Eaton C0300E2AFB Industrial Control Transformer - UL Listed
Part Number: C0300E2AFB
Quick Summary
The Eaton C0300E2AFB industrial control transformer powers panel controls in automation and manufacturing environments. When panel space is limited and downtime costs rise, you need a compact, reliable unit that installs quickly and stays aligned with your control architecture. This transformer carries UL Listed, CSA Certified, and cUL approvals, along with RoHS compliance, underscoring safety and environmental responsibility for modern plant operations. Epoxy encapsulation, molded-in terminals, and silicon-steel laminations boost durability in harsh industrial settings. With fixed primary voltages and a 300 VA rating, it delivers predictable performance for robust control circuits while supporting fast service and scalable integration with Eaton MTE designs.
Product Information
Extended Description
C0300E2AFB Eaton: Eaton Type MTE industrial control transformer, pv: 240 x 480v, 230 x 460v, 220 x 440v, taps: none, sv: 120/115/110v, 55°c, 300 va , cu magnet wire
Product Name
Eaton Type MTE industrial control transformer
Catalog Number
C0300E2AFB
UPC
786680420924
Product Length/Depth
4.56 in
Product Height
5.29 in
Product Width
4.5 in
Product Weight
11 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.
Compliances
RoHS Compliant
Certifications
UL Listed cUL Certified CSA Certified
Catalog Notes
Epoxy encapsulated, Laminations of high quality silicon steel to minimize core losses and optimize performance, 50/60Hz operation, 130°C insulation system standard, Molded-in terminals for maximum durability
Coil material
Copper windings
Design
MTE
Tap size
None
Primary voltage
220 x 440 V, 230 x 460 V, 240 x 480 V
Temperature rating
55°C
Volt ampere rating
300 VA
Secondary voltage
120/115/110 V
Modification 1
Factory-mounted two-pole primary fuse block for non-rejection type fuses
Special features
Primary fuse block
300 VA rating with copper windings delivers steady control power, reducing voltage drop in machine controls and PLC inputs, which translates to fewer trips and improved reliability across automation cabinets. Flexible primary voltages allow installation in diverse supply environments, minimizing wiring changes and spare parts needs for projects with varying mains. The epoxy-encapsulated core, laminations of high-quality silicon steel, and 50/60 Hz operation minimize core losses and environmental sensitivity, supporting longer life and lower maintenance in harsh factory floors. Molded-in terminals provide rugged, vibration-resistant connections that stay secure in demanding environments, while RoHS compliance helps meet modern sustainability and regulatory expectations. A factory-mounted two-pole primary fuse block for non-rejection type fuses adds protection and simplifies wiring, reducing installation time and risk during commissioning. Overall, compact dimensions (4.56 in L x 4.5 in W x 5.29 in H) and a weight of 11 lb make it a practical fit for tight control panels and modular installations in industrial settings.
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FAQs
The C0300E2AFB supports fixed primary configurations of 220 x 440 V, 230 x 460 V, and 240 x 480 V, reducing the need for taps and simplifying installation in mixed-power environments.
Yes. The transformer is RoHS compliant and UL Listed, with CSA and cUL certifications as noted in the product specifications, ensuring compliance and safety for industrial applications.
Yes. It features a factory-mounted two-pole primary fuse block for non-rejection type fuses, which simplifies wiring, enhances protection, and speeds up commissioning in control panels.
The unit provides a secondary voltage of 120/115/110 V with a 300 VA rating, suitable for powering control circuits, relays, and PLC inputs in standard automation cabinets.
Industrial control panels, machine controls, and automation cabinets in manufacturing benefit from the MTE design due to epoxy encapsulation, copper windings, molded-in terminals, and robust core construction that minimize losses and maximize reliability in harsh environments.