Non-Magnetic Titanium Vacuum Mirror Holder for 25.4mm Diameter Mirrors
VMHG-25.4-NMT
These products offer both non-magnetic and vacuum-compatible performance.
They are designed using non-magnetic materials that minimize the effects of magnetic fields and feature a low outgassing design suitable for use in vacuum environments. Ideal for use in magnetic-sensitive experiments and inside vacuum chambers.
- NM Series: Products made with ultra-low magnetic stainless steel (SUS316L), ceramic balls, and titanium components. These materials have undergone our proprietary demagnetization process.
- NMT Series: High-end models using titanium as the primary material, offering full non-magnetic properties and reduced weight.
- Vacuum-compatible designs with vent holes and groove machining help suppress outgassing. These products are engineered with vacuum use in mind, from material selection to cleaning and packaging.
- Moving parts are lubricated with BARRIERTA SUPER IS/V grease, known for its low outgassing performance.
- No adhesives are used in these products.
- For some models (excluding VMHG-12.7-NM(T)), remote-control-compatible piezo drive motors from the VPDM-NM series are also available as non-magnetic vacuum-compatible options. Please contact our sales department for details.
| Name | Non-Magnetic Titanium Vacuum Mirror Holder for 25.4mm Diameter Mirrors |
|---|---|
| Weight | 0.1200kgs |
| Guide |
|
| Attention |
|
| Angle Range | ±3° |
| Optic Diameter | φ25.4mm |
| Primary material | Titanium |
| Finish | None |
| Height optical axis | 25.4 mm |
| Compatible Optics Diameter | φ25.4 mm, φ25 mm |
| Compatible Optics Thickness | 3~10 mm |
| Clear aperture | φ22.4 mm |
| Number of Adjustment Axes | 2 |
| Adjustment Screw | M6×0.25 mm |
| Adjustment Range ( Tilt ) | ±3° |
| Adjustment Range ( Rotation ) | ±3° |
| Resolution ( Tilt ) | About 0.39°/rotation |
| Resolution ( Rotation ) | About 0.39°/rotation |
| Magnetic Field (Reference) | 0.1 mG |
Out of stock
SKU
VMHG-25.4-NMT
€3,281.12
These products offer both non-magnetic and vacuum-compatible performance.
They are designed using non-magnetic materials that minimize the effects of magnetic fields and feature a low outgassing design suitable for use in vacuum environments. Ideal for use in magnetic-sensitive experiments and inside vacuum chambers.