Hitachi America

Research Intern, Hardware Implementation and Validation (Energy Storage and Power Electronics)

Hitachi America$104K — $114K *
Energy & Utilities
Less than 5 years of experience
Job Overview by Ladders

Qualifications

  • Currently enrolled in a PhD or MS program in Electrical Engineering, Power Engineering, or a related field.
  • Solid understanding of power systems and power electronics, including DC/DC converter control and dynamics.
  • Experience with battery and supercapacitor energy storage systems, including safe handling and testing practices.
  • Knowledge of power converter control, particularly classical loop design and optimization-based methods.
  • Hands-on laboratory experience with kilowatt scale power hardware, including troubleshooting skills.
  • Proficient in MATLAB/Simulink and Python for simulation to real-time design implementation.
  • Strong communication skills and collaborative attitude across disciplines.

Responsibilities

  • Build and operate a bench-scale hybrid energy storage system with components like batteries and DC/DC converters.
  • Implement power-split and energy management controllers on real-time hardware, evaluating control strategies under test conditions.
  • Design and execute validation campaigns, defining test cases and measuring system responses.
  • Analyze discrepancies between measured results and simulation models, updating the latter where necessary.
  • Recommend design updates based on experimental findings to improve system performance.
  • Document processes and findings for reproducibility and knowledge sharing.
  • Communicate research results through technical reports and presentations.

Benefits

  • Gain hands-on experience with cutting-edge energy storage technologies.
  • Work in an innovative lab focused on solving critical power engineering challenges.
  • Collaborate with a multidisciplinary team, enhancing professional growth and networking opportunities.
Full Job Description
Location:
Santa Clara, California, United States

Job ID:
R0144505

Date Posted:
2026-09-09

Company Name:
HITACHI AMERICA, LTD.

Profession (Job Category):
Administration & Facilities

Job Schedule:
Full time

Remote:
No

Job Description:

Title: Research Intern, Hardware Implementation and Validation (Energy Storage and Power Electronics)

Company: Hitachi America

Division: R&D | Strategic Solution Lab

Location: Santa Clara, CA

Status: Full time, 3-6 month internship

Summary

AI training and inference clusters produce large, fast, synchronized power swings. A single GPU rack can move more than half of its rated load in milliseconds, and when hundreds of racks move together the effect reaches the facility boundary and the grid. We are developing a hybrid energy storage system for data centers to protect upstream infrastructure and increase usable capacity.

We are seeking a Research Intern (Hardware Implementation and Validation) to take this system from design to hardware. You will own the implementation and validation of the storage system and its controllers, compare the design's predicted behavior against what the hardware actually does, and feed the differences back into the design. Where the measurements show that the architecture, sizing, or control law needs to change, you will propose and implement the change. This is a hands-on engineering role with a research component. Results are expected to be reported internally and, where appropriate, to feed conference publications and standards discussions.

Job Responsibilities
  • Build, commission, and safely operate a bench-scale hybrid energy storage system (batteries, supercapacitors, bidirectional DC/DC converters, common DC bus) with programmable loads and a real-time control platform.
  • Implement power-split and energy management controllers on real-time hardware and evaluate candidate control strategies head-to-head under repeatable transient test profiles.
  • Design and execute a validation campaign: define test cases from realistic load traces, instrument the bench at the required time resolution, and measure response time, bus voltage deviation, energy split, and state-of-charge behavior.
  • Compare measured results against simulation models, identify where the models are incomplete (converter dynamics, sensing and communication latency, storage non idealities), and update them.
  • Recommend and implement design updates to storage sizing, converter control bandwidth, and the interface between fast local control loops and the supervisory controller.
  • Document hardware, test procedures, and findings so the work can be reproduced and extended.
  • Communicate results via technical reports, presentations, and contributions to publications and patents as appropriate.

A Day in the Life
  • Align with technical leads on build milestones, test plans, and success metrics.
  • Work in the lab wiring, commissioning, and debugging converters, storage modules, and instrumentation.
  • Deploy a control design from simulation to the real-time target and run it against transient test profiles.
  • Analyze measurement data, compare it with model predictions, and propose the next design or model change.
  • Present progress through demos, written updates, and research discussions.

Requirements
  • Currently enrolled in a PhD program (preferred) or MS program in Electrical Engineering, Power Engineering, or a related field.
  • Solid fundamentals in power systems and power electronics: DC/DC converter topologies and control, DC bus dynamics, and protection.
  • Experience with battery and supercapacitor energy storage, including electrical and thermal characteristics, state-of-charge estimation, and safe handling and testing practices.
  • Experience with control of power converters or energy storage systems: classical loop design, droop control, and exposure to model predictive control or other optimization-based methods.
  • Hands-on laboratory experience building, commissioning, and debugging kilowatt scale power hardware, including use of oscilloscopes, power analyzers, and programmable loads or sources.
  • Proficiency in MATLAB/Simulink and Python, and the ability to move a control design from simulation to a real-time target.
  • Strong communication skills and ability to collaborate across disciplines.

Preferred Qualifications
  • Experience with real-time platforms such as Typhoon HIL, dSPACE, OPAL-RT, Speedgoat, or equivalent.
  • Experience with hybrid energy storage systems (battery plus supercapacitor) or microgrid energy management.
  • Familiarity with data center power distribution (UPS, PDU, 48 V and high-voltage DC rack buses) and relevant standards such as IEEE 1159, IEEE 1547, or OCP Open Rack specifications.
  • Experience with hardware-in-the-loop validation and model calibration against measured data.
  • Experience with embedded C or converter firmware.
  • Track record of publications, thesis work, or applied prototypes in power electronics, energy storage control, or DC microgrids.

Why This Role
  • Own a complete build, measure, and redesign loop on a system aimed at one of the fastest-growing power engineering problems in industry.
  • Work in a purpose-built innovation lab with high-resolution power measurement and a full energy storage stack.
  • Collaborate with a research-driven team spanning power hardware, controls, and machine learning, with real deployment pathways.

About Hitachi America

Hitachi America is a subsidiary of Hitachi, Ltd., a Japanese multinational conglomerate. They provide a wide range of products and services, including information technology, power systems, and social infrastructure. They work with clients in a variety of industries, including healthcare, transportation, and finance. They are committed to sustainability and social responsibility, and have implemented various initiatives to reduce their environmental impact.
Learn more about Hitachi America
Size
368,247 employees
Industry
Founded
1959
NASDAQ

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