Norgren RA/192080/N4/25 ISO Compact Cylinder - ISO 21287
Part Number: RA/192080/N4/25
Quick Summary
ISO Compact Cylinder in the Norgren RA/192080/N4/25 delivers precise double-acting actuation for compact automation cells. When space is tight, misalignment and wear can throttle throughput; this unit reduces both with a robust magnetic piston and low-friction seals. It conforms to ISO 21287, features a magnetic piston as standard, and uses buffer cushioning to support reliable sensing and smooth starts. Designed for OEM integration, its durable anodised aluminium barrel and stainless steel rod enable reliable performance in demanding lines while supporting scalable, cost-efficient pneumatic solutions.
Product Information
Extended Description
RA/192080/N4/25 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
25 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
The RA/192080/N4/25 provides a compact 80 mm bore with a 25 mm stroke, delivering high force within a small footprint; this translates to more compact automation cells and easier integration into existing lines, reducing equipment footprint and enabling faster cycle times in packaging and pick-and-place applications. Magnetic piston as standard simplifies sensor mounting and position feedback, improving repeatability and reducing misdetection in high-speed operations on conveyor or transfer systems. Low-friction seals minimize wear and extend service intervals, lowering maintenance costs and downtime in high-cycle environments such as material handling and automated assembly. The G1/8 port size supports straightforward integration with standard pneumatic manifolds and controllers, enabling quick retrofit and scalable deployment across multiple stations. Buffer cushioning provides controlled deceleration, protecting both the cylinder and adjacent tooling from impact, which improves lifecycle and reduces vibration-related wear. The durable anodised aluminium barrel paired with a martensitic stainless steel piston rod resists corrosion and mechanical wear, delivering long-term reliability in production environments that demand consistent positioning and timing.
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FAQs
The RA/192080/N4/25 is an ISO Compact Series actuator with an 80 mm bore and 25 mm stroke designed to fit standard compact mounting schemes. It offers G1/8 ports and a magnetic piston for easy sensing. When upgrading, verify frame compatibility with ISO 21287 dimensions and align mounting holes to minimize misalignment during installation.
Key specs to confirm include a 3016 N theoretical force at peak stroke, double-acting operation, buffer cushioning for controlled deceleration, and a operating pressure range of 1 to 10 bar. The cylinder operates in -5 to 80 °C and uses a G1/8 port. These factors determine repeatability, speed, and service life in high-cycle applications.
Yes. Its 80 mm bore and 25 mm stroke deliver strong, compact actuation ideal for tight spaces in packaging lines. Features such as a magnetic piston for precise position sensing, low-friction seals for longevity, and buffer cushioning for smooth starts help achieve high-speed, repeatable pick-and-place cycles with reduced vibration and wear.
This model adheres to ISO 21287, supporting standardized performance for compact pneumatic cylinders. The data does not specify SIL, CE, or IP ratings; if those are required for your project, confirm configuration-specific certifications with the supplier and ensure system-wide compliance across the automation cell.
With long-life seals and low-friction components, maintenance intervals extend compared to older designs, reducing downtime. The combination of durable materials, magnetic sensing, and cushion-assisted operation contributes to higher uptime and predictable lifecycle costs, improving total cost of ownership in continuous production environments.