Quick connecting component

By adopting the design of inlaid grooves and power-taking components on the flexible line lamp, combined with the conductive members and the driving mechanism, the problems of complex and low efficiency of power connection in the prior art are solved, and fast and flexible power conduction and styling design are achieved.

CN223141041UActive Publication Date: 2025-07-22ZHONGSHAN LEAVES LED LIGHTING TECHNOLOGY CO LTD +1
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422276980.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-18
Publication Date
2025-07-22
Estimated Expiration
2034-09-18

AI Technical Summary

Technical Problem

The power connection method of existing flexible line lamps is complex in operation and low in connection efficiency, and cannot adapt to the requirements of on-site design and shape changes.

Method used

The base with inlaid grooves and the power-taking member distributed left and right are adopted, combined with the conductive member and the driving mechanism, to achieve rapid conduction of the power supply, connect the fast wiring cable and flexible line lamp through the conductive member, and use the bridge circuit to convert the power supply polarity.

Benefits of technology

It realizes fast and simple power connection, can flexibly design, improves connection efficiency, and meets different design needs.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223141041U_ABST
    Figure CN223141041U_ABST
Patent Text Reader

Abstract

A quick connection component relates to the technical field of power supply connection, and comprises a base with an inlay groove, two pairs of power taking components arranged on the bottom surface of the inlay groove of the base in a left-right distribution manner, and two driving mechanisms, the two power taking components of each pair of power taking components are distributed up and down, and each pair of power taking components is matched with one driving mechanism. The two pairs of electricity taking components are connected through the conductive component to achieve conduction of a power source, and the driving mechanism enables the electricity taking components to abut against the electric conductor component embedded in the embedding groove. Compared with the prior art, the connecting device has the advantages of convenience in use, simplicity in operation, high connecting efficiency, quick connection and flexible matching for modeling design.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of power connection, in particular to a quick connection component. Background Art

[0002] The existing flexible strip light is composed of a soft baseband and a light strip fixed at the rear of the soft baseband. During use, the flexible strip light is cut according to design requirements to make the length of the flexible strip light meet the design requirements. An inlay groove is arranged on the back of the soft base, and a quick connection cable composed of an insulating tape and wires arranged side by side on the upper and lower sides of the insulating tape is inlaid in the inlay groove;

[0003] With this design, since the flexible strip light can be cut according to design requirements, it is very convenient to make the length of the flexible strip light meet the design requirements;

[0004] By using a flexible strip light and a quick connection cable, and arranging the flexible strip light on the quick connection cable, the bendable shaping performance of the quick connection cable and the flexible strip light can be utilized for shaping design, enriching and facilitating the shaping design of the light source;

[0005] Since the quick connection cable is only connected to the back of the flexible strip light, it is necessary to connect the wires of the quick connection cable to the light strip so as to conduct the power from the quick connection cable to the light strip. If the conventional wire connection method is adopted, it is necessary to peel off the insulating layer of the existing quick connection cable and the soft baseband of the flexible strip light to expose the conductors on the wires and the conductive strips on the light strip, and then connect them through conductive wires. This method is complex in operation, low in connection efficiency, and cannot meet the requirements of on-site design shaping changes. Summary of the Invention

[0006] The invention object of the utility model is to provide a quick connection component which is convenient to use, simple in operation, high in connection efficiency, can be quickly connected and can cooperate flexibly for shaping design.

[0007] The utility model is realized as follows: it includes a base with an inlay groove, two pairs of power-taking components arranged horizontally on the bottom surface of the inlay groove of the base, and a driving mechanism. The two power-taking components of each pair of power-taking components are arranged vertically. The power-taking components are matched with a driving mechanism. The two pairs of power-taking components are connected through a conductive component to realize power conduction. The driving mechanism is a driving mechanism that makes the power-taking components abut against the conductive body components inlaid in the inlay groove.

[0008] The conductive member is a quick-connect cable and a flexible strip light connected together. When the flexible strip light needs to obtain power from the quick-connect cable, first, cut the flexible strip light according to the design requirements so that the length of the flexible strip light meets the design requirements. Then, connect and position the flexible strip light on the quick-connect cable. Then, insert the connected quick-connect cable and flexible strip light into the embedding groove. The fronts of the quick-connect cable and the flexible strip light face a pair of power-taking members respectively. The driving mechanism matched with the power-taking members acts to make the power-taking members reach the conductors of the quick-connect cable (if the quick-connect cable is a quick-connect cable with exposed conductors, the power-taking member is a conductive head, and the conductive head presses on the exposed conductors; if the quick-connect cable is a quick-connect cable with hidden conductors, the power-taking member is a conductive needle, and the conductive needle pierces into the insulating tape of the quick-connect cable and connects with the conductors inside the insulating tape) and make the power-taking member (conductive needle) of the quick-connect member pierce into the soft baseband of the flexible strip light and then reach the conductive strip of the light strip, so that the conductors of the quick-connect cable and the matching conductive strip on the light strip of the flexible strip light are conducted through the power-taking members, so that after one pair of power-taking members take power from the quick-connect cable, the power is conducted to the other pair of power-taking members through the conductive member and then to the conductive strip of the light strip of the flexible strip light, and then conducted to the light source body. In this way, the power on the quick-connect cable is conducted to the light strip of the flexible strip light.

[0009] 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.

[0010] By using a flexible strip light and a quick-connect cable and arranging the flexible strip light on the quick-connect cable, the bendable shaping performance of the quick-connect cable and the flexible strip light can be utilized for shaping design, enriching and facilitating the shaping design of the electric light source.

[0011] After the shaping design is completed, it is very convenient to quickly connect the power and control the work of the light source.

[0012] Preferably, the conductive member 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-connect cable are uncertain, while the positive and negative terminals of the light source body of the light strip member must be definite, so that the light source body can work normally.

[0013] Compared with the prior art, the utility model has the advantages of convenient use, simple operation, high connection efficiency, quick connection and flexible cooperation for shaping design. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is a schematic structural diagram of the quick-connect member in Embodiment 1 of the utility model;

[0015] Figure 2 For Figure 1 exploded view;

[0016] Figure 3 It is a schematic structural diagram of a flexible strip light.

[0017] Figure 4 It is a schematic circuit diagram when the quick-connect component is in use;

[0018] Figure 5 It is a schematic structural diagram of the quick-connect component according to Embodiment 2 of the present invention.

[0019] Explanation of the reference numerals in the attached drawings: 1 - Inlaid groove; 2 - Base; 3 - Power-taking component; 4 - Driving mechanism; 5 - Conductive component; 501 - Elastic piece clamping; 6 - Conductor component; 601 - Flexible strip light; 6011 - Light strip; 6012 - Conductor strip; 6013 - Soft baseband; 6014 - Light source body; 602 - Groove; 603 - Quick-connect cable; 6031 - Conductor; 6032 - Insulating tape; 7 - Threaded hole; 8 - Positioning structure; 801 - Positioning ring; 802 - Positioning inlaid groove. Specific embodiments

[0020] Now, the quick-connect component of the present invention will be further described in detail with reference to the accompanying drawings and embodiments:

[0021] As shown in Figure 1 、 2 、and 3, the quick-connect component of the present invention is realized as follows. It includes a base 2 with an inlaid groove 1, two pairs of power-taking components 3 arranged left and right on the bottom surface of the inlaid groove 1 of the base 2, and a driving mechanism 4. The two power-taking components of each pair of power-taking components 3 are arranged up and down. The power-taking component 3 is matched with a driving mechanism 4. The two pairs of power-taking components 3 are connected by a conductive component 5 to realize power conduction. The driving mechanism 4 is a driving mechanism that makes the power-taking component 3 abut against the conductor component 6 embedded in the inlaid groove 1.

[0022] Preferably, the conductive component 5 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.

[0023] Preferably, the bridge rectifier circuit is a bridge circuit.

[0024] As shown in Figure 5 , the conductive component 5 is a component in the form of a circuit board. The conductive component 5 is arranged in the middle of the inlaid groove 1 of the base 2. A pair of copper elastic piece clamps 501 are arranged on each of the left and right sides of the conductive component 5. The power-taking component 3 is in the form of a plate. One end of the plate-shaped power-taking component 3 is buckled at the bottom of the inlaid groove 1, and the other end is embedded in the elastic piece clamp 501.

[0025] Adopting the elastic piece clamp 501 makes the structure simple, reliable in use, convenient for manufacturing and assembly, and reduces the manufacturing cost.

[0026] The driving mechanism 4 is a lid, and the base 2 is a box-shaped object. The lid is fixedly connected to the base 2 by means of snap connection. When covering the lid, the conductor member 6 including the quick connection cable 603 and the flexible strip light 601 is pushed towards the power-taking member 3.

[0027] Preferably, the conductor member 6 includes a flexible strip light 601 and a quick connection cable 603 embedded in the groove 602 in front of the flexible strip light 601. The shape of the left side of the embedding groove 1 matches that of the quick connection cable 603, and the shape of the right side of the embedding groove 1 matches the shape of the flexible strip light 601 connected to the quick connection cable 603. The left end of the flexible strip light 601 connected to the quick connection cable 603 and the quick connection cable 603 on the left side of the left end are embedded in the embedding groove 1.

[0028] Preferably, threaded holes 7 are provided at the embedding groove 1 corresponding to each pair of power-taking members 3. The driving mechanism 4 is a screw screwed into the threaded hole 7. When the driving mechanism 4 is screwed into the threaded hole 7, the right pair of power-taking members 3 are respectively pierced into the flexible strip light 601 and then lean against a pair of conductor strips 6012 of the light strip 6011 of the flexible strip light 601 and are connected to the pair of conductor strips 6012. When the driving mechanism 4 is screwed into the threaded hole 7, the left pair of power-taking members 3 respectively reach the two wires 6031 inside the quick connection cable 603 and are respectively connected to the two wires 6031.

[0029] Preferably, a positioning structure 8 for positioning the flexible strip light 601 is provided on the right side of the embedding groove 1 that matches the shape of the flexible strip light 601 connected to the quick connection cable 603, and the left end of the flexible strip light 601 is positioned on the right side of the embedding groove 1.

[0030] The positioning structure 8 includes a positioning ring 801 sleeved on the left end of the flexible strip light 601 and a positioning embedding groove 802 provided on the right side of the embedding groove 1. The left end of the flexible strip light 601 with the positioning ring 801 is embedded in the positioning embedding groove 802, enabling people to accurately embed the left end of the flexible strip light 601 on the right side of the embedding groove 1.

[0031] When in use, first, cut the flexible strip light 601 according to the design requirements so that the length of the flexible strip light 601 meets the design requirements. Connect the left end of the flexible strip light 601 to the positioning ring 801, then connect and position the flexible strip light 601 on the quick connection cable 603. Then, inlay the connected quick connection cable 603 and the flexible strip light 601 into the inlay groove 1. The fronts of the quick connection cable 603 and the flexible strip light 601 face a pair of power-taking components 3 respectively. Rotate the driving mechanism 4 that matches the power-taking component 3 so that the power-taking component 3 reaches the wire of the quick connection cable 603 (if the quick connection cable 603 is a quick connection cable with exposed wires, the power-taking component 3 is a conductive head, and the conductive head presses on the exposed wire 6031; if the quick connection cable 603 is a quick connection cable with hidden wires, the power-taking component 3 is a conductive needle, and the conductive needle pierces into the insulating tape 6032 of the quick connection cable 603 and connects to the wire 6031 inside the insulating tape 6032) and make the power-taking component 3 (conductive needle) pierce into the soft base band 6013 of the flexible strip light 601 and then reach the conductive strip 6012 of the light strip 6011, so that the wire 6031 of the quick connection cable 603 and the matching conductive strip 6012 on the light strip 6011 of the flexible strip light 601 are conducted through the power-taking component 3, so that a pair of power-taking components 3 on the left take power from the quick connection cable 603 and then conduct the power to a pair of power-taking components 3 on the right through the conductive component 5 and then to the conductive strip 6012 of the light strip 6011 of the flexible strip light 601, and then conduct it to the light source body 6014. In this way, the power on the quick connection cable 603 is conducted to the light strip 6011 of the flexible strip light 601.

Claims

1. A quick-connect component, characterized in that, It includes a base with an inlaid groove, two pairs of power-taking components arranged left and right on the bottom surface of the inlaid groove of the base, and a driving mechanism. The two power-taking components of each pair are arranged vertically. Each pair of power-taking components is matched with a driving mechanism. The two pairs of power-taking components are connected by a conductive component to achieve power conduction. The driving mechanism is a driving mechanism that makes the power-taking component abut against the conductive body component in the inlaid groove.

2. The quick-connecting member according to claim 1, wherein, The conductive component 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.

3. The quick-connecting member according to claim 2, wherein The bridge rectifier circuit is a bridge circuit.

4. The quick-connect component according to claim 1 or 2 or 3, characterized in that, The conductive body component includes a flexible strip light and a quick-connect cable embedded in the groove in front of the flexible strip light. The shape of the left side of the inlaid groove matches the quick-connect cable, and the shape of the right side of the inlaid groove matches the shape of the flexible strip light connected to the quick-connect cable. The left end of the flexible strip light connected to the quick-connect cable is embedded in the right side of the inlaid groove, and the quick-connect cable to the left of the left end of the flexible strip light is embedded in the left side of the inlaid groove.

5. The quick-connecting member according to claim 4, characterized in that, A positioning structure for positioning the flexible strip light is provided on the right side of the inlaid groove that matches the shape of the flexible strip light connected to the quick-connect cable. The left end of the flexible strip light is positioned at the positioning structure on the right side of the inlaid groove.

6. The quick-connecting member according to claim 5, characterized in that, The positioning structure includes a positioning ring sleeved on the left end of the flexible strip light and a positioning inlaid groove provided on the right side of the inlaid groove. The left end of the flexible strip light with the positioning ring is embedded in the positioning inlaid groove, so that the left end of the flexible strip light is accurately embedded on the right side of the inlaid groove.

7. The quick-connecting member according to claim 4, characterized in that, Threaded holes are provided at the inlaid groove corresponding to each pair of power-taking components. The driving mechanism is a screw screwed into the threaded hole. The screw on the right as the driving mechanism is screwed into the threaded hole to pierce the right pair of power-taking components into the flexible strip light respectively, and then abut against a pair of conductive strips on the light strip of the flexible strip light and connect with the pair of conductive strips. The screw on the left as the driving mechanism is screwed into the threaded hole to make the left pair of power-taking components reach the two wires inside the quick-connect cable respectively and connect with the two wires respectively.

8. The quick-connecting member according to claim 5 or 6, characterized in that, Threaded holes are provided at the inlaid groove corresponding to each pair of power-taking components. The driving mechanism is a screw screwed into the threaded hole. The screw on the right as the driving mechanism is screwed into the threaded hole to pierce the right pair of power-taking components into the flexible strip light respectively, and then abut against a pair of conductive strips on the light strip of the flexible strip light and connect with the pair of conductive strips. The screw on the left as the driving mechanism is screwed into the threaded hole to make the left pair of power-taking components reach the two wires inside the quick-connect cable respectively and connect with the two wires respectively.

9. The quick-connecting member according to claim 1 or 2 or 3, characterized in that, The conductive component is a circuit board-type component. The conductive component is arranged in the middle of the inlaid groove of the base. A pair of copper elastic pieces are clamped on each of the left and right sides of the conductive component. The power-taking component is plate-shaped. One end of the plate-shaped power-taking component is buckled at the bottom of the inlaid groove, and the other end is embedded in the elastic piece clamp.

10. The quick-connect member according to claim 9, wherein, The driving mechanism is a lid. The base is a box-shaped object. The lid is fixedly connected to the base by a snap connection method. While covering the lid, the conductive body component is pushed towards the power-taking component.