... integrating sensing systems (LiDAR, camera, TOF, IMU, GPS), embedded compute (CPUs, GPUs ... Experience Level: We are recruiting across a wide range of experience levels from entry level ...
... integrating sensing systems (LiDAR, camera, TOF, IMU, GPS), embedded compute (CPUs, GPUs ... Experience Level: We are recruiting across a wide range of experience levels from entry level ...
Associate Account Executive
Los Angeles, CA · Remote
$70K - $100K/yr
This is an entry-level role designed for someone who is hungry to learn, resilient in the face of ... You will be embedded in a Sales Pod, working alongside a Team Lead and Senior Account Executives.
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Associate Account Executive
Los Angeles, CA · Remote
$70K - $100K/yr
This is an entry-level role designed for someone who is hungry to learn, resilient in the face of ... You will be embedded in a Sales Pod, working alongside a Team Lead and Senior Account Executives.
Associate Account Executive
Los Angeles, CA · Remote
$70K - $100K/yr
This is an entry-level role designed for someone who is hungry to learn, resilient in the face of ... You will be embedded in a Sales Pod, working alongside a Team Lead and Senior Account Executives.
Associate Account Executive
Los Angeles, CA · Remote
$70K - $100K/yr
This is an entry-level role designed for someone who is hungry to learn, resilient in the face of ... You will be embedded in a Sales Pod, working alongside a Team Lead and Senior Account Executives.
Tutor Expert
Costa Mesa, CA · On-site
$17 - $23/hr
... embedded tutoring, and/or supplement instruction. Requires subject matter and content area ... Level I - Entry level of a series. Successful completion of the course(s), with a grade "B" or ...
Tutor Expert
Costa Mesa, CA · On-site
$17 - $23/hr
... embedded tutoring, and/or supplement instruction. Requires subject matter and content area ... Level I - Entry level of a series. Successful completion of the course(s), with a grade "B" or ...
Entry Level Embedded Systems information
See Fullerton, CA salary details
$65.2K - $77.5K
1% of jobs
$77.5K - $89.8K
2% of jobs
$89.8K - $102.1K
6% of jobs
$102.1K - $114.3K
13% of jobs
$116.9K is the 25th percentile. Wages below this are outliers.
$114.3K - $126.6K
14% of jobs
$126.6K - $138.9K
12% of jobs
The median wage is $141.5K / yr.
$138.9K - $151.2K
13% of jobs
$151.2K - $163.5K
12% of jobs
$167.1K is the 75th percentile. Wages above this are outliers.
$163.5K - $175.7K
12% of jobs
$175.7K - $188K
11% of jobs
$188K - $200.3K
6% of jobs
$65.2K
$143.2K
$200.3K
How much do entry level embedded systems jobs pay per year?
What is an entry level embedded systems engineer?
An Entry Level Embedded Systems job involves designing, developing, and testing software and hardware for embedded devices, such as microcontrollers, IoT devices, and automotive systems. Engineers in this role typically work with programming languages like C and C++, embedded operating systems, and real-time systems. They may assist in debugging, optimizing code, and interfacing with hardware components. This position provides a foundation in embedded development, allowing engineers to gain experience with industry tools and protocols. It is ideal for recent graduates or those transitioning into embedded systems from related fields.
What are the typical responsibilities of an entry level embedded systems engineer?
As an entry level embedded systems engineer, your daily tasks may include writing and testing code for microcontrollers, assisting in circuit design, debugging embedded software, and supporting hardware-software integration. You'll often work closely with other engineers on tasks like prototyping, system validation, and troubleshooting, while learning industry-standard development workflows. You may also be involved in updating technical documentation and participating in team meetings to discuss project goals and challenges. These responsibilities provide foundational experience and exposure to various aspects of embedded systems development, preparing you for more advanced roles as you gain skills.
What are the key skills and qualifications needed to thrive in an entry level embedded systems engineer position?
To thrive as an Entry Level Embedded Systems professional, you need a solid understanding of C/C++ programming, digital electronics, and basic knowledge of microcontrollers or microprocessors, typically supported by a degree in electrical, computer, or software engineering. Familiarity with tools like oscilloscopes, logic analyzers, integrated development environments (IDEs), and source control systems such as Git is often required, and certifications like ARM Accredited Engineer can be beneficial. Strong problem-solving skills, attention to detail, and the ability to work both independently and collaboratively help individuals excel in this role. These technical and interpersonal abilities are crucial for developing reliable embedded solutions, troubleshooting complex issues, and contributing effectively to multidisciplinary engineering teams.

Full-time
Re-posted 2 days ago
Job description
- Sensor Architecture: Work across hardware and software teams to define sensing requirements. Identity, test, and select sensors such as LiDARs, depth cameras, GPS, IMUs, ToF, and other devices.
- Systems Integration: Integrate sensors with electrical (USB, Ethernet, I2C, CAN, GMSL), mechanical (mounts, jigs, isolation), and software (configurations, drivers, ROS nodes) systems. Ensuring power, thermal, and protocol compatibility.
- Spatial Performance: Architect system to meet spatial sampling performance requirements including spatial coverage, range, resolution, and transform accuracy.
- Temporal Performance: Implement and validate synchronization strategies, triggering schemes, timestamp encoding, and end-to-end latency minimization.
- Performance Characterization: Evaluate sensor performance (spatial resolution, temporal drift, EMI noise, sync errors etc.). Test under real-world environmental conditions (vibration, lighting, moisture, temperature).
- Calibration: Design and execute both intrinsic and extrinsic calibrations. Build alignment rigs and calibration boards as needed.
- Optimization: Tune sensor configurations (exposure, gain, filtering, frame rate, etc.) and processing pipeline (filtering etc.) for optimal performance
- Documentation: Create timing diagrams, sensor maps, coordinate transforms, and maintain all configuration files, launch scripts, driver references, and firmware states.
- Build: Work with vendors to procure sensors. Develop QA checks for incoming units. Support payload integration and manufacturing at scale.
- Debug: Conduct root cause analysis of sensor systems including issues across hardware and software boundaries.
- Monitor: Develop protocols for monitoring the sensing system health, data quality, and calibration status during field deployments.
- Education: B.S., M.S. or Ph.D. in Robotics, Electrical Engineering, Engineering Physics, Physics, or a related field.
- Experience Level: We are recruiting across a wide range of experience levels from entry level engineers to senior and staff engineers.
- Hands-On Sensors Experience: Hands-on work with perception sensors such as LiDAR, depth cameras, IMUs, GPS.
- Systems Thinking: Cross-functional collaboration experience across electrical, mechanical, and software teams.
- Sensor Physics: Strong foundation in optics, signal processing, and electromagnetic wave propagation.
- Lab Skills: Hands-on testing, calibration, and debugging skills (oscilloscopes, logs, vibration/thermal setups)
- Communication Protocols: Experience with protocols such as USB, Ethernet, GMSL, CAN, I2C, and CSI.
- Computer & Software: Experience working with ROS/ROS2, sensor drivers, coordinate transforms (TF), and timing protocols (PTP, NTP, etc.).
- Timing & Triggers: Experience with timestamping, synchronization, triggering, and latency constraints.
- Calibration & Characterization: Experience designing and executing intrinsic, extrinsic, and temporal calibrations, along with sensor characterization under real-world environmental conditions.
- Simulation: Experience high-fidelity simulation environments (Gazebo, Isaac Sim, RViz) for sensor modeling.
- Scaling: Experience taking systems from prototype to large scale production.
- Field Environments: Experience developing systems for harsh field environments.
- Deployed Robotics: Experience working on robotics deployed in real world settings such as autonomous vehicles, drones, or ruggedized robots.
- Systems Level Robotics: Fluency across software, electrical, and mechanical systems.
- Autonomy Software: Knowledge of autonomy stacks used in robotics. As well as how sensor performance impacts autonomy algorithms.