Product introduction
Model No.:TGM1N-63M/ 3200 50A
Price:$10.6~19.8
HS Code:8536200000
MOQ:50~100 PC
Certificate:CCC,CB,CE
Molded Case Circuit Breaker (MCCB): An Indispensable Guardian of Electrical Safety
Here’s an English description of the advantages of a molded case circuit breaker (MCCB):
**Advantages of Molded Case Circuit Breakers (MCCBs):**
1. **High Breaking Capacity:** MCCBs are designed to handle high fault currents, making them suitable for a wide range of applications, including industrial and commercial settings.
2. **Compact Design:** Their molded case construction allows for a compact and robust design, saving space in electrical panels while ensuring durability.
3. **Adjustable Settings:** Many MCCBs offer adjustable trip settings, allowing for customization based on specific load requirements and enhancing flexibility in electrical system design.
4. **Reliable Protection:** MCCBs provide reliable protection against overloads, short circuits, and ground faults, ensuring the safety of electrical systems and equipment.
5. **Ease of Installation:** They are easy to install and maintain, with features like plug-in designs and modular accessories that simplify integration into electrical systems.
6. **Durability:** The molded case provides excellent resistance to environmental fact
The Molded Case Circuit Breaker (MCCB) stands as a cornerstone in the realm of electrical protection, playing a pivotal role in safeguarding industrial, commercial, and residential electrical systems against a spectrum of potential faults. This meticulously engineered device not only connects and disconnects electrical circuits under normal operating conditions but also swiftly intervenes to prevent damage in the event of overloads, short circuits, and other anomalies.
Design & Construction
Encased within a robust, molded plastic shell that offers exceptional insulation and mechanical durability, the MCCB boasts a sophisticated internal structure. At its heart lies the arc extinguishing chamber, designed to safely dissipate the energy released during current interruption.Complementing this is the operating mechanism, which facilitates the smooth and precise opening and closing of the circuit. The tripping mechanism, integral to the MCCB’s protective function, ensures rapid response to fault conditions.
Operational Mechanism
The MCCB’s protective prowess is underpinned by its dual-action tripping mechanism, comprising thermal and magnetic releases. The thermal release, typically embodied in a bimetallic strip, reacts to persistent overloads by deforming under heat, triggering the circuit’s disconnection. Conversely