Disruptive Lethality Concepts
Army disruptive lethality research in next-generation warheads and lethal mechanisms. Focus on increased energy density, multi-domain targeting, and novel materials.
A weekly-updated index of currently active innovation opportunities (SBIR, STTR, BAA, grants, contracts).
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Army disruptive lethality research in next-generation warheads and lethal mechanisms. Focus on increased energy density, multi-domain targeting, and novel materials.
Army logistics and supportability R&D including predictive maintenance, ammunition health monitoring, and supply chain management. Emphasizes AI-based planning and battlefield manufacturing.
Missile guidance and control R&D including robust guidance algorithms, seeker technologies, reinforcement learning, and advanced autopilot design.
Army environmental and demilitarization technology research improving lifecycle sustainability. Focus on wastewater treatment, emerging contaminant elimination, and AI process control.
Missile power electronics and thermal management R&D focusing on miniaturized power conversion, advanced batteries, ultracapacitors, and compact thermal systems.
Army Contracting Command informational posting of competitive acquisition opportunities from RTP Division. Market research and acquisition planning updates for known research and development initiatives.
Army power and energy development including reserve batteries, fuel cells, and energy harvesting. Focus on improved power density, renewable energy, and reduced logistics burden.
Missile test and evaluation technology development including miniaturized systems, encrypted telemetry, autonomous flight termination, and tracking technologies.
Development of stimuli-responsive materials and devices for sensing and computing using AI/ML and additive manufacturing. Creates flexible electronics and wearable sensors for extreme environments.
Directed Energy Technology Experimentation Research (DETER) ARA seeks R&D, prototyping, and testing of directed energy sources and systems for laboratory and field trials.
Biomaterials research using soft matter characterization, synthetic biology, and bioinformatics for accelerated materials development. Focus on biodegradable materials and biological-material interactions.
Army fuze technology research including Electronic Safe and Arm Devices, MEMS devices, and miniaturized components. Focus on reliability, manufacturability, and G-load survivability.
Develop efficient mobile and static PFAS destruction technologies using thermal methods with high throughput, producing compliant end products while managing waste byproducts.
Development of nanoscale transport materials for C4ISR electronics including magnetoelectric materials, ultra-wide bandgap semiconductors, and 2D materials. Synthesis process maturation.
Research on refining and processing methods to enhance material quality and improve supply chain efficiency. Addresses bottlenecks in raw material production.
High-velocity fuzing R&D developing Electronic Safe and Arm devices, Target Detection Devices, and integrated guidance fuzing for intercept applications.
High-density munitions carriage and release technology R&D for weapon bay integration with advanced aircraft-to-weapon communications and power systems.
Biological agent detection technology development for field-deployable point-of-detection systems and rapid identification.
Develop smoke and obscurant technologies for military operations with enhanced performance and operational capability.
Counterspace capabilities R&D including defensive/offensive technologies, cyber capabilities, phenomenology, and satellite servicing for space protection.
AI and machine learning R&D for swarm autonomy of networked collaborative weapons with deep learning approaches for target reconciliation in dynamic battlespace.
Advanced missile flight control actuator R&D including miniaturized systems, high-speed actuation, and articulating airframe technologies.
Space hardware advancements for LINK-182 user radios, multi-waveform capabilities, SGLS, and secure contested communications with LPI/LPD connectivity.
Army manufacturing technology R&D including additive manufacturing and 3D-Technical Data Package integration. Focus on barrel life extension, coatings, and intelligent machining.
ARO and NSA LPS Qubit Collaboratory seeks disruptive quantum computing and sensing research with collaborative partnerships, workforce development, and transformative qubit technology advancement.
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