindrical eccentric axial portion having a center axis parallel with and radially offset from the center axis of the shaft, and generally cylindrical machining tools coaxially carried on the eccentric axial portions of the shafts, respectively, and each having a center axis coincident with the center axis of the eccentric axial portion of each of the shafts, the machining tools including at least one finishing tool formed with external serrations to be in mesh with the internal serrations of the blank, and a deburring tool having surface portions engageable with crest face portions of the internal serrations of the blank.
    • 一种二次加工装置,用于二次加工在圆柱形平面上预先形成有内部锯齿,花键或齿的坯料,其包括固定的壳体结构,用于支撑坯料的支撑装置,其中圆柱形平面的中心轴线相对于壳体结构固定 多个轴,每个轴具有平行于所述圆柱形平面的中心轴线的中心轴线,并且可相对于所述壳体结构围绕与所述轴线的中心轴线重合的轴线和与所述圆柱形平面的中心轴线重合的轴线旋转 每个轴具有圆柱形的偏心轴向部分,其中心轴线平行于轴的中心轴线并且径向偏离轴的中心轴线,并且大致圆柱形的加工工具分别同轴地承载在轴的偏心轴向部分上,并且每个具有 中心轴与每个轴的偏心轴向部分的中心轴线重合, 所述加工工具包括至少一个精加工工具,其形成有与所述坯件的内部锯齿状啮合的外部锯齿,以及具有可与所述坯件的内部锯齿的顶部部分接合的表面部分的去毛刺工具。
    • 45. 发明授权
    • Charged particle microscope and measurement image correction method thereof
    • 带电粒子显微镜及其测量图像校正方法
    • US08957959B2
    • 2015-02-17
    • US13981326
    • 2011-11-02
    • Shuangqi DongNorio SatoSusumu Koyama
    • Shuangqi DongNorio SatoSusumu Koyama
    • H01J37/26H04N5/217H01J37/22G21K7/00
    • H04N5/217H01J37/222H01J37/26H01J2237/153
    • A charged particle microscope corrects distortion in an image caused by effects of drift in the sampling stage by measuring the correction reference image in a shorter time than the observation image, making corrections by comparing the shape of the observation image with the shape of the correction reference image, and reducing distortion in the observation images. The reference image for distortion correction is measured at the same position and magnification as when acquiring images for observation. In order to reduce effects from drift, the reference image is at this time measured within a shorter time than the essential observation image. The shape of the observation image is corrected by comparing the shapes of the reference image and observation image, and correcting the shape of the observation image to match the reference image.
    • 带电粒子显微镜通过在比观察图像更短的时间内测量校正参考图像来校正由采样阶段的漂移效应引起的图像中的失真,通过将观察图像的形状与校正基准的形状进行比较来进行校正 图像,减少观察图像的失真。 与获取观察图像时相同的位置和倍率测量用于失真校正的参考图像。 为了减少漂移的影响,此时在比基本观察图像更短的时间内测量参考图像。 通过比较参考图像和观察图像的形状以及校正观察图像的形状以匹配参考图像来校正观察图像的形状。
    • 46. 发明授权
    • Surface shape recognition sensor device
    • 表面形状识别传感器装置
    • US07508963B2
    • 2009-03-24
    • US12079818
    • 2008-03-28
    • Toshishige ShimamuraHiroki MorimuraSatoshi ShigematsuNorio SatoMasami UranoKatsuyuki Machida
    • Toshishige ShimamuraHiroki MorimuraSatoshi ShigematsuNorio SatoMasami UranoKatsuyuki Machida
    • G06K9/00
    • G06K9/0002G06K9/0012
    • A detection element (1A) having a detection electrode (11A) connected to a surface shape detection unit (2) and a detection electrode (12A) connected to a common potential, and a detection element (1B) having a detection electrode (11B) connected to the surface shape detection unit (2) and a detection electrode (12B) connected to a biometric recognition unit (3) are arranged. The surface shape detection unit (2) outputs a signal representing the three-dimensional pattern of the surface shape corresponding to the contact portion to each detection element on the basis of individual capacitances obtained from the detection elements (1A, 1B). The biometric recognition unit (3) determines whether an object (9) is a living body, on the basis of a signal corresponding to the impedance of the object (9) connected between the detection electrode (12B) of the detection element (1B) and the detection electrode (12A) of the detection element (1A).
    • 一种具有连接到表面形状检测单元(2)的检测电极(11A)和与公共电位连接的检测电极(12A)的检测元件(1A)和具有检测电极(11B)的检测元件(1B) 连接到表面形状检测单元(2)和连接到生物识别单元(3)的检测电极(12B)。 表面形状检测单元(2)基于从检测元件(1A,1B)获得的各个电容,将表示与接触部分相对应的表面形状的三维图案的信号输出到每个检测元件。 生物识别单元(3)基于与检测元件(1B)的检测电极(12B)之间连接的物体(9)的阻抗相对应的信号来判定物体(9)是否为活体, 和检测元件(1A)的检测电极(12A)。
    • 47. 发明申请
    • Surface shape recognition sensor device
    • 表面形状识别传感器装置
    • US20080187192A1
    • 2008-08-07
    • US12079818
    • 2008-03-28
    • Toshishige ShimamuraHiroki MorimuraSatoshi ShigematsuNorio SatoMasami UranoKatsuyuki Machida
    • Toshishige ShimamuraHiroki MorimuraSatoshi ShigematsuNorio SatoMasami UranoKatsuyuki Machida
    • G06K9/00
    • G06K9/0002G06K9/0012
    • A detection element (1A) having a detection electrode (11A) connected to a surface shape detection unit (2) and a detection electrode (12A) connected to a common potential, and a detection element (1B) having a detection electrode (11B) connected to the surface shape detection unit (2) and a detection electrode (12B) connected to a biometric recognition unit (3) are arranged. The surface shape detection unit (2) outputs a signal representing the three-dimensional pattern of the surface shape corresponding to the contact portion to each detection element on the basis of individual capacitances obtained from the detection elements (1A, 1B). The biometric recognition unit (3) determines whether an object (9) is a living body, on the basis of a signal corresponding to the impedance of the object (9) connected between the detection electrode (12B) of the detection element (1B) and the detection electrode (12A) of the detection element (1A).
    • 具有连接到表面形状检测单元(2)的检测电极(11A)和与公共电位连接的检测电极(12A)的检测元件(1A)和具有检测元件 连接到表面形状检测单元(2)的电极(11B)和连接到生物识别单元(3)的检测电极(12B)。 表面形状检测单元(2)基于从检测元件(1A,1B)获得的各个电容,将表示与接触部分相对应的表面形状的三维图案的信号输出到每个检测元件。 生物识别单元(3)基于与检测元件(1)的检测电极(12B)之间连接的物体(9)的阻抗相对应的信号来判定物体(9)是活体, B)和检测元件(1A)的检测电极(12A)。
    • 48. 发明授权
    • Method of fabricating a surface shape recognition sensor
    • 制作表面形状识别传感器的方法
    • US07381663B2
    • 2008-06-03
    • US11704024
    • 2007-02-07
    • Norio SatoKatsuyuki MachidaSatoshi ShigematsuHiroki Morimura
    • Norio SatoKatsuyuki MachidaSatoshi ShigematsuHiroki Morimura
    • H01L29/78
    • G06K9/0002Y10S438/942
    • A structure (113b) which includes an overhang and a support portion supporting substantially the center of the overhang, and in which the area of the support portion is smaller than the area of the overhang in the two-dimensional direction of an upper electrode (1110b) is formed on the upper electrode (110a) in a region above each lower electrode 105a in one-to-one correspondence with the lower electrode (105a). An object of surface shape sensing, e.g., the tip of a finger (1602) touches the surface of the overhang of the structure (113b), and the support portion of the structure (113b) whose overhang is in contact with the object of sensing pushes down a portion of the upper electrode (110a) toward the lower electrode (105a), thereby deforming the upper electrode (110a).
    • 1.一种结构(113b),其包括突出端和支撑部分,所述支撑部分基本上支撑所述突出部的中心,并且所述支撑部分的面积小于所述上部电极的二维方向上的所述突出部分的面积( 1110b)形成在每个下电极105a上的区域中的上电极(110a)上,与下电极(105a)一一对应地形成。 表面形状检测的目的,例如手指的尖端(1602)接触结构(113b)的突出部分的表面,并且结构(113b)的支撑部分(113b)的突出部与物体接触 的感测将上部电极(110a)的一部分朝向下部电极(105a)下压,从而使上部电极(110a)变形。
    • 49. 发明授权
    • Surface shape recognition sensor
    • 表面形状识别传感器
    • US07366332B2
    • 2008-04-29
    • US10528283
    • 2004-08-12
    • Toshishige ShimamuraHiroki MorimuraSatoshi ShigematsuNorio SatoMasami UranoKatsuyuki Machida
    • Toshishige ShimamuraHiroki MorimuraSatoshi ShigematsuNorio SatoMasami UranoKatsuyuki Machida
    • G06K9/00
    • G06K9/0002G06K9/0012
    • A detection element (1A) having a detection electrode (11A) connected to a surface shape detection unit (2) and a detection electrode (12A) connected to a common potential, and a detection element (1B) having a detection electrode (11B) connected to the surface shape detection unit (2) and a detection electrode (12B) connected to a biometric recognition unit (3) are arranged. The surface shape detection unit (2) outputs a signal representing the three-dimensional pattern of the surface shape corresponding to the contact portion to each detection element on the basis of individual capacitances obtained from the detection elements (1A, 1B). The biometric recognition unit (3) determines whether an object (9) is a living body, on the basis of a signal corresponding to the impedance of the object (9) connected between the detection electrode (12B) of the detection element (1B) and the detection electrode (12A) of the detection element (1A).
    • 具有连接到表面形状检测单元(2)的检测电极(11A)和与公共电位连接的检测电极(12A)的检测元件(1A)和具有检测元件 连接到表面形状检测单元(2)的电极(11B)和连接到生物识别单元(3)的检测电极(12B)。 表面形状检测单元(2)基于从检测元件(1A,1B)获得的各个电容,将表示与接触部分相对应的表面形状的三维图案的信号输出到每个检测元件。 生物识别单元(3)基于与检测元件(1)的检测电极(12B)之间连接的物体(9)的阻抗相对应的信号来判定物体(9)是活体, B)和检测元件(1A)的检测电极(12A)。