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    • 1. 发明专利
    • Device for measuring number of sheets
    • 用于测量表格数量的装置
    • JP2005258523A
    • 2005-09-22
    • JP2004065265
    • 2004-03-09
    • Kirin Techno-System Corp株式会社キリンテクノシステム
    • MIYAJI NOBUOMORI HIDEO
    • G06M9/00G06M1/10
    • G06M1/101G06M9/00
    • PROBLEM TO BE SOLVED: To accurately measure the number of sheet materials whose center have core materials, such as multi-laminated corrugated cardboard sheets. SOLUTION: A sheet layered product 11 where a plurality of corrugated cardboard sheets 12 are laminated is set, in a status with the laminating direction being horizontal, and a slider 3 is moved along the edge face of the sheet laminated product 11. Three sensor top end parts 5a to 7a are arranged in the vertical direction in a slider 3; when the edge faces of the corrugated cardboard sheets 12 are irradiated with spot lights emitted from the respective sensor top end parts 5a to 7a, all the spot lights are reflected and received, in such a status that each sensor passes through liners 15 and 16; and at least one spot light is emitted to a clearance part 17 of the core member 14 in such a status that each sensor passes through a core member 14 of a waveform so that at least one reflected light can be prevented from being received. A control unit 18 counts the number, when all the reflected lights are received, and sets a value obtained by subtracting 1 from the count value c as the number of sheets T. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:准确测量中心具有多层瓦楞纸板材的芯材的片材数量。 解决方案:在层叠方向为水平的状态下,设置层叠有多个瓦楞纸板12的片材层叠体11,并且滑块3沿着片材叠层体11的边缘面移动。 三个传感器顶端部分5a至7a在滑块3中沿垂直方向布置; 当从各传感器顶端部5a〜7a发射的点光照射瓦楞纸板12的边缘面时,以每个传感器通过衬垫15,16的状态反射和接收所有的聚光灯; 并且至少一个点光以每个传感器通过波形的芯构件14的状态被发射到芯构件14的间隙部17,使得可以防止至少一个反射光被接收。 当所有反射光被接收时,控制单元18对该数进行计数,并且将通过从计数值c中减去1获得的值设置为张数T.版权所有(C)2005,JPO&NCIPI
    • 3. 发明专利
    • Stack number measuring apparatus
    • 堆码测量装置
    • JP2005293000A
    • 2005-10-20
    • JP2004104414
    • 2004-03-31
    • Kirin Techno-System Corp株式会社キリンテクノシステム
    • MIYAJI NOBUOMORI HIDEO
    • G06M7/06G06M1/10G06M9/00
    • G06M1/101G06M9/00
    • PROBLEM TO BE SOLVED: To simply and accurately measure the number of stacks of a plate stack of a plurality of stacked plates.
      SOLUTION: A light spot 15 is radiated onto a stack face 5a of a plate stack 5 of stacked ceramic substrates 6. The reflected light is photoelectrically converted in a light receiving element 12 before being output to a low pass filter 22 and a bandpass filter 23. Filtering by the low pass filter 22 detects the plate stack 5 from a measuring start position to a measuring end, and filtering by the bandpass filter 23 outputs a signal corresponding to thickness parts of the ceramic substrates 6. A counter circuit 27 counts states of detection of the thickness parts of the ceramic substrates 6 in a section from the measuring start position to the measuring end of the plate stack 5 to measure the number of stacks from the value.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:简单而准确地测量多个堆叠板的板堆叠的堆叠数量。 解决方案:将光点15照射到层叠的陶瓷基板6的板堆5的堆叠面5a上。反射光在被输出到低通滤波器22之前被光电转换成光接收元件12,并且 带通滤波器23.由低通滤波器22进行的滤波从测量开始位置到测量端检测板堆5,并且通过带通滤波器23的滤波输出对应于陶瓷基板6的厚度部分的信号。计数器电路27 计数从测量开始位置到板堆5的测量端的部分中的陶瓷基板6的厚度部分的检测状态,以从该值测量堆叠的数量。 版权所有(C)2006,JPO&NCIPI
    • 4. 发明专利
    • Surface inspection device
    • 表面检查装置
    • JP2007147324A
    • 2007-06-14
    • JP2005338860
    • 2005-11-24
    • Kirin Techno-System CorpKts Optics:Kk株式会社 Ktsオプティクス株式会社キリンテクノシステム
    • MORI HIDEO
    • G01N21/954G01B11/30
    • PROBLEM TO BE SOLVED: To provide a surface inspection device capable of inspecting a defect having a fine size on an inspection object surface, and hardly affected by roughness, dirt or the like on the surface.
      SOLUTION: In this surface inspection device 1 wherein reflected light of light floodlighted from a light source 24 onto the inner surface of the inspection object through a floodlighting fiber 20 is received through light receiving fibers 21, and a two-dimensional image corresponding to the surface of the inspection object 2 is generated based on the light receiving quantity, a plurality of light receiving fibers 21 are arranged around the floodlighting fiber 20, and the diameter of each light receiving fiber 21 is set to be larger than the diameter of the floodlighting fiber 20.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种能够检查检查对象物表面上具有微细尺寸的缺陷,并且几乎不受表面粗糙度,污物等影响的表面检查装置。 解决方案:在这种表面检查装置1中,其中通过光照射光纤20从光源24照射到检查对象的内表面上的光的反射光通过光接收光纤21被接收,并且对应于二维图像 基于受光量生成检查对象2的表面,在泛光灯20周围配置有多个受光光纤21,并且将各受光光纤21的直径设定为大于 泛光灯20.版权所有(C)2007,JPO&INPIT
    • 5. 发明专利
    • Surface inspection device
    • 表面检查装置
    • JP2007147323A
    • 2007-06-14
    • JP2005338858
    • 2005-11-24
    • Kirin Techno-System CorpKts Optics:Kk株式会社 Ktsオプティクス株式会社キリンテクノシステム
    • FUKAMIZU YUKIKOISHIKURA TORUMORI HIDEO
    • G01B11/02G01N21/954G06T1/00
    • PROBLEM TO BE SOLVED: To provide a surface inspection device capable of determining the groove width on the inner surface of a cylindrical body.
      SOLUTION: In this surface inspection device 1 having a floodlighting/light-receiving part 30 and equipped with an inspection part 3 to be inserted into the inside of a cylindrical body 2 which is an inspection object, the inspection part 3 is rotated around the axis C of the cylindrical body 2 and moved forward and backward relatively in the axial direction, and light L is floodlighted from the floodlighting/light-receiving part 30 onto the inner surface of the cylindrical body 2, and reflected light is received, and a two-dimensional image corresponding to the inner surface is generated based on the received light. The device has a groove width determination means 46 having an algorithm wherein the two-dimensional image is expressed by a longitudinal direction coordinate of the groove G and a width direction coordinate of the groove G, and the longitudinal direction coordinate is fixed, and each width direction coordinate of one point g1 corresponding to one side end of the groove G and the other point g2 corresponding to the other side end of the groove G wherein each light receiving quantity is changed over a specific threshold is determined, while being moved along the width direction coordinate, and the groove width in a section from the width direction coordinate of one point and the width direction coordinate of the other point is determined.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种能够确定圆柱体的内表面上的槽宽度的表面检查装置。 解决方案:在具有泛光/受光部30并具有插入到作为检查对象的圆筒体2的内部的检查部3的表面检查装置1中,检查部3旋转 围绕圆筒体2的轴线C并沿轴向相对地前后移动,并且将光L从泛光/受光部30泛光照射到筒体2的内表面上,并且接收反射光, 并且基于所接收的光产生对应于内表面的二维图像。 该装置具有槽宽度确定装置46,其具有其中二维图像由凹槽G的纵向坐标和凹槽G的宽度方向坐标表示,纵向坐标是固定的,并且每个宽度 确定对应于槽G的一个侧端的一个点g1的方向坐标和对应于其中每个光接收量改变特定阈值的槽G的另一个侧端的另一个点g2,同时沿着宽度 方向坐标,并且确定从一点的宽度方向坐标和另一点的宽度方向坐标的截面中的凹槽宽度。 版权所有(C)2007,JPO&INPIT
    • 6. 发明专利
    • Surface inspection equipment
    • 表面检查装置
    • JP2005291771A
    • 2005-10-20
    • JP2004103711
    • 2004-03-31
    • Kirin Techno-System Corp株式会社キリンテクノシステム
    • MORI HIDEO
    • G01N21/954G01N21/952
    • PROBLEM TO BE SOLVED: To inspect continuously the end face and the inner circumferential surface of a cylindrical body by one surface inspection apparatus. SOLUTION: A circular cone body 35 forming a mirror surface 35b on the inner circumferential surface is installed oppositely over the cylindrical body 2. Inspection light from a sensor head 20 is reflected to the mirror surface 35b side of the circular cone body 35 by the mirror surface 12a of a mirror 12 disposed on the optical axis. Since both mirror surfaces 12a, 35b are disposed in parallel, the inspection light reflected by the mirror surface 35b of the circular cone body 35 is irradiated orthogonally toward the flat surface 2b of the cylindrical body 2, and scans around the flat surface 2b by rotation of the mirror 12. The distance dm between the sensor head 20 and the mirror surface 12a at that time is set based on a value determined by subtracting the distance dw between the the mirror surface 12a of the mirror 12 and the mirror surface 35b of the circular cone body 35 and the distance dh between the mirror surface 35b and the flat surface 2b from the focal distance d of the sensor head 20, to thereby enable to always fix the distance from sensor head 20 to the flat surface 2b. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:通过一个表面检查装置连续检查圆筒体的端面和内周面。 解决方案:在内圆周表面上形成镜面35b的圆锥体35相对地安装在圆筒体2上。来自传感器头20的检查光被反射到圆锥体35的镜面35b侧 通过设置在光轴上的反射镜12的镜面12a。 由于两个镜面12a,35b平行配置,所以将圆锥体35的镜面35b反射的检查光正交地朝向圆筒体2的平面2b照射,并且通过旋转来扫描平面2b 基于通过减去反射镜12的镜面12a与反射镜12的镜面35b之间的距离dw确定的值来设定此时的传感器头20与镜面12a之间的距离dm 圆锥体35与传感器头20的焦距d之间的镜面35b与平面2b之间的距离dh,从而能够将传感器头20的距离始终固定在平面2b上。 版权所有(C)2006,JPO&NCIPI