High Power Energy Storage Application Engineer
San Diego, CaliforniaOverview
General Atomics pioneers technologies with the potential to change the world. Behind a talented global team of engineers, GA delivers safe, sustainable, and economical solutions to meet growing global demands. Our Engineers have an opportunity to work on first of a kind product lines within an incredible, dynamic environment.
Engineering positions typically require a bachelor’s degree, master’s degree or PhD in engineering or a related technical discipline from an accredited institution and progressive engineering experience. Candidates from mechanical, electrical, and aerospace engineering backgrounds must know the fundamentals of engineering system developments, requirements, testing, and integration before getting to the final stages of customer interface and project management.
Schedule: Full-Time Salary
Job Level: Mid-Level (3-7 years)
Travel: 0 - 25
Success Profile
What makes a successful High Power Energy Storage Application Engineer at General Atomics? Check out the top traits we’re looking for and see if you have the right mix.
- Analytical
- Collaborative
- Inventive
- Problem Solver
- Team Player
- Creative
Job Summary General Atomics (GA), and its affiliated companies, is one of the world’s leading resources for high-technology systems development ranging from the nuclear fuel cycle to remotely piloted aircraft, airborne sensors, and advanced electric, electronic, wireless and laser technologies.
General Atomics Electromagnetic Systems (GA-EMS) designs and manufactures first-of-a-kind electromagnetic and electric power generation systems. GA-EMS' expanding portfolio of specialized products and integrated system solutions support critical fleet, space systems and satellites, missile defense, power and energy, and process and monitoring applications for defense, industrial, and commercial customers worldwide.
We are pleased to announce an opportunity for a HIGH POWER ENERGY STORAGE APPLICATION ENGINEER to join our High Voltage Science and Capacitors team at our Rancho Bernardo location. This role is ideal for a highly motivated and skilled professional with expertise with supercapacitors, electrostatic capacitors, high power discharge circuits, high voltage, and pulsed-power systems, as well as a demonstrated ability to excel in a dynamic Research and Development (R&D) environment.
The selected candidate will report to the Manager of High Voltage Science and Capacitors and collaborate with a team of highly qualified professionals. Responsibilities include designing, prototyping, testing, and deploying advanced solutions; characterize energy storage materials, components and systems; playing a key role in the integration and support of high-power systems; developing safe and reliable control architectures; and standardizing data collection across experimental test equipment. Additionally, the candidate will contribute to the advancement of technologies within GA-EMS’ expanding product portfolio. This candidate ideally has a mix of mechanical and electrical engineering skills that will aid the development of advanced energy storage solutions using supercapacitors and dielectric film capacitors.
DUTIES AND RESPONSIBILITIES:
- Develop architectures, solutions, and test plans for innovative capacitor designs
- Perform thermal and electrical engineering analyses, circuit (LTSpice or equivalent, MATLAB) and hardware design, introduce test automation, and document test cells
- Develop, design, and build unique and specialized test hardware to characterize capacitors and supercapacitors
- Actively participate assembly and testing of capacitor and supercapacitor elements, devices, and arrays, develop code to analyze and interpret data, and record findings
- Develop large megajoule class energy storage systems using supercapacitors
- Participate in the design and selection of capacitors (both film and supercapacitor) for external customers
- Communicate findings to stakeholders and deliver technical presentations and reports
- Manage technical projects to ensure alignment with schedules, budgets, and organizational goals
- Develop supercapacitor management systems to enhance performance, diagnose health, and protect integrated systems
- Engage with customers, systems engineers, and stakeholders to define requirements, ensure compliance, and manage technical efforts
- Collaborate with manufacturing teams, engineers, and technicians to develop and support production processes
- Lead internal and external design reviews for systems, subsystems, and components
- May lead small cross-functional engineering teams on efforts involving high-power electronics, hardware, and system design
- Apply advanced concepts in electrical, pulsed power, and capacitor engineering to integrate components into complex systems
- Plan and execute technical efforts efficiently and strategically with general direction and minimal supervision
- Represent the organization as the primary technical contact on projects as needed
- Perform other duties as assigned or required
We recognize and appreciate the value and contributions of individuals with diverse backgrounds and experiences and welcome all qualified individuals to apply.
Job Qualifications:
- Typically requires a bachelor’s degree, master’s degree or PhD in engineering or a related technical discipline from an accredited institution and progressive engineering experience as follows; six (6) or more years of experience with a bachelor’s degree, four (4) or more years of experience with a master’s degree, or two (2) or more years with a PhD. May substitute equivalent engineering experience in lieu of education
- Experience with high-power electrical systems, including hands-on expertise with supercapacitors, power conversion, protection, and switching; power electronics and supplies; instrumentation and control electronics design; and guiding a design from development through production
- Expertise in electrochemistry, including cyclic voltammetry, galvanostatic charge-discharge, electrochemical impedance spectroscopy, and supercapacitor aging tests (e.g., long-term cycling stability)
- Familiarity with supercapacitor models and management systems
- Proficiency with electronic circuit simulation tools (e.g., LTSPICE or related), data analysis tools (e.g., MATLAB, Python), finite element analysis, and diagnostics programming languages (e.g., C/C++, C#)
- Demonstrated technical expertise and application of engineering principles, concepts, and theory, with the ability to organize, plan, schedule, and coordinate workloads to meet established deadlines or milestones
- Ability to quickly understand and accurately apply new concepts in an evolving project environment
- Strong communication, presentation, and interpersonal skills to enable effective collaboration across departments and with external professionals
- Customer-focused, with the ability to develop innovative designs and resolve advanced technical engineering challenges
- Capable of working independently and within a team environment
- Ability to obtain and maintain a Security Clearance is required
- Submission of a cover letter with the resume is desired
Salary:$98,100 - $171,398
Benefits
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Healthcare
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Pension, 401(k)/Retirement Plans
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Competitive Pay
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Multiple product lines means a variety of work
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Paid Time Off

“The company is growing, has a very good reputation and had open positions in my area of expertise (aircraft design/design methodology development).”– Peter, Senior Staff Engineer

“We don't ascribe to quotas; we do ascribe to securing the BEST talent to enrich our culture toward healthy diversification and active/viable community service. We are STEM advocates.”– Debra, CSSBB: Staff Engineer

“Every day is different, with different problems to solve and many programs to support. I am a problem solver and have always been motivated by the tough questions.”– Scott, Laser Scientist

“I work in the Components Engineering and Obsolescence Management Dept. Our efforts are saving General Atomics several millions of dollars by proactively leading and informing the company of all these decisions which significantly impact production, sustainment and new designs.”– John, Staff Engineer
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