Precision instruments and advanced AI/ML compute platforms — from AI deployment to in-situ space weather sensing and beyond.
A Low SWAP-C FPGA-based computing platform purpose-built for onboard AI / ML inference. Enables real-time data processing, anomaly detection, and autonomous decision-making without a ground-link dependency.
An integrated suite of plasma diagnostic instruments for in-situ space weather characterization. Combines impedance probes, Langmuir probes, and electric field probes into a single compact, low-resource package.
A miniaturized, ultra-low-power magnetometer that supports up to four sensor heads on a single central processing board with a configurable sample rate. Designed for attitude determination, magnetic field mapping, and science payloads where mass and power are critical constraints.
End-to-end AI and ML deployment onto VL-SAGE series and other FPGA-based systems. We use the Viridian Labs SNOW ANGEL compiler and architecture to deploy large-scale algorithms in resource-constrained systems.
Custom analog front-end, digital signal processing, and sensor system design for space environmental sensing payloads. We translate scientific measurement requirements into compact, low-noise, and flight-ready hardware architectures.
PCB layout services for high-speed digital, mixed-signal, and radiation-aware systems. We collaborate with your engineering team to produce layouts aligned with performance and manufacturability goals.
We bridge the gap between laboratory-grade science instruments and the strict constraints of small satellite missions. Our team transforms research prototypes into robust, flight-qualified systems by combining rigorous verification, radiation-aware design, and disciplined hardware architecture. Each subsystem is optimized for reliability, in-orbit reprogrammability, and efficient use of power, mass, and computational resources—without compromising scientific fidelity.
Custom HDL design for deploying advanced algorithms and networking architecture on space-grade FPGAs.
High-fidelity analog front-end design for plasma probes, magnetic sensors, and in-situ diagnostics in the space environment.
On-orbit inference engine deployment, neural network quantization, hardware-accelerated pipelines, and real-time classification.
Rigorous size, weight, power, and cost optimization without compromising performance.
Hands-on support from concept to integration: ICDs, on-orbit commissioning, and anomaly resolution throughout the mission lifecycle.
End-to-end reliability incorporating radiation mitigation, precise calibration, component screening, and hardware-level validation.
About Us
Viridian Labs is committed to engineering excellence. We hold ourselves to high standards of precision and quality, delivering customized solutions that meet your stringent requirements. We adhere to engineering best practices to ensure our products are well-designed, reliable, and efficient.
At Viridian Labs, we cultivate a culture of dedication, resilience, and innovation. Our team prioritizes core values such as ingenuity, integrity, and transparency.
When you partner with Viridian Labs, you can have confidence that our experts keep your best interests at heart. We are dedicated to doing the right thing, the right way, for your project.
Whether you are scoping an upcoming CubeSat mission, looking for a custom instrument solution, or want technical documentation — we would like to hear from you!