High Reflective Mirror

① Dimension D=φ3-φ25mm (tolerance ±0.1),H=3-8mm D:H > 4:1 (tolerance ±0.5)
D=φ26-φ100mm (tolerance ±0.1),H=6-25mm D:H > 5:1 (tolerance ±0.5)
② Coating area size: conventional size D12.7, coating area size 7.5; D25 coating area size 10, other coating area size can be customized
③ Surface accuracy: λ/ 10@632.8nm
④ Parallel error: <10"
⑤ Roughness: Ra0.12nm (Zygo profilometer) test area 173*173um full frequency measurement
⑥Coating requirement: wavelength 420nm-3000nm, reflection ≥99.999%, loss 2-3ppm, transmission 3-5ppm
Back anti-reflection;
⑦ Material: ULE, fused silica, single crystal silicon, sapphire;
Note: The specific indicators are not limited to the above scope, and can be customized according to user's needs.
Application:Laser gyro, high power laser, super stable laser, high precision optical detection
Product Description

High Reflective Mirrors for Precision Industrial Automation & LiDAR Systems

Whether you're integrating LiDAR systems or enhancing robotic vision, our High Reflective Mirror technology delivers unmatched performance. Designed for industrial automation, aerospace, and semiconductor applications, these mirrors combine ultra-low surface roughness (<0.5nm) with industry-leading reflectivity across 420nm–3000nm wavelengths. With customizable coatings and substrates, they ensure minimal light loss (2–3ppm) even in extreme environments.

Why Our High Reflective Mirror Excel

  • Unmatched Precision: Surface accuracy of λ/10 @632.8nm and parallelism <10" for critical beam alignment, ensuring zero signal distortion in LIDAR systems and quantum interferometers—this level of precision eliminates misalignment errors that could compromise data integrity in aerospace navigation or high-energy physics experiments.​
  • Material Versatility: Choose from ULE, fused silica, sapphire, or single-crystal silicon substrates, each tailored to specific needs: ULE for thermal stability in desert solar farms, sapphire for ruggedness in flood-prone smart highways, ensuring optimal performance across diverse operating environments.​
  • Extreme Durability: Coatings resist humidity, thermal shifts (-50°C to 300°C), and laser damage (tested up to 10GW/cm²), making them ideal for tropical industrial lasers and arctic research equipment—their resilience prevents degradation, maintaining efficiency even in the harshest conditions where standard optics fail.​
  • Rapid Customization: Modify coating areas (from 7.5mm to 100mm+), shapes, and AR-backed designs in 2–3 weeks, accelerating deployment in time-sensitive projects like emergency satellite repairs or automotive laser system upgrades without sacrificing precision.​
  • Certified Quality: MIL-SPEC, ISO 9001, and IATF 16949 compliance for automotive/aerospace integration, ensuring seamless adoption in safety-critical applications—these certifications validate consistent performance, aligning with strict industry standards for reliability and safety.

Parameters

Specification Value
Dimension D=φ3-φ25mm (±0.1), H=3-8mm, D:H > 4:1 (±0.5)
D=φ26-φ100mm (±0.1), H=6-25mm, D:H > 5:1 (±0.5)
Coating Area Standard: D12.7 (7.5mm area), D25 (10mm area)
Custom sizes available
Surface Accuracy λ/10 @ 632.8nm
Parallel Error <10"
Roughness Ra0.12nm (Zygo profilometer, 173x173μm area)
Reflectivity ≥99.999% (420nm-3000nm)
Loss 2-3ppm
Transmission 3-5ppm
Materials ULE, fused silica, single crystal silicon, sapphire

Note: Custom specifications available upon request.

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Applications

1. LiDAR & Autonomous Vehicles

Ensure pixel-perfect beam steering with mirrors that maintain 99.9% reflectivity under vibration (tested to 20G).

2. Industrial Robotics

Guide high-power lasers (up to 10kW) for cutting/welding with gold-coated High Reflective Mirror resistant to spatter.

3. Semiconductor Metrology

Minimize light scatter in EUV lithography using Zerodur substrates polished to λ/20 flatness.

4. Medical Imaging Systems

Enhance OCT resolution with broadband dielectric coatings optimized for 800–1300nm ranges.

Customization for Your Needs

  • Size/Shape: Non-round designs (rectangular, elliptical) with edge chamfers.
  • Coatings: Add hydrophobic layers or polarization-preserving stacks.
  • Mounting: Pre-assembled mounts with kinematic or flexure bases.
  • Testing: Request scatter measurements, LIDT reports, or thermal cycling data.

Trusted by Global Innovators

15+ Years of Optical Expertise

Our R&D team holds 20+ patents in anti-laser-damage coatings, while our Class 100 cleanrooms ensure batch-to-batch consistency.

Proven in Critical Environments

  • 10,000+ mirrors deployed in Mars rover spectrometers.
  • 98% client retention rate since 2018.

24/7 Support

Get lifetime technical assistance, including coating degradation simulations.

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FAQ

1. How do your mirrors handle thermal expansion in outdoor LiDAR?

ULE and fused silica substrates have near-zero CTE, maintaining flatness within λ/20 from -40°C to 80°C.

2. Can I get a mirror with both high reflectivity and AR coatings?

Yes! We apply anti-reflective layers on the backside, reducing stray light by 90%.

3. What cleaning method is safe for the coatings?

Use CO₂ snow cleaning—we provide step-by-step guidelines.

4. Do you offer small-batch prototyping?

Absolutely. Order 5–50 units with full engineering support.

5. How long do coatings last in humid environments?

Accelerated aging tests show <0.01% reflectivity loss after 10 years at 85% RH.

Contact Our Engineers Today

Ready to elevate your optical systems with our High Reflective Mirror? These mirrors are engineered with state - of - the - art technology to offer unrivaled reflectivity, significantly enhancing the performance of your setups. Contact our team of experts today at xachaona@163.com

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