一种电容器漏电测试装置
By designing a capacitor leakage current testing device, and utilizing components such as the first positioning plate and the limiting mechanism, the problems of inconvenient capacitor positioning and difficulty in replacing the energized board in existing devices are solved, thus achieving rapid capacitor positioning and efficient leakage current testing.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN XIN FU JING ELECTRONIC CO LTD
- Filing Date
- 2025-07-07
- Publication Date
- 2026-07-17
Smart Images

Figure CN224518937U_ABST
Abstract
Claims
1. A capacitor leakage test apparatus, characterized by, The system includes a first positioning plate (1), a second positioning plate (2) on top of the first positioning plate (1), a second fixing plate (11) slidably connected to the inside of the top of the first positioning plate (1), a first fixing plate (10) slidably connected to the inside of the bottom of the second positioning plate (2), first placement grooves (13) symmetrically distributed inside the bottom of the first fixing plate (10) and the top of the second fixing plate (11), and second conductive plates (12) alternately fixed inside the bottom of the first fixing plate (10) and the top of the second fixing plate (11). The second conductive plate (12) is in communication with the corresponding first placement groove (13). The second positioning plate (2) is fixed with a first conductive plate (9) at the position corresponding to the second conductive plate (12) in the first fixing plate (10). The top of the second positioning plate (2) is fixed with an indicator light (8) at the position corresponding to the first conductive plate (9). The bottom end of the indicator light (8) is in contact with the first conductive plate (9). The first positioning plate (1) is fixed with a third conductive plate (14) at the position corresponding to the second conductive plate (12) in the second fixing plate (11).
2. The capacitor leakage test apparatus of claim 1, wherein A junction plate (15) is fixed inside the first positioning plate (1) and at the bottom of the third conductive plate (14), and the bottom of the third conductive plate (14) is fixed to the junction plate (15).
3. The capacitor leakage test apparatus of claim 2, wherein The two ends of the junction plate (15) pass through the first positioning plate (1) and extend out of the first positioning plate (1).
4. The capacitor leakage test apparatus of claim 1, wherein The first positioning plate (1) has a first positioning component installed at both ends for connecting the second fixing plate (11), and the second positioning plate (2) has a second positioning component installed at both ends for connecting the first fixing plate (10).
5. The capacitor leakage test apparatus of claim 4 wherein, Both the first positioning component and the second positioning component include an assembly block (16) and a fixing bolt (17). The assembly block (16) is slidably connected to the first fixing plate (10) and to the second fixing plate (11). The assembly block (16) is slidably connected to the inside of the assembly block (16). The fixing bolt (17) is threadedly connected to the first positioning plate (1) or the second positioning plate (2).
6. The capacitor leakage test apparatus of claim 1 wherein, The second positioning plate (2) has guide blocks (4) fixed at both ends, and the first positioning plate (1) has a limiting mechanism for limiting the height of the guide blocks (4) installed at both ends.
7. The capacitor leakage test apparatus of claim 6 wherein, The limiting mechanism includes a support plate (3), a synchronization plate (5), a positioning block (6), and a limiting bolt (7). The support plate (3) is fixed to the first positioning plate (1), and the guide block (4) is slidably connected to the support plate (3). The end of the support plate (3) away from the second positioning plate (2) is provided with a synchronization plate (5). The two sides of the synchronization plate (5) near the end of the support plate (3) are fixed with positioning blocks (6). The positioning blocks (6) are slidably connected to the support plate (3). The inside of the synchronization plate (5) is slidably connected with a limiting bolt (7), and the limiting bolt (7) is threadedly connected to the guide block (4).