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    • 4. 发明申请
    • Coaxial connector with a switch
    • 带开关的同轴连接器
    • US20060009075A1
    • 2006-01-12
    • US11174725
    • 2005-07-06
    • Takayuki NagataToru Imai
    • Takayuki NagataToru Imai
    • H01R9/05
    • H01R24/46H01R24/50H01R2103/00Y10S439/944
    • The invention provides a coaxial connector with a switch in which the life property and contact reliability of a movable contact piece portion are improved, which is further miniaturized and low-profiled than the conventional art, and in which the component configuration is simple, and hence the production cost is low. According to the coaxial connector 1 with a switch, in accordance with fitting with a counter connector, a plug pin 100 is elastically contacted with the plug pin contact portion 57 of a movable contact piece portion 51, and the movable contact piece portion 51 is displaced in a direction substantially perpendicular to the direction of insertion and extraction of the plug pin against the spring force, and separated from the stationary contact portion 41.
    • 本发明提供了一种具有开关的同轴连接器,其中可移动接触片部分的寿命特性和接触可靠性得到改善,其比传统技术进一步小型化和低成型,并且其中部件构造简单,因此 生产成本低。 根据具有开关的同轴连接器1,根据与对位连接器的配合,插头销100与可动接触片部分51的插头销接触部分57弹性接触,并且可动接触片部分51移位 在与弹簧力相反的插塞插入方向基本上垂直的方向上,并且与固定接触部分41分离。
    • 6. 发明授权
    • Coaxial connector with a switch
    • 带开关的同轴连接器
    • US07156675B2
    • 2007-01-02
    • US11174725
    • 2005-07-06
    • Takayuki NagataToru Imai
    • Takayuki NagataToru Imai
    • H01R29/00
    • H01R24/46H01R24/50H01R2103/00Y10S439/944
    • The invention provides a coaxial connector with a switch in which the life property and contact reliability of a movable contact piece portion are improved, which is further miniaturized and low-profiled than the conventional art, and in which the component configuration is simple, and hence the production cost is low. According to the coaxial connector 1 with a switch, in accordance with fitting with a counter connector, a plug pin 100 is elastically contacted with the plug pin contact portion 57 of a movable contact piece portion 51, and the movable contact piece portion 51 is displaced in a direction substantially perpendicular to the direction of insertion and extraction of the plug pin against the spring force, and separated from the stationary contact portion 41.
    • 本发明提供了一种具有开关的同轴连接器,其中可移动接触片部分的寿命特性和接触可靠性得到改善,其比传统技术进一步小型化和低成型,并且其中部件构造简单,因此 生产成本低。 根据具有开关的同轴连接器1,根据与对位连接器的配合,插头销100与可动接触片部分51的插头销接触部分57弹性接触,并且可动接触片部分51移位 在与弹簧力相反的插塞插入方向基本上垂直的方向上,并且与固定接触部分41分离。
    • 8. 发明申请
    • Encoder
    • 编码器
    • US20080185506A1
    • 2008-08-07
    • US12007676
    • 2008-01-14
    • Susumu MakinouchiAkihiro WatanabeToru Imai
    • Susumu MakinouchiAkihiro WatanabeToru Imai
    • G01D5/34
    • G01D5/34715G01D5/38
    • An illumination light to be used for position measurement of a movable scale is spatially (or physically) split into a first illumination light and a second illumination light using a triangle prism, and the first and second illumination lights are made to be incident on the same position on the movable scale, so that positional information of the movable scale is detected by utilizing interference of the first and second illumination lights. The spatially split first and second illumination lights interfere with each other even when they are made to be incident on the same position of the movable scale and are completely overlapped with each other, which is different, for example, from the case of the ±1st order diffracted lights that are generated by an illumination light being ±1st order diffracted by a diffraction grating. Therefore, wasted illumination lights that do not contribute to the interference can be minimized and the use efficiency of illumination lights can be improved.
    • 用于可移动刻度的位置测量的照明光在空间上(或物理地)被分割为第一照明光和使用三角形棱镜的第二照明光,并且使第一和第二照明光入射在其上 位置,从而通过利用第一和第二照明光的干涉来检测可动标尺的位置信息。 空间分离的第一和第二照明光即使当它们被入射到可移动标尺的相同位置并且彼此完全重叠时也彼此干涉,例如与±1的情况不同 由衍射光栅衍射的被照明光产生的±1级级衍射光。 因此,可以使对干扰无影响的浪费的照明灯最小化,能够提高照明光的使用效率。
    • 10. 发明授权
    • Esthetic orthondontic wire
    • 美观的电线
    • US5759029A
    • 1998-06-02
    • US718952
    • 1996-09-26
    • Masahiro KobayashiFumio WatariToru ImaiShinji Nakamura
    • Masahiro KobayashiFumio WatariToru ImaiShinji Nakamura
    • A61C7/20
    • A61C7/20
    • An esthetic orthodontic wire comprising a composite material which includes a biocompatible inorganic fiber and a thermoplastic resin. The inorganic fiber is glass fiber formed linearly continuous and having a generally circular or oval cross-sectional shape. The inorganic fiber has a diameter ranging from 1 to 100 .mu.m. The biocompatible inorganic fiber is produced from a mixture of calcium oxide, diphosphorus pentoxide, silicon dioxide and aluminium oxide. The inorganic fiber is biocompatible, in which a molar ratio of calcium/phosphorus is within a range of from 0.5 to 3.0, wherein total of calcium oxide and diphosphorus pentoxide is within a range of from 20 to 65% by weight relative to the glass fiber, and total of silicon dioxide and aluminium oxide is within a range of from 35 to 80% by weight relative to the glass fiber. The content of the glass fiber is within a range of from 5 to 70% by volume of the orthodontic wire. The thermoplastic resin is one selected from the group consisting methylmethacrylate resin and a copolymer of methylmethacrylate and one of methacrylate and acrylate. Additionally, the orthodontic wire is generally white and translucent. The orthodontic wire has a light transmittance of not lower than 5% within a visible light region. The orthodontic wire has a residual deflection of not larger than 1 mm in a load-deflection behavior obtained under a test in which a distance between support points is 14 mm, and a flexural load is within a range of from 0.5 to 6.0 N.
    • 一种美学正畸线,其包括包含生物相容性无机纤维和热塑性树脂的复合材料。 无机纤维是线性连续形成的玻璃纤维,并且具有大致圆形或椭圆形的横截面形状。 无机纤维的直径为1〜100μm。 生物相容性无机纤维由氧化钙,五氧化二磷,二氧化硅和氧化铝的混合物制成。 无机纤维是生物相容性的,其中钙/磷的摩尔比在0.5-3.0的范围内,其中氧化钙和五氧化二磷的总量相对于玻璃纤维在20至65重量%的范围内 ,二氧化硅和氧化铝的总量相对于玻璃纤维为35〜80重量%。 玻璃纤维的含量在正牙线的5〜70体积%的范围内。 热塑性树脂是选自甲基丙烯酸甲酯树脂和甲基丙烯酸甲酯和甲基丙烯酸酯和丙烯酸酯之一的共聚物的一种。 此外,正畸线通常是白色和半透明的。 正畸线在可见光区域内的透光率不低于5%。 正交线在支撑点之间的距离为14mm,弯曲载荷在0.5至6.0N的范围内的测试中获得的负载偏转行为中具有不大于1mm的残余偏差。