Staff Integration Engineer, R&D

Posted Yesterday
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Santa Cruz, CA, USA
In-Office
Senior level
Hardware • Healthtech • Robotics • Manufacturing
The Role
Lead electromechanical integration and troubleshooting of robotic systems; triage and resolve cross-functional hardware/software issues; build and commission prototypes; run tests and simulations; support manufacturing and field teams; define system/subsystem requirements and document manufacturability and reliability learnings.
Summary Generated by Built In

Reports to: Head of Robotics, R&D

Workplace type: Hybrid, on-site in Santa Cruz an average of 4-days per week

Capstan Medical: Creating a new standard for minimally invasive structural heart treatment

Who we are:

At Capstan Medical, we’re driven by an unwavering commitment to transforming the treatment of heart valve disease. By merging surgical robotics with catheter-based technology and next generation implants, we’ve pioneered a patient-optimized approach to repair and replace heart valves.

Our innovative technology offers a significantly less invasive alternative to traditional open-heart surgery while ensuring precise and reliable placement of the heart valve implant. With these advancements, we may be able to provide patients with a solution to their heart valve disease while significantly reducing recovery time and minimizing the risk of complications. With a dedicated team of heart valve device experts and robotics engineers, we are fully committed to developing a comprehensive and transformative solution that will positively impact the lives of individuals affected by this condition.

Capstan Medical is uniquely positioned in Santa Cruz. This gives us access to the amazing technical talent of the Bay Area, but in an environment that we feel is conducive to doing our best creative work. Our office is adjacent to large tracts of open space with bicycle trails straight from the office doors offering access to the hills and beaches of Wilder Ranch State Park for road/mountain bicycle riding, hiking, and surfing.

Come join us and become part of a team revolutionizing heart valve treatment!

What you’ll do:

    • Triage and solve complex, cross functional problems by identifying root causes across mechanical, electrical, and software systems, then owning resolving issues through crowdsourcing solutions, selecting the optimal approach, and driving implementation to completion.
    • Lead the electromechanical integration of robotic hardware. This includes planning, coordination, execution, and regular communication to stakeholders.
    • Participating in hands on building and commissioning of robotic system prototypes, combining mechanical, electronic, and software principles, and conducting rigorous testing and simulations to evaluate performance.
    • Provide keen judgement on priorities, balancing milestone targets, derisking, learning, and scale-up to ensure we move as efficiently as possible.
    • Provide escalation support to our Manufacturing and Case Support (field) teams.
    • Work across engineering teams to define and refine system and subsystem requirements, ensuring that considerations from across the technical spectrum are heard and understood.
    • Document and communicate design learnings on manufacturability and reliability to the broader hardware team, creating scalable processes that enable others to replicate setup and integration without creating dependencies.
    •  

What skills you bring:

    • Experience with test and debug of electromechanical systems, and the ability to do basic PCBA design modifications.
    • Hands-on experience with lab equipment (oscilloscopes, multimeters, signal analyzer).
    • C++ and Python programming skills, with the ability to run and configure test scripts to support debugging, and create clear bug reports when issues are found.

What we are looking for:

    • BS in a related engineering discipline, or equivalent work experience
    • Expecting 8+ years of relevant experience (medical device or a similar regulated field experience preferred)
    • Experience with medical device (or equivalent) development process, design control, design verification, and regulatory processes
    • Comfortable working with high levels of ambiguity and an ability to convert that into tangible outcomes
    • Ability to work in a hybrid work environment, working onsite in Santa Cruz on average 4 days a week

Why join us:

  • We offer a fun, fast-paced, collaborative environment where you will be working on transformational technologies in the cardiac healthcare space.
  • We offer outstanding benefits with medical, dental, and vision covered at 100% for you and your family, as well as flex time off.
  • We thrive in our work-hard, play-hard environment. Bring your bike or running shoes if you’d like or just be ready to enjoy a fun office outing. We enjoy time inside the office and out!

 

We are an equal opportunity employer. All qualified applicants will receive consideration for employment without regard to race, color, religion, national origin, sex, sexual orientation, gender identity, veteran status, and disability, or other legally protected status. 

Skills Required

  • Experience testing and debugging electromechanical systems, including basic PCBA design modifications
  • Hands-on experience with lab equipment (oscilloscopes, multimeters, signal analyzer)
  • C++ programming skills
  • Python programming skills
  • BS in a related engineering discipline or equivalent work experience
  • 8+ years of relevant experience
  • Experience with medical device (or similar regulated) development process, design control, design verification, and regulatory processes
  • Ability to work in a hybrid environment onsite in Santa Cruz an average of 4 days per week
  • Ability to work with high levels of ambiguity and convert that into tangible outcomes
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The Company
82 Employees
Year Founded: 2020

What We Do

Capstan Medical is a developer of robotic-enabled, minimally invasive solutions for treating structural heart disease. By merging surgical robotics with catheter-based technology and next-generation implants, the company aims to provide a patient-optimized approach to repair and replace heart valves, offering a significantly less invasive alternative to traditional open-heart surgery to improve patient outcomes and reduce recovery times.

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