Splicing type LED line lamp convenient to replace

By setting positive and negative connecting pieces on the LED linear lights and using adapter stickers and cylindrical bumps to achieve circuit connectivity, the problems of increased manufacturing costs and T-shaped splicing of the interfaces of spliced ​​LED linear lights are solved, and convenient circuit connection and light source line management are achieved.

CN223345277UActive Publication Date: 2025-09-16HUIFENG OPTOELECTRONICS (SHENZHEN) CO LTD
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Patent Information

Application Number
CN202422993967.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-04
Publication Date
2025-09-16
Estimated Expiration
2034-12-04

AI Technical Summary

Technical Problem

Existing LED linear lights require interfaces when splicing, which increases manufacturing costs, and cannot achieve T-shaped splicing, making light source line management inconvenient.

Method used

By setting positive and negative connecting pieces on the positive line, and using transfer stickers to achieve circuit connectivity, combining cylindrical bumps and conductive pieces to achieve T-shaped splicing, the circuit connection process is simplified.

Benefits of technology

It realizes convenient circuit connection and T-shaped splicing, reduces manufacturing costs and simplifies light source line management.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a splicing type LED line lamp convenient to replace, and relates to the technical field of lighting equipment. The LED lamp strip comprises a base strip, lamp beads, wires and an adapter sticker, a group of lamp bead grooves are formed in the strip face of one side of the base strip, wire grooves are formed in the positions, on the two sides of the lamp bead grooves, of the base strip respectively, wire butt joint grooves are formed between the lamp bead grooves, a positive electrode butt joint piece is fixedly arranged on one side of a positive electrode wire in the wires, and a negative electrode butt joint piece is fixedly arranged on one side of a negative electrode wire in the wires. The positive electrode butt-joint sheet and the negative electrode butt-joint sheet are both installed in the wire butt-joint groove, and the switching paster is pasted on the negative electrode butt-joint sheet. According to the utility model, the two ends of the switching sticker are respectively adhered to the wire butt joint grooves on the two base bands, and the positive wires and the negative wires on the two base bands are respectively connected, so that the technical effect of circuit connection is realized; the two ends of the switching sticker are attached to the wire butt joint grooves in the two base bands respectively, the positive wires and the negative wires on the two base bands are connected respectively, and the technical effect of circuit connection is achieved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of lighting equipment, and in particular relates to a spliced ​​LED linear light that is easy to replace. Background Art

[0002] LED linear lights have the advantages of energy saving, high brightness, light weight, and quick installation. They are usually used for temporary lighting and decoration in various occasions. However, when installing LED linear lights, they need to be cut and spliced ​​according to the environmental conditions of the installation scene. When extending and splicing LED linear lights, the circuit at one end of the LED light strip needs to be connected to the circuit at the other end of the LED light strip. Therefore, an interface needs to be set on the LED light strip, which increases the manufacturing cost of the LED light strip and is not conducive to the winding of the LED light strip. In addition, when T-shaped splicing of LED lights, one end of one light strip cannot be connected to the middle of another light strip, and another current line needs to be connected, which is not convenient for the management of the light source line.

[0003] To this end, we provide an easy-to-replace spliced ​​LED line light to solve the above problems. Utility Model Content

[0004] The purpose of the utility model is to provide a splicing type LED line light which is easy to replace. By arranging a positive connecting piece on the positive line and a negative connecting piece on the negative line, when splicing is required, the two ends of the adapter sticker are respectively attached to the wire connecting grooves on the two base strips, and the positive lines and negative lines on the two base strips are respectively connected to achieve the technical effect of circuit connection; by passing the cylindrical protrusion on the positive connecting piece through the circular hole on the negative connecting piece, when T-shaped splicing is performed, the negative conductive piece on the adapter sticker connects the negative connecting pieces on the two base strips, and the positive conductive piece on the adapter sticker connects the cylindrical protrusions on the two base strips, thereby achieving T-shaped splicing of the two base strips.

[0005] In order to solve the above technical problems, the present invention is achieved through the following technical solutions:

[0006] The utility model is a spliced ​​L-line lamp that is easy to replace, including a baseband, lamp beads, wires and adapter stickers. A group of lamp bead grooves are arranged in an array along the length direction of the baseband on one side of the baseband, and wire grooves are respectively opened on both sides of the lamp bead grooves. Wire docking grooves are opened on the baseband surface between the lamp bead grooves. A lamp bead holder is fixedly installed under the lamp bead, and two electrode pieces of the lamp bead are installed through the side of the lamp bead holder away from the lamp bead. The lamp bead holder is installed in the lamp bead groove, and the two electrode pieces under the lamp bead holder are respectively facing the wire grooves on both sides. The wires include a positive wire and a negative wire, and the positive wire and the negative wire are respectively installed in the wire grooves on both sides and are respectively connected to the two electrode pieces of the lamp bead. A positive docking piece is fixed in an array along the length direction of the positive wire on the side of the positive wire close to the negative wire, and a negative docking piece is fixed in an array along the length direction of the negative wire on the side of the negative wire close to the positive wire. Both the positive docking piece and the negative docking piece are installed in the wire docking groove, and the adapter sticker is attached to the negative docking piece.

[0007] The utility model is further configured such that a cylindrical protrusion is fixedly provided on the side of the positive electrode connecting piece away from the base tape, an insulating sticker is affixed to the side of the positive electrode connecting piece away from the base tape, a through hole is provided on the surface of the insulating sticker, the cylindrical protrusion passes through the through hole on the surface of the insulating sticker, a circular hole is provided on the surface of the negative electrode connecting piece, the diameter of the circular hole is larger than the cylindrical diameter of the cylindrical protrusion, and the cylindrical protrusion passes through the circular hole.

[0008] The present invention is further configured such that moisture-proof insulating paper is adhered to the surface of the positive electrode line and the negative electrode line on a side away from the base tape.

[0009] The utility model is further configured such that a non-stick sticker is pasted above the wire docking groove.

[0010] The utility model is further configured such that the side of the transfer sticker close to the base tape is a non-stick surface, and the side of the transfer sticker close to the base tape is pasted with a negative conductive piece and a positive conductive piece, a through opening is opened on the surface of the negative conductive piece, the positive conductive piece is fitted in the through opening on the surface of the negative conductive piece, the two ends of the positive conductive piece are fitted on the upper end of the cylindrical protrusion, the negative conductive piece is fitted on the negative connecting piece, and a conductive piece insulating layer is pasted on the middle of the positive conductive piece.

[0011] The utility model is further configured to include a socket assembly, which includes a socket plate and a socket cover. The socket plate is a U-shaped structure, and a first flange is fixed to the inner side of the upper end of the vertical plates on both sides of the socket plate, and a second flange is fixed to both sides of the lower plate surface of the socket cover. The socket plate is slidably socketed on the outer side of the base belt, and the second flanges on both sides of the socket cover are respectively slidably socketed between the first flanges on both sides and the base belt.

[0012] The utility model is further configured such that one end of the vertical plates on both sides of the socket plate is respectively provided with a baseband opening.

[0013] The utility model has the following beneficial effects:

[0014] 1. The utility model sets a positive connecting piece on the positive wire and a negative connecting piece on the negative wire. When splicing is required, the two ends of the transfer sticker are respectively attached to the wire connecting grooves on the two basebands, and the positive wires and negative wires on the two basebands are respectively connected to achieve the technical effect of circuit connectivity.

[0015] 2. The utility model passes the cylindrical protrusion on the positive connecting piece through the circular hole on the negative connecting piece. When performing T-shaped splicing, the negative conductive piece on the transfer sticker connects the negative connecting pieces on the two base strips, and the positive conductive piece on the transfer sticker connects the cylindrical protrusions on the two base strips, thereby realizing T-shaped splicing of the two base strips. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the following briefly introduces the drawings required for describing the embodiments.

[0017] Figure 1 This is a schematic diagram of the T-shaped splicing of a spliced ​​LED linear light that is easy to replace.

[0018] Figure 2 This is a structural exploded view of the present invention.

[0019] Figure 3 This is another structural diagram of the present utility model.

[0020] Figure 4 This is a structural diagram of the baseband and adapter sticker.

[0021] Figure 5 This is another installation diagram of the present utility model.

[0022] In the accompanying drawings, the components represented by the reference numerals are as follows:

[0023] 1-baseband, 101-lamp bead slot, 102-wire slot, 103-wire docking slot, 103a-non-stick sticker, 2-lamp bead, 201-lamp bead holder, 3-wire, 301-positive wire, 301a-positive docking piece, 301a-1-cylindrical bump, 301a-2-insulating sticker, 302-negative wire, 302a-negative docking piece, 302a-1-round hole, 303-moisture-proof insulating paper, 4-transfer sticker, 401-negative conductor, 402-positive conductor, 402a-conductor insulation layer, 5-socket assembly, 501-socket plate, 501a-first flange, 501b-baseband opening, 502-socket cover, 502a-second flange. DETAILED DESCRIPTION

[0024] The technical solutions in the embodiments of the present invention will be described clearly and completely below with reference to the accompanying drawings in the embodiments of the present invention.

[0025] Example 1

[0026] See also Figures 1 to 5 The utility model is a splicing type LED linear light that is easy to replace, including a baseband 1, lamp beads 2, wires 3 and adapter stickers 4. By setting a positive connecting piece 301a on the positive wire 301 and a negative connecting piece 302a on the negative wire 302, when splicing is required, the two ends of the adapter sticker 4 are respectively attached to the wire connecting grooves 103 on the two basebands 1, and the positive wires 301 and negative wires 302 on the two basebands 1 are respectively connected to achieve The technical effect of circuit connectivity is that the cylindrical protrusion 301a-1 on the positive electrode connecting piece 301a passes through the circular hole 302a-1 on the negative electrode connecting piece 302a. When performing T-shaped splicing, the negative electrode conductive piece 401 on the transfer sticker 4 connects the negative electrode connecting pieces 302a on the two basebands 1, and the positive electrode conductive piece 402 on the transfer sticker 4 connects the cylindrical protrusion 301a-11 on the two basebands 1, thereby realizing T-shaped splicing of the two basebands 1.

[0027] Specifically, a group of lamp bead grooves 101 are arranged in an array along the length direction of the baseband 1 on one side of the baseband 1, and a wire groove 102 is respectively opened on both sides of the lamp bead groove 101. A wire docking groove 103 is opened on the surface of the baseband 1 between the lamp bead grooves 101. A lamp bead holder 201 is fixedly installed below the lamp bead 2. The two electrode pieces of the lamp bead 2 are installed on the side of the lamp bead holder 201 away from the lamp bead 2. The lamp bead holder 201 is installed in the lamp bead groove 101. The two electrode pieces below the lamp bead holder 201 are fixedly installed on the side of the lamp bead holder 201 away from the lamp bead 2. The pieces are respectively facing the wire grooves 102 on both sides. The wire 3 includes a positive wire 301 and a negative wire 302. The positive wire 301 and the negative wire 302 are respectively installed in the wire grooves 102 on both sides and are respectively connected to the two electrode pieces of the lamp bead 2. The positive wire 301 is close to the negative wire 302 on one side and is fixed with a positive electrode docking piece 301a in an array along the length direction of the positive wire 301. The negative wire 302 is close to the positive wire 301 on one side and is fixed with a negative electrode docking piece 302a in an array along the length direction of the negative wire 302. Both the positive electrode docking piece 301a and the negative electrode docking piece 302a are installed in the wire docking groove 103, and the transfer sticker 4 is affixed to the negative electrode docking piece 302a.

[0028] Furthermore, a cylindrical protrusion 301a-1 is fixed on the side of the positive electrode connecting piece 301a away from the base band 1, and an insulating sticker 301a-2 is affixed to the side of the positive electrode connecting piece 301a away from the base band 1. A through hole is provided on the surface of the insulating sticker 301a-2, and the cylindrical protrusion 301a-1 passes through the through hole on the surface of the insulating sticker 301a-2. A circular hole 302a-1 is provided on the surface of the negative electrode connecting piece 302a, and the diameter of the circular hole 302a-1 is larger than the cylindrical diameter of the cylindrical protrusion 301a-1, and the cylindrical protrusion 301a-1 passes through the circular hole 302a-1.

[0029] Furthermore, moisture-proof insulating paper 303 is adhered to the surface of the positive electrode line 301 and the negative electrode line 302 on the side away from the base tape 1 to prevent the positive electrode line 301 and the negative electrode line 302 from contacting and short-circuiting.

[0030] Furthermore, a non-sticky sticker 103a is pasted on the top of the wire docking groove 103 to prevent leakage.

[0031] Furthermore, the side of the transfer sticker 4 closest to the base tape 1 is a non-adhesive surface. A negative conductive tab 401 and a positive conductive tab 402 are attached to the side of the transfer sticker 4 closest to the base tape 1. The negative conductive tab 401 has a through opening, and the positive conductive tab 402 fits within the through opening. Both ends of the positive conductive tab 402 fit onto the upper end of the cylindrical protrusion 301a-1, while the negative conductive tab 401 fits onto the negative contact tab 302a. A conductive tab insulation layer 402a is attached to the middle of the positive conductive tab 402.

[0032] The operation process of this embodiment is as follows:

[0033] When splicing the basebands 1, peel off the non-sticky sticker 103a above the wire docking groove 103 on the baseband 1 to be spliced, dock and connect the negative conductive piece 401 on the transfer sticker 4 with the negative conductive piece 302a on the two basebands 1, and dock and connect the positive conductive piece 402 on the transfer sticker 4 with the cylindrical protrusion 301a-1 on the two basebands 1 to achieve circuit connectivity between the two basebands 1.

[0034] Example 2

[0035] See also Figures 1 to 5 On the basis of Example 1, it also includes a socket component 5, which includes a socket plate 501 and a socket cover 502. By socketing the socket plate 501 on the base tape 1 and installing the socket cover 502 between the socket plate 501 and the base tape 1, the transfer sticker 4 is fastened and prevented from falling.

[0036] Specifically, the socket plate 501 is a U-shaped structure, and a first flange 501a is fixed on the inner side of the upper end of the vertical plates on both sides of the socket plate 501, and a second flange 502a is fixed on both sides of the lower plate surface of the socket cover 502. The socket plate 501 is slidably socketed on the outside of the base band 1, and the second flanges 502a on both sides of the socket cover 502 are respectively slidably socketed between the first flange 501a on both sides and the base band 1.

[0037] Furthermore, a baseband opening 501b is respectively provided at one end of the vertical plates on both sides of the socket plate 501 for passing the baseband 1 when the baseband 1 is T-shaped spliced.

[0038] The operation process of this embodiment is as follows:

[0039] When performing extended splicing, the socket plate 501 is socketed on the splicing of the two basebands 1, and then the socket cover 502 is installed to fix it; when performing T-shaped splicing, the socket plate 501 is socketed on one end of a baseband 1, and the other baseband 1 to be spliced ​​is passed through the baseband opening 501b and connected to the baseband 1 in the socket plate 501 through the transfer sticker 4, and then the socket cover 502 is installed to fix it.

[0040] Throughout this specification, references to terms such as "one embodiment," "example," or "specific example" indicate that a specific feature, structure, material, or characteristic described in conjunction with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, schematic representations of these terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.

Claims

1. A replaceable spliced ​​LED linear light, comprising a base band (1), lamp beads (2), wires (3) and adapter stickers (4), characterized in that: A group of lamp bead grooves (101) are arranged in an array along the length direction of the base band (1) on one side of the base band (1); a wire groove (102) is respectively opened on both sides of the lamp bead groove (101); a wire docking groove (103) is opened on the base band (1) surface between the lamp bead grooves (101); a lamp bead seat (201) is fixedly installed below the lamp bead (2); two electrode sheets of the lamp bead (2) are installed through the lamp bead seat (201) on a side away from the lamp bead (2); the lamp bead seat (201) is installed in the lamp bead groove (101); the two electrode sheets below the lamp bead seat (201) are respectively facing the wire grooves (102) on both sides; the wire (3) includes a positive line (30 1) and a negative electrode line (302), the positive electrode line (301) and the negative electrode line (302) are respectively installed in the wire grooves (102) on both sides and are respectively connected to the two electrode sheets of the lamp bead (2), the positive electrode line (301) is fixedly provided with a positive electrode connecting piece (301a) in an array along the length direction of the positive electrode line (301) on the side close to the negative electrode line (302), and the negative electrode connecting piece (302a) is fixedly provided with a negative electrode connecting piece (302a) in an array along the length direction of the negative electrode line (302) on the side close to the positive electrode line (301), both the positive electrode connecting piece (301a) and the negative electrode connecting piece (302a) are installed in the wire connecting groove (103), and the transfer sticker (4) is attached to the negative electrode connecting piece (302a).

2. The easily replaceable spliced ​​LED linear light according to claim 1, characterized in that: A cylindrical protrusion (301a-1) is fixedly provided on the side of the positive electrode connecting piece (301a) away from the base tape (1); an insulating sticker (301a-2) is affixed to the side of the positive electrode connecting piece (301a) away from the base tape (1); a through hole is provided on the surface of the insulating sticker (301a-2); the cylindrical protrusion (301a-1) passes through the through hole on the surface of the insulating sticker (301a-2); a circular hole (302a-1) is provided on the surface of the negative electrode connecting piece (302a); the diameter of the circular hole (302a-1) is larger than the cylinder diameter of the cylindrical protrusion (301a-1); and the cylindrical protrusion (301a-1) passes through the circular hole (302a-1).

3. The easily replaceable spliced ​​LED linear light according to claim 2, characterized in that: The positive electrode line (301) and the negative electrode line (302) are both adhered with moisture-proof insulating paper (303) on the surface of the side away from the base tape (1).

4. The easily replaceable spliced ​​LED linear light according to claim 3, characterized in that: A non-sticky sticker (103a) is pasted on the top of the wire docking groove (103).

5. The easily replaceable spliced ​​LED linear light according to claim 4, characterized in that: The side of the transfer sticker (4) close to the base tape (1) is a non-adhesive surface. The side of the transfer sticker (4) close to the base tape (1) is adhered to a negative electrode conductive piece (401) and a positive electrode conductive piece (402). A through opening is provided on the surface of the negative electrode conductive piece (401). The positive electrode conductive piece (402) is fitted in the through opening on the surface of the negative electrode conductive piece (401). Both ends of the positive electrode conductive piece (402) are fitted to the upper end of the cylindrical protrusion (301a-1). The negative electrode conductive piece (401) is fitted to the negative electrode connecting piece (302a). A conductive piece insulating layer (402a) is adhered to the middle of the positive electrode conductive piece (402).

6. The easily replaceable spliced ​​LED linear light according to claim 5, characterized in that: The invention also includes a socket assembly (5), wherein the socket assembly includes a socket plate (501) and a socket cover (502), wherein the socket plate (501) is a U-shaped structure, wherein the upper ends of the vertical plates on both sides of the socket plate (501) are each fixedly provided with a first flange (501a), and the lower plate surfaces of the socket cover (502) are each fixedly provided with a second flange (502a), wherein the socket plate (501) is slidably socketed on the outer side of the base belt (1), and the second flanges (502a) on both sides of the socket cover (502) are respectively slidably socketed between the first flanges (501a) on both sides and the base belt (1).

7. The easily replaceable spliced ​​LED linear light according to claim 6, characterized in that: One end of each of the vertical plates on both sides of the socket plate (501) is provided with a baseband opening (501b).