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    • 61. 发明授权
    • Tape recorder
    • 磁带录音机
    • US4149203A
    • 1979-04-10
    • US780756
    • 1977-03-24
    • Minoru KobayashiShigeru Nemoto
    • Minoru KobayashiShigeru Nemoto
    • G11B15/06G11B15/16G11B15/18G11B21/22G11B15/04G11B15/32G11B15/48
    • G11B15/1883G11B15/06G11B15/16
    • A tape recorder provided with a controlling mechanism comprising a rockable control lever, a head support lever for supporting a magnetic head and a pinch roller support lever for supporting a pinch roller mounted rockably and coaxially with each other, a first spring stretched between said control lever and the head support lever to shift the magnetic head toward the tape accompanying the rocking motion of the control lever, and a second spring stretched between said control lever and the pinch roller support lever to shift the pinch roller toward the tape accompanying the rocking motion of the control lever, at least one of said first and second springs being charged with a returning force accompanying the magnetic head and the pinch roller shifting toward the tape.
    • 一种具有控制机构的磁带录音机,包括摇摆控制杆,用于支撑磁头的磁头支撑杆和用于支撑彼此可旋转并同轴安装的夹送辊的夹送辊支撑杆;第一弹簧,其在所述控制杆 以及头部支撑杆,随着控制杆的摇摆运动而使磁头朝向磁带移动;以及第二弹簧,其被拉伸在所述控制杆和压紧辊支撑杆之间,以使夹紧辊朝着磁带移动,伴随着摇摆运动 所述控制杆,所述第一和第二弹簧中的至少一个被带有与磁头相关联的返回力,并且夹送辊朝向带移动。
    • 64. 发明授权
    • Spectrometry device and spectrometry method
    • 光谱仪和光谱法
    • US09435741B2
    • 2016-09-06
    • US13819309
    • 2011-08-30
    • Minoru KobayashiTaisuke Ota
    • Minoru KobayashiTaisuke Ota
    • G01J3/44G01N21/65G01J3/02G01J3/457
    • G01N21/65G01J3/021G01J3/44G01J3/457
    • A spectrometry device according to an aspect of the present invention is including a light source (101), a lens 104 concentrating a light beam from the light source (101) on a reference sample (120), an objective lens (106) concentrating a light beam that has passed through the first lens (104) on a measurement sample (121), a spectroscope (109) dispersing light having a different wavelength from that of the light beam generated in the measurement sample (121) and the reference sample (120) by irradiation of the light beam into a spectrum, a detector (110) detecting light that is dispersed by the spectroscope (109), and a beam splitter (103) separating an optical path of light from the reference sample (120) and the measurement sample (121) toward the spectroscope (109) from an optical path of a light beam that propagates from the light source (101) toward the measurement sample (121).
    • 根据本发明的一个方面的光谱测定装置包括:光源(101),将来自光源(101)的光束聚集在参考样品(120)上的透镜104;物镜(106) 已经通过测量样品(121)上的第一透镜(104)的光束,分散与测量样品(121)中产生的光束的波长不同的光和参考样品(109)的分光器(109) 120),通过将光束照射到光谱中,检测器(110)检测由分光器(109)分散的光;以及分束器(103),其将参考样品(120)的光路分离,以及 测量样品(121)从从光源(101)传播到测量样品(121)的光束的光路朝向分光器(109)。
    • 70. 发明授权
    • Optical microscope and spectrum measuring method
    • 光学显微镜和光谱测量方法
    • US07561265B2
    • 2009-07-14
    • US11607491
    • 2006-12-01
    • Minoru KobayashiTaisuke OtaTakahiro Ode
    • Minoru KobayashiTaisuke OtaTakahiro Ode
    • G01J3/30
    • G01J3/44G01J3/02G01J3/021G01J3/0213G01J3/0262G01J2003/1243G01J2003/1247
    • An optical microscope according to a first embodiment of the present invention includes: a laser light source; a Y-directional scanning unit moving the light beam in a Y direction; an objective lens; a X-directional scanning unit moving the light beam in a X direction; a beam splitter provided in an optical path from the Y-directional scanning unit to the sample, and separating outgoing light out of the light beam incident on the sample, which exits from the sample toward the objective lens from the light beam incident on the sample from the laser light source; a spectroscope having an entrance slit extending along the Y direction and spatially dispersing the outgoing light passed through the entrance slit in accordance with a wavelength of the light; and a detector detecting the outgoing light dispersed by the spectroscope.
    • 根据本发明第一实施例的光学显微镜包括:激光源; Y方向扫描单元,沿Y方向移动光束; 物镜; X方向扫描单元,沿X方向移动光束; 设置在从Y方向扫描单元到样本的光路中的分束器,并将入射到样品上的光束从入射到样品上的光束从样品朝向物镜离开的光束分离出来 来自激光光源; 具有沿Y方向延伸的入口狭缝的分光镜,并且根据光的波长对通过入口狭缝的出射光进行空间上的分散; 以及检测器,其检测由分光镜分散的出射光。