Own the design of our pulsed power system while adhering to ambitious timelines.
Build and lead a team of pulser physicists, engineers, and technicians developing every stage of the pulser.
Work across multiple technology teams and disciplines to ensure successful design, delivery, and integration of the pulsed power system.
Take over the pulsed power lab and continue overseeing experiments that will prove out the overall system design.
Requirements
team lead
safety
pulsed power
r&d
capacitors
switches
Ability to build and manage a team with highly-specialized skill sets within pulser physics and design.
Track record of delivering results quickly while maintaining a safe work environment.
Expertise designing and developing high-power pulsed power systems.
Experience with R&D for specialized components such as high-power capacitors, liquid and gas switches, and vacuum power flow.
Proven expertise in designing, building, testing, and innovating on pulsed power systems.
Benefits
Industry-competitive salary
Equity plan
6% employer 401k matching
Medical, Dental, and Vision insurance
Generous paid time off (including sick leave, vacation, paid family leave)
Training + Development
Information not given or found
Interview process
Information not given or found
Visa Sponsorship
Information not given or found
Security clearance
Information not given or found
Company
Overview
$900M
Series A Investment
The company secured over $900 million in Series A funding led by top-tier investors.
135k ft²
Facility Size
Construction is underway in a 135,000-square-foot facility in San Leandro.
150 Modules
Fusion Target
They aim to use 150 modular units to achieve net facility gain by 2030.
Led by founders from NASA, DOE labs, and genomics—Eric Lander (co‑founder/CEO) and Keith LeChien (CTO) steer the technical vision.
They’re pioneering pulsed magnetic inertial fusion: stacking modular ‘bricks’ in Marx generators to drive fuel capsules to fusion.
Built in a 135k ft² San Leandro facility, the team of ~60 engineers and scientists is constructing full-scale pulser modules.
Collaborations with General Atomics and US national labs accelerate scaling and prototype testing.
Their demonstration system in Livermore targets research-grade operations ahead of commercial rollouts.
By focusing on mass‑manufacturable modules and affordable supply chains, they aim to bring fusion to market within a decade.
Culture + Values
Talented, humble builders
United by a shared sense of urgency — to meet rapidly growing global energy demand while addressing climate change
Shared sense of responsibility — to each other, to our investors, to our country, and to our planet
Committed to collaborating with the broader scientific community… regularly share and publish our research… committed to partnering with communities, regulators, policymakers, suppliers, industry peers, and customers
Environment + Sustainability
$900M+ Funded
Series A Financing
Raised $900 million in Series A funding tied to technical milestones for advancing clean energy solutions.
>100 MJ Output
Fusion Energy Yield
Collaborating with partners to achieve high-yield fusion energy output in inherently safe, carbon-free systems.
2030 Target
Net Facility Gain
Technology aims to achieve net facility gain by 2030, producing more fusion energy output than stored energy input.
Mission: power the world with abundant, affordable, clean energy
Building pulsed magnetic inertial fusion system using widely available materials and mass‑manufacturable modular units ('bricks' and 'modules') to support scalable clean power
Collaborating with National Lab partners (General Atomics, LLNL) to drive advances toward high‑yield fusion in inherently safe, carbon‑free systems
Inclusion & Diversity
No publicly available DEI strategy or gender-related statistics found on website or LinkedIn profiles