Eaton FNF2BH14 Motor Control Center - UL Listed
Part Number: FNF2BH14
Quick Summary
Eaton 9800 series motor control center is designed to manage motor-driven power distribution for industrial equipment. If you’re deploying dual-feeder MCCs in demanding plant environments, you’ve faced space constraints, wiring complexity, and maintenance challenges that erode uptime. UL Listed certification provides safety and regulatory confidence across sites and installations. This compact, 14-inch unit size features a rotary handle operation, 20/70 A trip rating, and a dual feeder design that streamlines wiring, reduces panel space, and enhances reliability. By leveraging standard Eaton components and a proven footprint, this MCC supports efficient procurement, faster commissioning, and lower total cost of ownership for industrial facilities.
Product Information
Extended Description
FNF2BH14 Eaton: Eaton 9800 series motor control center, 9800 Series Dual feeder Motor Control Center 20/70A trip rating, HFD circuit breaker, Dual feeder, Rotary handle mechanism, 14-inch unit size
Product Name
Eaton 9800 series motor control center
Catalog Number
FNF2BH14
UPC
786685435145
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
20/70 A
Feature → Business Impact → Application: Dual feeder configuration with HFD circuit breaker offers redundancy and modularity, reducing downtime during maintenance and enabling phased upgrades in existing panels. This translates to higher line availability on critical manufacturing lines and minimization of unscheduled outages in process plants. The compact 14-inch unit size, with a 22-inch depth and 25-inch width, maximizes space efficiency in control rooms and machine bays while preserving easy access for fault isolation and servicing. Rotary handle operation enables quick, reliable manual control, decreasing switch-time during start-up and troubleshooting, which is valuable for conveyors, pumps, and fans in automated systems. UL Listed certification reinforces safety compliance across installations, aiding audits and reducing regulatory risk. The included warranty (one year from installation or 18 months from shipment) provides a predictable maintenance envelope and supports total cost of ownership calculations. Compatible with Eaton 9800 series components, the FNF2BH14 simplifies procurement and spares planning for mid-scale panel builds, with a proven footprint that reduces field wiring errors and installation time. Overall, the solution enhances reliability, speeds commissioning, and lowers lifecycle costs for industrial automation projects.
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FAQs
The FNF2BH14 is designed for industrial motor control applications requiring dual feeders and compact footprints. It pairs with Eaton 9800 series components to support space-constrained panels, provide redundancy, and simplify maintenance on conveyors, pumps, and other motor-driven equipment.
Key specs include a dual feeder configuration, HFD circuit breakers, rotary handle operation, a 14 inch unit size, and a trip rating of 20/70 A. The unit also has dimensions of 22 in depth and 25 in width with a weight of 33 lb, making it easy to install in standard MCC footprints.
Yes. The FNF2BH14 is UL Listed, providing recognized safety and compliance for integration into UL-listed motor control centers and electrical panels, which simplifies inspections and regulatory approvals on site.
The product is covered by Eaton’s policy: one year from the date of installation or eighteen months from the date of shipment, whichever occurs first. This warranty supports maintenance planning and helps mitigate risk during commissioning and early operation.
Dual feeders enable independent power paths, improving uptime and maintenance flexibility. For mid-size motor-driven processes, this configuration reduces the risk of unplanned outages, supports phased maintenance or upgrades, and simplifies spare-part management while fitting within tight control-panel layouts.