Open channel LED light fixture for indirect lighting
10928019 ยท 2021-02-23
Assignee
Inventors
- Arlan R. Santos (Milpitas, CA, US)
- David Daoud Aziz (Pleasanton, CA, US)
- Johannes Dale Toale (San Jose, CA, US)
- My Tien Nguyen (Redwood City, CA, US)
- Aaron Matthew Smith (Fremont, CA, US)
Cpc classification
F21V5/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2103/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2107/90
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V7/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V7/0016
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2115/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V5/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2103/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V7/0008
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S4/28
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21S4/28
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V7/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V5/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An LED light fixture is disclosed with an elongated housing that forms a open lower light channel and an upper light channel that is juxtaposed to the open lower light channel with electronics cavity or conduit positioned there between. The open lower light channel includes elongated LED light engines positioned on support edges or structures for emitting indicted and reflected light out from the open lower light channel and the upper light channel includes an elongated LED light engine for emitting light therefrom. The LED light fixture preferably has an elongated reflective insert that extends through the open lower light channel and creates a reflection channel from which the indirect and reflected light is emitted.
Claims
1. A light fixture comprising: a) a housing with a lower light channel with an open bottom; b) opposed support edges or structures positioned near bottom edges of open bottom; c) LED light engines positioned on the support edges or structures positioned near the bottom edges of the open bottom, wherein light emitted from the LED light engines into the lower light channel is reflected out through the open bottom; d) an upper light channel juxtaposed to the lower light channel; and e) a light engine positioned on a top surface and within the upper light channel for emitting light therefrom; and f) an electronics cavity or conduit positioned between the lower light channel and the upper light channel for holding an LED driver.
2. The light fixture of claim 1, wherein the light engine that is positioned on the top surface and within the upper light channel includes sets of linear arrays of LEDs.
3. The light fixture of claim 1, further comprising a diffusion lens positioned over light emitting surfaces of the LED light engine that is positioned within the upper light channel.
4. The light fixture of claim 1, further comprising a diffusion lens cover that encloses the upper light channel.
5. The light fixture of claim 1 further comprising a reflective insert that extends through the lower light channel and creates a reflection channel within the lower light channel.
6. A light fixture comprising: a) a housing that forms a open lower light channel and an upper light channel that is juxtaposed to the open lower light channel with an electronics cavity or conduit positioned there between; b) LED light engines positioned on support edges or structures within the open lower light channel for emitting indirect and reflected light out from the open lower light channel; and c) a LED light engine positioned within the upper light channel; and d) a bi-modal or asymmetric diffusion lens positioned over light emitting surfaces of the LED light engine positioned within the upper light channel.
7. The light fixture of claim 6, further comprising a reflective insert that extends through the open lower light channel and creates a reflection channel from which the indirect and reflected light is emitted.
8. The light fixture of claim 7, further comprising a diffusion lens positioned over light emitting surfaces of the elongated LED light engine that is positioned within the upper light channel.
9. The light fixture of claim 6, further comprising a diffusion lens cover that encloses the upper light channel.
10. A light fixture comprising: a) a housing that forms a open lower light channel and an upper light channel that is juxtaposed to the open lower light channel; b) LED light engines positioned on support edges or structures within open lower light channel for emitting indirect and reflected light out from the open lower light channel; c) a LED light engine positioned within the upper light channel; d) a reflective insert that extends through the open lower light channel and creates a reflection channel from which the indirect and reflected light is emitted; and f) a bi-modal or asymmetric diffusion lens positioned over light emitting surfaces of the LED light engine positioned within the upper light channel.
11. The light fixture of claim 10, wherein the housing forms an electronics cavity or conduit positioned between the open lower light channel and an upper light channel.
12. The light fixture of claim 11, further comprising a diffusion lens positioned over light emitting surfaces of the LED light engine that is positioned within the upper light channel.
13. The light fixture of claim 10, further comprising a diffusion lens cover that encloses the upper light channel.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
(11) Referring to
(12) The elongated light board include arrays of LEDs 106 and 108 (upper array of LEDs and lower arrays of LEDs) on opposed sides of the elongated LED light board as shown. The individual LEDs 107, 107 and 107 and 109, 109 and 109 within the arrays of LEDs 106 and 108 can be the same or different.
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(16) Near or at bottom portions of the inner walls 302 of the housing 301, and near the open bottom 303 of the lower light channel 315 there are opposed support edges of structure 308 and 308 that extend along the bottom portions of the inner walls 302 of the lower light channel 315 and/or elongated housing 301. The support edges 308 and 308 can have L-shaped cross-sections, be segmented, or continuous along the lower light channel 315 and/or elongated housing 301 and/or be symmetric or asymmetric in width or height.
(17) Positioned on inner top surfaces of the support edges 308 and 308 there are elongated LED light engines 305 and 305 that have light emitting surfaces facing upward for emitting light into the lower light channel 315, as indicated by the arrows 311 and 311. The light emitted 311 and 311 emitted from the elongated LED light engines 305 and 305 is reflected off the inner surfaces 302 of the elongated light channel 315, as indicated by the arrows 313 and 313, and is emitted through the open bottom 303 of the lower light channel 315.
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(19) Near or at bottom inner wall portions 325 and near the open bottom 328 of the lower light channel 340, there are support edges 333 and 333 that extend along the bottom inner wall portions 327 of the lower light channel 340 and/or elongated housing 331.
(20) Positioned on inner top surfaces of the support edges 333 and 333 there are elongated LED light engines 335 and 335 that have light emitting surfaces facing upward for emitting light into the lower light channel 340, as indicated by the arrows 341 and 341. The light emitted 341 and 341 emitted from the elongated LED light engines 335 and 335 is reflected off the inner surfaces 327 of the elongated light channel 340, as indicated by the arrows 343 and 343, and is emitted through the open bottom 328 of the lower light channel 340.
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(22) Near or at bottom inner wall portions 352 and near the open bottom 353 of the lower light channel 365 there are support edges 358 and 358 that extend along the bottom inner wall portions 352 of the lower light channel 365 and/or elongated housing 351.
(23) Positioned on inner top surfaces of the support edges 358 and 358 there are elongated LED light engines 355 and 355 that have light emitting surfaces facing upward for emitting light into the lower light channel 365, as indicated by the arrows 361 and 361. The light emitted 361 and 361 emitted from the elongated LED light engines 355 and 355 is reflected off the inner surfaces 352 of the elongated light channel 365, as indicated by the arrows 363 and 363, and is emitted through the open bottom 353 of the lower light channel 365.
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(25) Near or at top portions of the inner walls 402 of the housing 401, as well as the open top 403 of the upper light channel 415, and at or near bottom portions of the inner walls 402, as well as the open bottom 403, there are support edges 404/404 and 408/408, respectively, that extend along portions of the inner walls 402 and 402 of the upper light channel 415 and the lower light channel 415, respectively.
(26) Positioned on inner top surfaces of the support edges 404/404 and 408/408 there are elongated LED light engines 406/406 and 405/405 having light emitting surfaces facing inward for emitting light into the upper light channel 415 and lower light channel 415. The light emitted from the elongated LED light engines 406/406 and 405/405 is reflected off the inner surfaces 402 and 402 of the upper light channel 415 and lower light channel 415, respectively, and is emitted through the open bottom open top 403 and open bottom 403.
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(28) Near or at bottom portions of the inner walls 427 of the housing 431, and near the open bottom of the lower light channel 440 there are support edges 438 and 438 that extend along portions of the inner walls 427 of the lower light channel 440. In this example, the support edges 438 and 438 are J-shaped and curving inward towards the lower light channel 440.
(29) Positioned on inner top surfaces of the support edges 438 and 438 are elongated LED light engines 435 and 435, having light emitting surfaces facing inward for emitting light into the lower light channel 440, such as described in detail above with reference to
(30) Positioned between walls 442 and 442 of the upper light channel 440 there is an elongated LED light engine 430 positioned on a top surface 427 within the upper light channel 440. For example, elongated LED light engine 430 is centrally positioned on the top surface 427 within the upper light channel 440. The LED light fixture has an asymmetric lens 443 positioned over light emitting surface of the elongated LED light engine 430 to throw light emitted from the elongated LED light engine 430 at an angle out from the open top of the upper light channel 440.
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(32) Near or at bottom portions of walls of the lower light channel 515 and edges of open bottom 503 of the lower light channel 515 there are elongated support edges 523 and 523 for supporting elongated LED light engines 505 and 505 such as described above. In accordance with this embodiment of the invention, the LED light fixture includes an elongated reflective insert 502 that is formed from metal, plastic, paper or a composite of material. The elongated reflective insert 502 is contoured, angled, curved or any other suitable shape, and preferably extends the length of, or near the length of, the lower light channel 515 within the elongated housing 501. The elongated reflective insert 502 creates a reflection channel within the lower light channel. In operation, light is emitted from elongated LED light engines 505 and 505 into the reflection channel formed by the elongated reflective insert 502 in the lower light channel 515 and the emitted light is reflected off of the reflective insert 502 and emitted out through the open bottom 503 of the lower light channel 515.
(33) Positioned between angled walls 522 and 522 of the upper light channel 515, there is an elongated LED light engine 524 positioned on a top surface within the upper light channel 515. The elongated LED light engine 524 has sets or arrays of LEDs 518 and 518 that extend along the length of the top surface of the upper light channel 515. The sets or arrays of LEDs 518 and 518 can sets of liner arrays or strips of LED's or can be staggered arrays of LEDs. Positioned over light emitting surfaces of the sets or arrays of LEDs 518 and 518, there is a symmetric diffusion lens 521 for distributing light emitted out from the open top of the upper light channel 515. Between the upper light channel 515 and the reflective insert 502 there is elongated electronics cavity or conduit 509 for housing wiring, LED drivers and/or other control circuitry.
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(35) Near or at bottom portions of walls of the lower light channel 540 and edges of open bottom 538 of the lower light channel 540 there are elongated support edges 548 and 548 for supporting elongated LED light engines 535 and 535 such as described above. The LED light fixture includes an elongated reflective insert 532 that extends the length of, or near the length of, the lower light channel 540 within the elongated housing 526. Light that is emitted from elongated LED light engines 535 and 535 is reflected off of the reflective insert 502 and emitted out through the open bottom 538, such as described above.
(36) Between angled or bat-wing shaped walls 542 and 542 of the upper light channel 540 there is and elongated LED light engine 539 positioned within the upper light channel 540. The elongated LED light engine 539 has sets or arrays of LEDs 528 and 528, such as described above. In this embodiment of the invention, there is bi-modal asymmetric diffusion lens 541 positioned over light emitting surface of the sets or arrays of LEDs 528 and 528. Between the upper light channel 540 and the reflective insert 532 there is elongated electronics cavity or conduit 539 such as previously described.
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(38) Along bottom edges 573 and 573 of open bottom 553 there are support edges or structures 573 and 573 with elongated LED light engines 555 and 555 configured to emit light into the lower light channel 565 and be reflected off of a reflective insert 552 and out of the open bottom 553. The reflective insert preferably has a structure support 557 for supporting wiring, LED drivers and/or other control circuitry in an elongated electronics cavity or conduit 574 positioned between the upper light channel 565 and the support structure 557 of the reflective insert.
(39) Between walls 572 and 572 of the upper light channel 565 there is and elongated LED light engine 570 positioned within the upper light channel 565. The light fixture further includes a diffusion lens cover 557 that is positioned over the upper light cavity 565 and preferably fits into the snap features of the walls 572 and 572 of the upper light channel 565 and enclosing the upper light channel.
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(41) The present invention has been described in terms of specific embodiments incorporating details to facilitate the understanding of the principles of construction and operation of the invention. As such, references herein to specific embodiments and details thereof are not intended to limit) the scope of the claims appended hereto. It will be apparent to those skilled in the art that modifications can be made in the embodiments chosen for illustration without departing from the spirit and scope of the invention. For example, while the LED light fixture of the present invention has been shown herein to be elongated and linear, the LED light fixture can be curved, angled of have other shapes suitable for the application at hand.