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Managing Systems Analyst

Job in Sunnyvale, Santa Clara County, California, 94087, USA
Listing for: Intuitive Surgical Inc
Full Time position
Listed on 2026-06-13
Job specializations:
  • Engineering
    Robotics, Systems Engineer
Salary/Wage Range or Industry Benchmark: 80000 - 100000 USD Yearly USD 80000.00 100000.00 YEAR
Job Description & How to Apply Below
Position: Managing Staff Systems Analyst

Company Description

It started with a simple idea: what if surgery could be less invasive and recovery less painful? Nearly 30 years later, that question still fuels everything we do at Intuitive
. Intuitive is a global leader in robotic‑assisted surgery and minimally invasive care
. Our technologies—such as the da Vinci surgical system and Ion—have transformed the delivery of care for millions of patients worldwide. We are a team of engineers, clinicians, and innovators united by one purpose: to make surgery smarter, safer, and more human.

Job Description

The Advanced Product Development (APD) team leverages and advances the cutting‑edge of technology to define and develop the surgical robotic systems of the future. This Managing Staff, Systems Analyst role is a senior player‑coach reporting to the Vice President, Advanced Product Development in the Multiport Systems (da Vinci) business unit at Intuitive
.

Primary Function of Position

The ideal candidate will combine deep individual technical contribution with direct people leadership of a small team of Systems Analysts who are central to the design, development, and evaluation of new products in the da Vinci product line. The team is responsible for developing surgical teleoperation, motion control, and safety algorithms spanning electrical, mechanical, software, control, user interface, and safety engineering.

Essential

Job Duties
  • Lead and mentor a team of Systems Analysts; set technical direction, assign work, track milestones, assess performance, and actively support career development.
  • Serve as technical authority for one or more major algorithmic subsystems (e.g., teleoperation, motion control, safety), drive architecture decisions, design reviews, and resolution of the hardest technical problems.
  • Apply advanced control theory to the design and verification of mechatronic and tele‑robotic systems; guide the team through complex design tradeoffs.
  • Architect and implement Cartesian controls for manipulator robotics to enable precise and efficient robotic movements.
  • Lead prototype hardware planning, bring‑up, and integration with existing systems; remain hands‑on in the lab alongside the team.
  • Develop and oversee implementation of motion control and safety algorithms, including documentation of risks, requirements, and test protocols.
  • Lead and participate in clinical observations and experiments to ensure that performance requirements are clinically relevant and achievable.
  • Communicate system performance and team progress to the broader organization; represent the team in program‑level reviews and cross‑functional forums.
  • Act as the primary interface between Systems Analysis and cross‑functional teams (Electrical, Mechanical, Software, Clinical, Regulatory); take ownership of issues that cross disciplinary boundaries.
  • Identify, document, and drive timely filing of intellectual property; coach the team to proactively surface and protect IP.
  • Ensure the team follows FDA design history file guidelines and holds design reviews in accordance with product development procedures.
  • Provide administrative leadership and control for planning, staffing, budgeting, and project/program cost tracking.
  • Provide engineering resources to support Manufacturing, Testing and Service to facilitate transfer of designs.
  • Support and encourage advanced innovation within the team; foster an environment that promotes creativity, risk‑taking, and crisp execution.
Qualifications Required Skills and Experience
  • Expert‑level knowledge of control theory and its application to teleoperation, motion control, and safety‑critical algorithm design.
  • Proven track record designing and implementing servo control systems for complex electro‑mechanical or robotic platforms.
  • Strong embedded development skills including deep proficiency in C and modern C++; experience with real‑time control systems.
  • MATLAB and Python programming capabilities, as well as hands‑on hardware and software integration experience.
  • Demonstrated ability to lead or technically mentor a small group of engineers (2+ years formal leadership experience).
  • Ability to lead and influence cross‑functional teams in the design of complex systems.
  • Expe…
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