CN203948984U - A kind of Novel luminous device - Google Patents

A kind of Novel luminous device Download PDF

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Publication number
CN203948984U
CN203948984U CN201420343643.1U CN201420343643U CN203948984U CN 203948984 U CN203948984 U CN 203948984U CN 201420343643 U CN201420343643 U CN 201420343643U CN 203948984 U CN203948984 U CN 203948984U
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CN
China
Prior art keywords
circuit board
led
heat
heat radiation
pcb
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Expired - Fee Related
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CN201420343643.1U
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Chinese (zh)
Inventor
许伟
陈宏�
刘振玉
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CHENGDU LVZHOU ELECTRONICS Co Ltd
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CHENGDU LVZHOU ELECTRONICS Co Ltd
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Priority to CN201420343643.1U priority Critical patent/CN203948984U/en
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Publication of CN203948984U publication Critical patent/CN203948984U/en
Expired - Fee Related legal-status Critical Current
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Abstract

The utility model relates to lighting field, a kind of Novel luminous device specifically, include LED array, printed circuit board (PCB), LED array is distributed on printed circuit board (PCB), printed circuit board (PCB) is four, four printed circuit board (PCB)s are installed on circuit board mount pad, circuit board mount pad is rhombus, four printed circuit board (PCB)s are arranged on respectively the first surface of rhombus, second surface, the 3rd surface and the 4th surface, rhombus the 5th surface and the 6th surface on be provided with mounting bracket, the utility model is due to circuit board mount pad is provided with to rhombus, and below rhombus, on two surfaces, be provided with the venthole that the heat of printed circuit board (PCB) can be passed to out to circuit board mount pad, heat pipe and heat conductive rod, thereby take heat out of circuit board mount pad, now utilize diamond structure, without other structure is set again, after negative pressure device can pool together hot-air, be drawn to other places, realize the function of quick heat radiating.

Description

A kind of Novel luminous device
Technical field
The utility model relates to lighting field, specifically a kind of Novel luminous device.
Background technology
Existing LED matrix is in the time installing and use, all that LED is independently arranged on circuit board one by one mostly, then carry out again according to the actual requirements the control of color or brightness, it is exactly in the time that the LED quantity that needs to install is more that but such structure exists a problem, each LED all needs independent installation will waste a lot of time, in the time producing large-sized LED matrix, production efficiency will be very low like this.
Existing LED matrix improve as number of patent application be CN201320163053.6, the applying date is 2013-04-03, name is called the utility model patent of " high-capacity LED Projecting Lamp ", its technical scheme is: a kind of high-capacity LED Projecting Lamp, comprise lamp bracket, LED lamp plate, multiple LED and multiple radiator, described LED lamp plate is fixed on lamp bracket, described LED lamp plate comprises opposing first surface and second surface, LED is arranged on the first surface of LED lamp plate, radiator is arranged on the position of relative LED on second surface, on described LED lamp plate, be provided with and control the luminous control device of each LED, described control device and radiator laminating, described LED is being arranged on LED lamp plate of matrix, described radiator comprises heat radiation rack and is arranged on the radiating fin of heat radiation rack, described radiating fin is radial and is arranged on heat radiation rack, the radiator structure of integral type is replaced, changing to multiple radiators independently dispels the heat, the radiator structure dependence of above-mentioned patent is provided with radiator and realizes, but merely on existing LED lamp panel structure, load radiator, can not realize the heat radiation to LED matrix completely, because platy structure due to its structure limitation, heat is difficult for discharging, easily assemble therein.
Summary of the invention
In order to overcome, the caloric value of existing light-emitting device existence will sharply increase, the disappearance problem that aggravation has reduced the service life of double end LED especially of radiator structure, proposes now a kind of Novel luminous device.
For realizing above-mentioned technical purpose, technical solutions of the utility model are as follows:
A kind of Novel luminous device, it is characterized in that: include LED array, printed circuit board (PCB), described LED array is distributed on printed circuit board (PCB), described printed circuit board (PCB) is four, described four printed circuit board (PCB)s are installed on circuit board mount pad, described circuit board mount pad is rhombus, described four printed circuit board (PCB)s are arranged on respectively the first surface of rhombus, second surface, the 3rd surface and the 4th surface, rhombus the 5th surface and the 6th surface on be provided with mounting bracket, the base side checkpost of described mounting bracket and its below connects, on the 5th surface of described circuit board mount pad and the 6th surface, be respectively arranged with venthole, in each venthole, be provided with heat pipe, in described heat pipe, be provided with heat conductive rod, described every heat conductive rod respectively with first surface, second surface, the 3rd surface contacts with the 4th lip-deep four printed circuit board (PCB)s and is connected, described pedestal is hollow structure, the upper surface of described pedestal is provided with perforate, perforate below, base interior are provided with negative pressure device, the side of described pedestal is provided with air vent, and described negative pressure device one end is communicated with air vent, and described LED array includes a LED and the 2nd LED, a described LED is connected by heat radiation coupling assembling with the 2nd LED, the one LED comprises LED light source, support and outer cover, and described LED light source is arranged on support, and described LED light source and support are positioned at the inside of outer cover, described support and outer cover are arranged on the first base, the 2nd LED comprises LED light source, support and outer cover, and described LED light source is arranged on support, and described LED light source and support are positioned at the inside of outer cover, described support and outer cover are arranged on the second base, a described LED and the 2nd LED are oppositely arranged, described heat radiation coupling assembling comprises the heat radiation antipriming pipe between the first base bottom and the second base bottom and is positioned at the other thermal column of heat radiation antipriming pipe, the both ends of described heat radiation antipriming pipe are provided with multiple heat radiation entrances, be provided with multiple heat radiation outlets at the sidewall of described heat radiation antipriming pipe, a heat radiation entrance is communicated with a heat radiation outlet, form a heat dissipation channel, described heat dissipation channel is positioned at the inside of heat radiation antipriming pipe, described multiple heat dissipation channel is evenly distributed in heat radiation antipriming pipe, described thermal column is connected with heat radiation antipriming pipe by connecting rod, on described thermal column, be provided with the heat sink strip identical with thermal column direction, on described heat sink strip, evenly have multiple notches.
Described negative pressure device is air exhauster, and described flabellum is copper fan, in described each flabellum, is provided with water space, on described flabellum, is provided with inlet opening.
In described notch, be provided with jagged radiation tooth.
Between a described LED and two outer covers of the 2nd LED, be provided with light source conducting tube, the two ends of described light source conducting tube are communicated with the outer cover of a LED and the 2nd LED respectively.
The middle part of described light source conducting tube is provided with circular projection.
Described the first base is communicated with power lead jointly with the second base.
The top of described outer cover is provided with circular groove.
Advantage of the present utility model is:
1, the utility model is because circuit board mount pad is set to rhombus, and below rhombus, on two surfaces, be provided with the venthole that the heat of printed circuit board (PCB) can be passed to out to circuit board mount pad, heat pipe and heat conductive rod, thereby take heat out of circuit board mount pad, now utilize diamond structure, without other structure is set again, hot-air can be expelled to the top of pedestal, because the upper surface place at pedestal is provided with perforate negative pressure device, after so negative pressure device can pool together hot-air, be drawn to other places, realize the function of quick heat radiating.
2, the utility model LED array is arranged on printed circuit board (PCB), pedestal is hollow structure, lower surface at described printed circuit board (PCB) is provided with negative pressure device, the side of described pedestal is provided with air vent, described negative pressure device one end is communicated with air vent, under the prerequisite of bullhead structure, negative pressure device can extract the amount of heat producing on printed circuit board (PCB) and discharge, and has extended the service life of light-emitting device.
3, the bullhead LED that the utility model arranges is different from the bullhead LED structure of traditional structure, adopted two groups completely independently LED be connected by radiator structure, such benefit is when brightness has realized single led twice, due to its syndeton itself just have heat radiation heat conduction function, so the heat of two LED generations can be distributed to outside thereupon, and owing to being provided with multiple heat dissipation channels at radiating block, and all heat radiations outlet concentrates on the outer wall of heat radiation antipriming pipe, so just facilitating hot-air to concentrate converges in herein, heat after coming together is more easily exported, and because thermal column is connected with heat radiation antipriming pipe by connecting rod, so the heat pooling together can be dispersed faster by thermal column and the heat sink strip being arranged on thermal column, , thereby the problem that has reduced the service life of double end LED.
4, negative pressure device of the present utility model is air exhauster, flabellum is copper fan, in described each flabellum, be provided with water space, on described flabellum, be provided with inlet opening, when flabellum is in the time carrying out exhausting to hot-air, owing to can storing cooling water in flabellum, so part heat can be conducted in cooling water, can make like this efficiency of air exhauster higher.
5, the utility model is provided with jagged radiation tooth in notch, and jagged radiation tooth can effectively expand the area of dissipation of heat sink strip, makes radiating effect more outstanding.
6, the utility model is also provided with light source conducting tube between an adjacent LED and two outer covers of the 2nd LED, light source conducting tube can be communicated with the light source of a LED and the 2nd LED, in the time that official's color of two LED is different, in light source conducting tube, can demonstrate the color of both neutralizations.
7, light source conducting tube of the present utility model middle part is provided with circular projection, and circular projection can make light source assemble, and forms the effect of multiple several secondary light sources.
8, power supply of the present utility model leads simultaneously to the first base and the second base for supplying power, has saved cost, has simplified supply line.
Brief description of the drawings
Fig. 1 is the utility model structure Facad structure schematic diagram.
Fig. 2 is the utility model structure structure schematic diagram.
Fig. 3 is base construction schematic diagram.
Fig. 4 is the utility model LED schematic top plan view.
In accompanying drawing:
1. a LED, 2. the 2nd LED, 3. LED light source, 4. support, 5. outer cover, 6. the first base, 7. the second base, 12. light source conducting tubes, 13. circular projections, 14 circular grooves, 15. heat radiation antipriming pipes, 16. thermal columns, 17. heat radiation entrances, 18. heat radiation outlets, 19. connecting rods, 20. heat sink strips, 21. notches, 22.LED array, 23. printed circuit board (PCB)s, 24. pedestals, 25. negative pressure devices, 26. air vents, 27. circuit board mount pads, 28. first surfaces, 29. second surfaces, 30. the 3rd surfaces, 31. the 4th surfaces, 32. the 5th surfaces, 33. the 6th surfaces, 34. mounting brackets.
Detailed description of the invention
Embodiment 1
A kind of Novel luminous device includes LED array 22, printed circuit board (PCB) 23, described LED array 22 is distributed on printed circuit board (PCB) 23, described printed circuit board (PCB) 23 is four, described four printed circuit board (PCB)s 23 are installed on circuit board mount pad 27, described circuit board mount pad 27 is rhombus, described four printed circuit board (PCB)s 23 are arranged on respectively the first surface 28 of rhombus, second surface 29, the 3rd surface 30 and the 4th surface 31, on the the 5th surperficial 32 and the 6th surface 33 of rhombus, be provided with mounting bracket 34, the pedestal 24 side clampings of described mounting bracket 34 and its below, on the 5th surface 32 of described circuit board mount pad 27 and the 6th surface 33, be respectively arranged with venthole, in each venthole, be provided with heat pipe, in described heat pipe, be provided with heat conductive rod, described every heat conductive rod respectively with first surface 28, second surface 29, the 3rd surface 30 contacts with four printed circuit board (PCB)s 23 on the 4th surface 31 and is connected, described pedestal 24 is hollow structure, the upper surface of described pedestal 24 is provided with perforate, perforate below, pedestal 24 inside are provided with negative pressure device 25, the side of described pedestal 24 is provided with air vent 26, described negative pressure device 25 one end are communicated with air vent 26, described LED array 22 includes a LED1 and the 2nd LED2, a described LED1 is connected by heat radiation coupling assembling with the 2nd LED2, the one LED1 comprises LED light source 3, support 4 and outer cover 5, described LED light source 3 is arranged on support 4, and described LED light source 3 and support 4 are positioned at the inside of outer cover 5, described support 4 and outer cover 5 are arranged on the first base 6, the 2nd LED2 comprises LED light source 3, support 4 and outer cover 5, and described LED light source 3 is arranged on support 4, and described LED light source 3 and support 4 are positioned at the inside of outer cover 5, described support 4 and outer cover 5 are arranged on the second base 7, a described LED1 and the 2nd LED2 are oppositely arranged, described heat radiation coupling assembling comprises the heat radiation antipriming pipe 15 between the first base 6 bottoms and the second base 7 bottoms and is positioned at the other thermal column 16 of heat radiation antipriming pipe 15, the both ends of described heat radiation antipriming pipe 15 are provided with multiple heat radiation entrances 17, be provided with multiple heat radiation outlets 18 at the sidewall of described heat radiation antipriming pipe 15, a heat radiation entrance 17 is communicated with a heat radiation outlet 18, form a heat dissipation channel, described heat dissipation channel is positioned at the inside of heat radiation antipriming pipe 15, described multiple heat dissipation channel is evenly distributed in heat radiation antipriming pipe 15, described thermal column 16 is connected with heat radiation antipriming pipe 15 by connecting rod 19, on described thermal column 16, be provided with the heat sink strip 20 identical with thermal column 16 directions, on described heat sink strip 20, evenly have multiple notches 21.
The utility model is due to circuit board mount pad 27 is provided with to rhombus, and below rhombus, on two surfaces, be provided with the venthole that the heat of printed circuit board (PCB) 23 can be passed to out to circuit board mount pad 27, heat pipe and heat conductive rod, thereby take heat out of circuit board mount pad 27, now utilize diamond structure, without other structure is set again, hot-air can be expelled to the top of pedestal 24, because the upper surface place at pedestal 24 is provided with perforate negative pressure device 25, after so negative pressure device 25 can pool together hot-air, be drawn to other places, realize the function of quick heat radiating.
Embodiment 2
A kind of Novel luminous device includes LED array 22, printed circuit board (PCB) 23, described LED array 22 is distributed on printed circuit board (PCB) 23, described printed circuit board (PCB) 23 is four, described four printed circuit board (PCB)s 23 are installed on circuit board mount pad 27, described circuit board mount pad 27 is rhombus, described four printed circuit board (PCB)s 23 are arranged on respectively the first surface 28 of rhombus, second surface 29, the 3rd surface 30 and the 4th surface 31, on the the 5th surperficial 32 and the 6th surface 33 of rhombus, be provided with mounting bracket 34, the pedestal 24 side clampings of described mounting bracket 34 and its below, on the 5th surface 32 of described circuit board mount pad 27 and the 6th surface 33, be respectively arranged with venthole, in each venthole, be provided with heat pipe, in described heat pipe, be provided with heat conductive rod, described every heat conductive rod respectively with first surface 28, second surface 29, the 3rd surface 30 contacts with four printed circuit board (PCB)s 23 on the 4th surface 31 and is connected, described pedestal 24 is hollow structure, the upper surface of described pedestal 24 is provided with perforate, perforate below, pedestal 24 inside are provided with negative pressure device 25, the side of described pedestal 24 is provided with air vent 26, described negative pressure device 25 one end are communicated with air vent 26, described LED array 22 includes a LED1 and the 2nd LED2, a described LED1 is connected by heat radiation coupling assembling with the 2nd LED2, the one LED1 comprises LED light source 3, support 4 and outer cover 5, described LED light source 3 is arranged on support 4, and described LED light source 3 and support 4 are positioned at the inside of outer cover 5, described support 4 and outer cover 5 are arranged on the first base 6, the 2nd LED2 comprises LED light source 3, support 4 and outer cover 5, and described LED light source 3 is arranged on support 4, and described LED light source 3 and support 4 are positioned at the inside of outer cover 5, described support 4 and outer cover 5 are arranged on the second base 7, a described LED1 and the 2nd LED2 are oppositely arranged, described heat radiation coupling assembling comprises the heat radiation antipriming pipe 15 between the first base 6 bottoms and the second base 7 bottoms and is positioned at the other thermal column 16 of heat radiation antipriming pipe 15, the both ends of described heat radiation antipriming pipe 15 are provided with multiple heat radiation entrances 17, be provided with multiple heat radiation outlets 18 at the sidewall of described heat radiation antipriming pipe 15, a heat radiation entrance 17 is communicated with a heat radiation outlet 18, form a heat dissipation channel, described heat dissipation channel is positioned at the inside of heat radiation antipriming pipe 15, described multiple heat dissipation channel is evenly distributed in heat radiation antipriming pipe 15, described thermal column 16 is connected with heat radiation antipriming pipe 15 by connecting rod 19, on described thermal column 16, be provided with the heat sink strip 20 identical with thermal column 16 directions, on described heat sink strip 20, evenly have multiple notches 21.Described negative pressure device 25 is air exhauster, and described flabellum is copper fan, in described each flabellum, is provided with water space, on described flabellum, is provided with inlet opening.
The utility model is due to circuit board mount pad 27 is provided with to rhombus, and below rhombus, on two surfaces, be provided with the venthole that the heat of printed circuit board (PCB) 23 can be passed to out to circuit board mount pad 27, heat pipe and heat conductive rod, thereby take heat out of circuit board mount pad 27, now utilize diamond structure, without other structure is set again, hot-air can be expelled to the top of pedestal 24, because the upper surface place at pedestal 24 is provided with perforate negative pressure device 25, after so negative pressure device 25 can pool together hot-air, be drawn to other places, realize the function of quick heat radiating.The utility model LED array 22 is arranged on printed circuit board (PCB) 23, pedestal 24 is hollow structure, be provided with negative pressure device 25 at the lower surface of described printed circuit board (PCB) 23, the side of described pedestal 24 is provided with air vent 26, described negative pressure device 25 one end are communicated with air vent 26, under the prerequisite of bullhead structure, negative pressure device 25 can extract the amount of heat producing on printed circuit board (PCB) 23 and discharge, and has extended the service life of light-emitting device.
Embodiment 3
A kind of Novel luminous device includes LED array 22, printed circuit board (PCB) 23, described LED array 22 is distributed on printed circuit board (PCB) 23, described printed circuit board (PCB) 23 is four, described four printed circuit board (PCB)s 23 are installed on circuit board mount pad 27, described circuit board mount pad 27 is rhombus, described four printed circuit board (PCB)s 23 are arranged on respectively the first surface 28 of rhombus, second surface 29, the 3rd surface 30 and the 4th surface 31, on the the 5th surperficial 32 and the 6th surface 33 of rhombus, be provided with mounting bracket 34, the pedestal 24 side clampings of described mounting bracket 34 and its below, on the 5th surface 32 of described circuit board mount pad 27 and the 6th surface 33, be respectively arranged with venthole, in each venthole, be provided with heat pipe, in described heat pipe, be provided with heat conductive rod, described every heat conductive rod respectively with first surface 28, second surface 29, the 3rd surface 30 contacts with four printed circuit board (PCB)s 23 on the 4th surface 31 and is connected, described pedestal 24 is hollow structure, the upper surface of described pedestal 24 is provided with perforate, perforate below, pedestal 24 inside are provided with negative pressure device 25, the side of described pedestal 24 is provided with air vent 26, described negative pressure device 25 one end are communicated with air vent 26, described LED array 22 includes a LED1 and the 2nd LED2, a described LED1 is connected by heat radiation coupling assembling with the 2nd LED2, the one LED1 comprises LED light source 3, support 4 and outer cover 5, described LED light source 3 is arranged on support 4, and described LED light source 3 and support 4 are positioned at the inside of outer cover 5, described support 4 and outer cover 5 are arranged on the first base 6, the 2nd LED2 comprises LED light source 3, support 4 and outer cover 5, and described LED light source 3 is arranged on support 4, and described LED light source 3 and support 4 are positioned at the inside of outer cover 5, described support 4 and outer cover 5 are arranged on the second base 7, a described LED1 and the 2nd LED2 are oppositely arranged, described heat radiation coupling assembling comprises the heat radiation antipriming pipe 15 between the first base 6 bottoms and the second base 7 bottoms and is positioned at the other thermal column 16 of heat radiation antipriming pipe 15, the both ends of described heat radiation antipriming pipe 15 are provided with multiple heat radiation entrances 17, be provided with multiple heat radiation outlets 18 at the sidewall of described heat radiation antipriming pipe 15, a heat radiation entrance 17 is communicated with a heat radiation outlet 18, form a heat dissipation channel, described heat dissipation channel is positioned at the inside of heat radiation antipriming pipe 15, described multiple heat dissipation channel is evenly distributed in heat radiation antipriming pipe 15, described thermal column 16 is connected with heat radiation antipriming pipe 15 by connecting rod 19, on described thermal column 16, be provided with the heat sink strip 20 identical with thermal column 16 directions, on described heat sink strip 20, evenly have multiple notches 21.
Described negative pressure device 25 is air exhauster, and described flabellum is copper fan, in described each flabellum, is provided with water space, on described flabellum, is provided with inlet opening.In described notch 21, be provided with jagged radiation tooth.Between a described LED1 and two outer covers 5 of the 2nd LED2, be provided with light source conducting tube 12, the two ends of described light source conducting tube 12 are communicated with the outer cover 5 of a LED1 and the 2nd LED2 respectively.The middle part of described light source conducting tube 12 is provided with circular projection 13.Described the first base 6 is communicated with power lead jointly with the second base 7.The top of described outer cover 5 is provided with circular groove 14.
The utility model is due to circuit board mount pad 27 is provided with to rhombus, and below rhombus, on two surfaces, be provided with the venthole that the heat of printed circuit board (PCB) 23 can be passed to out to circuit board mount pad 27, heat pipe and heat conductive rod, thereby take heat out of circuit board mount pad 27, now utilize diamond structure, without other structure is set again, hot-air can be expelled to the top of pedestal 24, because the upper surface place at pedestal 24 is provided with perforate negative pressure device 25, after so negative pressure device 25 can pool together hot-air, be drawn to other places, realize the function of quick heat radiating.LED array 22 is arranged on printed circuit board (PCB) 23, pedestal 24 is hollow structure, be provided with negative pressure device 25 at the lower surface of described printed circuit board (PCB) 23, the side of described pedestal 24 is provided with air vent 26, described negative pressure device 25 one end are communicated with air vent 26, under the prerequisite of bullhead structure, negative pressure device 25 can extract the amount of heat producing on printed circuit board (PCB) 23 and discharge, and has extended the service life of light-emitting device.
The bullhead LED that the utility model arranges is different from the bullhead LED structure of traditional structure, adopted two groups completely independently LED be connected by radiator structure, such benefit is when brightness has realized single led twice, due to its syndeton itself just have heat radiation heat conduction function, so the heat of two LED generations can be distributed to outside thereupon, and owing to being provided with multiple heat dissipation channels at radiating block, and all heat radiations outlet 18 concentrates on the outer wall of heat radiation antipriming pipe 15, so just facilitating hot-air to concentrate converges in herein, heat after coming together is more easily exported, and because thermal column 16 is connected with heat radiation antipriming pipe 15 by connecting rod 19, so the heat pooling together can be dispersed faster by thermal column 16 and the heat sink strip 20 being arranged on thermal column 16, , thereby the problem that has reduced the service life of double end LED.Negative pressure device 25 is air exhauster, flabellum is copper fan, in described each flabellum, be provided with water space, on described flabellum, be provided with inlet opening, when flabellum is in the time carrying out exhausting to hot-air, owing to can storing cooling water in flabellum, so part heat can be conducted in cooling water, can make like this efficiency of air exhauster higher.
The utility model is provided with jagged radiation tooth in notch 21, and jagged radiation tooth can effectively expand the area of dissipation of heat sink strip 20, makes radiating effect more outstanding.The utility model is also provided with light source conducting tube 12 between an adjacent LED1 and two outer covers 5 of the 2nd LED2, light source conducting tube 12 can be communicated with the light source of a LED1 and the 2nd LED2, in the time that official's color of two LED is different, in light source conducting tube 12, can demonstrate the color of both neutralizations.Light source conducting tube of the present utility model 12 middle parts are provided with circular projection 13, and circular projection 13 can make light source assemble, and forms the effect of multiple several secondary light sources.Power supply guiding of the present utility model is powered to the first base 6 and the second base 7 simultaneously, has saved cost, has simplified supply line.

Claims (7)

1. a Novel luminous device, it is characterized in that: include LED array (22), printed circuit board (PCB) (23), described LED array (22) is distributed on printed circuit board (PCB) (23), described printed circuit board (PCB) (23) is four, described four printed circuit board (PCB)s (23) are installed on circuit board mount pad (27), described circuit board mount pad (27) is rhombus, described four printed circuit board (PCB)s (23) are arranged on respectively the first surface (28) of rhombus, second surface (29), the 3rd surface (30) and the 4th surface (31), on the 5th surface (32) of rhombus and the 6th surface (33), be provided with mounting bracket (34), pedestal (24) the side clamping of described mounting bracket (34) and its below, on the 5th surface (32) of described circuit board mount pad (27) and the 6th surface (33), be respectively arranged with venthole, in each venthole, be provided with heat pipe, in described heat pipe, be provided with heat conductive rod, described every heat conductive rod respectively with first surface (28), second surface (29), the 3rd surface (30) contacts with four printed circuit board (PCB)s (23) on the 4th surface (31) and is connected, described pedestal (24) is hollow structure, the upper surface of described pedestal (24) is provided with perforate, perforate below, pedestal (24) inside is provided with negative pressure device (25), the side of described pedestal (24) is provided with air vent (26), described negative pressure device (25) one end is communicated with air vent (26), described LED array (22) includes a LED(1) and the 2nd LED(2), a described LED(1) with the 2nd LED(2) by heat radiation coupling assembling be connected, the one LED(1) comprise LED light source (3), support (4) and outer cover (5), described LED light source (3) is arranged on support (4), described LED light source (3) and support (4) are positioned at the inside of outer cover (5), described support (4) and outer cover (5) are arranged on the first base (6), the 2nd LED(2) comprise that LED light source (3), support (4) and outer cover (5), described LED light source (3) are arranged on support (4) above, described LED light source (3) and support (4) are positioned at the inside of outer cover (5), described support (4) and outer cover (5) are arranged on the second base (7), a described LED(1) and the 2nd LED(2) be oppositely arranged, described heat radiation coupling assembling comprises the thermal column (16) that is positioned at the heat radiation antipriming pipe (15) between the first base (6) bottom and the second base (7) bottom and is positioned at heat radiation antipriming pipe (15) side, the both ends of described heat radiation antipriming pipe (15) are provided with multiple heat radiation entrances (17), be provided with multiple heat radiation outlets (18) at the sidewall of described heat radiation antipriming pipe (15), a heat radiation entrance (17) is communicated with a heat radiation outlet (18), form a heat dissipation channel, described heat dissipation channel is positioned at the inside of heat radiation antipriming pipe (15), described multiple heat dissipation channel is evenly distributed in heat radiation antipriming pipe (15), described thermal column (16) is connected with heat radiation antipriming pipe (15) by connecting rod (19), on described thermal column (16), be provided with the heat sink strip (20) identical with thermal column (16) direction, on described heat sink strip (20), evenly have multiple notches (21).
2. a kind of Novel luminous device according to claim 1, is characterized in that: described negative pressure device (25) is air exhauster, and flabellum is copper fan, is provided with water space in described each flabellum, on described flabellum, is provided with inlet opening.
3. a kind of Novel luminous device according to claim 2, is characterized in that: described notch is provided with jagged radiation tooth in (21).
4. a kind of Novel luminous device according to claim 3, it is characterized in that: a described LED(1) and the 2nd LED(2) two outer covers (5) between be provided with light source conducting tube (12), the two ends of described light source conducting tube (12) respectively with a LED(1) and the 2nd LED(2) outer cover (5) be communicated with.
5. a kind of Novel luminous device according to claim 4, is characterized in that: the middle part of described light source conducting tube (12) is provided with circular projection (13).
6. a kind of Novel luminous device according to claim 5, is characterized in that: described the first base (6) is communicated with power lead jointly with the second base (7).
7. a kind of Novel luminous device according to claim 6, is characterized in that: the top of described outer cover (5) is provided with circular groove (14).
CN201420343643.1U 2014-06-26 2014-06-26 A kind of Novel luminous device Expired - Fee Related CN203948984U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420343643.1U CN203948984U (en) 2014-06-26 2014-06-26 A kind of Novel luminous device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420343643.1U CN203948984U (en) 2014-06-26 2014-06-26 A kind of Novel luminous device

Publications (1)

Publication Number Publication Date
CN203948984U true CN203948984U (en) 2014-11-19

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201420343643.1U Expired - Fee Related CN203948984U (en) 2014-06-26 2014-06-26 A kind of Novel luminous device

Country Status (1)

Country Link
CN (1) CN203948984U (en)

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