Full-Stack Synthesis
Integrative Cyber-Physical Systems, Hardware-in-the-Loop & Cross-Domain Bus
Full-Stack Synthesis is the integrative nerve center of Quantrix. Real-world mission platforms cannot exist as isolated software modules; they must seamlessly interface physical spacecraft bodies with encrypted zero-trust databuses, autonomous edge inference engines, and real-world sensors. We engineer end-to-end hardware-in-the-loop (HIL) testbeds verifying the entire physical-computational loop.
Key Capabilities & Envelopes
Hardware-in-the-Loop (HIL) Testbeds
Real-time physical bus simulation driving actual flight controllers with synthetic sensor feeds at microsecond fidelity.
Unified Cross-Domain Telemetry Bus
Deterministic pub/sub data bus connecting low-level firmware registers to high-level orbital trajectory engines.
End-to-End Cryptographic Traceability
Holistic provenance guaranteeing that every physical part manufactured corresponds to an immutable software commit hash.
Live Physics & Telemetry Model
Interact with real-time mathematical derivations and environmental envelopes specific to Full-Stack Synthesis.
Core Subsystem Specifications
High-Fidelity Real-Time HIL Backplane
FPGA-based real-time physical emulator injecting realistic aerodynamic and orbital dynamics into flight hardware.
Cross-Domain Protocol Gateway
Zero-copy message broker bridging low-level serial telemetry directly to zero-trust cryptographic layers.
Unified Mission Telemetry Dashboard
WebGL and WebAssembly-powered real-time telemetry console visualizing 6-DOF kinematics and stress data simultaneously.
Defense & Aerospace Standards Matrix
ARP4761
Safety Assessment of Airborne Systems
DO-160G
Environmental Conditions for Airborne Equipment
IEEE 1588 PTP
Precision Clock Synchronization
AS9100D
Aviation, Space & Defense Organization

