Camozzi series 23 mini cylinders with end position damping
Mini pneumatic cylinders – series 23, 14 & QN from Camozzi and series SCP & MSD from CKD
The new series 23 pneumatic cylinders are based on the innovative concept of “self-adjusting end position damping” and comply with ISO 6432. Thanks to a patented system, the cylinder automatically regulates the damping in the end position so that optimum throttling is always achieved.
Throughout the damping phase, the cylinder moves smoothly without any jerky motion. This reduces vibrations and noise while also ensuring greater reliability and consistently high performance over the long term.
As no manual settings are required, installation times can be shortened and tampering can be prevented.
The cylinders are also suitable for numerous industrial applications, especially in cases where operating conditions change over time, for example due to the wear of mechanical components or contamination of machine parts.
Camozzi series 14 mini pneumatic cylinders
Series 14 mini compact cylinders are suitable for installation in very tight spaces.
Camozzi series QN mini pneumatic cylinders
For use in confined installation spaces
The defining features of the series QN short stroke cylinders are their compactness and robust design. They are particularly suitable for clamping, locking or other handling tasks.
CKD series MDC2 mini pneumatic cylinders
Series MDC2 mini compact cylinders are suitable for installation in very tight spaces. The small cylinders can be mounted directly on 4 sides.
Ideal for sorting applications involving particularly tight spaces.
CKD series SCP mini round cylinder
Needle cylinder. Thanks to various options, the round cylinder is suitable for a wide range of applications.
CKD series MSD mini pneumatic cylinders
Guidance to enable higher torque take-up
Series MDC2 compact cylinders are suitable for installation in very tight spaces. The small cylinders can be mounted directly on 3 sides.
Ideal for handling applications, such as on conveyor belts in particularly tight spaces.