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Robotics Perception Engineer Jobs in Arlington, TX

To learn more visit: www.waabi.ai As a Senior Perception Engineer, you will be at the forefront of ... robotics. - Experience in working with platform teams and collaborating with research teams to ...

To learn more visit: www.waabi.ai As a Senior Perception Engineer, you will be at the forefront of ... robotics. - Experience in working with platform teams and collaborating with research teams to ...

Senior / Staff Perception Engineer

Dallas, TX · On-site +1

$158K - $269K/yr

To learn more visit: www.waabi.ai As a Senior Perception Engineer, you will be at the forefront of ... robotics. - Experience in working with platform teams and collaborating with research teams to ...

Robotics Engineer

Irving, TX · On-site

$97K - $158K/yr

We are hiring high-quality robotics generalists: engineers who can work confidently across the full ... Design, build, and ship autonomy components across perception, planning, control, and learning.

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Robotics Perception Engineer information

See Arlington, TX salary details

$26.1K

$95K

$152.1K

How much do robotics perception engineer jobs pay per year?

As of Aug 12, 2026, the average yearly pay for robotics perception engineer in Arlington, TX is $95,038.00, according to ZipRecruiter salary data. Most workers in this role earn between $75,100.00 and $114,300.00 per year, depending on experience, location, and employer.

What is a robotics perception engineer?

Robotics Perception Engineers are professionals who specialize in enabling robots to interpret and understand their environment using sensors and data processing algorithms. They work on developing and implementing computer vision, sensor fusion, and machine learning techniques so that robots can perceive objects, people, and surroundings. Their work is crucial for applications such as autonomous vehicles, drones, industrial automation, and service robots. By improving a robot's ability to 'see' and make sense of the world, they help create safer and more effective robotic systems.

What is the difference between Robotics Perception Engineer vs Computer Vision Engineer?

AspectRobotics Perception EngineerComputer Vision Engineer
Required CredentialsBachelor's or Master's in Robotics, Computer Science, or Electrical Engineering; experience with perception algorithmsBachelor's or Master's in Computer Science, Electrical Engineering, or related fields; strong programming skills in vision processing
Work EnvironmentRobotics labs, autonomous vehicle companies, industrial automationSoftware companies, tech startups, research labs focusing on image and video analysis
Industry UsageAutonomous vehicles, robotics, manufacturingHealthcare, security, consumer electronics, automotive

Robotics Perception Engineers focus on developing perception systems specifically for robots, integrating sensors and perception algorithms for navigation and interaction. Computer Vision Engineers primarily develop algorithms for interpreting visual data across various applications. While both roles require strong programming and understanding of perception, Robotics Perception Engineers specialize in sensor fusion and real-time processing within robotic systems, whereas Computer Vision Engineers work more broadly on image analysis and recognition tasks.

What are some common challenges faced by robotics perception engineers when integrating new sensors into autonomous systems?

Robotics Perception Engineers often encounter challenges such as sensor calibration, data synchronization, and managing varying data quality when integrating new sensors. Ensuring that sensor data is accurately aligned in time and space is crucial for reliable perception in autonomous systems. Additionally, engineers must address the complexities of fusing data from multiple modalities (like cameras, LiDAR, or radar) while optimizing processing efficiency. Close collaboration with hardware and software teams is essential to troubleshoot integration issues and achieve robust, real-time perception.

What are the key skills and qualifications needed to thrive as a robotics perception engineer?

To thrive as a Robotics Perception Engineer, you need strong expertise in computer vision, sensor fusion, machine learning, and proficiency in programming languages like C++ and Python, often supported by a degree in robotics, computer science, or a related field. Familiarity with tools and frameworks such as ROS (Robot Operating System), OpenCV, and deep learning libraries, as well as experience with sensors like LiDAR and cameras, is typically required. Excellent problem-solving abilities, teamwork, and adaptability help set standout professionals apart in this role. These competencies are crucial for enabling robots to accurately interpret and interact with their environment, leading to robust and reliable autonomous systems.
What job categories do people searching Robotics Perception Engineer jobs in Arlington, TX look for? The top searched job categories for Robotics Perception Engineer jobs in Arlington, TX are:
What cities near Arlington, TX are hiring for Robotics Perception Engineer jobs? Cities near Arlington, TX with the most Robotics Perception Engineer job openings:
Infographic showing various Robotics Perception Engineer job openings in Arlington, TX as of August 2026, with employment types broken down into 92% Full Time, 2% Part Time, and 6% Contract. Highlights an 87% Physical, 4% Hybrid, and 9% Remote job distribution, with an average salary of $95,038 per year, or $45.7 per hour.

Perception Engineer I - Project Based

Autonomous Solutions

Fort Worth, TX • On-site

$72K - $95K/yr

Full-time

Medical, Vision, Retirement

Re-posted 12 days ago


Job description

This is a project-based employee role supporting the development, integration, and validation of ASI's autonomous compactor platforms. Development phases of this nature typically continue through project completion, often spanning two to four years, although scope and duration are determined by business and customer needs.JOB SUMMARYThe Perception Engineer I supports the development, integration, and testing of perception capabilities that enable ASI's autonomous compactors to understand terrain, detect obstacles, recognize work-area conditions, and operate safely in construction environments. This role works with data from cameras, LiDAR, radar, GPS/GNSS, inertial sensors, and other systems to support environmental awareness, terrain understanding, obstacle detection, and autonomous machine operation.As a Level I engineer within ASI's five-level engineering structure, this position completes defined engineering assignments under the guidance of more experienced engineers. The role provides an opportunity to develop practical experience in robotics, computer vision, sensor processing, software development, and autonomous heavy-equipment testing while contributing to the Compactor Team's development goals.ESSENTIAL DUTIES AND RESPONSIBILITIESSupport the development, implementation, and testing of perception software for autonomous compactor applicationsAssist with capabilities involving obstacle detection, object classification, terrain understanding, work-area awareness, and environmental sensingProcess and analyze data from cameras, LiDAR, radar, GPS/GNSS, inertial sensors, and other vehicle systemsDevelop and maintain software components, scripts, and engineering tools under the direction of experienced team membersAssist with integrating perception software into ASI's autonomous compactor platforms and embedded computing systemsEvaluate assigned perception features using recorded datasets, simulation, laboratory testing, and vehicle field testingReview test data to identify false detections, missed detections, sensor issues, and performance limitationsSupport the collection, organization, labeling, visualization, and replay of sensor dataAssist with sensor installation, configuration, calibration, and validation activitiesDevelop basic tools for data processing, visualization, automated testing, and performance analysisTroubleshoot defined software, sensor, and system-integration issues with support from senior engineersContribute to unit testing, regression testing, and documentation for perception software componentsWork with GNC, embedded software, systems, test, and field teams to support autonomous compactor integrationParticipate in code reviews, design discussions, sprint planning, and technical training activitiesDocument software changes, test results, technical findings, and known system limitationsSupport field testing, customer demonstrations, and deployment activities as requiredFollow established software-development, safety, quality, and configuration-management practicesESSENTIAL EDUCATION, WORK EXPERIENCE, JOB SKILLSBachelor's degree in Computer Science, Computer Engineering, Electrical Engineering, Robotics, Mathematics, or a related technical fieldZero to two years of professional experience in computer vision, robotics, machine learning, sensor processing, or software engineeringAcademic, internship, research, or project experience developing software in C++ or PythonBasic understanding of computer vision, robotics, data processing, machine learning, or geometric algorithmsFamiliarity with cameras, LiDAR, radar, GPS/GNSS, or other robotic sensing technologiesFamiliarity with Linux-based software-development environmentsBasic understanding of version control systems such as GitAbility to analyze technical data and communicate findings clearlyStrong troubleshooting, learning, and problem-solving skillsStrong attention to detail and willingness to follow established engineering processesAbility to receive technical direction and collaborate effectively with cross-functional teamsStrong written and verbal communication skillsPREFERRED QUALIFICATIONSInternship, research, capstone, or personal-project experience involving robotics, autonomous vehicles, computer vision, or machine learningFamiliarity with ROS, ROS2, or similar robotics middlewareExposure to OpenCV, Point Cloud Library, PyTorch, TensorFlow, or similar technologiesExperience working with image data, point clouds, sensor data, or machine-learning datasetsFamiliarity with coordinate systems, transformations, sensor calibration, or data synchronizationExperience developing software for embedded, real-time, or robotic systemsExposure to simulation, recorded-data replay, software-in-the-loop, or hardware-in-the-loop testingFamiliarity with construction equipment, compactors, heavy machinery, or off-road vehiclesInterest in terrain analysis, soil compaction, construction automation, or autonomous heavy equipmentExperience testing software or robotic systems in outdoor or field environmentsBENEFITSASI offers a comprehensive benefits package, including:401k with employer matchGenerous HSA contributionPTO, paid holidays, and flextimeASI covers 90% of employee medical plan costsAt 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 nondiscrimination in employment and is dedicated to providing reasonable accommodations for individuals with disabilities throughout the hiring process.This is a full-time, project-based employment opportunity. Your employment with ASI will be "at will," meaning that either you or ASI may terminate your employment at any time for any lawful reason, with or without cause or advance notice.
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