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Chassis Engineering Jobs in Texas (NOW HIRING)

The chassis is the structural and electromechanical backbone of the robot, and it ties together ... If you thrive in a fast paced environment with a successful track record in engineering design ...

Senior Systems Engineer - Chassis

Austin, TX · On-site

$99K - $135K/yr

The chassis is the structural and electromechanical backbone of the robot, and it ties together ... If you thrive in a fast paced environment with a successful track record in engineering design ...

Drive advanced manufacturing across structural fabrication, chassis, assembly, robotic welding, CNC, automation, and material handling Who you are * A manufacturing engineering leader who has built ...

New

Engineering Technician III

Dallas, TX · On-site

$37K - $47K/yr

Support installation, de-installation, and movement of optical equipment and chassis. * Perform ... Engineering/Hardware Technician experience * Optical equipment experience * Hardware ...

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Chassis Engineering information

See Texas salary details

$19

$49

$92

How much do chassis engineering jobs pay per hour?

As of Sep 15, 2026, the average hourly pay for chassis engineering in Texas is $49.31, according to ZipRecruiter salary data. Most workers in this role earn between $35.82 and $59.57 per hour, depending on experience, location, and employer.

What is chassis engineering?

Chassis engineering is the field of engineering focused on designing, developing, and testing the structural framework of vehicles, commonly referred to as the chassis. This includes components such as the frame, suspension, steering, and braking systems, all of which are critical for vehicle stability, safety, and handling. Chassis engineers work to optimize these systems for performance, durability, and compliance with safety regulations, often collaborating with other automotive engineering disciplines. Their work is essential in ensuring a vehicle's ride quality, handling characteristics, and overall structural integrity.

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

To thrive as a Chassis Engineer, you need a solid background in mechanical engineering, vehicle dynamics, and structural analysis, often supported by a relevant engineering degree. Familiarity with CAD software (such as CATIA or SolidWorks), FEA tools, and industry standards is typically required. Strong problem-solving abilities, attention to detail, and effective communication are vital soft skills for collaborating with cross-functional teams. These competencies ensure safe, innovative, and cost-effective chassis designs that meet performance and regulatory requirements.

What are some typical challenges chassis engineers face when working on new vehicle models?

Chassis Engineers often encounter challenges related to balancing performance, safety, cost, and manufacturability when developing new vehicle models. They must collaborate closely with cross-functional teams, such as suspension, body, and electronics engineers, to ensure all components integrate seamlessly while meeting strict regulatory and performance standards. Additionally, adapting to rapidly evolving technology, such as electric vehicle platforms and lightweight materials, requires continuous learning and innovation. Effective communication and problem-solving skills are essential for overcoming these complexities and delivering successful chassis designs.

What is the difference between Chassis Engineering vs Mechanical Engineering?

AspectChassis EngineeringMechanical Engineering
Required CredentialsBachelor's in Mechanical or Automotive Engineering, certifications in CAD and vehicle systemsBachelor's in Mechanical Engineering, often with additional certifications in CAD and design
Work EnvironmentAutomotive or vehicle manufacturing plants, design labsFactories, design offices, research labs across various industries
Industry UsagePrimarily in automotive, motorsport, and vehicle designBroad industry application including aerospace, manufacturing, robotics

Chassis Engineering focuses specifically on designing and developing vehicle frames and structures, often within the automotive industry. Mechanical Engineering covers a wider range of engineering disciplines, including vehicle design, but also extends to machinery, aerospace, and manufacturing. While both roles require similar credentials and work environments, Chassis Engineering is specialized in vehicle frameworks, making it a more targeted career path for those interested in automotive structural design.

What does a chassis engineer do?

A chassis engineer designs, analyzes, and tests vehicle chassis components to ensure safety, performance, and durability. They use CAD software and testing tools to develop and improve structural frameworks, often collaborating with other engineering teams and adhering to industry standards. Their work involves understanding vehicle dynamics, materials, and manufacturing processes.

What cities in Texas are hiring for Chassis Engineering jobs?

Cities in Texas with the most Chassis Engineering job openings:

Infographic showing various Chassis Engineering job openings in Texas as of August 2026, with employment types broken down into 92% Full Time, 5% Part Time, 2% Contract, and 1% Nights. Highlights an 85% Physical, 5% Hybrid, and 10% Remote job distribution, with an average salary of $102,570 per year, or $49.3 per hour.

Senior Systems Engineer - Chassis

Austin, TX

Apptronik
Industrial Automation Equipment Manufacturing • 11 - 50 employees

$99K - $135K/yr

Full-time

Posted 6 days ago


Job description

Senior Systems Engineer - Chassis
Location: Austin, TX - Onsite

Job Summary

We are seeking an experienced Senior Systems Engineer to drive the integration, development, and lifecycle of our next-generation humanoid robot chassis. The chassis is the structural and electromechanical backbone of the robot, and it ties together mechanical structure, actuation, power, and controls. This role sits at the intersection of structural and mechanical design, power distribution, thermal management, and systems integration. You will be responsible for developing system requirements, collaborating cross functionally, and ensuring that our chassis meets performance, reliability, safety, and manufacturability targets. This is a high impact role contributing from concept through deployment. If you thrive in a fast paced environment with a successful track record in engineering design verification and product validation of electro-mechanical products, we'd love to speak with you. This position requires strong experience in robotics systems design, integrating complex structural and mechanical systems, and the ability to turn technical concepts into pragmatic execution.

ESSENTIAL DUTIES AND RESPONSIBILITIES or KEY ACCOUNTABILITIES

  • Develop and maintain system level requirements and specifications for the robot chassis and structural subsystems.
  • Contribute to and implement system architecture for the humanoid chassis.
  • Collaborate on interface definitions between chassis and structural hardware and higher level actuation, power, compute, and control systems.
  • Perform trade studies across structural performance, weight, cost, manufacturability, and reliability.
  • Drive system integration efforts across mechanical structure, power distribution, wiring and harness, and thermal subsystems.
  • Develop verification and validation (V&V) plans and test protocols, including structural load testing, fatigue and life testing, thermal characterization, and vibration and shock testing.
  • Establish and track performance benchmarks such as structural stiffness and strength margins, mass properties, thermal limits, ingress protection, and service life or cycle counts.
  • Partner with mechanical, electrical, controls, AI, manufacturing, and supply chain teams.
  • Support systems requirement definition and integration across structure, power management, electrical architecture, sensing, compute mounting, and cable routing.
  • Design for structural integrity, fault tolerance, serviceability, and reliability in a production environment.
  • Coordinate prototype builds, structural design reviews, and DFM and DFA reviews.
  • Support supplier selection and qualification for structural components, fasteners, castings and machined parts, and precision hardware.
  • Support supplier selection and qualification for structural components, fasteners, castings and machined parts, and precision hardware.
  • Support compliance, safety standards, and field deployment readiness.
  • Design and support real time monitoring, structural health data logging, and remote diagnostic capabilities.
  • Drive and support root cause failure analysis, including structural failures, fastener and joint failures, and wear, and corrective action to enhance uptime and performance.

SKILLS AND REQUIREMENTS

  • Strong experience designing and integrating complex structural, mechanical, and electrical systems for real time, dynamic robotics applications.
  • Strong understanding of structural mechanics (FEA, stress and fatigue analysis), materials selection (metals, composites, additive manufacturing), GD&T, and DFM and DFA for production hardware.
  • Experience with actuator, gearbox, and drivetrain integration into a structural chassis, including mounting, load transfer, and alignment and tolerancing.
  • Excellent cross functional communication skills.
  • Experience with wiring harness design and routing, cable management, and EMI and thermal considerations within a dense electromechanical chassis.
  • Experience bringing robotic and mechatronic hardware from prototype to production, including tolerance stack up and manufacturing process selection.
  • Experience  leveraging industrial design and safety standards for robotic requirement generation, design, system integration, and test
  • Solid grasp of robotics architecture patterns, kinematics, dynamics, and mass and inertia budgeting for legged and wheeled mobile platforms.
  • Background in systems engineering and reliability engineering, including logging, telemetry, structural health monitoring, and automated test frameworks.
  • Knowledge of environmental sealing and ingress protection, vibration and shock qualification, and thermal management for embedded electronics within a structural enclosure.
  • Familiarity with requirements management and traceability tools and model-based systems engineering practices.
  • Collaborative, communicative, and motivated by working within a tight knit team of expert engineers.
  • Adaptable and comfortable with ambiguity in an R&D focused environment.

EDUCATION and/or EXPERIENECE

Bachelor's degree in engineering. Master's and / or PhD degree in engineering preferred.

  • Master's degree in Mechanical Engineering, Electrical Engineering, or equivalent.
  • 6+ years of experience in complex robotics systems or autonomous systems.
  • Demonstrated experience contributing to the system-level architecture and integration of robotic or mechatronic products.

PHYSICAL REQUIREMENTS 

  • Prolonged periods of sitting at a desk and working on a computer
  • Must be able to lift 15 pounds at times.
  • Vision to read printed materials and a computer screen.
  • Hearing and speech to communicate.