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    • 1. 发明授权
    • Electric lamp with light-absorbing medium and interference film
    • 电灯带吸光介质和干涉膜
    • US06570302B1
    • 2003-05-27
    • US09671127
    • 2000-09-27
    • Erik Paul BoonekampMathias Hubertus Johannes Van RijswickHendrik Adrianus Van SprangGerhard Hebbinghaus
    • Erik Paul BoonekampMathias Hubertus Johannes Van RijswickHendrik Adrianus Van SprangGerhard Hebbinghaus
    • H01J516
    • G02B5/285H01J61/34H01J61/35H01J61/40
    • The electric lamp comprises a lamp vessel (11) which transmits visible light and which accommodates a light source (12). The electric lamp comprises a light-absorbing medium (16). The lamp vessel (11) is covered with an optical interference film (15) which comprises layers composed of a first layer of silica and a second layer of a material having a relatively high refractive index which alternate with each other. According to the invention, light from the light source (12) travels through the light-absorbing medium (16) before reaching the interference film (15). Preferably, the light-absorbing layer (16) is disposed between the lamp vessel (11) and the interference film (15). Alternatively, the light-absorbing layer is contained in a wall of the lamp vessel. Preferably, the interference film (15) reflects substantially in the same wavelength range as that wherein the light-absorbing medium (16) absorbs, preferably in the range from 570 to 620 nm. Preferably, the electric lamp emits, in operation, colored light but has a color-neutral appearance when the lamp is in the off-state. The light-absorbing layer (16) preferably predominantly comprises Nd2O3, CoAl2O4, Fe2O3, ZnFe2O4, ZnO.Fe2O4 or BiVO4.
    • 该电灯包括透过可见光并容纳光源(12)的灯容器(11)。 电灯包括光吸收介质(16)。 灯容器(11)被光学干涉膜(15)覆盖,该光学干涉膜包括由第一层二氧化硅构成的层和具有彼此交替的相对较高折射率的材料的第二层。 根据本发明,来自光源(12)的光在到达干涉膜(15)之前穿过光吸收介质(16)。 优选地,光吸收层(16)设置在灯容器(11)和干涉膜(15)之间。 或者,光吸收层被容纳在灯容器的壁中。 优选地,干涉膜(15)基本上在与吸光介质(16)吸收相同的波长范围内反射,优选在570nm至620nm的范围内。 优选地,电灯在操作中发出彩色光,但是当灯处于关闭状态时具有着色中性的外观。 光吸收层(16)优选主要包含Nd2O3,CoAl2O4,Fe2O3,ZnFe2O4,ZnO.Fe2O4或BiVO4。
    • 2. 发明申请
    • PHOTONIC CRYSTAL LED
    • 光电晶体LED
    • US20100270572A1
    • 2010-10-28
    • US12747541
    • 2008-12-12
    • Marcus Antonius VerschuurenHendrik Adrianus Van Sprang
    • Marcus Antonius VerschuurenHendrik Adrianus Van Sprang
    • H01L33/02H01L33/44
    • H01L33/58H01L33/02H01L33/387H01L33/44H01L2933/0083
    • A semiconductor light emitting diode (1, LED), comprising a first and a second electrode (40, 11) for applying a voltage across an active region (4) for generation of light, a light emitting surface (6), and a plurality of photonic crystals (101, 102). Further, at least two photonic crystals (101, 102) of a first and a second type are adapted to extract light from the active region (4) and differ from each other with respect to at least one lattice parameter. Each of said at least two photonic crystals (101, 102) are associated with a respective far field pattern, wherein an arrangement of said plurality of photonic crystals (101, 102) is provided to arrange said at least two photonic crystals (101, 102). In this manner, a far field pattern is created by combining the respective far field patterns associated with each of said at least two photonic crystals (101, 102).
    • 一种半导体发光二极管(1,LED),包括用于在有源区域(4)上施加电压以产生光的第一和第二电极(40,11),发光表面(6)和多个 的光子晶体(101,102)。 此外,第一和第二类型的至少两个光子晶体(101,102)适于从有源区域(4)提取光并且相对于至少一个晶格参数彼此不同。 所述至少两个光子晶体(101,102)中的每一个与相应的远场图案相关联,其中提供所述多个光子晶体(101,102)的布置以布置所述至少两个光子晶体(101,102 )。 以这种方式,通过组合与所述至少两个光子晶体(101,102)中的每一个相关联的相应远场图案来创建远场图案。
    • 4. 发明授权
    • Photonic crystal LED
    • 光子晶体LED
    • US08536600B2
    • 2013-09-17
    • US12747541
    • 2008-12-12
    • Marcus Antonius VerschuurenHendrik Adrianus Van Sprang
    • Marcus Antonius VerschuurenHendrik Adrianus Van Sprang
    • H01L33/16
    • H01L33/58H01L33/02H01L33/387H01L33/44H01L2933/0083
    • A semiconductor light emitting diode (1, LED), comprising a first and a second electrode (40, 11) for applying a voltage across an active region (4) for generation of light, a light emitting surface (6), and a plurality of photonic crystals (101, 102). Further, at least two photonic crystals (101, 102) of a first and a second type are adapted to extract light from the active region (4) and differ from each other with respect to at least one lattice parameter. Each of said at least two photonic crystals (101, 102) are associated with a respective far field pattern, wherein an arrangement of said plurality of photonic crystals (101, 102) is provided to arrange said at least two photonic crystals (101, 102). In this manner, a far field pattern is created by combining the respective far field patterns associated with each of said at least two photonic crystals (101, 102).
    • 一种半导体发光二极管(1,LED),包括用于在有源区域(4)上施加电压以产生光的第一和第二电极(40,11),发光表面(6)和多个 的光子晶体(101,102)。 此外,第一和第二类型的至少两个光子晶体(101,102)适于从有源区域(4)提取光并且相对于至少一个晶格参数彼此不同。 所述至少两个光子晶体(101,102)中的每一个与相应的远场图案相关联,其中提供所述多个光子晶体(101,102)的布置以布置所述至少两个光子晶体(101,102 )。 以这种方式,通过组合与所述至少两个光子晶体(101,102)中的每一个相关联的相应远场图案来创建远场图案。
    • 9. 发明授权
    • Electric lamp with absorbing and interference media
    • 电灯吸收和干扰介质
    • US07453190B2
    • 2008-11-18
    • US10504760
    • 2003-02-03
    • Hendrik Adrianus Van Sprang
    • Hendrik Adrianus Van Sprang
    • H01J5/16H01J61/40H01K1/26H01K1/32
    • G02B5/285H01J61/40H01K1/32
    • An electric lamp includes a lamp vessel which is transparent to visible light and accommodates a light source. The lamp vessel is covered with a combination of a light-absorbing medium and an optical interference film having layers of alternately layers of silicon dioxide and layers of a material with a comparatively high refractive index (e.g. ZrO2) . The reflection R of the interference film changes from 0.60≦R≦0.95 to 0.40≦R≦0.65 with a step ΔR in the range 0.2≦ΔR≦0.45, in a wavelength range 0.95×λtr≦λ≦1.2×λtr. In operation, the electric lamp emits colored light in the transmission mode and has a substantially color-neutral appearance in the off state.
    • 电灯包括对可见光透明并容纳光源的灯容器。 灯容器被光吸收介质和光学干涉膜的组合覆盖,所述光学干涉膜具有交替层的二氧化硅层和具有较高折射率的材料层(例如ZrO 2 2) 。 干涉膜的反射R从0.60 <= R <= 0.95变化到0.40 <= R <= 0.65,步长ΔR在0.2 <=ΔR<= 0.45的范围内,波长范围为0.95×λ< / SUB> <=λ<= 1.2×λ。 在操作中,电灯以透射模式发出彩色光,并且在关闭状态下具有基本上色彩的外观。