Norgren 8672400.8402.02400 Solenoid Valve - IP65

Part Number: 8672400.8402.02400
Manufacturer
Norgren
Part number
8672400.8402.02400

Quick Summary

Solenoid Valve for compact pneumatic and fluid control applications, delivering reliable direct-acting closure in low and fluctuating pressure lines. This model minimizes downtime by operating without differential pressure and offers high flow with vacuum capability. Key protections include an IP65 enclosure rating; CE and SIL certifications are common in this class and may apply depending on region and installation context. Taken together, this valve delivers reliable brass-body construction and compatible G1 ports, yielding simplified installation, reduced maintenance, and predictable performance in automated lines. Designed for systems with low or fluctuating pressure, it maintains stable actuation and reduces energy waste in automated manufacturing and packaging lines.

Product Information

Extended Description

8672400.8402.02400 Norgren: Valve operates without differential pressure | High flow rate | Suitable for vacuum | For systems with low or fluctuating pressure
Medium
Gases, Liquids
Operating Temperature
0 ... 60 °C, 32 ... 140 °F
Operating Pressure
0 ... 16 bar, 0 ... 232 psi
Port Size
G1
Coil Code
8402
Function
NC
Valve operation
2/2
Materials - Body
Brass
Materials - Seat Seal
PTFE
Certification - IP Rating
IP65
Range
86720
Brand
IMI Buschjost
Direct-acting design eliminates the need for pilot pressure, delivering immediate closure and a fast response in control loops. The business impact is fewer failure points and tighter process control, especially in low-pressure gas and liquid lines used in packaging, assembly, and automation cells. Brass body with PTFE seat seal provides robust corrosion resistance and long service life in damp environments, reducing maintenance costs and extending replacement intervals in water-based cooling circuits and chemical processing where seal compatibility matters. G1 port size and 2/2 NC configuration simplify retrofit and installation within existing manifolds, enabling quicker setup, reduced inventory of adapters, and more reliable seating under fluctuating pressure conditions. IP65 protection and a broad operating range enable use in dirty, dusty, or wash-down environments while maintaining performance, helping ensure compliant operation in industrial automation lines and reducing downtime risk. The coil code 8402 indicates a standard control coil family, enabling easy sourcing and compatible drive electronics across Norgren/IMI Buschjost ecosystems, reducing lifecycle costs and simplifying spare-part planning.

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FAQs

Yes. The valve uses a standard G1 port, a 2/2 normally closed configuration, and a brass body with a PTFE seat, enabling straightforward replacement in existing G1 manifolds and control racks. To ensure seamless retrofit, verify coil variant 8402 and confirm the drive voltage compatibility with your control system before installation.
Operating pressure ranges from 0 to 16 bar (0 to 232 psi), and the operating temperature spans 0 to 60 °C (32 to 140 °F). It is suitable for gases and liquids and can operate in vacuum conditions, making it versatile for low-pressure fluid control and filtration lines in automation equipment.
Ideal for low to moderate pressure lines in automation, packaging, tooling, and process control. The direct-acting design provides fast response without pilot pressure, while the brass body and PTFE seat support longevity in damp or mildly corrosive environments. It also supports vacuum-related exhausts and vent paths where quick actuation is crucial.
The product features IP65 enclosure protection for dust and water ingress, enhancing reliability in harsh environments. While IP65 is specified, CE and SIL certifications are common in this class but may vary by region and installation; verify your local regulatory requirements and supplier documentation for confirmation.
A brass body with PTFE seat seal delivers robust corrosion resistance and a longer service life in damp or challenging environments, reducing maintenance intervals. The direct-acting design minimizes moving parts in the pilot system, lowering leak paths and simplifying spare-parts planning for ongoing operation in automated lines.