[go: up one dir, main page]

CN201568818U - LED illumination device - Google Patents

LED illumination device Download PDF

Info

Publication number
CN201568818U
CN201568818U CN2009202091688U CN200920209168U CN201568818U CN 201568818 U CN201568818 U CN 201568818U CN 2009202091688 U CN2009202091688 U CN 2009202091688U CN 200920209168 U CN200920209168 U CN 200920209168U CN 201568818 U CN201568818 U CN 201568818U
Authority
CN
China
Prior art keywords
light
led
emitting face
plane
lighting device
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 - Fee Related
Application number
CN2009202091688U
Other languages
Chinese (zh)
Inventor
刘学勇
楼洪献
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.)
Ningbo Dejia Lighting & Technology Co., Ltd.
Original Assignee
Ningbo Andy Optoelectronic 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 Ningbo Andy Optoelectronic Co Ltd filed Critical Ningbo Andy Optoelectronic Co Ltd
Priority to CN2009202091688U priority Critical patent/CN201568818U/en
Application granted granted Critical
Publication of CN201568818U publication Critical patent/CN201568818U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Classifications

    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B20/00Energy efficient lighting technologies, e.g. halogen lamps or gas discharge lamps
    • Y02B20/72Energy efficient lighting technologies, e.g. halogen lamps or gas discharge lamps in street lighting

Landscapes

  • Led Device Packages (AREA)

Abstract

The utility model provides an LED illumination device which comprises a main body part and an LED luminous module, wherein the LED luminous module comprises a plurality of LEDs and a secondary optical lens. The secondary optical lens comprises a lens base and an optical processing module, wherein the optical processing module comprises a light incidence plane and a light-emitting surface. The light incidence plane is a cylindrical surface; the light-emitting surface comprises a curved surface light-emitting surface and inclined surface light-emitting surfaces; the curved surface light-emitting surface is a free curve surface which is formed by the motion of two curves which are perpendicular to each other on the direction of an optical axis; the two curves meet the following condition: X=A2Z2+A4Z4+...+A0, and X=B2Y2+B4Y4+...+B0; the tracks of the inclined surface light-emitting surfaces meet the following condition: Z=C1X+C0; the track of the fully reflecting side surface meets the following condition: Z=D1X+D0; the curved surface light-emitting surface in the light-emitting surface is arranged right above the light incidence surface to cover a whole light incidence surface; and the inclined surface light-emitting surfaces are symmetrically arranged at the two sides of the curved surface light-emitting surface, and are arranged right above the fully reflecting side surface to cover a whole fully reflecting side surface.

Description

The LED lighting device
[technical field]
The utility model relates to the LED lighting engineering, or rather, relates to a kind of LED lighting device.
[background technology]
Street lamp, Tunnel Lamp install on each road that need throw light in enormous quantities as the main member of outdoor lighting device, and it has become the main force of outdoor lighting power consumption.LED is as lighting source, and characteristic such as, long-life energy-conservation with its height has entered each lighting field.Therefore, arise at the historic moment as street lamp, the Tunnel Lamp of lighting source, and become the instrument of many road lightings very soon with LED.LED street lamp, LED Tunnel Lamp just more and more are subjected to national governments and people's favor with advantages such as its low energy consumption, long-life, environmental protection; especially the today of being becoming tight in energy crisis, electric power day, the advantage that LED street lamp, LED Tunnel Lamp are used in road lighting is self-evident.But with regard to present LED street lamp, LED Tunnel Lamp, also exist illumination range little, the pockety defective of intensity of illumination on the road surface, thus limited applying of LED street lamp, LED Tunnel Lamp to a certain extent.Therefore, need a kind of new technical scheme of design to overcome the problems referred to above.
[utility model content]
The technical problem that the utility model solves is to overcome the defective that prior art exists, provides a kind of and can reach that optical range is big, intensity of illumination is more even, and the LED lighting device with higher effective efficiency of light energy utilization.
The utility model is achieved through the following technical solutions: a kind of LED lighting device, comprise main part and some LED illuminating module, this illuminating module comprises the secondary optical lens that some LED, circuit board and corresponding described LED are provided with, described LED is installed on the circuit board, described secondary optical lens be installed in described LED directly over, described secondary optical lens comprises a lens mount and optical treatment module, described lens mount is formed with the led light source standing groove, it is characterized in that described optical treatment module comprises:
Light entrance face, this light entrance face are to form towards the pit surface that light direction forms, and described light entrance face is a cylinder;
Light-emitting face comprises curved surface light-emitting face and inclined-plane light-emitting face, and wherein, described curved surface light-emitting face is the free form surfaces that form in the last orthogonal curvilinear motion of normal direction (being optical axis) by two, and these two curves satisfy following condition: X=A 2Z 2+ A 4Z 4+ ... + A 0, X=B 2Y 2+ B 4Y 4+ ... + B 0Described inclined-plane light-emitting face is for being the tapered plane of symmetry axis with the optical axis, and its track satisfies following condition: Z=C 1X+C 0And
The total reflection side, this total reflection side is for being the tapered plane of symmetry axis with the optical axis, its track satisfies following condition: Z=D 1X+D 0
Curved surface light-emitting face in the described light-emitting face be arranged at described light entrance face directly over the position, cover the overall optical plane of incidence;
Described inclined-plane light-emitting face is arranged at the both sides of described curved surface light-emitting face symmetrically, and this inclined-plane light-emitting face be arranged on described total reflection side directly over, cover whole total reflection side;
Wherein, X is the optical axis coordinate, and Y, Z are Y, the Z coordinate in the three-dimensional coordinate of vertical formation with X-axis; In the aforesaid equation the item time and every coefficient (be A 2, A 4... A 0, B 2, B 4... B 0, C 1, C 0, D 1, D 0) according to the actual illumination demand, be optimized definite by ray tracing calculating, emulation.
Described light entrance face needs accurately to locate with the corresponding appearance and size of led light source.
The spacing that the optical axis center of described secondary optical lens and the center of described led light source chip overlap and keep adhering to specification.
Described secondary optical lens adopts PMMA, PC, and the injection moulding of ZEONEX optical plastic forms.
Described LED illuminating module also comprises a reflection shield, and the corresponding secondary optical lens of described reflection shield is correspondingly provided with some through holes, and this reflection shield outer surface forms one deck specular layer, and described reflection shield one end also is provided with some louvres.
Described LED illuminating module also is provided with the lower house that the good material of a heat conductivility is made, and described circuit board is fixed on the lower house.
Described LED illuminating module also is provided with a upper shell, this upper shell comprises a fixed edge and upwards protrudes out form transparent by fixed edge and go out light shield that described LED, secondary optical lens, circuit board and reflection shield are contained in the receiving space that is formed by this upper shell and the fixing back of lower house.
Described LED illuminating module also comprises a fixed frame, and described fixed frame, upper shell, lower house are fixedly connected.
Described LED lighting device is LED street lamp or LED Tunnel Lamp.
A kind of LED lighting device, comprise some secondary optical lens that main part, some LED and corresponding LED are provided with, described secondary optical lens be installed in described LED directly over, described secondary optical lens comprises a lens mount and optical treatment module, described lens mount is formed with the led light source standing groove, it is characterized in that described optical treatment module comprises:
Light entrance face, this light entrance face are to form towards the pit surface that light direction forms, and described light entrance face is a cylinder;
Light-emitting face comprises curved surface light-emitting face and inclined-plane light-emitting face, and wherein, described curved surface light-emitting face is the free form surfaces that form in the last orthogonal curvilinear motion of normal direction (being optical axis) by two, and these two curves satisfy following condition: X=A 2Z 2+ A 4Z 4+ ... + A 0, X=B 2Y 2+ B 4Y 4+ ... + B 0Described inclined-plane light-emitting face is for being the tapered plane of symmetry axis with the optical axis, and its track satisfies following condition: Z=C 1X+C 0And
The total reflection side, this total reflection side is for being the tapered plane of symmetry axis with the optical axis, its track satisfies following condition: Z=D 1X+D 0
Curved surface light-emitting face in the described light-emitting face be arranged at described light entrance face directly over the position, cover the overall optical plane of incidence;
Described inclined-plane light-emitting face is arranged at the both sides of described curved surface light-emitting face symmetrically, and this inclined-plane light-emitting face be arranged on described total reflection side directly over, cover whole total reflection side;
Wherein, X is the optical axis coordinate, and Y, Z are Y, the Z coordinate in the three-dimensional coordinate of vertical formation with X-axis; In the aforesaid equation the item time and every coefficient (be A 2, A 4... A 0, B 2, B 4... B 0, C 1, C 0, D 1, D 0) according to the actual illumination demand, be optimized definite by ray tracing calculating, emulation.
Compared with prior art, the utility model LED lighting device passes through light entrance face and the shape of light-emitting face and the improvement of structure to the secondary optical lens of its use, one reflection shield reasonably is set simultaneously, in the Aspect Ratio and illuminance uniformity that guarantee the hot spot that secondary optical lens forms, improved effective efficiency of light energy utilization again significantly, the optimization of this photocurrent versus light intensity is especially obvious to the improvement effect of the illuminating effect of LED street lamp, LED Tunnel Lamp.
[description of drawings]
Fig. 1 is the front view of the utility model LED lighting device.
Fig. 2 is the side view of the utility model LED lighting device.
Fig. 3 is the front view of LED illuminating module in the utility model LED lighting device.
Fig. 4 is the perspective exploded view for LED illuminating module in the utility model LED lighting device.
Fig. 5 is the stereogram of secondary optical lens in the utility model LED lighting device.
Fig. 6 is the front view of secondary optical lens in the utility model LED lighting device.
Fig. 7 is the rearview of secondary optical lens in the utility model LED lighting device.
The view that Fig. 8 is Fig. 6 after LED is installed behind the cutaway view half-twist of A-A.
The view that Fig. 9 is Fig. 6 after LED is installed behind the cutaway view half-twist of B-B.
[specific embodiment]
See also Fig. 1 to shown in Figure 2, the utility model LED lighting device 7 (especially refers to LED Tunnel Lamp, LED street lamp, what show in the present embodiment diagram is the LED Tunnel Lamp) comprise that a main part 6 and some LED illuminating module 9, described LED illuminating module 9 are configured in the light source installing space (not label) of described main part 6.
See also Fig. 3, shown in Figure 4, described LED illuminating module 9 comprises lower house 90, circuit board 91, sealing ring 92, reflection shield 93, upper shell 94, fixed frame 95, hold-down screw 96, light source led 3 and secondary optical lens 8.Wherein, described LED3 is installed on the circuit board 91, described secondary optical lens 8 be installed in described LED directly over, corresponding described secondary optical lens 8 is provided with corresponding through hole 930 on the described reflection shield 93, the outer surface of this reflection shield 93 is formed with one deck specular layer (not shown) in addition, and the end at this reflection shield 93 is provided with some louvres 931, described circuit board 91 is fixed on lower house 90 and (is made by the material that heat conductivility is good, what adopt in the present embodiment is aluminium) on, described upper shell 94 comprises a fixed edge 940 and upwards protrudes out form transparent by this fixed edge 940 and goes out light shield 941, this upper shell 94 is fixedly connected on the lower house 90, described LED3, circuit board 91, secondary optical lens 8, after installing, reflection shield 93 is contained in the receiving space (not label) of upper shell 94 and lower house 90 formation, described sealing ring 92 is used for about the sealing, housing 90, connection between 94, described fixed frame 95 (adopting stainless steel to make in the present embodiment) shape is consistent with the fixed edge 940 of upper shell 94, the part that correspondence goes out light shield 941 is a hollow, described fixed frame 95, upper shell 94, lower house 90 correspondences are respectively arranged with plurality of fixed hole (not label), and fix by screw 96, these technology have been the industry routine techniques, do not repeat them here.
Please join and read Fig. 5 in the lump to shown in Figure 9, described secondary optical lens 8 comprises a lens mount 1 and optical treatment module 2, described optical treatment module 2 be positioned at described lens mount 1 directly over the position, the two fixedly connected (the two is formed in one in the present embodiment), described lens mount 1 is formed with led light source standing groove 10, described optical treatment module 2 comprises a light entrance face 21, light-emitting face 21 and total reflection side 23, wherein said light entrance face 21 is to form towards the pit surface that light direction forms, and described light entrance face 21 is a cylinder; An and light-emitting face 22, this light-emitting face 22 comprises curved surface light-emitting face 221 and inclined-plane light-emitting face 222, wherein, described curved surface light-emitting face 221 is the free form surface that forms in the last orthogonal curvilinear motion of normal direction (being optical axis) by two, and these two curves satisfy following condition: X=A 2Z 2+ A 4Z 4+ ... + A 0, X=B 2Y 2+ B 4Y 4+ ... + B 0The track of described inclined-plane light-emitting face 222 satisfies following condition: Z=C 1X+C 0Described total reflection side 23 is for being the tapered plane of symmetry axis with the optical axis, and its track satisfies following condition: Z=D 1X+D 0Described light entrance face 21 is positioned at the middle part of whole secondary optical lens 8, the curved surface light-emitting face 221 in the described light-emitting face 22 be arranged at described light entrance face 21 directly over the position, cover the overall optical plane of incidence 21; Described inclined-plane light-emitting face 222 is arranged at the both sides of described curved surface light-emitting face 221 symmetrically, and this inclined-plane light-emitting face 222 be arranged on described total reflection side 23 directly over, cover whole total reflection side 23; Wherein, X is the optical axis coordinate, and Y, Z are Y, the Z coordinate in the three-dimensional coordinate of vertical formation with X-axis; In the aforesaid equation the item time and every coefficient (be A 2, A 4... A 0, B 2, B 4... B 0, C 1, C 0, D 1, D 0) according to the actual illumination demand, by ray tracing calculate, software emulation optimizes definitely repeatedly, so just can accomplish both to have guaranteed the Aspect Ratio and the illuminance uniformity of the hot spot of secondary optical lens 8 formation to improve effective efficiency of light energy utilization again.The light entrance face 21 of described secondary optical lens 8 needs accurately to locate with the corresponding appearance and size of led light source 3, guarantees the center of led chip and the spacing that optical axis center overlaps and both maintenances adhere to specification of described secondary optical lens 8.For ease of processing, reduce cost and weight reduction, described secondary optical lens 8 adopts the optical plastic injection mo(u)lding, and used optical plastic can be PMMA, PC, ZEONEX etc., the precision required according to described lens, cost performance, hear resistance is selected for use.
More than describing is embodiment of the present utility model only, forgives and can understand, and under the prerequisite that does not depart from the utility model design, all should be included within the technical conceive of the present utility model simple modification of the present utility model and replacement.

Claims (10)

1. LED lighting device, comprise main part and some LED illuminating module, this illuminating module comprises the secondary optical lens that some LED, circuit board and corresponding described LED are provided with, described LED is installed on the circuit board, described secondary optical lens be installed in described LED directly over, described secondary optical lens comprises a lens mount and optical treatment module, described lens mount is formed with the led light source standing groove, it is characterized in that described optical treatment module comprises:
Light entrance face, this light entrance face are to form towards the pit surface that light direction forms, and described light entrance face is a cylinder;
Light-emitting face comprises curved surface light-emitting face and inclined-plane light-emitting face, and wherein, i.e. optical axis is gone up orthogonal curvilinear motion and the free form surface that forms in normal direction by two in described curved surface light-emitting face system, and these two curves satisfy following condition: X=A 2Z 2+ A 4Z 4+ ... + A 0, X=B 2Y 2+ B 4Y 4+ ... + B 0Described inclined-plane light-emitting face is for being the tapered plane of symmetry axis with the optical axis, and its track satisfies following condition: Z=C 1X+C 0And
The total reflection side, this total reflection side is for being the tapered plane of symmetry axis with the optical axis, its track satisfies following condition: Z=D 1X+D 0
Curved surface light-emitting face in the described light-emitting face be arranged at described light entrance face directly over the position, cover the overall optical plane of incidence;
Described inclined-plane light-emitting face is arranged at the both sides of described curved surface light-emitting face symmetrically, and this inclined-plane light-emitting face be arranged on described total reflection side directly over, cover whole total reflection side;
Wherein, X is the optical axis coordinate, and Y, Z are Y, the Z coordinate in the three-dimensional coordinate of vertical formation with X-axis; Item in the aforesaid equation inferior and every coefficient, i.e. A 2, A 4... A 0, B 2, B 4... B 0, C 1, C 0, D 1, D 0,, be optimized definite by ray tracing calculating, emulation according to the actual illumination demand.
2. LED lighting device as claimed in claim 1 is characterized in that: described light entrance face needs accurately to locate with the corresponding appearance and size of led light source.
3. LED lighting device as claimed in claim 2 is characterized in that: the spacing that the optical axis center of described secondary optical lens and the center of described led light source chip overlap and keep adhering to specification.
4. LED lighting device as claimed in claim 1 is characterized in that: described secondary optical lens adopts PMMA, PC, and the injection moulding of ZEONEX optical plastic forms.
5. LED lighting device as claimed in claim 1, it is characterized in that: described LED illuminating module also comprises a reflection shield, the corresponding secondary optical lens of described reflection shield is correspondingly provided with some through holes, this reflection shield outer surface forms one deck specular layer, and described reflection shield one end also is provided with some louvres.
6. LED lighting device as claimed in claim 5 is characterized in that: described LED illuminating module also is provided with the lower house that the good material of a heat conductivility is made, and described circuit board is fixed on the lower house.
7. LED lighting device as claimed in claim 6, it is characterized in that: described LED illuminating module also is provided with a upper shell, this upper shell comprises a fixed edge and upwards protrudes out form transparent by fixed edge and go out light shield that described LED, secondary optical lens, circuit board and reflection shield are contained in the receiving space that is formed by this upper shell and the fixing back of lower house.
8. LED lighting device as claimed in claim 7 is characterized in that: described LED illuminating module also comprises a fixed frame, and described fixed frame, upper shell, lower house are fixedly connected.
9. as each described LED lighting device among the claim 1-8, it is characterized in that: described LED lighting device is LED street lamp or LED Tunnel Lamp.
10. LED lighting device, comprise some secondary optical lens that main part, some LED and corresponding LED are provided with, described secondary optical lens be installed in described LED directly over, described secondary optical lens comprises a lens mount and optical treatment module, described lens mount is formed with the led light source standing groove, it is characterized in that described optical treatment module comprises:
Light entrance face, this light entrance face are to form towards the pit surface that light direction forms, and described light entrance face is a cylinder;
Light-emitting face comprises curved surface light-emitting face and inclined-plane light-emitting face, and wherein, i.e. optical axis is gone up orthogonal curvilinear motion and the free form surface that forms in normal direction by two in described curved surface light-emitting face system, and these two curves satisfy following condition: X=A 2Z 2+ A 4Z 4+ ... + A 0, X=B 2Y 2+ B 4Y 4+ ... + B 0Described inclined-plane light-emitting face is for being the tapered plane of symmetry axis with the optical axis, and its track satisfies following condition: Z=C 1X+C 0And
The total reflection side, this total reflection side is for being the tapered plane of symmetry axis with the optical axis, its track satisfies following condition: Z=D 1X+D 0
Curved surface light-emitting face in the described light-emitting face be arranged at described light entrance face directly over the position, cover the overall optical plane of incidence;
Described inclined-plane light-emitting face is arranged at the both sides of described curved surface light-emitting face symmetrically, and this inclined-plane light-emitting face be arranged on described total reflection side directly over, cover whole total reflection side;
Wherein, X is the optical axis coordinate, and Y, Z are Y, the Z coordinate in the three-dimensional coordinate of vertical formation with X-axis; Item in the aforesaid equation inferior and every coefficient, i.e. A 2, A 4... A 0, B 2, B 4... B 0, C 1, C 0, D 1, D 0,, be optimized definite by ray tracing calculating, emulation according to the actual illumination demand.
CN2009202091688U 2009-09-04 2009-09-04 LED illumination device Expired - Fee Related CN201568818U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2009202091688U CN201568818U (en) 2009-09-04 2009-09-04 LED illumination device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2009202091688U CN201568818U (en) 2009-09-04 2009-09-04 LED illumination device

Publications (1)

Publication Number Publication Date
CN201568818U true CN201568818U (en) 2010-09-01

Family

ID=42661109

Family Applications (1)

Application Number Title Priority Date Filing Date
CN2009202091688U Expired - Fee Related CN201568818U (en) 2009-09-04 2009-09-04 LED illumination device

Country Status (1)

Country Link
CN (1) CN201568818U (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102537721A (en) * 2010-11-24 2012-07-04 Lg伊诺特有限公司 Lighting module and lighting apparatus comprising the same
TWI500878B (en) * 2012-07-24 2015-09-21 Lextar Electronics Corp Illumination device and light source module with adjustable illumination distribution
CN105757608A (en) * 2014-12-18 2016-07-13 海洋王照明科技股份有限公司 Lens, lens module and lamp
CN111637423A (en) * 2020-05-28 2020-09-08 深圳市海洋王照明工程有限公司 Lens, light distribution module and lamp

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102537721A (en) * 2010-11-24 2012-07-04 Lg伊诺特有限公司 Lighting module and lighting apparatus comprising the same
CN102537721B (en) * 2010-11-24 2016-12-21 Lg伊诺特有限公司 Lighting module and the illuminator including this lighting module
TWI500878B (en) * 2012-07-24 2015-09-21 Lextar Electronics Corp Illumination device and light source module with adjustable illumination distribution
CN105757608A (en) * 2014-12-18 2016-07-13 海洋王照明科技股份有限公司 Lens, lens module and lamp
CN105757608B (en) * 2014-12-18 2019-10-15 海洋王照明科技股份有限公司 Lens, lens module and lamps and lanterns
CN111637423A (en) * 2020-05-28 2020-09-08 深圳市海洋王照明工程有限公司 Lens, light distribution module and lamp
CN111637423B (en) * 2020-05-28 2023-06-23 深圳市海洋王铁路照明技术有限公司 Lens, light distribution module and lamp

Similar Documents

Publication Publication Date Title
CN201363590Y (en) Large-power LED light source with saturated and gentle light and large-power LED illumination lamp using same
CN102691972B (en) LED secondary optical system, LED light source module and the LED light fixture of orthogonal hot spot
US20100020543A1 (en) Led lighting device with light-conducting member
CN201652172U (en) LED secondary optics grading lens module
CN201568818U (en) LED illumination device
CN201212639Y (en) Lamp holder improving structure of LED street lamp
CN101782219B (en) Large-power LED light source, large-power LED illuminating lamp using same and application of illuminating lamp
CN101280898B (en) Integrated led lamp cap
CN203628470U (en) Square led ceiling lamp
CN202852547U (en) Full light angle LED bulb lamp
CN102011948A (en) LED luminous module
CN203628469U (en) Circular led ceiling lamp
CN201582652U (en) LED light-emitting module
CN201487818U (en) Secondary optical lens
CN102011947A (en) Led illuminating device
CN102012000A (en) Secondary optical lens
CN204786167U (en) Special toroidal lens of secondary optics and star arrangement lens formula street lamp thereof
CN201836818U (en) LED light distributing system with waterproof and dustproof functions
CN202955651U (en) Optical structure of light-emitting diode (LED) lamp
CN105444118B (en) A kind of lens and the LED ground footlight with the lens
CN203489169U (en) Airport LED (Light Emitting Diode) searchlight and lens
TWI344528B (en) Led lighting device and illumination method
CN101463988A (en) LED light projecting lamp
CN203880561U (en) Hidden type side light-emitting LED front fog lamp
CN203363714U (en) LED panel light

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
ASS Succession or assignment of patent right

Owner name: NINGBO DEJIA LIGHTING + TECHNOLOGY CO., LTD.

Free format text: FORMER OWNER: NINGBO ANDY OPTOELECTRONIC TECHNOLOGY CO., LTD.

Effective date: 20120628

C41 Transfer of patent application or patent right or utility model
TR01 Transfer of patent right

Effective date of registration: 20120628

Address after: 315400 Xiao Dong Industrial Park, Zhejiang, Yuyao

Patentee after: Ningbo Dejia Lighting & Technology Co., Ltd.

Address before: 315400 Zhejiang Yuyao southwest Street industrial functional area Ningbo Andy Photoelectric Technology Co., Ltd.

Patentee before: Ningbo Andy Optoelectronic Technology Co., Ltd.

C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20100901

Termination date: 20130904