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Advanced Stand-Off Detection of Concealed Materials (ASDCM)

Active
SOC26BZ04-DV004SBIR / STTR

Contract Overview

Solicitation details, issuing organization, response deadlines, documents, and interested companies for this government contract opportunity.

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USSOCOM is seeking innovative, field-deployable sensor technologies capable of passively detecting, discriminating, and triangulating hidden dangerous materials—such as explosives, advanced weapons, radiological substances, and biological hazards—without physical contact, active emissions, or sampling. The system must operate in a low-probability-of-interception and low-probability-of-detection mode, functioning reliably in GPS-denied, low-light, high-interference, and austere environments across diverse mission types including maritime boardings, over-the-beach reconnaissance, route clearance, counter-air protection, and expeditionary medical diagnostics. Emphasis is placed on non-traditional methodologies that identify threats by their intrinsic material composition rather than emitted signatures, exploring novel approaches such as material resonance or atomic signature recognition to penetrate shielding and barriers. The solution must be miniaturized for use on man-portable or unmanned platforms and engineered for rugged tactical and maritime deployment with built-in support for multi-sensor cueing and triangulation. Proposed concepts must demonstrate technical feasibility through a clear research path toward system miniaturization, environmental ruggedization, and seamless integration into existing SOF operational workflows. The technology must exceed conventional radiation or vapor detection systems and provide real-time threat awareness without compromising stealth or operational security. All proposals are expected to align with the SBA’s Small Business Set-Aside requirements, targeting entities with fewer than 500 employees, and must be submitted before the deadline of July 22, 2026. The initiative encourages inventive sensor modalities that transform how special operations forces identify concealed threats in complex, denied environments, ultimately enhancing force protection and mission success across unconventional and high-risk scenarios.

General Info

Passive, compact sensors to detect hidden threats without emissions in austere, GPS-denied environments for special operations.

Agency

Department of Defense → Special Operations CommandView Agency

NAICS

334511 - Search, Detection, Navigation, Guidance, Aeronautical, and Nautical System and Instrument Manufacturing View NAICS

Place of Performance

Not specified

Set-Aside

SBA

Documents

(0)

No documents available

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Timeline

PhaseSolicitation
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Organization & Contact Information

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AgencyDepartment of Defense → Special Operations Command
ContactsNo contacts available
OfficeUS
Organization / Agency
Department of Defense → Special Operations Command
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Office AddressUS
ContactsNo contact information available

Full Description

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USSOCOM seeks a field-deployable capability to enable detection, discrimination, and triangulation of dangerous or restricted materials without direct sampling, physical breach, or active signal emission. As a part of this feasibility study, the proposers shall address all viable overall system design options with respective specifications to provide SOF elements with real-time awareness of concealed threats, explosives, advanced weapon systems (e.g., Man-portable Air-defense system (MANPADS), optical targeting systems), or radiological materials across mission sets including: • Over-the-beach reconnaissance and interdiction • Maritime boarding operations and cargo search • Route clearance and sniper overwatch detection • Counter-air asset protection through early threat detection • Expeditionary medical diagnostics (e.g., cancer, infection, contamination) • Environmental and infrastructure monitoring for hazardous agents Key capability attributes include: • Passive and non-emitting (non-radiative) operation, Low Probability of Interception/ Low Probability of Detection (LPI/LPD) or off common frequency acceptable. • Detection of materials through shielding, barriers, or enclosures • Miniaturization for man-portable or unmanned system deployment • Ability to support triangulation or multi-sensor cueing • Operability in low-light, GPS-denied, and high-interference environments • Compatibility with austere, tactical, or maritime conditions. This topic specifically invites novel sensor modalities or approaches that extend beyond traditional radiation or vapor detection (e.g., those based on material resonance, atomic signature recognition, or other non-contact methodologies). Solutions that identify the presence of a threat based on what it is made of rather than what it emits are of particular interest. Offerors should propose a research effort to validate the technical feasibility of such an approach, including a clear path toward miniaturization, field ruggedization, and tactical integration.

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