Eaton Z44M51T75XCU Hazardous Transformer - Class I Div 2
Part Number: Z44M51T75XCU
Quick Summary
Z44M51T75XCU is a hazardous location encapsulated transformer used for safe, reliable power distribution in industrial facilities. Keeping equipment safe while reducing downtime in Class I Division 2 sites is a common concern. Certifications vary by region; for haz loc transformers like this, Class I Division 2 approvals are common, with manufacturer certifications for CE or IP ratings available per market. This combination supports safer operation and reliable power delivery in rugged environments, helping procurement reduce risk and maintenance costs. The model also aligns with core needs for an industrial transformer in power management and distribution across harsh environments and regulated spaces.
Product Information
Extended Description
Z44M51T75XCU Eaton: Eaton hazardous location encapsulated transformer, 75 kva haz loc cl1 div 2 xfmr 3ph 440-416y/240 115c rise
Product Name
Eaton Hazardous location encapsulated transformer
Catalog Number
Z44M51T75XCU
UPC
786680145711
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 for hazardous locations → Business Impact robust safety and environmental protection → Application ideal for Class I Division 2 zones in factories and refineries. Feature 75 kVA three-phase rating → Business Impact supports mid-scale loads with fewer transformers and reduced footprint → Application data centers, manufacturing lines, and distribution panels. Feature 50/60 Hz compatibility → Business Impact global applicability and seamless integration into mixed-voltage facilities → Application worldwide installations and retrofits. Feature Class I Division 2 design for hazardous locations → Business Impact enables safe installation and continuous operation in risky environments → Application chemical plants, oil and gas facilities, and processing plants. Feature availability with Eaton catalogs and technical sheets → Business Impact simplified procurement and faster commissioning → Application project engineering and maintenance planning. Industry insight indicates encapsulated, haz loc transformers like Z44M51T75XCU deliver improved reliability and lower lifecycle costs when integrated with standard power management strategies.
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FAQs
Installation should follow the hazardous location guidelines for Class I Division 2 environments. Verify that the transformer is mounted in a suitable enclosure, maintain proper clearance for cooling, and route conductors per local codes. Use manufacturer-approved wiring diagrams and perform torque checks on terminations to ensure safe, compliant operation in hazardous zones.
The unit is a 75 kVA, 3-phase transformer with a primary/secondary configuration of 440-416Y/240 and a 50/60 Hz frequency rating. It is designed for hazardous locations (Class I Division 2). This combination supports mid-scale power distribution in demanding environments while maintaining voltage integrity and system stability.
Yes, the Z44M51T75XCU is designed for hazardous location operation and Class I Division 2 approvals, making it suitable for chemical plants, refineries, and similar environments where flammable atmospheres exist. Its encapsulated construction provides added protection against moisture, dust, and corrosive exposure common in these facilities.
Certifications for this model vary by region and market. Typical considerations include Class I Division 2 approvals; regional CE or IP certifications may be available upon request. Always consult Eaton or your distributor for the exact approvals tied to your purchase, ensuring the unit meets local safety and regulatory requirements.
Encapsulated transformers reduce moisture ingress, limit dust ingress, and enhance resilience in harsh environments, which translates to lower maintenance and longer service life. The 75 kVA three-phase design also lowers lifecycle costs by reducing the need for multiple, smaller units and improving overall system reliability and uptime in production facilities.