This RFP seeks biomanufactured thermal interface materials (TIMs) to improve heat dissipation in high-density electronics, drones, and battery systems. The solution must balance thermal conductivity with electrical insulation while offering cost-effective, sustainable alternatives to traditional materials.
This RFP seeks a computational system using protein language models to rapidly characterize pathogen-host interactions from sequence data alone, enabling faster threat assessment and therapeutic response when novel pathogens emerge. The capability must predict protein interactions across pathogen classes, work on unseen pathogens, and deliver comprehensive analysis within one hour on standard hardware.
DARPA seeks development of high-energy-density, air-independent rechargeable batteries for military applications where oxygen is unavailable—such as underwater, high-altitude, or space operations. Proposals must demonstrate specific energy exceeding 1 kWh/kg with electrical rechargeability over multiple charge cycles.
This RFP seeks engineering solutions to enhance cognitive performance and physiological recovery in high-demand operational environments where sleep is restricted. The capability aims to address performance degradation caused by sleep deprivation by supporting critical brain functions like waste clearance and synaptic plasticity.
This SBIR XL seeks integrated manufacturing solutions for compact Rydberg-based RF receivers that operate across broad frequency bands with high sensitivity. The technology addresses the gap between laboratory prototypes and deployable systems by combining photonic components with low-latency control architecture for wideband signal processing.
The Navy seeks an adaptive algorithm that automatically optimizes sensor resource allocation across ship defense radar systems. The solution must dynamically identify which sensors contribute most to tracking threats and redirect underutilized sensor capacity to improve overall combat system situational awareness and engagement readiness.
The Navy seeks an AI-enabled Terminal Defense Weapon System Coordinator that decouples rapid weapon system upgrades from lengthy combat system development cycles. The solution will coordinate real-time engagement management across multiple defense systems while maintaining cybersecurity and integration with ship combat systems.
The Navy seeks an automated anomaly detection system that identifies potentially threatening maritime and air contacts hidden within congested shipping environments by analyzing pattern-of-life behaviors from AIS, ADS-B, and radar data. This capability would reduce operator workload and improve threat detection accuracy for Ship Self-Defense System platforms transiting high-traffic regions.
The Navy seeks secure tasking technology for commercial satellites at classified levels (CUI/Secret), enabling weapons-quality targeting data while maintaining operational security. The solution must integrate encryption, secure protocols, and emerging technologies to reduce tasking time by 90% versus current 14-day cycles.
The Navy seeks an AI-powered maritime tracking system to automate processing of sensor data from diverse sources and predict object movements across global waters. This solution must prioritize threats, detect pattern deviations, and scale efficiently as new sensors integrate—transforming manual, overwhelmed operations into proactive domain awareness.
The Navy seeks inter-satellite communication hardware to enable direct data sharing between commercial satellites, eliminating ground-station handoffs for improved tracking of mobile ocean targets and reducing latency in multi-satellite coordination.
The Navy seeks an adaptive Zero Trust data control system that verifies every user access request in real-time to protect critical combat data from unauthorized access. The solution must integrate advanced authentication, AI/ML threat detection, and micro-segmentation to reduce authentication time and unauthorized access risk while maintaining performance in degraded environments.
The Navy seeks a compact, high-speed data transmission device capable of transferring four terabytes of Ship Self-Defense System combat data across 5,000+ nautical miles in 60 seconds. This solution addresses delays in transmitting embarked platform performance data needed for timely system improvements and warfighter training.
The Navy seeks modernized automated ammunition handling systems for MK 45 gun systems to replace 1960s-era technology, improving reliability, firing rates, and crew safety while maintaining compatibility with existing shipboard platforms.
The Navy seeks a multi-vendor satellite imagery scheduling optimization platform that integrates commercial providers into a unified system to enhance maritime domain awareness. The solution must dynamically adapt to weather, prioritize time-critical tasking, and reduce reliance on single-source imagery while minimizing costs and redundant collections.
The Navy seeks a dual-band SAR system combining X-band with S-band or C-band to enhance maritime surveillance capabilities. This solution expands ocean coverage, improves target detection across varying conditions, and reduces operational costs compared to current search and tracking methods.
The Marine Corps seeks an innovative portable long-range listening device capable of accurately capturing and recording sounds from 200 meters away to support intelligence collection operations. The system must weigh under 50 pounds, operate for 24 hours on battery power, and distinguish voices and environmental noise with high fidelity.
NAVAIR and NAVSEA seek innovative counter-UAS technologies to defend Navy assets against the proliferating drone threat. Solutions should detect, track, and neutralize single or swarming unmanned systems using AI/ML, non-kinetic defeat systems, or adaptive threat recognition across air, sea, and ground platforms.
DLA seeks non-lithium battery technology to replace supply-chain-vulnerable lithium-ion alternatives in military field operations. The solution must deliver safer, more transportable power for extreme environments while meeting domestic sourcing requirements and core performance standards.
DLA seeks an AI-powered tool to automate vendor economic dependency analysis across thousands of suppliers. The solution will integrate with government systems to flag high-risk relationships using public financial data and supply chain metrics, replacing manual, time-intensive processes.
DLA seeks a dynamic digital twin platform integrating real-time workforce data and synthetic scenario modeling to optimize organizational processes and boost productivity. The solution enables rapid workforce planning, surge deployment testing, and AI integration analysis to enhance mission readiness against modern competitive threats.
This SBIR seeks an affordable, ruggedized OEM ultrafine particulate sensor detecting particles as small as 10 nanometers in real-time to address a critical gap in military occupational exposure monitoring. The capability would enable service members in high-hazard environments like burn pits and flightlines to detect harmful submicron particles currently missed by standard equipment, supporting preventative health measures and informed command decisions.
This SBIR seeks a portable field device that rapidly characterizes ultrafine to coarse particulate composition—including carbonaceous, metal, and biological materials—to replace laboratory analysis and enable real-time exposure monitoring for military personnel in hazardous environments.
This SBIR seeks AI/ML solutions to automate the Air Force Judge Advocate's labor-intensive legal and judicial workflows. The technology will streamline case intake, document processing, and decision-making to reduce delays by 50-70% and improve legal advisory delivery across military justice and interagency operations.
AFDW seeks an AI-driven cybersecurity platform integrating post-quantum cryptographic standards to defend against quantum computing threats. The solution will automate threat detection and risk scoring across legacy Air Force networks while ensuring seamless migration to quantum-resistant encryption.