Veir develops superconducting electric transmission systems using liquid‑nitrogen evaporative cryogenic cooling and high‑temperature superconductors to carry much higher currents in existing rights‑of‑way for data centers, utilities, and renewables.
<div class="content-intro"><p><strong>WHY VEIR?</strong></p> <p><span class="TextRun SCXP164703501 BCX8" lang="EN-US" data-scheme-color="@353535,," data-usefontface="false" data-contrast="none"><span class="NormalTextRun SCXP164703501 BCX8">Founded in 2019 and headquartered in Woburn, Massachusetts, VEIR is a U.S.-based designer and manufacturer of category-defining </span></span><span class="TextRun SCXP164703501 BCX8" lang="EN-US" data-scheme-color="@353535,," data-usefontface="false" data-contrast="none"><span class="NormalTextRun SCXP164703501 BCX8">superconducting power delivery systems built for the extreme energy demands of the AI era. By commercializing next-generation </span></span><span class="TextRun SCXP164703501 BCX8" lang="EN-US" data-scheme-color="@353535,," data-usefontface="false" data-contrast="none"><span class="NormalTextRun SCXP164703501 BCX8">superconducting technology into deployable, real-world systems, VEIR delivers ~10× higher power density than conventional options, </span></span><span class="TextRun SCXP164703501 BCX8" lang="EN-US" data-scheme-color="@353535,," data-usefontface="false" data-contrast="none"><span class="NormalTextRun SCXP164703501 BCX8">enabling “speed-to-power” where incremental optimization falls short. VEIR’s initial focus is AI data centers behind the meter, with solutions </span></span><span class="TextRun SCXP164703501 BCX8" lang="EN-US" data-scheme-color="@353535,," data-usefontface="false" data-contrast="none"><span class="NormalTextRun SCXP164703501 BCX8">engineered for repeatable deployment through reference designs and integrated controls, designed to incorporate learnings as </span></span><span class="TextRun SCXP164703501 BCX8" lang="EN-US" data-scheme-color="@353535,," data-usefontface="false" data-contrast="none"><span class="NormalTextRun SCXP164703501 BCX8">deployments scale.</span></span></p></div><div> <div><strong>The Role</strong></div> <div> <p><span data-contrast="auto">As the <strong>High Voltage & Fault Handling</strong></span><span data-contrast="auto"> lead, you will be the technical owner responsible for the design, development, and integration of VEIR’s dielectric systems and fault handling architectures across all three of our product platforms. You will lead and manage a small, highly specialized team of engineers focused on ensuring VEIR’s superconducting cable systems operate safely, reliably, and predictably under both normal operating conditions and electrical fault events.</span><span data-ccp-props="{}"> </span></p> <p><span data-contrast="auto">This role combines deep technical expertise with hands-on people leadership. You will set technical direction, guide critical design and architecture decisions, and coach a small team through complex, high-impact engineering challenges. You will serve as the functional “owner” of dielectric performance and fault response at VEIR, ensuring insulation systems, protection concepts, and recovery strategies are robust, scalable, and tightly integrated with the broader system design.</span><span data-ccp-props="{}"> </span></p> </div> </div> <p><strong><span data-contrast="auto">In Your First 3–6 Months, You Will</span></strong><span data-ccp-props="{}"> </span></p> <ul> <li><span data-contrast="auto">Develop a deep understanding of VEIR’s dielectric designs, high voltage test strategy and capabilities, fault handling concepts, and protection strategies across all product lines.</span><span data-ccp-props="{}"> </span></li> <li><span data-contrast="auto">Apply your expertise in dielectric systems, insulation design, high voltage testing, and fault behavior to guide design tradeoffs and support active builds and testing.</span><span data-ccp-props="{}"> </span></li> <li><span data-contrast="auto">Lead and manage a small team of engineers, establishing clear goals, responsibilities, and expectations while fostering a culture of technical excellence and accountability.</span><span data-ccp-props="{}"> </span></li> <li><span data-contrast="auto">Build strong cross-functional partnerships with conductor assembly, cryogenics, controls, mechanical design, and systems integration teams.</span><span data-ccp-props="{}"> </span></li> <li><span data-contrast="auto">Define technical deliverables, design milestones, and validation plans for dielectric and fault handling systems across each product platform through internal and external test campaigns.</span><span data-ccp-props="{}"> </span></li> <li><span data-contrast="auto">Lead the development of internal high voltage test capabilities and manage test campaigns with external test facilities.</span><span data-ccp-props="{}"> </span></li> <li><span data-contrast="auto">Identify technical risks related to insulation integrity, fault response, and system recovery, and drive mitigation plans.</span><span data-ccp-props="{}"> </span></li> <li><span data-contrast="auto">Lead technical design reviews and fault-focused discussions, helping teams converge on safe, manufacturable, and reliable solutions.</span><span data-ccp-props="{}"> </span></li> </ul> <p><strong><span data-contrast="auto">In Your First Year, You Will</span></strong><span data-ccp-props="{}"> </span></p> <ul> <li><span data-contrast="auto">Own the technical roadmap for dielectric design and fault handling across all VEIR products.</span><span data-ccp-props="{}"> </span></li> <li><span data-contrast="auto">Lead your team to deliver validated dielectric systems and fault handling solutions that meet performance, safety, certification, and reliability requirements.</span><span data-ccp-props="{}"> </span></li> <li><span data-contrast="auto">Establish and evolve engineering standards, design documentation practices, and testing methodologies, including the