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Advanced Uncooled Thermal Integration for Military Systems

Department of Defense (DoD) > U.S. Army > AMC ACCACC-CTRSACC-APG -APG
est. $117K – $1.1M

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Quick Brief

The U.S. Army C5ISR Center is conducting market research for integrating next-generation uncooled thermal sensors into systems, focusing on low SWaP-C optimization and TRL 6+ demonstration.

Generated 57d ago

Scope & Requirements

Integrate next-generation uncooled thermal sensors into systems, focusing on low SWaP-C optimization and demonstrating TRL 6+ in a relevant environment.

Contract Details

Estimated Value
est. $117K – $1.1M
Similar contracts award $117K$1.1M (median $350K, 72,549 awards)Within typical range
NAICS Codes

Agency & Contact

Contracting Organization

Agency
DEPT OF DEFENSE
Sub-Agency
DEPT OF THE ARMY
Office
AMC ACCACC-CTRSACC-APG -APG

Point of Contact

John A. Smith
Contracting Officer
(202) 555-0100

Key Dates

Published2mo ago
Mar 26, 2026
Last Updated2mo ago
Mar 26, 2026
Response Due2mo ago
Apr 10, 2026
Response Date1mo ago
Apr 26, 202611:59 AM EDT

Description

The United States Army Combat Capabilities Development Command (DEVCOM), Command, Control, Computers, Communications, Cyber, Intelligence, Surveillance and Reconnaissance (C5ISR) Center is performing market research to inform future system level

requirements and/or prototype development/build efforts which integrate next generation uncooled thermal sensors. The desired systems shall incorporate Government Furnished Equipment (GFE) thermal sensors. These thermal sensors will be compliant with a TBD Interface Control Document and will be lens-less. The system integrators will need to design an appropriate lens for the application that will interface with the sensors to demonstrate the advanced capability and prove out Technology Readiness Level (TRL) 6+ by being assessed in a relevant environment. Responses including complete systems and/or individual capabilities/expertise listed below are welcome. Proposed systems should focus on showcasing these advanced sensors in systems that are optimized for low Size, Weight, and Power and Cost (SWaP-C). Christina Sanchez to this opportunity.

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