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    • 1. 发明授权
    • Electronic device
    • 电子设备
    • US08029196B2
    • 2011-10-04
    • US12509839
    • 2009-07-27
    • Noriyuki TsubotaYasuhiro Kondo
    • Noriyuki TsubotaYasuhiro Kondo
    • G03B17/00
    • G03B17/00
    • The electronic device according to the present invention has a device body capable of attaching a second device thereto by a screw member, and comprises a chassis provided to the device body, a mounting seat made of resin for attaching the second device, and a metal plate, the mounting seat is provided to the chassis and provided with a female screw formed therein in which the screw member is to be threaded as well as a closing part defining a bottom surface of the female screw and a back surface of the mounting seat, and the metal plate is fixed to the mounting seat to support the closing part by supporting a back surface thereof.
    • 根据本发明的电子装置具有能够通过螺纹构件将第二装置附接到其上的装置主体,并且包括设置到装置主体的底座,用于安装第二装置的由树脂制成的安装座,以及金属板 安装座设置在底盘上并设置有形成螺纹构件的螺纹内螺纹的内螺纹以及限定内螺纹的底面和安装座的后表面的闭合部,以及 金属板被固定到安装座上,以通过支撑其后表面来支撑封闭部分。
    • 2. 发明申请
    • ELECTRONIC DEVICE
    • 电子设备
    • US20100021153A1
    • 2010-01-28
    • US12509839
    • 2009-07-27
    • Noriyuki TsubotaYasuhiro Kondo
    • Noriyuki TsubotaYasuhiro Kondo
    • G03B17/00
    • G03B17/00
    • The electronic device according to the present invention has a device body capable of attaching a second device thereto by a screw member, and comprises a chassis provided to the device body, a mounting seat made of resin for attaching the second device, and a metal plate, the mounting seat is provided to the chassis and provided with a female screw formed therein in which the screw member is to be threaded as well as a closing part defining a bottom surface of the female screw and a back surface of the mounting seat, and the metal plate is fixed to the mounting seat to support the closing part by supporting a back surface thereof.
    • 根据本发明的电子装置具有能够通过螺纹构件将第二装置附接到其上的装置主体,并且包括设置到装置主体的底座,用于安装第二装置的由树脂制成的安装座,以及金属板 安装座设置在底盘上并设置有形成螺纹构件的螺纹内螺纹的内螺纹以及限定内螺纹的底面和安装座的后表面的闭合部,以及 金属板被固定到安装座上,以通过支撑其后表面来支撑封闭部分。
    • 3. 发明授权
    • Zoom lens
    • 变焦镜头
    • US07933073B2
    • 2011-04-26
    • US12163312
    • 2008-06-27
    • Yasuhiro Kondo
    • Yasuhiro Kondo
    • G02B15/14
    • G02B15/173
    • In the zoom lens, the second lens group includes at least one surface that is an aspheric surface, and during changing magnification, the second lens group, the third lens group, and the fourth lens group are respectively capable of moving independently, with the position of the aperture moving along a convex trajectory on the optical axis from the image side to the object side during changing magnification. Through operation in this manner, the zoom lens of the invention is inexpensive and compact, and efficiently corrects various types of aberration. Thus, at a high magnification ratio of 5× or greater, the zoom lens of the invention affords a wide field exceeding approximately 78 degrees at the wide angle end, and affords a high performance compact zoom lens whose distortion is held to 3% or less.
    • 在变焦透镜中,第二透镜组包括至少一个非球面的表面,并且在变化倍率期间,第二透镜组,第三透镜​​组和第四透镜组分别能够独立地移动,位置 在改变放大倍数期间,孔径沿着光轴从图像侧移动到物体侧的凸起轨迹。 通过这种方式的操作,本发明的变焦镜头便宜且紧凑,并有效地校正各种类型的像差。 因此,在5倍以上的高倍率下,本发明的变焦镜头在广角端提供超过78度的宽场,并且提供了将失真保持在3%以下的高性能小型变焦镜头 。
    • 4. 发明授权
    • Semiconductor optical device and a method of fabricating the same
    • 半导体光学器件及其制造方法
    • US07701993B2
    • 2010-04-20
    • US10577626
    • 2005-05-26
    • Ryuzo IgaYasuhiro Kondo
    • Ryuzo IgaYasuhiro Kondo
    • H01S5/00H01L21/00
    • B82Y20/00H01S5/0265H01S5/12H01S5/2224H01S5/2226H01S5/227H01S5/2275H01S5/305H01S5/3072H01S5/3434
    • In order to provide excellent device characteristics and enhance fabrication yield and run-to-run reproducibility in a buried device structure using a low mesa on a p-type substrate, a cross sectional configuration before growth of a contact layer of a device, i.e., after growth of an over-cladding layer is flattened so as not to cause a problem in crystal quality of the contact layer. A mesa-stripe stacked body including at least a p-type cladding layer (2), an active layer (4) and an n-type cladding layer (6) is formed on a p-type semiconductor substrate (1), a current-blocking layer (8) is buried in both sides of the stacked body, and an n-type over-cladding layer (9) and an n-type contact layer (10) are disposed on the current-blocking layer (8) and the stacked body. The n-type over-cladding layer (9) is made of a semiconductor crystal having a property for flattening a concavo-convex shape of upper surfaces of the current-blocking layer (8) and the stacked body.
    • 为了在p型衬底上使用低台面的掩埋器件结构中提供优异的器件特性并提高制造产量和运行中再现性,器件接触层生长之前的横截面形状即, 在上敷层的生长之后,使接合层的结晶品质不会产生问题。 在p型半导体衬底(1)上形成至少包括p型覆层(2),有源层(4)和n型覆层(6)的台面状叠层体,电流 阻挡层(8)埋设在层叠体的两侧,在电流阻挡层(8)上设置n型上敷层(9)和n型接触层(10), 堆叠的身体。 n型上敷层(9)由具有使电流阻挡层(8)和层叠体的上表面的凹凸形状变平的性质的半导体结晶体构成。
    • 5. 发明授权
    • Mechanical cam type zoom lens device
    • 机械式凸轮式变焦镜头装置
    • US07170692B2
    • 2007-01-30
    • US11093711
    • 2005-03-30
    • Masaaki ToguchiYasuhiro Kondo
    • Masaaki ToguchiYasuhiro Kondo
    • G02B7/09
    • G02B7/102
    • A mechanical cam type zoom lens device includes a movement position detector detecting movement positions of focus and zoom lenses moved by respective drivers, a reference compensation value calculating unit setting a plurality of zooming positions for a zoom lens when a focus lens is located at a predetermined focusing position and calculating an amount of movement from a predetermined focusing position in a case where the focus lens is adjusted to be in focus when the zoom lens is located at each set zooming position, the calculated amount of movement serving as a reference compensation value, a storage storing data of the reference compensation values, a focusing compensation value calculating unit calculating a focusing compensation value for the focus lens in a case where the zoom lens is located at the movement position, based on the set zooming positions, the reference compensation value read from the storage and the movement position of the zoom lens, and a focusing unit focusing the focus lens based on the calculated focusing compensation value so that the focus lens is focalized.
    • 一种机械凸轮式变焦透镜装置,包括:移动位置检测器,检测由各个驱动器移动的焦点和变焦透镜的移动位置;基准补偿值计算单元,当聚焦透镜位于预定位置时,设置用于变焦透镜的多个变焦位置 聚焦位置,并且当在变焦透镜位于每个设置的变焦位置时将调焦焦点的焦点透镜的情况下的预定聚焦位置的运动量计算出,计算出的移动量用作参考补偿值, 存储存储基准补偿值数据的存储器;聚焦补偿值计算单元,基于设定的变焦位置,在变焦镜头位于移动位置的情况下,计算聚焦透镜的聚焦补偿值,基准补偿值 从变焦镜头的存储和移动位置读取,以及聚焦单元对焦 基于所计算的聚焦补偿值来调焦聚焦透镜,使得聚焦透镜被聚焦。
    • 8. 发明申请
    • Mechanical cam type zoom lens device
    • 机械式凸轮式变焦镜头装置
    • US20050237638A1
    • 2005-10-27
    • US11093711
    • 2005-03-30
    • Masaaki ToguchiYasuhiro Kondo
    • Masaaki ToguchiYasuhiro Kondo
    • G02B7/08G02B7/02G02B7/10G02B7/28G02B15/14
    • G02B7/102
    • A mechanical cam type zoom lens device includes a movement position detector detecting movement positions of focus and zoom lenses moved by respective drivers, a reference compensation value calculating unit setting a plurality of zooming positions for a zoom lens when a focus lens is located at a predetermined focusing position and calculating an amount of movement from a predetermined focusing position in a case where the focus lens is adjusted to be in focus when the zoom lens is located at each set zooming position, the calculated amount of movement serving as a reference compensation value, a storage storing data of the reference compensation values, a focusing compensation value calculating unit calculating a focusing compensation value for the focus lens in a case where the zoom lens is located at the movement position, based on the set zooming positions, the reference compensation value read from the storage and the movement position of the zoom lens, and a focusing unit focusing the focus lens based on the calculated focusing compensation value so that the focus lens is focalized.
    • 一种机械凸轮式变焦透镜装置,包括:移动位置检测器,检测由各个驱动器移动的焦点和变焦透镜的移动位置;基准补偿值计算单元,当聚焦透镜位于预定位置时,设置用于变焦透镜的多个变焦位置 聚焦位置,并且当在变焦透镜位于每个设置的变焦位置时将调焦焦点的焦点透镜的情况下的预定聚焦位置的运动量计算出,计算出的移动量用作参考补偿值, 存储存储基准补偿值数据的存储器;聚焦补偿值计算单元,基于设定的变焦位置,在变焦镜头位于移动位置的情况下,计算聚焦透镜的聚焦补偿值,基准补偿值 从变焦镜头的存储和移动位置读取,以及聚焦单元对焦 基于所计算的聚焦补偿值来调焦聚焦透镜,使得聚焦透镜被聚焦。