Optical Surface Roughness Resolution | Atometrics High-Precision 3D Surface Measurement
2025-10-09

Optical Surface Roughness Resolution

The optical surface roughness resolution refers to the precision and level of detail achievable when measuring surface texture and roughness using non-contact optical methods. Atometrics develops high-precision optical systems capable of capturing fine surface features and micro-roughness with nanometer-level resolution.

High-Resolution Non-Contact Measurement

Atometrics optical surface roughness systems utilize white light interferometry, focus variation microscopy, and optical profilometry to obtain detailed 3D surface topography. Non-contact measurement ensures that delicate surfaces remain undamaged while providing reproducible and reliable high-resolution data.

Applications

High-resolution optical surface roughness measurement is widely applied in:

  • Semiconductor wafers and MEMS device surface evaluation
  • Optical lens, thin film, and coating roughness analysis
  • Precision machined components and microfabrication inspection
  • Automotive and aerospace component quality control
  • Material science and R&D laboratories

Advantages of Atometrics Optical Surface Roughness Resolution

  • Nanometer-level resolution for detailed 3D surface roughness analysis
  • Non-contact measurement to protect delicate or soft surfaces
  • Automated scanning and advanced roughness analysis
  • Supports multiple roughness parameters including Ra, Rq, Rz, RMS, Sa, Sq
  • User-friendly software for visualization, reporting, and data management

Why Choose Atometrics

Atometrics specializes in high-precision measuring instruments, integrating advanced optics, imaging sensors, and intelligent software. Our optical surface roughness resolution capabilities provide accurate, reliable, and repeatable measurements for industrial, research, and precision manufacturing applications.

Atometrics – High-Resolution Optical Surface Roughness Measurement for Advanced Surface Metrology and Quality Control.