IMI Norgren RA/192063/X4/100 ISO Compact Cylinder - ISO 21287

Manufacturer
Norgren
Part number
RA/192063/X4/100

Quick Summary

ISO compact cylinder RA/192063/X4/100 delivers precise linear actuation for compact automation cells and tooling lines. In demanding environments, misalignment or excess friction can trigger inconsistent strokes and costly downtime. This cylinder addresses those pain points with a magnetic piston as standard, long life seals, and buffer cushioning that smooths travel and reduces impact loads. It conforms to ISO 21287, enabling straightforward interfaces with common industry sensors and mounting patterns. The design also supports flush-mounted switches for minimal profile intrusion and easy integration into dense layouts. For engineers and buyers, the combination of compact footprint, robust sealing, and predictable cycling translates into lower maintenance, reduced wear, and higher line uptime, while preserving a strong value proposition for automation projects.

Product Information

Extended Description

RA/192063/X4/100 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
63 mm
Stroke Length
100 mm
Operation
Double acting
Cushioning
Buffer cushioning
Magnetic/Non-magnetic
Magnetic
Theoretical Force
1870 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
The RA/192063/X4/100 uses a 63 mm bore and a 100 mm stroke in a compact ISO Compact cylinder design, delivering up to 1870 N of theoretical force while occupying minimal space. This translates to reliable push and pull actions in tight installations and supports compact robotics and packaging equipment where footprint matters. The magnetic piston is standard, enabling straightforward position sensing and easier integration with sensors and control systems across machine layouts, reducing wiring complexity and installation time. Buffer cushioning smooths actuation travel, minimizing vibration and impact loads, which extends seal life and reduces maintenance cycles on high-speed lines. Long-life seals and low-friction coatings reduce wear, lowering lifecycle costs and increasing uptime in continuous operation environments. The cylinder’s anodised aluminium barrel and martensitic stainless steel piston rod provide robust corrosion resistance and longevity in harsh factory atmospheres. G1/8 porting and ISO 21287 compatibility simplify replacement and system integration in existing pneumatics infrastructures.

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FAQs

This double-acting cylinder uses a G1/8 port and aligns with the ISO Compact mounting pattern, allowing straightforward mounting in tight spaces. Flush-switch compatibility enables sensor integration without increasing profile, while the magnetic piston supports reliable position sensing across common automation interfaces.
Operating temperature ranges from -5 to 80 °C, with an operating pressure range of 1 to 10 bar. The cylinder provides a theoretical force of 1870 N, suitable for demanding actuation tasks in compact equipment and high-cycle environments.
Yes. The 63 mm bore and 100 mm stroke offer strong, repeatable thrust in a compact form factor, ideal for packaging, pick-and-place, and small-part handling. Buffer cushioning reduces impact, while the magnetic piston supports precise sensing for reliable cycle control.
The cylinder is designed to ISO 21287 compliant, ensuring consistent mounting interfaces and interchangeability within ISO Compact systems. Its magnetic piston and robust seals support reliable operation in industrial environments and simplify integration with standard automation sensors and controllers.
The combination of low-friction seals, buffer cushioning, and a rugged anodised aluminium barrel with a stainless steel piston rod reduces wear and maintenance intervals. This yields lower lifecycle costs, higher uptime, and better return on investment for mid-volume automation projects and retrofits.