Adjustable light shaping visor
11466842 · 2022-10-11
Assignee
Inventors
Cpc classification
F21V17/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V11/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V7/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V9/40
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21W2131/105
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V7/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V17/002
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21V17/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V7/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V7/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A light shaping apparatus consisting of two or more components which may be die cast from aluminum, magnesium, or similar materials that are meant to be attached to existing LED venue lighting fixtures. These components are designed so that they can be rotated and adjusted on the fixture circumference/edge. A semi-circular snoot flares out slightly from the outer edge of the fixture to reflect light that would normally be absorbed by a visor. The snoot may include a reflector on its inside surface. The snoot has connection points that mate with the fixture. The snoot also has connection points which allow it to be connected to a semi-circular bowl spaded brow adapted for cutting into the beam of light and block some of light emitted from the fixture. The brow is preferably one piece and has multiple sets of thin shear lines cast into it such that the length of the brow can be modified by breaking off material along the shear lines.
Claims
1. A light shaping visor for removable attachment to an LED venue lighting fixture having an outer circumference which is at least partially round and a plurality of mounting points spaced about said outer circumference, the visor comprising: a snoot adapted for removable attachment to the outer circumference, said snoot comprising a plurality of attachment points configured to mate with at least some of said mounting points; said snoot extending at least partially around the outer circumference; said mounting points and said attachment points being spaced such that said snoot is radially repositionable around the outer circumference at discrete angles where at least some of said mounting points and some of said attachment points align.
2. The visor of claim 1 further including a brow affixed to said snoot.
3. The visor of claim 2 wherein the snoot extends entirely around the outer circumference.
4. The visor of claim 3 wherein the snoot is adapted for attachment around the outer circumference at multiple positions.
5. The visor of claim 3 wherein the snoot is adapted for attachment approximately half-way around the outer circumference.
6. The visor of claim 5 including a second snoot adapted for attachment approximately around the remainder of the outer circumference.
7. The visor of claim 2 wherein the brow includes: a first thickness of said brow; a second thickness of said brow, smaller then said first thickness, to form an indention along at least one shear line, said indention extending continuously from a first side of said brow to a second side of said brow opposite said first side.
8. The visor of claim 7 wherein a portion of the brow is configured to be removed along said at least one shear line.
9. The visor of claim 7 wherein the brow includes multiple shear lines, the brow having said second thickness along each of said multiple shear lines.
10. The visor of claim 2 wherein said brow includes an inside surface and a reflector is attached to said inside surface.
11. The visor of claim 10 wherein said reflector includes an inside surface coated with a light modifying material.
12. The visor of claim 1 wherein the snoot includes an inside surface coated with a reflective material.
13. The visor of claim 1 wherein said snoot includes an inside surface coated with a light modifying material.
14. The visor of claim 1 wherein said snoot includes an inside surface coated with a light absorbing material.
15. The visor of claim 1 wherein said snoot includes an inside surface and a reflector is attached to said inside surface.
16. The visor of claim 15 wherein said reflector includes an inside surface coated with a light modifying material.
17. The visor of claim 16 wherein said light modifying material is highly reflective.
18. The visor of claim 16 wherein said light modifying material absorbs light.
19. The visor of claim 16 wherein said reflector includes an inside surface having a smooth texture.
20. The visor of claim 16 wherein said reflector includes an inside surface having a pebbled texture.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(12) The embodiments herein and the various features and advantageous details thereof are explained more fully with reference to the non-limiting embodiments that are illustrated in the accompanying drawings and detailed in the following description. Descriptions of well-known components and processes and manufacturing techniques are omitted so as to not unnecessarily obscure the embodiments herein. The examples used herein are intended merely to facilitate an understanding of ways in which the invention herein may be practiced and to further enable those of skill in the art to practice the embodiments herein. Accordingly, the examples should not be construed as limiting the scope of the claimed invention. It is to be understood that the phraseology and terminology employed herein is for the purpose of description and not of limitation.
(13) Referring now to the drawings, wherein like reference numerals indicate the same parts throughout the several views, a representative LED lighting fixture 100 is shown in
(14) Referring now to the next drawing, the snoot 200 in
(15) Referring now to the next drawing, the brow 300 in
(16) The brow 300 could have one or more shear lines 314 and 316 that are areas that run radially around the open end of the brow 300. It should be understood that brow 300 could have other shear lines in addition to 314 and 316, or only one shear line, as desired. These shear lines 314 and 316 are where the die casting would leave the cast material very thin, possibly less than 1 mm thick, and easy to break or shear. The multiple shear lines 314 and 316 would be from near the open edge to near the fixture edge of the brow 300. The removal of brow material along the shear lines 314 and 316 could be accomplished by shear, or saw, or any one of many different methods. Note the raised logo 318 that has been die cast into the brow 300. This allows branding 318 without the additional expense of labels or pad printing.
(17) Referring now to the next drawing, the brow 300 in
(18) Referring now to the next drawing, the brow 300 in
(19) Referring now to
(20) Referring now to the next drawing, the fixture 100, snoot 200, and brow 300 in
(21) Referring now to the next drawing, the fixture 100, snoot 200, and brow 300 in
(22) Referring now to the next drawing, the fixture 100, snoot 200, and brow 300 in
(23) Referring now to the next drawing, two snoots 200 and 201 are mounted to the fixture 100 in
(24) Referring now to the final drawing, the snoot 200 is shown in
(25) In one embodiment, snoot 200 includes an inside surface 1100 coated with a light modifying material. Alternatively, snoot 200 may include an inside surface 1100 coated with a light absorbing material. In an alternate embodiment, reflector 1102 may include an inside surface coated with a light modifying material. This light modifying material may be highly reflective, moderately reflective, or light absorbing. Inside surface 1102 may be highly polished aluminum for maximum reflectivity or may be a material painted with light absorbing (black) paint or may be painted any suitable color, such as silver, white, gray, or black, without limitation.
(26) Reflector 1102 may include an inside surface having a smooth texture. Alternatively, reflector 1102 may include an inside surface having a pebbled texture. Such a pebbled texture may be suitable for breaking up spectral rays of light emitted from the LED module/fixture.
(27) Also, in another embodiment, brow 300 may include an inside surface 316 such that a reflector is attached to inside surface 316. The reflector may be configured to cover all or only a portion of the inside surface 316 of brow 300. Inside surface 316 of reflector 300 may be coated with a light modifying material. The brow reflector may be polished, painted, or coated in the same manner as described above in relation to the snoot reflector.
(28) Thus, the present invention is well adapted to carry out the objects and attain the ends and advantages mentioned above as well as those inherent therein. While presently preferred embodiments have been described for purposes of this disclosure, numerous changes and modifications will be apparent to those skilled in the art. Such changes and modifications are encompassed within the scope and spirit of this invention.
(29) It is to be understood that the terms “including”, “comprising”, “consisting” and grammatical variants thereof do not preclude the addition of one or more components, features, steps, or integers or groups thereof and that the terms are to be construed as specifying components, features, steps or integers.
(30) If the specification or claims refer to “an additional” element, that does not preclude there being more than one of the additional element.
(31) It is to be understood that where the claims or specification refer to “a” or “an” element, such reference is not be construed that there is only one of that element.
(32) It is to be understood that where the specification states that a component, feature, structure, or characteristic “may”, “might”, “can” or “could” be included, that particular component, feature, structure, or characteristic is not required to be included.
(33) Where applicable, although state diagrams, flow diagrams or both may be used to describe embodiments, the invention is not limited to those diagrams or to the corresponding descriptions. For example, flow need not move through each illustrated box or state, or in exactly the same order as illustrated and described.
(34) Methods of the present invention may be implemented by performing or completing manually, automatically, or a combination thereof, selected steps or tasks.
(35) The term “method” may refer to manners, means, techniques and procedures for accomplishing a given task including, but not limited to, those manners, means, techniques and procedures either known to, or readily developed from known manners, means, techniques and procedures by practitioners of the art to which the invention belongs.
(36) The term “at least” followed by a number is used herein to denote the start of a range beginning with that number (which may be a ranger having an upper limit or no upper limit, depending on the variable being defined). For example, “at least 1” means 1 or more than 1. The term “at most” followed by a number is used herein to denote the end of a range ending with that number (which may be a range having 1 or 0 as its lower limit, or a range having no lower limit, depending upon the variable being defined). For example, “at most 4” means 4 or less than 4, and “at most 40%” means 40% or less than 40%. Terms of approximation (e.g., “about”, “substantially”, “approximately”, etc.) should be interpreted according to their ordinary and customary meanings as used in the associated art unless indicated otherwise. Absent a specific definition and absent ordinary and customary usage in the associated art, such terms should be interpreted to be ±10% of the base value.
(37) When, in this document, a range is given as “(a first number) to (a second number)” or “(a first number)−(a second number)”, this means a range whose lower limit is the first number and whose upper limit is the second number. For example, 25 to 100 should be interpreted to mean a range whose lower limit is 25 and whose upper limit is 100. Additionally, it should be noted that where a range is given, every possible subrange or interval within that range is also specifically intended unless the context indicates to the contrary. For example, if the specification indicates a range of 25 to 100 such range is also intended to include subranges such as 26-100, 27-100, etc., 25-99, 25-98, etc., as well as any other possible combination of lower and upper values within the stated range, e.g., 33-47, 60-97, 41-45, 28-96, etc. Note that integer range values have been used in this paragraph for purposes of illustration only and decimal and fractional values (e.g., 46.7-91.3) should also be understood to be intended as possible subrange endpoints unless specifically excluded.
(38) It should be noted that where reference is made herein to a method comprising two or more defined steps, the defined steps can be carried out in any order or simultaneously (except where context excludes that possibility), and the method can also include one or more other steps which are carried out before any of the defined steps, between two of the defined steps, or after all of the defined steps (except where context excludes that possibility).
(39) Thus, the present invention is well adapted to carry out the objects and attain the ends and advantages mentioned above as well as those inherent therein. While presently preferred embodiments have been described for purposes of this disclosure, numerous changes and modifications will be apparent to those skilled in the art. Such changes and modifications are encompassed within the spirit of this invention as defined by the appended claims.