Engineering hardware for 100–1000 years of uninterrupted operation in the most extreme environments known to science.
Traditional silicon degrades rapidly in deep space due to radiation and extreme thermal cycling. Furthermore, software-based ethical constraints and security protocols are inherently vulnerable to hacking, overrides, and single points of failure.
Flea Core solves this at the hardware level. By leveraging advanced heterostructures (MoSe₂/hBN/Graphene) and Hardware-Enforced Ethical Coherence (HEEC), we guarantee physical protection of logic and 100+ years of autonomous, tamper-proof operation.
The core technologies that make Tier-7 Longevity a physical reality, not just a theoretical concept.
Optical lattice clocks synchronized via inter-satellite optical links with ±10⁻¹⁸ s stability. Fully GPS-independent, enabling sovereign deep-space navigation.
Monolithic stack of MoSe₂/hBN/STO/Graphene enabling ultra-low-power, radiation-hard operation across extreme thermal ranges (4K to 400K).
Hardware-Enforced Ethical Coherence. Physical implementation of ethical axioms via ERPM FSM. Bypass-proof, with absolutely no software override capability.
Graphene-based Physically Unclonable Functions (PUFs) providing post-quantum cryptographic resistance and unforgeable hardware identity.
100–1000+ year operational lifespan. Validated by PMCM v2.3, ensuring zero electromigration and self-healing capabilities at microwatt power levels.
Autonomous interplanetary sensor networks, self-organizing without GPS or ground station dependency.
Instead of costly direct launches, Flea Swarm utilizes comets as "free transport platforms." A carrier probe anchors via autonomous harpoon systems and deploys dozens of micro-modules along the orbital trajectory.
Modules form a self-organizing mesh network, exchanging data via 1550 nm optical channels (10 Gbps). This ensures EM-hardened, interception-proof communication across the swarm.
Full autonomy. Data is processed, aggregated, and relayed within the swarm itself. Decisions are made locally based on hardware-protected ERPM FSM axioms, requiring Earth commands only in extreme emergencies.
Without cryogenic self-healing and decentralized "resurrection," a swarm of miniature modules in the aggressive deep-space environment (radiation >1 Mrad, 4K–400K thermal shocks, micrometeorites) would degrade within years. Thanks to the Hydra Protocol, every Flea Swarm module possesses Tier-7 Longevity, making the deployment of a century-spanning interplanetary sensor network not only technically feasible but economically viable (CAPEX amortized over 100+ years of zero-maintenance operation).
Validated performance parameters for extreme environment operations.
Validating Tier-7 Longevity through simultaneous, multi-physics stress testing in premier global laboratories.
Cryogenics & Thermal: 4K → 400K, 1000 cycles
Partner Labs
Radiation: TID >1 Mrad (Si eq.), SEE, Proton/Neutron flux
Partner Labs
Vacuum & Pressure: 10⁻⁷ mbar → 100 bar
NPL, UK / CSIRO, AU / Alter Technology
Strategic Fallback: Advanced cleanroom and testing capabilities
Non-IP-sharing validation route
Partner with us to secure non-dilutive funding, validate multi-vector testing, and deploy the next generation of autonomous space infrastructure.