CN210372909U - Angle-adjustable linear lamp with parallel spotlight-floodlight configuration - Google Patents

Angle-adjustable linear lamp with parallel spotlight-floodlight configuration Download PDF

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Publication number
CN210372909U
CN210372909U CN201921568819.2U CN201921568819U CN210372909U CN 210372909 U CN210372909 U CN 210372909U CN 201921568819 U CN201921568819 U CN 201921568819U CN 210372909 U CN210372909 U CN 210372909U
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China
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linear
floodlight
radiator
spotlight
led aluminum
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CN201921568819.2U
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Chinese (zh)
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吕昌荣
孙明丰
申皓
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Jiangsu Youwei Shijie Technology Co ltd
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Jiangsu Youwei Shijie Technology Co ltd
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Abstract

The utility model relates to a linear lamp with an angle-adjustable spotlight-floodlight parallel configuration, which comprises a combined lamp body; the combined lamp body comprises a linear floodlight positioned in the middle of the combined lamp body; linear spot lights are arranged on two sides of the linear floodlight; the linear floodlight and the linear spotlight are connected together through the first end cover; the linear floodlight comprises a first radiator, a plurality of first LED aluminum substrates and a PC board; the plurality of first LED aluminum substrates are parallel to each other; the first LED aluminum substrate is attached to the first radiator; the PC board is inserted with the first radiator; the linear spotlight comprises a second radiator, a second LED aluminum substrate, a PC cover and a reflection cup; the second LED aluminum substrate is attached to the second radiator; the PC cover is inserted with the reflecting cup; the reflecting cup is buckled into the second radiator; and second end covers are arranged on two sides of the second radiator, and the second LED aluminum substrate, the PC cover and the reflection cup are fixed in the second radiator. The utility model discloses a linear lamps and lanterns of floodlight and shot-light combination has saved complicated installation.

Description

Angle-adjustable linear lamp with parallel spotlight-floodlight configuration
Technical Field
The utility model relates to the technical field of lighting technology, in particular to linear lamps and lanterns of adjustable angle shot-light-floodlight parallel configuration.
Background
At present, linear floodlight lamps and linear spot lamps on the market are various in types, but the functions are single, multifunctional combined lamps are lacked, and single-function lighting can only be realized. Often the installation of these lamps and lanterns is more complicated, according to the difference of mounting means, needs punch, installation track strip, installation hoisting support and so on different processes, and the process is more loaded down with trivial details, has taken a large amount of spaces moreover.
SUMMERY OF THE UTILITY MODEL
In view of the deficiencies of the prior art, the utility model discloses a linear lamp of adjustable angle shot-light floodlight parallel configuration.
The utility model discloses the technical scheme who adopts as follows:
a linear lamp with an adjustable angle spotlight-floodlight parallel configuration comprises a combined lamp body; the combined lamp body comprises a linear floodlight positioned in the middle of the combined lamp body; linear spot lights are arranged on two sides of the linear floodlight; the linear floodlight and the linear spotlight are connected together through a first end cover; the linear floodlight comprises a first radiator, a plurality of first LED aluminum substrates and a PC board; the first LED aluminum substrates are parallel to each other; the first LED aluminum substrate is attached to the first radiator; the PC board is connected with the first radiator in an inserted mode; the linear spotlight comprises a second radiator, a second LED aluminum substrate, a PC cover and a reflection cup; the second LED aluminum substrate is attached to the second radiator; the PC cover is connected with the reflecting cup in an inserting mode; the reflecting cup is buckled into the second radiator; and second end covers are arranged on two sides of the second radiator, and the second LED aluminum substrate, the PC cover and the reflection cup are fixed in the second radiator.
The method is further characterized in that: a reflector plate is arranged in the first radiator; the first radiator and the reflector are integrally formed; the first radiator and the reflector are both aluminum profiles; a group of symmetrical first grooves are formed in the reflector along the length direction of the reflector; the PC board is inserted into the first groove; the PC board is inserted into the reflector from the first groove.
The method is further characterized in that: the bottom of the first radiator is provided with three second grooves along the length direction; a U-shaped notch is formed between every two adjacent second grooves; the top of the first end cover is provided with a first protruding part which is correspondingly inserted into the U-shaped notch; the bottom of the first end cover extends downwards to form a second protruding part; the second protrusion is attached to a side wall of the PC board.
The method is further characterized in that: the cross section of the second radiator and the cross section of the second end cover are both non-full circles.
The method is further characterized in that: the PC cover is provided with a plurality of groups of through holes; the back of the light reflecting cup is provided with a plurality of groups of positioning clamping jaws; and the positioning clamping jaw is inserted into the through hole to fixedly connect the PC cover with the reflecting cup.
The method is further characterized in that: the second LED aluminum substrate is a single discontinuous LED aluminum substrate of the spotlight.
The method is further characterized in that: the first end cover is provided with a plurality of first bolt holes; the second end cover is provided with a second bolt hole; and the bolt sequentially penetrates through the first bolt hole and the corresponding second bolt hole, and the bolt rotates to adjust the light source angle of the linear spotlight.
The method is further characterized in that: the combined lamp body also comprises a connecting plate; the connecting plate is connected with the first radiator through bolts.
The utility model has the advantages as follows:
1. the utility model discloses a linear lamp, the integrative illumination of multi-functional formula, the illumination of mainly being applied to market or supermarket, middle linear floodlight is used for the passageway illumination, and the linear shot-light of both sides is used for the goods shelves illumination, can realize seamless concatenation moreover between linear floodlight and the linear shot-light, is located the pleasing to the eye that is favorable to the environment in market or supermarket, to the installation of traditional linear shot-light and linear floodlight, this kind of combination lamps and lanterns have subtracted the installation of a lot of complicacies.
2. The utility model discloses a linear lamps and lanterns of linear floodlight and shot-light combination adopts the mounting means of crane span structure. The lamp body mainly comprises a linear floodlight, a circular linear spotlight, a combined end cover and a connecting plate. The linear floodlight is used as basic lighting, and the circular linear spotlight is used as key lighting. The linear floodlight comprises a first radiator, a first LED aluminum substrate and a PC board. The linear spotlight comprises a circular radiator, a spotlight discontinuous LED aluminum substrate, a PC cover and a reflection cup. The linear floodlight is positioned in the middle, the circular linear spot lights are positioned on two sides, and the linear floodlight and the circular linear spot lights are connected together through the combined end cover.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is an exploded view of the present invention.
Fig. 3 is an exploded view of a linear floodlight.
Fig. 4 is a schematic view of the first end cap of fig. 2.
Fig. 5 is an exploded view of a linear spotlight.
In the figure: 100. a linear floodlight; 101. a first heat sink; 102. a first LED aluminum substrate; 103. a PC board; 104. a reflector; 200. a linear spot light; 201. a second heat sink; 202. a second LED aluminum substrate; 203. a PC cover; 204. a light reflecting cup; 205. a second end cap; 300. a first end cap; 301. a first projecting portion; 302. a second projection; 400. a connecting plate.
Detailed Description
The foregoing and other features, aspects and utilities of the present invention will be apparent from the following detailed description of the embodiments, which is to be read in connection with the accompanying drawings. Directional terms as referred to in the following examples, for example: up, down, left, right, front or rear, etc., are simply directions with reference to the drawings. Therefore, the directional terminology used is for the purpose of describing, but not limiting, the invention, and moreover, like reference numerals designate like elements throughout the embodiments.
The following describes a specific embodiment of the present embodiment with reference to the drawings.
Fig. 1 is a schematic structural diagram of the present invention. As shown in figure 1, the linear lamp with the adjustable angle spotlight-floodlight parallel configuration comprises a combined lamp body. The combination light body includes a linear floodlight 100 located in the middle of the combination light body. The linear floodlight 100 is provided with linear spot lights 200 at both sides thereof. The linear floodlight 100 and the linear spot light 200 are connected together by a first end cap 300.
Fig. 2 is an exploded view of the present invention, and fig. 3 is an exploded view of a linear floodlight. Referring to fig. 2 and 3, a linear luminaire 100 comprises a first heat sink 101, a plurality of first LED aluminum substrates 102 and a PC board 103. The plurality of first LED aluminum substrates 102 are parallel to each other. In this embodiment, three first LED aluminum substrates 102 are parallel to each other. The first LED aluminum substrate 102 is attached to the first heat sink 101, and the first LED aluminum substrate 102 is in full contact with the first heat sink 101 to achieve the heat dissipation effect. The PC board 103 is plugged into the first heat sink 101. The PC board 103 is frosted. A reflective plate 104 is provided in the first heat sink 101. The first heat sink 101 and the light reflecting plate 104 are integrally formed, and the integrally formed structure has the functions of both the heat sink and the light reflecting plate. The first heat sink 101 and the light reflection plate 104 are both aluminum profiles. The interior of the reflector 104 is provided with a set of symmetrical first grooves along the length direction thereof. The PC board 103 is inserted from the side of the reflector 104. Specifically, the PC board 103 is inserted into the first recess.
The assembled lamp body further includes a connection plate 400. The connection plate 400 is bolted to the first heat sink 101.
Fig. 4 is a schematic view of the first end cap of fig. 2. With reference to fig. 3 and 4, the bottom of the first heat sink 101 is provided with three second grooves along the length direction thereof. And a U-shaped notch is arranged between every two adjacent second grooves. The top of the first end cap 300 is provided with a first protrusion 301 inserted into the U-shaped notch. The bottom of the first end cap 300 extends downward to form a second protrusion 302. The second projection 302 abuts the side wall of the PC board 103.
In the case where the first end cap 300 of one side is completely installed and the first end cap 300 of the other side is not installed, the PPC plate 103 is inserted into the first groove.
Fig. 5 is an exploded view of a linear spotlight. Referring to fig. 2 and 5, the linear spotlight 200 includes a second heat sink 201, a second LED aluminum substrate 202, a PC cover 203, and a reflective cup 204. The second LED aluminum substrate 202 is attached to the second heat sink 201. Preferably, the second LED aluminum substrate 202 is a single spotlight discontinuous LED aluminum substrate. The PC cover 203 is inserted with the reflection cup 204. Specifically, the PC cover 203 is provided with a plurality of sets of through holes. The back of the reflective cup 204 is provided with a plurality of groups of positioning claws. The positioning claw device plays a role in positioning and fixing. The positioning claws are inserted into the through holes to fixedly connect the PC cover 203 and the reflection cup 204. The reflector cup 204 snaps into the second heat sink 201. Second end caps 205 are attached to both sides of the second heat sink 201, and the second LED aluminum substrate 202, the PC cover 203, and the reflector cup 204 are fixed in the second heat sink 201. The cross-section of the second heat sink 201 and the cross-sectional shape of the second end cap 205 are both non-full circles.
The first end cap 300 is provided with a plurality of first bolt holes. The second end cover 205 is provided with a second bolt hole. The second end cap 205 is marked with graduation lines. The bolt passes through first bolt hole and the second bolt hole that corresponds in proper order, and the light source angle of linear shot-light 200 is adjusted in the bolt rotation.
The utility model discloses a connecting plate 400 adopts the mounting means of crane span structure. The utility model discloses mainly be applied to the super illumination of merchant, be located the linear floodlight 100 in the middle of the combination lamp body and be used for the passageway illumination, the linear shot-light 200 of both sides is used for the goods shelves illumination, can realize seamless concatenation moreover between linear floodlight 100 and the linear shot-light 200, is located the pleasing to the eye that is favorable to the environment in the super environment of merchant.
The above description is for the purpose of explanation and not limitation of the invention, which is defined in the claims, and any modifications may be made without departing from the basic structure of the invention.

Claims (8)

1. An angle-adjustable spotlight-floodlight parallel-configured linear lamp, characterized in that: comprises a combined lamp body; the combined lamp body comprises a linear floodlight (100) positioned in the middle of the combined lamp body; the linear floodlight (100) is provided with linear spot lights (200) at two sides; the linear floodlight (100) and the linear spotlight (200) are connected together through a first end cap (300); the linear floodlight (100) comprises a first heat sink (101), a plurality of first LED aluminum substrates (102) and a PC board (103); the first LED aluminum substrates (102) are parallel to each other; the first LED aluminum substrate (102) is attached to the first heat sink (101); the PC board (103) is plugged with the first heat radiator (101); the linear spotlight (200) comprises a second radiator (201), a second LED aluminum substrate (202), a PC cover (203) and a reflection cup (204); the second LED aluminum substrate (202) is attached in the second radiator (201); the PC cover (203) is connected with the reflecting cup (204) in an inserting mode; the reflection cup (204) is buckled into the second radiator (201); second end covers (205) are mounted on two sides of the second heat sink (201), and the second LED aluminum substrate (202), the PC cover (203) and the light reflecting cup (204) are fixed in the second heat sink (201).
2. The adjustable angle spotlight-floodlight parallel-arrangement linear light fixture of claim 1, wherein: a reflector (104) is arranged in the first radiator (101); the first radiator (101) and the reflector (104) are integrally formed; the first radiator (101) and the reflector (104) are both aluminum profiles; a group of symmetrical first grooves are formed in the reflector (104) along the length direction of the reflector; the PC board (103) is inserted into the first groove; the PC board (103) is inserted into the reflector (104) from the first groove.
3. The adjustable angle spotlight-floodlight parallel-arrangement linear light fixture of claim 1, wherein: the bottom of the first radiator (101) is provided with three second grooves along the length direction; a U-shaped notch is formed between every two adjacent second grooves; the top of the first end cover (300) is provided with a first protruding part (301) which is correspondingly inserted into the U-shaped notch; the bottom of the first end cover (300) extends downwards to form a second convex part (302); the second protrusion (302) is attached to a side wall of the PC board (103).
4. The adjustable angle spotlight-floodlight parallel-arrangement linear light fixture of claim 1, wherein: the cross section of the second radiator (201) and the cross section of the second end cover (205) are both non-full circles.
5. The adjustable angle spotlight-floodlight parallel-arrangement linear light fixture of claim 1, wherein: the PC cover (203) is provided with a plurality of groups of through holes; a plurality of groups of positioning clamping jaws are arranged on the back surface of the reflecting cup (204); the positioning claws are inserted into the through holes to fixedly connect the PC cover (203) with the reflecting cup (204).
6. The adjustable angle spotlight-floodlight parallel-arrangement linear light fixture of claim 1, wherein: the second LED aluminum substrate (202) is a single discontinuous spotlight LED aluminum substrate.
7. The adjustable angle spotlight-floodlight parallel-arrangement linear light fixture of claim 1, wherein: the first end cover (300) is provided with a plurality of first bolt holes; the second end cover (205) is provided with a second bolt hole; and the bolt sequentially penetrates through the first bolt hole and the corresponding second bolt hole, and the bolt rotates to adjust the light source angle of the linear spotlight (200).
8. The adjustable angle spotlight-floodlight parallel-arrangement linear light fixture of claim 1, wherein: the combined lamp body further comprises a connecting plate (400); the connecting plate (400) is bolted to the first heat sink (101).
CN201921568819.2U 2019-09-19 2019-09-19 Angle-adjustable linear lamp with parallel spotlight-floodlight configuration Active CN210372909U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921568819.2U CN210372909U (en) 2019-09-19 2019-09-19 Angle-adjustable linear lamp with parallel spotlight-floodlight configuration

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921568819.2U CN210372909U (en) 2019-09-19 2019-09-19 Angle-adjustable linear lamp with parallel spotlight-floodlight configuration

Publications (1)

Publication Number Publication Date
CN210372909U true CN210372909U (en) 2020-04-21

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110469785A (en) * 2019-09-19 2019-11-19 江苏优为视界科技有限公司 A kind of linear lamps of angle adjustable shot-light-floodlight configured in parallel

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110469785A (en) * 2019-09-19 2019-11-19 江苏优为视界科技有限公司 A kind of linear lamps of angle adjustable shot-light-floodlight configured in parallel

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