1

Ev Integration Engineer Jobs (NOW HIRING)

System Integration Engineer

Palo Alto, CA · On-site

$196K/yr

We're looking for a Systems Engineer to own integration across the robot -- from decomposing high ... Background in robotics, EV powertrains, drones, or other dense electromechanical systems * Exposure ...

Position SummaryOptimal EV is seeking a hands-on Vehicle Integration & Validation Engineer to support the development, integration, testing, and validation of complete electric vehicle platforms.This ...

Showing results 21-40

Ev Integration Engineer information

See salary details

$44.5K

$124.3K

$173.5K

How much do ev integration engineer jobs pay per year?

As of Sep 11, 2026, the average yearly pay for ev integration engineer in the United States is $124,275.00, according to ZipRecruiter salary data. Most workers in this role earn between $104,000.00 and $140,000.00 per year, depending on experience, location, and employer.

What is an EV Integration Engineer?

EV Integration Engineers are professionals who specialize in integrating electric vehicle (EV) systems and components into vehicles or infrastructure. They work on ensuring that electric motors, battery systems, charging equipment, and related technologies function seamlessly together. Their responsibilities often include testing, troubleshooting, and optimizing the performance of EV systems to meet safety and regulatory standards. These engineers play a key role in the development and deployment of electric vehicles by bridging the gap between design, manufacturing, and real-world application.

What are the key skills and qualifications needed to thrive as an EV Integration Engineer?

To thrive as an EV Integration Engineer, you need a strong background in electrical engineering, automotive systems, and experience with EV powertrains, often supported by a relevant degree. Proficiency with CAD software, vehicle communication protocols (such as CAN), and familiarity with diagnostic tools or industry standards (like ISO 26262) is essential. Strong problem-solving abilities, teamwork, and effective communication help you collaborate across multidisciplinary teams and address complex integration challenges. These skills ensure that new electric vehicle systems are safely and efficiently integrated, meeting performance, safety, and regulatory requirements.

What are some common challenges faced by an EV Integration Engineer when working with cross-functional teams?

As an EV Integration Engineer, one common challenge is effectively communicating technical requirements and constraints to colleagues in areas like software, hardware, and manufacturing. Integrating new electric vehicle components often requires close collaboration with teams that have different priorities and expertise, which can lead to misalignment or delays. Proactively building strong relationships and regularly aligning on project goals can help ensure smooth integration and successful product launches.

What is the difference between Ev Integration Engineer vs EV System Designer?

AspectEv Integration EngineerEV System Designer
CredentialsElectrical engineering degree, certifications in EV systemsElectrical or mechanical engineering degree, certifications in system design
Work EnvironmentField testing, system integration, troubleshootingDesign development, simulation, CAD modeling
Industry UsageAutomotive, renewable energy, EV infrastructureAutomotive, energy storage, EV manufacturing

The Ev Integration Engineer focuses on implementing and testing EV systems in real-world environments, ensuring compatibility and performance. In contrast, the EV System Designer primarily works on creating and developing the system architecture and design. Both roles require electrical expertise and are vital in the EV industry, but they differ in their focus on practical integration versus design development.

What are popular job titles related to Ev Integration Engineer jobs?

For Ev Integration Engineer jobs, the most frequently searched job titles are:

Infographic showing various Ev Integration Engineer job openings in the United States as of September 2026, with employment types broken down into 1% Internship, 87% Full Time, 9% Part Time, and 3% Contract. Highlights an 86% Physical, 4% Hybrid, and 10% Remote job distribution, with an average salary of $124,275 per year, or $59.7 per hour.

System Integration Engineer

Palo Alto, CA • On-site

$196K/yr

Other

Posted 16 days ago


Job description

About Mind:

Mind Robotics is building Physical AI for real-world industrial deployment, starting with the factory floor. We believe the hardest problems in AI are solved when researchers and engineers are hands-on with the physical world every day - and we're looking for people who are passionate about robotics, value ownership, and are excited to tackle difficult problems. Join us if you want to move beyond digital intelligence and put intelligence into motion.

About the team and the role:

At Mind Robotics, we're building generalized physical AI — robotic systems capable of dexterous, adaptive, and reasoning-intensive work in real-world industrial environments. Systems engineering is the discipline that holds it all together: translating mission requirements into hardware reality and ensuring every subsystem behaves as a coherent whole.

We're looking for a Systems Engineer to own integration across the robot — from decomposing high-level behaviors into measurable specs, to debugging the hard interactions that only surface when everything is running together. You'll collaborate with hardware and firmware teams on system architecture, and define and own the specs for how the robot behaves. You'll be on the bench as much as you're in a doc, sitting at the intersection of mechanical, electrical, firmware, and controls, accountable for the system from concept through field deployment.

Responsibilities:
  • Contribute to architectural decisions for new robot subsystems — communication protocols, control strategies, and hardware-software partitioning — alongside firmware/controls, mechanical, and electrical teams

  • Collaborate with electrical, mechanical, safety, and firmware teams to define interfaces and validation strategies early, and lead calibration and tuning efforts to hit performance targets

  • Define software requirements from high-level system requirements, using first-principles analysis and hardware/model-based testing — from top-level robot performance targets down to subsystem budgets and interfaces

  • Prototype and characterize components and full systems; design early builds to de-risk new technologies before committing to production architecture

  • Debug hardware-software interactions hands-on during design, launch, and field deployment — pulling and analyzing logs, adding debug instrumentation/tracing to firmware and software, and recompiling and re-flashing to isolate root cause — and surface nth-order impacts of electrical, software, or process changes before they become problems

  • Analyze failure modes, complete DFMEAs/HARAs, and define system-level test plans from bench testing through field deployment

  • Drive readiness reviews, sign-off, and post-launch monitoring across firmware, hardware, controls, reliability, and manufacturing stakeholders

Requirements:
  • Degree in Computer Engineering, Electrical Engineering, Mechanical Engineering, or equivalent experience

  • 2+ years in systems engineering or a cross-disciplinary hardware role involving complex electromechanical or robotic products

  • Strong hardware and software fundamentals — able to bridge electrical schematics, embedded communication protocols, and firmware architecture; comfortable with a scope and multimeter during bring-up

  • Hands-on experience debugging complex subsystems involving networked microprocessors and software-controlled electromechanical devices — comfortable reading, modifying, and recompiling C/C++ firmware/software yourself to add debug logging, instrument code paths, and iterate on a fix, not just reading code to hand off to firmware engineers

  • Experience defining requirements from high-level system behaviors and making them measurable and testable; able to write scripts or tooling to improve bring-up and validation efficiency

  • Proficient in data analysis and visualization — able to instrument systems, extract signal from noisy hardware data, and communicate findings clearly across mechanical, electrical, and software teams

  • You are comfortable with ambiguity, move fast, and have an "engineering curiosity" that drives you to understand how the entire system works, not just your part

Nice to Haves:
  • Background in robotics, EV powertrains, drones, or other dense electromechanical systems

  • Exposure to manufacturing self-test design or service diagnostics

  • Experience with functional safety standards (ISO 26262, IEC 61508) or automotive/robotics validation processes

  • Experience in failure modes analysis, HARA, and FTA

#J-18808-Ljbffr