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Surgical Robotics Jobs in Michigan (NOW HIRING)

OB/GYN Physician

Troy, MI ยท On-site

$234K - $253K/yr

Work with state-of-the-art surgical robotics and enjoy the convenience of dedicated block time for procedural efficiency. Practice Details and Location: * Location: Situated in Troy, MI, a community ...

... and handling surgical tools. Team members at Kethos collaborate across disciplines to design ... Role Description We are seeking a Robotics Engineer (1099 Contractor / Part-Time) based in the ...

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Surgical Robotics information

See Michigan salary details

$628

$1.6K

$2.5K

How much do surgical robotics jobs pay per week?

As of Sep 3, 2026, the average weekly pay for surgical robotics in Michigan is $1,640.60, according to ZipRecruiter salary data. Most workers in this role earn between $1,223.08 and $2,011.54 per week, depending on experience, location, and employer.

What is surgical robotics?

A Surgical Robotics job involves developing, operating, or maintaining robotic systems used in surgical procedures. Professionals in this field may work as engineers designing robotic instruments, technicians ensuring system functionality, or specialists assisting surgeons during operations. These roles require expertise in robotics, biomedical engineering, and healthcare technology. The goal is to enhance surgical precision, reduce invasiveness, and improve patient outcomes.

What does someone working in surgical robotics do?

Professionals in Surgical Robotics are typically responsible for setting up, calibrating, and maintaining robotic surgical systems, as well as providing technical support before, during, and after surgical procedures. They often collaborate directly with surgeons and operating room staff, ensuring equipment is functioning optimally and troubleshooting any issues that may arise. Additionally, they may assist with training healthcare professionals on new robotic technologies and updates. Daily tasks can also involve documenting procedures, analyzing system performance, and participating in regular equipment maintenance or upgrades to support safe and effective surgeries.

What are the key skills and qualifications needed to thrive in surgical robotics?

To thrive in Surgical Robotics, you need a strong background in biomedical engineering, mechanical or electrical engineering, or computer science, often with a relevant bachelor's or master's degree. Familiarity with robotic surgery systems (like da Vinci Surgical System), programming languages, and certification in medical device handling are commonly required. Excellent problem-solving skills, attention to detail, and clear communication are vital for collaborating with surgeons and healthcare teams. These competencies ensure safe, precise, and efficient integration of robotic technology in surgical procedures, directly impacting patient outcomes.

What are the most commonly searched types of Surgical Robotics jobs in Michigan?

The most popular types of Surgical Robotics jobs in Michigan are:

Infographic showing various Surgical Robotics job openings in Michigan as of August 2026, with employment types broken down into 60% Full Time, 20% Part Time, and 20% Contract. Highlights an 100% In-person job distribution, with an average salary of $85,311 per year, or $41 per hour.

Mechanical Design Engineer - Surgical Robotics & Handheld Tools

Groupe SEGULA Technologies SA

Kalamazoo, MI โ€ข On-site

$75 - $95/hr

Other

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


Job description

We are seeking a highly skilled and innovative Mechanical Design Engineer to lead the development of next-generation, handheld surgical tools that seamlessly interface with advanced robotic systems. The ideal candidate will possess a deep understanding of complex mechanisms, rotating systems, and high-precision mechanical design, reminiscent of high-performance power hand tools.

In this role, you will bridge the gap between robust mechanical functionality and sophisticated robotic interfaces, ensuring the highest standards of safety, ergonomics, and manufacturability.

Key Responsibilities Primary Focus: Mechanical Design & Innovation (approx. 70%)
  • Mechanism & System Design: Conceptualize, develop, and refine complex mechanical designs, rotating systems, and intricate mechanisms for handheld surgical devices.
  • Robotic Integration: Design robust mechanical interfaces that connect handheld instrumentation with robotic equipment.
  • Design for Excellence (DFX): Apply strict DFM (Design for Manufacturing) and DFA (Design for Assembly) principles to optimize product quality, yield, and cost.
  • Cross-Functional Collaboration: Partner with robotics and electrical engineering teams to ensure seamless electroโ€‘mechanical integration.
Secondary Focus: CAD Modeling & Documentation (approx. 30%)
  • Advanced CAD Development: Create robust 3D models and highโ€‘quality, productionโ€‘ready 2D drawings.
  • Data Management: Manage the full product lifecycle and CAD data integrity within a strict PLM environment.
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