New Xenics Cameras

12. April 2023 | Machine Vision

Compact, industrial thermal imaging core

The Dione 1024 OEM Series is based on a state-of-the-art detector with 1024×768 pixels and 12 μm pixel pitch. The NETD is less than 40 mK (available upon request) or 50 mK. The maximum frame rate is 80 Hz. It utilizes Xenics image enhancement for advanced image processing while keeping power consumption low.

The cores are optimized for low SWaP (Size, Weight and Power). The overall size of the OEM core is 35x35x21.5 mm3 and the weight is 25 gr.

All Dione 1024 versions have the same SAMTEC ST5 connector and are GenICam compliant.

The compact Dione 1024 OEM series find application in safety & security, transportation and process monitoring.

Benefits and Features:

  • Ultra-compact size, low weight and power (SWaP)
  • 1024×768 microbolometer detector with 12 μm pixel pitch
  • Frame rates up to 80 Hz
  • Detector NETD is less than 40 mK (available upon request) or 50 mK
  • Uncooled and shutterless

Ultra-compact thermal imaging core

The Dione 1024 CAM series is based upon the Dione 1024 OEM thermal imaging core with 1024×768 pixels and 12 μm pixel pitch. The NETD is less than 40 mK (available upon request) or 50 mK. The maximum frame rate is 80 Hz.

Dione 1024 CAM is a LWIR uncooled thermal imaging SWaP module with housing supporting M34/M45 lens (optional).

Dione 1024 CAM series benefit from Xenics image enhancement for advanced image processing while keeping power consumption low. Moreover, GenICam compliance and the availability of multiple lenses (optional) provides a high level of tunability for optimal integration into many systems.

The compact Dione 1024 CAM series find applications in safety and security, transportation and industrial process monitoring.

Benefits and Features

  • Ultra-compact size, low weight and power (SWaP)
  • 1024×768 microbolometer detector with 12 μm pixel pitch
  • Frame rates up to 80 Hz
  • Detector NETD is less than 40 mK (available upon request) or 50 mK
  • Uncooled and shutterless