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    • 22. 发明申请
    • MERCURY-FREE DISCHARGE LAMP
    • 无汞排放灯
    • WO2013009383A1
    • 2013-01-17
    • PCT/US2012036890
    • 2012-05-08
    • OSRAM SYLVANIA INCMOSKOWITZ PHILIP E
    • MOSKOWITZ PHILIP E
    • H01J65/04
    • H01J65/048
    • The present invention provides a low pressure metal halide fluorescent lamp (100). The metal halide fluorescent lamp may have an oblate spheroid cavity discharge vessel (102) filled with an ionizable metal halide surrounding an exciter housing. An exciter (102) within the exciter housing (108) may drive the ionizable metal halide in an inductively coupled electrode - less manner. One or more embodiments may include one or more heat spreaders (114) and/or thermal transfer pipes for transferring heat from the exciter to a surface of the oblate discharge vessel.
    • 本发明提供一种低压金属卤化物荧光灯(100)。 金属卤化物荧光灯可具有填充有围绕激励器外壳的可电离金属卤化物的扁球形腔体放电管(102)。 激励器外壳(108)内的激励器(102)可以以感应耦合无电极方式驱动可电离金属卤化物。 一个或多个实施例可以包括一个或多个散热器(114)和/或传热管,用于将热量从激励器传递到扁平放电管的表面。
    • 24. 发明申请
    • LUCENT WAVEGUIDE ELECTROMAGNETIC WAVE PLASMA LIGHT SOURCE
    • WO2012085506A3
    • 2012-06-28
    • PCT/GB2011/001744
    • 2011-12-20
    • CERAVISION LIMITEDNEATE, Andrew SimonPRESTON, Barry
    • NEATE, Andrew SimonPRESTON, Barry
    • H01J65/04
    • A Lucent Waveguide Electromagnetic wave Plasma Light Source has a fabrication 1 of fused quartz sheet and drawn tube. An inner closed void enclosure 2 is formed of 8mm outside diameter, 4mm inside diameter drawn tube. Electromagnetic wave excitable plasma material is sealed inside the enclosure. The end plate 5 is circular and has the enclosure 2 sealed in a central bore in it, the bore not being numbered as such. A similar plate 6 is positioned to leave a small gap between the inner end of the enclosure and itself. The two tubes are concentric with the two plates extending at right angles to their central axis. The outer tube 7 extends back from the back surface of the inner plate 6 as a skirt 9. This structure provides: • an annular cavity 1 1 between the plates, around the void enclosure and within outer tube; · a skirted recess 13. Accommodated in the skirted recess is a right-circular-cylindrical block 14 of alumina dimensioned to fit the recess with a sliding fit. An antenna 18 with a Tee/button head 19 is housed in a bore 15 and counter-bore 16 in the alumina block. The quartz fabrication 1 with the alumina block 14 is accommodated in a Faraday cage 20 extending across the fabrication at the end plate 5 and back along the outer tube for the extent of the cavity 10. The cage has an imperforate skirt 22 extending 8mm further back than the quartz skirt 9.
    • 27. 发明申请
    • PLASMA LIGHT SOURCE
    • 等离子体光源
    • WO2012007712A1
    • 2012-01-19
    • PCT/GB2011/001047
    • 2011-07-12
    • CERAVISION LIMITEDPRESTON Barry
    • PRESTON Barry
    • H01J65/04
    • H05H1/46H01J65/044
    • A High Frequency light source (11) has a central body (12) of fused quartz, with a central void (14), filled with a fill (16) in the void of material excitable by High Frequency energy to form a light emitting plasma. An inner sleeve (17) of perforate metal shim extends along the length of the central body to within 2.5mm of its void end to provide a launching gap (18). The sleeve has a transverse end portion (19) extending across the other, inner end of the central body. An outer cylinder of fused quartz (20) with an internal bore (21) such as to be a sliding fit with the inner sleeve, itself a sliding fit on the central body. An outer sleeve (22) of perforate metal, enclosing the outer cylinder and having an end portion (23) extending across the flush, void ends of the quartz body and cylinder (12,20). The outer sleeve has a skirt (25) extending past the flush other ends of the quartz elements over an aluminium carrier (26), where it is clamped, holding the quartz elements against the carrier. Thus the sleeve forms with, with its end (23) and the carrier (26), a Faraday cage around the quartz and the plasma void (14). An antenna (27) insulated from the carrier extends from it into a bore (28) in the quartz cylinder (20) for introducing HF radiation into the coaxial wave guide formed by the inner and outer sleeves (17,22). Their perforation is such as to make them opaque and enclosing to the HF radiation yet light transmissive, whereby light from the plasma can pass through them. The portion of the antenna in the carrier provides a connection to an non-shown source of HF energy. The inner sleeve (17), at its end portion (19), is earthed to the carrier, in the same way as the outer sleeve and its end portion (23). Thus the gap (18) between the end of the inner sleeve and the end portion of the Faraday cage forms a launching gap for the HF energy to radiate to the plasma void and establish and maintain the plasma there. Light from the plasma passes through the quartz and through the perforations in the sleeves and the end portion (19), thus out of the light source.
    • 高频光源(11)具有熔融石英的中心体(12)和中心空隙(14),其中填充物(16)填充在由高频能量激发的材料空隙中以形成发光等离子体 。 穿孔金属垫片的内套筒(17)沿着中心体的长度延伸到其空隙端的2.5mm内,以提供发射间隙(18)。 套筒具有延伸穿过中心体的另一个内端的横向端部(19)。 具有内孔(21)的熔融石英(20)的外筒,其与内套滑动配合,本身在中心体上滑动配合。 一种穿孔金属的外套筒(22),其包围外筒,并具有延伸穿过石英体和圆柱体(12,20)的齐平空隙端的端部(23)。 外套筒具有延伸穿过铝制托架(26)上的石英元件的平齐的另一端的裙部(25),在其上被夹紧,将石英元件保持在托架上。 因此,套筒与其端部(23)和载体(26)形成围绕石英和等离子体空隙(14)的法拉第笼。 与载体绝缘的天线(27)从其延伸到石英筒(20)中的孔(28)中,用于将HF辐射引入由内外套(17,22)形成的同轴波导中。 它们的穿孔使得它们不透明并且被包围在HF辐射上并且透光,由此来自等离子体的光可以通过它们。 载体中天线的部分提供与未示出的HF能源的连接。 内套筒(17)在其端部(19)处以与外套筒及其端部(23)相同的方式接地到承载件。 因此,内套筒的端部和法拉第笼的端部之间的间隙(18)形成用于HF能量辐射到等离子体空隙并且建立和维持等离子体的发射间隙。 来自等离子体的光通过石英并穿过套管和端部(19)中的穿孔,从而穿过光源。
    • 29. 发明申请
    • 제논램프를 내장한 조명장치
    • 用XENON LAMPS嵌入的照明装置
    • WO2011034221A1
    • 2011-03-24
    • PCT/KR2009/005241
    • 2009-09-15
    • 주식회사 카이젠정풍기
    • 정풍기
    • H01J65/04F21V17/00
    • F21V23/02F21Y2103/00
    • 본 발명은 제논램프를 내장한 조명장치로 더욱 자세하게는 기존 조명장치에 제논램프 및 안정기를 설치하여 소비전력이 매우 낮으며 램프교체 주기가 비약적으로 연장된 제논램프를 내장한 조명장치에 관한 것이다. 본 발명을 통해 적은 소비전력으로 더 밝은 빛을 방출하게 되므로 에너지를 절감할 수 있으며, 한 쌍의 제논램프에 한 개의 안정기를 구성하여 수명연장과 누전사고로부터 보다 안전하고 램프 및 안정기의 교체가 매우 간편해진다.
    • 嵌入氙灯的照明装置技术领域本发明涉及一种嵌入氙灯的照明装置,更具体地说,涉及一种嵌入式氙灯的照明装置,其能够实现非常低的功率消耗,并且通过在现有的氙灯中安装氙气灯和稳定器来显着延长灯交换周期 照明装置 根据本发明,以较低的功耗发出更亮的光,从而节约能源。 此外,由于一对稳定器配备在一对氙灯中,因此本发明具有长寿命并且更安全地防止短路。 此外,灯和稳定器非常简单地交换。