Company Overview
Kairos Power is a new nuclear energy technology and engineering company whose mission is to enable the world’s transition to clean energy, with the ultimate goal to dramatically improve people’s quality of life while protecting the environment. This goal will be accomplished through the commercialization of the fluoride-salt-cooled, high-temperature reactor (FHR) that can be deployed with robust safety, affordable costs, and flexible operation to accommodate the expansion of variable renewables.
Job Summary
Kairos Power is offering an exciting opportunity for students to join our Electrical Engineering team as an intern for Summer 2027. This internship provides a unique, hands-on experience supporting the design, implementation, testing, commissioning, and operation of instrumentation and control systems for our test reactor. Interns will contribute to the development of the Kairos Power Fluoride Salt-Cooled High Temperature Reactor (KP-FHR) while working alongside multidisciplinary engineering teams on measurement instrumentation, automated digital control systems, and process automation technologies.
General Responsibilities
- Assist in the design, implementation, testing, commissioning, and operation of instrumentation and control systems supporting the Kairos Power test reactor.
- Support development, integration, and maintenance of measurement instrumentation and automated digital process control systems.
- Collaborate with multidisciplinary engineering teams to ensure effective integration of electrical, instrumentation, and control systems.
- Assist with troubleshooting, testing, validation, and optimization of control systems to improve system performance and reliability.
- Perform data collection, analysis, interpretation, and documentation to support engineering and project objectives.
- Contribute to the preparation, review, and presentation of technical reports, engineering documentation, and project updates.
- Support laboratory testing, equipment commissioning, system validation, prototyping, and troubleshooting activities under the guidance of experienced engineers.
- Participate in team meetings, design reviews, and technical discussions while providing project updates and engineering input.
- Engage in training, mentorship, and professional development opportunities to strengthen technical knowledge and engineering skills.
- Maintain clear, accurate, and organized engineering documentation, laboratory notebooks, and project records.
- Perform other duties as assigned.
Qualifications
- Current student enrolled in and pursuing a B.S., M.S., or Ph.D. in Electrical Engineering or a related engineering discipline.
- Demonstrated application of technical skills outside of the classroom through laboratory work, research, extracurricular projects, personal projects, or prior internship/work experience is highly preferred.
- Experience with control system software such as LabVIEW, PLCs, or similar automation platforms.
- Knowledge of electrical and mechanical engineering principles.
- Experience with control system analysis, design, or industrial communication protocols is a plus.
- Proficiency with Microsoft Office applications (Outlook, Excel, Word, PowerPoint, etc.).
- Self-starter, critical thinking and problem-solving skills
- Proven team player with excellent verbal, written communication/presentation, and interpersonal skills
- Ability to work well in an integrated collaborative team environment, including frequent interactions with cross-functional teams
- Prioritizes and ensures safety of oneself and others
- Ability to proactively collect, manage and transfer knowledge
Knowledge, Skills & Abilities
- Working knowledge of electrical engineering, controls engineering, instrumentation, or related engineering principles acquired through academic coursework, laboratory experience, research projects, or prior internship experience.
- Basic understanding of electrical circuits, sensors, instrumentation, data acquisition, and automated control systems.
- Familiarity with industrial control systems, PLCs, LabVIEW, embedded systems, or similar automation technologies is desirable.
- Understanding of engineering fundamentals including system integration, troubleshooting, testing, validation, and verification principles.
- Ability to apply analytical thinking and engineering fundamentals to solve technical problems with guidance from experienced engineers.
- Ability to collect, organize, analyze, and interpret technical data to support engineering decisions.
- Familiarity with engineering software, programming languages, or scripting tools commonly used for controls, automation, or data analysis.
- Ability to interpret engineering drawings, schematics, wiring diagrams, technical specifications, and engineering documentation.
- Strong attention to detail with the ability to produce accurate, organized, and high-quality technical work.
- Effective verbal, written, and interpersonal communication skills with the ability to collaborate within multidisciplinary engineering teams.
- Demonstrated initiative, curiosity, and willingness to learn new engineering concepts, software tools, laboratory techniques, and control system technologies.
- Strong organizational and time management skills with the ability to manage multiple assignments and meet project deadlines.
- Ability to adapt to changing priorities in a fast-paced engineering and research environment.
- Commitment to safety, integrity, continuous learning, and professional development.
- Ability to proactively document, organize, and share technical knowledge with teammates and mentors.
Physical Conditions
- Remaining in a stationary position, often standing, or sitting for prolonged periods
- Moving about to accomplish tasks or moving from one worksite to another
- Communicating with others to exchange information
- Use hand tools
Environmental Conditions
- General office environment
- Accessing the accuracy, neatness and thoroughness of the work assigned
- High-concentration, demanding and fast-paced
Safety and PPE
- Reading and interpreting hazardous warning signs
- Reporting issues with equipment or unsafe conditions
- Wearing proper PPE, to include face mask, face shields, gloves, safety shoes
The hourly range for this position is $30-$34 for employees working onsite at our Alameda, CA headquarters. The range provided in this job posting represents the typical range or starting rate of candidates hired in California. Factors that may be used to determine your actual salary may include your education, experience, knowledge, skills, abilities, the market data for your work location, and a comparison to other employees already in the role.
About our Benefits
We know that we have some of the most talented and dedicated employees, and we believe in rewarding them accordingly. If you work here, full-time employees (excludes interns) expect to have access to the benefits below:
- Competitive compensation packages
- Medical, dental and vision benefits for employees and their dependents
- Paid Vacation
- 401(k) and pre-tax health insurance, dependent care, and commuter benefits (FSA)
Kairos Power is committed to building a diverse workforce that reflects the communities where we do business. Kairos Power is an equal opportunity employer. All qualified applicants will receive consideration for employment without regard to race, color, religion, gender, gender identity or expression, sexual orientation, national origin, genetics, disability, age, or veteran status. We actively welcome people of different experiences, abilities, and perspectives.
Kairos Power participates in E-Verify.
Candidates only, no recruiters or agencies please.
Note: You are applying for a position that is located in a facility that handles information that is subject to export control restrictions by the Department of Energy under 10 CFR Part 810. To work in this facility, you need to be authorized by the Department of Energy to access Part 810-controlled information. Foreign nationals who are citizens of countries that are not on the Department of Energy’s general authorization list (link below) are not permitted to work in our facility unless the Department of Energy issues an export control license to the company to permit that individual to have access to Part 810-controlled information. The following questions are intended to determine the licensing requirements that may apply. https://www.law.cornell.edu/cfr/text/10/appendix-A_to_part_810
Skills Required
- Current student pursuing B.S., M.S., or Ph.D. in Electrical Engineering or related discipline.
- Demonstrated application of technical skills via lab work, research, projects, or prior internships.
- Experience with control system software such as LabVIEW, PLCs, or similar automation platforms.
- Knowledge of electrical and mechanical engineering principles.
- Experience with control system analysis, design, or industrial communication protocols.
- Proficiency with Microsoft Office applications (Outlook, Excel, Word, PowerPoint).
- Ability to interpret engineering drawings, schematics, wiring diagrams, and technical documentation.
- Strong verbal, written, and interpersonal communication and teamwork skills.
- Commitment to safety and ability to follow PPE and lab safety procedures.
- Ability to collect, organize, analyze, and document technical data.
What We Do
Kairos Power has a mission to enable the world’s transition to clean energy, with the ultimate goal of dramatically improving people’s quality of life while protecting the environment. We are an engineering company focused on the delivery of a clean, affordable and safe energy solution through the integrated design, licensing and demonstration of advanced reactor technology. Growing from a broad research effort at U.S. universities and national laboratories, Kairos Power was founded to accelerate the development of an innovative nuclear technology that has the potential to transform the energy landscape in the United States and internationally. Kairos Power is focused on reducing technical risk through a novel approach to test iteration often lacking in the nuclear space. Our schedule is driven by the goal of a U.S. demonstration plant before 2030 and a rapid deployment thereafter. The challenge is great, but so too is the opportunity.


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