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Remote Robotics Jobs in Ohio (NOW HIRING)

RPA Analyst

Cleveland, OH ยท On-site +1

... RPA developers, and leadership teams within a healthcare revenue cycle environment. This role ... Open to remote employees ONLY in: OH (if outside commutable distance), PA, MI, IN, KY, WV, WI, AL ...

Experience in applying PPO to [specific domain, e.g., robotics, gaming, finance, etc ... Remote work location. * Competitive salary. * Flexible work schedule. * Opportunities for ...

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Remote Robotics information

What is a Remote Robotics job?

A Remote Robotics job involves designing, programming, monitoring, or maintaining robotic systems from a remote location. This can include teleoperating robots, developing automation software, or troubleshooting robotic hardware via cloud-based platforms. Remote robotics professionals work in industries such as manufacturing, healthcare, aerospace, and logistics. These roles often require expertise in robotics engineering, programming, and network communications. Advances in AI and IoT have made remote robotics more accessible and crucial for automation and efficiency.

Will AI replace robotics engineer?

AI is expected to augment the work of robotics engineers by automating certain tasks such as programming, data analysis, and system optimization. However, robotics engineers will continue to be essential for designing, building, and maintaining complex robotic systems that require human oversight, creativity, and problem-solving skills. The role is likely to evolve rather than be fully replaced by AI.

What are some typical challenges faced by professionals in Remote Robotics roles?

One of the most common challenges in Remote Robotics is troubleshooting hardware and software issues without direct, on-site access, which requires strong analytical and remote diagnostic skills. Professionals in this field often navigate time zone differences and coordinate closely with local technical staff or end users to resolve issues quickly. Effective communication and clear documentation become critical to ensure remote instructions are followed accurately. Additionally, staying up-to-date with evolving technologies and security protocols is essential for maintaining optimal system performance and data safety.

What engineering jobs pay $500,000?

Senior engineering roles such as aerospace, petroleum, and software engineering can reach or exceed $500,000 annually, especially with experience, bonuses, and stock options. These positions often require advanced skills, leadership responsibilities, and sometimes specialized certifications or advanced degrees.

What are the key skills and qualifications needed to thrive in the Remote Robotics position, and why are they important?

To thrive in Remote Robotics, you need a strong foundation in robotics engineering, computer programming (especially Python, C++, or ROS), and experience with remote system monitoring and troubleshooting. Familiarity with teleoperation platforms, cloud-based control systems, and remote diagnostics tools is essential, with relevant certifications such as CSWA or ROS Developer often preferred. Excellent problem-solving skills, attention to detail, and effective communication are valuable soft skills for collaborating across distributed teams. These skills ensure you can efficiently design, monitor, and maintain robotic systems from a distance while collaborating with colleagues and clients in dynamic environments.

Which 5 jobs will survive AI?

Remote robotics jobs such as robotics engineers, automation specialists, and systems integrators are likely to persist as they require complex problem-solving, hands-on skills, and adaptability that AI cannot fully replicate. These roles often involve designing, maintaining, and improving robotic systems, which depend on advanced technical knowledge, programming skills, and physical interaction. Continuous learning and expertise in tools like CAD, programming languages, and control systems are essential for long-term employment in this field.

Can a robotics engineer work remotely?

Robotics engineers can often work remotely, especially in roles focused on software development, simulation, and design, which require computer-based tasks. However, positions that involve hardware testing, assembly, or maintenance may require on-site presence. Remote work availability depends on the employer and specific job responsibilities.
What are the most commonly searched types of Robotics jobs in Ohio? The most popular types of Robotics jobs in Ohio are:
What are popular job titles related to Remote Robotics jobs in Ohio? For Remote Robotics jobs in Ohio, the most frequently searched job titles are:
What job categories do people searching Remote Robotics jobs in Ohio look for? The top searched job categories for Remote Robotics jobs in Ohio are:
What cities in Ohio are hiring for Remote Robotics jobs? Cities in Ohio with the most Remote Robotics job openings:
Senior Machine Learning Engineer (Tech Lead), Robot Learning, Loco- Manipulation

Senior Machine Learning Engineer (Tech Lead), Robot Learning, Loco- Manipulation

Path Robotics, Inc

Columbus, OH โ€ข On-site, Remote

Other

Medical, Dental, Vision, Retirement, PTO

This job post hasย expired 1 day ago.ย Applications are no longer accepted.


Job description

Senior Machine Learning Engineer (Tech Lead), Robot Learning, Loco- Manipulation

Columbus, Ohio or Remote

At Path Robotics, we're building the future of embodied intelligence. Our AI-driven systems enable robots to adapt, learn, and perform in the real world closing the skilled labor gap and transforming industries. We go beyond traditional methods, combining perception, reasoning, and control to deliver field-ready AI that is risk-aware, reliable, and continuously improving through real-world use.

Big, hard problems are our everyday work, and our team of intelligent, humble, and driven people make the impossible possible together.

We are standing up a new Robot Learning team focused on whole-body loco-manipulation for precision tasks in heavy manufacturing.

We are seeking a Senior Machine Learning Engineer (Tech Lead) for this new team. You write code, set the technical direction, make the architectural decisions the team builds on, mentor junior and intermediate engineers, and help shape how the team works.

What You'll Do
  • Set the ML technical direction for the team, architectural choices on perception, reasoning, and action generation; training methodology; data strategy; the path from research bet to deployed capability. As one of the first senior hires, you are designing the approach, not extending it.
  • Own the architectural workstreams that define the team's research and engineering bets โ€” multiple core build streams across action-policy learning, world-model-based supervision, and policy-orchestration interfaces.
  • Design hybrid physics-ML architectures for the integrated loco-manipulation stack. Manipulation, locomotion, and the whole-body control coupling between them are not separable on legged platforms; sub-millimetre continuous-trajectory precision at the tool requires the whole-body controller to compensate for base motion in real time. Today on fixed bases; tomorrow on mobile platforms. The integration is the hard problem; you own its design.
  • Own the cross-functional partnerships with hardware teams, domain experts, customer-facing assurance standards, and upstream / downstream teams. Drive a phased deployment strategy that builds production trust over time.
  • Mentor and shape the team, guide junior and intermediate ICs across software, ML, robotics, and perception backgrounds; establish code-quality standards, review practices, and engineering norms; help identify and attract next hires. You write code throughout โ€” this is a tech-lead role, not a step away from the work.

Who You Are

  • Ph.D. or Master's degree in Robotics, Mechanical Engineering, Electrical Engineering, Computer Science, or a related field or equivalent experience.
  • 5+ years of hands-on robot learning experience. You have shipped sim-to-real policies on real robots, across different tasks or platforms.
  • Demonstrated technical leadership and mentorship. You have made architectural decisions on robot learning systems that others built on, and you have meaningfully shaped the development of more-junior engineers as a tech lead. This can be in academia (leading a lab subgroup, advising students) or industry.
  • Deep sim-to-real expertise โ€” domain randomisation, system identification, teacher-student distillation, sim-to-online fine-tuning. You can design a transfer strategy for a novel problem.
  • Full-stack robot learning โ€” fluent across simulation construction, policy training, data collection, real-world deployment, and failure diagnosis.
  • Physics-informed ML or hybrid control experience โ€” PINNs, neural ODEs, MPC with learned dynamics, process-model-conditioned generation, or similar.
  • A defensible view on visual-reasoning-centric substrates for grounded spatial / physical reasoning.
  • Push-back willingness โ€” you can defend a non-obvious architectural commitment under pressure, and change your mind on evidence.
  • Strong programming skills in Python and C++; production-quality code with reproducibility, testing, and maintainability discipline.
  • Strong communication skills, able to convey complex technical concepts to a diverse audience.
  • Demonstrated independent technical authority โ€” you have set technical direction in a tech-lead capacity, leading a research subgroup, owning an architecture across multiple ICs' work, or making the architectural call on a high-profile project.

Strongly Preferred:

  • Edge inference depth (TensorRT, ONNX, edge-class deployment).
  • Loco-manipulation experience โ€” locomotion, whole-body control, and manipulation on legged platforms (quadrupeds, humanoids). The coupling between the three is the hard problem; direct hands-on experience or a defensible architectural view both count.
  • Precision manipulation or surgical robotics โ€” sub-mm accuracy tasks.
  • Flow-matching action-head design at depth โ€” direct experience with the architectural pattern.
  • Visual self-supervised representation learning experience on robot or 3D-vision tasks.
  • Multi-skill workflow or hierarchical policy design โ€” skill sequencing, failure detection, control mode transitions.
  • Experience building ML capability from early stage โ€” first or second ML engineer on a team, or built a research group's infrastructure from scratch.

Why You'll Love Working Here

  • Daily free lunch to keep you fueled and connected with the team
  • Flexible PTO so you can take the time you need, when you need it
  • Comprehensive medical, dental, and vision coverage
  • 6 weeks fully paid parental leave, plus an additional 6โ€“8 weeks for birthing parents (12โ€“14 weeks total)
  • 401(k) retirement plan through Empower
  • Generous employee referral bonusesโ€”help us grow our team!

Who We Are

At Path Robotics we love coming to work to solve interesting and tough challenges but also because our ideas are welcomed and valued. We encourage unique thinking and are dedicated to creating a diverse and inclusive environment. All qualified applicants will receive consideration for employment without regard to race, color, religion, gender, gender identity or expression, sexual orientation, national origin, genetics, disability, age, or veteran status.

If you require a reasonable accommodation to participate in the application process or any part of the hiring process, please contact HR@path-robotics.com. We are committed to providing equal access and will work with qualified individuals to ensure a fair and accessible hiring experience. We will respond to your request within 48 hours.