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Systems Engineer (Robotics) – End-to-End Robotics Program Ownership

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AI Summary

Own the system-level design, integration, and deployment of advanced robotics for TAR’s off-grid power plant infrastructure. Derive machine-level requirements, ensure cross-disciplinary subsystem alignment, and lead verification, safety, and field commissioning from concept to deployment. Drive performance, reliability, and safety for high-stakes robotic systems in industrial environments.

Key Highlights
End-to-end ownership of robotic systems from concept to field deployment in West Texas
Derive and enforce machine-level requirements (cycle time, accuracy, uptime) with cross-functional teams
Lead safety architecture, error budgets, and reliability analysis for heavy-load robotic systems
Key Responsibilities
Define machine-level requirements (cycle time, placement accuracy, uptime) aligned with real-world deployment targets
Develop use cases and concept of operations for robotic systems, including off-nominal scenarios and maintenance workflows
Partner with subsystem owners to design and validate interfaces (mechanical, electrical, data, timing, software contracts)
Establish error/performance budgets and hold designs accountable to system-level specifications
Act as the system-level backstop for performance risks spanning mechanical, electrical, firmware, and software
Plan and execute verification/validation testing, ensuring designs meet requirements with FMEA and reliability analysis
Own safety architecture for heavy-load robots (E-stops, interlocks, safety zones, operational limits)
Lead integration, bring-up, and field commissioning of robotic systems from prototype to deployment in West Texas
Drive continuous improvement by feeding site feedback back into requirements and use cases
Technical Skills Required
Systems Engineering Robotics/Electromechanical Systems Integration Requirements Definition & Traceability
Benefits & Perks
Up to $15,000 relocation bonus
Unlimited PTO
Health, Dental, and Vision insurance
Nice to Have
Safety analysis (FMEA, FRACAS) for mobile machinery
Field commissioning of outdoor/industrial systems
Controls background (system identification, tuning, performance characterization)

Job Description


Mission

TAR’s mission is to power intelligence for the world. We are building the world’s first off-grid power plant for data centers powered by renewable technologies.

We firmly believe AI should be built in the US for the benefit of all people. For that, power must be fast, clean and scalable. We are singularly focused on delivering GW-scale power faster than anyone has ever done, by rethinking every layer of the stack.

We vertically integrate to solve every bottleneck, from racking systems to power electronics to dispatch algorithms to on-site construction.

Leave your mark on the future of civilization-scale energy infrastructure.

Company

TAR is both a hardware and software company, we are building out massive, critical, physical infrastructure. (TAR is working directly with one of the largest compute providers to scale and deploy 5GWs by 2028)

We operate on…

  • High ownership. High Agency. Own project end-to-end. Great people don’t need to be managed.
  • Speed. We achieve great things on incredible timelines. We push ourselves to go faster.
  • First principles. No ego. No hierarchy. Challenge every assumption.
  • Passion. Solving the energy problem is one of the largest challenges that faces the world now and in the future.

About the role

As a Systems Engineer for the robotics program, you own the machine-level picture: requirements, interfaces, error and performance budgets, verification, and safety, while design engineers own their subsystems. You take robots from concept of operations through integration, bring-up, and field commissioning, and you own the evidence that each one performs to spec. This is a mid to senior level individual contributor role based at our San Francisco robotics facility, with travel to the West Texas site for hands-on supervision.

Responsibilities

  • Derive machine-level requirements from real deployment targets, such as cycle time, placement accuracy, and uptime, partnering with design engineers so every subsystem builds toward the same numbers.
  • Develop the use cases and concept of operations that ground those requirements, covering how each machine is loaded, positioned, operated, recovered, and maintained on a working site, including the off-nominal cases design teams need to see early.
  • Partner with system owners as they design the interfaces between subsystems (mechanical mounting, power, data buses, timing, and software contracts), brokering agreements between them so integration issues surface on paper, not in the field.
  • Build the error and performance budgets that determine whether a machine can place a module to spec, and hold designs accountable to them.
  • Act as the backstop for system performance, watching for risks and failures that span mechanical, electrical, firmware, and software and surfacing them before they compound.
  • Plan and run verification and validation at the machine level, own the evidence that a design meets its requirements, and bring FMEA and reliability analysis to design teams as a working tool rather than a gate.
  • Own the safety architecture for machines that move heavy loads around people: E-stops, interlocks, safety zones, and operational limits.
  • Support integration and bring-up of complete machines from first article through field-ready, then commission them in West Texas and own the feedback loop from the site back into requirements and use cases.
  • Exceptional written and verbal communication skills, with demonstrated experience guiding cross-functional programs to a cohesive product.

Qualifications

  • 5+ years of systems engineering, systems integration, or multi-disciplinary design engineering on complex robotic or electromechanical systems.
  • Cross-discipline fluency spanning mechanical, electrical, and software, with enough depth in each to engage subsystem owners on the details.
  • Experience taking a machine or vehicle end to end, from prototype to deployment, at the system level.
  • Requirements definition, flow-down, and traceability on hardware programs.
  • Strong cross-discipline debugging with scopes, logic analyzers, telemetry, and logs, and a structured approach to isolating a fault and routing it to the right owner.
  • Cross-functional stakeholder management and a track record of driving decisions through influence rather than authority.
  • Python or similar for analysis, budgets, and tooling.

Nice to have

  • Safety analysis and functional safety for mobile machinery or heavy equipment.
  • FMEA, FRACAS, or formal reliability program experience.
  • Field commissioning of outdoor or industrial systems.
  • Experience as the first systems hire on a program.
  • Controls background, including system identification, tuning, and performance characterization.

Salary and Benefits

  • Up to $15K relocation bonus
  • Unlimited PTO
  • Health, Dental, Vision insurance
  • $1K monthly stipend for meals


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