Norgren RM/92040/N2/80 Pneumatic Cylinder - Magnetic
Part Number: RM/92040/N2/80
Quick Summary
The RM/92040/N2/80 is a compact double-acting pneumatic cylinder designed for automation lines. Space constraints and demanding duty cycles can erode performance, but this model reduces footprint while delivering reliable stroke life. Typically CE-marked and available with robust environmental protection; for SIL-capable configurations, consult the datasheet. With a magnetic piston, anodised aluminium barrel, and a stainless steel piston rod, it enables easier sensing, corrosion resistance, and long-term reliability in high-cycle applications. Designed to operate from 1 to 10 bar and -5 to 80 °C, it supports a wide range of industrial environments while maintaining predictable repeatability. The 40 mm bore and 80 mm stroke suit compact pick-and-place, indexing, and transfer tasks in space-constrained automation cells.
Product Information
Extended Description
RM/92040/N2/80 Norgren: One third the basic length of a corresponding ISO/VDMA model | Low friction, long life seal design | Fully non-corrodible specification | Standard magnetic piston for full control system versatility
Medium
Compressed air
Operating Temperature
-5 ... 80 °C, 23 ... 176 °F
Operating Pressure
1 ... 10 bar, 14 ... 145 psi
Port Size
G1/8
Cylinder diameter
40 mm
Stroke Length
80 mm
Operation
Double acting
Cushioning
No cushioning
Magnetic/Non-magnetic
Magnetic
Theoretical Force
754 N
Materials - Barrel
Anodised aluminium alloy
Materials - Piston Rod
Stainless steel (austenitic)
Range
RM/92000/M
Brand
IMI Norgren
The 40 mm bore and 80 mm stroke deliver a compact yet capable actuator, reducing machine footprint while preserving stroke length for precise movements, enabling efficient use of limited space in packaging and assembly lines. This model’s low-friction, long-life seal design translates to lower maintenance intervals and reduced total cost of ownership in high-cycle applications. The magnetic piston supports straightforward sensing and integration with standard control systems, improving repeatability and simplifying diagnostics in PLC-driven environments. A corrosion-resistant anodised aluminium barrel paired with a stainless steel (austenitic) piston rod enhances longevity in challenging environments, delivering consistent performance across shifts and seasons. Operating from 1 to 10 bar and -5 to 80 °C, it accommodates a broad range of compressed-air systems and ambient conditions without compromising reliability. The unit’s G1/8 port and standard 40x80 geometry simplify installation, retrofit, and compatibility with existing fittings, manifolds, and manifolds in automation cells. By aligning with the RM/92000/M range, it supports scalable solutions for evolving line configurations and faster changeovers in inline production. Finally, its non-cushioned actuation reduces rebound and overshoot, improving precision in positioning tasks and reducing downstream wear on grippers and fixtures.
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FAQs
For installation, verify the G1/8 port size compatibility with your manifolds, align mounting holes to avoid misalignment, and use appropriate end-connection hardware. The 40 mm bore and 80 mm stroke fit tight spaces, while the magnetic piston simplifies sensor placement for reliable position indication.
Key specs include a 40 mm cylinder diameter, 80 mm stroke, operating pressure range of 1 to 10 bar, and a theoretical force of 754 N. It operates from -5 to 80 °C and uses a G1/8 port. The piston is stainless steel with an anodised aluminium barrel and a magnetic design for easy sensing integration.
Yes. This model is designed to offer one third the basic length of a typical ISO/VDMA cylinder, enabling compact retrofits and space-efficient installations without sacrificing actuation performance in high-cycle environments.
The RM family commonly supports CE-compliant interfaces and robust environmental protection. For SIL-capable configurations and definitive certification details, consult the official datasheet and confirm with your procurement team prior to integration.
The combination of low-friction seals, magnetic piston sensing, and corrosion-resistant materials reduces wear and maintenance frequency, lowering lifecycle costs. Its compact footprint also provides faster changeovers and easier future upgrades in evolving automation lines.