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Remote Mri Rf Coil Engineer Jobs in California (NOW HIRING)

Staff RFIC Design Engineer

San Jose, CA · On-site +1

$144K - $187K/yr

Switch/LNA/RF IC Design Engineer, the design of GaAs/SOI/SiGe/CMOS based switch and LNA or RFIC ... Experience supporting remote engineering teams. * Be able to work independently, communicate well ...

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Remote Mri Rf Coil Engineer information

What does a remote MRI RF coil engineer do?

A Remote MRI RF Coil Engineer designs, develops, and maintains radiofrequency (RF) coils used in MRI (Magnetic Resonance Imaging) machines, often while working from a remote location. Their work involves creating coils that optimize image quality, reduce noise, and ensure patient safety. These engineers use specialized software and collaborate with medical teams and manufacturing partners to solve technical challenges, troubleshoot issues, and improve coil performance. Remote work typically involves digital communication, simulation, and virtual testing before coils are physically produced and tested in labs or clinical environments.

What are the key skills and qualifications needed to thrive as a remote MRI RF coil engineer?

To thrive as a Remote MRI RF Coil Engineer, you need a solid background in electrical engineering, RF circuit design, and MRI physics, usually supported by a relevant engineering degree. Familiarity with simulation tools (such as HFSS or CST), PCB design software, and safety standards, along with experience in MRI system integration, is essential. Strong problem-solving abilities, attention to detail, and effective communication are crucial soft skills for diagnosing issues remotely and collaborating with multidisciplinary teams. These skills ensure precise RF coil design, compliance with safety protocols, and the ability to resolve complex technical challenges efficiently in a remote setting.

What are some common challenges faced by remote MRI RF coil engineers, and how can they be addressed?

Remote MRI RF Coil Engineers often face challenges related to effective communication and collaboration with on-site teams, especially when troubleshooting hardware issues or optimizing coil performance. To address these challenges, it's important to establish clear communication channels, utilize remote diagnostic tools, and schedule regular virtual meetings with cross-functional teams such as MRI technologists, design engineers, and project managers. Building strong documentation practices and being proactive in seeking feedback can also help ensure smooth project progress and high-quality outcomes, even when working remotely.

What are the most commonly searched types of Mri Rf Coil Engineer jobs in California?

The most popular types of Mri Rf Coil Engineer jobs in California are:

What are popular job titles related to Remote Mri Rf Coil Engineer jobs in California?

For Remote Mri Rf Coil Engineer jobs in California, the most frequently searched job titles are:

What job categories do people searching Remote Mri Rf Coil Engineer jobs in California look for?

The top searched job categories for Remote Mri Rf Coil Engineer jobs in California are:

What cities in California are hiring for Remote Mri Rf Coil Engineer jobs?

Cities in California with the most Remote Mri Rf Coil Engineer job openings:

Infographic showing various Remote Mri Rf Coil Engineer job openings in California as of September 2026, with employment types broken down into 1% Internship, 74% Full Time, 22% Part Time, and 3% Contract. Highlights an 85% Physical, 4% Hybrid, and 11% Remote job distribution.

RF Engineer I/II - Radar

Long Beach, CA • On-site, Remote

Rocket Lab Corporation
Aerospace Product and Parts Manufacturing • 201 - 500 employees

Full-time

Posted 8 days ago


Rocket Lab rating

9.2

Company rating: 9.2 out of 10

Based on 14 frontline employees who took The Breakroom Quiz


Job description

SPACE SYSTEMS

At Rocket Lab, we're not just launching rockets - we're building the future of space. Our Space Systems team builds everything from complete spacecraft, precision payloads to the components and subsystems that allow them to thrive in space, like solar panels, flight software, star trackers, optical systems, separation systems, radios, and more.

Our Space Systems team has enabled more than 1,700 missions, ranging from interplanetary exploration, in-space manufacturing to national security and defense initiatives. The team has built spacecraft, payloads, and components for missions to the Moon and Mars, working with partners including NASA, the Space Development Agency, and the U.S. Space Force. Whether it's a single high-performance spacecraft, constellation, or the vertically integrated components that help them get to space - our world class Space Systems team is empowering some of the boldest and most ambitious space missions. 

RF ENGINEER I/II - RADAR

Based at Rocket Lab's global headquarters in Long Beach, CA, we are looking for a RF Engineer I/II - Radar who will support the development of radar and RF systems including SAR (Synthetic Aperture Radar) and space-based radar applications. You will work alongside experienced radar engineers to develop radar subsystems, conduct analysis and simulation, and support hands-on testing and integration activities. The successful candidate will have foundational knowledge of radar systems, RF engineering principles, and basic understanding of orbital mechanics and spacecraft systems, and will thrive in a fast-paced, dynamic environment.

(Please note: this position can be hired at the RF Engineer I or RF Engineer II level.)

WHAT YOU'LL GET TO DO:

System Development Support

  • Support the development of space-based radar systems including architecture design, prototyping, integration, test, and flight development
  • Assist in radar link budget analysis and performance modeling considering orbital parameters
  • Conduct radar system simulations using MATLAB, Python, or specialized radar tools including basic orbital analysis
  • Support radar design trades for waveforms, timing, PRF selection, and RF component selection for space applications
  • Perform radar calculations including range/Doppler resolution, SNR, coverage analysis, and basic orbital effects
  • Assist with mission analysis including ground track visualization, access time calculations, and revisit analysis
  • Assist in the development of test plans and procedures for radar payload testing
  • Support radar calibration activities and image quality assessments
  • Help develop technical documentation including test reports, analysis summaries, and ICDs
  • Learn spacecraft integration considerations including power budgets, thermal interfaces, and data handling requirements
  • Radar & RF Engineering
  • Support radar waveform design and analysis for space-based mission applications
  • Participate in hands-on radar testing including EIRP, sensitivity, and imaging tests
  • Support RF component testing and characterization for space qualification
  • Assist with radar data collection and post-processing activities
  • Work with multidisciplinary teams including RF, digital, systems, and spacecraft engineers
  • Learn and apply space-based radar system best practices under mentorship of senior engineers

Customer/Program Support

  • Assist in the review of radar requirements and specifications
  • Support proposal development activities with technical analysis and documentation
  • Participate in engineering reviews and technical meetings
  • Provide technical support for radar-related questions and troubleshooting
  • Track product development schedules and deliverables

YOU'LL BRING THESE QUALIFICATIONS AS AN RF ENGINEER I:

  • Bachelor's degree in electrical engineering, aerospace engineering, physics, or related field
  • Foundational knowledge of radar systems including radar equation and basic signal processing concepts
  • Academic or professional exposure to SAR systems, space-based radar, or remote sensing
  • Basic understanding of orbital mechanics including orbit types (LEO, MEO, GEO), ground tracks, and coverage concepts
  • Foundational awareness of spacecraft systems and how subsystems interact with payloads
  • Basic understanding of RF systems including link budgets, amplifiers, and receiver architectures
  • Proficiency with MATLAB, Python, or similar tools for analysis and simulation
  • U.S. citizenship is required due to program requirements
  • Ability to obtain a TS / SCI clearance

YOU'LL BRING THESE QUALIFICATIONS AS AN RF ENGINEER II:

  • Bachelor's degree in electrical engineering, aerospace engineering, physics, or related field
  • 2+ years of experience in a relevant field
  • Foundational knowledge of radar systems including radar equations and basic signal processing concepts
  • Academic or professional exposure to SAR systems, space-based radar, or remote sensing
  • Basic understanding of orbital mechanics including orbit types (LEO, MEO, GEO), ground tracks, and coverage concepts
  • Foundational awareness of spacecraft systems and how subsystems interact with payloads
  • Basic understanding of RF systems including link budgets, amplifiers, and receiver architectures
  • Proficiency with MATLAB, Python, or similar tools for analysis and simulation
  • U.S. citizenship is required due to program requirements
  • Ability to obtain a TS / SCI clearance

THESE QUALIFICATIONS WOULD BE NICE TO HAVE:

  • Good communication skills and ability to work in a team environment
  • Strong analytical and problem-solving skills
  • Eagerness to learn and develop expertise in space-based radar and RF engineering
  • Existing security clearance
  • Internship or research experience with space-based radar systems or SAR
  • Experience with radar simulation tools (STK, MATLAB Phased Array Toolbox, etc.) including orbital modeling
  • Coursework in orbital mechanics, spacecraft design, or astrodynamics
  • Hands-on experience with RF test equipment (spectrum analyzers, signal generators, network analyzers)
  • Coursework or projects involving digital signal processing or image processing
  • Knowledge of radar imaging modes (stripmap, spotlight, ScanSAR) for space platforms
  • Experience with phased array antennas or beamforming
  • Familiarity with RF design tools (AWR, ADS, CST)
  • Understanding of space environment effects on electronics and systems
  • Knowledge of launch environments and spacecraft qualification processes
  • Strong interest in space technology and satellite systems
  • Ability to work independently and take initiative
  • Experience with version control (Git) and software development practices

This position may require prolonged periods of sitting, standing, walking, computer work, and occasional exposure to moderate levels of noise, dust, and fumes in production areas.


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