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    • 11. 发明授权
    • Exterior element sensor
    • 外部元件传感器
    • US07348586B2
    • 2008-03-25
    • US11172818
    • 2005-07-05
    • Kiyomitsu IshikawaHiroshi Takata
    • Kiyomitsu IshikawaHiroshi Takata
    • G01N15/06
    • G01N21/552B60S1/0822B60S1/0837B60S1/0888
    • An exterior element sensor can include an optical element mounted on a window. The optical element can include a cylindrical lens having both ends shaped spherically and a central portion that exerts little or no influence on exterior element detection (such as rain, snow, ice, water, liquid, debris, or other materials) when visible light transmits therethrough. In addition, infrared or other light can be used to detect exterior elements located on the window. A black filter can be employed, if desired, which blocks visible light and transmits infrared light therethrough to separate visible light from infrared light, thereby allowing the exterior element sensor to be used together with an exterior light sensor without losing accuracy.
    • 外部元件传感器可以包括安装在窗户上的光学元件。 光学元件可以包括圆柱形透镜,其两端成球形,中心部分在可见光透射时对外部元件检测(例如雨,雪,冰,水,液体,碎片或其他材料)施加很小或不影响 通过。 此外,红外线或其他光线可用于检测位于窗口上的外部元件。 如果需要,可以使用黑色滤光器,其阻挡可见光并透射红外光以将可见光与红外光分离,从而允许外部元件传感器与外部光传感器一起使用而不会损失精度。
    • 15. 发明授权
    • Blade for a gas turbine
    • 燃气轮机叶片
    • US07273347B2
    • 2007-09-25
    • US11549767
    • 2006-10-16
    • Ulrich Rathmann
    • Ulrich Rathmann
    • F01D5/18F01D25/12
    • F01D11/10F01D5/186F01D5/187F01D5/225F05D2260/201F05D2260/202
    • A gas turbine blade (1) has a shroud (3) which is cooled by different cooling mechanisms in various regions (A, B, C) according to the different thermal load. In a first region (A), in a fin (8), bores are provided, by which a convective cooling of the fin and a film cooling of the hot gas side of the fin are implemented. A second region (B) is cooled by impingement cooling by a cooling air stream from a duct in the radially opposite stator housing. A third region (C) has a plurality of bores running parallel which run from a cooling duct of a cooling system for the blade leaf to the radially outer surface of the shroud. A cooling air stream flowing through these bores causes a convective cooling of this region.
    • 燃气轮机叶片(1)具有根据不同的热负荷在不同的区域(A,B,C)中被不同的冷却机构冷却的护罩(3)。 在第一区域(A)中,在翅片(8)中,提供孔,通过该孔实现翅片的对流冷却和翅片的热气体侧的薄膜冷却。 第二区域(B)通过来自径向相对的定子壳体中的管道的冷却空气流的冲击冷却来冷却。 第三区域(C)具有平行延伸的多个孔,其从用于叶片叶片的冷却系统的冷却管道延伸到护罩的径向外表面。 流过这些孔的冷却空气流使该区域对流冷却。
    • 17. 发明授权
    • Pushbutton switch cover sheet and method of manufacturing the same
    • 按钮开关盖板及其制造方法
    • US07465889B2
    • 2008-12-16
    • US11407228
    • 2006-04-20
    • Daisuke NakajimaJunko Hosaka
    • Daisuke NakajimaJunko Hosaka
    • H01H9/26
    • H01H13/86H01H2221/004H01H2221/09H04M1/23
    • According to the present invention, there is provided a pushbutton switch cover sheet providing a unique design. A pushbutton switch cover sheet is provided with an operation plate of metal or hard resin having dividing grooves defining depressing operation members capable of displacement through depression. Therefore, there is no need to provide the casing of the apparatus with a frame defining key tops, making it possible to impart a novel design to the apparatus. The operation plate is formed as a thin plate, so it is possible to reduce a thickness of the apparatus as a whole. Further, the dividing grooves are provided with in-groove protrusions protruding into the dividing grooves and groove filling members fixed to the groove inner side surfaces and formed of a rubber-like elastic material, thereby making it possible to provide a pushbutton switch cover sheet of a high level of safety in which there is no fear of fingers being injured by the dividing grooves.
    • 根据本发明,提供了提供独特设计的按钮开关盖片。 按钮开关盖片设置有金属或硬树脂的操作板,具有限定能够通过凹陷移位的按压操作构件的分隔槽。 因此,不需要为设备的壳体提供限定键顶的框架,使得可以向设备赋予新颖的设计。 操作板形成为薄板,因此可以整体减小装置的厚度。 此外,分隔槽设置有突出到分隔槽中的凹槽突起和固定到槽内侧表面并由橡胶状弹性材料形成的槽填充构件,从而可以提供一种按钮开关盖板 高度的安全性,其中不用担心手指受分隔槽的伤害。
    • 18. 发明授权
    • Method for manufacturing and semiconductor light emitting device
    • 制造方法和半导体发光装置
    • US07442563B2
    • 2008-10-28
    • US11237805
    • 2005-09-29
    • Mitsunori Harada
    • Mitsunori Harada
    • H01L21/00
    • H01L33/508H01L2224/48091H01L2933/0041H01L2924/00014
    • A method for manufacturing a semiconductor light emitting device can include providing a housing having a cavity and a power feed line, a light emitting element connected to the power feed line on a bottom face of the cavity, and a wavelength conversion layer provided within the cavity and containing a wavelength conversion material. When forming the wavelength conversion layer, a first resin with little or no wavelength conversion material can be filled inside the cavity such that the light emitting element surface is slightly exposed and a surface of the first resin is formed in a bowl shape. Then, a second resin with wavelength conversion material contained therein can be filled inside the cavity over the bowl-shaped first resin. These resins can be heated to be hardened. During heating, the viscosities of the resins are reduced to cause the wavelength conversion material to migrate and deposit around the light emitting element.
    • 一种制造半导体发光器件的方法可以包括提供具有空腔和馈电线的壳体,连接到空腔底面上的馈电线的发光元件,以及设置在空腔内的波长转换层 并含有波长转换材料。 当形成波长转换层时,可以在空腔内填充具有很少或不具有波长转换材料的第一树脂,使得发光元件表面稍微露出,并且第一树脂的表面形成为碗形。 然后,其中容纳有波长转换材料的第二树脂可以填充在碗形第一树脂的空腔内。 这些树脂可被加热硬化。 在加热过程中,树脂的粘度降低,导致波长转换材料迁移并沉积在发光元件周围。
    • 19. 发明授权
    • Lighting device
    • 照明装置
    • US07441928B2
    • 2008-10-28
    • US11736216
    • 2007-04-17
    • Takashi Futami
    • Takashi Futami
    • F21V7/00
    • F21S43/14F21S41/143F21S41/663F21Y2115/10
    • A lighting device can include at least one LED light source having at least one LED chip, the LED light source being configured to impart a certain directivity to light emitted from the LED chip in a direction of the optical axis of the light source. A first reflector can be disposed in front of the LED light source and upwards with respect to the optical axis. The first reflector can also extend forward and above the optical axis in an inclined manner from a first side to a second side so as to reflect part of light emitted from an upper part of the LED light source with respect to the optical axis. A second reflector can be disposed substantially in parallel to, and below, the first reflector. The second reflector can be configured to reflect light from the first reflector. A third reflector can be disposed in front of the LED light source and downward with respect to the optical axis. The third reflector can extend forward and below the optical axis in an inclined manner from the second side to the first side so as to reflect part of light emitted from a lower part of the LED light source with respect to the optical axis. A fourth reflector can be disposed substantially in parallel to, and above, the third reflector. The fourth reflector can also be configured to reflect light from the third reflector.
    • 照明装置可以包括具有至少一个LED芯片的至少一个LED光源,所述LED光源被配置为沿着所述光源的光轴的方向对从所述LED芯片发射的光赋予一定的方向性。 第一反射器可以设置在LED光源的前面并相对于光轴向上。 第一反射器还可以从第一侧向第二侧以倾斜的方式向前和向上延伸,以便相对于光轴反射从LED光源的上部发射的光的一部分。 第二反射器可以基本上平行于第一反射器并且在其下方布置。 第二反射器可以被配置为反射来自第一反射器的光。 第三反射器可以设置在LED光源的前面并相对于光轴向下。 第三反射器可以从第二侧向第一侧以倾斜的方式向前和向下延伸,以便相对于光轴反射从LED光源的下部发射的光的一部分。 第四反射器可以基本上平行于第三反射器并且上方设置。 第四反射器还可以被配置为反射来自第三反射器的光。