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Entry Level Embedded Software Engineer Jobs in Arcadia, CA

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Firmware/Software Engineer

Van Nuys, CA · On-site

$100K - $160K/yr

We are seeking a Firmware or Embedded Software Engineer to join our small engineering team. This role will work closely with other firmware engineers, electrical engineers, and production personnel ...

Sr Embedded Software Engineer

Los Angeles, CA · On-site

$133K - $175K/yr

- Experience with OpenWrt - Experience with Wi-Fi driver development - Experience with Qualcomm open-source Wi-Fi driver development (ath9k-ath12k) - Experience with Qualcomm closed-source Wi-Fi driver ...

Experience developing embedded or real-time software systems * Experience writing software for ... engineering clubs, first-generation college student, or other examples of resilience and ...

Software Engineer

Los Angeles, CA · On-site

$115K - $150K/yr

Experience developing embedded or real-time software systems * Experience writing software for ... engineering clubs, first-generation college student, or other examples of resilience and ...

Experience developing embedded or real-time software systems * Experience writing software for ... engineering clubs, first-generation college student, or other examples of resilience and ...

Showing results 41-60

Entry Level Embedded Software Engineer information

See Arcadia, CA salary details

$72.8K

$159.4K

$180.8K

How much do entry level embedded software engineer jobs pay per year?

As of Aug 7, 2026, the average yearly pay for entry level embedded software engineer in Arcadia, CA is $159,418.00, according to ZipRecruiter salary data. Most workers in this role earn between $136,700.00 and $179,800.00 per year, depending on experience, location, and employer.

What does a typical day look like for an entry level embedded software engineer?

A typical day for an Entry Level Embedded Software Engineer often includes writing and reviewing code, testing software on hardware platforms, and debugging issues alongside more experienced team members. You'll likely participate in daily stand-up meetings, collaborate with hardware engineers, and contribute to ongoing projects through documentation or prototype development. While much of the work involves technical programming, you may also have the opportunity to engage in design discussions and learn from senior engineers. This balance of hands-on coding, testing, and teamwork helps you gain practical experience and develop your engineering skills early in your career.

What is an entry level embedded software engineer?

An Entry Level Embedded Software Engineer designs, develops, and tests software that runs on embedded systems, such as microcontrollers and IoT devices. They work with low-level programming languages like C and C++, interact with hardware, and optimize system performance. Responsibilities often include writing firmware, debugging code, and collaborating with hardware engineers. This role is ideal for candidates with a background in computer science, electrical engineering, or a related field and a strong understanding of embedded systems concepts.

What are the key skills and qualifications needed to thrive as an entry level embedded software engineer?

To succeed as an Entry Level Embedded Software Engineer, strong programming skills in C/C++, understanding of microcontrollers, and a relevant engineering degree are fundamental. Familiarity with embedded development environments, version control systems such as Git, and basic debugging tools is highly valued, though certifications like embedded systems courses can be advantageous. Effective communication, problem-solving abilities, and a willingness to learn help candidates integrate smoothly into multidisciplinary teams. These qualifications are essential because they ensure you can develop, test, and troubleshoot reliable embedded software within collaborative engineering environments.

What are popular job titles related to Entry Level Embedded Software Engineer jobs in Arcadia, CA? For Entry Level Embedded Software Engineer jobs in Arcadia, CA, the most frequently searched job titles are:
What job categories do people searching Entry Level Embedded Software Engineer jobs in Arcadia, CA look for? The top searched job categories for Entry Level Embedded Software Engineer jobs in Arcadia, CA are:
What cities near Arcadia, CA are hiring for Entry Level Embedded Software Engineer jobs? Cities near Arcadia, CA with the most Entry Level Embedded Software Engineer job openings:
Infographic showing various Entry Level Embedded Software Engineer job openings in Arcadia, CA as of August 2026, with employment types broken down into 87% Full Time, 9% Part Time, and 4% Contract. Highlights an 89% Physical, 3% Hybrid, and 8% Remote job distribution, with an average salary of $159,418 per year, or $76.6 per hour.

Full-time

Posted 15 days ago


Rocket Lab rating

9.2

Company rating: 9.2 out of 10

Based on 14 frontline employees who took The Breakroom Quiz

4th of 72 rated aerospace companies


Job description

SPACE SYSTEMS 

At Rocket Lab, we're not just launching rockets - we're building the future of space. Our Space Systems team builds everything from complete spacecraft, precision payloads to the components and subsystems that allow them to thrive in space, like solar panels, flight software, star trackers, optical systems, separation systems, radios, and more.  

 Our Space Systems team has enabled more than 1,700 missions, ranging from interplanetary exploration, in-space manufacturing to national security and defense initiatives. The team has built spacecraft, payloads, and components for missions to the Moon and Mars, working with partners including NASA, the Space Development Agency, and the U.S. Space Force. Whether it's a single high-performance spacecraft, constellation, or the vertically integrated components that help them get to space - our world class Space Systems team is empowering some of the boldest and most ambitious space missions. 

SOFTWARE ENGINEER I/II - ROBOTICS

Based onsite at Rocket Lab Robotics in Pasadena, CA, the Software Engineer I/II - Robotics will develop software for robotic platforms, motion-control systems, sensing systems, machine interfaces, test systems, and production support tools. This role is hands-on and works closely with mechanical, electrical, controls, manufacturing, test, quality, and operations teams to turn robotics concepts into reliable working systems.

The ideal candidate is a hands-on software engineer with strong robotics or hardware-integrated software experience, sound software engineering fundamentals, and the ability to develop reliable software in a fast-paced hardware development environment. You will support design, implementation, simulation, hardware bring-up, integration, test, deployment, troubleshooting, and production support for robotic systems.

(Please note: This position can be hired as a Software Engineer I or Software Engineer II) 

WHAT YOU'LL GET TO DO:

  • Develop and maintain software for robotic systems, embedded interfaces, control applications, test systems, and operator-facing tools.
  • Implement software for robotic platforms, motion-control systems, sensing systems, machine interfaces, production support tools, and hardware test environments.
  • Support software development from concept through implementation, simulation, hardware bring-up, integration, test, deployment, troubleshooting, and production support.
  • Partner with mechanical, electrical, controls, systems, manufacturing, test, and quality teams to define requirements, interfaces, verification approaches, and release criteria.
  • Integrate software with motors, actuators, encoders, sensors, motion controllers, embedded systems, machine vision systems, industrial networks, and robotic equipment.
  • Troubleshoot issues across software, controls, electrical hardware, sensors, actuators, networks, robotic hardware, and production equipment.
  • Support software quality through code reviews, version control, CI/CD, automated testing, documentation, release practices, and production support practices.
  • Communicate software status, technical risks, trade studies, test results, and implementation plans to technical and cross-functional stakeholders.

YOU'LL BRING THESE QUALIFICATIONS AS A SOFTWARE ENGINEER I:

  • Degree in Software Engineering, Computer Science, Electrical Engineering, Robotics, Mechatronics, Aerospace Engineering, or equivalent experience.
  • 0-2 years of professional software engineering experience, including software for robotics, motion control, embedded systems, hardware systems, or other complex technical products.
  • Strong proficiency in C++ and/or Python.
  • Experience with robotics frameworks such as ROS or ROS 2, including real-time variants or real-time robotics applications.
  • Hands-on experience integrating software with hardware such as motors, actuators, encoders, sensors, motion controllers, embedded systems, machine vision, or industrial networks.
  • Experience with real-time or embedded software, including an understanding of control loops, deterministic timing, and hardware bring-up.
  • Solid software engineering fundamentals, including architecture, Git-based workflows, code reviews, CI/CD, automated testing, release practices, documentation, and production support.
  • Experience developing in Linux environments.
  • Demonstrated ability to define requirements, evaluate alternatives, support stakeholder alignment, and deliver software solutions in a cross-functional hardware development environment.

YOU'LL BRING THESE QUALIFICATIONS AS A SOFTWARE ENGINEER II:

  • Degree in Software Engineering, Computer Science, Electrical Engineering, Robotics, Mechatronics, Aerospace Engineering, or equivalent experience.
  • 2-5 years of professional software engineering experience, including software for robotics, motion control, embedded systems, hardware systems, or other complex technical products.
  • Strong proficiency in C++ and/or Python.
  • Experience with robotics frameworks such as ROS or ROS 2, including real-time variants or real-time robotics applications.
  • Hands-on experience integrating software with hardware such as motors, actuators, encoders, sensors, motion controllers, embedded systems, machine vision, or industrial networks.
  • Experience with real-time or embedded software, including an understanding of control loops, deterministic timing, and hardware bring-up.
  • Solid software engineering fundamentals, including architecture, Git-based workflows, code reviews, CI/CD, automated testing, release practices, documentation, and production support.
  • Experience developing in Linux environments.
  • Demonstrated ability to define requirements, evaluate alternatives, support stakeholder alignment, and deliver software solutions in a cross-functional hardware development environment.

THESE QUALIFICATIONS WOULD BE NICE TO HAVE:

  • Experience with motion planning, kinematics and dynamics, trajectory generation, controls software, robot calibration, perception systems, state estimation, or sensor fusion.
  • Experience with real-time operating systems, bare-metal embedded development, hard real-time control, or safety-critical software.
  • Experience with spacecraft, embedded, or industrial communication interfaces such as CAN/CANopen, SpaceWire, MIL-STD-1553, EtherCAT, SPI/I2C, Ethernet, TCP/IP, Modbus, OPC UA, PLCs, safety controllers, or other fieldbus protocols.
  • Experience with simulation, digital twins, hardware-in-the-loop, software-in-the-loop, flatsat, testbed environments, automated test equipment, or production test systems.
  • Experience designing for fault tolerance, redundancy, cybersecurity, configuration control, or operation in radiation, thermal, vacuum, or other harsh environments.
  • Experience working in aerospace, defense, space, advanced manufacturing, industrial robotics, medical device, or other high-reliability hardware environments.
  • Strong communication skills and the ability to translate complex technical issues into clear plans, risks, and decisions for technical and non-technical stakeholders.

This position may require prolonged periods of sitting, standing, walking, computer work, and occasional exposure to moderate levels of noise, dust, and fumes in production areas.


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