Our Scattering Instruments:
- Synopsys TIS Pro
Synopsys TIS Pro is an optical scattering instrument for efficient measurements of reflectance, transmittance and absorption. This fully automated device features an integrated sphere and a spectral detector assembled in a housing that controls stray light to ensure fast, accurate measurement results.
Synopsys TIS Pro determines the optical properties of surfaces and materials and provides measurements over the entire visible spectrum at various angles of incidence.
- Synopsys Mini-Diff V2
Synopsys Mini-Diff V2 is a compact, portable solution for optical scattering characterization. You can measure the BRDF and BTDF of any kind of material and object. Synopsys Mini-Diff V2 accurately captures measured surface characteristics, including roughness, defects, coatings, and paint.
Synopsys Mini-Diff V2 is delivered with its own suitcase, which includes calibration standards, software, and cables.
- Synopsys Mini-Diff VPro
Synopsys Mini-Diff VPro is a camera-based 3D hemispherical scattering measurement solution. Like the Synopsys Mini-Diff V2, the Synopsys Mini-Diff VPro provides BRDF, BTDF, and TIS measurements. It delivers color, reflectance, and transmittance data.
The Synopsys Mini-Diff VPro is integrated in a single box, which controls stray light and temperature deviation during measurements, and provides a high level of stability and precision. The instrument offers a choice of incident angle on the sample from 0 ° to 60°, motorized and controlled from the Synopsys Mini-Diff software.
- Synopsys REFLET 180S
The Synopsys REFLET 180S optical bench is easy to use for spot inspection or quick analysis. Synopsys REFLET 180S is especially suited for backward and forward light scatter characterization for all types of materials and objects. It allows you to measure the light distribution contained in the radiation lobe of these materials in photometric and colorimetric terms. Moreover, the system measures BRDF and BTDF, which perfectly represents the way any surface scatters incoming light in 3D space.