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    • 1. 发明申请
    • EMETTEUR HALOGENE INFRAROUGE AMELIORE
    • 改进的红外卤化物发射体
    • WO2014057215A1
    • 2014-04-17
    • PCT/FR2013/052404
    • 2013-10-08
    • DIRTECH
    • DEMANGEON, OlivierDIDIER, Benoît
    • H01K1/32H01K1/02H01K1/26H01K1/08H05B3/44
    • H01K1/08H01K1/14H01K1/32H01K1/50H01K7/00H05B3/0033H05B3/008H05B3/44Y02B20/12
    • Emetteur halogène infrarouge utilisé dans le domaine du chauffage par rayonnement, comportant un filament en tungstène (1) et une enveloppe (2) de protection associée à un filtre (4) de limitation de l'intensité lumineuse. Il comporte un dispositif de commande conçu de sorte que le filament (1) émette à une température comprise entre 1500 et 1800K, et en ce que l'enveloppe (2) de protection présente une forme de tube, tandis que le filament (1) est disposé à l'intérieur de l'enveloppe de protection et comporte une succession de courbures, de changements de directions et de segments droits, en sorte qu'il présente une forme permettant qu'il occupe une grande partie de l'espace intérieur de l'enveloppe (2), et en sorte de loger à l'intérieur de l'enveloppe (2) une quantité significative de tungstène, à savoir une quantité apte à permettre un fonctionnement dans ladite gamme de température.
    • 用于辐射加热领域的红外卤素发射体包括钨丝(1)和与限制光强度的过滤器(4)组合的保护壳体(2)。 它包括设计成使得灯丝(1)在1500和1800K之间的温度下发射的控制装置,并且保护壳体(2)具有管的形状,而灯丝(1)布置在保护壳体内部,并且 包括一系列曲率,方向和直线段的变化,使得其具有使其能够占据壳体(2)的内部空间的大部分的形状,并且将大量的钨容纳在壳体 套管(2),即适合于在所述温度范围内启用操作的量。
    • 2. 发明申请
    • INCANDESCENT ILLUMINATION SYSTEM INCORPORATION AN INFRARED-REFLECTIVE SHROUD
    • 不良照明系统并入红外反射镜
    • WO2012088343A1
    • 2012-06-28
    • PCT/US2011/066634
    • 2011-12-21
    • CUNNINGHAM, David, W.
    • CUNNINGHAM, David, W.
    • H01K1/18H01K1/26H01K1/32
    • H01K1/18H01K1/26H01K1/325
    • An incandescent lamp and incandescent lighting system are disclosed, for projecting a beam of light with substantially improved energy efficiency. The incandescent lamp (220) includes a pair of reflective ceramic filament supports for supporting one or more filaments in prescribed position (s) within an envelope (222) while reflecting back substantially all visible and infrared light for incorporation into the projected beam or for absorption by the filament (s). The incandescent lighting system includes a special infrared-reflective shroud (224) concentrically encircling the incandescent lamp, for reflecting infrared light back toward the lamp filament (s) while transmitting visible light to a concave reflector for incorporation into the projected beam. The infrared-reflective coating is deposited onto the shroud's inner surface, and it includes a dielectric coating and an underlying transparent conductive coating. The lamp and the shroud are separately mounted relative to the concave reflector and are configured such that the lamp is removable without requiring removal of the shroud. Alternatively, the shroud is mounted directly on the lamp, in which case the lamp/shroud assembly can be installed in, or removed from, the fixture as a unit.
    • 公开了一种白炽灯和白炽照明系统,用于以显着改善的能量效率投射光束。 白炽灯(220)包括一对反射陶瓷灯丝支撑件,用于将一根或多根细丝支撑在外壳(222)内的规定位置,同时反射基本上所有可见光和红外光以合并到投射光束中或用于吸收 通过灯丝。 白炽照明系统包括同心地围绕白炽灯的特殊红外线反射罩(224),用于将可见光透射到灯丝,同时将可见光传输到凹入的反射器,以结合到投射光束中。 红外反射涂层沉积在护罩的内表面上,并且其包括介电涂层和下面的透明导电涂层。 灯和护罩相对于凹面反射器分别安装,并且被构造成使得灯可拆卸而不需要去除护罩。 或者,护罩直接安装在灯上,在这种情况下,灯/护罩组件可以作为一个单元安装在固定装置中或从装置中移除。
    • 4. 发明申请
    • SYSTEM COMPRISING AN INFRARED RADIATION SOURCE AND AN INFRARED RADIATION SENSOR
    • 包含红外辐射源和红外辐射传感器的系统
    • WO2008139363A3
    • 2009-04-30
    • PCT/IB2008051746
    • 2008-05-06
    • PHILIPS INTELLECTUAL PROPERTYKONINKL PHILIPS ELECTRONICS NVHENNINGER GEORGTHOENNESSEN BRUNO
    • HENNINGER GEORGTHOENNESSEN BRUNO
    • H01K1/32H01J61/35H01K1/26
    • H01K1/32H01J61/35H01K1/26
    • A system comprising an infrared radiation source, an infrared radiation sensor and means for generating and processing optical infrared signals, wherein the infrared radiation source is an electric lamp comprising a pass-band interference filter coating arranged on its inner or outer surface, which integrated pass-band interference filter coating, that is transmissive to infrared radiation in a wavelength range from 800 nm to 1200 nm, is useful for a wide variety of applications in detection, authentification, identification or remote control of objects, and is excellently suited for object detection under rough industrial conditions. Such a system provides a narrowband infrared signal in a specific frequency band that, in combination with a suitable sensor, reduces eavesdropping and is not sensitive to light sources, such as the sun and artificial light sources, that emit radiation in the visible and IR range of the electromagnetic spectrum.
    • 一种包括红外辐射源,红外辐射传感器和用于产生和处理光学红外信号的装置的系统,其中红外辐射源是包括布置在其内表面或外表面上的通带干涉滤光器涂层的电灯, 对于波长范围为800 nm至1200 nm的红外辐射透射波段干涉滤光片涂层,可用于检测,鉴定,识别或远程控制物体的各种应用,非常适用于物体检测 在恶劣的工业条件下。 这样的系统在特定频带中提供窄带红外信号,其与合适的传感器组合减少窃听并且对于在可见光和IR范围内发射辐射的光源(例如太阳和人造光源)不敏感, 的电磁频谱。
    • 9. 发明申请
    • IMPROVED DAYLIGHT LAMP
    • 改进的夜灯
    • WO0197244A3
    • 2002-08-08
    • PCT/US0118295
    • 2001-06-06
    • TAILORED LIGHTING INC
    • MCGUIRE KEVIN P
    • F21V9/02H01J20060101H01J5/16H01K1/32
    • F21V9/02H01K1/32
    • An integral lamp (84) for producing a spectral light distribution substantially identical in uniformity to the spectral light distribution of a desired daylight with a color temperature of from about 3250 to about 10,000 degrees Kelvin throughout the entire visible light spectrum from about 380 to about 780 nanometers. The lamp includes a coating on at least one of its surfaces having a transmittance level in substantial accordance with the formula D(L)=[O(L)-F(L)xS(L)]/[S(L)x{1-F(L)}], wherein: O(L) is the desired daylight spectral output, D(L) is the spectral transmission of the coating, S(L) is the spectral output of the source, and F(L) is the likelihood of the reflected wavelength of light missing the element, and F(L) defined by the equation F(L)=[-1.7333x10-4 - 9.3333x10-7K][L4xR]1 + [-4.7708x10-1 + 2.3167x10-5K[L4xR]2, wherein: L is wavelength in nanometers, R is a constant equal to 5595581692912, and K is the desired daylight color temperature in degrees Kelvin.
    • 一种积分灯(84),用于在整个可见光光谱范围内从约380至约780℃产生基本上与所需日光的光谱光分布基本相同的光谱分布,色温为约3250至约10,000开氏度 纳米。 该灯在至少一个表面上具有基本上符合公式D(L)= [O(L)-F(L)xS(L)] / [S(L)x { 1-F(L)}],其中:O(L)是所需的日光光谱输出,D(L)是涂层的光谱透射,S(L)是光源的光谱输出,F(L )是光的反射波长缺失元素的可能性,F(L)= F(L)= [ - 1.7333×10-4-9.3333×10-7K] [L4xR] 1 + [-4.7708x10- 1 + 2.3167×10-5K [L4xR] 2,其中:L是以纳米为单位的波长,R是等于5595581692912的常数,K是以开尔文为单位的期望的日光色温。