Eaton xEffect FAZ Miniature Circuit Breaker, 2-Pole, 25 A, Type C, 415 V ac AC, 60 V DC, 14 kA Breaking Capacity

Antal (1 enhet)*

1 442,56 kr

(exkl. moms)

1 803,20 kr

(inkl. moms)

Add to Basket
välj eller skriv kvantitet
Tillfälligt slut
  • Leverans från den 17 mars 2026
Behöver du mer? Ange den kvantitet du behöver och klicka på "Kontrollera leveransdatum"
Enheter
Per enhet
1 +1 442,56 kr

*vägledande pris

RS-artikelnummer:
244-040
Tillv. art.nr:
102212 FAZ-C25/2-RT
Tillverkare / varumärke:
Eaton
Hitta liknande produkter genom att välja ett eller flera attribut.
Välj alla

Brand

Eaton

Number of Poles

2

Product Type

Miniature Circuit Breaker

Current Rating

25 A

Tripping Characteristics

Type C

Rated AC Voltage

415 V ac

Rated DC Voltage

60 V

Breaking Capacity

14kA

Mount Type

Top Hat Rail

Range

xEffect

Series

FAZ

Terminal Type

Twin-Purpose Terminal

IP Rating

IP20, IP40

Standards/Approvals

CSAC. . 509, IEC 60947, IECEN 60947, RoHS, UL 489

Width

35.4 mm

Height

75.5mm

Depth

70.5mm

COO (Country of Origin):
RO
The Eaton Miniature Circuit Breaker from the Moeller series is engineered for optimal performance in industrial and advanced commercial applications. Designed to cater to demanding environments, it seamlessly integrates into feeder and branch circuits. The robust construction ensures a reliable safeguard against overcurrent, while its features are tailored to provide a high degree of protection and compliance with international standards. The precision engineered tripping characteristics enhance operational safety, making it an invaluable addition to your electrical infrastructure.

Complies with multiple international safety and performance standards

Enhanced tripping characteristic ensures quick detection of overcurrent situations

Compact design allows for efficient use of space within electrical cabinets

User friendly installation with compatibility to top hat rail mounting

Finger and hand touch safe terminals promote user safety during maintenance

Advanced heat dissipation properties reduce the risk of overheating

Relaterade länkar