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- 153 000 $ – 272 500 $
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Power Electronics Controls Engineer, Energy Storage
Исключительная вакансия в одной из самых инновационных компаний в сфере энергетики. Высокая заработная плата, работа над передовыми технологиями в Сан-Франциско и значимый вклад в экологическую устойчивость делают эту позицию очень привлекательной для экспертов.
Сложность вакансии
Высокая сложность обусловлена требованиями к глубоким научным знаниям (MSc/PhD), владению сложными топологиями (LLC, DAB, ANPC) и опытом работы с промышленными системами накопления энергии. Работа в R&D среде требует умения справляться с неопределенностью и проектировать системы с нуля.
Анализ зарплаты
Предлагаемый диапазон ($153k – $272k) полностью соответствует и даже превышает рыночные показатели для Senior/Staff инженеров в Сан-Франциско. Верхняя граница диапазона значительно выше медианы, что отражает высокую ценность узкой специализации в силовой электронике.
Сопроводительное письмо
I am writing to express my strong interest in the Power Electronics Controls Engineer position at Redwood Materials. With a deep background in high-power conversion and control theory, I am inspired by Redwood’s mission to localize the battery supply chain and modernize the grid through circular asset integration. My experience in developing advanced control algorithms for bidirectional DC/DC and AC/DC systems aligns perfectly with your goal of building software-defined power ecosystems.
In my previous work, I have extensively used MATLAB/Simulink and PLECS to design robust closed-loop controllers and have a proven track record of implementing these on DSPs using C. I am particularly excited about the opportunity to work on grid-forming technologies and multi-level architectures like ANPC within your San Francisco R&D team. I am confident that my technical expertise in resonant topologies and HIL validation will contribute significantly to the reliability and efficiency of your next-generation BESS.
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Описание вакансии
About Redwood Materials
Redwood is localizing a global battery supply chain that seamlessly integrates recovery, reuse, and recycling—keeping critical minerals in circulation and driving the energy transition. Founded in 2017,we’re delivering low-cost and large-scale energy storage and producing battery materials in the U.S. for the first time, all from batteries we already have.
The Redwood Vision: Modernizing the Grid
Imagine being at the epicenter of the next great industrial shift. Just as the electric vehicle revolution redefined the car as a software-defined machine, Redwood Materials is redefining the global energy grid. We aren’t just managing batteries; we are building the "nervous system" for a circular energy economy.
Our San Francisco R&D team is architecting the transition from static, hardware-heavy infrastructure to dynamic, software-controlled ecosystems. We are proving that a sustainable, 100% renewable grid isn't just a goal—it’s a technical reality powered by superior control intelligence. We are looking for the "architects of the electron" to help us make fossil-fuel peaker plants a thing of the past.
Power Electronics Engineer
As a Power Electronics Controls Engineer, you will lead the design and implementation of the intelligent "brains" for our next-generation Battery Energy Storage Systems (BESS) and mixed-asset energy sites. You will be responsible for the entire journey of our control systems—from white-space conceptualization and advanced modeling to real-world grid impact. Your work will ensure that recycled and new battery assets work in perfect harmony to stabilize the grid and optimize high-power conversion at an industrial scale.
Responsibilities will Include:
- Software-Defined Power: Design and optimize advanced control algorithms for high-power BESS, focusing on grid-forming, grid-following, and complex multi-asset energy site synchronization
- High-Power Conversion Architecture: Develop bidirectional DC/DC and AC/DC control schemes for industrial-scale storage, ensuring peak efficiency, thermal stability, and safety across all operating modes
- Digital Twin Development: Build high-fidelity "Digital Twins" of power stages and grid environments using PLECS and MATLAB/Simulink to predict system behavior under extreme transient and fault conditions
- Virtual & Hardware Validation: Architect and lead comprehensive Hardware-in-the-Loop (HIL) testing environments (Opal-RT/Typhoon) to rigorously stress-test control firmware before deployment
- Circular Asset Integration: Collaborate with battery and systems teams to implement control strategies that optimize the performance and longevity of mixed-asset arrays, including the integration of recycled battery chemistries
- Cross-Functional Leadership: Partner closely with electrical, firmware, and thermal engineers to define the long-term roadmap for modern, resilient energy storage site controllers
Desired Qualifications:
- Educational Depth: MSc or PhD in Electrical Engineering with a specialization in Power Electronics Control Systems. (MSc requires 3+ years of relevant industry experience; PhD preferred)
- Topology Mastery: Deep theoretical and practical mastery of high-efficiency power conversion. You are an expert in resonant topologies (LLC, CLLC, DAB) and advanced multi-level architectures, specifically Flying Capacitor (FC) and Active Neutral Point Clamped (ANPC)
- Control Theory Expertise: Proven ability to design robust closed-loop controllers (Bode, Nyquist, State-Space) and implement them effectively on digital signal processors (DSPs) or microcontrollers
- Modern Toolchain:
+ Expert-level MATLAB/Simulink and PLECS for modeling and simulation.
+ Strong proficiency in C for real-time embedded systems.
+ Experience with Python for automation, scripting, and data analysis.
- Proactive Innovation: A self-driven attitude with the ability to navigate the ambiguity of a fast-paced R&D environment. You enjoy building the framework as much as you enjoy writing the code
- Grid Standards: Familiarity with grid-interconnection codes (e.g., IEEE 1547, UL 1741) and their implications for controls development is highly desirable
Physical Requirements:
- Ability to perform the essential job functions consistent safely and successfully with the ADA, FMLA and other federal, state and local standards, including meeting qualitative and/or quantitative productivity standards
- Ability to maintain regular, punctual attendance consistent with the ADA, FMLA and other federal, state, and local standards
Working Conditions:
- Environment, such as office or outdoors
- Ability to work in challenging working conditions which may include exposure to noise, dust, chemicals, and temperature extremes, while protected by PPE, for extended periods of time
- Essential physical requirements, such as climbing, standing, stooping, or typing
- Occasional work weekends, nights, or be on-call as a regular part of the job
- Occasional travel requirements
In accordance with California pay transparency laws, the salary range for this position is listed below. Actual compensation may vary based on a variety of factors, including experience, education, and skills.
California Pay Range:
$153,000—$272,500 USD
The position is full-time. Compensation will be commensurate with experience.
We collect personal information (PI) from you in connection with your application for employment with Redwood Materials, including the following categories of PI: identifiers, personal records, professional or employment information, and inferences drawn from your PI. We collect your PI for our purposes, including performing services and operations related to your potential employment. If you have additional privacy-related questions, please contact us at privacy@redwoodmaterials.com.
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Навыки
- Power Electronics
- Control Theory
- MATLAB
- Simulink
- PLECS
- C++
- Python
- DSP
- Embedded Systems
- HIL
- OPAL-RT
- Typhoon HIL
- BESS
- Grid-forming
- LLC
- DAB
- ANPC
Возможные вопросы на собеседовании
Проверка глубоких знаний силовой электроники и понимания преимуществ конкретных архитектур для BESS.
Можете ли вы сравнить топологии ANPC и Flying Capacitor с точки зрения эффективности и сложности управления для промышленных инверторов?
Оценка навыков моделирования переходных процессов, что критично для стабильности сети.
Как вы подходите к моделированию переходных процессов и сценариев неисправностей в PLECS для обеспечения надежности системы?
Проверка практического опыта работы с встраиваемыми системами реального времени.
С какими основными трудностями вы сталкивались при реализации алгоритмов управления на DSP/микроконтроллерах с использованием C?
Важно для понимания того, как кандидат обеспечивает безопасность перед развертыванием на реальном железе.
Опишите ваш опыт настройки сред Hardware-in-the-Loop (HIL), таких как Opal-RT или Typhoon, для стресс-тестирования прошивок.
Проверка знаний отраслевых стандартов, необходимых для интеграции систем в общую электросеть.
Как требования стандартов IEEE 1547 или UL 1741 влияют на вашу стратегию разработки алгоритмов управления grid-following инверторами?
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- Страна
- США
- Зарплата
- 153 000 $ – 272 500 $