Power supply connector capable of realizing rapid wiring
By designing power connectors with components such as slide rails and buttons, the problems of time-consuming, laborious, and inconvenient wire removal and installation in existing power connectors are solved, enabling quick wire fixing and unlocking, and improving ease of use and stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN COBURN TECH CO LTD
- Filing Date
- 2025-05-19
- Publication Date
- 2026-04-28
AI Technical Summary
Existing power connectors are time-consuming and laborious to install and remove wires, and are inconvenient to operate in high-density wiring environments, which can easily lead to poor contact or loosening.
The design incorporates components such as slide rails, buttons, and springs. Pressing the button allows for quick fixing and unlocking of the wire, while the spring's rebound force enables convenient connection and disassembly of the wire. Furthermore, the splicing components enhance the stability of the multiple housings.
It enables quick and easy fixing and unlocking of wires, improving ease of use and enhancing stability in high-density wiring environments.
Smart Images

Figure CN224177626U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of power connector technology, and in particular to a power connector that allows for quick wiring. Background Technology
[0002] A power connector is an interface device used to enable power transmission between electrical devices. It reliably connects a power source to the device or cable through mechanical and electrical connections, thus completing the transfer of electrical energy. Power connectors are widely used in various fields such as homes, industry, transportation, communications, and medical systems, and are an indispensable component of modern electrical systems.
[0003] However, existing power connectors typically use screws to fasten wires, which is time-consuming and laborious when installing or removing wires. In high-density wiring environments, this can be inconvenient and can easily lead to problems such as poor contact or loosening.
[0004] Therefore, a power connector that allows for quick and easy wiring, improving ease of use, has been developed. Utility Model Content
[0005] To overcome the shortcomings of existing power connectors, which are time-consuming and laborious to install and remove wires, and are inconvenient to operate in high-density wiring environments, easily causing problems such as poor contact or loosening, this utility model provides a power connector that can quickly and conveniently fix and unlock wires, improving ease of use.
[0006] The technical solution is as follows: A power connector with quick wiring capability includes a housing, a first slide rail, a second slide rail, a contact block, a moving block, a baffle, a button, a limit block, a first spring, a locking block, a sliding block, a limit ring, a second spring, a third spring, and a splicing assembly. The front and rear parts of the housing are each slidably and detachably connected to contact blocks via two left and right first slide rails. Each contact block is slidably and detachably connected to a moving block via multiple second slide rails. Baffles are connected to the front and rear sides of the upper part of the housing. Buttons are slidably connected to the upper sides of both the front and rear parts of the housing. Limit blocks are slidably connected to the baffles. The upper inner part of the housing also... The sliding connection has two limiting blocks at the front and rear. The limiting blocks on both the front and rear sides are connected to the connecting baffles by a first spring. The two limiting blocks in the middle are connected to the outer shell by a first spring. The lower side of each button is connected to a locking block. The lower part of each button is slidably connected to a sliding block, which is located above the locking block. The lower part of each button is connected to a limiting ring, which is located above the sliding block. The button is connected to the outer shell by a second spring. The moving block is slidably connected to the adjacent locking block. The moving block is connected to the locking block by a third spring. The outer shell is provided with splicing components that can be spliced together.
[0007] Optionally, the lower side of the moving block is curved.
[0008] Optionally, each button is equipped with a soft pad.
[0009] Optionally, the limiting blocks are all wedge-shaped.
[0010] Optionally, the splicing assembly includes a connecting block, a connecting plate, a locking block, a fourth spring, and a handle. The connecting block is connected to the right side of the housing, and the connecting plate is connected to the left side of the housing. The upper and lower parts of the connecting block are slidably connected to two locking blocks. Multiple fourth springs are connected between each locking block and the connecting block. A handle is connected between each pair of adjacent locking blocks.
[0011] Optionally, the connecting plate has two slots, one at the top and one at the bottom.
[0012] The beneficial effects of this utility model are: 1. When it is necessary to disassemble the wire, the sliding block moves down and contacts the limiting block by pressing the button. The limiting ring limits the sliding block. When the sliding block contacts the locking block, the second spring rebounds, causing the button to reset and the moving block to reset and disengage from the wire. This achieves the effect of quickly and conveniently fixing and unlocking the wire, improving the ease of use.
[0013] 2. This utility model achieves the effect of splicing shells by engaging a connecting plate on another shell with a connecting block, causing the connecting plate to press the connecting block inward and move it. The fourth spring is compressed and contracts. After the connecting plate and the connecting block are engaged, the fourth spring rebounds, causing the connecting block to reset and engage with the connecting plate. This allows the shells to be spliced together, which improves the stability when multiple shells are used. Attached Figure Description
[0014] Figure 1 This is a three-dimensional structural diagram of the present invention.
[0015] Figure 2 This is a three-dimensional structural diagram of the connecting block and baffle of this utility model.
[0016] Figure 3 This is a three-dimensional structural diagram of the contact block and shell components of this utility model.
[0017] Figure 4 This is a three-dimensional structural diagram of the button and slider components of this utility model.
[0018] Figure 5 This is a three-dimensional structural diagram of the components such as the locking block and handle of this utility model.
[0019] Explanation of reference numerals in the attached drawings: 1: outer casing, 101: first slide rail, 102: second slide rail, 2: contact block, 21: moving block, 3: connecting block, 4: connecting plate, 5: baffle, 6: button, 7: limit block, 8: first spring, 9: locking block, 10: sliding block, 11: limit ring, 111: second spring, 112: third spring, 12: locking block, 13: fourth spring, 14: handle. Detailed Implementation
[0020] The embodiments of this utility model will be described below with reference to the accompanying drawings.
[0021] A power connector that allows for quick wiring, such as Figures 1-5 As shown, the assembly includes a housing 1, a first slide rail 101, a second slide rail 102, a contact block 2, a moving block 21, a baffle 5, a button 6, a limiting block 7, a first spring 8, a locking block 9, a sliding block 10, a limiting ring 11, a second spring 111, a third spring 112, and a splicing assembly. The contact blocks 2 are slidably and detachably connected to the front and rear parts of the housing 1 via two left and right first slide rails 101. The moving blocks 21 are slidably and detachably connected to the upper parts of the contact blocks 2 via four second slide rails 102. The lower sides of the moving blocks 21 are all arc-shaped to facilitate fixing wires. The baffle 5 is connected to the front and rear sides of the upper part of the housing 1. The button 6 is slidably connected to the upper sides of both the front and rear parts of the housing 1. The button 6 is provided with a soft pad for easy pressing. The limiting blocks 7 are slidably connected to the baffle 5. The upper inner part of the housing 1 is also slidably connected to... The device is equipped with two limiting blocks 7 at the front and rear, both of which are wedge-shaped for easy positioning. The limiting blocks 7 on both the front and rear sides are connected to the baffle 5 with the first spring 8. The two limiting blocks 7 in the middle are connected to the outer shell 1 with the first spring 8. The button 6 is connected to the lower side of the locking block 9. The lower part of the button 6 is slidably connected to the sliding block 10, which is located above the locking block 9. The lower part of the button 6 is connected to the limiting ring 11, which is located above the sliding block 10. The button 6 is connected to the outer shell 1 with the second spring 111. The moving block 21 is slidably connected to the adjacent locking block 9. The moving block 21 is connected to the locking block 9 with the third spring 112. The outer shell 1 is provided with a splicing assembly.
[0022] like Figure 1As shown, the splicing assembly includes a connecting block 3, a connecting plate 4, a locking block 12, a fourth spring 13, and a handle 14. The connecting block 3 is connected to the right side of the outer shell 1, and the connecting plate 4 is connected to the left side of the outer shell 1. The connecting plate 4 has two front and rear locking slots on both the upper and lower sides for easy fixing. The connecting block 3 has two front and rear locking blocks 12 slidably connected to its upper and lower parts. Each locking block 12 is connected to the connecting block 3 by two fourth springs 13. Each pair of adjacent locking blocks 12 is connected to a handle 14.
[0023] When using this utility model, firstly, the contact block 2 is installed on the outer shell 1 via the first slide rail 101. Then, two wires are inserted into the contact block 2 respectively. After insertion, the button 6 is pressed down, and the second spring 111 is compressed and contracted, causing the locking block 9 to move downward and pushing the moving block 21 downward. When the locking block 9 moves downward, it presses the limiting block 7 away from each other, and the first spring 8 is compressed and contracted. When the locking block 9 moves to the lower side of the limiting block 7, the first spring 8 rebounds, causing the limiting block 7 to reset and fix the locking block 9. The force of the third spring 112 causes the moving block 21 to press the wires. When it is necessary to remove the wires, the button 6 is pressed down again, causing the sliding block 10 to move down and contact the limiting block 7. The limiting ring 11 limits the sliding block 10. When the sliding block 10 contacts the locking block 9, the second spring 111 rebounds, causing the button 6 to move downward and the locking block 9 to move downward. 6. Reset: This causes the moving block 21 to reset and detach from the wire, thus enabling quick and convenient fixing and unlocking of the wire, improving ease of use. When multiple housings 1 need to be used simultaneously, the connecting plate 4 on another housing 1 is engaged with the connecting block 3, causing the connecting plate 4 to press the locking block 12 inward. The fourth spring 13 is compressed and contracts. After the connecting plate 4 and the connecting block 3 are engaged, the fourth spring 13 rebounds, causing the locking block 12 to reset and engage with the connecting plate 4, thereby splicing the housings 1 and improving the stability when multiple housings 1 are used. When the connecting plate 4 needs to be disassembled, the locking block 12 can be moved and detached from the connecting plate 4 by pulling the handle 14. When the contact block 2 is damaged, the moving block 21 can be detached from the second slide rail 102 on the contact block 2, and then the contact block 2 can be removed from the first slide rail 101 for replacement.
[0024] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A power connector with quick-connect capability, characterized in that, The assembly includes a housing (1), a first slide rail (101), a second slide rail (102), a contact block (2), a moving block (21), a baffle (5), a button (6), a limit block (7), a first spring (8), a locking block (9), a sliding block (10), a limit ring (11), a second spring (111), a third spring (112), and a splicing assembly. The front and rear parts of the housing (1) are slidably connected to the contact block (2) via two left and right first slide rails (101). The upper part of each contact block (2) is slidably connected to the moving block (21) via multiple second slide rails (102). The front and rear sides of the upper part of the housing (1) are connected to the baffle (5). The upper sides of both the front and rear parts of the housing (1) are slidably connected to the button (6). Limit blocks (7) are slidably connected to the baffle (5). The upper inner part of the housing (1) is also slidably connected to... Two limiting blocks (7) are located at the front and rear. The limiting blocks (7) on the front and rear sides are connected to the baffle (5) with a first spring (8). The two limiting blocks (7) in the middle are connected to the outer shell (1) with a first spring (8). The lower side of the button (6) is connected to a locking block (9). The lower part of the button (6) is connected to a sliding block (10). The sliding block (10) is located above the locking block (9). The lower part of the button (6) is connected to a limiting ring (11). The limiting ring (11) is located above the sliding block (10). The button (6) is connected to the outer shell (1) with a second spring (111). The moving block (21) is connected to the adjacent locking block (9) with a sliding connection. The moving block (21) is connected to the locking block (9) with a third spring (112). The outer shell (1) is provided with a splicing component that can be spliced.
2. The power connector with quick wiring according to claim 1, characterized in that, The lower side of the moving block (21) is curved.
3. A power connector with quick wiring capability according to claim 1, characterized in that, All buttons (6) are equipped with soft pads.
4. A power connector with quick wiring capability according to claim 1, characterized in that, All limiting blocks (7) are wedge-shaped.
5. A power connector with quick wiring capability according to claim 1, characterized in that, The splicing assembly includes a connecting block (3), a connecting plate (4), a locking block (12), a fourth spring (13), and a handle (14). The connecting block (3) is connected to the right side of the outer shell (1), and the connecting plate (4) is connected to the left side of the outer shell (1). The upper and lower parts of the connecting block (3) are slidably connected to two locking blocks (12). Multiple fourth springs (13) are connected between the locking blocks (12) and the connecting block (3). A handle (14) is connected between two adjacent locking blocks (12).
6. A power connector with quick-connect capability according to claim 5, characterized in that, The connecting plate (4) has two slots on both the top and bottom sides.