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    • 51. 发明授权
    • Method and apparatus for making spark plug
    • 制作火花塞的方法和装置
    • US06790113B1
    • 2004-09-14
    • US10048181
    • 2002-01-29
    • Shigeo Fujita
    • Shigeo Fujita
    • H01T2100
    • H01T21/02H01T21/06
    • This invention relates to a method and apparatus for making a spark plug, in particular, for making a high-performance spark plug having a center electrode having a firing end made of Pt, Ir, Rh, Pd, Re, Os, Ru or alloy thereof, with its firing end diameter of about 0.3-1.0 mm. One of the embodiments provides a method comprising the steps of: extending a metal strip from an end of the metal shell; positioning a spacer above a firing end of the center electrode; preliminarily bending the metal strip toward the spacer so as to form an arc portion in the metal strip; and then precisely forming a gap-distance between the metal strip and the firing end of the center electrode by applying a force to the metal strip. The method may further include a step of measuring the position of the firing end of the center electrode so as to determine a position for the spacer and/or a step of retrieving the spacer after bending the metal strip so that the gap-distance between the metal strip and the center electrode is adjusted to a required value by referring to a position of the preliminary bent metal strip and the position of the firing end of the center electrode. The invention also provides an apparatus for performing this method.
    • 本发明涉及一种用于制造火花塞的方法和装置,特别是用于制造具有由Pt,Ir,Rh,Pd,Re,Os,Ru或合金制成的点火端的中心电极的高性能火花塞 其烧成端直径约为0.3-1.0mm。 实施例中的一个提供了一种方法,包括以下步骤:从金属壳的端部延伸金属带; 将间隔物定位在中心电极的烧制端上方; 预先将金属条朝向间隔件弯曲,以在金属条中形成弧形部分; 然后通过向金属带施加力来精确地形成金属带和中心电极的点火端之间的间隙距离。 该方法还可以包括测量中心电极的点火端的位置以确定间隔物的位置和/或在弯曲金属带之后取回间隔物的步骤的步骤,使得间隔距离 通过参考预弯曲金属带的位置和中心电极的点火端的位置将金属条和中心电极调整到所需值。 本发明还提供了一种用于执行该方法的装置。
    • 52. 发明授权
    • Gazing point illuminating device
    • 凝视点照明装置
    • US06554444B2
    • 2003-04-29
    • US09798982
    • 2001-03-06
    • Jun-ichi ShimadaYoichi KawakamiShigeo Fujita
    • Jun-ichi ShimadaYoichi KawakamiShigeo Fujita
    • F21V2108
    • G06F3/013A61B90/30F21L15/14F21W2131/20G02C11/04
    • A gazing point illuminating device is provided with: a light source; a direction changing mechanism for changing the lighting direction of the light source; a gazing direction detector for detecting the direction of the user's gazing line; and a controller for changing the lighting direction corresponding to the detected gazing direction. When, LEDs are used as the light source, and the light source is attached to the goggles worn by a user, the goggles can be useful gazing point illuminating device by themselves even if they do not include gazing point or direction detectors, because a person normally look straight ahead except for unusual occasions where he/she purposefully avert his/her gaze. Thus, an illuminating device fixed to a person's head for lighting forward is a gazing point illuminating device. It is preferred to provide an LED panel at the left and right ends of goggles.
    • 注视点照明装置设置有:光源; 用于改变光源的照明方向的方向改变机构; 用于检测使用者的注视线的方向的注视方向检测器; 以及控制器,用于改变与所检测的注视方向相对应的照明方向。 当使用LED作为光源,并且将光源附着到用户佩戴的护目镜时,即使它们不包括注视点或方向检测器,护目镜也可以自己使用,因为一个人 通常看起来很直前,除了他/她有目的地避开他/她的目光的异常场合。 因此,固定在人的头部用于向前照明的照明装置是注视点照明装置。 优选在护目镜的左右两端设置LED面板。
    • 54. 发明授权
    • CPP magnetoresistive head
    • CPP磁阻头
    • US08335057B2
    • 2012-12-18
    • US12536255
    • 2009-08-05
    • Masahiro OsugiTakayoshi OhtsuShigeo FujitaKatsuro WatanabeKoji Kataoka
    • Masahiro OsugiTakayoshi OhtsuShigeo FujitaKatsuro WatanabeKoji Kataoka
    • G11B5/33
    • G11B5/3909B82Y10/00B82Y25/00G11B5/3912G11B2005/3996
    • According to one embodiment, a CPP magnetoresistive head includes a magnetoresistive film comprising a free layer above a non-magnetic intermediate layer and a fixed layer below the non-magnetic intermediate layer, wherein the magnetoresistive film is between a lower magnetic shield layer and an upper magnetic shield layer. The CPP magnetoresistive head also includes a domain control film on each side of the magnetoresistive film, wherein a sense current flows through the magnetoresistive film between the upper magnetic shield layer and the lower magnetic shield layer. The CPP magnetoresistive head also includes a high heat conductivity layer, and a heat dissipation layer having a high heat conductivity and a low linear expansion coefficient, the heat dissipation layer being disposed at the back in a device height direction of the magnetoresistive film and on each side of the domain control film.
    • 根据一个实施例,CPP磁阻磁头包括磁阻膜,该磁阻膜包括在非磁性中间层上方的自由层和位于非磁性中间层之下的固定层,其中磁阻膜位于下部磁屏蔽层和上部磁屏蔽层之间 磁屏蔽层。 CPP磁阻头还包括在磁阻膜的每一侧的畴控制膜,其中感测电流流过上磁屏蔽层和下磁屏蔽层之间的磁阻膜。 CPP磁阻头还包括高导热层和具有高导热性和低线性膨胀系数的散热层,散热层设置在磁阻膜的器件高度方向的背面,并且在每个 侧面的域控制膜。
    • 55. 发明授权
    • Image forming apparatus
    • 图像形成装置
    • US07231156B2
    • 2007-06-12
    • US11088674
    • 2005-03-23
    • Shigeo FujitaTatsuro Osawa
    • Shigeo FujitaTatsuro Osawa
    • G03G15/00
    • G03G15/5058G03G15/0131G03G2215/00042G03G2215/00059
    • In an image forming apparatus, a patch image is formed on the surface of a belt-like image support for supporting a toner image on the surface and is detected with a patch sensor placed facing a placing part on a roller for stretching the belt-like image support. An angle adjustment mechanism for adjusting the attachment angle of the patch sensor rotates the patch sensor with an intersection point of an optical axis of the patch sensor and a sensing face as the center for adjusting the attachment angle of the patch sensor. The patch sensor is attached to one member forming a part of a support frame of the image support and the attachment angle of the member is adjusted, whereby the attachment angle of the patch sensor is adjusted.
    • 在图像形成装置中,在用于支撑表面上的调色剂图像的带状图像载体的表面上形成贴片图像,并且用面向放置部件的贴片传感器检测到用于拉伸带状图像 图像支持。 用于调整贴片传感器的安装角度的角度调节机构以贴片传感器的光轴与感测面的交点为中心,将贴片传感器旋转,作为调整贴片传感器的安装角度的中心。 贴片传感器被附接到形成图像支撑件的支撑框架的一部分的一个构件,并且调节构件的附接角度,由此调整贴片传感器的附接角度。