CN203375259U - Full period-luminosity sunlight lamp - Google Patents

Full period-luminosity sunlight lamp Download PDF

Info

Publication number
CN203375259U
CN203375259U CN201320288962.2U CN201320288962U CN203375259U CN 203375259 U CN203375259 U CN 203375259U CN 201320288962 U CN201320288962 U CN 201320288962U CN 203375259 U CN203375259 U CN 203375259U
Authority
CN
China
Prior art keywords
daylight lamp
lamp fixture
reflection
round smooth
penetrating member
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
CN201320288962.2U
Other languages
Chinese (zh)
Inventor
陈灿荣
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.)
SUZHOU SHIDING ELECTRONICS CO Ltd
Original Assignee
SUZHOU SHIDING ELECTRONICS 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 SUZHOU SHIDING ELECTRONICS CO Ltd filed Critical SUZHOU SHIDING ELECTRONICS CO Ltd
Priority to CN201320288962.2U priority Critical patent/CN203375259U/en
Application granted granted Critical
Publication of CN203375259U publication Critical patent/CN203375259U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Abstract

The utility model relates to a full period-luminosity sunlight lamp. The full period-luminosity sunlight lamp comprises a main body, two insulation heat conduction layers, two copper line layers, two anti-welding layers, a plurality of LED modules, a plurality of optical units, a cover body and two end covers. According to the full period-luminosity sunlight lamp, particularly, one optical unit is arranged on each LED module inside the lamp, through the light reflection function of a bottom reflecting piece, a first reflection penetrating piece and a second reflection penetrating piece of each optical unit and the light penetrating function of a first reflection penetrating piece and a second reflection penetrating piece, the light emitted from the LED modules can be evenly emitted at a broad light emitting angle, and thus the light coverage range of more than 270 degrees of a light source of the full period-luminosity sunlight lamp can be achieved.

Description

All-round smooth daylight lamp fixture
Technical field
The utility model is about a kind of light fixture, refer to especially inside be provided with there is a bottom reflection part, a kind of all-round smooth daylight lamp fixture that one first reflection penetrating member and one second reflects a plurality of optical units of penetrating member.
Background technology
In recent years, light emitting diode (Light-Emitting Diode, LED) is applied on the lighting device of daily life widely.Refer to Fig. 1, a kind of perspective view of existing LED daylight lamp fixture.As shown in Figure 1, existing LED daylight lamp fixture 1 ' comprising: a lampshade 11 ', a substrate 12 ', a circuit board 13 ', a plurality of LED assembly 14 ' and two end caps 15 ', wherein, within this substrate 12 ' is placed in this lampshade 11 ', and this circuit board 13 ' that is provided with this LED assembly 14 ' is placed on substrate 12 '.As shown in the figure, by this end cap 15 ' inner one connect wire 151 ' and be connected in circuit board 13 ' after, can end cap 15 ' entangle the port of this lampshade 11 ', seal this lampshade 11 ' by this mode.And the outside of end cap 15 ' has conducting connection terminal 152 ', in order to couple outside input power.
It is the simplest that the advantage of the LED daylight lamp fixture 1 ' shown in Fig. 1 is to form structure; But its shortcoming of making us the most denouncing is: light emission angle wretched insufficiency.As shown in Figure 1, the light emission angle of this LED daylight lamp fixture 1 ' only has at most 160 ° of left and right, even connect 180 ° less than.
Because existing LED daylight lamp fixture 1 ' has the shortcoming of light emission angle wretched insufficiency, LED light fixture manufacturer proposes a kind of LED daylight lamp fixture of improvement.Refer to Fig. 2, the explosive view figure of the LED daylight lamp fixture of improvement.As shown in Figure 2, the LED daylight lamp fixture 1 ' of this improvement ' comprising: an accommodating body 11 ' ', a circuit board 13 ' ', a plurality of LED assembly 14 ' ', two end caps 15 ' ' and a plurality of optical element 17 ' ', wherein, this accommodating body 11 ' ' comprise a supporting part 111 ' ' and a cover section 112 ', be provided with this many each LED assemblies 14 ' ' circuit board 13 ' ' is arranged at this supporting part 111 ' ' on.
Please continue to consult Fig. 2, and please consult Fig. 3 simultaneously, the side sectional view of the LED daylight lamp fixture of improvement.As Fig. 2 with show, ', wherein, optical element 17 ' ' is lens to be provided with an optical element 17 ' on ' among, in each LED assembly 14 ' ' especially, in the LED of this improvement daylight lamp fixture 1 '.The light that so design, as shown in Figure 3, when LED assembly 14 ' while penetrating these lens ' photo-thermal that sends, lens can reflect LED assembly 14 ' at first with multi-angle ' sends, and then send a comparatively broad light source.
Via above-mentioned explanation, what designer of the present utility model can learn is, compared to existing LED daylight lamp fixture 1 ', the LED daylight lamp fixture 1 ' of the improvement shown in Fig. 2 ' there is broader light emission angle, this is the LED daylight lamp fixture 1 ' of this improvement ' topmost advantage.Yet, on implementation, designer of the present utility model but finds the LED daylight lamp fixture 1 ' of this improvement ' still there is following shortcoming:
1. the light that the LED daylight lamp fixture 1 ' of this improvement ' be mainly to utilize lens to reflect with multi-angle LED assembly 14 ' ' sends, so can send a comparatively broad light source; Yet see through the light of light refraction, its light emission angle is still limited, as shown in Figure 3, the LED daylight lamp fixture 1 ' of this improvement ' the light source covering scope reach at most 180 °, do not reach yet the requirement of all-round light (being greater than 270 °).
Therefore, the comprehensive above-mentioned explanation for two kinds of existing daylight lamp fixtures, can learn that existing daylight lamp fixture still has many shortcomings with not enough; In view of this, creator of the present utility model does one's utmost study and composition in addition, and has has finally researched and developed a kind of all-round smooth daylight lamp fixture of the present utility model.
The utility model content
Main purpose of the present utility model, be to provide a kind of all-round smooth daylight lamp fixture, on main each LED assembly in light fixture, an optical unit is set, so, bottom reflection part by optical unit, the light reflex of the first reflection penetrating member and the second reflection penetrating member, and the light penetration of this first reflection penetrating member and this second reflection penetrating member, the light that makes those LED assemblies send can evenly penetrate with the broad light angle of departure, and then the light source that makes this all-round smooth daylight lamp fixture send can have the light covering scope that is greater than 270 °.
In order to reach above-mentioned purpose of the present utility model, designer of the present utility model proposes a kind of all-round smooth daylight lamp fixture, comprising:
One main body;
Two thermal insulation layers, be arranged at respectively on a top surface and a lower surface of this main body;
Two copper wire layer, be arranged at respectively on these two thermal insulation layers, and at least have a plurality of weld metal pads;
Two welding resisting layers, cover respectively this two copper wire layer, wherein on each welding resisting layer, offers a plurality of welding windows, in order to expose the plurality of weld metal pad;
A plurality of LED assemblies, be arranged on this welding resisting layer, and be welded to each other with this weld metal pad;
A plurality of optical units, be arranged on this thermal insulation layer, and be positioned at the top of those LED assemblies, and wherein, each optical unit comprises:
One bottom reflection part, cover this LED assembly, and have an opening and expose for a light emitting surface of this LED assembly;
One first reflection penetrating member, be located opposite from this bottom reflection part top, this first reflection penetrating member of the light partial penetration that wherein this LED assembly sends, and the light of part is reflected by the first reflection penetrating member; And
One second reflection penetrating member, be located opposite from this first reflection penetrating member top, wherein penetrates the light of this first reflection penetrating member, this second reflection penetrating member of partial penetration further, and the light of part is reflected by the second reflection penetrating member;
One cover body, in order to be combined with this main body, and then cover and protect this thermal insulation layer, this copper wire layer, this welding resisting layer, this LED assembly and this optical unit; And
Two end caps, in order to be bonded to the two ends of this cover body, and each end cap all has a control circuit module and an electric terminal group, and wherein this control circuit module is luminous in order to control those LED assemblies, and this electric terminal group is in order to connect external power source.
All-round smooth daylight lamp fixture as above, wherein, this optical unit also comprises:
One top part, have an inner convex surface and a convex surface, and this first reflection penetrating member and this second reflection penetrating member are arranged at respectively on this inner convex surface and this convex surface; And
Many pillars, wherein, an end of those pillars is connected in this top part, and its other end is arranged on this thermal insulation layer.
All-round smooth daylight lamp fixture as above, wherein, the profile of this top part is square, triangle, circle, ellipse, regular polygon or irregular polygon.
All-round smooth daylight lamp fixture as above, wherein, this top part and this many pillars are all made by a plastic light-transmission material.
All-round smooth daylight lamp fixture as above, wherein, the convex mirror that this bottom reflection part is single face reflection with or the level crossing of single face reflection.
All-round smooth daylight lamp fixture as above, wherein, the level crossing of the double-sided reflecting circular convex mirror that this first reflection penetrating member is tool light through characteristic or the double-sided reflecting of tool light through characteristic.
All-round smooth daylight lamp fixture as above, wherein, the single face that this second reflection penetrating member is tool light through characteristic reflects the level crossing of the single face reflection of circular convex mirror or tool light through characteristic.
All-round smooth daylight lamp fixture as above, wherein, this convex surface of this top part is provided with one first recess, in order to this second reflection penetrating member to be set.
All-round smooth daylight lamp fixture as above, wherein, also comprise: position limiting structure; This position limiting structure is formed on this top surface and this lower surface of this main body, makes these two thermal insulation layers be limited in respectively in these two position limiting structures.
All-round smooth daylight lamp fixture as above, wherein, also comprise: the first fastening structure; This first fastening structure is formed at this top surface of this main body and the side of this lower surface.
All-round smooth daylight lamp fixture as above, wherein, this cover body comprises a upper cover and a lower cover, and the internal face of this upper cover and this lower cover all is formed with one second fastening structure, this second fastening structure in order to the mutual snapping of this first fastening structure, and then make cover body be incorporated into this main body.
All-round smooth daylight lamp fixture as above, wherein this welding resisting layer is formed on this copper wire layer by a white paint printing.
All-round smooth daylight lamp fixture as above, the material of this main body is metal or ceramoplastic.
All-round smooth daylight lamp fixture as above, wherein also be provided with a plurality of embedded holes on this thermal insulation layer, uses the fitting portion for those pillars to embed.
All-round smooth daylight lamp fixture as above, wherein the dual-side outside of this main body also is provided with a fin formula structure, and this fin formula structure by a heat-conducting plastic material mode through imbedding ejaculation and be formed at the lateral wall of this main body.
All-round smooth daylight lamp fixture as above, wherein the dual-side outside of this main body also is formed with a fin formula structure, and this fin formula structure and main body one-body molded.
All-round smooth daylight lamp fixture as above, wherein this main body is a substrate.
All-round smooth daylight lamp fixture as above, wherein this substrate forms the metal-cored circuit board of pair of lamina jointly with this thermal insulation layer and this copper wire layer that are arranged at this thermal insulation layer and this copper wire layer of its top surface and are arranged at its lower surface.
All-round smooth daylight lamp fixture as above, wherein the internal face of this cover body all is formed with two embedded structures respect to one another, within the two side ends of this main body is embedded in these two embedded structures.
Compared with prior art, the beneficial effects of the utility model are:
In the utility model, an optical unit 16 is set on each LED assembly 15, so, bottom reflection part 160, the first reflection penetrating member 161 and the second light reflex that reflects penetrating member 162 by optical unit 16, and the light penetration of this first reflection penetrating member 161 and this second reflection penetrating member 162, the light that makes those LED assemblies 15 send can evenly penetrate with the broad light angle of departure, and then the light source that makes this all-round smooth daylight lamp fixture 1 send can have the light covering scope that is greater than 270 °.
The accompanying drawing explanation
The perspective view that Fig. 1 is a kind of existing LED daylight lamp fixture;
The explosive view of the LED daylight lamp fixture that Fig. 2 is a kind of improvement;
Fig. 3 is the side sectional view of the explosive view of the LED daylight lamp fixture of improvement;
The explosive view that Fig. 4 is a kind of all-round smooth daylight lamp fixture of the present utility model;
The side perspective view that Fig. 5 is all-round smooth daylight lamp fixture;
The side view that Fig. 6 is the thermal insulation layer, a copper wire layer, a welding resisting layer, a plurality of LED assemblies and a plurality of optical units that are arranged at all-round smooth daylight lamp fixture inside;
The side perspective view at another visual angle that Fig. 7 is all-round smooth daylight lamp fixture;
Second side perspective view at another visual angle that Fig. 8 is all-round smooth daylight lamp fixture;
The explosive view of one second embodiment that Fig. 9 is a kind of all-round smooth daylight lamp fixture of the present utility model; And
The side perspective view of the second embodiment that Figure 10 is all-round smooth daylight lamp fixture.
Main symbol description in figure:
1: all-round smooth daylight lamp fixture
11: main body 12: thermal insulation layer
13: copper wire layer 14: welding resisting layer
15:LED assembly 16: optical unit
18: cover body 19: end cap
111: top surface 112: lower surface
1111: 1112: the first fastening structures of position limiting structure
121: embedded hole 141: the welding window
142: perforate 164: top part
Within 1641: the first, recess 165: pillar
160: bottom reflection part 1601: opening
162: the second reflection penetrating members of 161: the first reflection penetrating members
1651: fitting portion 191: the electric terminal group
181: upper cover 182: lower cover
Within 180: the second, fastening structure 183: embedded structure
113: fin formula structure
Prior art:
1 ': the LED daylight lamp fixture
11 ': lampshade 12 ': substrate
13 ': circuit board 14 ': the LED assembly
15 ': end cap 151 ': connect wire
152 ': conducting connection terminal
1 ' ': the LED daylight lamp fixture of improvement
11 ' ': accommodating body 13 ' ': circuit board
14 ' ': LED assembly 15 ' ': end cap
17 ' ': optical element 111 ' ': supporting part
112 ' ': cover section
The specific embodiment
A kind of all-round smooth daylight lamp fixture proposed in order more clearly to describe the utility model, below will coordinate graphicly, elaborate preferred embodiment of the present utility model.
Please consult Fig. 4 and Fig. 5, the explosive view of a kind of all-round smooth daylight lamp fixture of the present utility model and side perspective view simultaneously.As shown in Fig. 4 and Fig. 5, all-round smooth daylight lamp fixture 1 of the present utility model comprises: a main body 11, two thermal insulation layers 12, two copper wire layer 13, two welding resisting layers 14, a plurality of LED assembly 15, a plurality of optical unit 16, a cover body 18 and two end caps 19.Wherein, the material of main body 11 is metal or ceramoplastic, in addition, on the top surface 111 of main body 11 and lower surface 112, be formed with a position limiting structure 1111, and this top surface 111 also is formed with one first fastening structure 1112 with the side of this lower surface 112.
Please continue to consult Fig. 4 and Fig. 5, and please consult Fig. 6 simultaneously, the side view of thermal insulation layer, copper wire layer, welding resisting layer, LED assembly and optical unit.Among this all-round smooth daylight lamp fixture 1, these two thermal insulation layers 12 are arranged at respectively on the top surface 111 and lower surface 112 of this main body 11, and are limited in respectively in these two position limiting structures 1111; And, be provided with a plurality of embedded holes 121 on thermal insulation layer 12.This copper wire layer 13 is arranged at respectively on these two thermal insulation layers 12, and at least has a plurality of weld metal pads (not shown).Welding resisting layer 14 is formed on this copper wire layer 13 by a white paint printing, and cover respectively this two copper wire layer 13, wherein on each welding resisting layer 14, offer a plurality of welding windows 141 and a plurality of perforates 142, in order to expose those weld metal pads and those embedded holes 121.15 of the plurality of LED assemblies are arranged on this welding resisting layer 14, and are welded to each other with this weld metal pad.
Especially, among the utility model, by the plurality of optical unit 16, be arranged on this thermal insulation layer 12, and be positioned at the top of those LED assemblies 15, wherein, each optical unit 16 comprises: a top part 164, many pillars 165, a bottom reflection part 160, one first reflection penetrating member 161 and one second reflection penetrating members 162, wherein, this top part 164 has an inner convex surface and a convex surface, and this first reflection penetrating member 161 is arranged at respectively on this inner convex surface and this convex surface with this second reflection penetrating member 162.One end of those pillars 165 is connected in this top part 164, and its other end is formed with a fitting portion 1651, mutually chimeric with this embedded hole 121, is fixed on main body 11 by this mode, and is supporting this top part 164 simultaneously.
Hold above-mentioned explanation, this bottom reflection part 160 covers these LED assemblies 15, and has an opening 1601 and expose for a light emitting surface of these LED assemblies 15; And this first reflection penetrating member 161 is located opposite from this bottom reflection part 160 tops, this first reflection penetrating member 161 of the light partial penetration that wherein this LED assembly 15 sends, and the light of part is reflected by the first reflection penetrating member 161; Moreover, this the second reflection penetrating member 162 is located opposite from this first reflection penetrating member 161 tops, wherein penetrate this first the reflection penetrating member 161 light, further partial penetration this second the reflection penetrating member 162, and the part light by the second reflection penetrating member 162, reflected.So, by this bottom reflection part 160, this first reflection penetrating member 161 and this second light reflex that reflects penetrating member 162, and the light penetration of this first reflection penetrating member 161 and this second reflection penetrating member 162, the light that makes those LED assemblies 15 send can evenly penetrate with the broad light angle of departure, and then the light source that makes this all-round smooth daylight lamp fixture 1 send can have the light covering scope that is greater than 270 °.
Please consult unceasingly Fig. 4 and Fig. 5, and please consult Fig. 7, the side sectional view at another visual angle of all-round smooth daylight lamp fixture simultaneously.As shown in the figure, cover body 18 in order to these main body 11 combinations, and then cover and protect this thermal insulation layer 12, this copper wire layer 13, this welding resisting layer 14, this LED assembly 15 and this optical unit 16; Separately, these two end caps 19 are in order to be bonded to the two ends of this cover body 18, and each end cap 19 all has a control circuit module (not icon) and an electric terminal group 191, wherein this control circuit module is luminous in order to control those LED assemblies 15, and this electric terminal group 191 is in order to connect external power source.As shown in Fig. 4 and Fig. 7, cover body 18 comprises a upper cover 181 and a lower cover 182, and this upper cover 181 all is formed with one second fastening structure 180 with the internal face of this lower cover 182, this second fastening structure 180 in order to the mutual snapping of this first fastening structure 1112, and then make cover body 18 be incorporated into this main body 11.
So, the above-mentioned architecture that has clearly demonstrated all-round smooth daylight lamp fixture 1 of the present utility model; Yet, what must remark additionally is, as shown in Fig. 4 and Fig. 6, this top part 164 is all made by a plastic light-transmission material with these many pillars 165, and, the profile of top part 164 is not particularly limited, and it is square, triangle, circle, ellipse, regular polygon or irregular polygon.In addition, the convex mirror that bottom reflection part 160 is the single face reflection or the level crossing of single face reflection, these are all the objects with effect of light reflection.More specifically, the first reflection penetrating member 161 and the second reflection penetrating member 162 are necessary for the object with light through characteristic and reflective character, for example: the level crossing of the double-sided reflecting circular convex mirror that the first reflection penetrating member 161 is tool light through characteristic or the double-sided reflecting of tool light through characteristic; Relatively, the second reflection penetrating member 162 reflects the level crossing of the single face reflection of circular convex mirror and tool light through characteristic for the single face of tool light through characteristic.In this, must remark additionally, this convex surface of this top part 164 is provided with one first recess 1641, in order to this second reflection penetrating member 162 to be set.
Please consult again unceasingly Fig. 8, second side sectional view at another visual angle of all-round smooth daylight lamp fixture.In order to increase the heat dissipation of this all-round smooth daylight lamp fixture 1, as shown in Figure 8, can form a fin formula structure 113 in the dual-side of main body 11 is outside, and this fin formula structure 113 by a heat-conducting plastic material mode through imbedding ejaculation and be formed at the lateral wall of this main body 11; Perhaps, when making main body 11, fin formula structure 113 just can be formed at main body 11 the dual-side outside of main body 11 through integrated process technique.So, see through the assistance of fin formula structure 113, just can worry the heat dissipation problem of this all-round smooth daylight lamp fixture 1.
In addition, all-round smooth daylight lamp fixture of the present utility model also comprises one second embodiment.Refer to Fig. 9 and Figure 10, explosive view and the side sectional view of the second embodiment of all-round smooth daylight lamp fixture.As shown in Fig. 9 and Figure 10, the second embodiment of this all-round smooth daylight lamp fixture 1 comprises: a main body 11, two thermal insulation layers 12, two copper wire layer 13, two welding resisting layers 14, a plurality of LED assembly 15, a plurality of optical unit 16, a cover body 18 and two end caps 19.What be different from previous embodiment is, among the second embodiment, this main body 11 is an aluminium base, and this aluminium base and this thermal insulation layer 12 and the common formation metal-cored circuit board of pair of lamina (metal core printed circuit board, MCPCB) of this copper wire layer 13 of being arranged at this thermal insulation layer 12 and this copper wire layer 13 of its top surface and being arranged at its lower surface.
In addition, as shown in the figure, in the second embodiment, this welding resisting layer 14, those LED assemblies 15, with those optical units 16, be arranged in order on this main body 11 (substrate); Finally, then within the two side ends of main body 11 being embedded in to two embedded structures 183 of cover body 18 inwalls, just can be so that this main body 11 mutually combines with this cover body 18, through the cover body protection, to be arranged at each member on main body 11 by this mode.
Separately, about members such as the thermal insulation layer 12 among the second embodiment, copper wire layer 13, welding resisting layer 14, LED assembly 15, optical unit 16 and end caps 19, its structure is all identical with aforesaid embodiment with set-up mode, therefore in this, just no longer does the explanation of repetition.
Above embodiment is only exemplary embodiment of the present utility model, is not used in restriction the utility model, and protection domain of the present utility model is defined by the claims.Those skilled in the art can make various modifications or be equal to replacement the utility model in essence of the present utility model and protection domain, this modification or be equal to replacement and also should be considered as dropping in protection domain of the present utility model.

Claims (19)

1. an all-round smooth daylight lamp fixture, is characterized in that, comprising:
One main body;
Two thermal insulation layers, be arranged at respectively on a top surface and a lower surface of this main body;
Two copper wire layer, be arranged at respectively on these two thermal insulation layers, and at least have a plurality of weld metal pads;
Two welding resisting layers, cover respectively this two copper wire layer, wherein on each welding resisting layer, offers a plurality of welding windows, in order to expose the plurality of weld metal pad;
A plurality of LED assemblies, be arranged on this welding resisting layer, and be welded to each other with this weld metal pad;
A plurality of optical units, be arranged on this thermal insulation layer, and be positioned at the top of those LED assemblies, and wherein, each optical unit comprises:
One bottom reflection part, cover this LED assembly, and have an opening and expose for a light emitting surface of this LED assembly;
One first reflection penetrating member, be located opposite from this bottom reflection part top, this first reflection penetrating member of the light partial penetration that wherein this LED assembly sends, and the light of part is reflected by the first reflection penetrating member; And
One second reflection penetrating member, be located opposite from this first reflection penetrating member top, wherein penetrates the light of this first reflection penetrating member, this second reflection penetrating member of partial penetration further, and the light of part is reflected by the second reflection penetrating member;
One cover body, in order to be combined with this main body, and then cover and protect this thermal insulation layer, this copper wire layer, this welding resisting layer, this LED assembly and this optical unit; And
Two end caps, in order to be bonded to the two ends of this cover body, and each end cap all has a control circuit module and an electric terminal group, and wherein this control circuit module is luminous in order to control those LED assemblies, and this electric terminal group is in order to connect external power source.
2. all-round smooth daylight lamp fixture according to claim 1, is characterized in that, wherein, this optical unit also comprises:
One top part, have an inner convex surface and a convex surface, and this first reflection penetrating member and this second reflection penetrating member are arranged at respectively on this inner convex surface and this convex surface; And
Many pillars, wherein, an end of those pillars is connected in this top part, and its other end is arranged on this thermal insulation layer.
3. all-round smooth daylight lamp fixture according to claim 2, is characterized in that, wherein, the profile of this top part is square, triangle, circle or oval.
4. all-round smooth daylight lamp fixture according to claim 2, is characterized in that, wherein, this top part and this many pillars are all made by a plastic light-transmission material.
5. all-round smooth daylight lamp fixture according to claim 1, is characterized in that, wherein, the convex mirror that this bottom reflection part is single face reflection with or the level crossing of single face reflection.
6. all-round smooth daylight lamp fixture according to claim 1, is characterized in that, wherein, and the level crossing of the double-sided reflecting circular convex mirror that this first reflection penetrating member is tool light through characteristic or the double-sided reflecting of tool light through characteristic.
7. all-round smooth daylight lamp fixture according to claim 1, is characterized in that, wherein, the single face that this second reflection penetrating member is tool light through characteristic reflects the level crossing of the single face reflection of circular convex mirror or tool light through characteristic.
8. all-round smooth daylight lamp fixture according to claim 2, is characterized in that, wherein, this convex surface of this top part is provided with one first recess, in order to this second reflection penetrating member to be set.
9. all-round smooth daylight lamp fixture according to claim 1, is characterized in that, wherein, also comprises: position limiting structure; This position limiting structure is formed on this top surface and this lower surface of this main body, makes these two thermal insulation layers be limited in respectively in these two position limiting structures.
10. all-round smooth daylight lamp fixture according to claim 9, is characterized in that, wherein, also comprises: the first fastening structure; This first fastening structure is formed at this top surface of this main body and the side of this lower surface.
11. all-round smooth daylight lamp fixture according to claim 10, it is characterized in that, wherein, this cover body comprises a upper cover and a lower cover, and the internal face of this upper cover and this lower cover all is formed with one second fastening structure, this second fastening structure in order to the mutual snapping of this first fastening structure, and then make cover body be incorporated into this main body.
12. all-round smooth daylight lamp fixture according to claim 1 is characterized in that wherein this welding resisting layer is formed on this copper wire layer by a white paint printing.
13. all-round smooth daylight lamp fixture according to claim 1 is characterized in that the material of this main body is metal or ceramoplastic.
14. all-round smooth daylight lamp fixture according to claim 2, is characterized in that, wherein on this thermal insulation layer, also is provided with a plurality of embedded holes, uses the fitting portion for those pillars to embed.
15. all-round smooth daylight lamp fixture according to claim 10, is characterized in that, wherein the dual-side outside of this main body also is provided with a fin formula structure, and this fin formula structure by a heat-conducting plastic material mode through imbedding ejaculation and be formed at the lateral wall of this main body.
16. all-round smooth daylight lamp fixture according to claim 10, is characterized in that, wherein the dual-side outside of this main body also is formed with a fin formula structure, and this fin formula structure and main body one-body molded.
17. all-round smooth daylight lamp fixture according to claim 10 is characterized in that wherein this main body is a substrate.
18. all-round smooth daylight lamp fixture according to claim 17, it is characterized in that, wherein this substrate forms the metal-cored circuit board of pair of lamina jointly with this thermal insulation layer and this copper wire layer that are arranged at this thermal insulation layer and this copper wire layer of its top surface and are arranged at its lower surface.
19. all-round smooth daylight lamp fixture according to claim 17, is characterized in that, wherein the internal face of this cover body all is formed with two embedded structures respect to one another, within the two side ends of this main body is embedded in these two embedded structures.
CN201320288962.2U 2013-05-24 2013-05-24 Full period-luminosity sunlight lamp Expired - Fee Related CN203375259U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201320288962.2U CN203375259U (en) 2013-05-24 2013-05-24 Full period-luminosity sunlight lamp

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201320288962.2U CN203375259U (en) 2013-05-24 2013-05-24 Full period-luminosity sunlight lamp

Publications (1)

Publication Number Publication Date
CN203375259U true CN203375259U (en) 2014-01-01

Family

ID=49837786

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201320288962.2U Expired - Fee Related CN203375259U (en) 2013-05-24 2013-05-24 Full period-luminosity sunlight lamp

Country Status (1)

Country Link
CN (1) CN203375259U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106704843A (en) * 2015-11-16 2017-05-24 江昆渊 Full-ambient-light LED lamp tube

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106704843A (en) * 2015-11-16 2017-05-24 江昆渊 Full-ambient-light LED lamp tube
CN106704843B (en) * 2015-11-16 2019-06-21 江昆渊 Full-ambient-light LED lamp tube

Similar Documents

Publication Publication Date Title
CN203771102U (en) Led lamp tube
CN203517436U (en) Led lamp
CN202691714U (en) LED (Light-Emitting Diode) small bulb
KR101315700B1 (en) Lighting device
CN203644813U (en) LED support, LED, and LED light bar
CN203375259U (en) Full period-luminosity sunlight lamp
JP3201365U (en) Light bulb shaped LED lamp
CN105588025B (en) LED lighting device
TWI575784B (en) Opto-mechanical module
CN203363722U (en) Sandwich type LED light source module with two sides emitting light
CN101852414B (en) Flashlight and LED optical module thereof
CN203549495U (en) LED lamp structure
KR101262050B1 (en) Lighting device
CN203404688U (en) Led lamp
CN203517374U (en) LED lamp
CN203309571U (en) Full-peripheral-light spherical lamp
CN203533249U (en) LED lamp
CN204268171U (en) LED lamp tube structure
CN203810123U (en) Novel thin-type down light
CN203517424U (en) All-circumference bulb lamp
CN103968267A (en) LED light source element and illumination device using same
CN203533497U (en) Lamp
CN204534247U (en) There is the LED lamp tube of diffused light lens
CN203036338U (en) Light-emitting diode (LED) lamp
CN202915098U (en) Luminous body and light-emitting diode (LED) light in high-power LED light with high thermal conductive structure

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20140101

Termination date: 20140524