The 430 eSafe Series offers a wide range of ergonomic couplings, including Stream-Line. The coupling has smaller outer dimensions than comparable designs. Coupling is fully automatic to ensure quick and easy handling. eSafe complies with ISO 4414 and EN 983 standards.
Female Air Quick Coupling Series 430 eSafe Female Thread CEJN
The eSafe range offers depressurizing safety couplings that disconnect in two stages to depressurize the coupling and minimize the risk of sudden separation from the coupling.
- Standard
- 8.2 mm, A-A 59439, ISO 6150 B
- Material
- Acero Zincado, Latón
- Temperature
- -20°C / +100°C (-4°F / +212°F)
- Presión de Trabajo
- 16 bar (232 PSI)
- Diámetro Nominal de Paso
- 8.2 mm (5/16")
- Caudal
- 2500 l/min (88.3 CFM)
- Presión de Rotura
- 140 bar (2030 PSI)
- Fuerza de Conexión
- 132 N
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The eSafe range offers depressurizing safety couplings that disconnect in two stages to depressurize the coupling and minimize the risk of sudden separation from the coupling.
The 430 eSafe Series offers a wide range of ergonomic couplings, including Stream-Line. The coupling has smaller outer dimensions than comparable designs. Coupling is fully automatic to ensure quick and easy handling. eSafe complies with ISO 4414 and EN 983 standards.
The eSafe range offers depressurizing safety couplings that disconnect in two stages to depressurize the coupling and minimize the risk of sudden separation from the coupling.
The eSafe range offers depressurizing safety couplings that disconnect in two stages to depressurize the coupling and minimize the risk of sudden separation from the coupling.
The eSafe range offers depressurizing safety couplings that disconnect in two stages to depressurize the coupling and minimize the risk of sudden separation from the coupling.
The eSafe range offers depressurizing safety couplings that disconnect in two stages to depressurize the coupling and minimize the risk of sudden separation from the coupling.
The eSafe range offers depressurizing safety couplings that disconnect in two stages to depressurize the coupling and minimize the risk of sudden separation from the coupling.