Eaton HCU2094D6N2 Active Harmonic Correction - IEEE 519

Part Number: HCU2094D6N2
Manufacturer
Eaton
Part number
HCU2094D6N2

Quick Summary

Eaton HCU2094D6N2 is an active harmonic correction unit designed to improve power quality on industrial three-phase systems. For facilities grappling with distorted currents, equipment overheating, and unexpected panel trips, this solution targets harmonics at the source, reducing nuisance events and energy waste. The product carries IEC 61000-3-2, IEC 61000-3-4, and IEEE Std. 519 certifications, along with UL 508C and CSA C22.2 No. 14, underscoring robust compliance and safety. With a 94A rating at 600 V in a floor-mount, NEMA 2 enclosure, it integrates cleanly into existing installations while delivering measurable reliability and efficiency gains. This supports maintenance teams and procurement with a proven, scalable path to power-quality improvements.

Product Information

Extended Description

HCU2094D6N2 Eaton: Eaton Active Harmonic Correction unit, 94A, 3.9 kW watt loss, 600V rating, 50/60 Hz, Three-phase, Floor-mount, NEMA 2 enclosure
Product Name
Eaton HCU2 active harmonic correction unit
Catalog Number
HCU2094D6N2
UPC
743172082053
Product Length/Depth
26.65 in
Product Height
87.24 in
Product Width
56.18 in
Product Weight
1295.6 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
IEC 61000 3-2 IEC 61000-3-4 IEEE Std. 519 UL 508C CSA Std. C22.2 No. 14
Product Category
Harmonic Correction Units
Special features
Integral disconnect
Amperage Rating
94A
Cable entry
Top or bottom
Enclosure
NEMA 2
Frequency rating
50/60 Hz
Mounting
Floor
Phase
Three-phase
Type
Active Harmonic Correction unit
Voltage rating
600 V
Watt losses
3.9 kW
Feature: 94A, 600 V, three-phase active harmonic correction capability. Business Impact: By actively monitoring and correcting non-linear loads, the unit reduces harmonic distortion, lowers stray energy losses, and minimizes overheating in downstream equipment, extending motor life and reducing maintenance costs. Application: Well-suited for manufacturing lines, pumps, compressors, and heavy machinery with variable-frequency drives that drive harmonic currents. Feature: Floor-mount design housed in a NEMA 2 enclosure with IEC-rated protection. Business Impact: This configuration offers rugged reliability in shop floors and electrical rooms, resisting dust and moisture while simplifying service access. Application: Commonly deployed in plants and facilities where floor-standing harmonic correction units must coexist with other equipment and limited space constraints. Feature: Integral disconnect as a standard feature. Business Impact: Enables safer, quicker maintenance by isolating the unit without additional switching gear, reducing downtime and risk. Application: Particularly valuable in facilities with lockout/tagout protocols, during commissioning or fault recovery, and in upgrade projects where minimal cabinet modifications are desired. Feature: Top or bottom cable entry for flexible wiring. Business Impact: Supports rapid installations and retrofits by aligning with existing cable routes, reducing field labor and error. Application: Particularly advantageous for upgrades in legacy plants, data centers, or manufacturing lines where cabinet openings and routing differ. Feature: Comprehensive certifications including IEC 61000-3-2, IEC 61000-3-4, IEEE Std. 519, UL 508C, CSA C22.2 No. 14. Business Impact: Ensures compliance with utility harmonic limits and safety standards, reducing procurement risk and accelerating approvals. Application: Critical for electrical rooms, utility feeders, and systems subject to interconnection requirements. For engineers, this simplifies vendor qualification and ensures consistent performance across sites. Feature: Watt losses rated at 3.9 kW. Business Impact: Understanding loss helps facilities budget cooling and energy costs, supporting total cost of ownership calculations. Application: In large plants, plan enclosure ventilation and external cooling, ensuring reliable operation without overheating in the harmonic correction assembly. This transparency also aids procurement in comparing TCO across harmonic correction solutions.

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FAQs

Install the Eaton HCU2094D6N2 as a floor-mounted unit in a NEMA 2 enclosure with either top or bottom cable entry. Plan for sufficient clearance around the cabinet for service and cooling, route cables away from motor drives, and provide a dedicated grounded feed. Use the integral disconnect to safely isolate the unit during maintenance or commissioning.
Expect 94A amperage rating, 600 V voltage rating, 50/60 Hz operation, and three-phase support with active harmonic correction. The unit consumes 3.9 kW of watt loss during operation and fits into a floor-mounted arrangement inside a NEMA 2 enclosure. It promotes harmonics reduction in typical industrial loads and complies with IEEE 519.
Yes, the HCU2094D6N2 is well-suited for data centers and manufacturing facilities where power quality is critical. Its three-phase 600 V rating and 50/60 Hz operation support drives and critical loads, while its rugged NEMA 2 enclosure and flexible cable entry simplify installations in busy environments. It also reduces harmonic disturbances that affect sensitive equipment.
The HCU2094D6N2 carries IEC 61000-3-2, IEC 61000-3-4, IEEE Std. 519, UL 508C, and CSA C22.2 No. 14. These certifications align with utility harmonic limits and electrical safety, helping you meet regulatory and interconnection requirements. This reduces procurement risk, accelerates approvals, and supports documentation for audits and compliance reporting. For engineers, this simplifies vendor qualification and ensures consistent performance across sites.
ROI is driven by improved power quality, reduced motor wear, and lower downtime from harmonic-related faults. The unit’s 3.9 kW watt losses inform cooling needs, so plan enclosure ventilation accordingly. Warranty spans one year from installation or 18 months from shipment. Regular checks should focus on connection integrity and fault monitoring to minimize lifecycle costs.