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    • 82. 发明授权
    • Lens barrel and image pickup apparatus
    • 镜筒和摄像装置
    • US07289283B2
    • 2007-10-30
    • US11526823
    • 2006-09-26
    • Kazuhiro Hattori
    • Kazuhiro Hattori
    • G02B7/02
    • G02B7/102H04N5/2254
    • A lens barrel includes a lens moving frame configured to hold an image pickup lens; a barrel member configured to support the lens moving frame for back and forth linear movement along the direction of an optical axis of the image pickup lens; the lens moving frame having a magnetized face magnetized alternately with N poles and S poles along the direction of the back and forth linear movement; and, a magnetic resistance sensor apparatus. The magnetic resistance sensor apparatus has a magnetic resistance sensor, a body, a single screw, and a plurality of resilient pieces. The resilient pieces are formed such that, in a state wherein the resilient pieces are resiliently deformed all by the same amount, the sum of moments by the resilient pieces which act upon the location of the body at which the screw is fitted is zero.
    • 透镜镜筒包括构造成保持图像拾取透镜的透镜移动框架; 镜筒构件,其构造成沿着所述图像拾取透镜的光轴的方向支撑所述透镜移动框架以进行前后线性移动; 所述透镜移动框架具有沿着前后线性运动的方向以N极和S极交替地磁化的磁化面; 和磁阻传感器装置。 磁阻传感器装置具有磁阻传感器,主体,单个螺钉和多个弹性件。 弹性件形成为使得在弹性片全部弹性变形的状态下,作用于安装螺钉的主体位置的弹性片的力矩之和为零。
    • 83. 发明申请
    • Lens barrel and image pickup apparatus
    • 镜筒和摄像装置
    • US20070146909A1
    • 2007-06-28
    • US11526823
    • 2006-09-26
    • Kazuhiro Hattori
    • Kazuhiro Hattori
    • G02B7/02
    • G02B7/102H04N5/2254
    • A lens barrel includes a lens moving frame configured to hold an image pickup lens; a barrel member configured to support the lens moving frame for back and forth linear movement along the direction of an optical axis of the image pickup lens; the lens moving frame having a magnetized face magnetized alternately with N poles and S poles along the direction of the back and forth linear movement; and a magnetic resistance sensor apparatus. The magnetic resistance sensor apparatus has a magnetic resistance sensor, a body, a single screw, and a plurality of resilient pieces. The resilient pieces is formed such that, in a state wherein the resilient pieces are resiliently deformed all by the same amount, the sum of moments by the resilient pieces which act upon the location of the body at which the screw is fitted is zero.
    • 透镜镜筒包括构造成保持图像拾取透镜的透镜移动框架; 镜筒构件,其构造成沿着所述图像拾取透镜的光轴的方向支撑所述透镜移动框架以进行前后线性移动; 所述透镜移动框架具有沿着前后线性运动的方向以N极和S极交替地磁化的磁化面; 和磁阻传感器装置。 磁阻传感器装置具有磁阻传感器,主体,单个螺钉和多个弹性件。 弹性片形成为使得在弹性片全部相同量的弹性变形的状态下,作用于安装螺钉的主体位置的弹性片的力矩之和为零。
    • 87. 发明授权
    • Diaphragm unit, light intensity adjusting device, lens barrel, and imaging apparatus
    • 隔膜单元,光强度调节装置,镜筒和成像装置
    • US07922404B2
    • 2011-04-12
    • US12653372
    • 2009-12-11
    • Kazuhiro HattoriRyuhei Azuma
    • Kazuhiro HattoriRyuhei Azuma
    • G03B9/06
    • G03B9/02
    • A diaphragm unit includes: a pair of straight-moving diaphragm blades and a pair of swing diaphragm blades overlapping with each other in an optical axis direction of an optical system and forming a diaphragm opening centered on the optical axis by moving in directions in which the diaphragm blades get close to and apart from the optical axis along a plane perpendicular to the optical axis; a receiving member receiving the pair of straight-moving diaphragm blades and the pair of swing diaphragm blades; and a diaphragm driving mechanism adjusting the size of the diaphragm opening by moving the diaphragm blades. The receiving member has a pair of side surfaces facing each other in the optical axis direction. One and the other of the straight-moving diaphragm blades and one and the other of the swing diaphragm blades are disposed on one and the other of the side surfaces, respectively.
    • 膜片单元包括:一对直线移动光阑叶片和一对摆动光阑叶片,其在光学系统的光轴方向上彼此重叠,并且通过沿着光轴方向移动形成以光轴为中心的光阑开口, 光阑叶片沿着与光轴垂直的平面靠近和离开光轴; 接收所述一对直线光阑叶片和所述一对摆动光阑叶片的接收部件; 以及通过移动光阑叶片来调节光阑开口的尺寸的光阑驱动机构。 接收构件具有在光轴方向上彼此面对的一对侧面。 一个和另一个直线移动的光阑叶片和一个和另一个摆动光阑叶片分别设置在一个和另一个侧面上。
    • 88. 发明申请
    • Diaphragm unit, light intensity adjusting device, lens barrel, and imaging apparatus
    • 隔膜单元,光强度调节装置,镜筒和成像装置
    • US20100158507A1
    • 2010-06-24
    • US12653372
    • 2009-12-11
    • Kazuhiro HattoriRyuhei Azuma
    • Kazuhiro HattoriRyuhei Azuma
    • G03B9/02G02B9/00
    • G03B9/02
    • A diaphragm unit includes: a pair of straight-moving diaphragm blades and a pair of swing diaphragm blades overlapping with each other in an optical axis direction of an optical system and forming a diaphragm opening centered on the optical axis by moving in directions in which the diaphragm blades get close to and apart from the optical axis along a plane perpendicular to the optical axis; a receiving member receiving the pair of straight-moving diaphragm blades and the pair of swing diaphragm blades; and a diaphragm driving mechanism adjusting the size of the diaphragm opening by moving the diaphragm blades. The receiving member has a pair of side surfaces facing each other in the optical axis direction. One and the other of the straight-moving diaphragm blades and one and the other of the swing diaphragm blades are disposed on one and the other of the side surfaces, respectively.
    • 膜片单元包括:一对直线移动光阑叶片和一对摆动光阑叶片,其在光学系统的光轴方向上彼此重叠,并且通过沿着光轴方向移动形成以光轴为中心的光阑开口, 光阑叶片沿着与光轴垂直的平面靠近和离开光轴; 接收所述一对直线光阑叶片和所述一对摆动光阑叶片的接收部件; 以及通过移动光阑叶片来调节光阑开口的尺寸的光阑驱动机构。 接收构件具有在光轴方向上彼此面对的一对侧面。 一个和另一个直线移动的光阑叶片和一个和另一个摆动光阑叶片分别设置在一个和另一个侧面上。
    • 89. 发明授权
    • Magnetic recording medium
    • 磁记录介质
    • US07615292B2
    • 2009-11-10
    • US11082865
    • 2005-03-18
    • Kuniyasu ItoKazuhiro Hattori
    • Kuniyasu ItoKazuhiro Hattori
    • G11B5/65G11B5/71B32B17/08
    • G11B5/82G11B5/65G11B5/855
    • A magnetic recording medium having a recording layer formed in a concavo-convex pattern, which can allow a head to have stable flying characteristics. The recording layer is formed in a concavo-convex pattern, and concave portions of the concavo-convex pattern of the recording layer are filled with a non-magnetic material. The relationship of S≦3.6×R holds, when R represents a concavo-convex ratio obtained by dividing an area of convex portions in a surface by an area of the concave portions in the surface, and S represents a difference in height between a concavity and a convexity of the surface. In the magnetic recording medium, an arithmetical mean deviation of the assessed profile of the surface is limited to 0.3 nm or more.
    • 具有形成为凹凸图案的记录层的磁记录介质,其能够使头具有稳定的飞行特性。 记录层形成为凹凸图案,记录层的凹凸图案的凹部填充有非磁性材料。 当S <= 3.6×R的关系成立时,当R表示通过将表面中的凸部的面积除以表面中的凹部的面积而获得的凹凸比,并且S表示凹部之间的高度差 和表面的凸面。 在磁记录介质中,表面评估轮廓的算术平均偏差限制在0.3nm以上。
    • 90. 发明授权
    • Magnetic recording medium and magnetic recording and reproduction apparatus
    • 磁记录介质和磁记录和再现设备
    • US07385785B2
    • 2008-06-10
    • US11220542
    • 2005-09-08
    • Kazuhiro HattoriKazuya Shimakawa
    • Kazuhiro HattoriKazuya Shimakawa
    • G11B5/82
    • G11B5/82B82Y10/00G11B5/667G11B5/732G11B5/7325G11B5/743G11B5/855
    • A magnetic recording medium is provided, which includes a recording layer formed in a concavo-convex pattern to achieve high areal density and can ensure good recording and reproduction characteristics so as to provide high reliability. The magnetic recording medium has a substrate and a recording layer formed in the predetermined concavo-convex pattern over the substrate. The recording layer has a non-recording element and recording elements. The non-recording element is formed as convex portion of the concavo-convex pattern at an outer circumferential end and/or an inner circumferential end. The recording elements are formed as convex portions of the concavo-convex pattern in a region other than a region where the non-recording element is arranged. The magnetic recording medium further has a non-magnetic material with which concave portions of the concavo-convex pattern are filled and which covers the non-recording element, and a protective layer formed over the recording layer and the non-magnetic material.
    • 提供了一种磁记录介质,其包括形成为凹凸图案的记录层以实现高面密度并且可以确保良好的记录和再现特性,从而提供高可靠性。 磁记录介质具有在衬底上形成为预定凹凸图案的衬底和记录层。 记录层具有非记录元件和记录元件。 非记录元件在外周端和/或内周端形成凹凸图案的凸部。 记录元件在非记录元件布置的区域以外的区域中形成为凹凸图案的凸部。 磁记录介质还具有非磁性材料,凹凸图案的凹部被填充并且覆盖非记录元件,以及形成在记录层和非磁性材料上的保护层。