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    • 23. 发明申请
    • VEHICLE LIGHT AND ROAD ILLUMINATION DEVICE
    • 车辆灯和道路照明装置
    • US20100201248A1
    • 2010-08-12
    • US12731137
    • 2010-03-24
    • MITSUNORI HARADATakashi Akutagawa
    • MITSUNORI HARADATakashi Akutagawa
    • H01J1/62
    • F21S41/663F21S41/143F21S41/147F21S41/155H01L25/0753H01L33/508H01L33/58H01L2224/45144H01L2224/48091H01L2924/3025H01L2933/0041H01L2924/00014H01L2924/00
    • A vehicle light and a road illumination device can include a semiconductor light emitting device capable of forming a luminance distribution where the light with a maximum value can be arranged at or near a light distribution cutoff line, thereby improving its light utilization efficiency. The vehicle light can include a semiconductor light emitting device including a semiconductor light emitting element and a wavelength conversion layer having a thickness-decreased portion that is formed substantially at a center line of the semiconductor light emitting element and extending to one end thereof so that the thickness is reduced from the center portion toward the one end. A projection optical system for forming a cutoff line can be configured to project a plurality of light source images each including an image portion corresponding to the thickness-decreased portion at its upper area, and to arrange the image portions in at least one of a horizontal direction and an oblique direction.
    • 车灯和道路照明装置可以包括能够形成亮度分布的半导体发光器件,其中具有最大值的光可以布置在配光截止线处或附近,从而提高其光利用效率。 车辆灯可以包括半导体发光器件,其包括半导体发光元件和具有厚度减小部分的波长转换层,该厚度减小部分基本上形成在半导体发光元件的中心线并延伸到其一端,使得 厚度从中心部朝向一端减小。 用于形成截止线的投影光学系统可以被配置为将包括与其厚度减小部分相对应的图像部分的多个光源图像投影在其上部区域,并且将图像部分布置在水平 方向和倾斜方向。
    • 24. 发明申请
    • SEMICONDUCTOR LIGHT EMITTING DEVICE AND LIGHTING DEVICE
    • 半导体发光器件和照明器件
    • US20090134417A1
    • 2009-05-28
    • US12276271
    • 2008-11-21
    • Masanori SatoMitsunori HaradaKazuhiko Ueno
    • Masanori SatoMitsunori HaradaKazuhiko Ueno
    • H01J1/62H01L33/00
    • H01L33/504H01L33/54H01L33/56H01L2933/0091
    • A semiconductor light emitting device can include a light emitting element with a semiconductor epitaxial layer which has a light emitting portion, and an element substrate which supports the semiconductor epitaxial layer and does not transmit light from the light emitting portion. A resin layer can be provided on the element substrate in a way covering side surfaces and an upper surface of the semiconductor epitaxial layer. The resin layer can contain fluorescent substances that wavelength-convert light from the light emitting portion, and can be inclined toward the top at one cross section. Therefore, the semiconductor light emitting device can exhibit a front luminance distribution having a difference in front luminance between the light emitting portion and the light non-emitting portion at an end portion of the semiconductor light emitting device.
    • 半导体发光器件可以包括具有发光部分的半导体外延层的发光元件和支撑半导体外延层并且不透射来自发光部分的光的元件基板。 可以以覆盖半导体外延层的侧表面和上表面的方式在元件基板上设置树脂层。 树脂层可以含有从发光部分波长转换光的荧光物质,并且可以在一个横截面向顶部倾斜。 因此,半导体发光器件可以呈现在半导体发光器件的端部处的发光部分和不发光部分之间的正面亮度差异的正面亮度分布。
    • 25. 发明申请
    • Semiconductor Light Emitting Apparatus
    • 半导体发光装置
    • US20080203419A1
    • 2008-08-28
    • US12036556
    • 2008-02-25
    • Mitsunori Harada
    • Mitsunori Harada
    • H01L33/00
    • H01L25/0753H01L33/50H01L2924/0002H01L2933/0091H01L2924/00
    • A semiconductor light emitting apparatus can be configured to reduce color variations and intensity variations with a simple configuration. The semiconductor light emitting apparatus can include a substrate having conductive members including chip mounting areas and electrode areas, a plurality of semiconductor light emitting device chips mounted in the chip mounting areas on the substrate, a reflector formed on this substrate so as to surround the semiconductor light emitting device chips, and a fluorescent material and a light diffusing material arranged distributedly inside this reflector. The semiconductor light emitting apparatus can be configured so that the semiconductor light emitting device chips emit light only from their top surfaces, and a first light transmitting resin containing the fluorescent material is applied only to the top surfaces of the semiconductor light emitting device chips.
    • 半导体发光装置可以被配置为通过简单的配置来减少颜色变化和强度变化。 半导体发光装置可以包括具有包括芯片安装区域和电极区域的导电构件的基板,安装在基板上的芯片安装区域中的多个半导体发光器件芯片,形成在该基板上以围绕半导体的反射器 发光器件芯片,以及布置在该反射器内的荧光材料和光漫射材料。 半导体发光装置可以被配置为使得半导体发光器件芯片仅从其顶表面发光,并且将含有荧光材料的第一透光树脂仅施加到半导体发光器件芯片的顶表面。
    • 28. 发明授权
    • Semiconductor light source apparatus
    • 半导体光源装置
    • US08851694B2
    • 2014-10-07
    • US13414702
    • 2012-03-07
    • Mitsunori Harada
    • Mitsunori Harada
    • F21V9/16F21S8/10F21W131/103F21Y101/02F21W131/406
    • F21V9/16F21S41/14F21S41/16F21V9/30F21W2131/103F21W2131/406F21Y2115/10F21Y2115/30
    • A semiconductor light source apparatus can include a clad layer, a phosphor layer surrounded by the clad layer and a laser diode emitting a laser light. The phosphor layer can include a cavity having an opening for receiving the laser light, a phosphor material and a light-emitting surface of the apparatus. The laser light entering into the cavity can repeatedly reflect on an inner surface of the phosphor layer many times, each and every time most of the laser light entering into the phosphor layer. The laser light can be efficiently wavelength-converted by the phosphor material and the wavelength converted light can be emitted from the light-emitting surface having various shapes exposed from the clad layer. Therefore, the disclosed subject matter can include providing semiconductor light source apparatuses having a high light-emitting efficiency and high light-emitting density such that the devices can be used for a headlight, general lighting, etc.
    • 半导体光源装置可以包括覆盖层,由覆盖层包围的荧光体层和发射激光的激光二极管。 荧光体层可以包括具有用于接收激光的开口的腔,荧光体材料和该装置的发光表面。 入射到空腔中的激光可以在荧光体层的内表面上多次反复反射,大部分激光进入荧光体层。 可以通过荧光体材料有效地对激光进行波长转换,并且可以从具有从包覆层露出的各种形状的发光面发射波长转换的光。 因此,所公开的主题可以包括提供具有高发光效率和高发光密度的半导体光源装置,使得该装置可用于前灯,一般照明等。
    • 29. 发明授权
    • Semiconductor light emitting device
    • 半导体发光器件
    • US08558448B2
    • 2013-10-15
    • US13204622
    • 2011-08-05
    • Mitsunori Harada
    • Mitsunori Harada
    • H01J1/62H01J63/04
    • H01L33/504H01L33/505H01L33/508H01L2224/45144H01L2224/48091H01L2224/73265H01L2924/3025H01L2933/0041H01L2924/00014H01L2924/00
    • A light emitting device can make it hard for fluorescence emitted from each phosphor in a color conversion plate to be absorbed by other phosphor. The color conversion plate can include multiple types of phosphors, and the light from a light emitting element can be allowed to reach each of the phosphors efficiently. The color conversion plate can contain at least first and second phosphors which absorb light emitted from the light emitting element and outputs fluorescence. The color conversion plate can have multiple first regions containing the first phosphor on a light emitting element side, being arranged with a predetermined spacing therebetween, and second regions containing the second phosphor on the upper surface, being arranged with a predetermined spacing therebetween. A region where the first regions and the second regions are excluded, as viewed from a location on top of the conversion plate, contains no phosphor.
    • 发光装置可以使颜色转换板中的每个荧光体发出的荧光被其它荧光体吸收困难。 颜色转换板可以包括多种类型的荧光体,并且可以允许来自发光元件的光有效地到达每个荧光体。 颜色转换板可以包含吸收从发光元件发出的光并输出荧光的至少第一和第二荧光体。 颜色转换板可以具有在发光元件侧上包含第一荧光体的多个第一区域,以其间具有预定间隔布置,并且在上表面上包含第二荧光体的第二区域以其间具有预定间隔布置。 从转换板顶部的位置观察,排除第一区域和第二区域的区域不含荧光体。
    • 30. 发明申请
    • LIQUID CRYSTAL DISPLAY PANEL AND METHOD FOR PRODUCING THE SAME
    • 液晶显示面板及其制造方法
    • US20130222725A1
    • 2013-08-29
    • US13883284
    • 2011-11-04
    • Hijiri NakaharaTsuyoshi OkazakiShogo NishiwakiMitsunori Harada
    • Hijiri NakaharaTsuyoshi OkazakiShogo NishiwakiMitsunori Harada
    • G02F1/1333
    • G02F1/133345G02F1/1333G02F1/1339
    • A liquid crystal display panel 10 includes a first substrate 20 and a second substrate 40 facing each other; a liquid crystal layer 50 formed between the pair of substrates; and a sealing portion 60 located so as to surround the liquid crystal layer. An insulating film is formed on a surface of the first substrate which faces the liquid crystal layer. The insulating film has a stacking structure including at least an organic insulating film 33 and an inorganic insulating film 38 located on the organic insulating film. In a peripheral portion of the insulating film which surrounds the liquid crystal layer, an inorganic insulating film non-formed portion 35 in which the inorganic insulating film is not formed is provided. A surface of the sealing portion which faces the first substrate is entirely located in the inorganic insulating film non-formed portion and entirely adheres to the organic insulating film.
    • 液晶显示面板10包括彼此面对的第一基板20和第二基板40; 形成在所述一对基板之间的液晶层50; 以及围绕液晶层定位的密封部60。 在第一基板的面向液晶层的表面上形成绝缘膜。 绝缘膜具有至少包含位于有机绝缘膜上的有机绝缘膜33和无机绝缘膜38的堆叠结构。 在包围液晶层的绝缘膜的周边部分,设置有无形绝缘膜的无机绝缘膜非形成部35。 面对第一基板的密封部分的表面完全位于无机绝缘膜非成形部分中,并且完全粘附到有机绝缘膜上。