CN201487627U - LED light source module with radiating function and grading optimization - Google Patents

LED light source module with radiating function and grading optimization Download PDF

Info

Publication number
CN201487627U
CN201487627U CN2009201618203U CN200920161820U CN201487627U CN 201487627 U CN201487627 U CN 201487627U CN 2009201618203 U CN2009201618203 U CN 2009201618203U CN 200920161820 U CN200920161820 U CN 200920161820U CN 201487627 U CN201487627 U CN 201487627U
Authority
CN
China
Prior art keywords
light source
led
source module
fixture
intensity distribution
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
CN2009201618203U
Other languages
Chinese (zh)
Inventor
李竹
赵磊
马锋
杨金云
唐忠林
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
PANJIT CO Ltd
Original Assignee
PANJIT CO Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by PANJIT CO Ltd filed Critical PANJIT CO Ltd
Priority to CN2009201618203U priority Critical patent/CN201487627U/en
Application granted granted Critical
Publication of CN201487627U publication Critical patent/CN201487627U/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Landscapes

  • Arrangement Of Elements, Cooling, Sealing, Or The Like Of Lighting Devices (AREA)
  • Non-Portable Lighting Devices Or Systems Thereof (AREA)

Abstract

The utility model relates to an LED light source module with radiating function and grading optimization, comprising a radiating bracket, an aluminum substrate, a plurality of LED assemblies and two rotary assemblies, wherein the radiating bracket comprises an upper plate, a lower plate and a plurality of heat discharge pipes; the upper and lower plates are oppositely provided with a plurality of through holes; the heat discharge pipes are respectively and correspondingly connected with the through holes opposite to the upper and lower plates; the aluminum substrate is arranged on the lower plate and provided with perforations corresponding to the through holes; the LED assemblies are respectively arranged between two adjacent perorations of the aluminum substrate and comprise lens; the two rotary assemblies are respectively arranged at the two ends of the radiating bracket which can rotate so as to change the light emitting direction of the LED assembly; the lens with different degrees can be used for improving the effective range of the illumination area to ensure the grading optimization; and the radiating bracket causes convection of air in the structure so as to improve the radiating effect.

Description

The optimized led light source module of tool heat sinking function and luminous intensity distribution
Technical field
The utility model relates to a kind of LED light-source module, particularly relates to the optimized LED LED light-source module of a kind of tool heat sinking function and luminous intensity distribution.
Background technology
Because energy starved threatens and the influence of Global Greenhouse Effect, make environmental consciousness rise year by year, government and international body are led the idea of carbon reduction one after another to common people a surname, because light emitting diode has every advantages such as power saving, volume is little, efficient is good, add the gift of visiing scientific and technological progress, make that light-emitting diode luminance improves, cost reduces, ripe gradually with light emitting diode as the technology of main lighting apparatus, make led lamp, more power saving, more energy-conservation brighter, and become the illumination trend of a new generation than fluorescent tube.
Yet, the light that light emitting diode sent has directive property, so it is often inhomogeneous and scope is little to commonly use light that led lamp sends, for example light emitting diode bulb is installed on the ceiling, its brightness of illumination obviously reduces toward the outside from the zone of light fixture below, feasiblely seem dim many from light fixture scope far away, therefore not satisfactory for room lighting, can't be comparable with traditional fluorescent lamp.
Moreover light emitting diode can produce high heat when luminous, and hereat general led lamp all has metal radiating fin increases the heat conducting surface area of light fixture, to help heat radiation.But in the heat radiation process, be still the air of high heat around the light emitting diode, under the situation of air deficiency convection current so radiating effect certainly will be had a greatly reduced quality.
This shows that above-mentioned existing light emitting diode obviously still has inconvenience and defective, and demands urgently further being improved in structure and use.In order to solve the problem of above-mentioned existence, relevant manufacturer there's no one who doesn't or isn't seeks solution painstakingly, but do not see always that for a long time suitable design finished by development, and common product does not have appropriate structure to address the above problem, this obviously is the problem that the anxious desire of relevant dealer solves.Therefore how to found a kind of novel tool heat sinking function and the optimized led light source module of luminous intensity distribution, real one of the current important research and development problem that belongs to, also becoming the current industry utmost point needs improved target.
Because the defective that above-mentioned existing light emitting diode exists, the inventor is based on being engaged in this type of product design manufacturing abundant for many years practical experience and professional knowledge, and the utilization of cooperation scientific principle, actively studied innovation, in the hope of founding a kind of novel tool heat sinking function and the optimized led light source module of luminous intensity distribution, can improve general existing light emitting diode, make it have more practicality.Through constantly research, design, and, create the utility model that has practical value finally through after studying sample and improvement repeatedly.
Summary of the invention
Main purpose of the present utility model is, overcome the defective that existing light emitting diode exists, and provide a kind of novel tool heat sinking function and the optimized led light source module of luminous intensity distribution, but technical problem to be solved is to make its mat adjust light direction also can arrange in pairs or groups lens and make the luminous intensity distribution optimization, and can make air produce convection current and help on the structure and dispel the heat, be very suitable for practicality.
The purpose of this utility model and solve its technical problem and realize by the following technical solutions.According to a kind of tool heat sinking function and the optimized led light source module of luminous intensity distribution that the utility model proposes, it comprises: a cooling stand, comprise a upper plate, a lower plate and a plurality of heat extraction pipe, and this upper plate is equipped with a plurality of perforations at interval; The perforation position of the corresponding upper plate of this lower plate also is formed with a plurality of perforations; Those hot type pipes are located between the upper and lower plate, and the corresponding relative perforation of upper and lower plate that connects of each hot type pipe; One aluminium base is located at the surface of this lower plate, and the perforation of corresponding lower plate also is respectively equipped with perforation on this aluminium base; A plurality of LED assemblies are installed in respectively on the aluminium base between the two adjacent perforation; And two rotary components, connect the two ends of this cooling stand respectively, wherein cooling stand can change the light direction of LED assembly by rotary components is rotated.The purpose of this utility model and solve its technical problem and also can be applied to the following technical measures to achieve further.
The optimized led light source module of aforesaid tool heat sinking function and luminous intensity distribution, wherein said each rotary components comprises a fixture and a revolving part, this fixture is in order to be installed in the connecting hole of a lighting device, this revolving part be located on this fixture and relatively this fixture pivot this revolving part and cooling stand one end winding.
The optimized led light source module of aforesaid tool heat sinking function and luminous intensity distribution, wherein said fixture and this revolving part all are cylindric, wherein this revolving part and this fixture is coaxial and path length greater than this fixture.
The optimized led light source module of aforesaid tool heat sinking function and luminous intensity distribution, wherein said fixture is sheathed on this revolving part in the form of a ring.
The optimized led light source module of aforesaid tool heat sinking function and luminous intensity distribution, wherein said fixture are a L shaped plate body, and one end and revolving part articulate, and the other end is in order to be fixed in a wall of lighting device.
The optimized led light source module of aforesaid tool heat sinking function and luminous intensity distribution, wherein said rotating part one side is provided with a plate body, is formed with an arcuation chute on this plate body; This fixed part is a L shaped plate body, and the one end surface forms the protuberance that is slidedly arranged on aforementioned arcuation chute.
The optimized led light source module of aforesaid tool heat sinking function and luminous intensity distribution, wherein said each LED assembly includes a LED unit, a sleeve and lens, wherein this LED element solder is on aluminium base, this jacket casing is located at top, LED unit, and these lens are located in the sleeve and are installed on the LED unit.
The optimized led light source module of aforesaid tool heat sinking function and luminous intensity distribution, wherein said each LED assembly further comprises a waterproof gasket and a waterproof washer, and this waterproof gasket is located between sleeve and the aluminium base; This waterproof washer then is located between lens and the sleeve.
The optimized led light source module of aforesaid tool heat sinking function and luminous intensity distribution, it further comprises a cover plate and is arranged on the aluminium base, each LED assembly comprises a LED unit and lens, this LED element solder is on aluminium base, this lens correspondence is buckled in the top of LED unit, and the bottom firmly is connected with aluminium base and cover plate.
The utility model compared with prior art has tangible advantage and beneficial effect.For achieving the above object, a kind of tool heat sinking function that the utility model provides and the optimized led light source module of luminous intensity distribution comprise as known from the above:
One cooling stand comprises a upper plate, a lower plate and a plurality of heat extraction pipe, and this upper plate is equipped with a plurality of perforations at interval; The perforation position of the corresponding upper plate of this lower plate also is formed with a plurality of perforations; Those hot type pipes are located between the upper and lower plate, and the corresponding relative perforation of upper and lower plate that connects of each hot type pipe;
One aluminium base is located at the surface of this lower plate, and the perforation of corresponding lower plate also is respectively equipped with perforation on this aluminium base;
A plurality of LED assemblies are installed in respectively on the aluminium base between the two adjacent perforation; And
Two rotary components connect the two ends of this cooling stand respectively, and wherein cooling stand can change the light direction of LED assembly by rotary components is rotated.
Because near the air themperature the lower plate can raise because of the LED assembly is luminous, air themperature was lower near relatively the heat extraction pipe was positioned at the in addition end opening of upper plate, because hot-air density is less than cold air, therefore heat extraction pipe both ends open produces one relatively and makes the lasting pressure that flows out upper plate near the inflow heat extraction pipe lower plate again of hot-air, thermal convection current can make the whole light source module reach fast with respect to the existing known LED light fixture thermal balance of low temperature more by this, thereby strengthens the radiating effect of light source module.
In addition, the setting of rotary components can make when light source module is installed on the lighting device, can adjust its light direction, the even bright dipping of lens of arranging in pairs or groups again simultaneously, add the design of light source moduleization and can cooperate the adjustment of different light directions by a plurality of identical light source modules, to meet different illuminating light distribution demands, make the luminous intensity distribution optimization.
By technique scheme, the optimized led light source module of the utility model tool heat sinking function and luminous intensity distribution has following advantage and beneficial effect at least: modularized design of the present utility model structurally can make air produce convection current and help radiating effect to improve, and the adjustability of luminous intensity distribution angle more is provided.Therefore the utility model has the obvious effect enhancement compared to existing technology, is meeting under the patent requirement prerequisite, files an application in the whence in accordance with the law.
In sum, the utility model relates to a kind of tool heat sinking function and the optimized led light source module of luminous intensity distribution, it comprises a cooling stand, an aluminium base, a plurality of LED assembly and two rotary components, this cooling stand comprises a upper plate, a lower plate and a plurality of heat extraction pipe, this upper and lower plate is provided with a plurality of perforations relatively, the corresponding respectively relative perforation of upper and lower plate that connects of those hot type pipes; This aluminium base is located on the lower plate and is had the perforation of corresponding perforation; The LED assembly is installed between the aluminium base two adjacent perforation respectively and includes lens; This two rotary components is located at the cooling stand two ends respectively can be rotated cooling stand and the light direction that changes the LED assembly, the lens of different number of degrees use simultaneously can improve the effective range of illuminating area and make the luminous intensity distribution optimization, and aforementioned again cooling stand structurally can make air produce convection current and help radiating effect to improve.
The utility model has obvious improvement technically, and has tangible good effect, really is a new and innovative, progressive, practical new design.
Above-mentioned explanation only is the general introduction of technical solutions of the utility model, for can clearer understanding technological means of the present utility model, and can be implemented according to the content of specification, and for above-mentioned and other purposes, feature and advantage of the present utility model can be become apparent, below especially exemplified by preferred embodiment, and conjunction with figs., be described in detail as follows.
Description of drawings
Fig. 1 is the stereogram of the utility model one preferred embodiment.
Fig. 2 is Fig. 1 stereogram that another angle is looked during assembly without spin.
Fig. 3 is the cutaway view of Fig. 2.
Fig. 4 is another preferred embodiment of the utility model stereogram of assembly without spin.
Fig. 5 is the cutaway view of Fig. 4.
Fig. 6 is the schematic perspective view of rotary components second preferred embodiment of the present utility model.
Fig. 7 is the schematic perspective view of rotary components the 3rd preferred embodiment of the present utility model.
Fig. 8 is the schematic perspective view of rotary components the 4th preferred embodiment of the present utility model.
Fig. 9 is the schematic perspective view that a plurality of light source modules of the present utility model are applied to first preferred embodiment of a lighting device.
Figure 10 is the schematic perspective view that a plurality of light source modules of the present utility model are applied to second preferred embodiment of a lighting device.
Figure 11 is the schematic perspective view that a plurality of light source modules of the present utility model are applied to the 3rd preferred embodiment of a lighting device.
Figure 12 driving control system schematic diagram of the present utility model.
10: cooling stand 11: upper plate
110: perforation 12: lower plate
120: perforation 13: the heat extraction pipe
20: aluminium base 200: perforation
30:LED assembly 31:LED unit
32: sleeve 33: lens
33a: lens 34: waterproof gasket
35: waterproof washer 40: rotary components
41,41a, 41b, 41c: fixture
410: protuberance
42,42a, 42b, 42c: revolving part
420: plate body
421: arcuation chute 50: cover plate
1: light source module 2: lighting device
200: central plane 201: side
6: electric supply installation 7: constant-flow driver
The 8:MCU manager
The specific embodiment
For further setting forth the utility model is to reach technological means and the effect that predetermined goal of the invention is taked, below in conjunction with accompanying drawing and preferred embodiment, to according to tool heat sinking function and optimized its specific embodiment of led light source module of luminous intensity distribution, structure, feature and the effect thereof that the utility model proposes, describe in detail as after.
Relevant aforementioned and other technology contents, characteristics and effect of the present utility model can clearly present in the following detailed description that cooperates with reference to graphic preferred embodiment.For convenience of description, in following embodiment, components identical is represented with identical numbering.
Please refer to shown in Figure 1, optimized led light source module one preferred embodiment of the utility model tool heat sinking function and luminous intensity distribution, it consists predominantly of a cooling stand 10, an aluminium base 20, a plurality of LED assembly 30 and two rotary components 40.
Further with reference to shown in Figure 2, this cooling stand 10 mainly comprises a upper plate 11, a lower plate 12 and a plurality of heat extraction pipe 13, and this upper plate 11 is equipped with a plurality of perforations 110 at interval; Perforation 110 positions of these lower plate 12 corresponding upper plates 11 also are formed with a plurality of perforations 120; Those hot type pipes 13 are located between the upper and lower plate 11,12, and the corresponding relative perforation 110,120 of upper and lower plate 11,12 that connects of each hot type pipe 13.
This aluminium base 20 is located at the surface of this lower plate 12 and is included metallic circuit, its with lower plate 12 between can fix by the mode of coating heat-conducting glue, the perforation 120 of corresponding lower plate 12 also is respectively equipped with and bores a hole 200 on this aluminium base 20.
Further with reference to shown in Figure 3, each LED assembly 30 is installed on the aluminium base 20 between the two adjacent perforation 200, in the present embodiment, each LED assembly 30 consists predominantly of a LED unit 31, a sleeve 32 and lens 33, wherein, this LED unit 31 is welded on the aluminium base 20 with surface mount technology (SMT), and this sleeve 32 is sheathed on 31 tops, LED unit, and these lens 33 are located in the sleeve 32 and are installed on the LED unit 31.Can further make LED assembly 30 comprise a waterproof gasket 34 and a waterproof washer 35, make this waterproof gasket 34 be located between sleeve 32 and the aluminium base 20, and by screw together lock this sleeve 32, waterproof gasket 34, aluminium base 20 and lower plate 12; 35 of this waterproof washers are located between lens 33 and the sleeve 32, make that by this waterproof gasket 34 and waterproof washer 35 LED assembly 30 is waterproof.
As shown in Figure 1, this two rotary components 40 connects the two ends of this cooling stand 10 respectively, and can corresponding be installed on the power interface of a lighting device, wherein cooling stand 10 can change light direction by rotary components 40 is rotated, each rotary components 40 comprises a fixture 41 and a revolving part 42, this fixture 41 is in order to be installed in the connecting hole of a lighting device, this revolving part 42 be located on this fixture 41 and relatively this fixture 41 pivot, this revolving part 42 and cooling stand 10 1 end windings, in the present embodiment, this fixture 41 all is cylindric with this revolving part 42, and wherein coaxial the and path length of this revolving part 42 and this fixture 41 is greater than this fixture 41.
With reference to shown in Figure 9, when being applied to a lighting device 2, can be side by side on the exiting surface of this lighting device 2 with the LED light-source module of the present utility model 1 of majority, wherein each LED light-source module 1 is assembled with lighting device 2 with the fixture 41 of two ends rotary components 40, because cooling stand 10 can rotate relatively by rotary components 40, and adjust the light direction of the LED assembly 30 on it, as long as the light direction of each LED light-source module 1 is adjusted, can make this lighting device 2 possess wideer illumination zone and more uniform brightness of illumination compared to existing known light emitting diode illuminating apparatus, moreover, be arranged side by side except equidirectional, also can provide arrangement is set in lighting device 2 planning zoness of different, for example shown in Figure 10,1 one-tenth vertical setting of part light source module 1 and other light source module side by side; Again as shown in figure 11, form a central plane 200 and two sides 201 on this lighting device 2, these two sides 201 make a plurality of light source modules 1 be distributed on this central plane 200 and the side 201 respectively from the oblique extension in central plane 200 both sides, and more polynary illumination design is provided by this; Moreover, because the light characteristic that goes out of aforementioned lens 33 is that led light source with the spot light characteristic evenly distributes, LED assembly 30 can be sent evenly and the light source of specific illumination scope, therefore use according to the different lens 33 that go out light characteristic of the light source module 1 corresponding collocation of different light directions, reach the luminous intensity distribution optimization by this.
Moreover, as shown in Figure 3, when LED unit 31 is lighted, make near the air themperature the lower plate 12 raise, because of hot-air density less, moreover, it is lower and density is bigger that heat extraction pipe 13 is positioned near the in addition end opening of upper plate 11 air themperature, therefore the relative generation one in heat extraction pipe 13 two ends makes hot-air continue to flow into the pressure that heat extraction pipe 13 flows out upper plate 11 again near the lower plate 12, thermal convection current can make the whole light source module reach fast with respect to the existing known LED light fixture thermal balance of low temperature more by this, thereby strengthens the radiating effect of light source module.
Please refer to Fig. 4 and shown in Figure 5, and be in further comprise a cover plate 50 different with earlier figures 1 embodiment is arranged on the aluminium base 20, and LED assembly 30 comprises a LED unit 31 and a lens 33a in the present embodiment, these lens 33a correspondence is buckled in the top of LED unit, and the bottom firmly is connected with aluminium base 20 and cover plate 50 by epoxy resin.
Aforementioned rotary components 40 can be designed to multiple pattern, and as shown in Figure 6, this fixture 41a is sheathed on this revolving part 42a in the form of a ring; As shown in Figure 7, this fixture 41b is a L shaped plate body, and one end and revolving part 42b articulate, and the other end then can be in order to be fixed in the wall that lighting device provides; Again as shown in Figure 8, this rotating part 42c one side is provided with a plate body 420, is formed with an arcuation chute 421 on this plate body 420, and this fixed part 41c then is a L shaped plate body, and the one end surface forms the protuberance 410 that is slidedly arranged on aforementioned arcuation chute 421.
Please refer to shown in Figure 12, the light emitting control of LED assembly 30 of the present utility model:
Light source module of the present utility model can provide power supply by an electric supply installation 6, and it can be an adapter, the AC power that civil power provided is converted to dc source drives and light; The perhaps dc source that can use solar cell power generation system to export; And drive part adopts non-linear step-down shape constant-flow driver 7, it has the PWM dimming function, at first detect and set the maximum operating currenbt value with electric resistance partial pressure, be set in 700mA as lowest high-current value, output current was 700mA when PWM light modulation pin provided the high level of 5V, output current was 630mA when positive dutycycle is provided was 90% square wave, output current was 560mA when positive dutycycle is provided was 80% square wave, output current was 490mA when positive dutycycle is provided was 70% square wave, the rest may be inferred, and different dutycycles can be set different operating currents; Make each light source module 1 corresponding constant-flow driver 7 that connects, at last by a MCU manager 8 unified operating currents of setting, by the dutycycle of setting square wave, the light modulation pin that offers constant-flow driver again is to set the operating current of each light source module, can regulate the operating current that each module lamp is transferred comparatively accurately and efficiently, allot more uniform illumination.
The utility model appended graphic only provide with reference to and explanation usefulness, be not to be used for to the utility model limitr in addition.So use the equivalent structure variation for it of the utility model specification and diagramatic content institute such as, all in like manner be included in the scope of the present utility model, close and give Chen Ming.
The above, it only is preferred embodiment of the present utility model, be not that the utility model is done any pro forma restriction, though the utility model discloses as above with preferred embodiment, yet be not in order to limit the utility model, any those skilled in the art, in not breaking away from the technical solutions of the utility model scope, when the technology contents that can utilize above-mentioned announcement is made a little change or is modified to the equivalent embodiment of equivalent variations, in every case be the content that does not break away from technical solutions of the utility model, according to technical spirit of the present utility model to any simple modification that above embodiment did, equivalent variations and modification all still belong in the scope of technical solutions of the utility model.

Claims (9)

1. tool heat sinking function and the optimized led light source module of luminous intensity distribution is characterized in that it comprises:
One cooling stand comprises a upper plate, a lower plate and a plurality of heat extraction pipe, and this upper plate is equipped with a plurality of perforations at interval; The perforation position of the corresponding upper plate of this lower plate also is formed with a plurality of perforations; Those hot type pipes are located between the upper and lower plate, and the corresponding relative perforation of upper and lower plate that connects of each hot type pipe;
One aluminium base is located at the surface of this lower plate, and the perforation of corresponding lower plate also is respectively equipped with perforation on this aluminium base;
A plurality of LED assemblies are installed in respectively on the aluminium base between the two adjacent perforation; And
Two rotary components connect the two ends of this cooling stand respectively, and wherein cooling stand can change the light direction of LED assembly by rotary components is rotated.
2. the optimized led light source module of tool heat sinking function according to claim 1 and luminous intensity distribution, it is characterized in that wherein said each rotary components comprises a fixture and a revolving part, this fixture is installed in the connecting hole of a lighting device, this revolving part is located at relative this fixture pivot on this fixture, this revolving part and cooling stand one end winding.
3. the optimized led light source module of tool heat sinking function according to claim 2 and luminous intensity distribution is characterized in that wherein said fixture and this revolving part all are cylindric, wherein this revolving part and this fixture is coaxial and path length greater than this fixture.
4. the optimized led light source module of tool heat sinking function according to claim 2 and luminous intensity distribution is characterized in that wherein said fixture is sheathed on this revolving part in the form of a ring.
5. the optimized led light source module of tool heat sinking function according to claim 2 and luminous intensity distribution is characterized in that wherein said fixture is a L shaped plate body, and one end and revolving part articulate, and a wall of lighting device is fixed in the other end.
6. the optimized led light source module of tool heat sinking function according to claim 2 and luminous intensity distribution is characterized in that wherein said rotating part one side is provided with a plate body, is formed with an arcuation chute on this plate body; This fixed part is a L shaped plate body, and the one end surface forms the protuberance that is slidedly arranged on aforementioned arcuation chute.
7. according to described tool heat sinking function of arbitrary claim in the claim 1 to 6 and the optimized led light source module of luminous intensity distribution, it is characterized in that wherein said each LED assembly includes a LED unit, a sleeve and lens, wherein this LED element solder is on aluminium base, this jacket casing is located at top, LED unit, and these lens are located in the sleeve and are installed on the LED unit.
8. the optimized led light source module of tool heat sinking function according to claim 7 and luminous intensity distribution is characterized in that wherein said each LED assembly further comprises a waterproof gasket and a waterproof washer, and this waterproof gasket is located between sleeve and the aluminium base; This waterproof washer is located between lens and the sleeve.
9. according to described tool heat sinking function of arbitrary claim in the claim 1 to 6 and the optimized led light source module of luminous intensity distribution, it is characterized in that it further comprises a cover plate and is arranged on the aluminium base, each LED assembly comprises a LED unit and lens, this LED element solder is on aluminium base, this lens correspondence is buckled in the top of LED unit, and the bottom firmly is connected with aluminium base and cover plate.
CN2009201618203U 2009-06-29 2009-06-29 LED light source module with radiating function and grading optimization Expired - Lifetime CN201487627U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2009201618203U CN201487627U (en) 2009-06-29 2009-06-29 LED light source module with radiating function and grading optimization

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2009201618203U CN201487627U (en) 2009-06-29 2009-06-29 LED light source module with radiating function and grading optimization

Publications (1)

Publication Number Publication Date
CN201487627U true CN201487627U (en) 2010-05-26

Family

ID=42426506

Family Applications (1)

Application Number Title Priority Date Filing Date
CN2009201618203U Expired - Lifetime CN201487627U (en) 2009-06-29 2009-06-29 LED light source module with radiating function and grading optimization

Country Status (1)

Country Link
CN (1) CN201487627U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101936457B (en) * 2009-06-29 2012-07-11 强茂股份有限公司 LED light source module with heat dissipation function and optimized light distribution

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101936457B (en) * 2009-06-29 2012-07-11 强茂股份有限公司 LED light source module with heat dissipation function and optimized light distribution

Similar Documents

Publication Publication Date Title
JP3139851U (en) LED light
CN201680177U (en) Tube type LED lamp
CN101936457B (en) LED light source module with heat dissipation function and optimized light distribution
CN209309753U (en) A kind of LED lightening lamp being adjusted by rotation
CN201944620U (en) LED (Light Emitting Diode) down lamp
CN201487627U (en) LED light source module with radiating function and grading optimization
CN203309661U (en) LED spotlight
CN201032082Y (en) LED module
CN207661449U (en) A kind of high-powered LED lamp
CN201407524Y (en) Led crystal lamp
CN204372606U (en) Energy-saving ball lamp
CN204141474U (en) A kind of middle part cooling type LED candle lamp
CN203500866U (en) Flexible LED (light emitting diode) lamp net and flexible LED lamp coil
CN202327727U (en) Plastic cement coated light emitting diode (LED) lamp
CN202302936U (en) Power supply isolation type LED (light emitting diode) lamp
CN201615457U (en) LED light bulb
CN207005928U (en) A kind of double end Grille lamp of high-effective concentration
CN206310445U (en) A kind of LED seat with heat sinking function
CN204879492U (en) Solar energy portable lamp of curved surface light source
CN201043737Y (en) High power semiconductor lighting lamp
CN204829326U (en) Curved surface light source solar energy portable lamp with humiture shows function
CN204592991U (en) A kind of high-powered LED lamp of high heat conduction
CN202696975U (en) LED emergency lamp with different color temperatures and segmentation control
CN202109307U (en) LED energy-saving street lamp capable of adjusting illumination angle
CN201836712U (en) LED ball lamp

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
EE01 Entry into force of recordation of patent licensing contract

Assignee: Jiangsu Aide Solar Technology Co., Ltd.

Assignor: Panjit Co., Ltd.

Contract record no.: 2011990000903

Denomination of utility model: LED light source module with heat dissipation function and optimized light distribution

Granted publication date: 20100526

License type: Exclusive License

Record date: 20110916

AV01 Patent right actively abandoned

Granted publication date: 20100526

Effective date of abandoning: 20090629