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    • 12. 发明申请
    • Image Reading Apparatus
    • 图像读取装置
    • US20140009799A1
    • 2014-01-09
    • US13934416
    • 2013-07-03
    • Katsuro MiuraYasuo NishikawaTakuya Naniwa
    • Katsuro MiuraYasuo NishikawaTakuya Naniwa
    • H04N1/00
    • H04N1/00559H04N1/00551H04N1/0083
    • An image reading apparatus includes: a housing; a cover pivotable with respect to the housing about a first pivot axis extending in first directions that are opposite each other; a first electric component provided in the housing; a second electric component provided in the cover; and an electric wire configured to connect the first electric component and the second electric component to each other. The electric wire includes: a first extending portion retained by the cover and extending in the first directions; and a second extending portion movable relative to the cover and extending from the first extending portion toward the housing.
    • 一种图像读取装置,包括:壳体; 围绕围绕彼此相对的第一方向延伸的第一枢转轴线相对于壳体枢转的盖; 设置在所述壳体中的第一电气部件; 设置在所述盖中的第二电气部件; 以及电线,其被配置为将所述第一电气部件和所述第二电气部件彼此连接。 电线包括:由盖保持并沿第一方向延伸的第一延伸部分; 以及第二延伸部分,其相对于所述盖子可移动并从所述第一延伸部分朝向所述壳体延伸。
    • 13. 发明授权
    • Optical scanning device, retinal scanning display and manufacturing method of optical scanning device
    • 光学扫描装置,视网膜扫描显示及光学扫描装置的制造方法
    • US08072666B2
    • 2011-12-06
    • US12461767
    • 2009-08-24
    • Yasuo Nishikawa
    • Yasuo Nishikawa
    • G02B26/08
    • G02B26/0858G02B26/0841G06F21/32H04N1/1135H04N1/12H04N9/3129H04N2201/0082
    • An optical scanning device includes an oscillating mirror portion having a reflection surface, and a frame portion holding the oscillating mirror portion. The optical scanning device reflects an incident optical flux by the reflection surface so as to convert the incident optical flux into a scanned optical flux. The optical scanning device further includes a reflection portion having a first reflection surface and a second reflection surface which are arranged in substantially V-shaped inclined surfaces. The first reflection surface reflects the incident optical flux and radiates the reflected light toward the oscillating mirror portion. The second reflection surface receives the reflected light from the oscillating mirror portion and radiates the reflected light as the scanned optical flux.
    • 光学扫描装置包括具有反射面的振荡镜部分和保持振动反射镜部分的框架部分。 光学扫描装置通过反射表面反射入射光束,以将入射光束转换成扫描光通量。 光学扫描装置还包括具有第一反射表面和第二反射表面的反射部分,其布置在大致V形的倾斜表面中。 第一反射表面反射入射光通量并将反射光朝向振荡镜部分辐射。 第二反射面接收来自振动反射镜部的反射光,并使反射光作为扫描光束照射。
    • 20. 发明授权
    • Process for producing a magnetic recording medium
    • 磁记录介质的制造方法
    • US5045351A
    • 1991-09-03
    • US423290
    • 1989-10-18
    • Tsutomu OkitaYasuo NishikawaHiroshi HashimotoHideomi Watanabe
    • Tsutomu OkitaYasuo NishikawaHiroshi HashimotoHideomi Watanabe
    • G11B5/702
    • G11B5/7022
    • A process for producing a magnetic recording medium which comprises a step of kneading a ferromagnetic powder with a binder in the presence of a solvent, a step of dispersing the resulting blend with the binder and/or solvent, and a step of coating the resulting magnetic coating composition on a nonmagnetic support followed by drying;Wherein said step of kneading is carried out by kneading a ferromagnetic powder having a particle size of not more than 350 .ANG. with a glycidyl compound and a binder comprising at least a vinyl chloride copolymer having an OH- terminated side chain bonded via an organic group and also having a polar group and/or a solvent; said binder, polyurethane resin, and solvent being used in a total amount of from 40 to 70 parts by weight per 100 parts by weight of said ferromagnetic powder; and wherein said step of dispersing is carried out in the presence of additional polyurethane resin having a polar group and/or solvent.
    • 一种制造磁记录介质的方法,包括在溶剂存在下将铁磁性粉末与粘合剂混合的步骤,用粘合剂和/或溶剂分散所得共混物的步骤,以及涂覆所得磁性 涂覆组合物在非磁性载体上,然后干燥; 其中所述捏合步骤是通过将具有不超过350埃格姆的粒度的铁磁性粉末与缩水甘油基化合物和包含至少一种具有通过有机基团键合有OH-封端的侧链的氯乙烯共聚物的粘合剂进行的,以及 也具有极性基团和/或溶剂; 所述粘合剂,聚氨酯树脂和溶剂的使用总量为每100重量份所述铁磁粉末为40至70重量份; 并且其中所述分散步骤在具有极性基团和/或溶剂的另外的聚氨酯树脂的存在下进行。