Design, create, and update control and automation programs for VEIR’s cryogenic lab systems and experiments.
Model and simulate cryogenic processes and develop corresponding process control algorithms.
Create network and electrical diagrams, control specifications, and algorithms for both subsystems and the overall system.
Specify, install, and manage piping, valving, and fittings for cryogenic experiments, as well as operate and direct testbeds for process validation.
Build and integrate sensors and instrumentation to monitor and control cryogenic process experiments.
Manage third-party software and electrical contractors to implement control system designs and ensure seamless integration.
Design and build control panels and electrical circuits for cryogenic delivery systems, ensuring safe and reliable operation.
Requirements
cryogenic
plc
labview
electrical
daq
engineering
You thrive on effectively managing multiple projects with competing priorities that require making decisions under pressure and working under tight deadlines
Experience with cryogenic systems and process dynamics
Experience in piping sizing, fabrication, and installation for cryogenic systems.
Proficient in PLC structured text and ladder logic programming, with experience in developing control panels and understanding electrical circuit drawings.
Skilled in using LabVIEW for standalone and real-time systems for control and data acquisition.
You are a highly motivated, self-starter with a positive approach to problem solving
You have experience with testing and validation against specification.
Basic electrical wiring and circuit troubleshooting skills, ensuring operational safety.
Knowledge of heat transfer, fluid mechanics, and real-time error-tolerant communication systems for monitoring and controlling cryogenic systems.
You are skilled in integrating sensors and developing control programs to monitor and optimize experimental setups.
You are an outstanding communicator (written and verbal) across all levels of the organization and can work effectively in a fast-paced collaborative environment.
Knowledge of programming languages for DAQ systems and experience in remote monitoring technologies.
Bachelor's degree in Chemical Engineering, Systems Engineering, or Controls and Industrial Engineering.
Capable of creating electrical circuit drawings, pinouts, and system diagrams, along with troubleshooting industrial communication protocols (Serial, OPC3, Profinet, EtherCAT).
You possess strong technical skills and an eye for detail, allowing you to troubleshoot, design, and optimize control systems for complex cryogenic processes.
You are highly curious and solutions-oriented, and excel at deconstructing complex problems into manageable components to develop effective solutions
Benefits
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Training + Development
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Interview process
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Visa Sponsorship
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Security clearance
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Company
Overview
Founded 2019
Year Established
The company was established in 2019 with the goal of rethinking electricity distribution.
5–10x More Power
Transmission Capacity
Their high-temperature superconducting lines can carry 5 to 10 times more power than traditional cables at the same voltage.
$75M Series B
Funding Raised
Raised a $75 million Series B in January 2025, backed by notable investors including Munich Re Ventures and Microsoft’s Climate Innovation Fund.
2023 Outdoor Demo
Transmission Validation
Conducted the first outdoor demonstration of an overhead superconducting line to validate long-distance, high-current transmission capabilities.
Developed high-temperature superconducting transmission lines using passive liquid nitrogen cooling for efficiency and compact design.
Engineers solutions for data centers, renewable energy developers, and grid operators to overcome transmission bottlenecks and simplify interconnection.
Its breakthrough evaporative cooling requires no compressors, enabling scalable overhead deployment rather than buried systems.
VEIR stands out by delivering utility-scale power transmission that fits within existing rights-of-way and accelerates AI-driven energy infrastructure deployment.
Culture + Values
Collaboration and openness
Innovation in the energy transition
Integrity and accountability
Customer-centric approach
Sustainability-driven mindset
Continuous learning and development
Environment + Sustainability
2050
Net Zero Target
Committed to achieving net-zero carbon emissions by the year 2050 through advanced and sustainable technologies.
Committed to reducing carbon emissions through advanced technology
Focus on renewable energy solutions for grid decarbonization
Development of energy-efficient products that support clean energy deployment
Investing in sustainable technology to minimize environmental impact
Partnering with organizations that share the goal of reducing global carbon footprint