Replicate Any Lighting Conditions in Your Lab with high Accuracy and Precision!

News

October 21, 2025

The Multispectral Lighting System (MLS), developed by DXOMARK, is the most advanced solution for creating repeatable and comprehensive lighting conditions in a controlled environment, with the highest level of spectral accuracy available on the market.

Key Advantages:

  • Designed to illuminate test charts up to 2 meters wide
  • Over 90% uniformity with an accurate spectral response
  • From 0.1 lux to 10,000 lux, covering all lighting conditions from candlelight to bright daylight
  • Constant DC-driven LEDs, no PWM artifacts

Exceptional spectral accuracy

The MLS achieves incredible alignment between target and measured spectra across multiple lighting scenarios (29 Pre-Calibrated Illuminants (such as CIE A, H, D50-75; LED 2700K, 4000K; BLACKBODY 5600, 6600K,…) with high accuracy CRI>95.

Examples of 2 simulated spectra with the MLS

Seamless Control & Automation

The MLS integrates fully with the Analyzer Software Suite, enabling closed-loop computer control and automation:

  • Server: Drives instruments and manages all connections
  • Python API: Easily automate lab operations
  • Web-Based GUI: Intuitive visual control of every function
Analyzer Graphical User-Interface: Lab Manager

Elevate your lab’s lighting precision and consistency with the DXOMARK MLS, the standard for reliable, repeatable lighting environments.

Similar articles

News

December 4, 2025
We are pleased to announce that DXOMARK will be attending SPIE Photonics West 2026, taking place from January 20 to 22 in San Francisco, California. This major event brings together the global communi...

News

November 20, 2025
We recently welcomed Master MVA students to DXOMARK for a hands-on introduction to image quality science and testing. During their visit, students attended courses led by our experts Claudio Greco, Be...

News

November 19, 2025
Image stabilization is key to capturing sharp photos and smooth videos, especially in low light or handheld conditions. Modern devices rely on several stabilization technologies: Each system has its s...