About the role#
This is a 12-week paid summer internship program based in Raleigh, North Carolina. You will join our team for a full-time, hands-on learning experience. You will work on real projects that contribute to the next era of sustainable energy. Our recruiting team will match your application to a specific role within departments such as Distribution Transformers, R&D, or Supply Chain.
What you'll do#
- Solve real-world engineering challenges.
- Contribute to projects focused on sustainable energy.
- Collaborate with a global community of employees.
- Complete a structured 12-week learning program.
- Work independently and as part of a team.
What you'll need#
- You are currently pursuing a bachelor’s or master’s degree in Mechanical Engineering.
- You have existing work authorization to work for Hitachi Energy in the United States.
- You possess strong conceptual and analytical thinking skills.
- You work well within a team and across different cultures.
- You are self-motivated.
Location & details#
- Location: Raleigh, North Carolina.
- Term: Summer 2027.
- Schedule: Full-time.
- Modality: On-site or hybrid.
About Hitachi
Hitachi is a global company based in Tokyo, Japan. It operates across four sectors including digital systems, energy, mobility, and connective industries. The firm integrates information technology and operational technology to manage industrial systems and infrastructure. It maintains a workforce of over 280,000 employees across more than 140 countries.
How to get in at Hitachi
Securing an internship at Hitachi requires speed because early applicants are often reviewed before the pile grows. Intern Insider sends an instant alert the moment a role matching your target is published, which helps you apply among the first. This gives you a better chance of being seen by the hiring team. You can also improve your response rates by reaching out to the recruiters behind the company's roles directly. Intern Insider surfaces these specific contacts so you can ask about the role or request a referral. This direct approach often works better than sending an application into a general queue.



