Eaton 3P 630A Circuit Breaker Plug-in Module NZMN3-VE630-SVE - 168482

Eaton 3P 630A Circuit Breaker Plug-in Module NZMN3-VE630-SVE - 168482
Image may vary slightly
See specifications for accurate information.
Reference: E3K75
Brand: EATON INDUSTRIES
Mfr. Part: 168482

The Eaton Industries MCCB Circuit Breaker is a compact, versatile device suitable for the IEC market. With a nominal continuous current of 630A, nominal voltage of 690V, and nominal breaking capacity at 400 50kA, it offers adjustable overload protection between 315 - 630A, and short delay settings from 630 - 6300A. Non-delayed short-circuit range is 1260 - 6930A. The unit is equipped with electronic actuators for systems and cable protection, generator protection, and offers r.m.s. value measurement along with thermal memory. Adjustable time delay settings withstand current peaks, and the deceleration time can be modified with stages 0, 1000 ms.

View all
Note: product cannot be returned
Regular price
£2,637.67
excl VAT

In stock Ships in 33d Not available Not available
0 are currently in your cart. For orders exceeding 0, expect an increased lead time of 33 days. Up to 1 items available for online order. For higher quantities, please contact us on support@tameson.com to request the lead time. The item is not available for online order, please contact us on support@tameson.com to request the lead time.

Shipping to United Kingdom: Free
Free for orders > £75.00 (excl VAT)
Expected delivery in 35 - 36 business days

Description
Specifications
Related products

The Eaton Industries MCCB Circuit Breaker is a compact, versatile device suitable for the IEC market. With a nominal continuous current of 630A, nominal voltage of 690V, and nominal breaking capacity at 400 50kA, it offers adjustable overload protection between 315 - 630A, and short delay settings from 630 - 6300A. Non-delayed short-circuit range is 1260 - 6930A. The unit is equipped with electronic actuators for systems and cable protection, generator protection, and offers r.m.s. value measurement along with thermal memory. Adjustable time delay settings withstand current peaks, and the deceleration time can be modified with stages 0, 1000 ms.