Norgren QM/8125/24 Pneumatic Cylinder - 125 mm Bore

Part Number: QM/8125/24
Manufacturer
Norgren
Part number
QM/8125/24

Quick Summary

Norgren QM/8125/24 pneumatic cylinder delivers precise linear actuation for automated manufacturing and process control. Engineers often struggle with installation challenges, alignment drift, and variable performance when integrating generic cylinders into tight automation layouts. In practice, certifications like CE conformity and industry-standard protective IP ratings are critical for compliant lines, and many Norgren configurations support SIL-ready safety integration where required. This model combines a 125 mm bore with an aluminium body and rear hinge mounting to reduce weight, simplify mounting, and improve line reliability—supporting faster setup, predictable maintenance, and strong ROI for automation projects.

Product Information

Cylinder diameter
125 mm
Materials - Body
Aluminium
Brand
IMI Norgren
Rear hinge mounting simplifies installation in constrained spaces, reducing alignment risk and setup time. This translates to higher line uptime and faster changeovers in packaging and assembly applications, especially where space is limited and quick maintenance is essential. The 125 mm bore delivers robust actuation force, improving cycle stability under load and enabling dependable performance in medium-to-heavy duty tasks, from palletizing to precision handling. An aluminium body reduces weight, easing mounting on moving machinery and contributing to overall energy efficiency and easier transport during equipment swaps. Compatible with common mounting schemes and quick-replacement workflows, this cylinder supports straightforward integration with existing control architectures and modular automation components. The combination of rigidity and lightweight construction helps maintain tight tolerances during long production runs, while corrosion-aware environments benefit from aluminium’s favourable thermal management. For OEMs building modular lines, QM/8125/24 enables faster line setups, lower maintenance overhead, and a clear path to scalable automation. Industry-specific context: a reliable, easy-to-install cylinder reduces commissioning time in automotive, packaging, and material handling applications, translating into measurable uptime gains and lower total cost of ownership.

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FAQs

Yes. QM/8125/24 is designed with rear hinge mounting and a 125 mm bore, aligning with common automation mounting schemes. When selecting, verify the bore match, mounting hole spacing, and available stroke options to ensure seamless integration with existing actuators and control arms. This approach minimizes alignment issues and reduces setup time on production lines.
The cylinder features a 125 mm bore and an aluminium body. The 125 mm bore provides ample piston area for reliable actuation across medium-to-heavy duty tasks, while the aluminium body keeps weight low for easier installation and improved thermal management, contributing to reduced inertia on moving machinery.
This model is well-suited for automation and control systems in packaging, material handling, automotive assembly, and general factory automation. The combination of rear hinge mounting, lightweight aluminium construction, and a substantial 125 mm bore makes it appropriate for applications requiring reliable actuation, straightforward installation, and easier line changeovers in space-constrained environments.
In practice, customers look for CE conformity and robust IP ratings for industrial equipment, and Norgren’s product families commonly align with these standards. For safety-critical lines, consider SIL-ready variants within the Norgren portfolio. Always confirm the specific certification scope with the supplier or distributor for your region and application requirements.
The aluminium body reduces weight, easing mounting and reducing wear on supporting hardware, while rear hinge mounting minimizes alignment drift during operation. These features shorten installation and changeover times, improve line uptime, and lower maintenance labor costs. Over multiple production cycles, this translates to faster ROI through reduced downtime, predictable performance, and easier replacement in modular automation environments.