Our work spans the full hardware stack designing and integrating sensing systems (LiDAR, camera ... Experience Level: We are recruiting across a wide range of experience levels from entry level ...
Our work spans the full hardware stack designing and integrating sensing systems (LiDAR, camera ... Experience Level: We are recruiting across a wide range of experience levels from entry level ...
Robotics QA/QC Engineer
$30 - $45/hr
... entry-level candidates with relevant experience or projects) * Comfort working with physical ... Understanding of sensor systems (cameras, LiDAR, GPS, etc.) * Experience with structured test plans ...
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Robotics QA/QC Engineer
$30 - $45/hr
... entry-level candidates with relevant experience or projects) * Comfort working with physical ... Understanding of sensor systems (cameras, LiDAR, GPS, etc.) * Experience with structured test plans ...
Robotics QA/QC Engineer
Irvine, CA · On-site
$30 - $45/hr
... entry-level candidates with relevant experience or projects) * Comfort working with physical ... Understanding of sensor systems (cameras, LiDAR, GPS, etc.) * Experience with structured test plans ...
Robotics QA/QC Engineer
Irvine, CA · On-site
$30 - $45/hr
... entry-level candidates with relevant experience or projects) * Comfort working with physical ... Understanding of sensor systems (cameras, LiDAR, GPS, etc.) * Experience with structured test plans ...
Robotics QA/QC Engineer
Irvine, CA · On-site
$30 - $45/hr
... entry-level candidates with relevant experience or projects) * Comfort working with physical ... Understanding of sensor systems (cameras, LiDAR, GPS, etc.) * Experience with structured test plans ...
Robotics QA/QC Engineer
Irvine, CA · On-site
$30 - $45/hr
... entry-level candidates with relevant experience or projects) * Comfort working with physical ... Understanding of sensor systems (cameras, LiDAR, GPS, etc.) * Experience with structured test plans ...
Lidar Entry Level information
What is a LiDAR entry level job?
What does a LiDAR entry level technician do?
What are the key skills and qualifications needed to thrive as a LiDAR entry level technician?
What is the difference between Lidar Entry Level vs Lidar Technician?
| Aspect | Lidar Entry Level | Lidar Technician |
|---|---|---|
| Required Certifications | Basic knowledge of lidar systems, often no formal certification required | Certifications like ASPRS or specific lidar training preferred |
| Work Environment | Data collection, fieldwork, and basic data processing | Fieldwork, equipment maintenance, and advanced data analysis |
| Employer & Industry Usage | Entry-level roles in surveying, mapping, and GIS companies | More experienced roles in geospatial, engineering, and surveying firms |
The main difference between Lidar Entry Level and Lidar Technician lies in experience and responsibilities. Entry level positions focus on basic data collection and learning, while technicians handle more complex data processing and equipment maintenance. Both roles are essential in geospatial projects, with the technician role requiring more specialized skills and certifications.
How to get a job in Lidar Entry Level?
What are the most commonly searched types of Lidar jobs in California?
The most popular types of Lidar jobs in California are:
What are popular job titles related to Lidar Entry Level jobs in California?
For Lidar Entry Level jobs in California, the most frequently searched job titles are:
What job categories do people searching Lidar Entry Level jobs in California look for?
The top searched job categories for Lidar Entry Level jobs in California are:
What cities in California are hiring for Lidar Entry Level jobs?
Cities in California with the most Lidar Entry Level job openings:

Job description
- Compute Architecture: Architect and configure embedded compute platforms (ARM/x86, SBCs) for robotic applications including evaluation, testing and selection.
- Firmware & Software: Set up and customize Linux environments (Ubuntu, Yocto, JetPack), middleware (ROS), and I/O interfaces.
- Systems Integration: Integrate compute with sensing and robotic systems. Analyze thermal, power, and bandwidth constraints to meet deployment and runtime requirements.
- Communications: Bring up sensors and peripherals using a range of protocols (USB, Ethernet, GMSL, IC, SPI, CAN).
- Data Pipelines: Build and maintain drivers, ROS nodes, and data acquisition pipelines for new hardware components.
- Systems Configuration: Create configuration files, launch scripts, and firmware update workflows.
- Testing: Conduct system-level tests such as thermal profiling, latency measurement, and power draw analysis.
- Documentation & Budgets: Maintain flashing procedures, I/O maps, and debug kits. Manage compute and I/O budgets.
- Build: Work with vendors to procure compute hardware. Develop QA checks for incoming units. Support payload integration and scaling.
- Debug: Support root-cause analysis for boot, connectivity, and throughput issues.
- Diagnostics Monitoring: Implement watchdogs, health checks, and other evaluation tools. Monitor compute system performance across CPU, GPU, memory, I/O, and networking.
- Education: B.S., M.S., or Ph.D. in Computer Engineering, Robotics, Electrical Engineering, 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.
- Embedded Systems: Experience with embedded platforms (Jetson, Raspberry Pi, x86 NUCs, custom SBCs).
- Linux: Proficiency with Linux system configuration, scripting, and headless deployment tools.
- Firmware: Strong skills in firmware development for microcontrollers, including bare-metal and RTOS environments.
- Programming: Proficient in C++ and Python for embedded and application-level development.
- Communication Protocols: Experience with USB, Ethernet, IC, SPI, CAN, GMSL, and similar interfaces.
- ROS Ecosystem: Familiarity with ROS, device drivers, TF, and data streaming/publishing.
- Debugging: Comfort with hardware/software debugging tools (oscilloscopes, logs, power monitors, analyzers).
- Systems Thinking: Ability to diagnose and optimize across compute, thermal, timing, and I/O layers.
- 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 compute performance impacts autonomy algorithms.
About Field AI
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