SST Systems Architect, Technical Lead

Fluidstack

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

Qualifications

  • 15+ years in power conversion with experience in SST or MV converter programs at leading organizations
  • Proficient in converter topology selection and semiconductor strategy at MW scale
  • Experience leading teams from architecture to functional hardware development
  • In-depth knowledge of the SiC ecosystem and market dynamics
  • Familiarity with challenges in program management and failure analysis
  • Ability to create and defend a detailed 12-month program plan for a team of engineers
  • Bonus: experience in medium-frequency transformer design and MVDC integration

Responsibilities

  • Architect the SST end-to-end, selecting and justifying topology and semiconductor strategies
  • Lead engineering teams across power electronics, magnetics, and controls to transition from architecture to prototypes
  • Define system boundaries and interfaces between SST and MVDC systems for clear collaboration
  • Develop and manage the prototype roadmap and assess build-vs-partner decisions
  • Establish and maintain partnerships with vendors, labs, and universities for device acquisition and testing

Benefits

  • Commitment to pay equity and transparency
  • Opportunity to work on cutting-edge AI data center technology
  • Collaboration with a talented team of engineers and researchers
  • Potential for professional growth in a pioneering field
  • Access to partnerships with top vendors and research institutions
Full Job Description
Product Engineering builds the power and cooling systems that let Fluidstack deliver gigawatt-scale AI data centers faster and denser than the grid-standard supply chain allows. The SST group is designing solid-state transformers as a core building block of that power architecture.

Examples of key problems the team is working on:
  • Architect a medium-voltage solid-state transformer that can be manufactured, serviced, and scaled across gigawatt-scale campuses, not just demonstrated in a lab.
  • Define the interface between the SST and the MVDC distribution system, including protection, control boundaries, and fault behavior.
  • Build a semiconductor and magnetics supply strategy that survives a thin 10kV SiC market over a multi-year horizon.
  • Take converter hardware from topology selection through working prototypes on a schedule that data center construction actually depends on.
Role Scope
  • Architect the SST end to end, selecting the topology (ISOP DAB stacks, MMC-based, or another approach) and semiconductor strategy, with every choice defended on efficiency, redundancy, manufacturability, and device availability.
  • Lead the power electronics, magnetics, and controls engineers from architecture to working hardware, owning the technical decisions that get prototypes built rather than debated.
  • Own the system trade-offs and the interface with the MVDC systems team, writing down exactly where the SST stops and the system begins, precisely enough that both teams can design against it.
  • Build the program plan and prototype roadmap, and make the build-vs-partner recommendation honestly, including the case where partnering is the right answer.
  • Develop vendor and research partnerships across device makers, labs, and universities that secure the devices, test capacity, and expertise the program needs.
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.
  • You have 15+ years in power conversion and have led an SST or MV converter program at the level of ABB/Hitachi Energy research, GE, Delta, EPRI, or a FREEDM/ETH/Aachen lineage lab.
  • You've owned converter topology selection, semiconductor strategy, and system trade-offs at MW scale, and can defend the choices you made.
  • You've led converter development teams from architecture through working hardware, not just papers or simulations.
  • You know the SiC ecosystem well enough to write a five-year semiconductor strategy in a market where 10kV devices barely exist.
  • You've lived through a program that died or nearly died, and you know exactly why, and what you'd do differently.
  • You can write a 12-month program plan for 8 engineers and defend it line by line.
  • Bonus: medium-frequency transformer design depth, MVDC system integration experience, established vendor and university research relationships, or certification exposure for MV power conversion.


We are committed to pay equity and transparency.

Similar Jobs

More Jobs at Fluidstack

More Energy & Utilities Jobs

Find similar SST Systems Architect, Technical Lead jobs: