O-Z/Gedney ECGJH-125-12 Flexible Conduit Coupling
The O-Z/Gedney ECGJH-125-12 is a 1-1/4 inch flexible conduit coupling designed to provide a secure and flexible connection in hazardous and wet locations. Its robust construction and compliance with industry standards make it an ideal choice for environments requiring explosionproof and dust-ignitionproof fittings.
Key Features
- Flexible Design: Allows for movement and vibration, making it suitable for areas where rigid conduit is impractical.
- Durable Materials: Constructed with bronze ends, a steel nipple, bronze braid, and a brass tube, ensuring longevity and resistance to corrosion.
- Threaded Connections: Equipped with two female threaded nipples, each furnished with a removable male nipple, facilitating easy installation and maintenance.
- Insulating Liner: Features an interior insulating liner to protect conductors from abrasion under vibrating conditions.
- Temperature Rating: Capable of withstanding temperatures up to 300°F, suitable for high-temperature applications.
Specifications
- Trade Size: 1-1/4 inch
- Length: 12 inches
- Material: Bronze ends, steel nipple, bronze braid, brass tube
- End Type: Two female threaded nipples
- Enclosure Ratings: Class I Division 1 and 2 Group D; Class I Zone 1 and 2 Group IIA; Class II Division 1 and 2 Group E, F, G; Class III
- Approvals: UL 886, CSA C22.2
Applications
The ECGJH-125-12 is designed for use in hazardous locations to isolate conduit systems from vibration and/or movement or to make difficult bends. It is suitable for use with IMC and threaded rigid metallic conduit in environments where explosionproof and dust-ignitionproof fittings are required.
Compliance and Standards
This conduit coupling meets the following standards and approvals:
- UL 886
- CSA C22.2
- NEC 500-503/505
- Class I Division 1 and 2 Group D
- Class I Zone 1 and 2 Group IIA
- Class II Division 1 and 2 Group E, F, G
- Class III
These certifications ensure the coupling’s suitability for use in hazardous and wet locations, providing safety and reliability in demanding applications.













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