Eaton xEffect FAZ MCB, 1P, 3.5A Curve C, 230V AC, 48V DC, 10 kA Breaking Capacity

Subtotal (1 unit)*

£43.62

(exc. VAT)

£52.34

(inc. VAT)

Add to Basket
Select or type quantity
Temporarily out of stock
  • Shipping from 03 December 2025
Need more? Click ‘Check delivery dates’ to find extra stock and lead times.
Units
Per unit
1 +£43.62

*price indicative

RS Stock No.:
256-908
Mfr. Part No.:
278552 FAZ-C3,5/1
Brand:
Eaton
Find similar products by selecting one or more attributes.
Select all

Brand

Eaton

Number of Poles

1

Current Rating

3.5A

Tripping Characteristics

Type C

Rated AC Voltage

230V

Rated DC Voltage

48V

Breaking Capacity at Maximum Voltage Rating

10 kA

Range

xEffect

Series

FAZ

COO (Country of Origin):
RO
The Eaton miniature circuit breaker from the Moeller series xEffect combines innovation with reliability. Designed for robust performance, it safeguards electrical circuits by anticipating potential overloads and short circuits. With its C tripping characteristic, this device ensures immediate responses under fault conditions, making it ideal for commercial and industrial applications. Engineered with user safety in mind, it complies with stringent certifications such as UL and CSA, providing peace of mind for its deployment in a variety of environments. The device boasts a compact design, fitting seamlessly into standard panel configurations while delivering high performance and energy efficiency. Discover advanced protection with this exceptional component, tailored to meet modern electrical demand while ensuring dependable service across its operational lifespan.

Compact design enhances installation flexibility
C tripping characteristic provides timely fault response
Complies with UL and CSA certifications, ensuring high safety standards
Designed for single-pole configurations, maximising space efficiency
Optimised for both 240 V AC and 415 V AC applications
Robust construction supports challenging industrial environments
Low profile of just 17.7 mm allows for better space management in panels
Integrated heat dissipation features contribute to improved longevity
Temperature rise considerations enhance operational reliability

Related links