Eaton HGLS8 250 Grounding Bushing - 150°C NEC/CEC
Part Number: HGLS8 250
Quick Summary
Eaton Crouse-Hinds HGLS grounding bushing provides a reliable grounding path for rigid/IMC conduit installations. Contractors often struggle with lug sizing, threadless terminations, and temperature limits that slow projects; this part simplifies field terminations with a robust, set-screw design. It carries NEC/CEC standards for safe, compliant installations in ordinary/non-hazardous locations, and its 150°C rating supports high-temperature environments. The aluminum lug and malleable iron body offer durable, corrosion-resistant performance while reducing maintenance. By combining a 3" trade size with a 250 kcmil-#6 AWG lug, it delivers fast, secure terminations you can trust across panel, enclosure, and conduit assemblies, improving overall project efficiency and reliability.
Product Information
Extended Description
HGLS8 250 Eaton Crouse-Hinds: Eaton Crouse-Hinds series HGLS grounding bushing, Rigid/IMC, Aluminum lug, #250 kcmil-6 AWG, Malleable iron, 150°C, Threadless, 3", Set screw
Product Name
Eaton Crouse-Hinds series HGLS grounding bushing
Catalog Number
HGLS8 250
UPC
784564113894
Product Weight
0.66 lb
Area classification
Ordinary/Non-Hazardous Locations
Standards type
NEC/CEC
Conduit type
Rigid/IMC
Temperature rating
150°C
Lug material
Aluminum
Thread
Threadless
Trade size
3"
Lug size
250 kcmil-#6 AWG
Material
Malleable iron
Type
Set screw
Eaton Crouse-Hinds HGLS8 250 3D drawing
Crouse-Hinds series Grounding Bushings - Rigid-IMC catalog page
Grounding Bushings - Rigid-IMC Canadian certification
Grounding Bushings - Rigid-IMC Canadian certification
Eaton Specification Sheet - HGLS8 250
Feature → Business Impact → Application: Conduit type compatibility with rigid/IMC provides a proven grounding path that reduces installation complexity and potential miswiring, speeding up project timelines in industrial facilities. Feature → Application efficiency with threadless design and set screw for solid terminations reduces torque issues and ensures repeatable connections in vibration-prone environments, ideal for panel and enclosure assemblies. Lug material is aluminum and lug size supports 250 kcmil-#6 AWG, enabling handling of large conductors with minimal resistance and secure torque, reducing rework in power distribution applications. Material is malleable iron with a 150°C rating, delivering high-temperature performance and longevity in demanding environments, which lowers maintenance costs over the lifecycle. The product aligns with NEC/CEC standards and ordinary/non-hazardous area classifications, simplifying compliance documentation for audits and inspections. Installation compatibility is enhanced by clear catalog references and available 3D CAD drawings, which streamline design integration and reduce engineering lead times.
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FAQs
Install the HGLS8 250 by seating the bushing into the conduit opening, insert the 250 kcmil-#6 AWG conductors into the aluminum lug, and tighten the set screws to secure the termination. The threadless design simplifies alignment and reduces the risk of cross-threading while the 3" trade size ensures a precise fit for standard rigid/IMC installations.
The unit supports a 3" trade size with a lug rated for 250 kcmil-#6 AWG conductors. It features a 150°C temperature rating and is intended for ordinary/non-hazardous locations under NEC/CEC standards, ensuring a compliant and robust grounding path in industrial systems.
Yes. Its rigid/IMC conduit compatibility, set-screw termination, and aluminum lug design make it ideal for panel and enclosure grounding in non-hazardous environments, delivering a secure, low-impedance ground while simplifying install and maintenance.
The HGLS8 250 complies with NEC/CEC standards and supports ordinary/non-hazardous location classifications, aligning with typical industrial electrical installations and simplifying regulatory compliance during audits.
The combination of malleable iron construction, aluminum lug, and a 150°C rating provides durable, high-temperature performance with low corrosion risk, reducing downtime and maintenance costs over the equipment’s life while maintaining reliable grounding under vibration and thermal cycling.