Eaton XDT3D75X Dry-Type Transformer - Hazardous Area, 4X
Part Number: XDT3D75X
Quick Summary
Eaton XDT3D75X dry-type transformer is designed to deliver reliable power isolation and distribution in hazardous locations. This 75 kVA, three-phase unit features copper windings in a 316 stainless steel enclosure and resin encapsulation for superior moisture and dust resistance. The transformer operates at 60 Hz with a 600 Vac primary and 208Y/120 Vac secondary, making it ideal for converting utility power to controls and instrumentation in harsh environments. Plant engineers often struggle with moisture ingress, installation in confined hazardous spaces, and ongoing regulatory compliance. The XDT3D75X meets NEC/CEC requirements and is rated for Class I Division 2 locations with a NEMA 4X enclosure. Its rugged construction delivers long service life, predictable performance, and a clear business case for automation and power-distribution projects.
Product Information
Extended Description
XDT3D75X Eaton Crouse-Hinds: Eaton Crouse-Hinds series XDT dry-type transformer, 60 Hz, 75 kVA, 316 stainless steel, Three-phase, 600 Vac, 208Y/120 Vac, Copper windings, Resin encapsulated
Product Name
Eaton Crouse-Hinds series XDT dry-type transformer
Catalog Number
XDT3D75X
UPC
662276445666
Product Length/Depth
30.3 in
Product Height
32.31 in
Product Width
15.68 in
Product Weight
1460 lb
Area classification
Hazardous/Classified Locations
Standards type
NEC/CEC
NEC hazardous rating
Class I, Division 2
NEMA Rating
4X
Type
Resin encapsulated
Phase
Three-phase
Primary voltage
600 Vac
Secondary Voltage
208Y/120 Vac
Frequency rating
60 Hz
Material
316 stainless steel
Special features
Copper windings
SP3D Design Package - XDT and XTT Hazardous Area Transformers
XDT and XTT Hazardous Area Transformers Flyer
XDT and XTT Hazardous Area Transformers catalog page
XDT and XTT Hazardous Area Transformers Canadian certification
XDT and XTT Hazardous Area Transformers Canadian certification
IF XDT - XDT Series Hazardous Area Transformers
Eaton Specification Sheet - XDT3D75X
Eaton Specification Sheet - XDT3D75X
Feature to benefit: Hazardous-location readiness translates to lower risk and faster approvals, enabling compliant deployment in Area Classification environments and reducing project lead times. This is complemented by a NEMA 4X enclosure that resists corrosion and weathering, lowering replacement costs in harsh manufacturing floors. Application note: In practice, the resin-encapsulated construction minimizes moisture ingress and dust intrusion, extending uptime in damp plants and outdoor installations, especially where condensate or chemical exposure is a concern. Business impact: Fewer field faults and reduced maintenance cycles lead to lower total cost of ownership and improved plant reliability for critical control circuits. Feature to benefit: Copper windings in a 316 stainless steel body ensure high conductivity and resistance to corrosion, which is crucial for long-life service in aggressive environments. Application note: This makes the XDT3D75X a robust choice for safety-critical controls and instrumentation in chemical processing and oil & gas facilities. Business impact: Enhanced performance under steady-state and transient loads improves overall system efficiency and reduces energy losses. Feature to benefit: 75 kVA rated three-phase output with a 600 Vac to 208Y/120 Vac secondary supports scalable automation architectures. Application note: This enables seamless integration with MCCs, switchgear, and PLC-based control systems, delivering predictable voltage transformation and minimizing wiring complexity. Business impact: Lower installation risk and faster commissioning for new lines or plant expansions. Feature to benefit: Resin encapsulation provides moisture and vibration resistance that enhances vibration tolerance and shock durability, supporting installation in vibro-heavy areas. Application note: This translates to fewer fault-induced shutdowns and more reliable operation in heavy industry. Business impact: Improved uptime and production throughput. Feature to benefit: Stainless steel enclosure plus compact footprint (30.3 in L x 32.31 in H x 15.68 in W) optimizes space planning and allows for easier retrofits in constrained switchgear rooms. Application note: The unit’s weight and mounting compatibility simplify alignment with existing mounting patterns and rail systems, reducing installation time and labor costs. Business impact: Accelerated project delivery and lower field installation risk.
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FAQs
The XDT3D75X is designed for Area Classification environments and Class I Division 2 locations with a NEMA 4X enclosure. Ensure proper mounting in compliant switchgear rooms or control panels, with 600 Vac primary and 208Y/120 Vac secondary wiring. Consider available space: 30.3 in length, 32.31 in height, and 15.68 in width, and plan for a robust mounting surface to support the 1460 lb weight.
Key specs include a 75 kVA rating, three-phase configuration, 60 Hz frequency, 600 Vac primary, and 208Y/120 Vac secondary. Copper windings and resin encapsulation optimize efficiency and moisture resistance. The device uses a 316 stainless steel enclosure to withstand harsh environments, making it suitable for demanding automation and power distribution tasks.
Yes. The XDT3D75X is specifically designed for Hazardous/Classified Locations and Class I Division 2 environments. With NEC/CEC compliance and a NEMA 4X enclosure, it supports critical control circuits, instrumentation, and process equipment in chemical plants, refineries, and other high-risk facilities.
The unit conforms to NEC/CEC standards, carries NEC hazardous rating Class I Division 2, and uses a NEMA 4X enclosure. Area classification for hazardous locations is supported, with UL-based Canadian certifications available via listed documents. These certifications simplify regulatory approvals and ensure consistent performance in risky environments.
Resin encapsulation and copper windings in a corrosion-resistant 316 stainless steel body reduce moisture ingress and environmental damage, lowering maintenance frequency and replacement risk. Lower fault rates translate to higher uptime, improved process reliability, and a favorable return on investment for automation projects and plant-wide power distribution upgrades.