When standard tools reach their limits, Quartus extends what’s possible.
We design and build custom metrology systems that measure the seemingly unmeasurable — integrating proven commercial components with tailored hardware and software to meet unique accuracy, throughput, or environmental requirements. From optical metrology systems to machine vision that offers unmatched confidence in camera calibration, our solutions bring accuracy where standard instrumentation cannot.
Optical Inspection
In situ wavefront and tilt measurement systems
Camera Calibration
Traceable intrinsic and extrinsic
Quality Assurance
Quality inspection and measurements for advanced manufacturing
Automated test stations for advanced manufacturing
Automated Test Stations
Process Monitoring
Visual inspection and phenomenology measurements
Detection Algorithms
Detection Algorithms for signal processing
Optical Inspection
In situ wavefront and tilt measurement systems
Quality Assurance
Quality inspection and measurements for advanced manufacturing
Process Monitoring
Visual inspection and phenomenology measurements
Camera Calibration
Traceable intrinsic and extrinsic
Automated test stations for advanced manufacturing
Automated Test Stations
Detection Algorithms
Detection Algorithms for signal processing

As products and materials evolve, measurement demands are outpacing standard capability.
Off-the-shelf tools can no longer keep up with the complexity of modern materials, advanced manufacturing processes, or the increasing need for continuous data traceability. What’s more, engineers are losing flexibility and control with pre-written software packages. Applications are now requiring micron-level precision, multi-modal sensing, and real-time validation.
- Tightening tolerances, complex geometries, and new materials exceed what conventional manufacturing metrology tools can capture.
- Existing systems often lack the accuracy or flexibility needed for in-process validation, control, and traceability.
- Pressure mounts to prove quality and compliance while maintaining speed and yield.
Quartus understands that innovation depends on confidence in measurement and that capability gaps can stall progress when precision is non-negotiable.
Quartus creates metrology systems that are practical, scalable, and precise by integrating commercial technology with custom development.
Quartus engineers advanced metrology solutions that combine proven hardware, custom instrumentation, and integrated software control. Our multidisciplinary teams, comprised of mechanical, optical, electrical, and software engineers can architect, prototype, validate, and deliver measurement systems that meet the exact needs of each process or product.
- Design and build of custom optical metrology systems and tools advanced manufacturing applications
- Development of process-specific dimensional analysis, surface analysis, and calibration systems
- Integration of metrology into manufacturing cells, automation lines, or cleanroom environments
- Multi-modal sensing combining optical, probe, and environmental inputs for complete system characterization
- Real-time, in-situ measurement and control for actionable, traceable data
Solutions that are validated, traceable, and built for sustained reliability in production environments.
For over 20 years Quartus has delivered custom metrology systems for global leaders in semiconductors, aerospace, advanced manufacturing, and medical devices. Recognized for solving complex measurement and calibration challenges where precision matters most, Quartus combines rigorous engineering with practical implementation, delivering tools that perform as designed.

From prototype to production, Quartus helps manufacturers and innovators maintain precision at every stage.
Partner with Quartus to design and build the optical metrology system or precision measurement solution your process demands.
Achieve tighter tolerances and higher process yields through purpose-built measurement tools
Validate quality and compliance with traceable, documented data
Shorten deployment timelines with solutions engineered for manufacturability and integration
Reduce uncertainty and gain long-term control over critical parameters
