CN104183582A - LED lamp core combined light source - Google Patents

LED lamp core combined light source Download PDF

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Publication number
CN104183582A
CN104183582A CN201410354866.2A CN201410354866A CN104183582A CN 104183582 A CN104183582 A CN 104183582A CN 201410354866 A CN201410354866 A CN 201410354866A CN 104183582 A CN104183582 A CN 104183582A
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CN
China
Prior art keywords
electric
fracture
insulation fracture
substrate
led lamp
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.)
Pending
Application number
CN201410354866.2A
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Chinese (zh)
Inventor
廖志勇
王闽
黄黎帆
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.)
XIAMEN HANFENG OPTOELECTRONICS TECHNOLOGY Co Ltd
Original Assignee
XIAMEN HANFENG OPTOELECTRONICS TECHNOLOGY 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.)
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Publication date
Application filed by XIAMEN HANFENG OPTOELECTRONICS TECHNOLOGY Co Ltd filed Critical XIAMEN HANFENG OPTOELECTRONICS TECHNOLOGY Co Ltd
Priority to CN201410354866.2A priority Critical patent/CN104183582A/en
Publication of CN104183582A publication Critical patent/CN104183582A/en
Pending legal-status Critical Current

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Abstract

The invention relates to an LED lamp core combined light source which is formed by combining multiple independent LED lamp cores, and aims at solving problems in LED lamp core fixation and circuit connection as well as problems of being low in yield, high in cost and difficult to popularize. Vertical electrical portions as LED lamp cores are connected via first and second transverse electric portions so that the vertical electrical portions are integrated and the vertical electric portions are uniformly and orderly arranged, thereby avoiding the procedure of assembling LED lamp cores manually, and being high in product consistency, stable in quality and high in yield. Upper and lower insulating fractures are respectively formed in the first and second transverse electrical portions, the amount of the vertical electrical portions between the upper and lower insulating fractures is set to obtain different circuit combinations of the vertical electrical portions, thus, combined LED lamp cores of different specifications can be conveniently made, and the increasing demands can be met.

Description

LED wick combined light source
Technical field
The present invention relates to LED lighting technology, relate in particular to a kind of LED wick combined light source being combined by multiple LED wicks.
Background technology
LED unit is arranged on long-bar metal substrate, and is aided with related circuit and fluorescence encapsulated layer, a kind of strip luminous element of making is LED wick.Because LED wick shape is elongated, the light that single led wick is launched is too faint, can not meet lighting requirement.In actual use, often multiple LED wicks are used in combination, to increase global illumination brightness.
At present, multiple independently LED wicks are combined to mode, be faced with the fixing problem being connected with circuit of each LED wick.Up to the present, the work of assembled LED wick also main dependence manually completes, and because LED wick size is long and narrow, clamping and assembly difficulty are large, and manual work precision is low, and assembly quality depends on operating personnel's consummate degree and experience to a great extent; In addition, thin as high in the wire bonds difficulty of hair, rate of finished products is low, causes high cost, is difficult to popularize.Because difficulty of processing is large, also cause fertile specification number very few, be difficult to meet the need of market.
In view of this, a kind of novel wick structure of necessary research and development, to make up the deficiencies in the prior art.
Summary of the invention
The object of the invention is to propose a kind of LED wick combined light source, easily, rate of finished products is high, can be combined into plurality of specifications and meet the need of market in LED wick combined light source assembling of the present invention.
In order to reach above-mentioned purpose, technical scheme of the present invention is.
LED wick combined light source, formed by LED unit and substrate and fluorescence encapsulated layer, LED unit connects substrate, the electrode of LED unit and substrate electrical connection, the coated LED unit of fluorescence encapsulated layer and substrate, substrate is made up of the first electric transverse part and the second electric transverse part and the electric longitudinal part that is connected the first electric transverse part and the second electric transverse part; On the first electric transverse part, there is upper insulation fracture by the first electric transverse part electric insulation, on the second electric transverse part, there is lower insulation fracture by the second electric transverse part electric insulation; Upper insulation fracture and lower insulation fracture stagger mutually, with only having the fracture that insulate under a upper insulation fracture or between a pair of adjacent electric longitudinal part; Between the upper insulation fracture closing on and lower insulation fracture, at least there is an electric longitudinal part.
In certain embodiments, in a certain section of substrate, close on to have between fracture and lower insulation fracture and there is the electric longitudinal part of odd number, in another a certain section of substrate, between the upper insulation fracture closing on and lower insulation fracture, there is the electric longitudinal part of even number.
In certain embodiments, in a certain section of substrate, between the upper insulation fracture closing on and lower insulation fracture, there is an electric longitudinal part, in another a certain section of substrate, between the upper insulation fracture closing on and lower insulation fracture, there are two electric longitudinal parts.
In certain embodiments, in whole substrate, between the upper insulation fracture closing on and lower insulation fracture, only there is an electric longitudinal part.
In certain embodiments, in whole substrate, between the upper insulation fracture closing on and lower insulation fracture, only there are two electric longitudinal parts.
The present invention with electric longitudinal part as LED wick, and be connected each electric longitudinal part with the second electric transverse part with the first electric transverse part, make to be connected as the electric longitudinal part of LED wick, each longitudinal part is arranged uniform sequential, can remove the operation of manual assembly LED wick from, homogeneity of product is high, steady quality, and rate of finished products is high.The present invention offers insulate fracture and lower insulation fracture on the first electric transverse part and the second electric transverse part, closes on the number of the electric longitudinal part having between fracture that insulate up and down by setting, can obtain the different circuit combinations between electric longitudinal part.Such as, can obtain the circuit of series connection combination completely between electric longitudinal part; For another example, can obtain between two electric longitudinal part and be unified into a pair of, to between connect and tandem compound; Also such as, can obtain the hybrid combining in parallel between some electric longitudinal part of connecting between some electric longitudinal part; The combination of the obtainable circuit of the present invention can have more and need to arrange out, is difficult to exhaustively, can produce easily the Combined Led Light Up core of plurality of specifications, can meet growing demand.
The present invention is further elaborated in the mode of embodiment below with reference to accompanying drawing.
Brief description of the drawings
Fig. 1 is substrate structural scheme of mechanism of the present invention;
Fig. 2 is the embodiment of the present invention one circuit combination schematic diagram;
Fig. 3 is the embodiment of the present invention two circuit combination schematic diagrames;
Fig. 4 is embodiment of the present invention three-circuit combination schematic diagram;
Fig. 5 is the embodiment of the present invention four circuit combination schematic diagrames.
Description of reference numerals:
11 ... the first electric transverse part 11a ... position mark 11b ... position mark 11c ... position mark
11A ... upper insulation fracture 11B ... upper insulation fracture 11C ... upper insulation fracture 11D ... upper insulation fracture
11E ... upper insulation fracture 11F ... upper insulation fracture 11G ... upper insulation fracture
12 ... the second electric transverse part 12a ... position mark 12b ... position mark 12c ... position mark
12A ... lower insulation fracture 12B ... lower insulation fracture 12C ... lower insulation fracture 12D ... lower insulation fracture
12E ... lower insulation fracture 12F ... lower insulation fracture 12G ... lower insulation fracture 12H ... lower insulation fracture
12I ... lower insulation fracture 12J ... lower insulation fracture 20 ... electric longitudinal part 20a ... electric longitudinal part
20b ... electric longitudinal part 20c ... electric longitudinal part 20d ... electric longitudinal part 20e ... electric longitudinal part
20f ... electric longitudinal part 20g ... electric longitudinal part 20h ... electric longitudinal part 30 ... LED unit
31 ... electrode cable.
Embodiment
As shown in Figure 1, LED wick combined light source of the present invention has LED unit 30 and substrate, and substrate has the first electric transverse part 11 and the electric transverse part 12 of a little and connection and forms with several the electric longitudinal parts 20 between the first electric transverse part 11 and the second electric transverse part 12.LED unit 30 connects electric longitudinal part 20, and the electrode of LED unit is electrically connected by electrode cable 31 and electric longitudinal part 20, between each LED unit 30 and electric longitudinal part 20, forms series loop.Fluorescence encapsulated layer of the present invention will be coated LED unit 30 and substrate, for show internal structure, omit the signal about fluorescence encapsulated layer in Fig. 1.
Fig. 1 is the figure that blocks of substrate of the present invention, and substrate of the present invention repeats structure shown in Fig. 1.Upper insulation fracture of the present invention can be on one or several in position mark 11a or position mark 11b or position mark 11c.Lower insulation fracture of the present invention can be on one or several in position mark 12b or position mark 12b or position mark 12c.
Embodiment mono-
Saving length, in the present embodiment and other embodiment, will represent substrate with solid line, omit signal substrate LED unit and electrode cable structure thereof.
As shown in Figure 2, on the electric transverse part 11 of the present embodiment first, there is upper insulation fracture 11A and 11B, on the second electric transverse part 12, there is lower insulation fracture 12A, 12B, 12C, 12D.Between upper insulation fracture 11A and lower insulation fracture 12A, there is an electric longitudinal part 20a; Between upper insulation fracture 11A and 12B, there is an electric longitudinal part 20b; Upper insulation fracture 11A and lower insulation fracture 12A and lower insulation fracture 12B make to form and connect between electric longitudinal part 20h and electric longitudinal part 20a and electric longitudinal part 20b.
Between upper insulation fracture 11B and lower insulation fracture 12C, there is electric longitudinal part 20e and electric longitudinal part 20f; Between lower insulation fracture 12B and lower insulation fracture 12C, there is electric longitudinal part 20c and electric longitudinal part 20d; Upper insulation fracture 11B and lower insulation fracture 12C make electric longitudinal part 20e and electric longitudinal part 20f parallel connection, lower insulation fracture 12B and lower insulation fracture 12C make electric longitudinal part 20c and electric longitudinal part 20d parallel connection, the electric longitudinal part series connection of two couples after the above-mentioned parallel connection of lower insulation fracture 12C.
Between upper insulation fracture 11B and lower insulation fracture 12D, there is an electric longitudinal part 20g; Upper insulation fracture 11B and lower insulation fracture 12D make electric longitudinal part 20g and electric longitudinal part 20f with the parallel connection of electric longitudinal part 20e composition to connecting.
Embodiment bis-
As shown in Figure 3, on the electric transverse part 11 of the present embodiment first, there is upper insulation fracture 11C, 11D, 11E; On the second electric transverse part 12, there is lower insulation fracture 12E, 12F, 12G.In the present embodiment, between the upper insulation fracture closing on and lower insulation fracture, only there is an electric longitudinal part, make to form and be connected in series between electric longitudinal part 20a, 20b, 20c, 20d, 20e, 20f, 20g.
Embodiment tri-
As shown in Figure 4, on the electric transverse part 11 of the present embodiment first, there is upper insulation fracture 11F; On the second electric transverse part 12, there is lower insulation fracture 12H, 12I.In the present embodiment, between the upper insulation fracture closing on and lower insulation fracture, only there are two electric longitudinal parts, make after parallel connection between two, to connect again between electric longitudinal part 20a, 20b, 20c, 20d, 20e, 20f, 20g.
Embodiment tetra-
As shown in Figure 5, on the electric transverse part 11 of the present embodiment first, there is upper insulation fracture 11G; On the second electric transverse part 12, there is lower insulation fracture 12J.In the present embodiment, between the upper insulation fracture closing on and lower insulation fracture, only there are three electric longitudinal parts, make after every 3 parallel connections, to connect again between electric longitudinal part 20a, 20b, 20c, 20d, 20e, 20f, 20g.
Above-described embodiment is only used to understand the present invention and the elaboration done, can not serve as limitation of the invention.Modified conversion and equivalent modifications that anyone does on basis of the present invention again all should be considered as not departing from the spirit of not inventing, and protection scope of the present invention is with being as the criterion of recording in claims.

Claims (5)

1.LED wick combined light source, formed by LED unit and substrate and fluorescence encapsulated layer, LED unit connects substrate, the electrode of LED unit and substrate electrical connection, the coated LED unit of fluorescence encapsulated layer and substrate, it is characterized in that, substrate is made up of the first electric transverse part and the second electric transverse part and the electric longitudinal part that is connected the first electric transverse part and the second electric transverse part; On the first electric transverse part, there is upper insulation fracture by the first electric transverse part electric insulation, on the second electric transverse part, there is lower insulation fracture by the second electric transverse part electric insulation; Upper insulation fracture and lower insulation fracture stagger mutually, with only having the fracture that insulate under a upper insulation fracture or between a pair of adjacent electric longitudinal part; Between the upper insulation fracture closing on and lower insulation fracture, at least there is an electric longitudinal part.
2. LED wick combined light source according to claim 1, it is characterized in that, in a certain section of substrate, on closing on, have between fracture and lower insulation fracture and there is the electric longitudinal part of odd number, in another a certain section of substrate, between the upper insulation fracture closing on and lower insulation fracture, there is the electric longitudinal part of even number.
3. LED wick combined light source according to claim 2, it is characterized in that, in a certain section of substrate, between the upper insulation fracture closing on and lower insulation fracture, there is an electric longitudinal part, in another a certain section of substrate, between the upper insulation fracture closing on and lower insulation fracture, there are two electric longitudinal parts.
4. LED wick combined light source according to claim 1, is characterized in that, in whole substrate, between the upper insulation fracture closing on and lower insulation fracture, only has an electric longitudinal part.
5. LED wick combined light source according to claim 1, is characterized in that, in whole substrate, between the upper insulation fracture closing on and lower insulation fracture, only has two electric longitudinal parts.
CN201410354866.2A 2014-07-24 2014-07-24 LED lamp core combined light source Pending CN104183582A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201410354866.2A CN104183582A (en) 2014-07-24 2014-07-24 LED lamp core combined light source

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201410354866.2A CN104183582A (en) 2014-07-24 2014-07-24 LED lamp core combined light source

Publications (1)

Publication Number Publication Date
CN104183582A true CN104183582A (en) 2014-12-03

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Family Applications (1)

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CN201410354866.2A Pending CN104183582A (en) 2014-07-24 2014-07-24 LED lamp core combined light source

Country Status (1)

Country Link
CN (1) CN104183582A (en)

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6195583A (en) * 1984-10-16 1986-05-14 Stanley Electric Co Ltd Manufacture of surface light source using led
US5278432A (en) * 1992-08-27 1994-01-11 Quantam Devices, Inc. Apparatus for providing radiant energy
CN1901189A (en) * 2006-06-30 2007-01-24 广州南科集成电子有限公司 Plane flip-chip LED integrated chip and producing method
CN203367277U (en) * 2013-07-01 2013-12-25 临安市新三联照明电器有限公司 A cylindrical LED filament
CN103604060A (en) * 2013-11-27 2014-02-26 江苏华英光宝科技股份有限公司 Multi-connected LED core and stereoscopic light-emitting pattern LED bulb comprising same
CN204029798U (en) * 2014-07-24 2014-12-17 厦门市瀚锋光电科技有限公司 LED wick combined light source

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6195583A (en) * 1984-10-16 1986-05-14 Stanley Electric Co Ltd Manufacture of surface light source using led
US5278432A (en) * 1992-08-27 1994-01-11 Quantam Devices, Inc. Apparatus for providing radiant energy
CN1901189A (en) * 2006-06-30 2007-01-24 广州南科集成电子有限公司 Plane flip-chip LED integrated chip and producing method
CN203367277U (en) * 2013-07-01 2013-12-25 临安市新三联照明电器有限公司 A cylindrical LED filament
CN103604060A (en) * 2013-11-27 2014-02-26 江苏华英光宝科技股份有限公司 Multi-connected LED core and stereoscopic light-emitting pattern LED bulb comprising same
CN204029798U (en) * 2014-07-24 2014-12-17 厦门市瀚锋光电科技有限公司 LED wick combined light source

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Application publication date: 20141203

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