CapeSym Introduces New Dual-Mode Radiation Detector Having FOM From 5 to 20
CapeSym's new RadSolver(TM) dual-mode radiation detector offers enhanced neutron/gamma signal separation for the highest FOM on the market. The composite can be optimized for sensitivity, resolution, timing, and neutron type to meet application-specific requirements. Moreover, the RadSolver is available in multiple form factors suitable for hand-held, backpack, portal and other applications.
Natick, Massachusetts, October 20, 2017 (Newswire.com) - CapeSym, Inc. announced today that they are offering new RadSolver(TM) gamma/neutron dual modality product line with ultra-high figure-of-merit(FOM), for high-confidence measurement. The enhanced n,g signal separation provides the highest FOM on the market. The composite can be engineered for sensitivity, resolution, timing, and neutron type to meet application-specific requirements. Moreover, the RadSolver(TM) is compact, and available in multiple form factors suitable f or hand-held, backpack, portal and other applications. It is offered as plug-and-play kit, or as an OEM solution pre-assembled with a PMT or solid state photosensors, with appropriate electronics, for your accelerated development. The cost-effective, fully-integrated gamma detectors are made at their Natick, MA, USA manufacturing facility.
Key features:
"We predict the RadSolver will be a game changer. Not only is it cost-effective, compact, and customizable, but the neutron-gamma PSD is highly separated and will not collapse in rugged environments."
Stacy Swider, Sr. Scientist
•FOM from 5 to 20
•Tailorable thermal or fast neutron sensitivity
•Thermal neutron sensitivity from 3 to 300 cps/nv
•Energy resolution as good as 3% at 662 keV
•Application specific design options
For more information, including a full pdf brochure, please visit their website at www.capesym.com, or email [email protected].
The unit will be demonstrated next week at the IEEE NSS MIC 2017 conference in Atlanta, GA --- October 24-26, 2017.
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Tags: border control, homeland security, military, neutron detection, nuclear safety, radiation detection, radionuclide