Beam steering
Two-axis angular adjustment for directing a beam between components on the table.

Kinematic Mirror Mount · SUS series Stainless Steel Kinematic Mirror Mount
SUS series Stainless Steel Kinematic Mirror Mount
High-Quality Materials: Adopting SUS304 stainless steel effectively reduces the thermal expansion coefficient and internal stress; High stability: Adopting a superior line-line-line structure to replace the traditional point-line-surface structure, this mount
Datasheet (PDF) ↗CAD Model (RAR) ↗Catalog context
SUS25.4 is listed as SUS series Stainless Steel Kinematic Mirror Mount in the SUS series Stainless Steel Kinematic Mirror Mount family. The local catalog record provides these first selection fields: Optic Size (mm): φ25/ φ25.4; Optics Thickness (mm): 3~6; Adjustment Angle Range (°): ±3.
| Optic Size (mm) | φ25/ φ25.4 |
|---|---|
| Optics Thickness (mm) | 3~6 |
| Adjustment Angle Range (°) | ±3 |
| Front Plate Translation (mm) | MAX6 |
| Clear Aperture (mm) | φ24 |
| Optic Center Height (mm) | 25 |
| Resolution: angular adjustment per revolution(°) | ≈0.33 |
| Main Body Material and Treatment | Stainless steel with sandblasting passivation |
| Thickness of The Fixed Plate(mm) | 16 |
| Number of Pulling Spring | 4 |
| Locking Mechanics | Yes, dual locking mechanisms M6, φ8 counter bore |
| Mounting Hole | M6,φ8 sink hole |
| Net Weight(g) | 230 |
Application context
Application guidance is derived from the product family and tied to the model-specific selection fields above.
Two-axis angular adjustment for directing a beam between components on the table.
Hold pointing where a few microradians of drift is visible directly in the measurement.
Kinematic seating returns an optic to the same orientation after it has been removed.
System integration
Use these checks to connect SUS25.4 to the surrounding optical, mechanical and control system. Every value shown is taken from this model's own specification record.
Technical FAQ
Optic Size (mm): φ25/ φ25.4 · Optics Thickness (mm): 3~6. Check diameter and thickness together. A holder that accepts the diameter can still fail to retain an optic that is thinner than its minimum, and clear aperture is normally smaller than the optic the mount holds.
Mounting Hole: M6,φ8 sink hole. Match the thread standard and hole pitch before ordering. Metric and imperial hardware interchange only through an adapter, and a thread that is nominally similar is not necessarily the same pitch.
Adjustment Angle Range (°): ±3 · Resolution: angular adjustment per revolution(°): ≈0.33. Adjuster pitch sets the sensitivity you can actually work at. Confirm whether the stated figure is a total range or a per-revolution increment, and whether the mechanism is locked after adjustment.
Main Body Material and Treatment: Stainless steel with sandblasting passivation. Aluminium moves about 23 ppm per kelvin and stainless about 16. In a path where thermal drift is already budgeted, the material of the mount belongs in that budget rather than in the appearance of the part.
Net Weight(g): 230. Use the stated geometry and mass to fix beam height, clearance and the load carried by whatever this part is bolted to. These are the numbers that decide whether adjacent components physically collide.
Model selection
Compare SUS25.4 with the closest available models in the SUS series Stainless Steel Kinematic Mirror Mount family. Confirm option-dependent values on the final configuration before ordering.
| Selection parameter | SUS25.4 (current) | SUS20 | SUS38.1 |
|---|---|---|---|
| Optic accepted | φ25/ φ25.4 | φ20 | φ38.1 |
| Adjustment | ±3 | ±3 | ±3 |
| Mounting interface | M6,φ8 sink hole | M6,φ8 sink hole | M6,φ8 sink hole |
| Material | Stainless steel with sandblasting passivation | Stainless steel with sandblasting passivation | Stainless steel with sandblasting passivation |
Before you specify
Engineering context for choosing this class of component, with the tradeoffs worked through on real specifications.
Opto-mechanicsVibration, thermal drift and mechanical integration are one problem. Budget the motion at the sample, then specify the table, the isolation, the mounts and the beam height that budget asks for.
Open guide
Optical microscopyDesign the trapping beam, objective, mechanics, imaging, QPD detection, calibration, and safety workflow as one instrument.
Open guide