Eaton FNF2NE18 Motor Control Center - UL Listed
Part Number: FNF2NE18
Quick Summary
Eaton FNF2NE18 Motor Control Center is a compact MCC designed for centralized motor control in industrial facilities. This solution helps engineers address space constraints and integration challenges when upgrading legacy switchgear. Key certifications supporting reliability include UL Listed safety validation, with broader regional compliance considerations for global deployments. The 18-inch unit size, dual feeder configuration, and rotary handle operation combine to streamline installation, maintenance, and fault isolation. By delivering a small footprint without compromising control capability, this MCC supports efficient automation upgrades, scalable panel design, and reduced lifecycle costs for manufacturing and processing environments.
Product Information
Extended Description
FNF2NE18 Eaton: Eaton 9800 series motor control center, 9800 Series Dual feeder Motor Control Center 150/40A trip rating, HFD circuit breaker, Dual feeder, Rotary handle mechanism, 18-inch unit size
Product Name
Eaton 9800 series motor control center
Catalog Number
FNF2NE18
UPC
786685436548
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
18 in
Trip rating
150/40 A
Dual feeder design with an HFD circuit breaker enables two independently protected circuits, increasing system uptime and simplifying motor-start sequencing for high-demand lines. This feature translates to lower risk of cascading outages and faster maintenance, making it ideal for packaging plants and conveyor systems in continuous operation. The rotary handle mechanism offers ergonomic, safe manual operation during commissioning and routine testing, reducing operator fatigue and potential misoperations. The 18-inch unit size combined with a 22-inch depth and 25-inch width delivers a compact footprint that fits narrow MCC bays while maintaining ample wiring space, supporting faster installation and easier retrofits in legacy switchgear rooms. UL Listed certification provides a straightforward compliance path for industrial facilities, helping procurement teams minimize compliance risk while maintaining rigorous safety standards. The 150/40 A trip rating covers a broad range of motor loads, enabling versatile protection for mixed-use lines without over-sizing panels, which lowers upfront costs and simplifies spare-part inventories. The weight of 33 lb and modular rotary mechanisms enhance handling during panel assembly and maintenance, while the 18-inch size aligns with common industry module standards for quick integration into existing control architectures. Warranty terms align with Eaton policy, offering a clear support window to maximize uptime and return on investment for capital projects.
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FAQs
FNF2NE18 is designed for standard MCC bays with 18-inch module width. Its dual feeder design and 22-inch depth ensure compatibility with common control rooms and panel layouts, while the rotary handle facilitates safe commissioning and testing during installation.
Key specs include a dual feeder with an HFD circuit breaker, 150/40 A trip rating, 18-inch size, 22 inch depth, 25 inch width, and a weight of about 33 lb. It is UL Listed, supporting safety compliance across many industrial environments.
Yes. The FNF2NE18 is built for industrial automation contexts requiring reliable motor control with a compact footprint. The UL Listed certification, dual feeder protection, and rotary handle operation support consistent uptime and safe operation in high-demand lines.
Warranty follows Eaton policy 25-000: one year from installation or eighteen months from shipment, whichever occurs first. This provides a defined window for maintenance, service planning, and component replacement, reducing long-term risk.
Dual feeders allow independent protection and isolation of two motor circuits, enabling quicker fault localization and reduced outage scope. In practice, this design improves uptime for continuous processes and simplifies testing during maintenance windows without affecting the alternate feeder.