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Robotic Engineer Jobs in California (NOW HIRING)

A Systems Robotics Engineer at Horizon Manufacturing Technology contributes to the development ... The main focus is on designing and implementing robotic control systems, functional safety, and ...

In this role, you will take ownership of complex diagnostics, repairs, and design improvements to keep our robotic systems running smoothly. You will work closely with AI and robotics engineers, as ...

A Systems Robotics Engineer at Horizon Manufacturing Technology contributes to the development ... The main focus is on designing and implementing robotic control systems, functional safety, and ...

Design, build, and bring into production new robotic systems supporting a range of manufacturing ... engineers who handle assembly design and parts integration * Work across both hardware/actuator ...

New

Develop production-quality software for autonomous robotic systems. * Implement autonomy algorithms in real-time embedded and Linux-based environments. * Optimize autonomy software for performance ...

Dexmate is building the foundation for physical AI, creating a unified platform that combines high-quality robotic hardware with a universal Physical AI OS. The Robot Learning Engineer will design ...

Be Seen First

... robotic systems across warehouse and industrial environments. This is a full-time, hands-on role focused on autonomy, navigation, and system integration. What You'll Do - Develop robotics software ...

Showing results 41-60

Robotic Engineer information

See California salary details

$28.6K

$104.2K

$166.8K

How much do robotic engineer jobs pay per year?

As of Aug 6, 2026, the average yearly pay for robotic engineer in California is $104,222.00, according to ZipRecruiter salary data. Most workers in this role earn between $82,400.00 and $125,300.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a robotic engineer, and why are they important?

To thrive as a Robotic Engineer, you need a solid background in mechanical engineering, electronics, computer science, and mathematics, typically supported by a relevant degree. Familiarity with programming languages like Python or C++, CAD software, and robotic operating systems (ROS) is often required, along with certifications in robotics or automation. Strong problem-solving abilities, teamwork, and effective communication make you stand out in multidisciplinary project environments. These skills are crucial for designing, building, and maintaining advanced robotic systems that meet complex industry needs.

Do robotic engineers make good money?

Robotic engineers typically earn competitive salaries that vary based on experience, education, and location. According to industry data, the median annual salary for robotic engineers is often above the national average for engineering roles, with higher earnings possible for those with specialized skills in automation, control systems, and programming. Many robotic engineers also benefit from opportunities in research, development, and manufacturing environments that offer additional compensation and benefits.

What is the difference between Robotic Engineer vs Mechanical Engineer?

AspectRobotic EngineerMechanical Engineer
Required CredentialsBachelor's in Robotics, Electrical, or Mechanical Engineering; certifications in robotics or automationBachelor's in Mechanical Engineering; Professional Engineer (PE) license often preferred
Work EnvironmentDesigning, programming, and testing robots in labs or manufacturing settingsDesigning and analyzing mechanical systems in various industries, including manufacturing and automotive
Industry UsageAutomation, robotics, manufacturing, aerospace

Robotic Engineers focus on designing and developing robotic systems, often requiring knowledge of programming and electronics. Mechanical Engineers have a broader scope, working on mechanical systems across multiple industries. Both roles share foundational engineering principles but differ in specialization and daily tasks.

Are robotic engineers in demand?

Robotic engineers are in high demand due to the increasing adoption of automation and robotics across industries such as manufacturing, healthcare, and logistics. They typically require skills in programming, systems integration, and knowledge of robotics hardware and software, making their expertise valuable in the evolving technology landscape.

What does a robotic engineer do?

A Robotic Engineer designs, builds, tests, and maintains robots and robotic systems used in a variety of industries, such as manufacturing, healthcare, and aerospace. They work with both hardware and software to create robots that can perform tasks autonomously or with human guidance. Their responsibilities also include troubleshooting, programming, and improving the efficiency and safety of robotic systems. Robotic Engineers often collaborate with other engineers and technicians to develop innovative solutions and integrate robots into existing processes.

What are some typical challenges a robotic engineer faces when integrating new robots into existing manufacturing systems?

Robotic Engineers often encounter challenges when integrating new robots into established manufacturing environments, such as ensuring seamless communication between new and legacy equipment, minimizing production downtime, and adapting robots to variable workflows. Effective troubleshooting and collaboration with cross-functional teams, including software developers and production managers, are key to overcoming these hurdles. Staying current with industry standards and flexible programming approaches can also help ease the integration process and maintain system efficiency.
What are the most commonly searched types of Robotic Engineer jobs in California? The most popular types of Robotic Engineer jobs in California are:
What cities in California are hiring for Robotic Engineer jobs? Cities in California with the most Robotic Engineer job openings:
Infographic showing various Robotic Engineer job openings in California as of August 2026, with employment types broken down into 81% Full Time, 13% Part Time, 2% Temporary, and 4% Contract. Highlights an 87% Physical, 4% Hybrid, and 9% Remote job distribution, with an average salary of $104,222 per year, or $50.1 per hour.

Robotics Engineer II

Relativity Space

Long Beach, CA • On-site

Other

Posted 19 days ago


Relativity Space rating

9.7

Company rating: 9.7 out of 10

Based on 8 frontline employees who took The Breakroom Quiz

1st of 71 rated aerospace companies


Job description

About the Team: 

Relativity Space pioneered large-scale additive manufacturing with our Terran 1 rocket, the largest 3D-printed object to fly. Now a distinct business unit within Relativity, Horizon Manufacturing Technologies is advancing next-generation manufacturing for aerospace and beyond. The team operates at the frontier of manufacturing innovation, where creativity meets capability. This is an environment where cutting-edge R&D is put into production, industrializing advanced manufacturing capabilities to solve customer problems. As member of the Horizon's Robotics Team, you'll work alongside welders, data scientists, and material scientists, creating an end-to-end additive manufacturing platform that serves a wide variety of applications. From exploring new materials to unlocking faster print speeds, to designing complex, organic geometries that can't be built any other way, it's high-impact work that sets the foundation for the future of advanced manufacturing.

About the Role:

A Systems Robotics Engineer at Horizon Manufacturing Technology contributes to the development, integration, and optimization of automation systems for our robotics manufacturing platform. The main focus is on designing and implementing robotic control systems, functional safety, and developing real-time systems to enhance operational efficiency and precision. Horizon's team is highly cross-functional, so a successful Systems Robotics Engineer owns projects while working with stakeholders in a dynamic R&D environment. Responsibilities include:

  • Coordinate and lead development projects for new devices, such as sensors, end effectors, and motion systems. Identify requirements, design solutions, develop and integrate with the existing robot cells to serve the needs of the manufacturing processes
  • Commissioning EtherCAT networks and safety systems using TwinCAT and TwinSAFE
  • Configuring Kuka robot systems, such as determining drive systems, connecting motors and peripheral devices, setting up SafeOp, and configuring I/O systems
  • Calibration and verification of robot cell operation, using industrial metrology and tracking systems
  • Design, fabrication, and debug of low voltage electrical enclosures
  • Support robot cell operation for both production and R&D applications, including debugging code and adjusting cell configuration parameters

About You:

  • Education: BS, MS, or PhD in Electrical Engineering, Mechanical Engineering, Computer Science, Robotics, or a related field, or self-taught with extensive hands-on experience
  • 3+ years of experience in robotics control systems: In-depth knowledge of designing, implementing, and optimizing control systems for industrial robotic applications.
  • Demonstrated ability to troubleshoot and resolve complex issues in automation systems, ensuring reliability and performance
  • Good communication and collaboration skills: Ability to effectively communicate technical concepts and work in cross-functional teams to achieve project goals.
  • Familiarity with protocols such as EtherCAT, CANbus, Ethernet/IP, PROFINET, and safety protocols (FSoE, profiSAFE) used in industrial automation
  • Experience with functional safety standards in industrial automation such as ISO13849 and ISO61508, as well as performing standardized risk assessment such as described in ISO12100
  • Experience with motion and kinematics, such as in the context of robot reachability studies, servo control, accuracy and calibration, and path planning
  • Proficiency with Git or other revision control methods

Nice to haves but not required:  

  • Experience with programming Structured Text and configuring Programmable Logic Controllers (PLCs) for industrial automation
  • Experience with CAD/CAM for electrical schematics and mechanical design
  • Experience with agile development methodologies: Familiarity with agile software development practices, including iterative development and continuous integration.
  • Experience with Control Theory and System Identification
  • Proficiency in C++, C#, Python, Javascript, and/or ROS
  • Experience with Linux based systems and bash scripting
  • Experience with advanced motion control techniques, such as trajectory planning, servo control, and kinematics calculations
  • Experience with computer vision techniques for enhancing automation capabilities, including object detection and tracking. E.g. sensor fusion techniques.
  • Experience with systems test engineering, Verification and Validation processes

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