Flexible line lamp

By connecting the flexible line light to the fast wiring cable, using its flexibility for styling, and quickly connecting through conductive pins or conductive heads, the problems of existing light strips being difficult to fast fix and flexible design are solved, and flexible cutting, rich styling design and quick power connection are achieved.

CN223049874UActive Publication Date: 2025-07-01ZHONGSHAN LEAVES LED LIGHTING TECHNOLOGY CO LTD +1
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Patent Information

Application Number
CN202422276995.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-18
Publication Date
2025-07-01
Estimated Expiration
2034-09-18

AI Technical Summary

Technical Problem

The existing light strips are not easy to fast fix, are costly and troublesome to use, and are not easy to flexibly design.

Method used

The flexible line light and quick wiring cable are used to connect the flexible line light to the quick wiring cable through the connection structure, and the flexible line light is used to design the shape using the flexibleness of the fast wiring cable and the flexible line light, and quick power connection is achieved through conductive pins or conductive heads.

Benefits of technology

It realizes flexible cutting and styling design of flexible line lamps, enriches the styling design of electric light sources, and realizes the convenience of quick power connection and light source working control.

✦ Generated by Eureka AI based on patent content.

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Abstract

A flexible line lamp relates to the technical field of electric light sources and comprises a soft base band and a lamp band fixed on the soft base band, the lamp band comprises a pair of electric conductor strips arranged on the lamp band and light source bodies evenly distributed along the lamp band and connected between the pair of electric conductors, and a connecting structure capable of being connected with a quick-connection cable is arranged on the back face of the soft base band. And the soft base band is connected in front of the quick-connection cable through the connecting structure. Compared with the prior art, the utility model has the advantages of convenient use, flexible length cutting and modeling design.
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Description

Technical Field

[0001] The utility model relates to the technical field of electric light sources, in particular to a flexible strip light. Background Art

[0002] The existing light strip includes a strip, a pair of conductive strips arranged on the strip, and light source bodies evenly distributed along the strip and connected between the pair of conductive strips. When in use, according to the required length, the light strip is cut, and then the pair of conductive strips are connected to a power control device, so as to control the light source bodies on the light strip to work. This kind of light strip is very convenient to cut according to the required length. Therefore, it is flexible and convenient to use. However, due to the nature of the light strip, on the one hand, it is not easy to be quickly fixed, and a matching support structure needs to be manufactured for fixing. Therefore, the cost is high, and it is troublesome to apply. Moreover, it is not easy to flexibly design and fix the shape. Summary of the Invention

[0003] The invention object of the utility model is to provide a flexible strip light which is convenient to use and can flexibly design the shape.

[0004] The utility model is realized as follows: it includes a soft baseband and a light strip fixed on the soft baseband. The light strip includes a pair of conductive strips arranged on the strip and light source bodies evenly distributed along the strip and connected between the pair of conductive strips. A connection structure capable of connecting with a quick connection cable is arranged on the back of the soft baseband, so that the soft baseband is connected in front of the quick connection cable through the connection structure.

[0005] When in use, the flexible strip light is cut according to the design requirements to make the length of the flexible strip light meet the design requirements. Then the flexible strip light is connected and positioned on the quick connection cable. The quick connection cable is such a cable that includes an insulating tape and wires arranged side by side on both sides of the insulating tape. The quick connection cable is an exposed wire type quick connection cable (the insulating tape forming the quick connection cable can adopt an insulating braided net), or the quick connection cable is a hidden type quick connection cable (the material of the insulating tape forming the quick connection cable is a plastic that is easy to be pierced by a conductive needle and will not cause deformation of the insulating tape after being pierced, such as insulating silica gel). Through the butt joint technology, the conductive head is leaned against the wires of the exposed wire type quick connection cable, or through the acupuncture technology of the conductive needle, the conductive needle is pierced into the quick connection cable. Through the acupuncture technology of the conductive needle, the conductive needle pierces through the soft baseband and reaches the light strip, so that the wires of the quick connection cable are connected with the matching conductive strips on the light strip through the conductive needle, so as to take power from the quick connection cable and conduct the power to the light strip conductive strips of the light strip component, and then conduct it to the light source body. In this way, the work of the light strip can be controlled through the corresponding control circuit connected with the conductive needle or the conductive head.

[0006] Since the flexible strip light can be cut according to the design requirements, it is very convenient to make the length of the flexible strip light meet the design requirements;

[0007] By using flexible strip lights and quick-connect cables, and setting the flexible strip lights on the quick-connect cables, the flexible shaping performance of the quick-connect cables and the flexible strip lights can be utilized for shaping design, enriching and facilitating the shaping design of electric light sources. At the same time, the effect of quick power connection can be achieved.

[0008] After the shaping design is completed, it is very convenient to connect power and control the operation of the light source.

[0009] Compared with the existing technology, the utility model has the advantages of convenient use and flexible length cutting and shaping design. Description of the Drawings

[0010] Figure 1 It is a schematic structural diagram of the flexible strip light of the utility model;

[0011] Figure 2 It is a diagram showing the usage state of the flexible strip light of the utility model;

[0012] Figure 3 It is Figure 2 an exploded view of

[0013] Figure 4 It is a schematic circuit diagram when the flexible strip light of the utility model is in use;

[0014] Figure 5 It is a schematic structural diagram of a wire-exposed quick-connect cable.

[0015] Explanation of the reference numerals in the drawings: a - quick-connect component; 1 - soft baseband; 2 - light strip; 201 - strip; 202 - conductive strip; 203 - light source body; 3 - quick-connect cable; 301 - insulating tape; 302 - wire; 4 - connection structure; 5 - through hole; 6 - conductive pin; 7 - base; 8 - driving mechanism; 9 - bridge rectifier circuit; 10 - inlaid groove; 11 - threaded hole; 12 - positioning ring; 13 - positioning inlaid groove. Detailed Description of the Preferred Embodiment

[0016] Now, with reference to the drawings and embodiments, the flexible strip light of the utility model will be further described in detail:

[0017] As Figure 1 shown, the light strip component of the utility model is realized as follows: it includes a soft baseband 1 and a light strip 2 fixed on the soft baseband 1. The light strip 2 includes a pair of conductive strips 202 provided on the strip 201 and light source bodies 203 evenly distributed along the strip 201 and connected between the pair of conductive strips 202. A connection structure 4 capable of connecting with the quick-connect cable 3 is provided on the back surface of the soft baseband 1, so that the soft baseband 1 is connected in front of the quick-connect cable 3 through the connection structure 4.

[0018] Preferably, the material of the strip-shaped soft baseband 1 is transparent plastic so that the light of the light source body 203 can be transmitted.

[0019] Preferably, the connecting structure 4 is a cable inlay groove whose shape matches that of the quick connection cable 3. The quick connection cable 3 is inlaid into the cable inlay groove to connect the soft baseband 1 to the quick connection cable 3.

[0020] Preferably, through holes 5 are provided on the strip-shaped soft baseband 1 of the light strip 2. The function of the through holes 5 is to scatter light to expand the illumination range of the light.

[0021] Such as Figure 2 、 3 As shown in FIGS. 4, when in use, the flexible strip light is cut according to the design requirements so that the length of the flexible strip light meets the design requirements. Then, the flexible strip light is connected and positioned on the quick connection cable 3 (such as Figure 2 、 3 shown, the quick connection cable 3 is a wire-hidden quick connection cable. The quick connection cable 3 includes an insulating tape 301 and wires 302 arranged side by side on the upper and lower sides inside the insulating tape 301. The material of the insulating tape 301 is plastic that is easily pierced by the conductive needle 6 and will not be deformed after being pierced, such as insulating silica gel; as Figure 5 shown, the quick connection cable 3 is a wire-exposed quick connection cable. The quick connection cable 3 includes an insulating tape 301 and wires 302 arranged side by side on the upper and lower surfaces of the insulating tape 301. The insulating tape 301 is made of insulating braid), on the quick connection cable 3, as Figure 2 、 3 shown, the quick connection member a (including a base 7, two pairs of conductive needles 6 arranged left and right in the base 7 (if a wire-exposed quick connection cable is used, a pair of conductive heads and a pair of conductive needles are used), a driving mechanism 8, and a bridge rectifier circuit 9 arranged in the base 7 and connected between the two pairs of conductive needles 6. The bridge rectifier circuit 9 is a bridge rectifier circuit that can convert direct current with uncertain positive and negative terminals into direct current with definite positive and negative terminals. Determined by the use environment, the positive and negative terminals of the direct current connected to the quick connection cable 3 are uncertain, while the positive and negative terminals of the light source body of the flexible strip light must be definite. In this way, the light source body can work normally) is bridged across the left end of the flexible strip light and the quick connection cable 3 on the left side of the left end. Through the driving mechanism 8 (threaded holes 11 are provided at the inlay grooves 10 corresponding to each pair of conductive needles 6 in the base 7, and the driving mechanism 8 is a screw screwed into the threaded holes 11), the two pairs of conductive needles 6 are respectively pierced into the conductive wire cable 3 and the soft baseband 1 so that after taking power from the quick connection cable 3, the power is conducted to the light strip conductor strip 202 of the flexible strip light through the bridge rectifier circuit 9, and then conducted to the light source body 203. In this way, the operation of the light strip 2 can be controlled by the control circuit provided on or connected to the quick connection member a.

[0022] Preferably, a positioning ring 12 is provided at one end of the flexible baseband 1. When in use, one end of the flexible baseband 1 with the positioning ring 12 is embedded in the positioning embedding groove 13 at the embedding groove 10 in the base 7 of the quick-connect component a, so as to facilitate people to accurately embed one end of the flexible strip light on the embedding groove 10 of the base 7.

Claims

1. A flexible linear light, characterized in that: It includes a soft base belt and a light belt fixed on the soft base belt. The light belt includes a pair of conductor strips arranged on the belt strip, and a light source body evenly distributed along the belt strip and connected between the pair of conductors. A connecting structure that can be connected to a quick-connect cable is arranged on the back of the soft base belt, so that the soft base belt is connected to the front of the quick-connect cable through the connecting structure.

2. The flexible linear light according to claim 1, characterized in that: The strip-shaped soft base belt is made of transparent plastic to allow the light from the light source to be transmitted.

3. The flexible linear light according to claim 2, characterized in that: The connection structure is a cable embedding groove whose shape matches the shape of the quick-connect cable.

4. The flexible linear light according to claim 1, 2 or 3, characterized in that: The strip-shaped soft base band on the light strip is provided with through holes, and the function of the through holes is to scatter light to expand the irradiation range of light.

5. The flexible linear light according to claim 1, 2 or 3, characterized in that: A positioning ring is arranged at the end of the soft base belt.

6. The flexible linear light according to claim 4, characterized in that: A positioning ring is arranged at the end of the soft base belt.