EPS MCCB 2 POLE

EPS MCCB 2 POLE

Category: Home Appliance

Specifications
Model
EPS MCCB 2-Pole
Voltage
415 V AC
Mounting Type
Panel or switchboard mounting with bolts or clamps
Application
Feeder protection, main breaker in panels, motor protection, heavy loads
Details

 


📦 Product Detail – EPS MCCB 2-Pole

The EPS MCCB 2-Pole is a Moulded Case Circuit Breaker designed to protect electrical circuits from overloads and short-circuit faults in robust installations such as commercial buildings, industrial panels, main feeds, and heavy-duty circuits. The “2-Pole” configuration protects two conductors together (such as Phase + Neutral in single-phase systems or two phases in three-phase systems) and disconnects both simultaneously during a fault.

Unlike a standard miniature circuit breaker (MCB), an MCCB is capable of handling higher current ratings and higher breaking capacities (fault levels), making it suitable as a feeder breaker, main switch, or motor protection breaker.

EPS MCCBs have a thermal-magnetic trip mechanism that responds to both prolonged overloads (thermal) and sudden short circuits (magnetic), ensuring reliable protection and safety.


🔎 Key Features

  • Higher current capacity: Ideal for circuits with larger loads (e.g., motors, compressors, large panels).

  • 🔥 Thermal-magnetic protection: Detects both sustained overload and instantaneous high fault current.

  • 🧬 Robust construction: Designed for industrial and commercial use with reliable performance.

  • 📊 Simultaneous trip: Disconnects both poles together to safely interrupt the circuit.


🏠 Where It’s Used

✔ Feeder breaker in distribution boards
Main switch in commercial and industrial panels
✔ Protection of single-phase high-power loads
✔ Two-phase circuits in distribution systems
✔ Motor protection in smaller industrial systems


📌 Note on Ratings

  • Choose the rated current (In) based on the continuous load current you expect (e.g., 63 A for medium loads, 100 A+ for heavier systems).

  • The breaking capacity (Icu) should be equal to or greater than the expected fault current at the installation point to ensure safe interruption.


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