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    • 2. 发明授权
    • High density magnetic recording apparatus including a hologram type
magnetic head positioning system
    • 高密度磁记录装置,包括全息型磁头定位系统
    • US6128155A
    • 2000-10-03
    • US110239
    • 1998-07-06
    • Naoto SugawaraHiroki Ishida
    • Naoto SugawaraHiroki Ishida
    • G11B21/20G11B5/54G11B5/596
    • G11B5/59677G11B5/6052G11B5/6088
    • A magnetic recording apparatus including a magnetic head portion 9, a light emitting portion 10b emitting a light beam, a hologram portion 10a, a light receiving portion 10c, a carriage 12 and a control portion 16 for positioning the magnetic head portion 9 to a predetermined position. The hologram portion 10a is in a plate-like shape and has on one major surface a first gold reflection surface 10a3 formed on a first thing film layer 10a1 and on the other major surface a second gold reflection surface 10a4 formed on a second thin film layer 10a2. The hologram portion 10a also includes a light path 10a5 that guides the light beam in a zig-zag manner between the first and the second reflection surfaces 10a3 and 10a4 and optical components 10a8, 10a9, 10a10 for converting the light emitted from the light emitting portion 10b into a positioning light beam.
    • 包括磁头部分9,发射光束的发光部分10b,全息部分10a,光接收部分10c,滑架12和用于将磁头部分9定位到预定的磁头部分的控制部分16的磁记录装置 位置。 全息部10a为板状,在一个主面上形成有形成在第一物质膜层10a1上的第一金反射面10a3,在另一主面上形成有形成在第二薄膜层上的第二金反射面10a4 10a2。 全息部分10a还包括在第一和第二反射表面10a3和10a4之间以锯齿形的方式引导光束的光路10a5和用于转换从发光部分发射的光的光学部件10a8,10a9,10a10 10b进入定位光束。
    • 3. 发明申请
    • LASER DOPPLER BLOOD FLOW MEASURING METHOD AND DEVICE
    • 激光多普勒血液流量测量方法和装置
    • US20100280398A1
    • 2010-11-04
    • US12809738
    • 2008-12-19
    • Tadashi HachigaHiroki IshidaShunsuke AkiguchiHiroki ShirakawaTsugunobu AndohYasushi Kuraishi
    • Tadashi HachigaHiroki IshidaShunsuke AkiguchiHiroki ShirakawaTsugunobu AndohYasushi Kuraishi
    • A61B5/026
    • A61B5/0285A61B5/0261A61B5/411
    • [Subject] To provide laser Doppler blood flow measuring method and device which achieve multi-dimensional measurement efficiently at a high degree of accuracy over a wide range with a simple optical system and device.[Solving Means] Laser light from a semiconductor laser 12 is split and formed into sheet lights Ls using a cylindrical lens 22, and the sheet lights Ls are crossed with each other at a predetermined position. A lens system 30 configured to form an image of scattered lights into a linear shape at a linear irradiation site Lx where the sheet lights Ls cross with each other is provided. An optical fiber array 32 having a plurality of optical fibers 34 is provided at an image-forming position of the lens system 30. Avalanche photodiodes 42 configured to convert the scattered lights which are shifted in frequency by the Doppler effect caused by the blood flow into electric signals for the each optical fiber 34 are provided. The blood flow velocity in a tissue of a biological body at the linear irradiation site Lx is calculated from the scattered lights transformed from the laser light by being shifted in frequency by the Doppler effect and is scanned for the each optical fiber 34, whereby the blood flow velocity in the blood vessel in a predetermined area in the biological body is calculated.
    • [主题]提供使用简单的光学系统和装置,在宽范围内以高精度实现多维度测量的激光多普勒血流测量方法和装置。 [解决方案]使用柱面透镜22将来自半导体激光器12的激光分割并形成为片状光Ls,并且片状光Ls在预定位置彼此交叉。 提供了一种透镜系统30,其被配置为在片状光Ls彼此交叉的线性照射位置Lx处形成散射光的图像成线状。 具有多个光纤34的光纤阵列32设置在透镜系统30的图像形成位置。雪崩光电二极管42被配置为将频率偏移的散射光转换成由血流引起的多普勒效应 提供每个光纤34的电信号。 通过以多普勒效应使频率偏移从激光变换的散射光计算线状照射部位Lx处的生物体的组织中的血流速度,并扫描各光纤34,由此血液 计算生物体中预定区域中血管中的流速。
    • 9. 发明申请
    • Oil-free chain
    • 无油链
    • US20080161147A1
    • 2008-07-03
    • US11978404
    • 2007-10-29
    • Takashi NakagawaHiroki IshidaToshihiko AokiHirofumi Miki
    • Takashi NakagawaHiroki IshidaToshihiko AokiHirofumi Miki
    • F16G13/02
    • F16G13/06
    • An oil-free chain has bushings which protrude from the outer surfaces of the inner link plates into which they are press-fit, and extend into bushing supporting bores formed in the inner surfaces of the outer link plates of the chain. These bushing supporting bores are formed by a pressing operation which produces offsets in portions of the outer plate, so that, as the bushing supporting bores are formed in the inner surfaces of the outer plates, bosses are simultaneously formed on the outer surfaces. The connecting pins of the chain are press-fit into pin holes in these bosses. The bushing supporting bores are formed without removal of material by machining, and therefore the strength of the outer plates is not compromised.
    • 无油链条具有从其内压配合的内连接板的外表面突出的衬套,并且延伸到形成在链条的外链板的内表面中的衬套支撑孔中。 这些衬套支撑孔通过在外板的部分产生偏移的按压操作形成,使得当衬套支撑孔形成在外板的内表面中时,凸台同时形成在外表面上。 链条的连接销压配合到这些凸台的销孔中。 衬套支撑孔通过机械加工形成而不去除材料,因此不会损害外板的强度。
    • 10. 发明申请
    • Lifter device
    • 升降装置
    • US20060249356A1
    • 2006-11-09
    • US11374543
    • 2006-03-11
    • Shunji SakuraHiroki IshidaShiro InoueTakayuki Morimoto
    • Shunji SakuraHiroki IshidaShiro InoueTakayuki Morimoto
    • B65G17/12
    • B66F3/06
    • To provide a compact lifter device, which can attain a work-piece's lifting/lowering operation in a stable supporting state and can reduce the parts number and an assembly load. A lifter device 100 in which a pair of work-piece lifting chains 130, 130 respectively fed movably forward and backward by a pair of regularly/reversely rotatable driving sprockets 120, 120 while being sandwiched by the sprockets includes flexing suppression members 140, 140 disposed oppositely to each other, and each of these flexing suppression members 140, 140 comprises a number of blocks 141 disposed at mounting intervals of two times the chain pitch P on a drawing side of the work-piece lifting/lowering chain 130 and a lifting/lowering support bar 142 of a length corresponding to a chain's upright state, disposed on a feeding side continued to the drawing side of the work-piece lifting/lowering chain 130, so that the flexing suppression members 140, 140 are engaged with each other to lift or lower a work-piece in a chain's upright state of the fed chain.
    • 为了提供一种能够在稳定的支撑状态下实现工件的升降操作的小型升降机装置,并且可以减少部件号和组装负载。 一种提升装置100,其中一对工件提升链130,130分别由一对规则/反向可旋转的驱动链轮120,120可动地向前和向后馈送,同时被链轮夹持,包括设置在其中的弯曲抑制构件140,140 并且这些弯曲抑制构件140,140中的每一个包括在工件升降链130的拉伸侧上以链节距P的两倍的安装间隔设置的多个块141,以及提升/ 下降支撑杆142的长度对应于链条的直立状态,设置在连续到工件升降链130的拉伸侧的进给侧上,使得挠曲抑制构件140,140彼此接合到 在链条的直立状态下提起或降低工件。