Full-Time

Senior Manufacturing Engineer

Superconductor Power Terminations

Posted on 9/9/2026

Veir

Veir

51-200 employees

HTS-based superconducting transmission lines for grids

Compensation Overview

$145k - $165k/yr

+ Equity

Woburn, MA, USA

In Person

Travel to contract manufacturer and supplier sites is required as needed.

Bachelor's

Category
Manufacturing & Process Engineering (1)

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Requirements
  • At least 7 years of manufacturing engineering experience, including direct experience selecting, onboarding, and managing contract manufacturers for complex electromechanical or high-power assemblies.
  • Strong background in design for manufacturability and design for assembly for high-power systems such as busbars, connectors, terminations, cable assemblies, or power distribution hardware.
  • Experience developing incoming inspection and final test and qualification plans for electrical or electromechanical assemblies.
  • A track record of leading successful pilot builds and transitioning designs into scalable, cost-optimized production at a contract manufacturer.
  • Understanding of geometric dimensioning and tolerancing, root cause analysis using 8D, 5-Why, and fishbone methods, and process control methods including statistical process control and failure mode and effects analysis.
  • Hands-on experience establishing in-process inspection, chairing Material Review Board dispositions, and driving corrective and preventive action and 8D investigations at a contract manufacturer.
  • Supplier management and negotiation skills, including experience running contract-manufacturer requests for quotation or requests for proposal and performance scorecards.
  • Ability to travel to contract-manufacturer and supplier sites as needed.
  • A bachelor's degree in Mechanical Engineering, Electrical Engineering, Manufacturing Engineering, or a related field, or equivalent practical experience.
Responsibilities
  • Identify, evaluate, and onboard a contract manufacturer capable of producing the termination assembly at the required cost, quality, and volume.
  • Partner with the contract manufacturer and internal engineering team to optimize the termination assembly design for manufacturability, cost, and lead time.
  • Define and implement a quality strategy for the assembly, including incoming material inspection and qualification and finished-assembly test and qualification plans.
  • Establish in-process inspection at the contract manufacturer by defining inspection points, sampling plans, measurement and gauging methods, and first-article inspection requirements, and audit adherence and inspection records.
  • Develop test protocols for a high-power termination assembly, including dielectric or hi-pot testing, torque and connection integrity, thermal cycling, and contact resistance, to validate performance and safety.
  • Lead pilot builds at the contract manufacturer, resolve build and process issues through root-cause analysis, and feed learnings back into the design and work instructions.
  • Build the production process plan, including routers, work instructions, and fixturing and tooling strategy, in collaboration with the contract manufacturer.
  • Drive continuous improvement across pilot and early production builds toward sustainable cost, shorter lead time, and high-quality steady-state production.
  • Manage the ongoing contract-manufacturer relationship, including capability assessment, quoting and negotiation support, capacity planning, and issue escalation and resolution.
  • Interface with supply chain to qualify critical component and raw material suppliers for the termination assembly.
  • Create and maintain manufacturing documentation, including bills of materials, process flow diagrams, inspection plans, and non-conformance and corrective and preventive action processes.
  • Own the non-conformance loop with the contract manufacturer, run Material Review Board dispositions such as use-as-is, rework, repair, and scrap, and drive corrective and preventive actions to closure with effectiveness verification.
Desired Qualifications
  • Experience with cryogenic systems or components.
  • Experience with pressure-vessel design, fabrication, or qualification, such as ASME Section VIII.
  • Experience with data-center or critical-power infrastructure hardware.
  • Familiarity with high-voltage and high-current safety standards and testing, such as IEC or UL.

VEIR develops superconducting power transmission lines using high-temperature superconductors and ambient-air cooling to carry significantly more electricity in a smaller footprint. The lines can transmit 5 to 10 times more power than conventional cables, enabling dense urban grids and easier integration of renewables, data centers, and other high-demand facilities. It works by HTS materials reducing electrical resistance and an air-cooled system that maintains superconductivity without bulky cryogenics. The goal is to expand grid capacity with scalable, cost-efficient, and reliable infrastructure for urban loads and regional upgrades, differentiating itself with compact, air-cooled HTS cables.

Company Size

51-200

Company Stage

Series B

Total Funding

$117.1M

Headquarters

Woburn, Massachusetts

Founded

2019

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Simplify Jobs

Simplify's Take

What believers are saying

  • VEIR added Spiesshofer, Vigreux, and COO Greg Mongeau in August 2026.
  • The company says first adopters arrive soon after its 3-megawatt demonstration.
  • VEIR's hiring and procurement posts show active scaling toward manufactured commercial systems.

What critics are saying

  • Pilots in production data centers must prove cryogenic reliability before 2027 commercialization.
  • Superconducting cables face competition from medium-voltage distribution, DC backbones, and wide-bandgap power electronics.
  • Failure to secure first adopters after the 3-megawatt demo would freeze VEIR's funding narrative.

What makes Veir unique

  • VEIR delivered a 3-megawatt superconducting cable demo in Woburn on November 12, 2025.
  • Its low-voltage STAR system uses high-temperature superconductors and liquid nitrogen cooling.
  • Microsoft, National Grid Partners, and Breakthrough Energy Ventures back VEIR's grid and data-center platform.

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Benefits

Health Insurance

Dental Insurance

Vision Insurance

Unlimited Paid Time Off

Paid Holidays

Parental Leave

Stock Options

Mental Health Support

Growth & Insights and Company News

Headcount

6 month growth

3%

1 year growth

1%

2 year growth

0%
Yahoo Finance
Aug 6th, 2026
VEIR adds Spiesshofer and Vigreux to board as it scales superconducting power for AI data centres

VEIR, a US designer and manufacturer of superconducting data centre power delivery systems, has appointed Ulrich Spiesshofer and Jennifer Vigreux to its board of directors and Greg Mongeau as chief operating officer. The company is backed by Breakthrough Energy Ventures, National Grid Partners, and Microsoft's Climate Innovation Fund. VEIR develops superconducting power delivery systems designed to accelerate deployment and reduce infrastructure costs for data centres facing growing AI-era energy demands. Spiesshofer previously served as CEO of ABB from 2013 to 2019. Vigreux brings over 20 years of experience building commercial relationships and infrastructure supporting the global cloud and AI economy. The appointments come as VEIR transitions from technology development towards commercial deployments following its 3-megawatt demonstration.

Data Center Planet
Feb 12th, 2026
Microsoft Eyes HTS Tech for Efficient Data Centers

Microsoft eyes HTS tech for efficient data centers. February 12, 2026 Microsoft is exploring advanced high-temperature superconductors (HTS) as a potential game-changer for power efficiency in their data centers. These superconductors offer the promise of nearly lossless power delivery due to their ability to eliminate electrical resistance when maintained at cryogenic temperatures. Unlike conventional copper or aluminum wires, HTS can carry higher power densities without the accompanying heat losses. Alistair Speirs, General Manager of Azure infrastructure, highlighted the potential benefits of HTS systems, noting their ability to overcome the constraints of traditional power systems which require extensive infrastructure expansions. By reducing the spatial footprint needed for power distribution, HTS technology could lead to more compact and environmentally friendly data centers. Currently, Microsoft's investment in HTS is still in the early stages, as the cost and availability of superconducting materials present challenges. Microsoft has partnered with Veir, an HTS power delivery firm, which demonstrated promising results with a 3-megawatt transmission in a simulated environment. However, commercial deployment remains a distant goal. While the technology holds potential for a paradigm shift in data center power management, Speirs cautions that further testing and validation are needed to build confidence in HTS systems. Although Microsoft remains optimistic about future implementation, widespread commercial application is not expected any time soon. Thinking about your next software development? Agile software design, development and support.

Business Wire
Jan 29th, 2025
VEIR Closes $75M Series B to Deliver Superconducting Solutions for AI Data Centers and High-Capacity Power Lines, Driving Grid Resilience and Global Decarbonization

VEIR, a leader in superconducting power delivery, today announced the successful closing of an oversubscribed $75 million Series B led by Munich Re Ve

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Perovskite Solar Cells On Glass: Another Reason Why Fossil Fuels Are Toast

Perovskite solar cells have been tantalizing photovoltaic innovators since the early years of the 21st century. The perovskite promise of more power for less cost will help kick fossil fuels out of the picture, but getting the finicky material to behave has been a next-level challenge. Nevertheless, solutions are beginning to emerge, and one of them involves a centuries-old tried and true material — glass.The Promise Of Perovskite Solar CellsFor those of you new to the topic, perovskite (CaTiO3) is a naturally occurring calcium titanium oxide mineral, first identified in the 19th century. It lay about for the 20th century until researchers learned how to reproduce its structure in the lab, yielding synthetic perovksite solar cells at a relatively low cost (more CleanTechnica coverage is here).When disposed in a solution, perovskite solar materials lend themselves to low cost manufacturing processes. They can be painted, printed, sprayed or squirted as a thin film on different surfaces, including flexible ones.“In addition to being relatively inexpensive, the lab-grown factor can help to skirt silicon supply chain issues,” we noted earlier this year. “Perovskite solar cells lend themselves to low cost, fast throughput, high volume manufacturing processes

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Cleantech startup Veir has raised a $24.9 million Series A2 from investors including Breakthrough Energy Ventures and Congruent Ventures.