Eaton FJF2JN14 Motor Control Center - UL Listed

Part Number: FJF2JN14
Manufacturer
Eaton
Part number
FJF2JN14

Quick Summary

FJF2JN14 is an Eaton dual feeder motor control center designed for compact, reliable motor control in industrial facilities. Many facilities struggle with space constraints, maintenance downtime, and the need for safe isolation during preventive service; this MCC streamlines layout with a dual feeder setup and a rotary handle for quick, secure disconnect. This unit carries UL Listed safety certification, supporting electrical code compliance and dependable protection of critical motors and drives. The 11-300 series design also aligns with proven Eaton protection schemes, promoting interchangeability within a broader MCC ecosystem. With a compact 14-in size and a 80/150 A trip rating, it delivers scalable control while reducing install time and long-term operating costs.

Product Information

Extended Description

FJF2JN14 Eaton: Eaton 11-300 series motor control center, 11-300 Series Dual feeder Motor Control Center 80/150A trip rating, HFD circuit breaker, Dual feeder, Rotary handle mechanism, 14-inch unit size
Product Name
Eaton 11-300 series motor control center
Catalog Number
FJF2JN14
UPC
786685428130
Product Length/Depth
22 in
Product Height
16 in
Product Width
25 in
Product Weight
33 lb
Warranty
Eaton Selling Policy 25-000, one (1) year from the date of installation of the Product or eighteen (18) months from the date of shipment of the Product, whichever occurs first.
Certifications
UL Listed
Circuit breaker type
HFD
Feed type
Dual
Operation
Rotary handle
Size
14 in
Trip rating
80/150 A
Dual feeder design with an HFD circuit breaker provides two independent motor circuits inside a compact enclosure, delivering protection and control with a small footprint. The business impact is clear: increased uptime, safer isolation during maintenance, and reduced wiring complexity. In practical applications such as conveyors and pump assemblies, this configuration minimizes panel space while maximizing protective coordination across circuits. The rotary handle operation enables quick, safe disconnection, cutting maintenance time and exposure to energized parts. For plant layouts with limited rack depth, the 14-inch unit size and the described dimensions help fit tight spaces without sacrificing accessibility or performance. UL Listed certification adds confidence in electrical safety and regulatory compliance, while compatibility with the Eaton 11-300 family supports streamlined spares and service. Overall, the product aligns with OEMs' focus on reliability, ease of installation, and predictable total cost of ownership.

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FAQs

FJF2JN14 is designed as part of the 11-300 series, supporting dual feeder, HFD breaker type, rotary handle operation, and a 14 in unit footprint. It fits standard MCC enclosures and aligns with Eaton interconnectivity, enabling straightforward field retrofits or new installations with consistent protective coordination.
This unit uses an HFD circuit breaker with a dual feeder configuration and a trip rating of 80/150 A. The combination supports reliable overload protection for two independent motor circuits, ensuring selective tripping and minimized downtime in demanding industrial environments.
Ideal for manufacturing lines, conveyors, pump systems, and HVAC or process equipment that require compact, safe motor control. The 14 in unit size and dual feeds suit installations in tight electrical rooms, while the UL Listed certification supports compliance in regulated facilities.
The FJF2JN14 carries UL Listed certification, confirming conformance with recognized electrical safety standards. This alignment supports compliance with safety codes across various jurisdictions, simplifying auditing processes for facilities and OEM projects.
Eaton provides a one-year warranty from installation or 18 months from shipment (whichever occurs first). The rotary handle and compact design reduce maintenance time and spare parts needs, contributing to lower total cost of ownership and improved uptime in mission-critical applications.