Product category:
Cameras and imaging systems
News Release from: Sensors Unlimited
Edited by the Laboratorytalk Editorial
Team on 07 January 2008
Developing next-generation night vision
technology
The US Defense Advanced Projects Agency (Darpa) has selected Goodrich to develop next-generation night vision sensor technology for helmet-mounted and micro vehicle applications
A three-year contract released under Darpa's MicroSensors for Imaging (Misi) programme to Goodrich's ISR Systems division covers engineering and initial prototypes of highly sensitive lightweight imaging cameras based on the company's commercially successful shortwave infrared (SWIR) sensors Work will be performed in Princeton, NJ
This article was originally published on Laboratorytalk on 1 May 2008 at 8.00am (UK)
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In the Misi programme, Goodrich's Sensors Unlimited (SUI) team will develop its indium gallium arsenide-night vision (InGaAs-NV) SWIR sensors into a 640x512pixel resolution camera weighing less than 10grams, intended for hand-launched unmanned aerial vehicles.
In addition, the company will deliver a 1280x1024 pixel head-mounted monocular.
SWIR technology detects reflected light at wavelengths that the human eye cannot see.
It works in wavelength bands between visible and thermal cameras, an area that current night vision technology cannot see.
The extremely small and lightweight size of the Goodrich system is due to the use of advanced materials and circuitry that allow it to run without cooling, unlike other night vision technologies that needs cumbersome cooling systems.
The company's technology is currently used on a diverse array of applications, from non-invasive medical examinations to silicon wafer inspection.
"In this new Misi programme, our unmatched imaging technology will be advanced and coupled with breakthrough packaging for night visionapplications," said Edward Hart, vice president and general manager, Sensors Unlimited.
"We expect this advanced InGaAs NV technology to achieve dramatic reductions in size, weight, power and performance for a new generation of capability for the warfighter.".
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