CN216431344U - Indoor splicing line lamp - Google Patents
Indoor splicing line lamp Download PDFInfo
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- CN216431344U CN216431344U CN202123432377.9U CN202123432377U CN216431344U CN 216431344 U CN216431344 U CN 216431344U CN 202123432377 U CN202123432377 U CN 202123432377U CN 216431344 U CN216431344 U CN 216431344U
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Abstract
The utility model relates to an indoor concatenation formula line lamp that uses. Comprises a plurality of lamp bodies; slots are respectively arranged at two ends of each lamp body, and conductive copper needles extending from the bottom of each slot to the inside of each slot are arranged in the slots; a connecting piece is arranged between two adjacent lamp bodies; the connector comprises a central part and two plugs which are separated from two sides of the central part; in two adjacent lamp bodies, two plugs are respectively inserted into the slots at one end of one lamp body; each plug is internally provided with a pinhole for inserting the conductive copper pin when the plug is inserted into the slot, and the pinhole is internally provided with a conductive terminal contacted with the conductive copper pin; the conductive terminals of the two plugs are connected in series; the plug of the connecting piece and the slot of the lamp body are respectively provided with a magnet, so that when the plug is inserted into the slot, the magnet of the plug and the magnet of the slot attract each other. The utility model discloses quick assembly disassembly can be realized, the flexibility of using is improved.
Description
Technical Field
The utility model relates to an indoor concatenation formula line lamp that uses.
Background
Indoor concatenation formula line lamp of using usually has many rectangular lamp bodies concatenation to form to make the user can have more using-way. However, the existing lamp body splicing mode usually needs to adopt screw connection, which brings inconvenience to the disassembly and assembly of the lamp body.
Disclosure of Invention
The utility model aims to provide an indoor spliced line lamp, which comprises a plurality of lamp bodies; slots are respectively arranged at two ends of each lamp body, and conductive copper needles extending from the bottom of each slot to the inside of each slot are arranged in the slots; a connecting piece is arranged between two adjacent lamp bodies; the connector comprises a central part and two plugs which are separated from two sides of the central part; in two adjacent lamp bodies, two plugs are respectively inserted into the slots at one end of one lamp body; each plug is internally provided with a pinhole for inserting the conductive copper pin when the plug is inserted into the slot, and the pinhole is internally provided with a conductive terminal contacted with the conductive copper pin; the conductive terminals of the two plugs are connected in series; the plug of the connecting piece and the slot of the lamp body are respectively provided with a magnet, so that when the plug is inserted into the slot, the magnet of the plug and the magnet of the slot attract each other.
The utility model discloses quick assembly disassembly can be realized, the flexibility of using is improved.
Drawings
Fig. 1 shows a perspective view of the present invention;
fig. 2 shows an exploded perspective view of the present invention;
fig. 3 shows a perspective view of a connector of the present invention;
fig. 4 shows a schematic diagram of the butt joint of the connecting member and each lamp body of the present invention;
fig. 5 is a schematic view showing the connection member separated from each lamp body on the basis of fig. 4;
fig. 6 shows a left side view of the lamp body;
FIG. 7 shows a left side view of the connector;
fig. 8 shows an exploded perspective view of the lamp body;
fig. 9 is a sectional structural view of the lamp body;
fig. 10 shows a schematic view of the lamp housing according to fig. 9 after the parts have been disassembled.
Detailed Description
The present application is further described below with reference to the accompanying drawings.
Fig. 1 to 7 show a splicing type linear lamp for indoor use, which includes a plurality of lamp bodies 10, in this embodiment, fig. 1 and 2 only show a splicing schematic diagram of 2 lamp bodies 10, however, the number of lamp bodies is not limited to the number shown in the drawings;
two ends of each lamp body 10 are respectively provided with a slot 101, and a conductive copper needle 102 extending from the bottom of the slot to the inside of the slot is arranged in the slot 101;
a connecting piece 20 is arranged between two adjacent lamp bodies 10;
the connector 20 includes a central portion 201 and two plugs 202 separated from both sides of the central portion 201;
in two adjacent lamp bodies 10, two plugs 202 are respectively inserted into the slots 101 at one end of one lamp body;
a pin hole 203 is formed in each plug 202, into which the conductive copper pin 102 is inserted when the plug 202 is inserted into the slot 101, and a conductive terminal (not shown) is formed in the pin hole 203 and is used for contacting with the conductive copper pin 102;
the conductive terminals of the two plugs 202 are connected in series, in this embodiment, the conductive terminals of the two plugs 202 can be connected in series through the wires embedded in the central portion;
the plugs 202 of the connector and the slots 101 of the lamp body are respectively provided with a magnet 30, so that when the plugs 202 are inserted into the slots 101, the magnets 30 of the plugs 202 and the magnets 30 of the slots 101 attract each other.
This technical scheme can realize quick assembly disassembly, improves the flexibility of using.
Two magnets 30 are arranged on each plug 202, and the two magnets 30 on the same plug 202 are separated from two sides of the pinhole 203;
there are two magnets 30 in each slot 101, and two magnets 30 on the same slot 101 are separated on both sides of the conductive copper pin 102.
This technical scheme can improve the stability and the fastness of actuation.
The two magnets 30 in each slot 101 are arranged at the bottom of the slot;
the two magnets 30 on each plug 202 are provided on the end face of the plug. This technical scheme reasonable in design is favorable to the spatial layout of structure.
In this embodiment, as shown in fig. 8 to 10, the following specific embodiments of each lamp body 10 can be adopted:
each lamp body 10 comprises a lamp shell 103, a light-transmitting plate 104 and a light source assembly, wherein the lamp shell 103 is in a long-strip groove shape and comprises a groove cavity 105 used for accommodating the light source assembly and a notch 106 communicated with the groove cavity 105 and used for emitting light of the light source assembly, the light source assembly is arranged in the groove cavity 106, the light-transmitting plate 104 covers the notch 106, the light source assembly comprises a circuit board 107 and a plurality of LED lamp beads 108 distributed at intervals along the length direction of the circuit board 107, and each LED lamp bead 108 is provided with a lens 109 arranged on the circuit board to cover the LED lamp beads;
each lens 109 is a revolving body, the bottom of each lens 109 is provided with a lens cavity 110 for accommodating the LED lamp bead 108, and the inner surface of the lens cavity 110 is a lens concave spherical surface 111 for incidence of light rays emitted from the LED lamp bead;
the transparent plate 104 is disposed above all the lenses 109, and the bottom surface of the transparent plate 104 is provided with a transparent plate cavity 112 for accommodating the top of each lens 109;
the inner surface of each light-transmissive plate cavity 112 is a light-transmissive plate concave spherical surface 113 into which light exiting from the top of the lens is incident.
This technical scheme not only can inject lens through set up the light-passing board cavity on the light-passing board, reduces the risk that lens dislocation, utilizes the concave spherical surface of light-passing board to realize secondary grading moreover to satisfy bigger operation requirement.
Each lens 109 is provided with an elastic sealing ring 114;
the elastomeric seal 114 of each lens 109 is clamped between the bottom of the lens and the circuit board 107, and the elastomeric seal 114 surrounds the LED bead 108 housed within the lens cavity. This technical scheme can realize sealed waterproof through the elastic sealing circle that sets up, and avoids the side light leak.
Claims (3)
1. A splicing line lamp for indoor use comprises a plurality of lamp bodies;
slots are respectively arranged at two ends of each lamp body, and conductive copper needles extending from the bottom of each slot to the inside of each slot are arranged in the slots;
a connecting piece is arranged between two adjacent lamp bodies;
the connector comprises a central part and two plugs which are separated from two sides of the central part;
in two adjacent lamp bodies, two plugs are respectively inserted into the slots at one end of one lamp body;
each plug is internally provided with a pinhole for inserting the conductive copper pin when the plug is inserted into the slot, and the pinhole is internally provided with a conductive terminal contacted with the conductive copper pin;
the conductive terminals of the two plugs are connected in series; the method is characterized in that:
the plug of the connecting piece and the slot of the lamp body are respectively provided with a magnet, so that when the plug is inserted into the slot, the magnet of the plug and the magnet of the slot attract each other.
2. The indoor spliced line lamp as claimed in claim 1, wherein:
the number of the magnets on each plug is two, and the two magnets on the same plug are separated from two sides of the pinhole;
the number of the magnets in each slot is two, and the two magnets in the same slot are separated from two sides of the conductive copper needle.
3. The indoor spliced line lamp as claimed in claim 2, wherein:
the two magnets in each slot are arranged at the bottom of the slot;
two magnets on each plug are arranged on the end face of the plug.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202123432377.9U CN216431344U (en) | 2021-12-30 | 2021-12-30 | Indoor splicing line lamp |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202123432377.9U CN216431344U (en) | 2021-12-30 | 2021-12-30 | Indoor splicing line lamp |
Publications (1)
Publication Number | Publication Date |
---|---|
CN216431344U true CN216431344U (en) | 2022-05-03 |
Family
ID=81320853
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN202123432377.9U Active CN216431344U (en) | 2021-12-30 | 2021-12-30 | Indoor splicing line lamp |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN216431344U (en) |
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2021
- 2021-12-30 CN CN202123432377.9U patent/CN216431344U/en active Active
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