Schneider A9F94463 | Miniature circuit-breaker, Acti9 iC60L, 4P, 63 A, C curve, 15 kA (IEC 60947-2)
1. Technical Specifications A9F94463
Rated Operational Voltage (Ue): Up to 400 V AC
Poles: 4 (Four-pole protection, including neutral conductor switching)
Rated Current (In): 63 Amperes
Tripping Characteristic: Type C — ideal for protecting circuits with moderate inrush currents such as motors, compressors, and lighting systems
Breaking Capacity: 15,000 A (under IEC 60947-2)
Mounting Method: Standard 35 mm DIN rail
Degree of Protection: IP20 (increased with proper enclosure)
Insulation Class: Class II (reinforced insulation for user safety)
Electrical Endurance: Up to 20,000 operations under load
Mechanical Endurance: Up to 20,000 manual operations
Operating Temperature Range: -25°C to +70°C
Conformity to Standards: IEC 60947-2
2. Key Features A9F94463
Four-Pole Protection: Simultaneous disconnection of three phases and the neutral, ensuring full isolation and added safety in three-phase + neutral systems
High Current Rating: 63 A capacity suitable for heavy-duty loads
Reliable Short-Circuit Protection: Handles fault currents up to 15 kA efficiently
Tripping Curve C: Designed for standard inductive and resistive loads with normal inrush behavior
Compact Modular Design: Fits easily into standard distribution boards and panels
Clear Status Indicator: Provides visible ON/OFF/trip status for easy operation and maintenance
Accessory Compatibility: Supports all Acti9-compatible add-ons such as auxiliary contacts, shunt trips, and remote tripping devices
Enhanced Safety Features: Finger-safe terminals and internal arc protection ensure safe operation
Eco-Conscious Design: Made from recyclable, RoHS-compliant materials in line with Schneider’s environmental policies
3. Applications
The Schneider A9F94463 is especially well-suited for protection in high-load, multi-phase systems. It is commonly used in:
Industrial Electrical Panels: For heavy machinery, HVAC units, and compressors
Large Commercial Buildings: To protect main incoming circuits or high-load distribution branches
Renewable Energy Installations: For safe AC output protection in solar or wind systems
Data Centers and Telecom Facilities: Where secure and full-phase disconnection is essential
Public Infrastructure Projects: Airports, hospitals, schools, and transport hubs
Residential Complexes: For central circuit protection in multi-unit buildings
Generators and UPS Systems: To protect outputs with four-wire configurations (3P+N)
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