CN105065951A - Light source integrating floodlight and spotlight and system thereof - Google Patents

Light source integrating floodlight and spotlight and system thereof Download PDF

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Publication number
CN105065951A
CN105065951A CN201510551723.5A CN201510551723A CN105065951A CN 105065951 A CN105065951 A CN 105065951A CN 201510551723 A CN201510551723 A CN 201510551723A CN 105065951 A CN105065951 A CN 105065951A
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CN
China
Prior art keywords
lamp pearl
silicon chip
copper traces
negative pole
described lamp
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CN201510551723.5A
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Chinese (zh)
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CN105065951B (en
Inventor
吕建飞
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Ningbo Yinzhou Sista Lighting Technology Co.,Ltd.
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Ningbo Nai Sida Photoelectric Co Ltd
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Priority to CN201510551723.5A priority Critical patent/CN105065951B/en
Priority to PCT/CN2015/089509 priority patent/WO2017035868A1/en
Publication of CN105065951A publication Critical patent/CN105065951A/en
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Publication of CN105065951B publication Critical patent/CN105065951B/en
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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S2/00Systems of lighting devices, not provided for in main groups F21S4/00 - F21S10/00 or F21S19/00, e.g. of modular construction
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V19/00Fastening of light sources or lamp holders
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V19/00Fastening of light sources or lamp holders
    • F21V19/001Fastening of light sources or lamp holders the light sources being semiconductors devices, e.g. LEDs
    • F21V19/0015Fastening arrangements intended to retain light sources
    • F21V19/0025Fastening arrangements intended to retain light sources the fastening means engaging the conductors of the light source, i.e. providing simultaneous fastening of the light sources and their electric connections
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V23/00Arrangement of electric circuit elements in or on lighting devices
    • F21V23/001Arrangement of electric circuit elements in or on lighting devices the elements being electrical wires or cables

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Led Device Packages (AREA)
  • Fastening Of Light Sources Or Lamp Holders (AREA)
  • Arrangement Of Elements, Cooling, Sealing, Or The Like Of Lighting Devices (AREA)

Abstract

The invention relates to a light source integrating floodlight and spotlight and a system thereof. The light source comprises an aluminum substrate, a light dam, at least one lamp bead and a plurality of silicon wafer LEDs. A lamp bead negative pole copper film wire, a lamp bead positive pole copper film wire and a silicon wafer negative pole copper film wire are fixed to the aluminum substrate. The two ends of each silicon wafer LED are connected between the lamp bead positive pole copper film wire and the silicon wafer negative pole copper film wire in a bridging mode. The lower end of the lamp dam is fixed to the aluminum substrate. The lamp bead is fixed to the aluminum substrate and connected between the lamp bead negative pole copper film wire and the lamp bead positive pole copper film wire in a bridging mode. The lamp bead is located in the lamp dam. A silica gel mould is arranged in the lamp dam. The silica gel mould covers the silicon wafer LEDs. The upper end of the lamp bead protrudes out of the upper surface of the silica gel mould. According to the light source and the system thereof, floodlight and spotlight are combined on the same substrate, switching is convenient, and cost for adjustable floodlight and spotlight structural design of an illumination product is effectively reduced. Meanwhile, external accessory cost of the product can also be greatly reduced.

Description

A kind of light source and system thereof collecting floodlight, be concentrated on one
Technical field
The present invention relates to lighting field, particularly relate to a kind of light source and the system thereof that collect floodlight, be concentrated on one.
Background technology
COMMB-LED light source technology Chinese implication is interpreted as LED chip and is directly attached to the integrated area source technology of specular removal on the mirror metal substrate of high reflecting rate, this technology eliminates support concept, electroless plating, without Reflow Soldering, without paster operation, therefore operation reduces nearly 1/3rd, and cost also saves 1/3rd.Because this light source is area source, the use on floodlight product is particularly convenient, but the long drive illumination of illuminating industry just to seem blemish in an otherwise perfect thing, as night rides out of doors.Current outdoor lighting industry realizes long drive and all adopts single-chip LED, by regulating the distance between optically focused thing and LED to realize floodlight and optically focused, or by investigation on several focus reflectors by light collection, realize optically focused, but this mode can not regulate floodlight simultaneously.
Summary of the invention
Technical problem to be solved by this invention is for above-mentioned the deficiencies in the prior art, provides a kind of and collect floodlight, is concentrated on the light source of one.
The technical scheme that the present invention solves the problems of the technologies described above is as follows: a kind of collection floodlight, be concentrated on the light source of one, comprise aluminium base, lamp dam, at least one lamp pearl and some silicon chip LED, described aluminium base is tabular, described aluminium base upper surface scribbles white oil, and described aluminium base is fixed with lamp pearl negative pole plurality of copper traces, lamp pearl positive pole plurality of copper traces and silicon chip negative pole plurality of copper traces, the two ends of each described silicon chip LED are all connected across between described lamp pearl positive pole plurality of copper traces and silicon chip negative pole plurality of copper traces, described lamp dam is the frame structure that border is less than described aluminium base, and the lower end on described lamp dam is fixed on described aluminium base, described lamp pearl to be fixed on described aluminium base and to be connected across between described lamp pearl negative pole plurality of copper traces and lamp pearl positive pole plurality of copper traces, described lamp pearl is positioned at the frame structure on described lamp dam, shaping Silicon moulds is provided with in described lamp dam, and described Silicon moulds covers described silicon chip LED, the upper surface of described Silicon moulds is given prominence in the upper end of described lamp pearl.
On the basis of technique scheme, the present invention can also do following improvement:
Further: lamp pearl negative pole plurality of copper traces, lamp pearl positive pole plurality of copper traces and silicon chip negative pole plurality of copper traces on described aluminium base specifically arrange as follows:
Described lamp pearl negative pole plurality of copper traces two ends are respectively equipped with lamp pearl cathode contact, are provided with at least one lamp pearl negative terminal pad in the middle part of described lamp pearl negative pole plurality of copper traces, and the negative pole of each described lamp pearl welds with a described lamp pearl negative terminal pad;
Described lamp pearl positive pole plurality of copper traces two ends are respectively equipped with lamp pearl cathode contact, at least one lamp pearl positive terminal pad is provided with in the middle part of described lamp pearl positive pole plurality of copper traces, and the positive pole of each described lamp pearl welds with a described lamp pearl positive terminal pad, described lamp pearl positive pole plurality of copper traces is positioned at described lamp pearl positive terminal pad both sides and is respectively equipped with several silicon chip positive pole settlements, the positive pole of each described silicon chip LED welds with a silicon chip positive pole settlement;
Described silicon chip negative pole plurality of copper traces two ends are respectively equipped with silicon chip cathode contact, quantity and one to one silicon chip heat radiation point identical with described silicon chip positive pole settlement is provided with in the middle part of described silicon chip negative pole plurality of copper traces, in the middle part of described silicon chip negative pole plurality of copper traces, described silicon chip heat radiation point is provided with quantity and one to one silicon chip negative pole settlement identical with described silicon chip heat radiation point away from side, described silicon chip positive pole settlement, the lamp body of each described silicon chip LED is fixed on described silicon chip heat radiation point upper surface, and the negative pole of each described silicon chip LED welds with a silicon chip negative pole settlement.
The beneficial effect of above-mentioned further scheme is: by arranging described lamp pearl negative pole plurality of copper traces, lamp pearl positive pole plurality of copper traces and silicon chip negative pole plurality of copper traces, can facilitate and control separately described lamp pearl or described silicon chip LED, facilitating the switching of floodlight and spotlight.
Further: the described lamp pearl negative terminal pad that same described lamp bead weld connects and described lamp pearl positive terminal pad along the length direction alignment of described aluminium base and adjacent spaces arrange
The beneficial effect of above-mentioned further scheme is: can ensure that described lamp pearl is positioned at the middle part of described aluminium base by the way, thus obtains comparatively uniform spotlight effect.
Further: described silicon chip positive pole settlement is evenly arranged on the both sides of described lamp pearl positive terminal pad in described lamp pearl positive pole plurality of copper traces.
The beneficial effect of above-mentioned further scheme is: can ensure that described silicon chip LED is evenly distributed on the both sides of described aluminium base by the way, thus obtains comparatively uniform floodlight effect.
Further: described silicon chip positive pole settlement, silicon chip heat radiation point and silicon chip negative pole settlement three are also arranged at interval along the width alignment of described aluminium base.
The beneficial effect of above-mentioned further scheme is: the floodlight effect that can strengthen described silicon chip LED by the way further.
Further: described lamp pearl cathode contact is connected with external power source positive pole, and external power source negative pole is connected with described lamp pearl cathode contact or silicon chip cathode contact by switch.
The beneficial effect of above-mentioned further scheme is: can switch described lamp pearl very easily by external switch and described silicon chip LED lights, thus realizes the switching of optically focused light or floodlight light more easily.
Further: the surface of described lamp pearl negative pole plurality of copper traces, lamp pearl positive pole plurality of copper traces and silicon chip negative pole plurality of copper traces is coated with the white oil with electric insulation function.
The beneficial effect of above-mentioned further scheme is: by applying white oil on the surface of described lamp pearl negative pole plurality of copper traces, lamp pearl positive pole plurality of copper traces and silicon chip negative pole plurality of copper traces, the electrical insulation properties of itself and aluminium base can be strengthened further, improve the stability of power supply, extend the service life of light source.
Further: described lamp pearl is XQ-E light source.
Further: described aluminium base to be also provided with multiple lamp dams pad, described lamp dam pad solder is passed through on described aluminium base in the lower end on described lamp dam.
The beneficial effect of above-mentioned further scheme is: can be securely fixed on described aluminium base by described lamp dam by the way, extends the service life of light source.
Present invention also offers a kind of light-source system collecting floodlight, be concentrated on one, comprise for regulating the voltage regulator of described lamp pearl or silicon chip LED luminance and described collection floodlight, being concentrated on the light source of one, described voltage regulator and described collection floodlight, be concentrated on light source integrally and be connected.
The invention has the beneficial effects as follows: a kind of light source and system thereof collecting floodlight, be concentrated on one of the present invention, floodlight can be realized and optically focused is combined on same substrate, and obstructedly overregulate optically focused thing to realize, only need be switched by switch position, convenient achieves optically focused and floodlight, has good radiating effect, effectively reduces the cost that illuminating product designs at adjustable floodlight and concentration structure, meanwhile, the outer accessory cost of product also can significantly reduce.
Accompanying drawing explanation
Fig. 1 is a kind of light-source structure schematic diagram collecting floodlight, be concentrated on one of the present invention;
Fig. 2 is a kind of aluminium base front view collecting floodlight, be concentrated on the light source of one of the present invention.
In accompanying drawing, the list of parts representated by each label is as follows:
1, aluminium base, 2, lamp dam, 3, Silicon moulds, 4, lamp pearl, 5, silicon chip LED;
11, lamp pearl negative pole plurality of copper traces, 12, lamp pearl positive pole plurality of copper traces, 13, silicon chip negative pole plurality of copper traces, 14, lamp dam pad;
111, lamp pearl cathode contact, 112, lamp pearl negative terminal pad, 121, lamp pearl cathode contact, 122, lamp pearl positive terminal pad, 123, silicon chip positive pole settlement, 131, silicon chip cathode contact, 132, silicon chip heat radiation point, 133, silicon chip negative pole settlement.
Detailed description of the invention
Be described principle of the present invention and feature below in conjunction with accompanying drawing, example, only for explaining the present invention, is not intended to limit scope of the present invention.
As shown in Figure 1, a kind of collection floodlight, be concentrated on the light-source structure schematic diagram of one, comprise aluminium base 1, lamp dam 2, at least one lamp pearl 4 and some silicon chip LED5, described aluminium base 1 is tabular, described aluminium base 1 upper surface scribbles white oil, and described aluminium base 1 is fixed with lamp pearl negative pole plurality of copper traces 11, lamp pearl positive pole plurality of copper traces 12 and silicon chip negative pole plurality of copper traces 13, the two ends of each described silicon chip LED5 are all connected across between described lamp pearl positive pole plurality of copper traces 12 and silicon chip negative pole plurality of copper traces 13, the frame structure of described lamp dam 2 described aluminium base 1 for border is less than, and the sealing of the lower end on described lamp dam 2 is fixed on described aluminium base 1, described lamp pearl 4 to be fixed on described aluminium base 1 and to be connected across between described lamp pearl negative pole plurality of copper traces 11 and lamp pearl positive pole plurality of copper traces 12, described lamp pearl 4 is positioned at the frame structure on described lamp dam 2, shaping Silicon moulds 3 is provided with in described lamp dam 2, and described Silicon moulds 3 covers described silicon chip LED5, the upper surface of described Silicon moulds 3 is given prominence in the upper end of described lamp pearl 4.
As can be seen from Figure 1, described aluminium base 1 is rectangle platy structure, but is not limited only to rectangle platy structure here, and other shapes (such as: circle, rhombus etc.) are also passable, as long as can realize the problem to be solved in the present invention.
Wherein, as shown in Figure 2, the lamp pearl negative pole plurality of copper traces 11 on described aluminium base 1, lamp pearl positive pole plurality of copper traces 12 and silicon chip negative pole plurality of copper traces 13 specifically arrange as follows:
Described lamp pearl negative pole plurality of copper traces 11 two ends are respectively equipped with lamp pearl cathode contact 111, are provided with at least one lamp pearl negative terminal pad 112 in the middle part of described lamp pearl negative pole plurality of copper traces 11, and the negative pole of each described lamp pearl 4 welds with a described lamp pearl negative terminal pad 112;
Described lamp pearl positive pole plurality of copper traces 12 two ends are respectively equipped with lamp pearl cathode contact 121, at least one lamp pearl positive terminal pad 122 is provided with in the middle part of described lamp pearl positive pole plurality of copper traces 12, and the positive pole of each described lamp pearl 4 welds with a described lamp pearl positive terminal pad 122, described lamp pearl positive pole plurality of copper traces 12 is positioned at described lamp pearl positive terminal pad 122 both sides and is respectively equipped with several silicon chip positive pole settlements 123, the positive pole of each described silicon chip LED5 welds with a silicon chip positive pole settlement 123;
Described silicon chip negative pole plurality of copper traces 13 two ends are respectively equipped with silicon chip cathode contact 131, quantity and one to one silicon chip heat radiation point 132 identical with described silicon chip positive pole settlement 123 is provided with in the middle part of described silicon chip negative pole plurality of copper traces 13, in the middle part of described silicon chip negative pole plurality of copper traces 13, described silicon chip heat radiation point 132 is provided with quantity and one to one silicon chip negative pole settlement 133 identical with described silicon chip heat radiation point 132 away from side, described silicon chip positive pole settlement 123, the lamp body of each described silicon chip LED5 is fixed on described silicon chip heat radiation point 132 upper surface, the negative pole of each described silicon chip LED5 welds with a silicon chip negative pole settlement 133.
By arranging described lamp pearl negative pole plurality of copper traces 11, lamp pearl positive pole plurality of copper traces 12 and silicon chip negative pole plurality of copper traces 13, can facilitate and control separately described lamp pearl 4 or described silicon chip LED5, conveniently realizing the switching of floodlight light and optically focused light.
Preferably, the same described lamp pearl 4 described lamp pearl negative terminal pad 112 of welding and described lamp pearl positive terminal pad 122 along the length direction alignment of described aluminium base 1 and adjacent spaces arrange.Can ensure that described lamp pearl 4 is positioned at the middle part of described aluminium base 1 by the way, thus obtain comparatively uniform spotlight effect.
Preferably, described silicon chip positive pole settlement 123 is evenly arranged on the both sides of described lamp pearl positive terminal pad 122 in described lamp pearl positive pole plurality of copper traces 12.Can ensure that described silicon chip LED5 is evenly distributed on the both sides of described aluminium base 1 by the way, thus obtain comparatively uniform floodlight effect.
Preferably, described silicon chip positive pole settlement 123, silicon chip heat radiation point 132 and silicon chip negative pole settlement 133 three are arranged along the width alignment of described aluminium base 1.The floodlight effect of described silicon chip LED5 can be strengthened by the way further.
In the present embodiment, described lamp pearl cathode contact 121 is connected with external power source positive pole, and external power source negative pole is connected with described lamp pearl cathode contact 111 or silicon chip cathode contact 131 by switch.Described lamp pearl 4 can be switched very easily by external switch or described silicon chip LED5 lights, thus realize the switching of optically focused light and floodlight light more easily.
Preferably, the surface of described lamp pearl negative pole plurality of copper traces 11, lamp pearl positive pole plurality of copper traces 12 and silicon chip negative pole plurality of copper traces 13 is coated with the white oil with electric insulation function.By applying white oil on the surface of described lamp pearl negative pole plurality of copper traces 11, lamp pearl positive pole plurality of copper traces 12 and silicon chip negative pole plurality of copper traces 13, the electrical insulation properties of itself and aluminium base 1 can be strengthened further, improve the stability of power supply, extend the service life of this light source.
In the present embodiment, described lamp pearl 4 is XQ-E light source.
Preferably, described aluminium base 1 is also provided with multiple lamp dams pad 14, the lower end on described lamp dam 2 is connected on described aluminium base 1 by described lamp dam pad weldering 14.Can described lamp dam 2 be securely fixed on described aluminium base 1 by the way, extend the service life of light source.
Present invention also offers a kind of light-source system collecting floodlight, be concentrated on one, comprise for regulating the voltage regulator of described lamp pearl or silicon chip LED luminance and described collection floodlight, being concentrated on the light source of one, described voltage regulator and described collection floodlight, be concentrated on light source integrally and be connected.
A kind of light source and system thereof collecting floodlight, be concentrated on one of the present invention, floodlight can be realized and optically focused is combined on same substrate, and obstructedly overregulate optically focused thing to realize, only need be switched by switch position, convenient achieves optically focused and floodlight, has good radiating effect, effectively reduces the cost that illuminating product designs at adjustable floodlight and concentration structure, meanwhile, the outer accessory cost of product also can significantly reduce.
The foregoing is only preferred embodiment of the present invention, not in order to limit the present invention, within the spirit and principles in the present invention all, any amendment done, equivalent replacement, improvement etc., all should be included within protection scope of the present invention.

Claims (10)

1. a collection floodlight, be concentrated on the light source of one, it is characterized in that: comprise aluminium base (1), lamp dam (2), at least one lamp pearl (4) and some silicon chip LED (5), described aluminium base (1) is tabular, described aluminium base (1) upper surface scribbles white oil, and described aluminium base (1) is fixed with lamp pearl negative pole plurality of copper traces (11), lamp pearl positive pole plurality of copper traces (12) and silicon chip negative pole plurality of copper traces (13), the two ends of each described silicon chip LED (5) are all connected across between described lamp pearl positive pole plurality of copper traces (12) and silicon chip negative pole plurality of copper traces (13), the frame structure of described lamp dam (2) described aluminium base (1) for border is less than, and the lower end of described lamp dam (2) is fixed on described aluminium base (1), described lamp pearl (4) is fixed on described aluminium base (1) and goes up and be connected across between described lamp pearl negative pole plurality of copper traces (11) and lamp pearl positive pole plurality of copper traces (12), described lamp pearl (4) is positioned at the frame structure of described lamp dam (2), shaping Silicon moulds (3) is provided with in described lamp dam (2), and described Silicon moulds (3) covers described silicon chip LED (5), the upper surface of described Silicon moulds (3) is given prominence in the upper end of described lamp pearl (4).
2. a kind of according to claim 1 light source collecting floodlight, be concentrated on one, is characterized in that: lamp pearl negative pole plurality of copper traces (11) on described aluminium base (1), lamp pearl positive pole plurality of copper traces (12) and silicon chip negative pole plurality of copper traces (13) specifically arrange as follows:
Described lamp pearl negative pole plurality of copper traces (11) two ends are respectively equipped with lamp pearl cathode contact (111), described lamp pearl negative pole plurality of copper traces (11) middle part is provided with at least one lamp pearl negative terminal pad (112), and the negative pole of each described lamp pearl (4) welds with a described lamp pearl negative terminal pad (112);
Described lamp pearl positive pole plurality of copper traces (12) two ends are respectively equipped with lamp pearl cathode contact (121), described lamp pearl positive pole plurality of copper traces (12) middle part is provided with at least one lamp pearl positive terminal pad (122), and the positive pole of each described lamp pearl (4) welds with a described lamp pearl positive terminal pad (122), described lamp pearl positive pole plurality of copper traces (12) is positioned at described lamp pearl positive terminal pad (122) both sides and is respectively equipped with several silicon chip positive pole settlements (123), the positive pole of each described silicon chip LED (5) welds with a silicon chip positive pole settlement (123),
Described silicon chip negative pole plurality of copper traces (13) two ends are respectively equipped with silicon chip cathode contact (131), described silicon chip negative pole plurality of copper traces (13) middle part is provided with quantity and one to one silicon chip heat radiation point (132) identical with described silicon chip positive pole settlement (123), it is identical with described silicon chip heat radiation point (132) and one to one silicon chip negative pole settlement (133) that the described silicon chip heat radiation point (132) in described silicon chip negative pole plurality of copper traces (13) middle part is provided with quantity away from described silicon chip positive pole settlement (123) side, the lamp body of each described silicon chip LED (5) is fixed on described silicon chip heat radiation point (132) upper surface, the negative pole of each described silicon chip LED (5) welds with a silicon chip negative pole settlement (133).
3. a kind ofly according to claim 2 collect floodlight, be concentrated on the light source of one, it is characterized in that: the described lamp pearl negative terminal pad (112) that same described lamp pearl (4) is welded and described lamp pearl positive terminal pad (122) are along the length direction alignment of described aluminium base (1) and adjacent spaces setting.
4. a kind of according to claim 2 light source collecting floodlight, be concentrated on one, is characterized in that: described silicon chip positive pole settlement (123) is evenly arranged on the both sides of the upper described lamp pearl positive terminal pad (122) of described lamp pearl positive pole plurality of copper traces (12).
5. a kind of according to claim 4 light source collecting floodlight, be concentrated on one, is characterized in that: described silicon chip positive pole settlement (123), silicon chip heat radiation point (132) and silicon chip negative pole settlement (133) three are also arranged at interval along the width alignment of described aluminium base (1).
6. a kind of according to claim 2 light source collecting floodlight, be concentrated on one, it is characterized in that: described lamp pearl cathode contact (121) is connected with external power source positive pole, external power source negative pole is connected with described lamp pearl cathode contact (111) or silicon chip cathode contact (131) by switch.
7. a kind ofly according to any one of claim 1 to 6 collect floodlight, be concentrated on the light source of one, it is characterized in that: the surface of described lamp pearl negative pole plurality of copper traces (11), lamp pearl positive pole plurality of copper traces (12) and silicon chip negative pole plurality of copper traces (13) is coated with the white oil for electric insulation.
8. the light source collecting floodlight, be concentrated on one a kind of according to any one of claim 1 to 6, is characterized in that: described lamp pearl (4) is XQ-E light source.
9. the light source collecting floodlight, be concentrated on one a kind of according to any one of claim 1 to 6, it is characterized in that: described aluminium base (1) is also provided with multiple lamp dam pad (14), the lower end of described lamp dam (2) is welded on described aluminium base (1) by described lamp dam pad (14).
10. one kind collect floodlight, be concentrated on one light-source system, it is characterized in that: comprise for regulating the voltage regulator of described lamp pearl (4) or silicon chip LED (5) brightness and the collection floodlight as described in any one of claim 1 to 9, being concentrated on the light source of one, described voltage regulator and described collection floodlight, be concentrated on light source integrally and be connected.
CN201510551723.5A 2015-08-31 2015-08-31 A kind of collection floodlight is concentrated on integrated light source and its system Active CN105065951B (en)

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CN201510551723.5A CN105065951B (en) 2015-08-31 2015-08-31 A kind of collection floodlight is concentrated on integrated light source and its system
PCT/CN2015/089509 WO2017035868A1 (en) 2015-08-31 2015-09-14 Light source integrated with floodlighting and spotlighting, and system thereof

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CN201510551723.5A CN105065951B (en) 2015-08-31 2015-08-31 A kind of collection floodlight is concentrated on integrated light source and its system

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CN105065951B CN105065951B (en) 2018-07-20

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* Cited by examiner, † Cited by third party
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CN111140776A (en) * 2018-11-06 2020-05-12 深圳市海洋王照明工程有限公司 Portable working lamp
CN114173454A (en) * 2021-12-02 2022-03-11 深圳市源立信照明科技有限公司 Electric torch

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