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    • 2. 发明申请
    • Electrochromic Mirror
    • 电致变色镜
    • US20070268551A1
    • 2007-11-22
    • US10560614
    • 2004-06-16
    • Junichi NakahoMasao AyabeMasaharu Hattori
    • Junichi NakahoMasao AyabeMasaharu Hattori
    • G02F1/157
    • G02F1/157B60R1/088G02F1/1525G02F1/155
    • An electrochromic mirror 10 has a simple construction wherein only two layers of films, namely an electrochromic film 14 and an electrically conductive light reflecting film 16 are formed on a glass substrate 12, and a film thickness and film quality and the like of the electrochromic film 14 and the electrically conductive light reflecting film 16 hardly affects performance. Therefore, this leads to easy manufacturing at low cost. Further, since the electrochromic mirror has such a construction that light introduced from a surface side of the glass substrate 12 is reflected by the electrically conductive light reflecting film 16 formed on a back of this glass substrate 12, occurrence of a double image is prevented.
    • 电致发光镜10具有简单的结构,其中在玻璃基板12上仅形成两层膜,即电致变色膜14和导电光反射膜16,并且电致变色膜的膜厚度和膜质量等 14和导电光反射膜16几乎不影响性能。 因此,这导致以低成本的容易制造。 此外,由于电致变色镜具有从玻璃基板12的表面侧引入的光被形成在该玻璃基板12的背面的导电性光反射膜16反射,因此防止发生双重图像。
    • 3. 发明授权
    • Reflecting mirror
    • 反射镜
    • US07048392B2
    • 2006-05-23
    • US10663728
    • 2003-09-17
    • Junichi Nakaho
    • Junichi Nakaho
    • G02B17/00G02B5/08
    • G02F1/153G02F1/1525
    • In a reflecting mirror, a hydrogen storing metal or a hydrogen storing alloy is used in an electrically conductive reflecting film. When a predetermined voltage is applied from an electrically conductive reflecting film side to a transparent electrode, hydrogen stored at the electrically conductive reflecting film is released and becomes hydrogen ions, and the hydrogen ions move toward the transparent electrode. When the hydrogen ions reach a reduction coloring film between the transparent electrode and the electrically conductive reflecting film, the hydrogen ions bond with an oxide of tungsten which forms the reduction coloring film, and the reduction coloring film is thereby colored. In accordance with this structure, it is possible to do away with an oxidation coloring film.
    • 在反射镜中,在导电性反射膜中使用储氢金属或储氢合金。 当从导电反射膜侧向透明电极施加预定电压时,释放存储在导电反射膜中的氢,并变成氢离子,并且氢离子朝向透明电极移动。 当氢离子到达透明电极和导电反射膜之间的还原着色膜时,氢离子与形成还原着色膜的钨的氧化物结合,并且还原着色膜被着色。 根据该结构,可以除去氧化着色膜。
    • 5. 发明授权
    • Webbing lock mechanism
    • 织带锁机构
    • US4286759A
    • 1981-09-01
    • US102407
    • 1979-12-11
    • Susumu UsamiYoshihiro HayashiJunichi NakahoJun Yasumatsu
    • Susumu UsamiYoshihiro HayashiJunichi NakahoJun Yasumatsu
    • B60R22/42B60R22/48A62B35/02B65H75/48
    • B60R22/42
    • A lock lever is pivotally supported by a frame secured to the vehicle body, the intermediate portion of a webbing for restraining an occupant is wound around a contact member secured to said lock lever, and, when the tension of the webbing is increased in an emergency, said lock lever turns whereby lock members clamp the intermediate portion of the webbing to lock same, so that the occupant can be restrained. Particularly, the contact member, during normal condition of the vehicle, is supported by a small diameter portion to smoothly guide the webbing, and, in an emergency of the vehicle, comes into contact at a large diameter portion thereof with said lock lever to receive a resisting force to the rotation, so that the portion of the webbing locked by the lock members can be decreased in tension.
    • 锁定杆由固定在车体上的框架枢转地支撑,用于限制乘员的织带的中间部分缠绕在固定到所述锁定杆上的接触构件上,并且当紧急情况下织带的张力增大时 所述锁定杆转动,由此锁定构件夹紧织带的中间部分以将其锁定,从而可以限制乘员。 特别地,接触构件在车辆的正常状态下由小直径部支撑以平滑地引导织带,并且在车辆的紧急情况下,其与大的直径部分与所述锁定杆接触以接收 抵抗旋转的力,使得由锁定构件锁定的织带的部分可以减小张力。
    • 7. 发明授权
    • Electrochromic mirror
    • 电致变色镜
    • US07800807B2
    • 2010-09-21
    • US12144104
    • 2008-06-23
    • Junichi NakahoMasaharu HattoriAtsushi YamaguchiNagahiro SaitoTakahiro IshizakiOsamu Takai
    • Junichi NakahoMasaharu HattoriAtsushi YamaguchiNagahiro SaitoTakahiro IshizakiOsamu Takai
    • G02F1/15G02F1/153
    • G02F1/1523G02F1/153G02F1/155G02F2001/1536
    • An electrochromic mirror includes an electrochromic film, an electrically conductive reflective film formed at one thickness direction side of the electrochromic film, an electrically conductive film provided at one thickness direction side of the electrochromic film and at a side of the electrically conductive reflective film that is opposite from the electrochromic film, an electrolytic solution containing lithium ions and enclosed between the electrically conductive reflective film and the electrically conductive film, and a reduction reaction compensation unit. In the electrolytic solution, due to applying a voltage such that the electrically conductive film is made positive and electrically conductive reflective film is made negative, the lithium ions move toward the side of the electrochromic film and are provided to a reduction reaction of the electrochromic film. The reduction reaction compensation unit compensates the reduction reaction.
    • 电致变色镜包括电致变色膜,在电致变色膜的一个厚度方向侧形成的导电反射膜,设置在电致变色膜的一个厚度方向侧的导电膜和位于导电性反射膜侧的导电性反射膜 与电致变色膜相反,含有锂离子并包封在导电性反射膜和导电膜之间的电解液和还原反应补偿单元。 在电解液中,由于施加使导电性膜成为正性而导电性反射膜为负的电压,锂离子向电致变色膜的侧面移动,并且被提供给电致变色膜的还原反应 。 还原反应补偿单元补偿还原反应。
    • 8. 发明授权
    • Electrochromic mirror
    • 电致变色镜
    • US07573632B2
    • 2009-08-11
    • US10560614
    • 2004-06-16
    • Junichi NakahoMasao AyabeMasaharu Hattori
    • Junichi NakahoMasao AyabeMasaharu Hattori
    • G02F1/153G02F1/15
    • G02F1/157B60R1/088G02F1/1525G02F1/155
    • An electrochromic mirror 10 has a simple construction wherein only two layers of films, namely an electrochromic film 14 and an electrically conductive light reflecting film 16 are formed on a glass substrate 12, and a film thickness and film quality and the like of the electrochromic film 14 and the electrically conductive light reflecting film 16 hardly affects performance. Therefore, this leads to easy manufacturing at low cost. Further, since the electrochromic mirror has such a construction that light introduced from a surface side of the glass substrate 12 is reflected by the electrically conductive light reflecting film 16 formed on a back of this glass substrate 12, occurrence of a double image is prevented.
    • 电致发光镜10具有简单的结构,其中在玻璃基板12上仅形成两层膜,即电致变色膜14和导电光反射膜16,并且电致变色膜的膜厚度和膜质量等 14和导电光反射膜16几乎不影响性能。 因此,这导致以低成本的容易制造。 此外,由于电致变色镜具有从玻璃基板12的表面侧引入的光被形成在该玻璃基板12的背面的导电性光反射膜16反射,因此防止双重图像的发生。
    • 9. 发明授权
    • Electrochromic mirror
    • 电致变色镜
    • US07327509B2
    • 2008-02-05
    • US11113304
    • 2005-04-25
    • Junichi Nakaho
    • Junichi Nakaho
    • G02F1/15G02F1/153
    • B60R1/088G02F1/1525G02F2001/1536G02F2001/1552G02F2201/50
    • The present invention provides an electrochromic mirror, comprising a transparent substrate; an electrochromic film that develops color reductively having the transparent substrate on or above the surface thereof; a light-reflecting film allowing transmission of hydrogen or lithium atoms formed on the side of the electrochromic film opposite to the transparent substrate; a substrate having an electrically conductive area at least on one surface facing the light-reflecting film; and an electrolyte solution at least containing a hydrogen ion and an oxidizable material containing neutral molecules or negative ions and that is sealed between the light-reflecting film and the conductive area of the substrate; wherein (i) the light-reflecting film has electrical conductivity, or (ii) a transparent electrode film having electrical conductivity is formed between the transparent substrate and the electrochromic film, further comprising a dielectric film having a hydrogen or lithium ion conductivity formed between the light-reflecting film and the electrolyte solution.
    • 本发明提供一种电致变色镜,包括透明基板; 一种电致变色膜,其在其表面上或其表面上还原地具有透明基底的颜色; 能够透过与透明基板相反的电致变色膜一侧形成的氢原子或锂原子的光反射膜; 至少在与所述光反射膜相对的一个表面上具有导电区域的基板; 以及至少包含氢离子和含有中性分子或负离子的可氧化材料并且被密封在所述光反射膜和所述基板的导电区域之间的电解质溶液; 其中(i)光反射膜具有导电性,或者(ii)在透明基板和电致变色膜之间形成具有导电性的透明电极膜,还包括在其间形成有氢或锂离子传导性的电介质膜, 光反射膜和电解液。
    • 10. 发明授权
    • Eccentricity-compensated position detecting apparatus having an
identifying transparent slit
    • 偏心补偿位置检测装置具有识别透明狭缝
    • US5272335A
    • 1993-12-21
    • US942267
    • 1992-09-09
    • Junichi Nakaho
    • Junichi Nakaho
    • G01D5/347G01D5/34
    • G01D5/34784
    • An object of this invention is to provide a position detecting apparatus which can accurately detect an angle of rotation of a rotary board mounted on a rotary shaft even if the former is not coaxial with the latter, or there is a play between the rotary shaft and its bearing. In a position detecting apparatus, a detecting transparent slit is formed in it in such a manner that the distance between the slit and the center of rotation of the rotary board changes with the angle of rotation .theta. of the rotary board, and a reference transparent slit having a predetermined radius is also formed in it. LEDs are arranged on one side of the rotary board, and PSDs are arranged on the other side of the rotary board in such a manner the formers are confronted through the transparent slits with the PSDs, respectively. The PSDs detect light beams passed through the transparent slits, to output light reception signals. The difference between those light reception signals is calculated to obtain the relative distance thereof to detect the angle of rotation .theta. of the rotary board. Hence, even if the rotary board is not coaxial with the rotary shaft, or there is a play between the rotary shaft and its bearing, the angle of rotation .theta. of the rotary board can be detected with high accuracy.