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Optical Components / Optical Mirrors

Build-to-print precision optics

Custom Optical Mirrors

Optical mirrors redirect, fold or split a beam without transmitting it through the full substrate. Mirror design starts with wavelength, angle of incidence, polarization, reflectivity, surface figure, environmental durability and laser-energy conditions.

Optical Mirrors product family
Illustrative product-family image; final geometry follows the approved drawing.

Product forms

Common configurations

  • Laser-line dielectric mirrors
  • Broadband dielectric mirrors
  • Protected silver, aluminum and gold mirrors
  • Partial reflectors and beam-splitting mirrors

Materials & wavelength

Substrate routes

Fused silica, low-expansion glass, optical glass, silicon and other project-selected substrates.

UV, visible, NIR and infrared reflection bands, including narrow laser-line and broadband designs.

End use

Typical applications

  • Laser cavities and beam steering
  • Imaging-system folding mirrors
  • Spectroscopy and analytical instruments
  • Broadband and infrared optical systems

Engineering discussion framework

Reference manufacturing and RFQ targets

These values show the type of requirement that can be evaluated. They are not a blanket capability guarantee. The signed quotation, approved drawing, sample and inspection plan control the final product.

Parameter Reference target / quotation note
Diameter / envelope Reference RFQ range: approximately 0.5–500 mm, subject to substrate, thickness and test aperture.
Clear aperture Central 90% is a common target.
Surface flatness Targets to λ/10 at 632.8 nm can be evaluated; tighter requirements need aperture and mounting review.
Surface quality 10-5 scratch-dig target can be evaluated where scattering control is critical.
Parallelism Below 3 arcmin may be specified when the rear surface is functionally relevant.
Reflective coating High reflector, partial reflector, broadband dielectric or protected metallic coating by band, AOI and polarization.

Faster technical review

What to include in your RFQ

  1. Wavelength band and angle of incidence
  2. Required Rs/Rp or average reflectivity
  3. Polarization and laser pulse/CW conditions
  4. Substrate, diameter, thickness and flatness
  5. Environment, cleaning and durability requirement
Final acceptance: Confirm all numerical values, material grade, coating curve, metrology, sampling plan and documentation on the purchase specification.
Optical Mirrors inquiriessales@tuolango.com

Attach drawings or spectra where possible. Factory visits and supplier audits are available by appointment for qualified projects after the route is confirmed.

Start the technical review

Buyer questions

Optical Mirrors FAQ

When should I use a dielectric mirror instead of a metallic mirror?

Dielectric designs can deliver high reflectivity in a defined band and angle range. Metallic mirrors are often selected for broader spectral coverage. Polarization, durability and cost also matter.

Why are angle of incidence and polarization required?

A coating spectrum shifts with incidence angle and can differ for s- and p-polarization. Both inputs are necessary for a meaningful coating design.

Can laser-damage requirements be included?

Yes. Provide wavelength, pulse duration, repetition rate, beam diameter, fluence or CW power density, and the requested test standard.

Ready to quote optical mirrors?

Send the drawing, material, wavelength, tolerances, coating, quantity and target date.

Email sales@tuolango.com