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    • 52. 发明授权
    • Substrate transfer apparatus
    • 基板转印装置
    • US5151008A
    • 1992-09-29
    • US703777
    • 1991-05-21
    • Toshimichi IshidaMasaki Suzuki
    • Toshimichi IshidaMasaki Suzuki
    • B25J9/00B25J9/10H01L21/677
    • B25J9/1065B25J9/0084H01L21/67742Y10S414/13Y10T74/20207
    • A substrate transfer apparatus includes two transfer arms pivotably arranged on a support table on opposite sides from each other with respect to a center of the support table. Each of the transfer arms includes: a first set of parallel links, a second set of parallel links, and a substrate holding member. The first set of the links is pivotably connected to the second set of the links at one ends thereof. The other ends of the first set of the links are pivotably connected to the support table. The substrate holding member is provided on the other end of the second set of the links. The each of the substrate holding members moves outward from the support table by stretching of the transfer arms and returns to the support table by bending of the transfer arms, and the transfer arms are bent in an opposite direction to each other with respect to the support table.
    • 基板传送装置包括相对于支撑台的中心彼此相对侧可枢转地布置在支撑台上的两个传送臂。 每个传送臂包括:第一组平行连杆,第二组平行连杆,以及基板保持部件。 第一组链节在其一端可枢转地连接到第二组连杆。 第一组连杆的另一端可枢转地连接到支撑台。 衬底保持构件设置在第二组连杆的另一端上。 每个基板保持构件通过拉伸传送臂从支撑台向外移动,并且通过传送臂的弯曲返回到支撑台,并且传送臂相对于支撑件彼此相反的方向弯曲 表。
    • 53. 发明授权
    • Magnetic recording medium
    • 磁记录介质
    • US5089331A
    • 1992-02-18
    • US421434
    • 1989-10-13
    • Katsumi RyokeMasatoshi TakahashiTsugio IzakiMasaki Suzuki
    • Katsumi RyokeMasatoshi TakahashiTsugio IzakiMasaki Suzuki
    • G11B5/708G11B5/735
    • G11B5/735G11B5/708Y10S428/90Y10T428/25Y10T428/257Y10T428/30
    • A magnetic recording medium composed of a non-magnetic support having thereon at least one magnetic layer containing a ferromagnetic fine powder dispersed in a binder, wherein (a) the magnetic layer further contains at least one of (i) carbon black having a sodium content of at most 100 ppm, (ii) carbon black having a chlorine content of less than 400 ppm, and (iii) an abrasive having a Mohn' hardness of at least 8 and a mean particle size of 0.05 to 0.5 .mu.m and a sodium content of at most 100 ppm; (b) the ferromagnetic fine powder is a magnetic metal powder having a sodium content of at most 200 ppm; and/or (c) the magnetic recording medium further has a back layer provided on the side of the non-magnetic support opposite to the magnetic layer, containing carbon black having a chlorine content of at most 300 ppm dispersed in a binder. The magnetic recording medium has superior storage stability, with remarkably limited dropout increase, head clogging, C S/N decrease and RF output decrease.
    • 一种由非磁性载体组成的磁记录介质,其上具有至少一个含有分散在粘合剂中的铁磁细粉末的磁性层,其中(a)磁性层还包含以下中的至少一种:(i)具有钠含量 至多100ppm,(ii)氯含量小于400ppm的炭黑,和(iii)具有至少8的莫氏硬度和0.05至0.5μm的平均粒度的磨料和钠 含量至多100ppm; (b)铁磁细粉是钠含量在200ppm以下的磁性金属粉末; 和/或(c)磁记录介质还具有设置在与磁性层相对的非磁性载体一侧的背层,该背层含有分散在粘合剂中的氯含量至多为300ppm的碳黑。 磁记录介质具有优良的存储稳定性,显着的压差增加,头堵塞,C / N降低和RF输出减少。
    • 56. 发明申请
    • FOREIGN-OBJECT OFFSHORE PROCESSING SYSTEM
    • 外来海上加工系统
    • US20140001107A1
    • 2014-01-02
    • US14002394
    • 2011-03-02
    • Shinya IshikawaTakashi SaitoKyoichi ShimizuMasaki SuzukiKota ShiodaMasaru Ieyasu
    • Shinya IshikawaTakashi SaitoKyoichi ShimizuMasaki SuzukiKota ShiodaMasaru Ieyasu
    • E02B9/04
    • E02B9/04E02B1/006E02B5/08E02B5/085E02B8/023E03B1/02
    • Provided is foreign-object offshore processing system, including foreign-object inflow prevention devices configured to prevent inflow of foreign object into water intake and provided at interval. Each device includes: collecting pontoon serving as inlet of foreign object and provided to float on sea surface of pool defined by curtain wall, the pool being for drawing cooling sea water from sea toward water intake; bottom net spreading toward sea bottom on upstream side of water intake channel in triangular shape with collecting pontoon as vertex; longitudinal net fixed to two floating chains in suspended manner to spread out in surface area of sea, the two floating chains extending on sea surface from collecting pontoon in correspondence with two sides extending from vertex of triangular shape forming bottom net; and lateral net spreading between bottom net and at least portion of longitudinal net, wherein horizontal net cover covers interval between adjacent devices.
    • 提供的是外来物体海洋处理系统,包括防止异物进入进水并间隔设置的异物流入防止装置。 每个装置包括:收集作为异物入口的浮筒,并设置在浮动在幕墙限定的游泳池的海面上,该池用于将海水从海水中抽出,进入吸水口; 底部网向三角形进水通道上游侧向海底扩散,收集浮桥为顶点; 纵向网以悬挂的方式固定在两个浮动链上,以扩散到海面,两条浮动链从收集浮船延伸,对应于从三角形形成底网的顶点延伸的两侧; 以及底网和纵向网的至少部分之间的横向网扩展,其中水平网盖覆盖相邻设备之间的间隔。
    • 59. 发明申请
    • OPTICAL DEVICE AND ILLUMINATING DEVICE
    • 光学装置和照明装置
    • US20130033873A1
    • 2013-02-07
    • US13639444
    • 2011-04-06
    • Masaki SuzukiHirofumi TsuikiHayato HasegawaMasashi Enomoto
    • Masaki SuzukiHirofumi TsuikiHayato HasegawaMasashi Enomoto
    • F21V7/04
    • G02B17/006F21S11/00
    • To provide an optical device which is capable of improving a light-introduction efficiency, and which may be made thinner. The optical device according to an embodiment of the present invention includes a structural layer including a plurality of reflection surfaces, which reflect light entering the light-incident surface toward the light-output surface. The above-mentioned reflection surface has a first length (h) in the X-axis direction. The reflection surfaces are arrayed in the Z-axis direction orthogonal to the X-axis direction at pitches (p). The reflection surfaces satisfy a relation of h=(2n−1)·p/tan θ, where θ is indicative of an incident angle of light with respect to the X-axis direction, the light being light travelling on an XZ plane out of light entering the reflection surface, and n is indicative of the number of reflection of incident light by the reflection surface, the angle θ being any angle satisfying the range of 6.5°≦θ≦87.5°.
    • 提供能够提高导光效率并且可以变薄的光学装置。 根据本发明的实施例的光学装置包括结构层,其包括多个反射表面,其将进入光入射表面的光朝向光输出表面反射。 上述反射面在X轴方向上具有第一长度(h)。 反射面以与间隔(p)的X轴方向正交的Z轴方向排列。 反射面满足h =(2n-1)·p /tanθ的关系,其中, 表示相对于X轴方向的入射角的光,该光是在XZ平面上从进入反射面的光中行进的光,n表示反射面的入射光的反射次数 角度和角度 满足6.5°&nlE的范围的任何角度;& nlE; 87.5°。