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    • 12. 发明申请
    • Laminated optical element
    • 层压光学元件
    • US20090046379A1
    • 2009-02-19
    • US11665182
    • 2006-05-11
    • Keiichi KuramotoNobuhiko HayashiHitoshi HiranoMitsuaki MatsumotoMasaya Nakai
    • Keiichi KuramotoNobuhiko HayashiHitoshi HiranoMitsuaki MatsumotoMasaya Nakai
    • G02B3/02G02B1/04B32B27/08B32B5/16G02B1/11
    • B32B5/16G02B3/00G02B3/02G02B5/188G02B5/1895Y10T428/24413Y10T428/25Y10T428/265Y10T428/31598Y10T428/31609
    • Disclosed herein is a reliable laminated optical element that is a hybrid optical element obtained by laminating an optical resin layer on an optical substrate such as a glass substrate, the optical resin layer being less likely to be separated from the optical substrate even under high temperature and high humidity conditions.The laminated optical element comprises an optical substrate 1 made of an optical material, an intermediate layer 2 provided on the optical substrate 1, and an optical resin layer 3 provided on the intermediate layer 2. The optical resin layer 3 is made of a resin composed of an organometallic polymer having an -M-O-M- bond (M is a metal atom), a metal alkoxide and/or a hydrolysate thereof having only one hydrolyzable group, and an organic polymer having a urethane bond and a methacryloxy group or an acryloxy group. The intermediate layer 2 is obtained by dispersing metal oxide microparticles in a matrix resin composed of a metal alkoxide having a radical polymerizable group and a hydrolyzable group and/or a hydrolysate thereof.
    • 本发明公开了一种可靠的层压光学元件,其是通过将光学树脂层层叠在诸如玻璃基板的光学基板上而获得的混合光学元件,即使在高温下也不太可能与光学基板分离光学树脂层, 高湿度条件。 层叠光学元件包括由光学材料制成的光学基板1,设置在光学基板1上的中间层2和设置在中间层2上的光学树脂层3.光学树脂层3由树脂构成 具有-MOM-键(M为金属原子)的有机金属聚合物,仅具有一个可水解基团的金属醇盐和/或其水解产物,以及具有氨基甲酸酯键和甲基丙烯酰氧基或丙烯酰氧基的有机聚合物。 中间层2通过将金属氧化物微粒分散在由具有自由基聚合性基团的金属醇盐和可水解基团和/或其水解产物构成的基质树脂中而获得。
    • 15. 发明授权
    • Blood-vessel-shape measuring apparatus, blood-flow-velocity measuring apparatus, and blood-flow-amount measuring apparatus
    • 血管形状测定装置,血流速度测定装置以及血流量测量装置
    • US07429244B2
    • 2008-09-30
    • US10565675
    • 2005-07-28
    • Yohsuke KinouchiHitoshi Hirano
    • Yohsuke KinouchiHitoshi Hirano
    • A61B8/00
    • A61B5/489A61B5/02007A61B8/06A61B8/14A61B8/523
    • A blood-vessel-shape measuring apparatus that can accurately measures a shape of a section of a blood vessel is provided.A blood-vessel-shape calculating means 62 calculates, based on respective echo signals detected by first and second arrays 26, 28 that are placed on a skin 20 of a brachial portion 14 as a portion of a living being such that each of the first and second arrays 26, 28 is across a brachial artery 18 located under the skin 20, respective positions of respective portions of the arterial wall that are located right below the first and second arrays 26, 28 and correspond to supersonic-wave elements 26n of the first array 26 and supersonic-wave elements 28n of the second array 28, and calculates, based on the respective positions of the respective portions of the arterial wall that correspond to the supersonic-wave elements 26n, 28n, a shape of the brachial artery 18 on an orthogonal section thereof. Thus, even if the brachial artery 18 may run, under the skin 20, in a direction that is not orthogonal to the first or second array 26, 28 or is not parallel to the skin 20, an accurate sectional shape of the brachial artery 18 can be obtained.
    • 提供了可以精确地测量血管部分的形状的血管形状测量装置。 血管形状计算装置62基于由作为生命的一部分放置在肱动脉部分14的皮肤20上的第一和第二阵列26,28检测到的各个回波信号,使得第一 并且第二阵列26,28穿过位于皮肤20下面的肱动脉18,位于第一和第二阵列26,28正下方的动脉壁的相应部分的相应位置,并对应于超声波元件26 n 和第二阵列28的超声波元件28 N n,并且基于与第二阵列28对应的动脉壁的各个部分的各个位置, 超声波元件26 N,28 N是在其正交部分上的肱动脉18的形状。 因此,即使肱动脉18可以在皮肤20下沿与第一或第二阵列26,28不正交的方向或不平行于皮肤20的方向运行,肱动脉18的精确截面形状 可以获得。
    • 16. 发明申请
    • Sensor holding apparatus
    • 传感器固定装置
    • US20070044336A1
    • 2007-03-01
    • US11507545
    • 2006-08-22
    • Katsushi IIkuboHidehito SasakiHidenori SuzukiHiromasa TsukaharaChikao HaradaHitoshi HiranoHiroshi Masuda
    • Katsushi IIkuboHidehito SasakiHidenori SuzukiHiromasa TsukaharaChikao HaradaHitoshi HiranoHiroshi Masuda
    • G01B5/004
    • G01B5/0004A61B5/021A61B5/1455A61B8/00A61B8/4218
    • An apparatus for holding a sensor such that the sensor touches an object at an arbitrary position in a three-dimensional space, the apparatus including a base member; a rotatable member which is rotatable relative to the base member about a vertical axis line; a first link device including a first stationary link, a first movable link, and two first pivotable links which are pivotably connected to the first stationary link and the first movable link, such that the first stationary link, the first movable link, and the two first pivotable links cooperate with each other to define a quadrilateral, wherein the first stationary link is fixed to the rotatable member such that the first movable link is movable in a plane containing the axis line; a second link device including two second pivotable links, and a second stationary link and a second movable link which are pivotably connected to the two second pivotable links, such that the two second pivotable links, the second stationary link, and the second movable link cooperate with each other to define a quadrilateral, wherein the second stationary link is fixed to the first movable link such that the second movable link is movable in the plane containing the axis line, and wherein the second movable link supports the sensor; a first biasing device which produces a thrust having a directional component resisting a load applied to the first movable link; and a second biasing device which produces a thrust having a directional component resisting a load applied to the second movable link.
    • 一种用于保持传感器的装置,使得传感器在三维空间中的任意位置处接触物体,该装置包括基座部件; 可旋转构件,其可相对于所述基座构件绕垂直轴线旋转; 第一连杆装置,包括第一固定连杆,第一可移动连杆和两个可枢转地连接到第一固定连杆和第一可动连杆的第一可枢转连杆,使得第一固定连杆,第一可动连杆和两个 第一可枢转连杆彼此协作以限定四边形,其中第一固定连杆固定到可旋转构件,使得第一可移动连杆可在包含轴线的平面中移动; 包括两个第二可枢转连杆的第二连杆装置,以及可枢转地连接到两个第二可枢转连杆的第二固定连杆和第二可动连杆,使得两个第二可枢转连杆,第二固定连杆和第二可移动连杆配合 彼此定义四边形,其中所述第二固定连杆固定到所述第一可动连杆,使得所述第二可移动连杆在包含所述轴线的平面中可移动,并且其中所述第二可移动连杆支撑所述传感器; 第一偏置装置,其产生具有抵抗施加到第一可动连杆的负载的方向分量的推力; 以及第二偏置装置,其产生具有抵抗施加到第二可动连杆的负载的方向分量的推力。
    • 17. 发明授权
    • Method of manufacturing a sequential segment joining type stator coil
    • 制造顺序段接合型定子线圈的方法
    • US07086136B2
    • 2006-08-08
    • US10452645
    • 2003-06-03
    • Tetsuya GorohataYouichi KamakuraHitoshi Hirano
    • Tetsuya GorohataYouichi KamakuraHitoshi Hirano
    • H02K15/00H02K15/14H02K15/16
    • H02K15/0428H02K3/12H02K15/0056H02K15/0081Y10T29/49009Y10T29/49012Y10T29/49071Y10T29/49144Y10T29/53143
    • Provided is a method of manufacturing a sequential segment joining type stator coil for use in an electric rotating machine, capable of achieving satisfactory electrical and thermal contact between end tip portion pairs of segments and basal electrodes and of realizing suitable welding even in the alignment of a large number of end tip portion pairs. For the arc welding of the end tip portion pairs of a sequential segment joining type stator coil, a large number of end tip portion pairs adjoining each other in a radial direction are held and pressed between basal electrode blocks. At this time, a circular-arc-like auxiliary electrode is put in a radial spacing between the end tip portion pairs. This not only enables the feeding to the end tip portion pairs lying at an intermediate position in the radial direction but also stabilizes the positions of the end tip portion pairs, and even reduces the heat radiation to an insulating coat of end skewing portions extending from the proximal portions of each end tip portion pair.
    • 提供了一种制造用于旋转电机的顺序段接合型定子线圈的方法,其能够在端部尖端部分对与基极之间实现令人满意的电和热接触,并且即使在对准 大量端头部分对。 对于顺序段接合型定子线圈的末端部分对的电弧焊,在径向方向上彼此邻接的大量端部尖端部对被保持并在基极电极块之间被按压。 此时,圆弧状辅助电极被放置在末端部对之间的径向间隔。 这不仅使得能够向位于径向中间位置的端部末端部分进给,而且还使得端部末端部对的位置稳定,并且甚至将热辐射降低到从顶端部对延伸的端部偏斜部分的绝缘涂层 每个末端部分对的近端部分。
    • 19. 发明申请
    • Optical branch device and optical coupler module
    • 光分支器件和光耦合器模块
    • US20060067622A1
    • 2006-03-30
    • US11220850
    • 2005-09-08
    • Nobuhiko HayashiMitsuaki MatsumotoKeiichi KuramotoHitoshi Hirano
    • Nobuhiko HayashiMitsuaki MatsumotoKeiichi KuramotoHitoshi Hirano
    • G02B6/26
    • G02B6/1221G02B6/125G02B6/138
    • An optical branch device, comprising: a branch portion having a first branch waveguide extended linearly and continuously from a waveguide in a basis portion, and second and third branch waveguides extended in the directions farther from the first branch waveguide in such a manner that the first branch waveguide is interposed between the second and third branch waveguides; a parallel portion in which the second and third branch waveguides are positioned in parallel to the first branch waveguide; and a divergent portion in which the second and third branch waveguides are extended gradually farther from the first branch waveguide; wherein the interval pitch P (μm), in the transverse direction, between the first, second and third branch waveguides in the parallel portion and the refractive index difference (Δn) between the core and the clad are set in such a manner that C satisfies a relationship of C=0.5±0.2 wherein C is calculated by substituting P and Δn for an equation of C=Δn×P2.
    • 一种光分支装置,包括:分支部分,具有从基部分中的波导线性地且连续地延伸的第一分支波导,以及在离第一分支波导更远的方向上延伸的第二和第三分支波导, 分支波导介于第二和第三分支波导之间; 平行部分,其中第二和第三分支波导平行于第一分支波导定位; 以及其中第二和第三分支波导从第一分支波导逐渐延伸的发散部分; 其中平行部分中的第一,第二和第三分支波导之间的横向上的间隔间距P(mum)和芯和包层之间的折射率差(Deltan)之间的间隔距离P(mum)被设置为使得C满足 C = 0.5±0.2的关系,其中C是通过用P和Deltan代入C = Deltan×P 2等式来计算的。