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    • 3. 发明授权
    • Test method and test device
    • 试验方法和试验装置
    • US08358735B2
    • 2013-01-22
    • US12939382
    • 2010-11-04
    • Junichi SaitoHailong Cui
    • Junichi SaitoHailong Cui
    • G01N23/223
    • G01N23/223G01N21/94G01N2223/076
    • To provide a method and device for testing the size and conductivity of a foreign material adhered to a substrate for a liquid crystal display device, there is provided a method of testing whether a foreign material including a metal element is adhered to a substrate for a liquid crystal display device, the method including a first test step of detecting the size and position of the foreign material adhered to the substrate and a next step of testing whether the foreign material includes the metal element at the position detected in the first test step.
    • 为了提供一种用于测试粘附到液晶显示装置的基板的异物的尺寸和导电性的方法和装置,提供了一种检测包括金属元素的异物是否附着在液体基板上的方法 晶体显示装置,该方法包括检测附着在基板上的异物的尺寸和位置的第一测试步骤,以及在第一测试步骤中检测到的位置是否检测异物是否包含金属元件的下一步骤。
    • 4. 发明授权
    • Vehicular lamp
    • 车灯
    • US09062844B2
    • 2015-06-23
    • US13794373
    • 2013-03-11
    • Junichi Saito
    • Junichi Saito
    • F21S8/10
    • F21S48/1241F21S41/141F21S41/147F21S41/24F21S43/14F21S43/237F21S43/245F21S43/247F21S43/40
    • A clearance lamp (20) including a light source (21) and a light guide (23) that allows light from the light source (21) to enter from an end face of the light guide (23) and emits the light forward from an emitting surface (23b) while guiding the light in the interior of the light guide (23). The emitting surface (23b) extends along a direction in which the light guide (23) extends. The light guide (23) includes steps (23c) that reflect the light traveling through the light guide toward the emitting surface (23b), and it further includes a light-emitting surface (23d) that is formed at a position different from a position of the light-emitting surface (23b) and emits the light traveling through the light guide to the outside of the light guide.
    • 一种包括光源(21)和光导(23)的间隙灯(20),其允许来自光源(21)的光从光导(23)的端面入射并从光源 (23b),同时引导光线(23)的内部的光。 发射表面(23b)沿着光导(23)延伸的方向延伸。 导光体(23)包括使穿过导光体的光朝向发光面(23b)反射的台阶(23c),还包括形成在与位置不同的位置的发光面(23d) (23b),并将通过导光体的光发射到光导的外部。
    • 5. 发明申请
    • Vehicular Illumination Lamp
    • 车灯照明灯
    • US20130188379A1
    • 2013-07-25
    • US13742622
    • 2013-01-16
    • Junichi SaitoHiroyuki Makino
    • Junichi SaitoHiroyuki Makino
    • F21S8/10
    • F21S41/32F21S41/162F21S41/336F21S41/337F21S41/435
    • A parabola type vehicular illumination lamp that forms a low-beam distribution pattern with a horizontal cut-off line at its upper end, including a reflector (34) formed in its lower reflection area (34a1) with a light non-incident area (34aL1) on which light from a light source bulb (32) is not incident since the light is blocked by a shade (36) provided in front of the light source bulb (32). The light non-incident area (34aL1) of the reflector (34) has an additional reflection portion (34aL1A) for reflecting light, which is from the light source bulb (32) and reflected by the upper reflection area (34au) of the reflector (34) and then reflected by the upper area (14u) of a translucent cover (14), in a direction below the horizontal cut-off line of the low-beam distribution pattern.
    • 一种抛物线型车辆照明灯,其在其上端形成具有水平切断线的近光分布图案,包括形成在其下反射区域(34a1)中的反射器(34),具有光非入射区域(34aL1 ),由于光被设置在光源灯泡(32)前面的阴罩(36)遮挡,来自光源灯泡(32)的光不会入射。 反射器(34)的光非入射区域(34aL1)具有用于反射来自光源灯泡(32)并由反射器的上反射区域(34au)反射的光的附加反射部分(34aL1A) (34),然后由半透明盖(14)的上部区域(14u)沿着远光分布图案的水平截止线的方向反射。
    • 7. 发明申请
    • LIQUID ALKALI METAL WITH DISPERSED NANOPARTICLES AND METHOD OF MANUFACTURING THE SAME
    • 具有分散纳米颗粒的液体碱金属及其制造方法
    • US20110210285A1
    • 2011-09-01
    • US13019447
    • 2011-02-02
    • Kuniaki ARAJunichi SaitoHiroyuki SatoNobuki OkaMasahiko NagaiKoichi Fukunaga
    • Kuniaki ARAJunichi SaitoHiroyuki SatoNobuki OkaMasahiko NagaiKoichi Fukunaga
    • C09K5/00B82Y30/00
    • G21C15/28B22F1/0022B82Y30/00Y02E30/40
    • The present invention relates to maintaining the fundamental physical properties of a liquid alkali metal with dispersed nanoparticles which is such that nanoparticles are uniformly dispersed and mixed in a liquid alkali metal used in heat exchange, cooling and other applications, and suppressing the reaction of the liquid alkali metal with dispersed nanoparticles. Provided is a method of manufacturing a liquid alkali metal with dispersed nanoparticles by dispersing nanoparticles in a liquid alkali metal. In this method, the nanoparticles are made of a metal having a large atomic bonding due to a combination with the liquid alkali metal compared to the atomic bonding of atoms of the liquid alkali metal and a metal having a large amount of charge transfer is used in the nanoparticles. The liquid alkali metal is selected from sodium, lithium and sodium-potassium alloys, and the nanoparticles to be dispersed are made of transition metals, such as titanium, vanadium, chromium, iron, cobalt, nickel and copper.
    • 本发明涉及保持具有分散的纳米颗粒的液态碱金属的基本物理性质,使得纳米颗粒均匀地分散和混合在用于热交换,冷却和其它应用的液态碱金属中,并且抑制液体的反应 碱金属与分散的纳米粒子。 提供了通过将纳米粒子分散在液态碱金属中制造具有分散纳米粒子的液态碱金属的方法。 在该方法中,与液态碱金属的原子的原子键合和具有大量电荷转移的金属相比,纳米颗粒由与液态碱金属的组合具有大的原子键合的金属制成, 纳米颗粒。 液态碱金属选自钠,锂和钠 - 钾合金,待分散的纳米颗粒由钛,钒,铬,铁,钴,镍和铜等过渡金属制成。
    • 8. 发明申请
    • SAMPLING RATE CONVERSION APPARATUS AND METHOD THEREOF
    • 采样速率转换装置及其方法
    • US20090240508A1
    • 2009-09-24
    • US12363293
    • 2009-01-30
    • Junichi Saito
    • Junichi Saito
    • G10L19/00
    • G10L25/90G10L21/00G10L25/36
    • A sampling rate conversion apparatus and a method thereof are provided which increase the sampling rate of a discrete audio signal sampled at a predetermined sampling rate by using a fractal interpolation function (FIF). An audio signal portion formed by a predetermined number of sampling data items is divided into a plurality of interpolation intervals. On the audio signal portion, mapping points are determined. The number of the mapping points is in accordance with the degree of increase in the sampling rate. For the respective interpolation intervals, mapping parameters for performing mapping using the FIF on the mapping points are calculated. In all of the interpolation intervals, the mapping using the FIF is performed on the mapping points with the use of the mapping parameters according to the respective interpolation intervals. Thereby, new sampling data items are generated.
    • 提供了一种采样率转换装置及其方法,其通过使用分形插值函数(FIF)来增加以预定采样率采样的离散音频信号的采样率。 由预定数量的采样数据项形成的音频信号部分被分成多个插值间隔。 在音频信号部分,确定映射点。 映射点的数量符合采样率的增加程度。 对于各个内插间隔,计算使用映射点上的FIF执行映射的映射参数。 在所有内插间隔中,使用FIF的映射使用映射参数根据各自的内插间隔在映射点上进行。 由此,生成新的采样数据项。