We eliminate the contractor fragmentation that causes mission-critical failures. Our engineers draft the physical cabling, configure the high-speed optical transceivers, build the bare-metal OS, and write the distributed application runtimes.
Engineered for operations where software failure carries physical or financial consequences. We draft deterministic backends, offline-first runtimes, and low-latency data pipelines in Rust, Go, and TypeScript.
High-availability computing platforms deployed on bare metal and hyperconverged appliances. From multi-node storage clusters to real-time SCADA supervisory nodes, we engineer systems that survive component loss without degradation.
Physical and logical network fabrics engineered for high density, deterministic routing, and zero packet drop. We build the physical layer with Cat6A and dark fiber, and the control plane with BGP EVPN and 802.1X zero-trust boundaries.
The foundational physical and logical environment. We engineer hybrid compute fabrics, cryogenic edge enclosures, high-throughput 400GbE storage fabrics, and microgrid power continuity systems.
Sub-10µs jitter with RT-Preempt, CPU core isolation, and zero-copy ring buffers.
Non-blocking spine-leaf fabrics supporting multi-tenant microsegmentation at 100G/400G.
RDMA over Converged Ethernet with hardware PFC and ECN for line-rate NVMe-oF write streams.
Physical galvanic isolation, hardware data diodes, and IEC 62443 Level 3 compliance.
Sub-200ns synchronized phase angle timestamping via IEEE 1588v2 Precision Time Protocol.
Conflict-free replicated data types enabling 100% offline terminal operations without data loss.