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Agent guide: [/agents.md](https://www.wearedevelopers.com/agents.md). --- # AI Embedded Engineer IV - **Company:** Autonomous Solutions, Inc. - **Location:** Logan, UT, United States - **Salary:** $145,000.0 - $169,000.0 - **Contract:** Permanent contract - **Skills:** 3D Printing, Computer-Aided Design, Artificial Intelligence, Application Integration Architecture, Artificial Neural Networks, Automation of Tests, C++ (Programming Language), CAN Bus, Nvidia CUDA, Computer Engineering, Software Debugging, Linux, Microprocessors, Middleware, Embedded Software, Python (Programming Language), Office Suite, Tensorflow, Visual Systems, Graphics Processing Unit (GPU), Robot Operating System, PIC Microcontroller, Pytorch, Information Technology, TensorRT, Lidar, Software Version Control - **Published:** August 30, 2026 - **Apply:** https://www.careerjet.com/jobad/usbfce389d36346ba6642f36438db41317 ## About the Role (GPUs) on vehicle compute, owning export, optimization, quantization, and latency budgets.Retrain and fine-tune existing models when field performance drifts, and validate the result on the vehicle rather than only on a benchmark.Build and maintain ROS nodes, topics, and interfaces running on the vehicle, and keep them stable under real workloads.Write the Python and C++ bridges that connect compute to robot control, sensor drivers, and the rest of the autonomy stack.Profile and tune runtime performance against real constraints, including compute headroom, memory, thermal limits, and power budgets.Bring up new sensors and compute hardware, including NVIDIA Jetson platforms, LiDAR units, and depth and vision systems, through provisioning, configuration, and calibration.Design and build sensor and data-collection rigs, covering sensor selection, mounting, wiring, power, networking, and onboard recording, then take them into the field.Debug hard cross-boundary problems spanning timing, synchronization, coordinate frames, machine motion, and compute limits.Fabricate and modify the mounts, brackets, and fixtures your hardware needs, and build and debug supporting wiring, harnesses, and small custom circuits.Characterize what you deliver honestly, including where it works, where it fails, and what conditions break it, so downstream teams know what they are inheriting.Document approaches, assumptions, results, and known limitations, and hand off work the production teams can build on with confidence.Provide technical guidance to other engineers on embedded deployment, sensor integration, and on-vehicle debugging. Required QualificationsBachelor's degree in Robotics, Computer Science, Computer Engineering, Electrical Engineering, Mechanical Engineering, or a related technical field.Substantial experience developing embedded, robotics, or autonomous system software. Graduate-level research experience in a relevant field counts toward this experience.Demonstrated experience independently taking complex embedded or AI integration work from concept to a working, evaluated system on real hardware.Advanced proficiency in C++ and Python.Experience deploying trained neural networks to embedded or production runtime environments, including model export and runtime optimization.Experience retraining or fine-tuning existing models and validating performance changes.Strong experience with Robot Operating System (ROS or ROS 2) or comparable robotics middleware on real vehicles or robots.Hands-on experience bringing up embedded compute platforms such as NVIDIA Jetson, including provisioning, drivers, and configuration.Experience integrating LiDAR, depth cameras, or other vision systems, including calibration and data synchronization.Working understanding of coordinate systems, geometric transformations, camera models, and sensor timing.Experience with Linux, version control, automated testing, and containerized development.Genuine willingness to work hands-on with hardware, including wiring sensors, assembling rigs, and debugging electrical and mechanical problems directly.Strong analytical and debugging skills, and experience explaining results and limitations clearly while providing technical guidance to other engineers.Willingness to travel to test sites as required. Preferred QualificationsMaster's degree or Doctor of Philosophy (Ph.D.) in Robotics, Computer Science, Electrical Engineering, Computer Engineering, or a related discipline.Experience with embedded AI or autonomy software on heavy equipment, agricultural machinery, construction vehicles, or mobile robots.Experience with CUDA, TensorRT, or comparable GPU acceleration and inference optimization tooling.Experience with PyTorch, TensorFlow, or comparable frameworks for fine-tuning existing models.Experience with real-time constraints, deterministic scheduling, or time synchronization across distributed sensors.Experience with Controller Area Network (CAN) based vehicle communication or other embedded bus protocols.Experience with Computer-Aided Design (CAD), 3D printing, shop fabrication, microcontrollers, printed circuit board (PCB) design, or data acquisition systems.Familiarity with state estimation, Kalman filtering, or probabilistic robotics.Experience running experiments outdoors in off-road, low-light, dusty, or weather-exposed conditions. Physical RequirementsAbility to remain in a stationary position at a computer workstation for extended periods.Ability to operate a computer and other office productivity equipment continuously.Ability to communicate and exchange information in person, via phone, and through electronic means.Ability to traverse office, lab, shop, and field environments as required. At Autonomous Solutions, Inc. (ASI), we are committed to fostering a diverse, inclusive, and equitable workplace where all employees and applicants have equal opportunities. We prohibit discrimination and harassment of any kind based on race, color, religion, sex, national origin, age, disability, genetic information, veteran status, sexual orientation, gender identity, or any other legally protected characteristic. ASI complies with all applicable federal, state, and local laws regarding non-discrimination in employment and is dedicated to providing reasonable accommodations for individuals with disabilities throughout the hiring process.Job Posted by ApplicantPro ## Description sensors, compute, and the robot itself.The role is deliberately split between software and hardware. Most of your week is embedded software: Robot Operating System (ROS) nodes on the vehicle, Python and C++ bridges between compute and robot control, runtime optimization, and debugging timing and synchronization problems across process and hardware boundaries. The rest is hands-on hardware. You will select and bring up sensors and compute, build the rigs that carry them, run the wiring and power, and fix electrical problems yourself rather than filing a ticket. As a Level IV engineer within ASI's five-level engineering structure, you independently lead complex initiatives, influence the team's technical direction, and provide technical guidance to other engineers, with broader platform strategy remaining aligned with engineering leadership and Level V technical authorities. ResponsibilitiesDeploy trained models to embedded Central Processing Units (CPUs) and Graphics Processing Units, JOB SUMMARY As a Technical Program Manager (TPM) at ASI, you are responsible for independently executing product development programs, owning scope, schedule, budget, and risk wi… + 1 month ago + Apply easily + ## Related Videos - [How to develop an autonomous car end-to-end: Robotic Drive and the mobility revolution](https://www.wearedevelopers.com/videos/22-how-to-develop-an-autonomous-car-end-to-end-robotic-drive-and-the-mobility-revolution) - [Developing an AI.SDK](https://www.wearedevelopers.com/videos/198-developing-an-ai-sdk) - [Photonic Computing: Programming a New Class of AI Accelerators (incl. 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