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    • 1. 发明公开
    • Fiber optic lighting device
    • 光纤照明设备
    • EP0542427A3
    • 1993-09-22
    • EP92309367.8
    • 1992-10-14
    • Churchill, David L.
    • Churchill, David L.
    • F21V8/00F21V29/00F21V9/00G02B5/16
    • F21V9/00G02B6/0006
    • A fiber optic lighting device for providing a light source against and into one end of a fiber optic bundle is provided. The device includes a long-life arc lamp (14) which is operably connected within a tubular heat sink (12). At least one rigid transparent elongated, preferably cylindrical member (22) having ground and polished ends is connected within a mating opening (24) in the heat sink (12) facing the arc lamp (14), light emitting from the arc lamp (14) passing through the transparent member (22). The inner polished end of the transparent member includes a dielectric layer (40) applied thereto which is selected to filter and reflect back into the heat sink (12) at least some of the infrared components of the light emitting from the arc lamp. Most if not all, of the ultraviolet component is filtered out by the transparent member (22). The light emitting from the outer end of the transparent member (22) is thus absent both ultraviolet and infrared components for further transmission through the fiber optic bundle. An opaque enclosure (20), a fan (32) for enhanced heat dissipation and additional light-containing and modifying elements are also provided.
    • 提供了一种用于向光纤束的一端提供光源的光纤照明装置。 该装置包括长寿命弧光灯(14),其可操作地连接在管状散热器(12)内。 至少一个具有研磨和抛光端的刚性透明细长优选圆柱形构件(22)连接在面对弧光灯(14)的散热器(12)中的配合开口(24)内,从弧光灯(14)发出的光 )通过透明构件(22)。 透明构件的内抛光端包括施加到其上的电介质层(40),其被选择为从弧光灯发射的光的至少一些红外分量过滤并反射回散热器(12)。 大部分(如果不是全部)紫外线成分被透明构件(22)滤出。 因此,从透明构件(22)的外端发射的光不存在用于通过光纤束进一步透射的紫外线和红外分量。 还提供了不透明的外壳(20),用于增强散热的附加的光和修改元件的风扇(32)。
    • 2. 发明公开
    • Fiber optic lighting device
    • Beleuchtungsvorrichtung zum Ausleuchten durch optische Fasern。
    • EP0542427A2
    • 1993-05-19
    • EP92309367.8
    • 1992-10-14
    • Churchill, David L.
    • Churchill, David L.
    • F21V8/00F21V29/00F21V9/00G02B5/16
    • F21V9/00G02B6/0006
    • A fiber optic lighting device for providing a light source against and into one end of a fiber optic bundle is provided. The device includes a long-life arc lamp (14) which is operably connected within a tubular heat sink (12). At least one rigid transparent elongated, preferably cylindrical member (22) having ground and polished ends is connected within a mating opening (24) in the heat sink (12) facing the arc lamp (14), light emitting from the arc lamp (14) passing through the transparent member (22). The inner polished end of the transparent member includes a dielectric layer (40) applied thereto which is selected to filter and reflect back into the heat sink (12) at least some of the infrared components of the light emitting from the arc lamp. Most if not all, of the ultraviolet component is filtered out by the transparent member (22). The light emitting from the outer end of the transparent member (22) is thus absent both ultraviolet and infrared components for further transmission through the fiber optic bundle. An opaque enclosure (20), a fan (32) for enhanced heat dissipation and additional light-containing and modifying elements are also provided.
    • 提供了一种用于向光纤束的一端提供光源的光纤照明装置。 该装置包括长寿命弧光灯(14),其可操作地连接在管状散热器(12)内。 至少一个具有研磨和抛光端的刚性透明细长优选圆柱形构件(22)连接在面对弧光灯(14)的散热器(12)中的配合开口(24)内,从弧光灯(14)发出的光 )通过透明构件(22)。 透明构件的内抛光端包括施加到其上的电介质层(40),其被选择为从弧光灯发射的光的至少一些红外分量过滤并反射回散热器(12)。 大部分(如果不是全部)紫外线成分被透明构件(22)滤出。 因此,从透明构件(22)的外端发射的光不存在用于通过光纤束进一步透射的紫外线和红外分量。 还提供了不透明的外壳(20),用于增强散热的附加的光和修改元件的风扇(32)。
    • 3. 发明申请
    • MAGNETO-INDUCTIVE ENERGY HARVESTING
    • 磁感应能量收集
    • WO2012129350A2
    • 2012-09-27
    • PCT/US2012/030016
    • 2012-03-21
    • MICROSTRAIN, INC.LEAMON, Thomas, MooreFRIED, Max, B.CHURCHILL, David, L.
    • LEAMON, Thomas, MooreFRIED, Max, B.CHURCHILL, David, L.
    • H02K47/08
    • H02K35/04F03G7/08
    • A device for harvesting energy from a vibrating substrate includes a base, a parallelogram of stacked beams, an end connector, a first coil of wire, and a first permanent magnet. The base is for mounting to the substrate for receiving vibrational energy derived from the substrate. Each beam of the parallelogram of stacked beams has a first end and a second end. The first end is stationary with respect to the base and connected to receive vibrational energy from the base so the second end can vibrate. The second ends are connected to the end connector. The first permanent magnet is stationary with respect to the base. The first coil of wire is mounted to vibrate with the parallelogram of stacked beams. The first coil of wire extends around the first permanent magnet. When the parallelogram of stacked beams vibrates, the first coil of wire vibrates with respect to the first permanent magnet and a first current is induced in the first coil of wire.
    • 用于从振动基板收获能量的装置包括基座,堆叠梁的平行四边形,端部连接器,第一线圈和第一永磁体。 基座用于安装到基板以接收从基板获得的振动能。 堆叠梁的平行四边形的每个梁具有第一端和第二端。 第一端相对于基座是静止的并被连接以从基座接收振动能量,从而第二端可以振动。 第二端连接到端连接器。 第一永磁体相对于基座是静止的。 电线的第一线圈安装成与堆叠梁的平行四边形振动。 第一线圈绕第一永久磁铁延伸。 当堆叠梁的平行四边形振动时,第一线圈相对于第一永磁体振动,并且在第一线圈中感应出第一电流。
    • 4. 发明申请
    • MAGNETO-INDUCTIVE ENERGY HARVESTING
    • 磁电感应能量收集
    • WO2012129350A3
    • 2012-11-29
    • PCT/US2012030016
    • 2012-03-21
    • MICROSTRAIN INCLEAMON THOMAS MOOREFRIED MAX BCHURCHILL DAVID L
    • LEAMON THOMAS MOOREFRIED MAX BCHURCHILL DAVID L
    • H02K47/08
    • H02K35/04F03G7/08
    • A device for harvesting energy from a vibrating substrate includes a base, a parallelogram of stacked beams, an end connector, a first coil of wire, and a first permanent magnet. The base is for mounting to the substrate for receiving vibrational energy derived from the substrate. Each beam of the parallelogram of stacked beams has a first end and a second end. The first end is stationary with respect to the base and connected to receive vibrational energy from the base so the second end can vibrate. The second ends are connected to the end connector. The first permanent magnet is stationary with respect to the base. The first coil of wire is mounted to vibrate with the parallelogram of stacked beams. The first coil of wire extends around the first permanent magnet. When the parallelogram of stacked beams vibrates, the first coil of wire vibrates with respect to the first permanent magnet and a first current is induced in the first coil of wire.
    • 一种用于从振动基板收集能量的装置,包括基座,堆叠梁的平行四边形,端部连接器,第一线圈以及第一永磁体。 基座用于安装至基板以接收来自基板的振动能量。 堆叠梁的平行四边形的每个梁具有第一端和第二端。 第一端相对于基座静止并连接以接收来自基座的振动能量,因此第二端可以振动。 第二端连接到端部连接器。 第一个永磁体相对于基座是静止的。 第一个线圈线圈安装成与平行四边形堆叠梁振动。 第一线圈绕第一永磁体延伸。 当堆叠梁的平行四边形振动时,第一线圈线圈相对于第一永磁体振动,并且在第一线圈线圈中感应出第一电流。
    • 6. 发明专利
    • FIBER OPTIC LIGHTING DEVICE
    • CA2079304C
    • 1996-02-06
    • CA2079304
    • 1992-09-28
    • CHURCHILL DAVID L
    • CHURCHILL DAVID L
    • F21V8/00F21V9/00
    • A fiber optic lighting device for providing a light source against and into one end of a fiber optic bundle for use. The device includes a long-life arc lamp which is operably connected within a tubular heat sink. At least one rigid transparent elongated, preferably cylindrical member having ground and polished ends is connected within a mating opening in the heat sink facing the arc lamp, light emitting from the arc lamp passing through the transparent member. The inner polished end of the transparent member includes a dielectric layer appliedthereto which is selected to filter and reflect back into the heat sink at leastsome of the infrared components of the light emitting from the arc lamp. Most, if not all, of the ultraviolet component is filtered out by the transparent member. The light emitting from the outer end of the transparent member is thus absent both ultraviolet and infrared components for further transmission through the fiber optic bundle. An opaque enclosure, a fan for enhanced heat dissipation and additional light-containing and modifying elements are also provided.
    • 7. 发明专利
    • FIBER OPTIC LIGHTING DEVICE
    • CA2079304A1
    • 1993-04-17
    • CA2079304
    • 1992-09-28
    • CHURCHILL DAVID L
    • CHURCHILL DAVID L
    • F21V8/00F21V9/00
    • A fiber optic lighting device for providing a light source against and into one end of a fiber optic bundle is provided. The device includes a long-life arc lamp (14) which is operably connected within a tubular heat sink (12). At least one rigid transparent elongated, preferably cylindrical member (22) having ground and polished ends is connected within a mating opening (24) in the heat sink (12) facing the arc lamp (14), light emitting from the arc lamp (14) passing through the transparent member (22). The inner polished end of the transparent member includes a dielectric layer (40) applied thereto which is selected to filter and reflect back into the heat sink (12) at least some of the infrared components of the light emitting from the arc lamp. Most if not all, of the ultraviolet component is filtered out by the transparent member (22). The light emitting from the outer end of the transparent member (22) is thus absent both ultraviolet and infrared components for further transmission through the fiber optic bundle. An opaque enclosure (20), a fan (32) for enhanced heat dissipation and additional light-containing and modifying elements are also provided.