Beyond the Initial Concept
While the genesis of BOUNCE™ was focused on immediate wearable protection for human falls, the underlying architecture—a high-speed, 3-IMU, triple-redundant logic core—is a platform technology. We see a future where the BOUNCE™ "brain" protects assets and personnel in any environment where impact is an unacceptable risk.
Expansion Vectors
Industrial & Construction
Protecting workers at height. Unlike static tethers, BOUNCE™ provides dynamic protection that travels with the individual, utilizing high-frequency telemetry to distinguish between a slip and a controlled movement.
Aviation & Naval Flight Lines
High-consequence environments require split-second response. Our hardware is being evaluated for integration into flight-deck vests, ensuring that personnel remain protected during sudden falls or high-energy events.
High-Value Asset Recovery (Drones)
Commercial-grade drones represent significant investments. We are developing a compact version of our squib-firing logic to trigger emergency pneumatic recovery for heavy-lift commercial and industrial UAVs.
Technical Scalability: Low-Altitude to High-Fall
Our current firmware architecture is designed for scalability. For low-altitude falls, we prioritize Low-Latency Deployment (< 150ms). For high-altitude events (3rd story and above), our logic transitions into Extended Impact Management, where the system identifies the unrecoverable state, deploys for full rigification, and maintains pressure to dissipate energy upon final impact.
The BOUNCE™ platform is not just a safety device; it is a rapid-response actuation system for the high-risk industrial future.
Next-Gen R&D: Beyond Surface Protection
We are aggressively leveraging our core deployment intelligence to solve high-consequence problems in new domains:
FLOAT: Maritime Life Support
Building on our rapid-inflation expertise, FLOAT is a wearable, water-activated life raft deployment system. By utilizing the same high-speed sensor fusion as our terrestrial systems, FLOAT is designed to potentially save a life by providing instant, positive-buoyancy maritime recovery in extreme conditions.
SPOOKY: Secure Tactical Communications
The next frontier for mission-critical electronics is data integrity. SPOOKY utilizes a proprietary, daily-rolling time-indexed reconstruction algorithm, ensuring that intercepted signal streams are rendered permanently incoherent."SPOOKY represents a departure from traditional radio frequency transmission. Utilizing sub-Nyquist sampling and sparse signal reconstruction, this pulse-based technology is engineered to make data streams appear as background noise to unauthorized interceptors. It is the invisible layer of security that mission-critical assets deserve.