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Eaton
PDG21M0070TFFJ - 70Amp Circuit Breaker
PDG21M0070TFFJ - 70Amp Circuit Breaker
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PDG21M0070TFFJ - 70Amp Circuit Breaker
The Eaton PDG21M0070TFFJ Power Defense Molded Case Circuit Breaker delivers cutting-edge protection and reliability for single-pole electrical systems. Rated at 70Amp and offering an impressive interrupting capacity of 65kAIC at 480V, this breaker is designed to safeguard electrical infrastructure in demanding environments. Built to global standards and featuring a compact form factor, it is ideal for industrial and commercial applications requiring precise circuit protection.
Key Features and Benefits:
- High Fault Current Capacity: Handles up to 65kAIC at 480V (UL), ensuring robust protection against short circuits and overloads.
- Streamlined Single-Pole Design: A compact solution for applications requiring high-performance protection in limited spaces.
- Standard Line and Load Terminals: Simplifies installation and integration into existing systems.
- Advanced Trip Mechanism: Equipped with a T-M (Fxd-Fxd) trip unit for accurate fault detection and response, minimizing downtime and damage.
Technical Specifications:
- Amperage Rating: 70Amp
- Voltage Rating: 600V maximum
- Interrupting Ratings: 65kAIC at 480V (UL), 100kAIC at 240V (UL), 35kAIC at 600V (UL/CSA), Multiple global ratings, including 70kAIC at 380-415V (IEC) and 50kAIC at 440V (IEC)
- Dimensions: 88.9 mm (depth) x 152.4 mm (height) x 35.1 mm (width)
- Weight: 2.041 kg
Material Compliance and Certifications:
- The PDG21M0070TFFJ is engineered to meet strict international safety and performance standards. Its certifications include UL 489 and IEC 60947-2, and its compliance with RoHS directives demonstrates Eaton‰۪s commitment to sustainable, high-quality products.
Suitability:
- This circuit breaker is ideal for industrial, commercial, and institutional applications that demand robust protection for single-pole systems. Its high interrupting capacity makes it particularly suited for environments with high fault current potentials.
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