Electromagnetic interference suppression assembly based on MKP3C

By designing an electromagnetic interference suppression component including frame fixing components, pressure regulating components, self-healing protection components, intelligent detection components and shielding components, the problem of insufficient stability and reliability of existing components is solved, and higher stability, reliability and anti-interference performance are achieved, and service life is extended through efficient heat dissipation.

CN222916492UActive Publication Date: 2025-05-27NANTONG XIANGRIYA PRECISE MECHANICAL & ELECTRICAL TECH CO LTD
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Patent Information

Application Number
CN202422009021.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-19
Publication Date
2025-05-27
Estimated Expiration
2034-08-19

AI Technical Summary

Technical Problem

The existing MKP3C-based electromagnetic interference suppression components have insufficient stability and reliability, lack of effective fixation mechanism, insufficient voltage regulation, lack of self-healing protection mechanism, limited intelligent monitoring and fault detection capabilities, weak anti-electromagnetic interference capabilities, complex maintenance and upgrades, and poor heat dissipation performance.

Method used

An electromagnetic interference suppression component including a housing and a working mechanism is designed. The working mechanism includes a frame fixing component, a pressure regulating component, a self-healing protection component, an intelligent detection component and a shielding component, and a heat dissipation component is integrated into the component to improve heat dissipation performance.

Benefits of technology

Through the stable support of the frame fixing assembly and the flexible voltage regulation of the voltage regulating assembly, the stability and reliability of the component are improved; the automatic overload protection of the self-healing protection component and the real-time monitoring of the intelligent detection component enhance the safety and fault detection capabilities of the circuit; the electromagnetic interference shielding function of the shielding assembly improves the anti-interference performance; the efficient heat dissipation of the heat dissipation component extends the service life of the component and reduces maintenance costs.

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Abstract

The utility model provides an MKP3C-based electromagnetic interference suppression assembly, and relates to the technical field of anti-electromagnetic interference, the MKP3C-based electromagnetic interference suppression assembly comprises a housing and a working mechanism, the upper end of the housing is fixedly connected with the working mechanism, during use, a frame fixing assembly provides stable support and electrical connection, so that the stability and reliability of the assembly are ensured; the manual adjusting function of the voltage adjusting assembly enables a user to flexibly adapt to different voltage requirements, guarantees the stable operation of the circuit, employs an automatic overload protection mechanism of the self-healing protection assembly, remarkably improves the safety of the circuit, prevents the damage caused by overload, achieves the real-time monitoring capability of the intelligent detection assembly, improves the timeliness of fault detection, and improves the safety of the circuit. According to the utility model, the circuit is ensured to be continuous and stable, the electromagnetic interference shielding function of the shielding assembly is ensured, the circuit is effectively protected from external interference, the overall anti-interference performance is improved, in addition, the modular design provides convenience for the maintenance and upgrade of the system, and the maintainability and expandability of the whole assembly are enhanced.
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Description

Technical Field

[0001] The utility model relates to the technical field of anti - electromagnetic interference, and particularly relates to an electromagnetic interference suppression component based on MKP3C. Background Technique

[0002] The electromagnetic interference suppression component based on MKP3C is an efficient electronic device, specifically used to reduce electromagnetic interference in power circuits, thereby improving the stability and safety of electronic devices. This component usually uses metallized polypropylene film capacitors, which have the characteristics of small volume, good self - healing property, strong moisture resistance, and excellent over - voltage resistance. Its functions are extensive, including being used across lines, suppressing surges, being applicable to AC occasions, etc. It can effectively filter high - frequency noise and reduce the impact of electromagnetic interference on the circuit. The MKP3C capacitor also provides overload protection and automatically disconnects the circuit in case of overload through its self - healing performance to protect the circuit safety.

[0003] After retrieval, the existing devices have many deficiencies, including the lack of stability and reliability. Due to the lack of an effective fixing mechanism, they are prone to displacement or damage under vibration or impact. The voltage regulation is not flexible enough, which limits the ability of the circuit to adapt to different requirements. In addition, the early versions lacked a self - healing protection mechanism, resulting in the circuit being easily damaged under overload conditions. The intelligent monitoring and fault detection capabilities are limited, affecting the continuous and stable operation of the circuit. The electromagnetic interference resistance ability is weak, making the circuit vulnerable to external interference and affecting performance. The maintenance and upgrade processes are relatively complex, increasing the maintenance cost and time. The poor heat dissipation performance causes the component to overheat, affecting performance and lifespan, and the overall reliability of the system is also low.

[0004] Therefore, we provide an electromagnetic interference suppression component based on MKP3C to solve the above problems. Content of the Utility Model

[0005] The purpose of the utility model is to provide an electromagnetic interference suppression component based on MKP3C to solve the problems raised in the above - mentioned background technique.

[0006] To achieve the above purpose, the utility model provides the following technical solution: An electromagnetic interference suppression component based on MKPC, including a housing and a working mechanism, wherein the upper end of the housing is fixedly connected with the working mechanism;

[0007] The working mechanism includes a frame fixing component, a voltage regulating component, a self - healing protection component, an intelligent detection component, and a shielding component. The upper end of the housing is fixedly connected with the frame fixing component, the voltage regulating component is arranged inside the housing, one side of the voltage regulating component is fixedly connected with the self - healing protection component, the lower end of the voltage regulating component is fixedly connected with the intelligent detection component, and the shielding component is arranged outside the intelligent detection component.

[0008] Preferably, the frame fixing component includes a protective cover, a fixing plate, fixing holes, connection terminals, and conductive pins. A protective cover is fixedly connected to the upper end of the housing. A fixing plate is fixedly connected to the outer side of the protective cover. Fixing holes are formed on the surface of the fixing plate. Connection terminals are fixedly connected to the surface of the housing. One end of each connection terminal is fixedly connected to a conductive pin.

[0009] Preferably, the voltage regulating component includes a support frame, an adjusting rod, and an adjusting knob. A support frame is arranged inside the housing. The upper end of the support frame is rotatably connected to the adjusting rod. The upper end of the adjusting rod is fixedly connected to the adjusting knob.

[0010] Preferably, the self-healing protection component includes a protection shell, a detection element, a connection line, and a self-healing switch. A protection shell is fixedly connected to one side of the support frame. The lower end of the protection shell is fixedly connected to the detection element. The upper end of the protection shell is electrically connected to the connection line. The upper end of the connection line is fixedly connected to the self-healing switch.

[0011] Preferably, the intelligent detection component includes a connection module, a sensor, a connection pipe, and a fixed bottom plate. The connection module is fixedly connected to the lower end of the support frame. The sensor is fixedly connected to the lower end of the connection module. The connection pipe is sleeved inside the sensor. The fixed bottom plate is arranged below the sensor.

[0012] Preferably, the shielding component includes a metal cover and a ground wire. The metal cover is arranged outside the sensor. One end of the metal cover is electrically connected to the ground wire.

[0013] Preferably, a heat dissipation component is arranged on one side of the metal cover. The heat dissipation component includes a heat conduction pad and a heat dissipation body. The heat conduction pad is arranged on one side of the metal cover. The heat dissipation body is fixedly connected to the outer side of the housing.

[0014] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0015] 1. Through the setting of the heat dissipation component, it is crucial for suppressing the performance of the electromagnetic interference suppression component. With its efficient heat dissipation performance, it effectively conducts and dissipates the heat generated by the working mechanism, preventing the component from overheating, thereby prolonging the service life of the electronic component and reducing the maintenance cost. Good heat dissipation management helps to maintain the continuous and stable operation of the circuit, preventing performance degradation caused by overheating. The integration of the heat dissipation component improves the reliability of the system, reduces the risk of system failures. The optimized heat dissipation design achieves a balance between space and efficiency without increasing additional volume or weight. In addition, the environmental adaptability of the heat dissipation component ensures that the component can work stably under different conditions, enhancing the flexibility and application range of the entire electromagnetic interference suppression component.

[0016] 2. Through the setting of the working mechanism, during use, the frame fixing component ensures the stability and reliability of the component by providing firm support and electrical connection. The manual adjustment function of the voltage regulating component enables users to flexibly adapt to different voltage requirements and guarantees the stable operation of the circuit. The automatic overload protection mechanism of the self-healing protection component significantly improves the safety of the circuit and prevents damage caused by overload. The real-time monitoring ability of the intelligent detection component strengthens the timeliness of fault detection and ensures the continuous stability of the circuit. The electromagnetic interference shielding function of the shielding component effectively protects the circuit from external interference and enhances the overall anti-interference performance. In addition, the modular design facilitates the maintenance and upgrade of the system and enhances the maintainability and scalability of the entire component. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 is a schematic diagram of the overall external structure of the present utility model;

[0018] Figure 2 is a schematic diagram of the overall rear structure of the present utility model;

[0019] Figure 3 is a schematic diagram of the overall internal structure of the present utility model;

[0020] Figure 4 is a schematic diagram of the overall disassembled structure of the present utility model.

[0021] Reference numerals in the figures: 1. Housing; 2. Working mechanism; 21. Frame fixing component; 211. Protective cover; 212. Fixed plate; 213. Fixing hole; 214. Connection terminal; 215. Conductive pin; 22. Voltage regulating component; 221. Support frame; 222. Adjusting rod; 223. Adjusting knob; 23. Self-healing protection component; 231. Protective shell; 232. Detection element; 233. Connection line; 234. Self-healing switch; 24. Intelligent detection component; 241. Connection module; 242. Sensor; 243. Connection pipe; 244. Fixed bottom plate; 25. Shielding component; 251. Metal cover; 252. Ground wire; 3. Heat dissipation component; 31. Thermal pad; 32. Heat dissipation body. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0022] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.

[0023] Embodiment 1

[0024] Please refer toFigures 1-4 As shown in the figure, the present utility model provides a technical solution: an electromagnetic interference suppression component based on MKP3C, including a housing 1 and a working mechanism 2, and the upper end of the housing 1 is fixedly connected with the working mechanism 2;

[0025] The working mechanism 2 includes a frame fixing component 21, a voltage regulating component 22, a self-healing protection component 23, an intelligent detection component 24 and a shielding component 25. The upper end of the housing 1 is fixedly connected with the frame fixing component 21, the voltage regulating component 22 is arranged inside the housing 1, one side of the voltage regulating component 22 is fixedly connected with the self-healing protection component 23, the lower end of the voltage regulating component 22 is fixedly connected with the intelligent detection component 24, and the shielding component 25 is arranged outside the intelligent detection component 24.

[0026] Furthermore, the frame fixing component 21 includes a protective cover 211, a fixing plate 212, fixing holes 213, connection terminals 214 and conductive pins 215. The upper end of the housing 1 is fixedly connected with the protective cover 211, the outer side of the protective cover 211 is fixedly connected with the fixing plate 212, the surface of the fixing plate 212 is provided with the fixing holes 213, the surface of the housing 1 is fixedly connected with the connection terminals 214, and one end of the connection terminals 214 is fixedly connected with the conductive pins 215. The frame fixing component 21 provides stable support and fixation for the entire working mechanism 2. Through the protective cover 211, the fixing plate 212, the fixing holes 213, the connection terminals 214 and the conductive pins 215, it is ensured that each component of the working mechanism 2 can be firmly installed in the housing 1 and at the same time provides electrical connection.

[0027] Furthermore, the voltage regulating component 22 includes a support frame 221, an adjusting rod 222 and an adjusting knob 223. The support frame 221 is arranged inside the housing 1, the upper end of the support frame 221 is rotatably connected with the adjusting rod 222, and the upper end of the adjusting rod 222 is fixedly connected with the adjusting knob 223. The voltage regulating component 22 regulates the voltage to ensure that the circuit works at the required voltage level. The support frame 221 provides structural support, and the adjusting rod 222 and the adjusting knob 223 allow users to adjust the voltage as needed to ensure the stable operation of the circuit.

[0028] Furthermore, the self-healing protection component 23 includes a protection shell 231, a detection element 232, a connection line 233 and a self-healing switch 234. One side of the support frame 221 is fixedly connected with the protection shell 231, the lower end of the protection shell 231 is fixedly connected with the detection element 232, the upper end of the protection shell 231 is electrically connected with the connection line 233, and the upper end of the connection line 233 is fixedly connected with the self-healing switch 234. The self-healing protection component 23 provides overload protection to prevent the circuit from being damaged due to overload. The protection shell 231, the detection element 232, the connection line 233 and the self-healing switch 234 work together. When an overload situation is detected, the self-healing switch 234 can automatically disconnect the circuit to protect the safety of the circuit.

[0029] Furthermore, the intelligent detection component 24 includes a connection module 241, a sensor 242, a connection pipe 243, and a fixed base plate 244. The lower end of the support frame 221 is fixedly connected to the connection module 241. The lower end of the connection module 241 is fixedly connected to the sensor 242. The connection pipe 243 is sleeved inside the sensor 242. A fixed base plate 244 is arranged below the sensor 242. The intelligent detection component 24 monitors the working state of the circuit in real time, discovers and reports anomalies in a timely manner. The connection module 241, the sensor 242, the connection pipe 243, and the fixed base plate 244 work together. The sensor 242 monitors the circuit state and transmits information through the connection module 241 to ensure the safe operation of the circuit.

[0030] Furthermore, the shielding component 25 includes a metal housing 251 and a ground wire 252. The metal housing 251 is arranged outside the sensor 242. One end of the metal housing 251 is electrically connected to the ground wire 252. The shielding component 25 reduces the influence of electromagnetic interference on the circuit and protects the circuit from external electromagnetic field interference. The metal housing 251 shields key components such as the sensor 242, and the ground wire 252 connects the shielding body to the ground, effectively reducing electromagnetic interference.

[0031] Embodiment 2

[0032] Please refer to Figure 2 and Figure 4 As shown, compared with Embodiment 1, as another implementation manner of the present utility model, a heat dissipation component 3 is arranged on one side of the metal housing 251. The heat dissipation component 3 includes a heat conduction pad 31 and a heat dissipation main body 32. The heat conduction pad 31 is arranged on one side of the metal housing 251. The heat dissipation main body 32 is fixedly connected to the outside of the housing 1. The heat dissipation component 3 dissipates the heat generated by the working mechanism 2 and keeps the component working at an appropriate temperature. The heat conduction pad 31 conducts the heat from the metal housing 251 to the heat dissipation main body 32, and the heat dissipation main body 32 further dissipates this heat to prevent performance degradation or damage caused by overheating.

[0033] Working principle: First, move a MKP3C-based electromagnetic interference suppression component to the working position. When in use, in the first step, the working mechanism 2 is fixed to the upper end of the housing 1. The frame fixing component 21 provides basic support. Through components such as the protective cover 211, fixing plate 212, fixing hole 213, connection terminal 214, and conductive pin 215, ensure that all components of the working mechanism 2 can be firmly installed in the housing 1. The voltage regulating component 22 adjusts the voltage through the support frame 221, adjusting rod 222, and adjusting knob 223 to ensure that the circuit operates at the required voltage level. The user can manually adjust the voltage through the adjusting knob 223. In the second step, when the circuit faces the risk of overload, the detection element 232 in the self-healing protection component 23 monitors the circuit state. Once an overload situation is detected, the self-healing switch 234 will automatically disconnect the circuit to protect the circuit from damage. The intelligent detection component 24 monitors the working state of the circuit in real time through the connection module 241, sensor 242, connection pipe 243, and fixed base plate 244. The sensor 242 monitors the circuit parameters and transmits the monitoring data through the connection module 241 to detect and report abnormal situations in a timely manner. In the third step, the shielding component 25 shields key components such as the sensor 242 through the metal housing 251 to reduce the impact of electromagnetic interference on the circuit. The grounding wire 252 connects the metal housing 251 to the ground to effectively reduce the interference of external electromagnetic fields. The heat dissipation component 3 dissipates the heat generated by the working mechanism 2 to keep the component working at an appropriate temperature. The heat conduction pad 31 conducts the heat at the metal housing 251 to the heat dissipation main body 32, and the heat dissipation main body 32 further dissipates this heat to prevent performance degradation or damage caused by overheating. While the component is working properly, the intelligent detection component 24 continuously monitors the circuit state to ensure the stable operation of the circuit. If any abnormality occurs, the system will respond through the self-healing protection component 23 or other safety mechanisms to maintain the safety and reliability of the system. In this way, the use process of a MKP3C-based electromagnetic interference suppression component is completed.

[0034] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An electromagnetic interference suppression component based on MKP3C, comprising a housing (1) and a working mechanism (2), characterized in that: The upper end of the housing (1) is fixedly connected to a working mechanism (2); The working mechanism (2) comprises a frame fixing component (21), a voltage regulating component (22), a self-healing protection component (23), an intelligent detection component (24) and a shielding component (25); the upper end of the housing (1) is fixedly connected to the frame fixing component (21); the inner side of the housing (1) is provided with a voltage regulating component (22); one side of the voltage regulating component (22) is fixedly connected to the self-healing protection component (23); the lower end of the voltage regulating component (22) is fixedly connected to the intelligent detection component (24); and the outer side of the intelligent detection component (24) is provided with a shielding component (25).

2. The electromagnetic interference suppression component based on MKP3C according to claim 1, characterized in that: The frame fixing assembly (21) comprises a protective cover (211), a fixing plate (212), a fixing hole (213), a connecting terminal (214) and a conductive pin (215); the upper end of the housing (1) is fixedly connected to the protective cover (211); the outer side of the protective cover (211) is fixedly connected to the fixing plate (212); the surface of the fixing plate (212) is provided with a fixing hole (213); the surface of the housing (1) is fixedly connected to the connecting terminal (214); one end of the connecting terminal (214) is fixedly connected to the conductive pin (215).

3. The electromagnetic interference suppression component based on MKP3C according to claim 1, characterized in that: The voltage regulating assembly (22) comprises a support frame (221), an adjusting rod (222) and an adjusting knob (223); the support frame (221) is arranged on the inner side of the housing (1); the upper end of the support frame (221) is rotatably connected to the adjusting rod (222); the upper end of the adjusting rod (222) is fixedly connected to the adjusting knob (223).

4. The electromagnetic interference suppression component based on MKP3C according to claim 3, characterized in that: The self-healing protection component (23) comprises a protection shell (231), a detection element (232), a connection line (233) and a self-healing switch (234); one side of the support frame (221) is fixedly connected to the protection shell (231); the lower end of the protection shell (231) is fixedly connected to the detection element (232); the upper end of the protection shell (231) is electrically connected to the connection line (233); and the upper end of the connection line (233) is fixedly connected to the self-healing switch (234).

5. The electromagnetic interference suppression component based on MKP3C according to claim 3, characterized in that: The intelligent detection component (24) comprises a connection module (241), a sensor (242), a connection pipe (243) and a fixed bottom plate (244); the lower end of the support frame (221) is fixedly connected to the connection module (241); the lower end of the connection module (241) is fixedly connected to the sensor (242); the inner side of the sensor (242) is sleeved with the connection pipe (243); and the fixed bottom plate (244) is arranged below the sensor (242).

6. The electromagnetic interference suppression component based on MKP3C according to claim 5, characterized in that: The shielding assembly (25) comprises a metal cover (251) and a grounding wire (252); the metal cover (251) is arranged on the outside of the sensor (242); and one end of the metal cover (251) is electrically connected to the grounding wire (252).

7. The electromagnetic interference suppression component based on MKP3C according to claim 6, characterized in that: A heat dissipation component (3) is provided on one side of the metal cover (251), and the heat dissipation component (3) comprises a heat conductive pad (31) and a heat dissipation body (32). A heat conductive pad (31) is provided on one side of the metal cover (251), and the heat dissipation body (32) is fixedly connected to the outside of the housing (1).