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Teledyne Imaging Begins a New Era in Large Area CMOS Imaging

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Teledyne Imaging has unveiled LACera™, a groundbreaking CMOS technology aimed at enhancing scientific imaging capabilities. This innovation, developed by Teledyne, boasts over 90% quantum efficiency, low noise architecture, and 18-bit readout, features essential for applications in life and physical sciences, including genomics and astronomical imaging. LACera will be integrated into next-gen CMOS cameras set to launch later this year, positioning Teledyne to meet the demands of research and OEM customers. For more details, explore www.LargeAreaCMOS.com.

Positive
  • Introduction of LACera™ CMOS technology that enhances imaging capabilities.
  • Achieves greater than 90% quantum efficiency and low noise architecture.
  • Technological advancements support diverse applications in scientific research.
Negative
  • None.

WATERLOO, Ontario, Feb. 09, 2021 (GLOBE NEWSWIRE) -- Teledyne Imaging, part of Teledyne Technologies [NYSE: TDY], is proud to introduce LACera™, a significant step forward in CMOS capabilities for advanced imaging which will enable the next generation of scientific discovery. Exclusively developed by Teledyne Imaging, LACera advanced imaging technology draws on Teledyne’s decades of expertise in CMOS sensor and camera development.

Scientific imaging, spanning x-ray to near infrared (NIR) regions, is critical to emerging applications in life and physical sciences. Applications as diverse as next generation genomics, astronomical photometry, ultra-high-resolution x-ray and electron imaging require CMOS sensors and cameras with low light sensitivity and speed. LACera CMOS technology delivers greater than 90% quantum efficiency and proprietary low noise architecture with up to 18-bit readout – a combination of performance not previously available in wafer scale sensors.

LACera technology will be exclusively featured in next generation CMOS cameras to be announced later this year and includes x-ray, EUV and VIS-NIR versions. With vast CMOS sensor and camera design capabilities, Teledyne is ready to serve the next generation of research and OEM customers. Visit www.LargeAreaCMOS.com for additional information on LACera CMOS technology.

About Teledyne Imaging

Teledyne Imaging is a group of leading-edge companies aligned under the Teledyne Technologies umbrella. Teledyne Imaging forms an unrivalled collective of expertise across the spectrum with decades of experience. Individually, each company offers best-in-class solutions. Together, they combine and leverage each other's strengths to provide the deepest, widest imaging and related technology portfolio in the world. From aerospace through industrial inspection, scientific research, spectroscopy, radiography and radiotherapy, geospatial surveying, and advanced MEMS and semiconductor solutions, Teledyne Imaging offers world-wide customer support and the technical expertise to handle the toughest tasks. Their tools, technologies, and vision solutions are built to deliver to their customers a unique and competitive advantage.

All trademarks are registered by their respective companies.
Teledyne Imaging reserves the right to make changes at any time without notice.

Media Contact: 
Geralyn Miller
Senior Manager, Global Media Relations 
Tel: +1-519-886-6001 ext. 2187
Email: geralyn.miller@teledyne.com


FAQ

What is LACera™ technology introduced by Teledyne Imaging?

LACera™ is a new CMOS technology that enhances scientific imaging capabilities with over 90% quantum efficiency and low noise architecture.

How does LACera™ support scientific applications?

LACera™ technology is designed for advanced imaging applications in genomics, astronomical photometry, and ultra-high-resolution x-ray imaging.

When will the next generation CMOS cameras featuring LACera™ be announced?

Next generation CMOS cameras incorporating LACera™ technology will be announced later this year.

What are the performance features of LACera™ CMOS technology?

LACera™ boasts over 90% quantum efficiency, up to 18-bit readout, and proprietary low noise architecture.

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