电路分配转接器
By designing a three-loop component and modular frame structure for the circuit distribution adapter, the contradiction between space utilization and loop scalability in traditional circuit distributors is resolved. This achieves high-density integration and improved shock resistance, simplifies the installation process, and reduces power consumption.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- WENZHOU DEYUAN ELECTRIC
- Filing Date
- 2025-07-31
- Publication Date
- 2026-07-17
AI Technical Summary
Traditional circuit splitters present a trade-off between space utilization and loop scalability. The small space of the 1/4 circuit assembly leads to installation difficulties and poor heat dissipation, while the 1/2 circuit assembly has low space utilization and complex wiring in high-density power distribution scenarios, increasing costs.
Design a circuit distribution adapter that employs three parallel distributed loop components, including a primary plug and a secondary socket, which form an electrical connection with the incoming and outgoing terminals to constitute a 1/3 assembly, achieving high-density integration. Furthermore, a modular frame structure is used to isolate high and low voltage components in layers, enhancing impact resistance.
It achieves a coupling of space utilization and loop scalability, improves the impact resistance of the frame structure, simplifies the installation process, reduces power consumption, and extends cable life.
Smart Images

Figure CN224520399U_ABST
Abstract
Claims
1. A circuit distribution adapter, characterized by, include: The frame structure (1) includes a first end and a second end that are opposite each other; An inlet assembly (2) is disposed on the first end of the frame structure (1), and the inlet assembly (2) includes a terminal and an outlet. The circuit assembly is provided in three parts, and the three circuit assemblies are all located on the second end of the frame structure (1). The three circuit assemblies are distributed in sequence along the direction perpendicular to the first end to the second end of the frame structure (1). The circuit assembly includes a primary plug (3) and a secondary socket (4). The output end of the incoming line assembly (2) is electrically connected to the primary plug (3). The distribution direction of the multiple primary plugs (3) is parallel to the distribution direction of the multiple secondary sockets (4). The outgoing terminal (5) is disposed on the first end of the frame structure (1) and includes an input end and an output end. The primary plug (3) is electrically connected to the outgoing terminal (5).
2. The circuit distribution adapter of claim 1, wherein, The framework structure (1) includes: A first cover plate (101) and a second cover plate (102) are provided, and a receiving cavity is provided between the first cover plate (101) and the second cover plate (102); A support column (103) is disposed between the first cover plate (101) and the second cover plate (102), and both the first cover plate (101) and the second cover plate (102) are connected to the support column (103); A side plate (104) is disposed on one side of the first cover plate (101) and is connected to the first cover plate (101) and the second cover plate (102) respectively; The incoming line assembly (2) and the outgoing line terminal (5) are disposed on the first cover plate (101), and the primary plug (3) and the secondary socket (4) are disposed on the second cover plate (102).
3. The circuit distribution adapter of claim 2, wherein, The incoming line assembly (2) includes: The inlet contact box (201) has a first recess and a second recess on two opposite sides. The first cover plate (101) has an inlet hole. The inlet contact box (201) is disposed in the inlet hole, and the second recess faces the receiving cavity. The contact body (202) includes an input end and an output end. The output end and the output end of the contact body (202) are arranged at an angle. The output end of the contact body (202) is disposed in the first sink. A connecting plate (203) is disposed in the second settling tank; The connector (204) passes through the contact body (202), the first recess, the second recess and the connecting plate (203) in sequence.
4. The circuit distribution hub of claim 3, wherein, The primary plug-in (3) includes: The primary plug-in body (301) is electrically connected to the output end of the incoming component (2) and the output terminal (5), respectively; The plug-in frame (302) has a first mounting hole in the second cover plate (102), the plug-in frame (302) is disposed in the first mounting hole, and the primary plug-in body (301) is disposed in the plug-in frame (302) and connected to the plug-in frame (302).
5. The circuit distribution hub of claim 2, wherein, The outgoing terminal (5) is disposed on the first cover plate (101), or disposed on one side of the first cover plate (101) along the distribution direction of the three circuit components.
6. The circuit distribution hub of claim 4, wherein, Also includes: The incoming line branch component (6) is connected to the connector (204) and the primary plug-in body (301) respectively. Multiple incoming line branch components (6) are provided, and multiple incoming line branch components (6) are provided in the receiving cavity.
7. The circuit distribution hub of claim 6, wherein, The incoming line support component (6) includes: First conductor (601); The first socket (602) is connected to one end of the first wire (601) and to the primary plug-in body (301); A copper tube (603) is connected to the other end of the first wire (601); A connecting piece (604) is connected to the copper tube (603) and has a connecting hole. The connecting piece (204) is disposed in the connecting hole and connected to the connecting hole. A heat shrink sleeve (605) is fitted over the outside of the connection area between the copper tube (603) and the first wire (601).
8. The circuit distribution hub of claim 4, wherein, Also includes: The cable outlet support component (7) is connected to the primary plug-in body (301) and the cable outlet terminal (5) respectively. Multiple cable outlet support components (7) are provided, and multiple cable outlet support components (7) are provided in the receiving cavity.
9. The circuit distribution hub of claim 8, wherein, The outgoing cable support component (7) includes: Second conductor (701); The second socket (702) is connected to one end of the second wire (701) and to the primary plug-in body (301); The tubular pre-insulated end (703) is connected to the other end of the second conductor (701) and to the outgoing terminal (5).
10. The circuit distribution hub of claim 2, wherein, The first cover plate (101) is provided with a wire hole, and a wire sheath (8) is provided inside the wire hole.