High Compatibility with Multiple Cage Systems
Supports 16 mm, 30 mm, and 60 mm coaxial systems, allowing seamless integration with different optical setups and modular assemblies.
Secure and Stable Optics Mounting
Firmly holds Ø12.7 mm, Ø25.4 mm, and Ø50.8 mm optical components using retaining rings, threaded mounts, or nylon-tipped set screws for vibration-free stability.
Quick and Easy Installation
Quick-release options (magnetic, spring-loaded, snap-in, and flexure clamp) enable fast insertion and removal of optics without dismantling the entire cage system.
Precise Optical Alignment
Adjustable versions with X-axis or XY translation and sliding plates help compensate beam offsets and ensure accurate alignment in complex optical systems.
360° Rotational Flexibility
Rotatable mounting plates allow full 360° adjustment of optical assemblies, ideal for polarization control, beam steering, and alignment optimization.
Flexible Positioning Along Rods
Sliding and flexible clamping mechanisms allow smooth movement along cage rods for precise positioning and system tuning.
Wide Mounting Options
Available with SM05, SM1, SM2, RMS threads, and various clear apertures to support lenses, mirrors, filters, beam splitters, and lens tubes.
High Mechanical Strength and Durability
Manufactured from black-anodized 6061-T6 aluminum alloy, providing excellent rigidity, corrosion resistance, and long-term mechanical stability.
Improved Setup Efficiency in Labs and Industry
Modular design reduces setup time, simplifies optical system reconfiguration, and enhances workflow efficiency in research and industrial environments.
Space-Optimized Design
Multiple thickness options (4 mm, 9 mm, 12.5 mm, etc.) allow compact or extended optical layouts based on application requirements.
Versatile Application Support
Suitable for laser systems, beam shaping setups, microscopy, imaging systems, optical experiments, and precision photonics assemblies.
Maintains Optical Alignment During Adjustments
Quick-release and flexure locking designs allow component changes without disturbing existing alignment, ensuring consistent optical performance.












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