Senior Systems Software Engineer
Location: Austin, TX (Hybrid on-site, with travel)
Travel: ~20% typical; up to ~50% during field exercises and partner/military deployments
Clearance: U.S. Citizen with the ability to obtain a security clearance
About NODA
NODA is a veteran-owned, venture-backed technology company transforming how unmanned systems collaborate in complex, mission-critical environments. As NODA scales across products, partners, and deployment environments, keeping the system coherent in practice — not just on paper — is what separates a platform that works in the field from one that only works in a demo.
Our Systems Software Engineers are the people who can stand at the seam between subsystems — software, networking, RF, and hardware — and make sense of what's actually happening when something breaks in degraded, contested, or denied conditions. You won't be the deepest RF, networking, or hardware specialist in the room, but you'll be able to hold your own in that conversation, pinpoint where in the stack a problem actually lives, and write the software — or pick up a multimeter — needed to prove it.
The Role
As a Systems Software Engineer, you will work across NODA's cross-system infrastructure — the messaging fabric, gateway, and runtime built on real-time messaging frameworks (DDS, ROS/ROS2, and similar) that coordinate fleets of heterogeneous unmanned systems in real time — debugging and resolving issues that don't respect team boundaries. You'll pinpoint performance and integration issues end to end, write software stacks under a systems architect's supervision where the work falls outside Core Engineering's product ownership, and work directly with networking, RF, and hardware subject matter experts when an issue requires investigation below the software layer. You'll also support the System Health function — characterizing performance baselines, analyzing crashes to root cause, and producing the verification evidence the organization relies on for release decisions.
Key Responsibilities
Debug and resolve cross-system issues spanning software, real-time messaging, networking, RF, and hardware — owning the investigation even when the root cause sits outside your primary depth
Pinpoint performance and latency issues in cross-system infrastructure (messaging fabric, gateway, runtime) supporting multi-agent coordination, and drive them to resolution
Write and maintain software stacks under a systems architect's supervision, for work outside Core Engineering sub-teams' product ownership
Investigate and characterize system behavior under degraded, intermittent, or contested link conditions
Perform hands-on hardware diagnostics using basic bench tools (multimeter, oscilloscope) to isolate issues at the hardware/software boundary
Hold credible technical conversations with networking, RF, and hardware SMEs — translate their findings into system-level constraints and software fixes
Contribute to System Health: performance baselining, system-level verification, crash analysis to root cause, and KPI/dashboard evidence used for release go/no-go decisions, with a focus on driving measurable improvements in latency, reliability, and uptime
Identify and mitigate cross-system risks impacting mission effectiveness, including in live exercises or deployments
Support integration tooling, CI/CD for cross-system components, and automated regression in SIL/HIL environments
Maintain Interface Control Documents and integration contracts between major platform components, and translate field/operational requirements into system constraints Core Engineering and architects can build against
Build observability into cross-system components (logging, tracing, metrics) to make the next debugging pass faster
Required Qualifications
5+ years of professional software engineering experience, including significant time debugging distributed, real-time, or multi-service systems in production
Strong proficiency in C++ and/or Python, with the ability to write production-quality software with architect-level supervision on system design
Experience with real-time or low-latency messaging/middleware (e.g., DDS, ROS/ROS2, ZeroMQ, MQTT, gRPC) in distributed or multi-agent contexts
Solid working knowledge of networking fundamentals (TCP/IP, multicast, basic routing) sufficient to debug connectivity/performance issues and converse credibly with networking engineers
Working familiarity — conversational depth plus basic debugging, not specialist design work — with RF/wireless concepts (link quality, interference, basic link budget reasoning)
Comfortable using basic hardware bench tools (multimeter, oscilloscope) to debug at the hardware/software boundary
Demonstrated ability to debug across layers — application, network, RF, and hardware-adjacent — and to know when to pull in a specialist versus solve it directly
Experience with Linux systems and command-line debugging tooling
U.S. Citizenship with the ability to obtain a security clearance
Preferred Qualifications
Experience operating or debugging systems in contested/denied conditions (jamming, intermittent links, degraded bandwidth)
Experience with Linux-based or real-time systems in resource-constrained, embedded, or edge environments (embedded Linux, bare-metal, RTOS)
Familiarity with containerization for edge deployment (Docker/K8s) and observability tooling (OpenTelemetry, Jaeger, or similar)
Experience with simulation, HIL/SIL pipelines, or sim-to-field validation workflows
Familiarity with security considerations in tactical comms or cross-domain solutions
Prior work in defense, aerospace, or other mission-critical/regulated environments
Experience authoring ICDs, requirements traceability, or MBSE artifacts
Exposure to tactical radios, MANET, or mesh networking in a support/integration capacity
Skills & Attributes
Comfortable being the generalist in the room — credible across software, network, RF, and hardware conversations without needing to be the deepest expert in any one
Strong ownership instinct; debugs to root cause rather than handing off at the first sign of unfamiliar territory
Results-oriented — thinks in terms of measurable system KPIs (latency, reliability, uptime), not just task completion
Clear written communicator — translates field/debugging findings into structured specs, crash reports, and feedback Core Engineering can act on
Operates well under a systems architect's supervision on unfamiliar scope, without needing constant direction
What We Offer
Hybrid work environment
Competitive compensation
Flexible PTO + federal holidays
401(k)
Comprehensive medical, dental, and vision benefits
Free One Medical membership
Growth Path at NODA
L5 — Systems Software Engineer: Owns individual debugging and integration tasks within cross-system infrastructure; writes software under architect supervision; builds working fluency in networking, RF, and hardware-level debugging.
L6 — Senior Systems Software Engineer: Owns end-to-end resolution of cross-system performance, latency, and integration issues with minimal supervision; contributes independently to System Health baselining and crash analysis; represents Systems Engineering in cross-team design sessions.
L7 — Staff Systems Software Engineer: Drives systems-level technical conduit work independently — translates field and customer requirements into system constraints, owns ICDs for assigned subsystems, and is a primary escalation point for integration risk, release-readiness, and mission assurance evidence.
#LI-FL1
We are an Equal Opportunity Employer and welcome applicants from all backgrounds. All qualified individuals will receive consideration for employment regardless of race, age, color, religion, sex, national origin, disability, or protected veteran status.