Norgren RM/92016/M/125 Pneumatic Cylinder - Magnetic Piston

Part Number: RM/92016/M/125
Manufacturer
Norgren
Part number
RM/92016/M/125

Quick Summary

Norgren RM/92016/M/125 is a compact double-acting pneumatic cylinder designed for precise actuation in small automation and packaging lines. Customers often wrestle with lengthy cylinder lengths and wear-prone seals that slow lines down; this model addresses that with one-third the basic length. Engineers typically look for CE-compliant interfaces, SIL-ready control compatibility, and robust IP-rated ruggedness; this model aligns with those expectations. With a magnetic piston, non-corrodible construction, and compact form, it delivers reliability and ease of integration that improve uptime and reduce maintenance costs. Ideal for compact automation, it supports standard magnetic sensing and field-bus integration, boosting overall plant efficiency.

Product Information

Extended Description

RM/92016/M/125 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
M5
Cylinder diameter
16 mm
Stroke Length
125 mm
Operation
Double acting
Cushioning
No cushioning
Magnetic/Non-magnetic
Magnetic
Theoretical Force
121 N
Materials - Barrel
Anodised aluminium alloy
Materials - Piston Rod
Stainless steel (austenitic)
Range
RM/92000/M
Brand
IMI Norgren
Compact 16 mm bore with a 125 mm stroke enables precise actuation in confined spaces. This combination reduces overall footprint while preserving stroke reach, boosting cycle efficiency in small-assembly and pick-and-place tasks. One-third the basic length of ISO/VDMA models translates to easier fit on crowded machines, lowering cabinet space needs and installation time. In practice, this means reduced installation costs and quicker retrofits in existing lines. The magnetic piston provides reliable sensing for control systems, enabling straightforward integration with standard sensors and improved positional accuracy, which reduces mis-pick events and rejects. Anodised aluminium barrel and a stainless steel piston rod deliver corrosion resistance and long life, even in challenging factory environments, helping lower maintenance costs and downtime. Operating at 1 to 10 bar with a port size of M5 and a temperature range of -5 to 80 °C, the cylinder is compatible with typical shop air systems and broad process conditions. No cushioning simplifies mechanical assembly and reduces routine service, while maintaining predictable impact. The unit delivers a theoretical force of 121 N, supporting mid-range clamping and positioning tasks in compact automation lines, with a compact footprint that keeps downstream equipment accessible.

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FAQs

The cylinder uses an M5 port size and operates from 1 to 10 bar (14 to 145 psi). This makes it compatible with most standard compressed air supplies and common factory pneumatics stations, supporting consistent actuation without backflow or leakage concerns.
The RM/92016/M/125 features a 16 mm bore and a 125 mm stroke, delivering precise linear motion within a compact footprint. This combination is ideal for space-constrained automation tasks like small-assembly, orientation, and positioning in packaging lines.
Yes. Its compact length, 125 mm stroke, and magnetic piston support reliable sensing and quick integration with control systems, making it well-suited for pick-and-place, part transfer, and clamping tasks commonly found in packaging and assembly lines.
The unit uses a magnetic piston to enable straightforward sensing with standard sensors, and there is no cushioning in the design, which reduces maintenance and mechanical complexity while providing predictable response in routine operations.
Barrel is made from anodised aluminium with a stainless steel (austenitic) piston rod, delivering corrosion resistance and long life. These materials, combined with low-friction seals, support reliable performance in demanding environments and help minimize replacement costs over time.