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    • 1. 发明申请
    • Light source apparatus
    • 光源装置
    • US20110044059A1
    • 2011-02-24
    • US12805826
    • 2010-08-20
    • Masaki InoueYutaka ShiozakiHiroshige HataKiyoyuki Kabuki
    • Masaki InoueYutaka ShiozakiHiroshige HataKiyoyuki Kabuki
    • F21V3/02F21S6/00
    • G02B6/0001G02B6/0045H04N1/02835H04N2201/0081
    • A light source apparatus includes first and second light direction changing faces that extend in a longitudinal direction, a light guiding member having first and second light emitting faces that are formed to respectively face the first and second light direction changing faces and a light source that is arranged on one end face of the light guiding member. A first vertical plane extending in a longitudinal direction with respect to the first light direction changing face and a second vertical plane extending in a longitudinal direction with respect to the second light direction changing face intersect. A groove which extends in a longitudinal direction of the light guiding member is formed between the first and second light direction changing faces. A surface forming the groove may be parabolic in a cross section.
    • 光源装置包括沿纵向方向延伸的第一和第二光方向改变面,具有形成为分别面对第一和第二光方向改变面的第一和第二发光面的导光部件和形成为第一和第二光方向改变面的光源, 布置在导光构件的一个端面上。 相对于第一光方向改变面在纵向方向上延伸的第一垂直平面和相对于第二光方向改变面在纵向方向上延伸的第二垂直平面相交。 沿着导光部件的长度方向延伸的槽形成在第一和第二光方向切换面之间。 形成凹槽的表面可以在横截面中是抛物线的。
    • 4. 发明授权
    • Bifurcated linear light source apparatus
    • 分叉线性光源装置
    • US08371736B2
    • 2013-02-12
    • US12805826
    • 2010-08-20
    • Masaki InoueYutaka ShiozakiHiroshige HataKiyoyuki Kabuki
    • Masaki InoueYutaka ShiozakiHiroshige HataKiyoyuki Kabuki
    • F21V7/04F21V7/06
    • G02B6/0001G02B6/0045H04N1/02835H04N2201/0081
    • A light source apparatus includes first and second light direction changing faces that extend in a longitudinal direction, a light guiding member having first and second light emitting faces that are formed to respectively face the first and second light direction changing faces and a light source that is arranged on one end face of the light guiding member. A first vertical plane extending in a longitudinal direction with respect to the first light direction changing face and a second vertical plane extending in a longitudinal direction with respect to the second light direction changing face intersect. A groove which extends in a longitudinal direction of the light guiding member is formed between the first and second light direction changing faces. A surface forming the groove may be parabolic in a cross section.
    • 光源装置包括沿纵向方向延伸的第一和第二光方向改变面,具有形成为分别面对第一和第二光方向改变面的第一和第二发光面的导光部件和形成为第一和第二光方向改变面的光源, 布置在导光构件的一个端面上。 相对于第一光方向改变面在纵向方向上延伸的第一垂直平面和相对于第二光方向改变面在纵向方向上延伸的第二垂直平面相交。 沿着导光部件的长度方向延伸的槽形成在第一和第二光方向切换面之间。 形成凹槽的表面可以在横截面中是抛物线的。
    • 5. 发明申请
    • Light source apparatus
    • 光源装置
    • US20110216541A1
    • 2011-09-08
    • US13064076
    • 2011-03-04
    • Masaki InoueYutaka ShiozakiKoichi Kamei
    • Masaki InoueYutaka ShiozakiKoichi Kamei
    • F21V7/07
    • F21V7/07
    • A light source apparatus that is used in a document reading apparatus that reads document-reflecting light from the document includes a first reflection mirror; a second reflection mirror; and a light guiding member that comprises a light emitting element mounted to one longitudinal end of the light guiding member and a light emitting face in a longitudinal direction, where the first and second reflection mirrors are arranged in parallel to the light guiding member and reflect light from the light emitting face of light guiding member toward a document placement face and where an end point of an optical axis of a first light reflection face is located on the document placement face between an end point of an optical axis of the first reflection mirror and an end point of an optical axis of the second reflection, mirror.
    • 用于从文件读取文件反射光的文件读取装置中使用的光源装置包括:第一反射镜; 第二反射镜; 以及导光构件,其包括安装在所述导光构件的一个纵向端部的发光元件和在纵向方向上的发光面,所述第一反射镜和所述第二反射镜与所述导光构件平行布置并反射光 从导光构件的发光面朝向原稿放置面,第一光反射面的光轴的端点位于第一反射镜的光轴的端点与第一反射面的光轴的端点之间, 第二反射镜的光轴的终点。
    • 7. 发明授权
    • Material gas concentration control system
    • 物质气体浓度控制系统
    • US08800589B2
    • 2014-08-12
    • US12609965
    • 2009-10-30
    • Masakazu MinamiMasaki Inoue
    • Masakazu MinamiMasaki Inoue
    • C23C16/448G05D11/13C30B25/14
    • G05D11/139C23C16/4482C30B25/14Y10T137/2499Y10T137/2509
    • An object of this invention is to provide a responsive material gas concentration control system that can be mounted on a bubbling system and that can control a concentration of a material gas in a mixed gas at a constant value even though a partial pressure of the material gas fluctuates. The material gas concentration control system is used for a material evaporation system, and comprises a body that is connected to an outlet line and that has an internal flow channel for flowing the mixed gas, a concentration measuring part that measures the concentration of the material gas in the mixed gas, and a first valve that is arranged downstream of the concentration measuring part and that adjusts the measured concentration measured by the concentration measuring part at a previously determined set concentration, wherein the concentration measuring part and the first valve are mounted on the body.
    • 本发明的目的是提供一种响应性材料气体浓度控制系统,其可以安装在鼓泡系统上,并且即使材料气体的分压也可以将混合气体中的原料气体的浓度控制在恒定值 波动 材料气体浓度控制系统用于材料蒸发系统,并且包括连接到出口管线并具有用于使混合气体流动的内部流动通道的主体,测量材料气体浓度的浓度测量部件 在所述混合气体中配置有第一阀,所述第一阀配置在所述浓度测定部的下游,并且以预先设定的浓度调整由所述浓度测定部测定的测定浓度,其中,所述浓度测定部和所述第一阀安装在 身体。
    • 10. 发明授权
    • Flowmeter for measuring a flow rate using a heat exchange principle
    • 使用热交换原理测量流量的流量计
    • US08015870B2
    • 2011-09-13
    • US12524158
    • 2008-01-21
    • Masaki InoueHidetaka Yada
    • Masaki InoueHidetaka Yada
    • G01F1/68
    • G01F1/6847G01F1/6888
    • Provided is a flowmeter with a flow tube through which fluid flows; a cooling apparatus adapted to cool a part of the flow tube; a first temperature detecting section for detecting the temperature of the flow tube cooled by the cooling apparatus; a second temperature detecting section for detecting the temperature of the cooling apparatus; a third temperature detecting section for detecting the temperature of a non-cooling area upstream of a cooling area in the flow tube; and an information processing section, which controls the cooling apparatus make a difference between the temperature detected by the second temperature detecting section and the temperature detected by the third temperature detecting section to be a prescribed value, and calculates the flow rate of the fluid flowing in the flow tube.
    • 提供一种具有流体管的流量计,流体流过该流量计; 适于冷却所述流管的一部分的冷却装置; 第一温度检测部,用于检测由冷却装置冷却的流管的温度; 第二温度检测部,用于检测冷却装置的温度; 第三温度检测部分,用于检测流管中冷却区域上游的非冷却区域的温度; 以及信息处理部,其控制所述冷却装置使由所述第二温度检测部检测出的温度与由所述第三温度检测部检测出的温度之间的差为规定值,并且计算流过的流体的流量 流管。