MV DC Systems, Technical Lead

Fluidstack

$150K — $180K *
Energy & Utilities
11 - 15 years of experience
Job Overview by Ladders

Qualifications

  • 12+ years in power systems or power electronics, specifically MVC or HVDC design experience.
  • Ability to own and articulate the system-level architecture, fault behavior, and stability concepts of converter-dominated networks.
  • Proficiency in EMT simulation software (e.g., PSCAD/EMTDC) for design validation.
  • Experience creating safety cases for systems ahead of established standards.
  • Demonstrated leadership experience in guiding technical teams.
  • Strong analytical skills to evaluate concepts and provide decisive feedback on feasibility.
  • Bonus: Knowledge of SSCB and DC breaker ecosystems, DC grounding, or participation in standards committees.

Responsibilities

  • Architect MVDC distribution systems for large-scale campuses, selecting voltage levels and topologies defensibly based on fault behavior and stability.
  • Own and run EMT modeling for fault and stability analysis of converter-interfaced networks.
  • Establish protection philosophy alongside engineering teams and create safety cases in the absence of comprehensive standards.
  • Lead the DC Systems team, defining deliverables and ensuring smooth technical collaboration with electrical teams.
  • Guide vendor strategy for critical components like SSCBs and converters, recognizing architectural gaps to address.

Benefits

  • Commitment to pay equity and transparency.
Full Job Description
The Product Engineering, DC Systems Team

We design the medium-voltage DC distribution systems that will power gigawatt-scale AI campuses, from architecture through safety case, in territory where the standards haven't caught up yet.

Examples of key problems the team is working on:
  • Choose the MVDC architecture for gigawatt-scale campuses: voltage level, topology, and grounding scheme, each choice defensible on fault behavior and cost.
  • Prove that a fully converter-interfaced network holds, using EMT-level fault and stability analysis rather than assumptions carried over from AC systems.
  • Clear DC faults with no zero crossing in tens of microseconds, and build the protection philosophy that makes that credible.
  • Build a safety case for MVDC distribution ahead of the standards, in the gap between IEEE 1709 and the MVDC provisions arriving in NEC 2026.
Role Scope
  • Architect MVDC distribution for gigawatt-scale campuses: pick the voltage level, topology, and grounding scheme, and defend every choice on fault behavior, stability, and cost.
  • Own the system EMT model and run the fault and stability analysis program that proves a fully converter-interfaced network holds, with margins you can state and stand behind.
  • Set the protection philosophy with the protection engineer and own the safety case where standards haven't caught up, rigorous enough to survive review by an AHJ working from an incomplete code.
  • Lead the DC Systems team, define its first deliverables, and hold the technical interfaces to the SST and facility electrical teams so nothing falls between them.
  • Drive vendor strategy for SSCBs, converters, and DC-rated components, and know which gaps in the ecosystem the architecture must design around.
What We're Looking For

The below is a starting point. We always make space for exceptional people, so if you don't fit this role exactly, tell us where you would.
  • 12+ years in power systems or power electronics, with direct MVDC or HVDC system design experience: shipboard MVDC, HVDC converter stations, or grid-scale converter-dominated networks, designed end to end.
  • You own the system-level story: architecture, grounding, fault behavior, and stability of converter-dominated networks, and you can walk a DC fault sequence from initiation to clearing.
  • You're fluent in EMT simulation (PSCAD/EMTDC) and have used it to prove designs, not just to check them after the fact.
  • You've built defensible safety cases ahead of immature standards, in the territory between IEEE 1709 and the MVDC provisions just arriving in NEC 2026.
  • You've led small technical teams and know what their first deliverable should be.
  • You know what evidence would make you kill a concept, and you'd say so before anyone spends another dollar on it.
  • Bonus: SSCB and DC breaker ecosystem knowledge, depth in DC grounding and insulation coordination, islanded or behind-the-meter system experience, or standards committee participation.


We are committed to pay equity and transparency.

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