Norgren 8288461.9615.02400 Motorised Valve - IP54

Part Number: 8288461.9615.02400
Manufacturer
Norgren
Part number
8288461.9615.02400

Quick Summary

Norgren 8288461.9615.02400 motorised valve is designed to precisely regulate gas and liquid flows in automated processes. Power interruptions won’t reset the valve thanks to a last-set memory feature, reducing restart time and process disturbance. This IP54-rated valve carries international approvals and uses a DC motor with a feedback potentiometer for accurate position control. With a brass body, EPDM seat, G1 port, and a 20 mm nominal diameter, it delivers reliable, energy-efficient 2/2 valve control for demanding lines. Its compact, robust design supports straightforward installation and long service life in environments with fluids that may be contaminated.

Product Information

Extended Description

8288461.9615.02400 Norgren: Low power consumption | Wear-resistant ceramic rotary action sliding plate | Valve remains on last setting if power lost | Will handle contaminated fluids | International approvals
Medium
Gases, Liquids
Operating Temperature
-10 ... 40 °C, 14 ... 104 °F
Operating Pressure
-0.9 ... 6 bar, -13 ... 87 psi
Port Size
G1
Nominal Diameter
20 mm
Valve operation
2/2
Materials - Body
Brass
Materials - Seat Seal
EPDM
Certification - IP Rating
IP54
Range
82880
Brand
IMI Buschjost
The valve is engineered for low power consumption, which translates to lower energy costs and reduced heat in control panels during continuous operation. This efficiency supports longer equipment life in heat-sensitive installations and helps maintenance teams meet sustainability targets while maintaining precise flow control in automated lines. The wear-resistant ceramic rotary action sliding plate minimizes wear and tear, extending service intervals and reducing downtime associated with routine valve refurbishment. In demanding environments, the last-setting memory feature ensures the valve stays in the correct position after power is restored, shortening startup sequences and stabilizing critical processes. The brass body combined with an EPDM seat seal provides reliable chemical compatibility and leak-tight performance even when fluids contain contaminants, lowering the risk of unexpected leaks and related downtime. An IP54-rated enclosure protects internal components from dust and splashes, enabling safer operation in industrial environments and reducing protective measures required at the site. The G1 port and 20 mm nominal diameter offer straightforward integration with standard piping and compact footprints for retrofit projects. The DC motor with feedback potentiometer delivers precise positional control, improving repeatability in dosing, mixing, and on/off actuation across multiple lines. Overall, a robust, easy-to-install solution for gas and liquid control in process automation, with measurable gains in uptime, energy efficiency, and regulatory compliance.

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FAQs

This valve features a 20 mm nominal diameter and a G1 port, simplifying alignment with standard piping. Use brass body compatibility and EPDM seals for reliable leak protection, and verify the operating pressure range of -0.9 to 6 bar within your system. Ensure the enclosure is protected to maintain IP54 integrity in dusty or damp environments.
The device operates from -10 to 40 °C and handles pressures from -0.9 to 6 bar. It is designed for gases and liquids, providing repeatable 2/2 valve actuation with a DC motor and position feedback for accurate control across typical process conditions.
Yes. The brass body and EPDM seat seal are chosen for chemical compatibility, and the design accommodates fluids that may contain contaminants, helping to maintain reliable seating and minimizing leakage risk in dirty process streams.
The valve carries an IP54 rating for protection against dust and water exposure, plus international approvals implied by its global application in diverse industrial settings, supporting compliance across multiple regions.
In the event of power loss, the valve remains at its last position, reducing restart time and process disturbance. This lowers downtime, improves throughput, and contributes to a lower total cost of ownership by decreasing commissioning effort after outages and enabling quicker recovery in critical lines.