Optical focusing system
DCFirst Claim
1. A portable light capable of collimating substantially all of the available light being emitted by a light source along a projecting axis, said portable light comprising:
- a protective encasement;
an optical focusing system housed in said protective encasement, said system comprising;
a parabolic reflector which partially surrounds the light source in a manner permitting the light source to be located at the optical focus point of said parabolic reflector,a fresnel lens, situated opposite the vertex of said parabolic reflector with respect to the light source, said fresnel lens sharing a common focus point with said parabolic reflector and being oriented to cooperate with said parabolic reflector for the collimation of light emitted at said common focus point along the projecting axis, andmeans for intercepting light emitted at said common focus point which would otherwise pass between said parabolic reflector and the outer periphery of said fresnel lens and for reflecting the intercepted light back generally toward said common focus point;
a portable power source which causes the emission of light from the light source; and
means for selectively connecting and disconnecting said power source and the light source.
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Accused Products
Abstract
An improved optical focusing system is provided which includes a parabolic reflector and a fresnel lens situated with respect to one another to share a common focus point. The improved system is designed to collimate substantially all of the available light emitted from a light source located at the common focus point and project the light along a projecting axis. Depending on the limitations placed upon the size of the parabolic reflector, a retroreflector situated about the periphery of the fresnel lens can be added to the system to maximize the amount of emitted light which the system can process and collimate.
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Citations
40 Claims
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1. A portable light capable of collimating substantially all of the available light being emitted by a light source along a projecting axis, said portable light comprising:
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a protective encasement; an optical focusing system housed in said protective encasement, said system comprising; a parabolic reflector which partially surrounds the light source in a manner permitting the light source to be located at the optical focus point of said parabolic reflector, a fresnel lens, situated opposite the vertex of said parabolic reflector with respect to the light source, said fresnel lens sharing a common focus point with said parabolic reflector and being oriented to cooperate with said parabolic reflector for the collimation of light emitted at said common focus point along the projecting axis, and means for intercepting light emitted at said common focus point which would otherwise pass between said parabolic reflector and the outer periphery of said fresnel lens and for reflecting the intercepted light back generally toward said common focus point; a portable power source which causes the emission of light from the light source; and means for selectively connecting and disconnecting said power source and the light source. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8)
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9. An optical focusing system capable of collimating substantially all of the available light being emitted generally from a single point for projection along a projecting axis, said system comprising:
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a parabolic reflector; means for emitting light at the focus of said parabolic reflector; a fresnel lens, situated opposite the vertex of said parabolic reflector with respect to said emitting means, said fresnel lens sharing a common focus point with said parabolic reflector and being oriented to cooperate with said parabolic reflector for the collimation of light emitted at said common focus point along the projecting axis; and means for intercepting light emitted at said common focus point which would otherwise pass between said parabolic reflector and the outer periphery of said fresnel lens and for reflecting the intercepted light back generally toward said common focus point. - View Dependent Claims (10, 11, 12, 13, 14, 15)
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16. An illumination apparatus capable of collimating substantially all of the available light being emitted by a light source along a projecting axis, said apparatus comprising:
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a protective encasement; an optical focusing system housed in said protective encasement, said system comprising; a parabolic reflector which partially surrounds the light source in a manner permitting the light source to be located at the focus point of said parabolic reflector, such that light emitted by the light source and impinging directly on the reflector is collimated along the projecting axis, and a fresnel lens, situated opposite the vertex of said parabolic reflector with respect to the light source, said fresnel lens sharing a common focus point with said parabolic reflector such that light emitted by the light source and impinging directly on the lens is collimated along the projecting axis; and a power source which can be selectively connected to the light source. - View Dependent Claims (17, 18, 19, 20, 21, 22, 23, 24, 25)
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26. An optical focusing system capable of collimating substantially all of the available light being emitted generally from a single point for projection along a projecting axis, said system comprising:
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a parabolic reflector; means for emitting light at the focus of said parabolic reflector, such that light impinging directly on the reflector is collimated along the projecting axis; and a fresnel lens, situated opposite the vertex of said parabolic reflector with respect to said emitting means, said fresnel lens sharing a common focus point with said parabolic reflector such that light impinging directly on the lens is collimted along the projecting axis. - View Dependent Claims (27, 28, 29, 30, 31, 32, 33)
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34. A portable light capable of collimating substantially all of the available light being emitted by a light source along a projecting axis, said portable light comprising:
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a protective encasement; an optical focusing system housed in said protective encasement, said system comprising; a parabolic reflector which partially surrounds the light source in a manner permitting the light source to be located at the optical focus point of said parabolic reflector, said parabolic reflector including an aperture centered at its vertex through which the light source extends, a fresnel lens, situated opposite the vertex of said parabolic reflector with respect to the light source, said fresnel lens sharing a common focus point with said parabolic reflector and being oriented to cooperate with said parabolic reflector for collimation of light emitted at said common focus point along the projecting axis, and means for intercepting light emitted at said common focus point which would otherwise pass between said parabolic reflector and the outer periphery of said fresnel lens and for reflecting the intercepted light back generally toward said common focus point, said intercepting means including an inwardly facing reflective surface with a curvature approximately that of a portion of a sphere and having its focus either co-located with or situated very near said common focus point; a support base which extends through the vertex of said parabolic reflector to support the light source at said common focus point, said support base including a non-reflective, truncated cone with the base of said cone having a major diameter equal to a major diameter of said intercepting means and the imaginary top point of said cone being generally co-located with said common focus point; means for moving the light source along the principal axis of said parabolic reflector between said fresnel lens and said parabolic reflector; a portable power source which causes the emission of light from the light source; and means for selectively connecting and disconnecting said power source and the light source.
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35. A method of collimating substantially all the available forwardly and rearwardly projecting light being emitted from a light source along a single projecting axis, the steps comprising:
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collimating substantially all the forwardly projecting light along the projecting axis by refracting it through a fresnel lens; and collimating substantially all the available rearwardly projecting light along the same projecting axis by reflecting it from a parabolic reflector. - View Dependent Claims (36)
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37. A method of selectively illuminating an area adjacent a light source, the steps comprising:
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situating a fresnel lens with respect to a parabolic reflector so that said fresnel lens and said parabolic reflector share a common focus point and a common projecting axis which generally follows the principal axis of said parabolic reflector; interposing the light source between said fresnel lens and said parabolic reflector; causing the light source to be positioned at said common focus point when a substantially collimated beam of light is desired; and moving the light source away from said common focus point when an uncollimated beam of light is desired. - View Dependent Claims (38, 39)
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40. A method of collimating substantially all the available light rays being emitted by a light source situated at a common focus point between a parabolic reflector and a fresnel lens, the steps comprising:
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providing a light absorption zone about a base of the light source which does not reflect light impinging upon it; collimating forwardly projecting light from the light source through the fresnel lens along a projecting axis; retroreflecting light which narrowly misses being refracted through the fresnel lens back toward the light source; and collimating the remainder of all available light rays, including light being retroreflected as well as light directly emitting from the light source, along said projecting axis by reflecting that light from the parabolic reflector which surrounds said light absorption zone so that the light refracted through the fresnel lens and the light reflected by the parabolic reflector unifies to form a single, high intensity beam.
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Specification