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    • 3. 发明授权
    • Light stimulation device and microscope system
    • 光刺激装置和显微镜系统
    • US09575002B2
    • 2017-02-21
    • US14549283
    • 2014-11-20
    • OLYMPUS CORPORATION
    • Yasunari Matsukawa
    • H01J5/16G01N21/64G02B21/00
    • G01N21/6428G02B21/0032G02B21/0076G02B2207/114
    • The number of stimulated spots and/or the area of a stimulated spot is easily increased or decreased while keeping the irradiation power for each stimulated spot constant. Provided is a light stimulation device (3) that includes an objective lens (23) that radiates stimulation light emitted from a stimulation laser (11) onto a specimen (S); an LCOS-SLM (17) that is located at a position conjugate to the pupil of the objective lens (23) and that can modulate the phase of stimulation light to be made to enter the objective lens (23) based on a predetermined pupil modulation pattern; an AOM (13) that adjusts the amount of stimulation light to be made to enter the LCOS-SLM (17); a mouse (26) that is used to specify the number of spots and the position of a spot of light to be radiated onto the specimen (S); and a controller main unit (28) that determines the pupil modulation pattern for the LCOS-SLM (17) according to the number of spots and the position of a spot specified by means of the mouse (26) and that controls the AOM (13) such that, when the number of spots specified by means of the mouse (26) is changed, the amount of light to be radiated onto each spot before and after the change in the number of spots becomes constant.
    • 刺激斑点的数量和/或刺激斑点的面积容易增加或减少,同时保持每个受激点的照射功率恒定。 提供了一种光刺激装置(3),其包括将从刺激激光器(11)发射的刺激光辐射到样本(S)上的物镜(23); 位于与所述物镜(23)的光瞳共轭的位置的LCOS-SLM(17),并且能够基于预定的光瞳调制来调制待进入所述物镜(23)的刺激光的相位 模式; 调节进入LCOS-SLM(17)的刺激光量的AOM(13); 用于指定要照射到样本(S)上的光点数和位置的鼠标(26); 以及控制器主单元(28),其根据点数的数量和通过鼠标(26)指定的点的位置来确定LCOS-SLM(17)的光瞳调制模式,并且控制AOM(13 ),使得当通过鼠标(26)指定的点的数量改变时,要在点数变化之前和之后辐射到每个点上的光量变为恒定。
    • 7. 发明授权
    • Lucent waveguide electromagnetic wave
    • 朗讯波导电磁波
    • US09299554B2
    • 2016-03-29
    • US14400266
    • 2013-05-03
    • Ceravision Limited
    • Andrew Simon Neate
    • H01J65/04H01J5/16H01Q1/26
    • H01J65/044H01J5/16H01Q1/26
    • A Lucent Waveguide Electromagnetic Wave Plasma Light Source has a fabrication (1) of quartz with an inner closed void enclosure (2) is formed of 8 mm OD, 4 mm ID drawn tube. It is sealed at its inner and outer ends (3,4). Microwave excitable plasma material is sealed inside the enclosure. Its outer end (4) protrudes through an end plate (5) by approximately 10.5 mm and the overall length of the enclosure is approximately 20.5 mm. The tube (71) from which the void is formed is continued backwards from the inner end of the void enclosure as an antenna sheath (72). The 2 mm thick end plate (5) is circular and has the enclosure (2) sealed in a central bore in it.
    • 朗讯波导电磁波等离子体光源具有石英的制造(1),内部封闭的空腔(2)由8mm的外径,4mm的ID拉伸管形成。 它在其内端和外端(3,4)处被密封。 微波可激发等离子体材料密封在外壳内。 其外端(4)通过端板(5)突出大约10.5mm,并且外壳的总长度大约为20.5mm。 形成空隙的管(71)作为天线护套(72)从空隙壳体的内端向后延伸。 2mm厚的端板(5)是圆形的,并且外壳(2)密封在其中的中心孔中。
    • 8. 发明授权
    • Organic electroluminescence display device
    • 有机电致发光显示装置
    • US09219248B2
    • 2015-12-22
    • US13963816
    • 2013-08-09
    • Samsung Electronics Co., Ltd.
    • Tsuyoshi Ohyama
    • H01J5/16H01J61/40H01K1/26H01K1/30H01L51/52H01L27/32
    • H01L51/5262H01L27/3244H01L51/5281H01L2227/323
    • An organic EL display device includes: a transparent substrate; a circularly-polarizing plate disposed on a first surface of the transparent substrate; a wiring layer disposed on a second surface of the transparent substrate; a selectively-reflecting layer disposed on the wiring layer, where the selectively-reflecting layer reflects only a circularly polarized component, which has a predetermined wavelength and rotates in a predetermined direction, in incident light, and the selectively-reflecting layer transmits light of a wavelength different from the predetermined wavelength in the incident light and a circularly polarized component, which has the predetermined wavelength and rotates in a direction different from the predetermined direction; a transparent electrode disposed on the selectively-reflecting layer; an emission layer disposed on the transparent electrode in a position corresponding to the selectively-reflecting layer, where the emission layer emits light of a predetermined color; and a reflective electrode disposed on the emission layer.
    • 一种有机EL显示装置,包括:透明基板; 设置在所述透明基板的第一表面上的圆偏振片; 布置在所述透明基板的第二表面上的布线层; 选择反射层,其设置在所述布线层上,其中所述选择反射层仅在入射光中仅反射具有预定波长并沿预定方向旋转的圆偏振分量,并且所述选择反射层透射光 在入射光中与预定波长不同的波长和具有预定波长并沿与预定方向不同的方向旋转的圆偏振分量; 设置在所述选择反射层上的透明电极; 发光层,设置在与所述选择反射层对应的位置的所述透明电极上,所述发光层发射预定颜色的光; 以及设置在发射层上的反射电极。
    • 9. 发明授权
    • Light source device and filament
    • 光源装置和灯丝
    • US09214330B2
    • 2015-12-15
    • US14368783
    • 2012-12-20
    • STANLEY ELECTRIC CO., LTD.
    • Yasuyuki KawakamiTakahiro MatsumotoTakao SaitoKei Emoto
    • H01J5/16H01J61/40H01K1/26H01K1/30H01K1/10H01K3/02H01K1/04
    • H01K1/26H01K1/04H01K1/10H01K3/02
    • A light source device comprising a filament showing high electric power-to-visible light conversion efficiency is provided. The light source device of the present invention comprises a translucent gastight container, a filament disposed in the translucent gastight container, and a lead wire for supplying an electric current to the filament. The filament comprises a substrate formed from a metal material and a visible light-absorbing film covering the substrate. The visible light-absorbing film is transparent to lights of infrared region. The reflectance of the substrate for visible lights is thereby made low, and the reflectance of the substrate for infrared lights is thereby made high. Therefore, radiation of infrared lights is suppressed, and visible luminous efficiency can be enhanced.
    • 提供了一种包括显示高电力 - 可见光转换效率的灯丝的光源装置。 本发明的光源装置包括半透明气密容器,设置在半透明气密容器中的灯丝和用于向灯丝供电的引线。 灯丝包括由金属材料形成的基板和覆盖基板的可见光吸收膜。 可见光吸收膜对于红外区域的光是透明的。 由此,可见光用基板的反射率变低,因此红外线用基板的反射率变高。 因此,抑制红外线的照射,可以提高可见光的发光效率。
    • 10. 发明授权
    • Circularly polarizing plate and three-dimensional image display apparatus
    • 圆偏振板和三维图像显示装置
    • US08952600B2
    • 2015-02-10
    • US14344000
    • 2012-07-20
    • Rieko RenKoji TasakaKouji Tashiro
    • Rieko RenKoji TasakaKouji Tashiro
    • H01J5/16H01J61/40H01K1/26H01K1/30G02B27/26
    • G02B27/26G02B5/3083
    • A circularly polarizing plate has a polarizer and two λ/4 plates (T1, T2) bonded respectively onto both sides of the polarizer so as to face each other, the circularly polarizing plate is characterized in that the in-plane retardation values Ro of the λ/4 plates (T1) and the λ/4 plates (T2) satisfy (a) to (c) below in an environment with a temperature of 23° C. and RH of 55%. (a) The in-plane retardation value Ro of the λ/4 plates (T1), when measured within the range of 450 to 650 nm, is 3.0 to 20.0 nm smaller than the in-plane retardation value Ro of the λ/4 plates (T2). (b) The in-plane retardation value Ro of the λ/4 plates (T1) (450) falls within the range of 110 to 140 nm. (c) The in-plane retardation value Ro of the λ/4 plates (T2) (650) falls within the range of 145 to 165 nm.
    • 圆偏振板具有偏振片和分别粘合在偏振片的两面上的两个λ/ 4板(T1,T2),以便彼此面对,圆偏振片的特征在于,面偏光板的面内相位差值Ro λ/ 4板(T1)和λ/ 4板(T2)在温度为23℃,RH为55%的环境下满足下述(a)〜(c)。 (a)当在450〜650nm的范围内测量时,λ/ 4板(T1)的面内延迟值Ro比λ/ 4的面内延迟值Ro小3.0〜20.0nm 板(T2)。 (b)λ/ 4板(T1)(450)的面内延迟值Ro落在110〜140nm的范围内。 (c)λ/ 4板(T2)(650)的面内延迟值Ro在145〜165nm的范围内。