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Robotic Safety Engineer Jobs in Texas (NOW HIRING)

Meet the Team Support Torc's Test Safety program by collaborating with product development ... Bachelor's Degree in Computer Science, Robotics, Electrical Engineering or related technical field ...

Meet the Team Support Torc's Test Safety program by collaborating with product development ... Bachelor's Degree in Computer Science, Robotics, Electrical Engineering or related technical field ...

Test Safety Engineer

Fort Worth, TX · On-site

$107 - $128/hr

Meet the Team Support Torc's Test Safety program by collaborating with product development ... Bachelor's Degree in Computer Science, Robotics, Electrical Engineering or related technical field ...

Experience in high-volume manufacturing environments, such as aerospace, automotive, or robotics. * Professional certifications such as Certified Safety Professional (CSP), Professional Engineer (PE ...

We are seeking an entry-level Functional Safety Engineer to ensure the safety and reliability of our autonomous robotic vehicles. The role involves identification of hazards and risks using Systems ...

Equipment Safety Engineer

Bastrop, TX · On-site

$85 - $120/hr

Experience in high‑volume manufacturing environments, such as aerospace, automotive, or robotics. * Professional certifications such as Certified Safety Professional (CSP), Professional Engineer ...

Experience in high-volume manufacturing environments, such as aerospace, automotive, or robotics. * Professional certifications such as Certified Safety Professional (CSP), Professional Engineer (PE ...

Functional Safety Engineer Expert (Contract) Texas City, TX, United States (On-site) Contract (9 ... robotic vehicles. The role involves identification of hazards and risks using Systems Theoretic ...

New

... Safety Engineer Expert to join their dynamic team. As a key contributor in the Safety and ... robotic vehicles. The ideal candidate will demonstrate strong analytical skills, proactive ...

... Safety Engineer Expert to join their dynamic team. As a key contributor in the Safety and ... robotic vehicles. The ideal candidate will demonstrate strong analytical skills, proactive ...

Arm invites applications for a Principal Quality & Safety Engineer to join the Arm Global Standards ... Support Automotive and Robotics programs from development through certification. * Work with ...

Arm invites applications for a Principal Quality & Safety Engineer to join the Arm Global Standards ... Support Automotive and Robotics programs from development through certification. * Work with ...

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Robotic Safety Engineer information

What is a robotic safety engineer?

Robotic Safety Engineers are professionals who ensure that robots and automated systems operate safely in various environments, such as manufacturing plants or research labs. They analyze risks, design safety protocols, and implement measures to prevent accidents or injuries caused by robotic equipment. Their responsibilities also include conducting safety assessments, developing emergency procedures, and ensuring compliance with industry standards and regulations. By maintaining and improving safety systems, they help protect both human workers and equipment in workplaces that utilize robotics.

What are the key skills and qualifications needed to thrive as a robotic safety engineer?

To thrive as a Robotic Safety Engineer, you need a strong background in mechanical, electrical, or robotics engineering, often with a relevant engineering degree and experience in industrial automation. Familiarity with safety standards such as ISO 10218, risk assessment tools, and safety PLC programming is typically required. Excellent problem-solving skills, attention to detail, and clear communication are crucial soft skills for identifying hazards and collaborating with multidisciplinary teams. These abilities ensure robotic systems are designed and maintained to meet strict safety regulations, minimizing risks to people and equipment.

What are the main challenges a robotic safety engineer faces when integrating new robotic systems into existing manufacturing environments?

One of the primary challenges a Robotic Safety Engineer encounters is ensuring that new robotic systems seamlessly integrate with legacy equipment and established safety protocols. This often involves conducting thorough risk assessments, updating emergency stop procedures, and coordinating with multidisciplinary teams—including production, maintenance, and IT—to address both hardware and software safety concerns. Additionally, adapting safety standards to evolving technologies and training staff on new procedures are crucial responsibilities. Effective communication and proactive problem-solving are key to overcoming these challenges and maintaining a safe, efficient work environment.

Do robotic safety engineers get paid well?

Robotic safety engineers typically earn competitive salaries due to their specialized skills in automation, safety standards, and risk assessment. Salaries vary based on experience, location, and industry, but the role generally offers above-average compensation compared to other engineering fields.

Is there a high demand for robotic safety engineers?

Robotic safety engineers are in high demand due to the increasing adoption of automation and robotics across industries such as manufacturing, healthcare, and logistics. Employers seek professionals with expertise in safety standards, risk assessment, and certifications like OSHA or ISO to ensure safe integration of robotic systems, leading to strong job growth in this field.

What cities in Texas are hiring for Robotic Safety Engineer jobs?

Cities in Texas with the most Robotic Safety Engineer job openings:

Senior System Safety Engineer

AeroVect Technologies Inc.

Atlanta, TX • On-site

$140 - $200/hr

Other

Posted 15 days ago


Job description

Who We Are

AeroVect is transforming ground handling with autonomy, redefining how airlines and ground service providers around the globe run day‑to‑day operations. We are a Series A company backed by top‑tier venture capital investors in aviation and autonomous driving. Our customers include some of the world’s largest airlines and ground handling providers. For more information, visit www.aerovect.com.

Working under the close guidance and supervision of the Head of Safety, the Senior Safety Engineer will execute core safety lifecycle tasks across AeroVect’s software and hardware platforms:

  • System Safety Analysis: Perform hazard identification and risk assessments (HARA, FMEA, FTA, STPA) on the autonomous system architecture and vehicle operation concepts.
  • Requirements Derivation: Derive, specify, and trace functional and technical safety requirements (FSRs / TSRs) for both supervised autonomy (safety driver present) and SDO unsupervised autonomy (driverless).
  • Cross-Functional Execution: Collaborate directly with systems, software, robotics, hardware, and test teams to ensure safety requirements are integrated, testable, and verified.
  • Safety Case Support: Assist in building safety case artifacts and verification evidence required for airport commercial deployment.
You Will
  • Perform Quantitative Hardware Safety Analyses, including FMEDA, hardware diagnostic coverage analysis, and Probabilistic Metric for random Hardware Failures (PMHF).
  • Calculate hardware component and system failure rates using standard methodologies (SN 29500, IEC 61709, MIL-HDBK-217F, Telcordia SR-332).
  • Evaluate drive‑by‑wire compute hardware, sensor suites (Lidar, Radar, Camera), actuator interfaces, and power distribution systems for single‑point and latent faults.
  • Derive Hardware Safety Requirements (HSRs) for redundant architectures and fail‑operational compute nodes.
You Have
  • 5+ years of hands‑on safety engineering experience in autonomous vehicles, automotive (ISO 26262), aerospace (DO-178C/DO-254), or industrial safety (IEC 61508).
  • 5+ years in hardware safety engineering, EE reliability, or failure rate modeling for automotive, aerospace, or industrial robotics.
  • Prior background working with autonomous driving systems or mobile robotics.
  • Proven ability to work under the technical mentorship of a Principal Safety Engineer in a high‑velocity agile engineering team.
  • B.S. or M.S. in Computer Science, Electrical Engineering, Systems Engineering, Robotics, or a related discipline.
  • Proven mastery of FIT rate modeling, component failure rate calculation methods (SN 29500, IEC 61709, MIL-HDBK-217), and FMEDA workflows.
  • ISO 26262-5 Mastery: Deep knowledge of hardware architectural metrics (SPFM, LFM) and hardware diagnostic strategies.
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