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Bidirectional Charging Jobs (NOW HIRING)

Sr. Power Electronics Engineer

Torrance, CA · On-site

$112K - $138K/yr

... charger, DC-DC converter, DC-AC inverter product and et al. This position will be located out of ... Experience with bidirectional power conversion * Experience in EMI/EMC filter design for power ...

Sr. Power Electronics Engineer

Torrance, CA

$112K - $138K/yr

... charger, DC-DC converter, DC-AC inverter product and et al. This position will be located out of ... Experience with bidirectional power conversion * Experience in EMI/EMC filter design for power ...

Staff Power Electronic Controls Engineer

Torrance, CA · On-site

$117K - $138K/yr

... lightning-fast EV charging to smart home energy grids and the core power electronics within ... bidirectional residential systems, and onboard vehicle power. * Virtual Prototyping: Utilizing ...

Staff Power Electronic Controls Engineer

Torrance, CA · On-site

$117K - $138K/yr

... lightning-fast EV charging to smart home energy grids and the core power electronics within ... bidirectional residential systems, and onboard vehicle power. * Virtual Prototyping: Utilizing ...

Staff Power Electronic Controls Engineer

Torrance, CA · On-site

$115K - $136K/yr

... lightning-fast EV charging to smart home energy grids and the core power electronics within ... bidirectional residential systems, and onboard vehicle power. * Virtual Prototyping: Utilizing ...

Senior Staff Product Manager

Reno, NV · On-site

$126K - $166K/yr

Deep understanding of bidirectional inverter design, and grid-supportive functionalities (e.g ... Experience integrating energy storage systems (ESS), EMS platforms, and managing charge/discharge ...

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Showing results 1-20

Bidirectional Charging information

See salary details

$23K

$127.6K

$192.5K

How much do bidirectional charging jobs pay per year?

As of Jun 24, 2026, the average yearly pay for bidirectional charging in the United States is $127,636.00, according to ZipRecruiter salary data. Most workers in this role earn between $112,000.00 and $159,000.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a Bidirectional Charging Engineer, and why are they important?

To thrive as a Bidirectional Charging Engineer, you need a solid background in electrical engineering, power systems, and experience with vehicle-to-grid (V2G) technology, usually supported by a relevant engineering degree. Familiarity with EV charging standards, grid communication protocols, and tools like MATLAB/Simulink or power system simulation software is commonly required. Strong problem-solving abilities, attention to detail, and effective teamwork are important soft skills in this role. These competencies ensure safe, efficient integration of bidirectional charging systems with the grid, supporting innovation and reliable energy management.

What are some typical challenges faced by professionals working in bidirectional charging roles within the electric vehicle (EV) industry?

Professionals in bidirectional charging roles often navigate challenges such as integrating new technology with existing electrical infrastructure, ensuring compliance with evolving industry standards, and addressing cybersecurity concerns. They frequently collaborate with utility companies, EV manufacturers, and software developers to enable vehicle-to-grid (V2G) capabilities. Staying current with rapidly changing regulations and managing cross-functional teams are also key aspects. These challenges make strong problem-solving skills and adaptability essential in this field.

What is the difference between Bidirectional Charging vs Electric Vehicle (EV) Technician?

AspectBidirectional ChargingElectric Vehicle (EV) Technician
Required CredentialsCertification in EV charging systems, electrical safetyASE or manufacturer-specific EV certifications, electrical skills
Work EnvironmentCharging stations, electrical infrastructure sitesVehicle repair shops, service centers
Industry UsageElectric vehicle infrastructure, energy managementVehicle maintenance, diagnostics

While both roles involve electric vehicle technology, Bidirectional Charging focuses on managing energy flow between EVs and the grid, requiring knowledge of electrical systems and energy management. EV Technicians primarily diagnose and repair EVs, including charging components. Understanding both roles helps in selecting the right career path or service expertise in the EV industry.

What is bidirectional charging?

Bidirectional charging is a technology that allows electric vehicles (EVs) to both receive power from the grid to charge their batteries and send stored energy back to the grid or to a home. This two-way flow of electricity enables vehicle-to-grid (V2G) and vehicle-to-home (V2H) applications, offering benefits such as energy cost savings, grid stabilization, and backup power during outages. As the adoption of EVs grows, bidirectional charging is becoming an important part of smart energy systems.
Principal Systems Engineer - POC Devices

Principal Systems Engineer - POC Devices

Nova Biomedical

Waltham, MA

Other

Medical, Dental, Vision, Retirement, PTO

Posted 16 days ago


Job description

Nova Biomedical: One Global Brand. One Vision. Together under one name.

Advanced Instruments and Nova Biomedical are now united under one brand, Nova Biomedical, marking a major milestone in our journey to deliver greater value to our customers. By combining our strengths, we're accelerating innovation, supporting critical workflows, and delivering world-class service across the biopharmaceutical and clinical markets.

About the company

At Nova Biomedical, were not just building instruments, were powering breakthroughs that improve lives. Our smart, science-driven solutions are trusted in over 100 countries to speed drug development and enhance patient care.

Our integration brings together more than 70 years of scientific excellence with Novas cutting-edge innovation, forming a powerhouse of precision, purpose, and possibility. With FDA-registered, ISO-certified manufacturing, more than 125 FDA approvals, and industry-trusted diagnostics, were setting new standards in quality and reliability. Nova Biomedical is proud to be a global leader in osmolality testing and biotechnology and in vitro diagnostic (IVD) instrumentation, dedicated to advancing patient care and scientific discovery with a legacy that continues to shape the future of life sciences.

With headquarters in Norwood and Waltham, Massachusetts, and a global team of nearly 2,000 employees, were building a collaborative, empowered culture grounded in shared values: Customer Centricity, Ingenuity, Ownership & Accountability, Collaboration, and Integrity.

Working at Nova Biomedical means joining a mission-driven organization where your contributions matter. Whether you're in engineering, science, manufacturing, or support, youll be part of a team that values innovation, invests in your growth, and is committed to making a real-world impact on global health.

Explore whats next with us at novabiomedical.com or aicompanies.com

About the role

The Principal Systems Engineer is responsible for defining and owning the end-to-end system architecture for Nova Biomedical point-of-care (POC) meters. This role ensures that product requirements are translated into robust, scalable, and compliant system designs that meet clinical, regulatory, and business needs. The position serves as the technical authority across hardware, software, firmware, consumables, connectivity, and manufacturing interfaces. The role exists to ensure system integrity, traceability, and long-term platform sustainability across the POC glucose portfolio.

If youre passionate about systems engineering and want to be part of a team that is shaping the future of life sciences, wed love to hear from you, apply today!

What youll do

  • Define, document, and maintain the overall system architecture for Nova Biomedical POC glucose meters, ensuring alignment with product requirements, regulatory standards, and platform strategy
  • Translate user needs, clinical requirements, and regulatory inputs into clear system-level requirements, interfaces, and design constraints
  • Lead system-level trade studies and architectural decisions involving hardware, firmware, software, consumables, algorithms, connectivity, and manufacturing processes
  • Own system decomposition, interface definitions, and allocation of requirements to subsystems, ensuring bidirectional traceability throughout the product lifecycle
  • Serve as the technical integrator across cross-functional teams, including R&D, Quality, Regulatory, Manufacturing, Supply Chain, and Service
  • Identify, assess, and mitigate system-level technical risks through analysis, modeling, and verification planning.
  • Support design verification, validation, and regulatory submissions by providing system rationale, architecture documentation, and technical justifications
  • Mentor and provide technical leadership to other systems and project engineers, promoting best practices in systems engineering discipline
  • Define and govern system architecture considerations for power management, wireless charging, and energy storage, ensuring safe, reliable operation across clinical, home, and manufacturing use cases
  • Lead system-level analysis and risk mitigation strategies related to battery thermal behavior and heat dissipation, including charging scenarios, environmental extremes, and long-term reliability to ensure patient safety and regulatory compliance

What we are looking for in you

  • Minimum of 10 years of experience in systems engineering, product architecture, or technical leadership roles within regulated medical device environments
  • Demonstrated experience defining and owning system architectures for complex electromechanical and software-driven products
  • Strong working knowledge of medical device development processes, including design controls, risk management (ISO 14971), and systems engineering standards
  • Experience working with cross-functional teams spanning hardware, software, firmware, consumables, manufacturing, and quality disciplines
  • Proven ability to manage complex technical tradeoffs and drive architectural decisions in a fast-paced development environment
  • Strong analytical, problem-solving, and technical communication skills
  • Proficiency with requirements management and system documentation tools
  • Bachelors degree in Electrical Engineering, Computer Engineering, Biomedical Engineering, or a related technical field required.

Physical Requirements for this role include:

  • Prolonged periods of sitting
  • Ability to lift up to 25lbs
  • Ability to wear PPE

Why work for Nova Biomedical

  • Flexible Medical, Dental, & Vision Coverage
  • Competitive 401k company match
  • Bonus Program, Generous PTO and paid holidays
  • Generous Tuition reimbursement
  • Hybrid and flexible work arrangements
  • Professional development, engagement and events
  • Company marketplace for lunch and snacks in our Norwood, MA, Billerica, MA and Westbrook, ME offices
  • Company subsidized cafeteria in our Waltham, MA office

Work Location: On site in our Waltham Office

Targeted Salary Range: $155,000 - $190,000/year

Nova Biomedical believes in transparency and integrity throughout all we do, including compensation. The provided salary range for this role represents the expected base salary or hourly rate for this opening. Actual compensation will be commensurate with the candidates experience and may vary based on individual factors such as location, skills, and education.

EEO Statement:

Nova Biomedical takes pride in being an equal opportunity employer committed to hiring a diverse and inclusive workforce. As a part of our commitment to a diverse and inclusive workforce, Nova Biomedical will continue to take steps to assure that recruitment, hiring, assignment, promotion, compensation, and all other personnel decisions are made and administered without regard to race, religion, color, national origin, citizenship, sex, sexual orientation, gender identity, gender expression, veteran status, age, mental or physical disability, genetic information or any other protected class.

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