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Robotics Engineering Jobs in Arkansas (NOW HIRING)

Skilled at teaching robot design, sensor programming, and autonomous behavior development. Guides students through building mechanical structures, wiring electronic circuits, programming ...

Robotics Tutor

Conway, AR · Remote

$40/hr

Skilled at teaching robot design, sensor programming, and autonomous behavior development. Guides students through building mechanical structures, wiring electronic circuits, programming ...

Skilled at teaching robot design, sensor programming, and autonomous behavior development. Guides students through building mechanical structures, wiring electronic circuits, programming ...

Skilled at teaching robot design, sensor programming, and autonomous behavior development. Guides students through building mechanical structures, wiring electronic circuits, programming ...

Robotics Technical Architect

Bentonville, AR · On-site

$58 - $70/hr

Accenture's Supply Chain & Engineering group helps industrial clients reinvent how physical ... The Robotics Technical Architect is the senior technical authority responsible for defining the ...

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Robotics Engineering information

See Arkansas salary details

$24K

$87.3K

$139.7K

How much do robotics engineering jobs pay per year?

As of Sep 13, 2026, the average yearly pay for robotics engineering in Arkansas is $87,325.00, according to ZipRecruiter salary data. Most workers in this role earn between $69,000.00 and $105,000.00 per year, depending on experience, location, and employer.

What is a robotics engineer?

Robotics engineers are professionals who design, build, and maintain robots and automated systems. They apply principles from mechanical engineering, electrical engineering, and computer science to develop machines that can perform tasks autonomously or with minimal human intervention. Robotics engineers work in various industries such as manufacturing, healthcare, automotive, and aerospace to create solutions that improve efficiency, safety, and productivity. Their work often involves programming, prototyping, testing, and troubleshooting robotic systems.

What are the key skills and qualifications needed to thrive as a robotics engineer, and why are they important?

To thrive as a Robotics Engineer, you need a strong background in mechanical engineering, electronics, computer science, and mathematics, typically supported by a bachelor's or master's degree in robotics or related fields. Familiarity with programming languages (such as C++, Python, or ROS), CAD software, and control systems is essential, along with relevant certifications like Certified Robotics Programmer. Problem-solving, creativity, and effective teamwork are vital soft skills that set top performers apart. These abilities ensure the successful design, development, and integration of advanced robotic systems in complex environments.

What kinds of teams do robotics engineers typically work with, and how do they collaborate on projects?

Robotics Engineers often work in multidisciplinary teams that may include software developers, mechanical engineers, electrical engineers, and project managers. Collaboration is essential, as projects usually require integrating hardware design, software development, and sensor systems. Regular meetings, joint problem-solving sessions, and shared project management tools help keep everyone aligned. Effective communication and a willingness to learn from colleagues in different fields are key to successfully delivering complex robotics solutions.

Is robotics engineering a good career?

Robotics engineering is a growing field that involves designing, developing, and maintaining robotic systems, often requiring skills in programming, electronics, and mechanical design. It offers opportunities in industries such as manufacturing, healthcare, and automation, with a demand for specialized knowledge in sensors, control systems, and software. The career typically requires a bachelor's degree in engineering or related fields and may involve continuous learning to keep up with technological advancements.

What jobs can you get with a robotics engineering degree?

A robotics engineering degree qualifies individuals for roles such as robotics engineer, automation engineer, control systems engineer, and research scientist. These jobs typically involve designing, developing, and testing robotic systems, often requiring knowledge of programming, mechanical design, and control theory. Opportunities are available in industries like manufacturing, aerospace, healthcare, and research institutions.

What work does a robotics engineer do?

A robotics engineer designs, develops, tests, and maintains robotic systems and automation solutions. They work with hardware components, programming languages, and control systems to create robots used in manufacturing, healthcare, and other industries, often requiring knowledge of mechanical, electrical, and software engineering. The role may involve using tools like CAD software and programming languages such as C++ or Python, and often requires problem-solving skills and technical certifications.

What cities in Arkansas are hiring for Robotics Engineering jobs?

Cities in Arkansas with the most Robotics Engineering job openings:

Infographic showing various Robotics Engineering job openings in Arkansas as of August 2026, with employment types broken down into 89% Full Time, 7% Part Time, 3% Contract, and 1% Nights. Highlights an 86% Physical, 3% Hybrid, and 11% Remote job distribution, with an average salary of $87,325 per year, or $42 per hour.

Robotics Engineer III - Motion Planning

Fort Smith, AR • On-site

ArcBest
Transportation and Warehousing • 10K+ employees

Other

Posted 3 days ago

New


ArcBest rating

8.5

Company rating: 8.5 out of 10

Based on 23 frontline employees who took The Breakroom Quiz


Job description

Job Description

The Robotics Engineer III - Motion Planning leads the development, optimization, and large-scale deployment of motion planning architectures for fleet-wide AMR navigation. This position focuses on high-performance optimization, AI-driven behavioral planning, fail-safe recovery strategies, and large-scale robotic coordination. The Robotics Engineer III - Motion Planning designs and refines graph search, optimization-based planners, and reinforcement learning-based motion strategies while ensuring seamless integration with perception and real-time control.

Responsibilities
  • Architect scalable motion planning frameworks for fleet-level AMR deployments.
  • Develop and refine AI-driven motion planning (reinforcement learning, imitation learning, deep MPC).
  • Implement real-time model predictive planners using CasADi, ACADOS, and convex/non-convex solvers.
  • Design and implement advanced fail-safe motion planning strategies, including autonomous re-routing, recovery-based motion primitives, and redundant planning checks.
  • Enhance multi-agent coordination strategies for large-scale robotic path planning and collision avoidance.
  • Decompose complex behaviors into modular, reusable tree structures.
  • Integrate graph-based, hierarchical, and predictive planning models for decision-making.
  • Deploy AI-based planning models (e.g., learning-based cost functions, uncertainty-aware planners).
  • Conduct large-scale simulation and on-robot validation to assess real-time system performance.
  • Optimize cost-aware, energy-efficient, and high-speed trajectory planning for AMRs.
  • Ensure robust software development, CI/CD implementation, and fault-tolerant motion control strategies.
  • Lead cross-functional collaborations and mentor junior engineers in robotics motion planning.
  • Other duties and projects, as assigned.
Requirements

Education:

  • Master's Degree in Robotics, Engineering, Computer Science, or related field, required
  • PhD in Robotics, Engineering, Computer Science, or related field, preferred

Experience:

  • 1 year as a Robotics Engineer II - Motion Planning or equivalent experience, preferred
  • 4 years of experience in robotics motion planning, AI-driven decision models, or multi-agent autonomy.

Computer Skills:

  • Expertise in motion planning algorithms (Hybrid A*, RRT*, ILQR, AI-driven planning). Upon Hire, required
  • Experience with CasADi, ACADOS, convex/non-convex optimization solvers. Upon Hire, required
  • Advanced proficiency in C++/Python, ROS2, and high-performance robotic software development. Upon Hire, required
  • Strong foundation in multi-agent fleet planning, reinforcement learning-based decision-making, and real-time control. Upon Hire, required

Additional Requirements:

  • Proven leadership in large-scale robotic motion planning. Upon Hire, required
  • Strong research background with experience in industry robotics advancements. Upon Hire, required
  • Experience deploying robotic systems in real-world industrial or logistics environments. Upon Hire, preferred
  • Experience designing Behavior Trees (BTs) for high-level decision-making in autonomous systems. Upon Hire, preferred
  • Understanding of perception integration for planning in dynamic environments. Upon Hire, required
  • Strong mathematical foundation in optimization, graph theory, and control systems. Upon Hire, required

Competencies:

  • Active Learning
  • C++
  • Communicating Complex Concepts
  • Disruptive Innovation
  • Linux
  • Programming
  • Robotics/Computer Controlled Machinery
  • Troubleshooting Technical Problems
Other Details

Work Hours:

  • Generally, 8:00 am - 5:00 pm with occasional irregular hours depending on workload.

Travel Requirements:

  • Occasional (25%-50%) Potential testing and data collection at customer sites.

Compensation:

  • This is a salary position paid biweekly.
About Us

ArcBest (Nasdaq: ARCB) is a multibillion-dollar integrated logistics company that helps keep the global supply chain moving. Founded in 1923 and now with 14,000 employees across 250 campuses and service centers, the company is a logistics powerhouse, using its technology, expertise and scale to connect shippers with the solutions they need — from ground, air and ocean transportation to fully managed supply chains. ArcBest has a long history of innovation that is enriched by deep customer relationships. With a commitment to helping customers navigate supply chain challenges now and in the future, the company continues to invest in purpose-built technology such as ArcBest View, its digital logistics platform that brings quoting, booking, shipment visibility and reporting into one connected experience.

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