ADVACAM IS WORLD-LEADING INNOVATOR IN IMAGING AND PARTICLE TRACKING TECHNOLOGIES
We design and produce cameras for material analysis, non-destructive testing, color radiography, or radiation safety. It senses every single particle of radiation of almost any kind, including X-rays, gamma, electrons, ions, and even neutrons. Based on CERN technology, our cameras revolutionize a range of industries, from space to medicine. We provide the ability to image the unseen. More about technology ›


ADVACAM
ADVACAM's cameras are used in various sectors for diverse applications. For instance,
measuring radiation conditions on the International Space Station (ISS), analyzing minerals
in the mining industry, non-destructive testing in aviation, non-invasive medical imaging,
and even for art inspection.


MiniPIX series
Miniaturized and low power radiation cameras. The compact size allows the camera to be inserted into pipes or confined spaces and take advantage of size and also integration potential.






WidePIX series
Industrial imaging cameras for NDT applications. Large detection area is built for high-resolution scanning applications or "color" X-ray imaging.
AdvaPIX series
Advanced camera with ultra-fast sparse data readout to acquire up to 40 million pixel hits per second. Optimal for X-ray imaging of dynamic processes, spectral X-ray imaging or ion detection.
Custom products
We're ready to adapt our camera technology to match your unique application requirements. Our R&D team is able to integrate our detectors into your existing device or even engineer a tailor-made OEM product.
ADVACAM technology is applied in various industries:
Implemented on the International Space Station, NASA Artemis program, the Gateway Lunar Station or numerous satellites, our single particle detectors are revolutionizing space weather monitoring and radiation protection. Advacam's detectors ensure safer and more efficient missions. Because of their compact size and low-power consumption, these detectors excel in particle identification, energy measurement, and even determining the direction from which particles originate.
Experience the power of our advanced cameras, delivering unmatched sensitivity, spatial resolution, and contrast. Our single-photon-counting cameras quickly uncover hidden details in various materials, from light composites to thick welded parts. The technology surpresses scattered radiation, capturing high quality images in record time. The capabilities of our photon-counting X-ray imaging unveil internal material structures and spot defects like porosity, fiber orientation, micro-cracks, and delaminations with unparalleled precision. Elevate your NDT with our industry-leading solutions, setting new standards in defect detection.
Do you need to determine the material composition of your sample? Minerals, alloys, polymers, electronics, batteries, or pigments? Our cameras are based on cutting-edge single X-ray photon counting sensors, and each detected photon is processed individually. This approach also allows measuring the wavelength of photons. It brings unprecedented image quality and new possibilities, such as material-sensitive X-ray imaging. Moreover, our detectors enable fast and compact X-Ray Diffraction (XRD) and Crystallography solutions. XRD sample analysis is performed up to an order of magnitude faster than conventional systems. Spectral sensitivity provides a unique ability to inspect the sample surface and its interior (Energy dispersive XRD).
Cancer research, bio-mechanics, and drug testing are just a few examples of X-ray imaging contributing to biological and medical research. New photon-counting detectors represent a severe advancement to these applications compared to previously used methods. The energy sensitivity of modern cameras opens better possibilities for identifying individual types of tissue and contrast agents. That has significant consequences in various industries, for example in cancer research, where the tumor tissue can be better distinguished from the healthy one.
Bringing particle physics to life in the classroom. Advacam’s MiniPIX EDU device and Educational Kit are transforming the way particle physics is taught and demonstrated in educational settings. These innovative tools provide students with hands-on experience in observing and analyzing particle interactions, making complex concepts more accessible and engaging. With the MiniPIX EDU’s user-friendly interface and portable design, teachers can easily incorporate real-world demonstrations into their lessons.
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