Phasics S.A
5 products found

Phasics S.A products

QPI Cameras

Phasics - sCMOS based Quantitative Phase Imaging Camera

Designed for life science and material inspection quantitative phase imaging applications, the SID4 sC8 brings fast, accurate, and truly quantitative phase measurement in a compact, plug-and-play solution. Biologists will benefit from label-free cell imaging, high sensitivity, and automatic segmentation, while material scientists will have access to accurate refractive index measurement, laser damage analysis, and surface characterization.

Phasics - Plug & Play Camera for Quantitative Phase Imaging

The SID4 Bio is a plug & play camera for quantitative phase imaging. It works with any optical microscope and enables measuring valuable numerical parameters on living cells and many more transparent samples.

Measurement Stations

Phasics - Modular Solution

Kalas is a modular solution that integrates all the necessary components to characterize beams of up to 127mm (5’’) with high accuracy (< 15 nm RMS). In a single-shot, Kalas measures wavefront and intensity, and calculates divergence, waist dimensions, M², and all the revelant information to fully qualify your beam. In addition, all the modules are standalone, including the SID4 wavefront sensor.

Phasics - Fully Modular Metrology Solution from UV to IR

Kaleo Kit is a modular system for optics qualification. It combines a broad range of compatible modules, that let you create a cost-effective, compact, and easy-to-use system that can adapt to a wide range of measurement configurations and ensure the quality of your sample at all development stages. Access all the characteristics of your sample in a single shot acquisition: TWE, RWE, wavefront aberrations, MTF, PSF, and a lot more!

Wavefront Sensors

Phasics - High Resolution Wavefront Sensor

The SID4 HR brings ultra-high phase sampling (416 x 360) and high dynamic range (500 µm PV) to the most demanding wavefront measurement applications. Its large aperture and extreme wavefront sensitivity makes it perfectly suited to direct measurement of large diverging beams without relay optics.