METHOD AND APPARATUS FOR SUBTENDING LIGHT DOWNWARDLY
A lighting system may include a reflector having at least one surface forming an interior. The reflector may have a forward opening and a rearward opening. The lighting system may further include an LED positioned at the rearward opening to direct light through the interior of the reflector. The lighting system may further include a lens positioned within the reflector, wherein the lens is formed of a segment of a toroid.
1 . A lighting system, comprising:
a reflector having at least one surface forming an interior, the reflector having a forward opening and a rearward opening;
a light source configured at the rearward opening to emit light through the interior of the reflector; and
a lens configured at the rearward opening, wherein the lens is formed of a segment of a toroid.
2 . The lighting system of claim 1 , wherein the light source is an LED light source.
3 . The lighting system of claim 1 , wherein the lens has a particular cross-sectional shape configured to subtend at least a portion of the emitted light so that a principal optical axis of the lens is inclined with respect to an axis of symmetry of the light source.
4 . The lighting system of claim 1 , wherein the lens is formed by one or more of a toroidal surface, a cylindrical surface, and a planar surface.
5 . The lighting system of claim 4 , wherein the lens is formed by a toroidal surface, a cylindrical surface, and a planar surface.
6 . The lighting system of claim 1 , wherein the at least one surface of the reflector includes first, second, third, fourth, and fifth surfaces forming the interior, and wherein light emitted by the light source is subtended by one or more of the first, second, third, fourth, and fifth surfaces and the lens.
7 . The lighting system of claim 1 , wherein the lighting system includes a housing, the reflector coupled to the housing, a frame element coupled to the reflector, and a media extending over the reflector, wherein the media exerts a force on the frame element, and wherein the frame element moves with respect to the reflector in response to the force.
8 . A lighting system, comprising:
a reflector having first, second, third, fourth, and fifth surfaces forming an interior, the reflector having a forward opening and a rearward opening;
a light source configured at the rearward opening to emit light through the interior of the reflector; and
a lens configured at the rearward opening, wherein light emitted by the light source is subtended by one or more of the first, second, third, fourth, and fifth surfaces and the lens.
9 . The lighting system of claim 8 , wherein at least one of the first, second, third, fourth, and fifth surfaces extend from the forward opening to the rearward opening.
10 . The lighting system of claim 9 , wherein the second, third, and fourth surfaces extend from the forward opening to the rearward opening.
11 . The lighting system of claim 9 , wherein the first surface extends less than the distance from the forward opening to the rearward opening, and the fifth surface extends the remainder of the distance.
12 . The lighting system of claim 8 , wherein the first and second surfaces are configured oppositely, and wherein the first and second surfaces are formed by a parabola projected along a distance to form a parabolic trough having a principal focal axis extending along the distance, and a plane of symmetry extending between the first and second surfaces.
13 . The lighting system of claim 12 , wherein the plane of symmetry is inclined with respect to an axis of symmetry of the light source.
14 . The lighting system of claim 12 , wherein the principal focal axis is offset with respect to an axis of symmetry of the light source.
15 . The lighting system of claim 8 , wherein the third fourth and fifth surfaces are each formed by one or more of a flat surface, a concave surface, and a convex surface.
16 . The lighting system of claim 8 , wherein the third and fourth surfaces are angled with respect to each other.
17 . The lighting system of claim 16 , wherein the third and fourth surfaces are configured oppositely of a plane of symmetry extending between the third and fourth surfaces.
18 . The lighting system of claim 17 , wherein the plane of symmetry is inclined with respect to an axis of symmetry of the light source.
19 . The lighting system of claim 8 , wherein the lens is formed of a segment of a toroid.
20 . The lighting system of claim 8 , wherein the lighting system includes a housing, the reflector coupled to the housing, a frame element coupled to the reflector, and a media extending over the reflector, wherein the media exerts a force on the frame element, and wherein the frame element moves with respect to the reflector in response to the force.
21 . A lighting system, comprising:
a housing;
a reflector coupled to the housing;
a frame element coupled to the reflector; and
a media extending over the reflector, wherein the media exerts a force on the frame element, and wherein the frame element moves with respect to the reflector in response to the force.
22 . The lighting system of claim 21 , wherein the reflector has at least one surface forming an interior, the reflector having a forward opening and a rearward opening, the lighting system further including a light source configured at the rearward opening to emit light through the interior of the reflector, and a lens configured at the rearward opening, wherein the lens is formed of a segment of a toroid.
23 . The lighting system of claim 21 , wherein the reflector has first, second, third, fourth, and fifth surfaces forming an interior, the reflector having a forward opening and a rearward opening, the lighting system further including a light source configured at the rearward opening to emit light through the interior of the reflector, and a lens configured at the rearward opening, wherein light emitted by the light source is subtended by one or more of the first, second, third, fourth, and fifth surfaces and the lens.