Eaton Z44M51T30XCU Hazardous transformer - 3Ø 30kVA
Part Number: Z44M51T30XCU
Quick Summary
Eaton hazardous location encapsulated transformer provides rugged, efficient power conversion for hazardous-area facilities. In many plants, limited space and strict safety requirements complicate transformer selection and installation. This unit’s encapsulated design and 30 kVA rating help simplify compliance while minimizing footprint. Certifications for hazardous location equipment typically include CE marking and robust IP ratings, along with SIL considerations where applicable; for this exact model, confirm with the manufacturer to ensure your site meets all local codes. By aligning with industry standards, you can reduce commissioning time and maintenance costs while ensuring reliable 3-phase service from 440-416Y/240 to essential loads. This adds value for procurement teams seeking dependable encapsulated transformers and predictable lifecycle costs.
Product Information
Extended Description
Z44M51T30XCU Eaton: Eaton hazardous location encapsulated transformer, 30 kva haz loc cl1 div 2 xfmr 3ph 440-416y/240 115c rise
Product Name
Eaton Hazardous location encapsulated transformer
Catalog Number
Z44M51T30XCU
UPC
786680145636
Product Length/Depth
0.001 in
Product Height
0.001 in
Product Width
0.001 in
Product Weight
0.001 lb
Certifications
Contact Manufacturer
Type
Encapsulated transformer
Frequency rating
50/60 Hz
Feature: Encapsulated construction shields windings and connections from dust, moisture, and corrosive vapors, boosting reliability in Class I Division 2 environments. Business impact: reduces unplanned outages and maintenance labor, enabling longer intervals between servicing. Application: ideal for control panels, remote substations, and motor drive cabinets in petrochemical, refining, or wastewater facilities. Feature: 3-phase, 30 kVA rating with 440-416Y/240 output provides strong, stable power for critical loads, helping minimize voltage fluctuations and equipment wear. Business impact: improves process stability and extends motor and drive life, lowering total cost of ownership. Application: suitable for switchgear suites, MCCs, and machine bays requiring reliable low-voltage secondary distribution. Feature: 50/60 Hz operation with 115°C rise ensures dependable performance across global grids while maintaining safe temperatures under peak demand. Business impact: supports consistent uptime and predictable maintenance cycles. Application: mid-sized industrial plants and hazardous-area control circuits. Feature: manufacturer-backed documentation and model-specific data enable quick sizing and compliant installation. Business impact: reduces design risk and accelerates procurement cycles. Application: procurement integration, spec verification, and field engineering.
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FAQs
Installers should verify the transformer is mounted in a location with appropriate hazardous-location protection and follow manufacturer guidelines for enclosure integrity, sealing, and clearance. Ensure wiring methods and grommets maintain encapsulation integrity and that surface mounting or cabinet integration complies with local codes and project specs.
The unit is a 30 kVA, 3-phase transformer rated for 50/60 Hz operation with a primary/secondary arrangement described as 440-416Y/240 V. It provides a 115°C rise and is designed for hazardous locations (Class I Division 2).
Yes, it is designed for hazardous locations with encapsulated protection suitable for Class I Division 2 environments, offering reliable power conversion for critical loads in petrochemical, refining, and similar settings. Always confirm site-specific certification requirements with the manufacturer.
Current product certifications are listed as 'Contact Manufacturer' in the datasheet. For site approvals, consult Eaton’s specification sheet and the Commercial Distribution catalog, and request formal certification documentation from Eaton to satisfy local regulatory requirements.
Encapsulated design protects windings from contaminants, reducing maintenance frequency and extending service life. This translates to lower downtime, predictable lifecycle costs, and improved system uptime in hazardous-area control panels and feeders, which supports a stronger return on investment over the asset’s life.