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    • 61. 发明授权
    • Driving device having suitable stationary member as material
    • 具有合适的固定构件作为材料的驱动装置
    • US07755252B2
    • 2010-07-13
    • US12148252
    • 2008-04-17
    • Tsukasa YamadaToyoki TanakaTakahiko NishiyamaSoumei Takahashi
    • Tsukasa YamadaToyoki TanakaTakahiko NishiyamaSoumei Takahashi
    • H01L41/08
    • H02N2/025C22C19/03C22C27/04Y10T74/1526
    • A driving device includes an electro-mechanical transducer having first and second end portions opposite to each other in an expansion/contraction direction, a stationary member coupled to the first end portion of the electro-mechanical transducer, a vibration friction portion mounted to the second end portion of the electro-mechanical transducer, and a rod-shaped moving portion frictionally coupled to the vibration friction portion, whereby moving the moving portion in the expansion/contraction direction of the electro-mechanical transducer. The stationary member consists essentially of a base alloy which consists of, by weight, 88 to 97% tungsten, 2 to 11% nickel as a binder, and, as the balance, 0.1 to 2% at least one metal having an ionization tendency which is higher than that of tungsten. The stationary member has a surface without nickel plating.
    • 一种驱动装置,包括具有在膨胀/收缩方向上彼此相对的第一和第二端部的机电换能器,耦合到机电换能器的第一端部的固定部件,安装到第二端部的振动摩擦部分 机电换能器的端部,以及与振动摩擦部摩擦连接的杆状移动部,由此使机电换能器的伸缩方向移动移动部。 固定件基本上由基体合金组成,该基础合金由重量百分比为88%至97%的钨,2%至11%的镍作为粘合剂,而作为余量由0.1至2%的至少一种具有电离倾向的金属 高于钨。 固定件具有不镀镍的表面。
    • 62. 发明申请
    • Driving device capable of reducing height thereof
    • 能够降低高度的驱动装置
    • US20080258579A1
    • 2008-10-23
    • US12148257
    • 2008-04-17
    • Tsukasa YamadaSoumei Takahashi
    • Tsukasa YamadaSoumei Takahashi
    • H02N2/04G02B7/04
    • H02N2/025G02B7/08G02B7/102
    • A driving device includes an electro-mechanical transducer having first and second end portions opposite to each other in an expansion/contraction direction, a stationary member coupled to the first end portion of the electro-mechanical transducer, a vibration friction portion mounted to the second end portion of the electro-mechanical transducer, and a rod-shaped moving portion frictionally coupled to the vibration friction portion, whereby moving the moving portion in the expansion/contraction direction of the electro-mechanical transducer. A frictionally coupled portion has a height (a length of the vibration friction portion in a sliding direction in contact with the moving portion) which is not more than 1.15 mm.
    • 一种驱动装置,包括具有在膨胀/收缩方向上彼此相对的第一和第二端部的机电换能器,耦合到机电换能器的第一端部的固定部件,安装到第二端部的振动摩擦部分 机电换能器的端部,以及与振动摩擦部摩擦连接的杆状移动部,由此使机电换能器的伸缩方向移动移动部。 摩擦联接部具有不大于1.15mm的高度(与移动部接触的滑动方向上的振动摩擦部的长度)。
    • 66. 发明申请
    • Objective lens driving device having damper portions capable of obtaining a moderate damping effect
    • 物镜驱动装置具有能够获得中等阻尼效果的阻尼部分
    • US20050134974A1
    • 2005-06-23
    • US10998244
    • 2004-11-24
    • Tsukasa Yamada
    • Tsukasa Yamada
    • G02B7/02G11B7/08G11B7/09G11B7/095G11B21/02G11B21/20
    • G11B7/0956G11B7/0932
    • In an objective lens driving device having a lens holder movably holding an objective lens, a damper base, and a suspension member elastically supporting the lens holder with respect to the damper base, the suspension member consists of four suspension wires disposed on both sides of the damper base and the lens holder. The damper base has first supporting portions for supporting one end of each suspension wire while the lens holder has second supporting portions for supporting another end of each suspension wire. The second supporting portions are apart from the first supporting portion by a first distance. The damper base has damper portions which are disposed between the first and the second supporting portions and which are apart from the first supporting portions by a second distance. The second distance is laid in a range between one-fifths and two-fifths of the first distance.
    • 在具有可移动地保持物镜的透镜支架,阻尼器基座和相对于阻尼器基座弹性支撑透镜保持器的悬架部件的物镜驱动装置中,悬架部件由布置在 阻尼器底座和镜头座。 阻尼器底座具有用于支撑每个悬挂线的一端的第一支撑部分,而透镜保持器具有用于支撑每个悬挂线的另一端的第二支撑部分。 第二支撑部分与第一支撑部分分开第一距离。 阻尼器底座具有阻尼部分,其设置在第一和第二支撑部分之间并且与第一支撑部分分开第二距离。 第二距离放置在第一距离的五分之一到五分之二的范围内。
    • 69. 发明授权
    • Size display system for electronic camera
    • 电子照相机尺寸显示系统
    • US5331419A
    • 1994-07-19
    • US857752
    • 1992-03-26
    • Tsukasa YamadaHiromasa HinoShoji WatanabeShin Yasuhara
    • Tsukasa YamadaHiromasa HinoShoji WatanabeShin Yasuhara
    • G01B11/02H04N1/21H04N5/232H04N7/18H04N5/30
    • H04N1/32112G01B11/024H04N1/32128H04N5/23293H04N7/183H04N2101/00H04N2201/3225H04N2201/3277
    • An electronic camera is provided which, in photographing, obtains size information about an object, generates the size information, or size data calculated through arithmetic operation, or a scale pattern based on the size data, and records the scale pattern on a recording medium in the same recording area as an object image or in a separate area made correspondent to a recording area for the object image, and which, when size display is instructed during photographing or in reproduction, displays a scale (including a pattern representing the scale, indications representing the scale by characters and/or figures such as graduation numerals, and color-coded indications representing the scale) together with the object image on the same screen. The object image is taken in from image sensing system means and, when a size display mode is instructed, processing means simultaneously calculates the size data based on the size information obtained from the image sensing system means and range measuring means for generating the scale pattern. The arithmetic operation and generation of the scale pattern may be performed on the reproduction side. The scale pattern, etc. are recorded on a recording medium (including the analog recording type and the digital recording type) together with the object image in the predetermined recording areas. In reproduction, when size display is instructed, the scale is synthesized with the object image to be output to a TV monitor or the like.
    • 提供一种电子照相机,其在拍摄中获得关于对象的尺寸信息,生成通过算术运算计算出的尺寸信息或尺寸数据,或者基于尺寸数据的尺码图案,并将刻度图案记录在记录介质上 与对象图像相同的记录区域或与对象图像的记录区域相对应的单独区域中,当在拍摄或再现期间指示尺寸显示时,显示比例(包括表示刻度的图案,指示 通过字符和/或诸如毕业数字的数字和表示标度的颜色编码指示的比例)与对象图像一起表示在同一屏幕上。 从图像感测系统装置拍摄对象图像,并且当指示尺寸显示模式时,处理装置基于从图像感测系统装置获得的尺寸信息和用于产生刻度图案的量程测量装置同时计算尺寸数据。 可以在再现侧执行缩放图案的算术运算和生成。 缩放图案等与预定记录区域中的对象图像一起记录在记录介质(包括模拟记录类型和数字记录类型)上。 在再现中,当指示大小显示时,与要被输出到TV监视器等的对象图像合成比例。