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Senior RF & Electromagnetics Engineer - Future Opportunities

Hyperfine Research · Guilford, Connecticut · On-site

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About Hyperfine Research

The Hyperfine, Inc. Swoop® Portable MR Imaging® system brings brain imaging to the patient at the point of care. Backed by GV.

About the role

This is an evergreen posting and not an active opening. We are always interested in connecting with talented individuals who are passionate about our mission. By applying to this posting, you'll join our Talent Community and be considered for future opportunities should a position that aligns with your skills and experience become available in the future.

What they're looking for

  • Bachelor’s degree in physics, engineering physics, or electrical engineering and 5 years’ related work experience, or
  • Equivalent combination or education and experience (e.g., Master’s degree with 3 years’ experience or a PhD degree in a relevant field)
More about this role

Join Our Talent Community!

This is an evergreen posting and not an active opening. We are always interested in connecting with talented individuals who are passionate about our mission. By applying to this posting, you'll join our Talent Community and be considered for future opportunities should a position that aligns with your skills and experience become available in the future.

About Us

Hyperfine, Inc. (Nasdaq: HYPR) is the groundbreaking health technology company that has redefined brain imaging with the Swoop ® system—the first FDA-cleared, portable, ultra-low-field, magnetic resonance brain imaging system capable of providing imaging at multiple points of care in a healthcare facility. Our mission is to revolutionize patient care globally through transformational, accessible, clinically relevant diagnostic imaging. Learn More

About The Role

Job Title : Senior RF & Electromagnetics Engineer

The Senior RF & Electromagnetics Engineer, designs, tests, characterizes, and optimizes RF coils and associated analog electronics for the low MHz frequency domain. Secondary to this, they may contribute significantly to the electromagnetic subsystem of the ultra low field MRI system,...

Read the full posting on Hyperfine Research's site ↗

Imaging

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