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Robotics Manipulation Jobs in Texas (NOW HIRING)

Senior Reinforcement Learning Engineer

Austin, TX · On-site

$103K - $142K/yr

... manipulation challenges, mentor junior engineers, and implement advanced learning algorithms for the company's humanoid robots. Responsibilities : • Implement and deploy state-of-the-art RL ...

Senior Reinforcement Learning Engineer

Austin, TX · On-site

$103K - $142K/yr

The Senior Reinforcement Learning Engineer will focus on achieving state-of-the-art performance on humanoid robots, leveraging expertise in reinforcement learning to solve locomotion and manipulation ...

... robots. This engineer will leverage their deep expertise in RL to solve critical locomotion and manipulation challenges and deliver breakthrough results on physical hardware. The primary focus of ...

Autonomy Engineer

Houston, TX · On-site

$97K - $128K/yr

Work with manipulation, locomotion, and perception engineers to integrate robot skills into autonomous robot behaviors * Develop plan execution approaches that combine classical control and learned ...

Senior Reinforcement Learning Engineer

Austin, TX · On-site

$103K - $142K/yr

... robots. This engineer will leverage their deep expertise in RL to solve critical locomotion and manipulation challenges and deliver breakthrough results on physical hardware. The primary focus of ...

... in robotic dexterous manipulation, locomotion, and human-robot interaction. This role presents an opportunity to shape the future of robotics through innovative applications of deep learning and ...

... in robotic dexterous manipulation, locomotion, and human-robot interaction. This role presents an opportunity to shape the future of robotics through innovative applications of deep learning and ...

Welding Engineer

Houston, TX · On-site

$34.25 - $47/hr

... robot. * Identify required sensors and tooling for performing welding tasks. * Translate welding domain knowledge into requirements for perception, manipulation, and controls teams. We're Looking For:

Senior Reinforcement Learning Engineer

Austin, TX · On-site

$103K - $142K/yr

... manipulation tasks with physical hardware. • Drive the entire development cycle, from prototyping in simulation to robustly transferring and fine-tuning policies on the robot. • Optimize and ...

Deep understanding of autonomous driving and/or robotic control domains (cars, off-road machinery, AGVs, drones, or perception-centric manipulation), its challenges, use cases, and solution ...

Hardware Integration Engineer - Dexterity

Austin, TX · On-site

$122K - $161K/yr

... manipulation algorithms). Required Qualifications * Bachelor's degree in Mechanical Engineering, Electrical Engineering, Robotics, or a related field. * 3+ years of experience in hardware integration ...

Showing results 41-60

Robotics Manipulation information

What is robotics manipulation?

Robotics manipulation refers to the ability of robots to interact with and physically manipulate objects in their environment. This field involves designing robotic systems that can grasp, move, and control a variety of items using sensors, actuators, and advanced algorithms. Robotics manipulation is used in industries such as manufacturing, healthcare, and logistics, where robots handle tasks that require precision and adaptability. Researchers in this area focus on improving robot dexterity, perception, and autonomy to enable more complex and delicate operations.

What is the difference between Robotics Manipulation vs Robotics Software Engineer?

AspectRobotics ManipulationRobotics Software Engineer
Required CredentialsEngineering degree, robotics certificationsComputer science or software engineering degree
Work EnvironmentHands-on with robotic hardware, labs, manufacturingSoftware development, simulation, coding
Industry UsageManufacturing, automation, researchSoftware development for robotic systems
Common Search IntentRobotics manipulation skills, hardware focusRobotics programming, software tools

Robotics Manipulation involves working directly with robotic hardware to develop and improve physical interaction capabilities, often in manufacturing or research settings. Robotics Software Engineers focus on developing the software that controls robotic systems, including algorithms and simulations. While both roles require technical skills, Robotics Manipulation emphasizes hands-on hardware work, whereas Robotics Software Engineering centers on coding and software development for robotics applications.

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

To thrive as a Robotics Manipulation Engineer, you need expertise in robotics, mechanical engineering, and computer science, often supported by a relevant degree and experience in automation or robotics. Proficiency with programming languages like Python or C++, robotic operating systems (ROS), and simulation tools is typically required. Strong problem-solving, teamwork, and communication skills help you design, test, and refine complex robotic systems effectively. These skills are crucial for developing reliable, intelligent robots that can safely and efficiently interact with their environment.

What are some typical challenges faced by professionals working in robotics manipulation, and how can they be addressed?

Professionals in robotics manipulation often encounter challenges such as integrating complex hardware and software systems, handling uncertainty in object recognition and grasping, and ensuring robust performance in unstructured environments. Collaboration with multidisciplinary teams—including mechanical engineers, software developers, and AI specialists—is key to overcoming these challenges. Staying up to date with the latest research, leveraging simulation tools, and iterative prototyping can also help address common obstacles and drive innovation in this rapidly evolving field.
What cities in Texas are hiring for Robotics Manipulation jobs? Cities in Texas with the most Robotics Manipulation job openings:

Sr. Software Engineer - Wheeled Controls

Apptronik

Austin, TX

$44.75 - $57.25/hr

Other

Posted 28 days ago


Job description

JOB SUMMARY 

The Senior Software Engineer - Wheeled Controls is responsible for developing and deploying the high-performance motion control systems that power our robotic mobility. This role focuses on the critical software layer that coordinates wheeled mobility with upper-body manipulation, ensuring our platforms move and interact with precision, stability, and reliability in complex environments. 

You will lead the development of estimation and control algorithms that unify wheel mobility and manipulation into a cohesive whole-body framework. As a senior member of the team, you are an expert at taking robotic platforms through the full lifecycle-from initial algorithm design to commercial-grade deployment. You thrive on the challenge of coordinating base motion with arm/torso dynamics, managing coupled reaction forces, and ensuring our products are robust enough for mission-critical applications. 

ESSENTIAL DUTIES AND RESPONSIBILITIES 

  • Algorithm Development: Design, implement, and tune whole-body controllers that coordinate wheeled base motion with upper-body manipulation. This includes state-estimation (EKF, UKF), base controllers (MPC, PID), and arm/torso trajectory tracking with dynamic coupling compensation. 
  • Hardware-to-Software Interfacing: Develop the low-level software interface between high-level planning stacks and both wheel drive and upper-body actuators (joints, grippers), ensuring deterministic performance, low-latency communication, and coordinated multi-DOF control. 
  • Productization & Safety: Drive the transition of wheeled platforms to market-ready status. This includes implementing safety-rated speed monitoring, emergency stop logic, and ensuring compliance with industry safety certifications ((e.g., ISO 13849, ISO 10218, ANSI/RIA R15.08) 
  • Planning Integration: Work closely with perception and autonomy teams to integrate mobile manipulation planners-coordinating base repositioning with grasp/task planning for seamless loco-manipulation behaviors. 
  • State Estimation & Localization: Refine sensor fusion techniques (IMU, Wheel Encoders, LiDAR) to provide highly accurate and resilient odometry in diverse, real-world environments. 
  • Testing & Validation: Lead field testing and rigorous validation of motion control performance across various floor types, inclines, and payload configurations. Code Excellence: Maintain high standards for the codebase by writing production-grade, real-time C++. Lead peer reviews and maintain comprehensive documentation for the controls architecture.

SKILLS AND REQUIREMENTS 

Technical Skills (Must-Have) 

  • Controls Expertise: Deep understanding of classical and modern control theory applied to whole-body loco-manipulation systems, including coupled mobile base and multi-DOF manipulator dynamics. 
  • Estimation & Fusion: Strong experience with Kalman Filtering and sensor fusion (IMU, encoders, LiDAR, F/T sensors) for whole-body state estimation. 
  • Expert C++: High proficiency in modern C++ (14/17/20) for real-time systems, with a focus on memory management and performance optimization. 
  • Middleware: Extensive experience with Custom middleware and its real-time capabilities. 
  • Shipment History: A proven track record of taking complex wheeled-base platforms to market or deploying robotic fleets in commercial/industrial settings. 

Strong Nice to Haves 

  • Navigation Guru: Deep familiarity with the stack, including custom plugin development (Controller, Planner, or Recovery behaviors). 
  • Safety Standards: Experience navigating safety certification processes and implementing safety-critical software architectures. 
  • System Identification: Expertise in modeling and identifying the dynamics of complex electromechanical drive systems. 
  • Simulation: Experience using MuJoCo or Isaac Sim to validate control stability before deploying to physical hardware. 

EDUCATION AND/OR EXPERIENCE 

  • Education: MS or PhD in Robotics, Mechanical Engineering, Electrical Engineering, Computer Science, or a related field. 
  • Experience: 5+ years of relevant industry experience (or 3+ years with a PhD) specifically focused on mobile robotics and wheeled motion control. 
  • Proven Impact: Direct experience taking a wheeled-base platform through the full product lifecycle, from initial control design to factory exit and customer deployment.

PHYSICAL REQUIREMENTS 

  • Prolonged periods of sitting at a desk and working on a computer
  • Must be able to lift 50 pounds at times
  • Vision to read printed materials and a computer screen
  • Hearing and speech to communicate