CN102305359A - Solid semiconductor light source tube - Google Patents

Solid semiconductor light source tube Download PDF

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Publication number
CN102305359A
CN102305359A CN201110175311A CN201110175311A CN102305359A CN 102305359 A CN102305359 A CN 102305359A CN 201110175311 A CN201110175311 A CN 201110175311A CN 201110175311 A CN201110175311 A CN 201110175311A CN 102305359 A CN102305359 A CN 102305359A
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light source
heat
semi
fluorescent tube
internal layer
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CN201110175311A
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徐大鹏
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Abstract

The invention discloses a solid semiconductor light source tube comprising an outer shell, an inner shell arranged in the outer shell, a circuit board fixed between the inner and outer shells and provided with a light source device and end units arranged on two ends of the outer shell and two ends of the inner shell, wherein a closed ring-shaped heat-conducting cavity is formed by the outer shell, the inner shell and the end units; and heat-conducting liquid is stored in the closed ring-shaped heat-conducting cavity. The solid semiconductor light source tube has good heat-radiating effect because the heat from the light source device and the circuit board is conducted to the heat-conducting liquid, conducted to the outer shell by the heat-conducting liquid and directly conducted to the outside by the outer shell; meanwhile, the tube has the advantages of simple structure relative to a metal conduction structure and low processing difficulty in manufacturing processes so that the cost of time is saved; and moreover, the heat-conducting liquid can be fully contacted with the light source device and the circuit board because of the translucency of the heat-conducting liquid so that the effective radiating area and the radiating efficiency are increased.

Description

A kind of semi-conductor solid-state light source fluorescent tube
Technical field
The present invention relates to the light illumination field, in particular, relate to the semi-conductor solid-state light source fluorescent tube.
Background technology
Be that the semiconductor solid-state spot light technology of representative possesses advantages such as light efficiency height, good reliability, controllability are good, energy-conserving and environment-protective with LED, possess great competition potential, penetration and promotion rapidly.The limit of working temperature that can bear owing to semiconductor light-source cores such as LED can only reach 100-150 ℃ scope, compares with the metallic filament of traditional lighting scheme to differ more than the nearly one magnitude.When DIE Temperature was too high, the luminous efficiency of light source device and life-span all can reduce significantly, and therefore, the heat-sinking capability of light source device becomes one of decisive factor of light fixture reliability of products.
At present, have the circuit structure that the light source fluorescent tube mainly comprises thermal conductive shell, is arranged on the conductive structure of enclosure and has the light source core now.Wherein, conductive structure and the shell of being responsible for heat radiation, most of metal that adopts, material such as aluminium or copper for example is to obtain necessary heat conduction and heat dispersion; In the portioned product, in order to obtain better heat conductivility, the circuit structure part has also adopted aluminum base PCB.
In research and practice process to prior art, the present inventor finds that there is following problem in prior art:
One of which, the inner most of structure of fluorescent tube is all made with metal material, in manufacturing process; Need multiprogramming metal material could be made into conductive structure and shell; So difficulty of processing is big, packaging technology is complicated, thereby for the large-scale production of light fixture product very big restriction is arranged;
Its two, the connection between the radiator structure spare of rigidity must be filled Heat Conduction Material in order to guarantee efficiently the heat conduction, has limited heat-conducting area, has reduced heat transfer efficiency.Simultaneously, further increased process complexity, the long-time stability of packing material also can produce negative effect to a certain degree to reliability of products and life-span;
Its three, therefore heat radiating metal structure itself is light tight, must dodge at light direction; This has just reduced the effective area that carries out heat exchange with surrounding air; Make the power density of fluorescent tube be restricted, under the physical dimension of regulation, can't realize bigger power output.
Summary of the invention
In view of this, purpose of design of the present invention is, the semi-conductor solid-state light source fluorescent tube of a kind of simple in structure, handling ease, reliability height and good heat dissipation effect is provided.
The embodiment of the invention is achieved in that
A kind of semi-conductor solid-state light source fluorescent tube comprises:
Outer casing;
Be arranged on the inner internal layer shell of said outer casing;
Be fixed between said internal layer shell and the outer casing, and have the circuit board of light source device and heater members;
Be arranged on the end unit at said outer casing and internal layer shell two ends;
Wherein, form airtight annular thermal conductive cavity between said outer casing, internal layer shell and the end unit, have heat-conducting liquid in the said airtight annular thermal conductive cavity.
Preferably, in above-mentioned semi-conductor solid-state light source fluorescent tube, also comprise a plurality of insulating units that are arranged between said outer casing and the internal layer shell;
Said annular thermal conductive cavity is divided into a plurality of airtight annular heat conduction sections by said a plurality of insulating units.
Preferably, in above-mentioned semi-conductor solid-state light source fluorescent tube, said circuit board is arranged in two side semi-rings being cut apart by the middle vertical plane of said annular thermal conductive cavity.
Preferably, in above-mentioned semi-conductor solid-state light source fluorescent tube, in each annular heat conduction section, only have on the circuit board of a side light source device and heater members are installed.
Preferably, in above-mentioned semi-conductor solid-state light source fluorescent tube, light source device in two adjacent annular heat conduction sections and heater element are arranged on the circuit board of homonymy not.
Preferably, in above-mentioned semi-conductor solid-state light source fluorescent tube, said circuit board is arranged in some side semi-rings of being cut apart by the middle vertical plane of said annular thermal conductive cavity.
Preferably, in above-mentioned semi-conductor solid-state light source fluorescent tube, said circuit board with light source device adopts insulating coating technology, passivating technique or encapsulating technology to handle.
Preferably, in above-mentioned semi-conductor solid-state light source fluorescent tube, the inside of said internal layer shell has cavity;
Said internal layer shell is provided with groove structure vertically, said outer casing is provided with tongue structure vertically or satisfies above-mentioned two combining structure simultaneously.
Preferably, in above-mentioned semi-conductor solid-state light source fluorescent tube, the inside of said internal layer shell is provided with support frame.
Preferably, in above-mentioned semi-conductor solid-state light source fluorescent tube, said outer casing and internal layer shell all adopt glass or engineering plastics to process.
Compared with prior art, the technical scheme that provides of present embodiment has the following advantages and characteristics:
In scheme provided by the invention, the heat that light source device, heater members and circuit board send is directly passed to heat-conducting liquid, and with this heat transferred outer casing, outer casing is directly passed to the external world with heat to heat-conducting liquid again, so radiating effect is good; And fluorescent tube provided by the invention is with respect to the metal heat-conducting structure, and is simple in structure, and in manufacturing process, difficulty of processing is little, thereby saved time cost; In addition, heat-conducting liquid has light transmission, thus heat-conducting liquid can contact fully with light source device, heater members and circuit board, thereby increased the effective area of heat radiation, have bigger power output to guarantee light source device and heater members.
Description of drawings
In order to be illustrated more clearly in the present invention or technical scheme of the prior art; To do to introduce simply to the accompanying drawing of required use in embodiment or the description of the Prior Art below; Obviously; Accompanying drawing in describing below only is some embodiments of the present invention; For those of ordinary skills; Under the prerequisite of not paying creative work, can also obtain other accompanying drawing according to these accompanying drawings.
The front view of the semi-conductor solid-state light source fluorescent tube that Fig. 1 provides for the embodiment of the invention;
The sectional view of the semi-conductor solid-state light source fluorescent tube that Fig. 2 provides for the embodiment of the invention.
The specific embodiment
To combine the accompanying drawing in the embodiment of the invention below, the technical scheme in the embodiment of the invention is carried out clear, intactly description, obviously, described embodiment only is the present invention's part embodiment, rather than whole embodiment.Based on the embodiment among the present invention, those of ordinary skills are not making the every other embodiment that is obtained under the creative work prerequisite, all belong to the scope of the present invention's protection.
The embodiment of the invention provides a kind of semi-conductor solid-state light source fluorescent tube, because there is multiple mode in the concrete realization of this semi-conductor solid-state light source fluorescent tube, is elaborated through specific embodiment below:
See also illustrated in figures 1 and 2; Shown in Figure 1 is the front view of semi-conductor solid-state light source fluorescent tube provided by the invention; Shown in Figure 2 is the sectional view of semi-conductor solid-state light source fluorescent tube provided by the invention; This fluorescent tube comprises: outer casing 1; Be arranged on the internal layer shell 2 of said outer casing 1 inside; Be fixed between said internal layer shell 2 and the outer casing 1 and have light source device 3 and the circuit board 4 of heater members and the end unit 5 that is arranged on said outer casing 1 and internal layer shell 2 two ends; Wherein, Said outer casing 1; Form airtight annular thermal conductive cavity between internal layer shell 2 and the end unit 5, have heat-conducting liquid 7 in the said airtight annular thermal conductive cavity.In addition, heater members comprises devices such as resistance, inductance, diode, triode and integrated circuit.
In embodiment illustrated in figures 1 and 2; The heat that light source device 3, heater members and circuit board 4 send is directly passed to heat-conducting liquid 7; Heat-conducting liquid 7 is again with this heat transferred outer casing 1, and outer casing 1 is directly passed to the external world with heat, so radiating effect is good; And fluorescent tube provided by the invention is with respect to the metal heat-conducting structure, and is simple in structure, and in manufacturing process, difficulty of processing is little, thereby saved time cost; In addition, heat-conducting liquid 7 has light transmission, thus heat-conducting liquid 7 can contact fully with light source device 3, heater members and circuit board 4, thereby increased the effective area of heat radiation, to guarantee that light source device 3 has bigger power output.
In embodiment illustrated in figures 1 and 2; Fluorescent tube provided by the invention also comprises a plurality of insulating units 6 that are arranged between said outer casing 1 and the internal layer shell 2, and annular thermal conductive cavity is divided into a plurality of airtight heat insulation relatively annular heat conduction sections by said a plurality of insulating units 6.Wherein, Insulating unit 6 is realized by heat-insulating material or heat insulating construction; Axis direction perpendicular to internal layer shell 2 and outer casing 1; Be installed between internal layer shell 2 and the outer casing 1; Annular thermal conductive cavity between internal layer shell 2 and the outer casing 1 is divided into the annular heat conduction section that several do not have obvious heat exchange each other along axis direction, and the support between realization internal layer shell 2 and the outer casing 1 and light source device 3 and circuit board 4 is fixing.
In embodiment illustrated in figures 1 and 2, circuit board 4 both can be arranged in some side semi-rings of being cut apart by the middle vertical plane of said annular thermal conductive cavity, also can be arranged in two side semi-rings being cut apart by the middle vertical plane of annular thermal conductive cavity.When circuit board 4 is arranged on two side semi-rings; Only have in each annular heat conduction section on the circuit board of a side light source device 3 and heater members are installed, and the light source device in two adjacent annular heat conduction sections 3 and heater members are arranged on the circuit board 4 of homonymy not.Wherein,,, so just realized the both sides bright dipping, guaranteed the requirement of Illumination Distribution so can be in different sections light source device 3 be arranged on the circuit board 4 of homonymy not because insulating unit 6 has been separated out a plurality of annular heat conduction sections.Present embodiment can be arranged the position of light source device 3 according to the requirement of product light direction, but in same annular heat conduction section, light source device 3 is preferably arranged on the circuit board 4 of the same side with heater members.In addition, light source device 3 can adopt hard or flexible PCB assembly with circuit board 4.
In embodiment illustrated in figures 1 and 2, for fear of the electric leakage and the electrochemical reaction of heat-conducting liquid 7, the exposed metal/bare metal part of light source device 3 and circuit board 4 should be carried out the insulation processing of insulating coating processing, passivating technique, encapsulating technology or alternate manner.Overlay film require to guarantee good insulation performance ability, long-term reliability, and alap thermal resistance, and covering material should be compatible with the physics and the chemical property of heat-conducting liquid 7.When other insulation processing mode of employing, also should satisfy aforementioned requirement.
In embodiment illustrated in figures 1 and 2, the inside of internal layer shell 2 has cavity 22, and this internal layer shell 2 is provided with groove 23 vertically; The inside of said internal layer shell 2 is provided with support frame 21.Wherein, internal layer shell 2 can be processed by glass or engineering plastics, requires lower thermal conductivity; Can arrange support frame 21 in the internal cavities 22 of internal layer shell 2, to guarantee the planform of internal layer shell 2; Internal layer shell 2 can be reserved groove 23 in the position that light source device 3 and circuit board 4 are installed, and obtains bigger space, is convenient to the installation and the light path arrangement of circuit board 4, effectively reduces the volume of heat-conducting liquid 7, reduces the weight and the cost of product; Can threading in the cavity 22 or settle component, make things convenient for the electric connection of lamp tube ends.And the design of cavity of internal layer shell 2 22 and groove 23 can effectively reduce the bulbs of pressure of heat-conducting liquid 7, reduces the requirement of structural strength.When lamp works; Because of temperature raises; Expanding can appear in heat-conducting liquid 7; This moment, internal layer shell 2 can be to groove 23 direction deformation; Enlarge the space between the two-layer housing; Avoid outer casing 1 to bear overweight pressure load, thereby reduced the structural strength requirement of outer casing 1, simplified the design of outer casing 1.In addition,, also tongue structure vertically can be set on outer casing 1, the structure of groove or tongue perhaps is set on outer casing 1 and internal layer shell 2 simultaneously in order to reach same effect.
In embodiment illustrated in figures 1 and 2, outer casing 1 can be processed by clear glass or engineering plastics, requires than high thermal and light transmittance; Can require to adopt minute surface, frosting or grid face form according to product optics.In addition, end unit 5 is unit that lamp tube ends is responsible for sealing and power line is drawn.For straight fluorescent tube product, internal layer shell 2 can use hard material simultaneously with outer casing 1; For crooked fluorescent tube product, a kind of flexible material that uses in internal layer shell 2 and the outer casing 1 is so that produce.
In embodiment illustrated in figures 1 and 2; Falling heat-transfer liquid 7 in the annular heat conduction section of between internal layer shell 2 and outer casing 1 each; Heat-conducting liquid 7 can be conduction oil or mixed solution; Requirement possesses suitable light transmittance, electrical insulating property, thermal conductivity, specific heat capacity, temperature expansion coefficient and the coefficient of viscosity; Possess the fusing point, boiling point, the long-time stability that satisfy product requirement simultaneously, and fire-retardant requirement, environmental requirement and the toxicity requirement of satisfying product.
Briefly introduce the radiating principle of embodiment illustrated in figures 1 and 2 below: the annular heat conduction section that forms between internal layer shell 2 and the outer casing 1 and the one-sided installation of light source device 3 make heat-conducting liquid 7 form circulation automatically along the loop direction.From Fig. 2, can find, be provided with two circuit boards 4 in the annular thermal conductive cavity, wherein, a circuit board 4 comprises light source device 3 and heating component, and 4 of another circuit boards do not have.When lamp works, can be to demarcate to form cold/two semi-ring zones of heat with the middle vertical plane, wherein containing heat-conducting liquid 7 expanded by heating of light source device 3 with the hot-zone of heating component, proportion reduces.The cold-zone temperature of opposite side is relatively low, and proportion is bigger, therefore forms the pressure difference that the hot-zone is pointed in the cold-zone in the bottom, drives heat-conducting liquid 7 and is flowed to the hot-zone by the cold-zone.And after heat-conducting liquid 7 coolings at top; Replenish to the cold-zone; Thereby heat-conducting liquid 7 form heated side->top->no heated side->bottom->annularly flow of heated side; Shell is taken away and passed to light source device 3 and the heat that the heating component produces rapidly, further be dispersed into surrounding air.
In embodiment illustrated in figures 1 and 2, embodiment provided by the invention has following advantage in the heat radiation angle:
The first, light source device 3 and heater element integral body are immersed in the conductive fluid; Its heat can pass to heat-conducting liquid 7 rapidly; Crucial internal heat transfer interface; All be that liquid contacts with solid with outer casing, thereby guaranteed the reliability of hot transmission with heat-conducting liquid 7, heat-conducting liquid 7 like light source device 3.
The second, heat-conducting liquid 7 can form convection current in the annular heat conduction section that two side bodies are constituted, and obtains to conduct better heat-transfer effect than simple heat.The formation of convection current is to utilize ring-shaped liquid structure and one-sided heater element to arrange automatically to form, and need not the drive unit of liquid circulation, and simple in structure, reliability is high.
Three, the contact-making surface of whole fluorescent tube and extraneous air all is effective radiating surface, internal heat can be passed to surrounding air rapidly, so the area of dissipation utilization rate of fluorescent tube provided by the invention and external environment condition is high.
Four, for traditional solid heat transfer mode, because the thermal source device is distributed in different spatial positions, its heat-transfer capability there are differences, and causes the temperature rise between each thermal source device inconsistent, and product reliability will be by the poorest device decision of condition of work.And this programme is because the flowability of heat-conducting liquid 7; Each thermal source device can guarantee identical temperature rise basically; The situation of avoiding the product of the too high initiation of individual elements temperature rise to lose efficacy in advance; Product reliability can access sizable improvement, so the internal temperature high conformity of fluorescent tube provided by the invention.
Five, the adaptive ability that possesses radiating efficiency.Along with the increase of heating power, the temperature difference in cold and hot district increases, and hot-zone heat-conducting liquid 7 expands and aggravates, and proportion is littler, and pressure difference increases; Simultaneously, the coefficient of viscosity of liquid reduces under the high temperature, and the flowability of heat-conducting liquid 7 is higher.Above-mentioned two aspect combined factors effects make the liquid circulation accelerate, and heat conduction and heat-sinking capability are promoted synchronously.This characteristic makes entire circuit in than the power bracket of broad and ambient temperature range, keep more stable condition of work, can simplify circuit design, improves the stability and the photoelectric efficiency of product bright dipping.
Therefore, fluorescent tube provided by the invention has good heat conduction and radiating effect, thereby has effectively controlled the temperature rise of light source device 3, improves reliability of products and life-span.
In embodiment illustrated in figures 1 and 2, embodiment provided by the invention has following advantage aspect manufacturability and cost:
The first, the applied material of scheme provided by the invention is main with glass and engineering plastics, with general approach the metal of the main aluminium that adopts, copper and so on compare, its volume unit price possesses clear superiority.
The second, structural design that scheme provided by the invention adopted and material; The technology that be suitable for extruding, stretching, injection moulding etc. is suitable for large-scale production; With the metal cutting of general approach, dash mill, technology such as fin spiral-lock compares; It is easier to process; Yield rate guarantees that more easily processing cost is lower;
Three, structural design that scheme provided by the invention adopted and the processing technology that designed can reduce the generation of waste material, leftover pieces, improve stock utilization, further reduce the material cost of product;
Four, scheme provided by the invention can reduce the area of area, the especially PCB of circuit unit to greatest extent, reduces circuit cost.
Therefore, fluorescent tube provided by the invention has favorable manufacturability and lower cost.
In embodiment illustrated in figures 1 and 2, embodiment provided by the invention has following advantage aspect product:
The first, product provided by the invention is the primary structure material with glass or engineering plastics mainly, thereby can make product more attractive in appearance, lighter and handier.
The second, with respect to aluminium of the prior art, copper metal fins radiating mode; If the product long-term work is under the environment of humidity, many dirt, corrosion can appear in the metal surface, and laying dust appears in fin inboard easily; Both of these case can have a strong impact on its radiating effect for the fin radiating mode.Then there is not this problem in scheme of the present invention; The first does not have the corrosion problem of metal material; It two is no fin heat-dissipating casings, and therefore the tolerance for moist and dirty environment will be better than the metal fins scheme far away, so product provided by the invention has better environmental suitability.
Three,, prevent the factor that necessary emphasis was considered when body leakage was design and production with respect to the electric equipment products that adopt the metal shell radiating mode.And because this programme adopts glass or engineering plastics shell, itself be the insulator of electricity, so the design aspect anticreep is much simple, security of products has better assurance.
Four, because the heat exchanger effectiveness of the liquid thermal conductivity that this programme adopted is higher; Therefore can obtain bigger light source device arranging density; Make that the light path design of product is simpler; Particularly for some occasion that has special light path to require; Advantage is more obvious; So the light path design of product provided by the invention is easier, illumination efficiency is higher.
Five, because this product dependence shell is direct and surrounding air exchanges heat radiation, need not other thermal component, the limiting factor that receives is few; Under the condition that adopts flexible inner casing or soft shell, can realize complicated shapes such as bend pipe, coil pipe easily, and need not special technology or equipment, so scheme provided by the invention can realize complicated shape.
Six, for related product of the present invention, the tube wall area of whole fluorescent tube all can carry out heat exchange with surrounding air, and the efficiently radiates heat area of external environment condition is obviously promoted; Shell for given diameter; Its heat-sinking capability is linear with fluorescent tube length basically; Consider aforementioned attainable bend pipe, coil shape; Can be in the space that limits the effective length of prolonging lamp tube greatly; Add the good result of the mode of this programme liquid circulating heat conduction; The permission power output that feasible acquisition is bigger becomes possibility, so product provided by the invention has the ability of bigger power output.
Multiple modification to these embodiment will be conspicuous concerning those skilled in the art, and defined General Principle can realize under the situation that does not break away from the spirit or scope of the present invention in other embodiments among this paper.Therefore, the present invention will can not be restricted to these embodiment shown in this paper, but will meet and principle disclosed herein and features of novelty the wideest corresponding to scope.

Claims (10)

1. a semi-conductor solid-state light source fluorescent tube is characterized in that, comprising:
Outer casing;
Be arranged on the inner internal layer shell of said outer casing;
Be fixed between said internal layer shell and the outer casing, and have the circuit board of light source device and heater members;
Be arranged on the end unit at said outer casing and internal layer shell two ends;
Wherein, form airtight annular thermal conductive cavity between said outer casing, internal layer shell and the end unit, have heat-conducting liquid in the said airtight annular thermal conductive cavity.
2. semi-conductor solid-state light source fluorescent tube according to claim 1 is characterized in that, also comprises a plurality of insulating units that are arranged between said outer casing and the internal layer shell;
Said annular thermal conductive cavity is divided into a plurality of airtight annular heat conduction sections by said a plurality of insulating units.
3. semi-conductor solid-state light source fluorescent tube according to claim 2 is characterized in that, said circuit board is arranged in two side semi-rings being cut apart by the middle vertical plane of said annular thermal conductive cavity.
4. semi-conductor solid-state light source fluorescent tube according to claim 3 is characterized in that, in each annular heat conduction section, only has on the circuit board of a side light source device and heater members are installed.
5. semi-conductor solid-state light source fluorescent tube according to claim 4 is characterized in that, light source device in two adjacent annular heat conduction sections and heater element are arranged on the circuit board of homonymy not.
6. semi-conductor solid-state light source fluorescent tube according to claim 2 is characterized in that, said circuit board is arranged in some side semi-rings of being cut apart by the middle vertical plane of said annular thermal conductive cavity.
7. semi-conductor solid-state light source fluorescent tube according to claim 1 is characterized in that, said circuit board with light source device adopts insulating coating technology, passivating technique or encapsulating technology to handle.
8. semi-conductor solid-state light source fluorescent tube according to claim 1 is characterized in that the inside of said internal layer shell has cavity;
Said internal layer shell is provided with groove structure vertically, said outer casing is provided with tongue structure vertically or satisfies above-mentioned two combining structure simultaneously.
9. semi-conductor solid-state light source fluorescent tube according to claim 8 is characterized in that the inside of said internal layer shell is provided with support frame.
10. according to any described semi-conductor solid-state light source fluorescent tube of claim 1 to 9, it is characterized in that said outer casing and internal layer shell all adopt glass or engineering plastics to process.
CN201110175311A 2011-06-27 2011-06-27 Solid semiconductor light source tube Pending CN102305359A (en)

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CN201110175311A CN102305359A (en) 2011-06-27 2011-06-27 Solid semiconductor light source tube

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CN201110175311A CN102305359A (en) 2011-06-27 2011-06-27 Solid semiconductor light source tube

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103953862A (en) * 2014-04-10 2014-07-30 东莞市益科照明科技有限公司 Oil-cooling-method LED (light-emitting diode) lamp manufacturing method and LED lamp thereof
CN112437572A (en) * 2020-11-30 2021-03-02 华为技术有限公司 Power adapter

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5890794A (en) * 1996-04-03 1999-04-06 Abtahi; Homayoon Lighting units
KR20090065772A (en) * 2007-12-18 2009-06-23 서울반도체 주식회사 Led lamp with heat dissipation structure for surface light source
CN101655189A (en) * 2009-07-16 2010-02-24 艾迪光电(杭州)有限公司 Hollow liquid cooling LED bar-shaped lamp

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5890794A (en) * 1996-04-03 1999-04-06 Abtahi; Homayoon Lighting units
KR20090065772A (en) * 2007-12-18 2009-06-23 서울반도체 주식회사 Led lamp with heat dissipation structure for surface light source
CN101655189A (en) * 2009-07-16 2010-02-24 艾迪光电(杭州)有限公司 Hollow liquid cooling LED bar-shaped lamp

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103953862A (en) * 2014-04-10 2014-07-30 东莞市益科照明科技有限公司 Oil-cooling-method LED (light-emitting diode) lamp manufacturing method and LED lamp thereof
CN103953862B (en) * 2014-04-10 2019-01-04 衢州蘑菇网络科技有限公司 A kind of the LED light manufacturing method and its LED light of the oil type of cooling
CN112437572A (en) * 2020-11-30 2021-03-02 华为技术有限公司 Power adapter

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Application publication date: 20120104