一种荷电模块
The structural design of the internal connecting frame, the power-conducting rod, and the screws solves the problems of inconvenient wiring and safety hazards of the charged module, achieving efficient processing and improved safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANDONG XUESHENG ELECTRIC APPLIANCE CO LTD
- Filing Date
- 2025-08-14
- Publication Date
- 2026-07-17
AI Technical Summary
The existing methods of powering charged modules are inconvenient for wiring, have low processing efficiency, and pose safety hazards, especially the risk of leakage due to exposed high-voltage wires.
The structure consists of an inner connecting frame, a power-conducting rod, an outer frame, and screws. The conductive materials in the inner connecting frame and the power-conducting rod are connected, and the screws are used to close the circuit. Insulating materials and caps are used to seal the circuit and prevent electrical leakage.
This improves the processing efficiency and safety of the charged module, avoids the risk of leakage caused by exposed wires, and enhances safety and convenience.
Smart Images

Figure CN224507304U_ABST
Abstract
Claims
1. A charged module comprising an outer frame (1) and a back plate (2), characterized in that: The outer frame (1) includes multiple side frames (12), and an inner connecting frame (11) is provided inside one of the side frames (12). Multiple power-conducting rods (3) are provided between the inner connecting frame (11) and the side frame (12) on the opposite side. The power-conducting rods (3) are provided with conductive material. The outer frame of the power-conducting rods (3) is made of insulating material. The inner connecting frame (11) is provided with conductive material. The outer frame of the inner connecting frame (11) is made of insulating material. The charging module also includes screws (5). The screws (5) connect the inner connecting frame (11) and the power-conducting rods (3) through the conductive material in the inner connecting frame (11) and the conductive material in the power-conducting rods (3). A grounding component (6) is also provided on the inner connecting frame (11). The grounding component (6) is connected to the conductive material in the inner connecting frame (11).
2. A charge module according to claim 1, characterized in that: The border (12) is provided in four parts, and the four borders (12) form a rectangular frame. The number of inner connecting frames (11) is one.
3. A charge module according to claim 2, wherein: The conductive material inside the power-conducting rod (3) and the inner connecting frame (11) is a solid material.
4. A charge module according to claim 3, wherein: The insulating material is PVC.
5. The charge module of claim 1, wherein: The two ends of the power rod (3) are provided with caps (4) to prevent leakage of the screw (5).
6. The charge module of claim 1, wherein: The inner connecting frame (11) includes a first conductive port (112) and a first connecting port (111). The first conductive port (112) is located below the first connecting port (111). A conductive material is disposed inside the first conductive port (112). The power-conducting rod (3) is connected inside the first connecting port (111). The screw (5) passes through the power-conducting rod (3) and the top of the first conductive port (112) and connects with the conductive material inside the first conductive port (112). The screw (5) does not pass through the bottom of the first conductive port (112).
7. The charge module of claim 1, wherein: The outer frame (1) includes a second conductive port (121) and a second connecting port (122). The second conductive port (121) is located below the second connecting port (122). A conductive material is disposed inside the second conductive port (121). The power-conducting rod (3) is connected inside the second connecting port (122). The screw (5) passes through the power-conducting rod (3) and the top of the second conductive port (121) and connects with the conductive material inside the second conductive port (121). The screw (5) does not pass through the bottom of the second conductive port (121).
8. A charged module according to claim 1, characterized in that: The charged module also includes a first connecting block (13) and a second connecting block (14). The first connecting block (13) connects the inner connecting frame (11) and the side frame (12) that is in contact with the inner connecting frame (11). The side frame (12) opposite to the inner connecting frame (11) and the two adjacent side frames (12) are connected through the second connecting block (14).