Patent · US2012002418A1 · A1 · US
Rail and clip mounting for led modules for fluorescent application replacement
- (11) Publication number
- US2012002418A1
- (21) Application number
- 13/043,023
- (22) Filing date
- 2011-03-08
- (30) Priority date
- 2010-03-08
- (43) Publication date
- 2012-01-05
- (51) IPC
- F21S 4/00
- (52) CPC
- G09F Displaying; advertising; signs; labels or name-plates; seals: 13/22, 2013/1895
- F21K Non-electric light sources using luminescence; light sources using electrochemiluminescence; light sources using charges of combustible material; light sources using semiconductor devices as light-generating elements; light sources not otherwise provided for: 9/27, 9/90
- Y10T Technical subjects covered by former us classification: 29/49826
- (72) Inventors
- Bill (Xin) Wang; Jeffrey Nall; Luc Cloutier; John Owens; Min Zhang; Tyler John Rolfes; Adrian Slattery
- (54) Title
- Rail and clip mounting for led modules for fluorescent application replacement
- (57) Abstract
In accordance with a first exemplary embodiment of the present disclosure, a mounting arrangement for use with an LED power strip module is provided. The mounting arrangement comprises one or more one frames having a first end and a second end, a first holding base configured to mate with the first end and a second holding base configured to mate with the second end, and at least one LED module having a first and second edge and comprising a plurality of LEDs, said LED module being adapted to removably attach to the one or more frames. The first and second holding bases are adapted to secure the one or more frames to an existing raceway structure.
- Full text
- View on Google Patents
Claims (1)
- A mounting arrangement for use with an LED power strip module including: one or more frames, each frame having a first end and a second end; a first holding base configured to mate with said first end and a second holding base configured to mate with said second end; and at least one LED module having a first and second edge and two elongated side edges, said module comprising a plurality of LEDs and adapted to removably attach to said one or more frames, wherein said first and second holding bases are adapted to secure said one or more frames to a signage structure. 2. The mounting arrangement of claim 1, wherein said the LED power strip module is configured for mounting in cabinet signs. 3. The mounting arrangement of claim 1, wherein said frame comprises aluminum. 4. The mounting arrangement of claim 1, wherein said frame is anodized. 5. The mounting arrangement of claim 1, wherein said LED power strip module is a double-sided module. 6. The mounting arrangement of claim 5, wherein said one or more frames comprise openings spaced along the length of the frame configured to permit light from the LEDs to pass through the frame. 7. The mounting arrangement of claim 1, further including a first spring-clip configured to snap into said one or more frames at said first edge and a second spring-clip configured to snap into said frame at said second edge, said first and second spring-clip adapted to secure the at least one LED power strip module to said frame. 8. The mounting arrangement of claim 1, further including at least two connectors configured to attach to said LED power strip module at each of said first and second edge and mount said LED module to said frame in a parallel configuration. 9. The mounting arrangement of claim 1, wherein said one or more frames includes a generally c-shaped slot configured to receive the first side edge of said LED power strip module. 10. The mounting arrangement of claim 9, further including a plurality of spacers separating said LED power strip module. 11. The mounting arrangement of claim 9, wherein said arrangement comprises two frames having the generally c-shaped slot, wherein the second frame is configured to receive the second side edge of said LED module. 12. The mounting arrangement of claim 11, further including a first and second link mounted at both the first and second edge of the LED power strip module and extended through each frame, securing said LED power strip module in place. 13. The mounting arrangement of claim 11, further including a plurality of ties configured to extend over the LED power strip module and hook onto an underside portion of each frame. 14. The mounting arrangement of claim 13, wherein said ties are further configured to squeeze the frames toward the LED power strip modules, securing the LED power strip module to the frame. 15. The mounting arrangement of claim 1, wherein said LED power strip modules include or more screw tabs along at least one side edge of said LED power strip module. 16. The mounting arrangement of claim 15, wherein said screw tabs are configured to mate with a screw slot feature provided on said one or more frames, securing said LED power strip module to said frame. 17. The mounting arrangement of claim 16, wherein said first and second holding bases comprise L-brackets. 18. The mounting arrangement of claim 1, wherein said frame comprises one or more stamped and bent metal units configured to expand or contract to lengthen or shorten said frame. 19. An LED module comprising: a housing having a first side edge and a second side edge; a plurality of LEDs mounted on a printed circuit board; and a mounting arrangement, said mounting arrangement comprising: at least one frame, said frame having a first end and a second end, said frame being adapted to removably accept said LED module; a first holding base configured to mate with said first end; and a second holding base configured to mate with said second end, wherein said first and second holding bases are adapted to secure said one or more frames to a signage structure. 20. The LED module according to claim 19, wherein said module is a double-sided LED module. 21. The LED module according to claim 19, wherein said LED module includes or more screw tabs along at least one side edge of said LED module. 22. The LED module according to claim 21, wherein said screw tabs are configured to mate with a screw slot feature provided on said at least one frame, securing said LED module to said frame. 23. The LED module according to claim 19, wherein said first and second holding bases comprise L-brackets. 24. A mounting arrangement for mounting a double-sided LED module to a signage application, said arrangement including: one or more transparent flat panels comprising a cut-out pattern; a plurality of brackets configured to secure said panels to said signage application having at least two sides; and at least one double-sided LED module configured to be mounted to said flat panels, wherein said cut-out pattern is configured to allow said LEDs to illuminate each side of said signage application without light blockage. 25. A double-sided LED module for mounting to a sign application, said double-sided LED module comprising: a housing having a first elongated side edge and a second elongated side edge; and at least one LED mounted on each side of a printed circuit board, wherein said double-sided LED module further includes a mounting arrangement comprising: one or more transparent flat panels having a cut-out pattern; and a plurality of brackets configured to secure said panels to said signage application having at least two sides, wherein said double-sided LED module is configured to be mounted to said flat panels and wherein said cut out pattern is configured to allow said at least one LED to illuminate each side of said signage application without light blockage. 26. A mounting arrangement for mounting an LED module to sign assembly; said arrangement including: an LED module comprising one or more LEDs positioned on a printed circuit board; a strip clip comprising a front end having jaws configured to open and close, and a back end having radial arms, wherein upon pressure to the aims, said jaws are configured to open and receive said LED module; a folded piece of plastic configured to snap into hooks located on said aims; and a socket capable of receiving said folded piece of plastic. 27. The mounting arrangement of claim 24, wherein said strip clips are designed to hold said LED module offset from the center line of the assembly. 28. The mounting arrangement of claim 24, wherein said socket is a dummy socket.
Description
This application claims priority from provisional application Ser. No. 61/311,611, hereby incorporated by reference in its entirety.
The present exemplary embodiment relates to illumination devices, and particularly to a mounting arrangement for illumination devices including light emitting diodes (LED) and will be described with particular reference thereto. However, it is to be appreciated that the present exemplary embodiment is also amenable to other like applications.
Large cabinet signs, which can also be referred to as box signs, use fluorescent bulbs and a ballast as the lighting system. The cabinet signs comprise a housing with translucent panels that define a hollow enclosure. A fluorescent tube and a ballast mount inside the enclosure. The fluorescent tubes evenly illuminate both the front panel and the rear panel, but fluorescent tube lighting has its drawbacks.
Fluorescent lamps are presently much more efficient than incandescent lamps in using energy to create light. Fluorescent tubes emit light in a 360 degree pattern from a central axis. Light that is emitted from the top and bottom portions of the tube is generally wasted and does not reflect well toward the illuminated panels. This decreases the efficiency of the system. Therefore, recently, there has been a trend toward the use of more efficient lighting, in particular, light emitting diodes (LEDs). LEDs consume much less electrical power, are far more reliable, and exhibit much longer lifetimes than fluorescent lamps. As a result, LED replacement modules are being developed to replace linear fluorescent lamps.
Citations (5)
- US8172097B2
- US20080244944A1
- US20110019348A1
- US20090086478A1
- US20100165627A1
Record as JSON
{
"publication_number": "US2012002418A1",
"country": "US",
"kind": "A1",
"title": "Rail and clip mounting for led modules for fluorescent application replacement",
"abstract": "In accordance with a first exemplary embodiment of the present disclosure, a mounting arrangement for use with an LED power strip module is provided. The mounting arrangement comprises one or more one frames having a first end and a second end, a first holding base configured to mate with the first end and a second holding base configured to mate with the second end, and at least one LED module having a first and second edge and comprising a plurality of LEDs, said LED module being adapted to removably attach to the one or more frames. The first and second holding bases are adapted to secure the one or more frames to an existing raceway structure.",
"claims": [
"1. A mounting arrangement for use with an LED power strip module including: one or more frames, each frame having a first end and a second end; a first holding base configured to mate with said first end and a second holding base configured to mate with said second end; and at least one LED module having a first and second edge and two elongated side edges, said module comprising a plurality of LEDs and adapted to removably attach to said one or more frames, wherein said first and second holding bases are adapted to secure said one or more frames to a signage structure. 2. The mounting arrangement of claim 1, wherein said the LED power strip module is configured for mounting in cabinet signs. 3. The mounting arrangement of claim 1, wherein said frame comprises aluminum. 4. The mounting arrangement of claim 1, wherein said frame is anodized. 5. The mounting arrangement of claim 1, wherein said LED power strip module is a double-sided module. 6. The mounting arrangement of claim 5, wherein said one or more frames comprise openings spaced along the length of the frame configured to permit light from the LEDs to pass through the frame. 7. The mounting arrangement of claim 1, further including a first spring-clip configured to snap into said one or more frames at said first edge and a second spring-clip configured to snap into said frame at said second edge, said first and second spring-clip adapted to secure the at least one LED power strip module to said frame. 8. The mounting arrangement of claim 1, further including at least two connectors configured to attach to said LED power strip module at each of said first and second edge and mount said LED module to said frame in a parallel configuration. 9. The mounting arrangement of claim 1, wherein said one or more frames includes a generally c-shaped slot configured to receive the first side edge of said LED power strip module. 10. The mounting arrangement of claim 9, further including a plurality of spacers separating said LED power strip module. 11. The mounting arrangement of claim 9, wherein said arrangement comprises two frames having the generally c-shaped slot, wherein the second frame is configured to receive the second side edge of said LED module. 12. The mounting arrangement of claim 11, further including a first and second link mounted at both the first and second edge of the LED power strip module and extended through each frame, securing said LED power strip module in place. 13. The mounting arrangement of claim 11, further including a plurality of ties configured to extend over the LED power strip module and hook onto an underside portion of each frame. 14. The mounting arrangement of claim 13, wherein said ties are further configured to squeeze the frames toward the LED power strip modules, securing the LED power strip module to the frame. 15. The mounting arrangement of claim 1, wherein said LED power strip modules include or more screw tabs along at least one side edge of said LED power strip module. 16. The mounting arrangement of claim 15, wherein said screw tabs are configured to mate with a screw slot feature provided on said one or more frames, securing said LED power strip module to said frame. 17. The mounting arrangement of claim 16, wherein said first and second holding bases comprise L-brackets. 18. The mounting arrangement of claim 1, wherein said frame comprises one or more stamped and bent metal units configured to expand or contract to lengthen or shorten said frame. 19. An LED module comprising: a housing having a first side edge and a second side edge; a plurality of LEDs mounted on a printed circuit board; and a mounting arrangement, said mounting arrangement comprising: at least one frame, said frame having a first end and a second end, said frame being adapted to removably accept said LED module; a first holding base configured to mate with said first end; and a second holding base configured to mate with said second end, wherein said first and second holding bases are adapted to secure said one or more frames to a signage structure. 20. The LED module according to claim 19, wherein said module is a double-sided LED module. 21. The LED module according to claim 19, wherein said LED module includes or more screw tabs along at least one side edge of said LED module. 22. The LED module according to claim 21, wherein said screw tabs are configured to mate with a screw slot feature provided on said at least one frame, securing said LED module to said frame. 23. The LED module according to claim 19, wherein said first and second holding bases comprise L-brackets. 24. A mounting arrangement for mounting a double-sided LED module to a signage application, said arrangement including: one or more transparent flat panels comprising a cut-out pattern; a plurality of brackets configured to secure said panels to said signage application having at least two sides; and at least one double-sided LED module configured to be mounted to said flat panels, wherein said cut-out pattern is configured to allow said LEDs to illuminate each side of said signage application without light blockage. 25. A double-sided LED module for mounting to a sign application, said double-sided LED module comprising: a housing having a first elongated side edge and a second elongated side edge; and at least one LED mounted on each side of a printed circuit board, wherein said double-sided LED module further includes a mounting arrangement comprising: one or more transparent flat panels having a cut-out pattern; and a plurality of brackets configured to secure said panels to said signage application having at least two sides, wherein said double-sided LED module is configured to be mounted to said flat panels and wherein said cut out pattern is configured to allow said at least one LED to illuminate each side of said signage application without light blockage. 26. A mounting arrangement for mounting an LED module to sign assembly; said arrangement including: an LED module comprising one or more LEDs positioned on a printed circuit board; a strip clip comprising a front end having jaws configured to open and close, and a back end having radial arms, wherein upon pressure to the aims, said jaws are configured to open and receive said LED module; a folded piece of plastic configured to snap into hooks located on said aims; and a socket capable of receiving said folded piece of plastic. 27. The mounting arrangement of claim 24, wherein said strip clips are designed to hold said LED module offset from the center line of the assembly. 28. The mounting arrangement of claim 24, wherein said socket is a dummy socket."
],
"description_excerpt": "This application claims priority from provisional application Ser. No. 61/311,611, hereby incorporated by reference in its entirety.\n\nThe present exemplary embodiment relates to illumination devices, and particularly to a mounting arrangement for illumination devices including light emitting diodes (LED) and will be described with particular reference thereto. However, it is to be appreciated that the present exemplary embodiment is also amenable to other like applications.\n\nLarge cabinet signs, which can also be referred to as box signs, use fluorescent bulbs and a ballast as the lighting system. The cabinet signs comprise a housing with translucent panels that define a hollow enclosure. A fluorescent tube and a ballast mount inside the enclosure. The fluorescent tubes evenly illuminate both the front panel and the rear panel, but fluorescent tube lighting has its drawbacks.\n\nFluorescent lamps are presently much more efficient than incandescent lamps in using energy to create light. Fluorescent tubes emit light in a 360 degree pattern from a central axis. Light that is emitted from the top and bottom portions of the tube is generally wasted and does not reflect well toward the illuminated panels. This decreases the efficiency of the system. Therefore, recently, there has been a trend toward the use of more efficient lighting, in particular, light emitting diodes (LEDs). LEDs consume much less electrical power, are far more reliable, and exhibit much longer lifetimes than fluorescent lamps. As a result, LED replacement modules are being developed to replace linear fluorescent lamps.",
"cpc": [
"G09F 13/22",
"F21K 9/27",
"F21K 9/90",
"G09F 2013/1895",
"Y10T 29/49826"
],
"ipc": [
"F21S 4/00"
],
"inventors": [
"Bill (Xin) Wang",
"Jeffrey Nall",
"Luc Cloutier",
"John Owens",
"Min Zhang",
"Tyler John Rolfes",
"Adrian Slattery"
],
"filing_date": "2011-03-08",
"publication_date": "2012-01-05",
"priority_date": "2010-03-08",
"application_number": "US-201113043023-A",
"family_id": "44063907",
"cited_by_count": 3,
"citations": [
"US8172097B2",
"US20080244944A1",
"US20110019348A1",
"US20090086478A1",
"US20100165627A1"
]
}
Record 5,322 of 8,000 in Patents full text (MLC-0201). Request the full dataset.