Eaton MPSC6N3GEAXX2A Magnum LV Breaker - UL Listed, PXR20

Part Number: MPSC6N3GEAXX2A
Manufacturer
Eaton
Part number
MPSC6N3GEAXX2A

Quick Summary

The Eaton Magnum low voltage power circuit breaker protects electrical distribution systems in industrial and commercial plants. Operators and maintenance teams often battle nuisance tripping, extended downtime, and complex rack-out procedures when upgrading MCCs. With UL Listed, CE Marked, and NEMA compliant certifications, plus ANSI and CSA accreditation, this unit meets stringent regulatory requirements. Designed for drawout configurations with motorized racking, it reduces maintenance time and improves system availability, while the PXR20 LSI trip unit enables precise protection and selective coordination.

Product Information

Extended Description

MPSC6N3GEAXX2A Eaton: Eaton Magnum low voltage power circuit breaker, Magnum PXR, Double standard frame, 6000 A (AABBCC), 100 kA, Three-pole, Drawout vertical with extensions and motorized racking mounting, PXR20 LSI trip unit, Vertical interleaf
Product Name
Eaton Magnum low voltage power circuit breaker
Catalog Number
MPSC6N3GEAXX2A
UPC
786689630140
Product Length/Depth
16.3 in
Product Height
16.8 in
Product Width
31.1 in
Product Weight
237 lb
Compliances
CCC Marked NEMA Compliant SABA Listed CE Marked
Certifications
UL Listed ANSI CSA Certified Lloyd's Register Certified KEMA Certified ABS Certified DNV GL Certified
Feature: Drawout vertical mounting with extensions and motorized racking. Business Impact: Enables safer, faster maintenance and safer rack operations, reducing downtime and labor costs. Application: Suitable for motor control centers and power distribution panels where frequent maintenance is required. Feature: PXR20 LSI trip unit. Business Impact: Delivers precise, programmable protection and enhanced selective coordination, minimizing undesired outages. Application: Critical process lines that demand tight protection and fast fault isolation. Feature: Three-pole, 6000 A frame with 100 kA interrupt capability. Business Impact: Provides high fault tolerance for large motors and heavy loads, improving system reliability and availability. Application: MCCs and distribution feeders in demanding industrial environments. Feature: Drawout configuration with extensions. Business Impact: Simplifies upgrading, testing, and retrofits while maintaining safe isolation. Application: Retrofit projects and new builds requiring modular, serviceable protection. Feature: Robust certifications (UL Listed, CE Marked, ANSI/CSA). Business Impact: Reduces regulatory risk and streamlines procurement for audited facilities. Application: Global manufacturing, oil & gas, and food & beverage facilities seeking compliant protection.

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FAQs

This model supports a vertical drawout mounting configuration with extensions and motorized racking mounting. It is designed for safe, quick maintenance and easy insertion/removal in motor control centers and distribution panels, enabling safer work practices and reduced downtime during servicing or retrofits.
The unit is three-pole with a 6000 A frame rating and a 100 kA interrupt rating, paired with the PXR20 LSI trip unit. These specifications support robust protection for large motors and high-demand feeders while enabling precise protection settings and selective coordination.
The breaker carries UL Listed, ANSI/CSA certifications, and CE marking, along with additional regulatory approvals such as NEMA compliance. These certifications help ensure regulatory compliance across global facilities and simplify audit processes.
The PXR20 LSI trip unit provides advanced protection logic and motor-specific protection features, enabling accurate fault detection and coordination. This reduces nuisance trips, improves uptime, and supports safe, selective shutdowns in complex motor-driven processes.
The motorized racking and extendable drawout design streamline maintenance, testing, and upgrades, cutting downtime and labor costs. Combined with high fault tolerance and certified compliance, facilities can achieve faster outage recovery, improved safety, and a favorable total cost of ownership over the system life.