Norgren RA/192080/W2/60 ISO Compact Cylinder - ISO 21287

Part Number: RA/192080/W2/60
Manufacturer
Norgren
Part number
RA/192080/W2/60

Quick Summary

Norgren RA/192080/W2/60 is a compact cylinder for precise linear actuation in automated assembly lines. In compact installations, seal wear and variable stroke can throttle cycle times and increase downtime. This unit complies with ISO 21287 and features a magnetic piston, buffer cushioning, and long-life seals for repeatable performance. Its 80 mm diameter and 60 mm stroke deliver substantial thrust while maintaining smooth, quiet operation across demanding environments. Designed for air-operated systems, it tolerates -5 to 80 C and 1–10 bar, with a standard G1/8 port to ease integration with existing manifolds.

Product Information

Extended Description

RA/192080/W2/60 Norgren: Conforms to ISO 21287 | Magnetic piston as standard | Low friction, long life seals | Switches can be mounted flush with the profile
Medium
Compressed air
Operating Temperature
-5 ... 80 °C, 23 ... 176 °F
Operating Pressure
1 ... 10 bar, 15 ... 145 psi
Standard
ISO 21287
Port Size
G1/8
Cylinder diameter
80 mm
Stroke Length
60 mm
Operation
Double acting
Cushioning
Buffer cushioning
Magnetic/Non-magnetic
Magnetic
Theoretical Force
3016 N
Materials - Barrel
Anodised aluminium
Materials - Piston Rod
Stainless steel (martensitic)
Country of Origin
Germany
Range
RA/192000/M
Series
ISO Compact
Brand
IMI Norgren
ISO 21287 conformance and a compact 80 mm cylinder diameter enable plug-and-play installation with common pneumatic manifolds, simplifying retrofits and spare-part inventories. That interoperability directly lowers project risk and accelerates time-to-value in automated lines. A magnetic piston is standard, enabling direct position sensing and flush-mount switches without added yokes. This minimizes misalignment and sensor wiring while improving control-loop accuracy in high-speed cycles. The barrel is made from anodised aluminium and the piston rod from martensitic stainless steel, delivering durability and corrosion resistance in factory environments. Combined with low-friction seals, this reduces maintenance intervals and supports consistent performance across temperature swings. Buffer cushioning provides controlled deceleration, protecting both the cylinder and guided components during rapid cycles. This translates to lower wear, less vibration, and longer life in high-cycle applications. With a theoretical thrust around 3016 N, the RA/192080/W2/60 handles demanding positioning tasks at 1–10 bar. The G1/8 port and ISO Compact series compatibility make system integration straightforward for modern automation architectures.

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FAQs

This cylinder uses a standard G1/8 port and is designed to conform to ISO 21287, enabling straightforward mounting on common pneumatic manifolds. Choose compatible mounting brackets and sensor locations to maximize flush-switch integration and reduce misalignment. The compact 80 mm diameter fits tight spaces without sacrificing accessibility for maintenance.
Key specs include a 80 mm cylinder diameter, 60 mm stroke, 1–10 bar operating pressure, and a theoretical thrust of 3016 N. It features buffer cushioning for controlled deceleration, a magnetic piston for easy position sensing, and a temperature range of -5 to 80 C, all of which support reliable, high-cycle operation in automation lines.
Yes. The combination of ISO 21287 conformance, magnetic piston, and buffer cushioning provides repeatable motion and accurate sensing, which are critical for pick-and-place applications. The flush-mounted sensing capability minimizes wiring and keeps alignment tight, reducing cycle-time variability and improving throughput.
The RA/192080/W2/60 is designed to comply with ISO 21287 for compact pneumatic actuators, with a magnetic piston and robust construction suitable for industrial use. While CE and IP ratings are not specified in the provided data, ISO 21287 conformance ensures interoperability in standard automation environments.
Buffer cushioning decelerates motion smoothly, reducing impact on the mechanism and extending seal and guide life. This translates to lower wear, reduced downtime, and more predictable lifecycle costs in high-speed, high-cycle applications.