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Superconducting Jobs in California (NOW HIRING)

Job Summary Join our Superconducting Devices Group, where we design, fabricate, and test advanced components that are integrated into complete systems. We are looking for an R&D Engineer with a ...

We design, deploy, and operate on-premises superconducting systems, apply machine learning to characterize quantum system behavior, and translate those findings into specialized hardware products.

Principal Researcher

Santa Clara, CA · On-site

$187K - $210K/yr

D) in the theoretical or experimental research of superconducting circuits, mesoscopic physics, and/or circuit Quantum Electrodynamics (cQED) with an excellent publication record. Candidates are ...

Showing results 21-40

Superconducting information

What is a superconducting job?

Superconducting jobs typically refer to roles that work with materials or systems exhibiting superconductivity, which is the property of zero electrical resistance at very low temperatures. These jobs can be found in research, engineering, and manufacturing sectors, focusing on developing superconducting materials, designing superconducting magnets, or building applications like MRI machines and quantum computers. Professionals in this field may have backgrounds in physics, materials science, or electrical engineering. Their work often involves experimental research, product development, and collaboration with multidisciplinary teams to advance superconducting technologies.

What are the typical team dynamics and collaboration opportunities for professionals working in superconducting research or engineering roles?

Professionals in superconducting roles often work within multidisciplinary teams that include physicists, materials scientists, engineers, and technicians. Collaboration is key, as projects typically involve integrating theoretical research with practical applications, such as developing advanced magnets or quantum devices. Regular meetings, joint problem-solving sessions, and cross-functional project planning are common, fostering a highly collaborative and innovative environment. Team members are encouraged to share findings, troubleshoot experimental issues together, and contribute to publications or patents, making communication and teamwork essential for success.

What are the key skills and qualifications needed to thrive as a superconducting engineer, and why are they important?

To thrive as a Superconducting Engineer, you need a solid background in physics, materials science, and electrical engineering, often supported by an advanced degree in a related field. Familiarity with cryogenic systems, electromagnetic simulation software, and laboratory instrumentation is typical, along with relevant certifications or research experience. Strong analytical thinking, attention to detail, and effective teamwork skills help you excel in collaborative research and problem-solving environments. These competencies are vital for advancing superconducting technologies and ensuring precise, innovative solutions in research or industrial applications.

What is the difference between Superconducting vs Electrical Engineer?

AspectSuperconductingElectrical Engineer
Required CredentialsBachelor's or higher in physics, materials science, or related fields; specialized knowledge in superconductivityBachelor's or higher in electrical engineering; professional engineering license often preferred
Work EnvironmentResearch labs, advanced materials facilities, academia, specialized industriesManufacturing plants, power systems, electronics design, corporate offices
Industry UsageResearch institutions, quantum computing, energy transmission, scientific researchPower generation, electronics, telecommunications, automation

Superconducting professionals focus on materials and systems that exhibit zero electrical resistance at low temperatures, often working in research or specialized industries. Electrical engineers have a broader scope, designing and maintaining electrical systems across various sectors. While both roles require a strong technical background, superconducting roles are more specialized and research-oriented, whereas electrical engineering is more application-driven and industry-wide.

What job categories do people searching Superconducting jobs in California look for?

The top searched job categories for Superconducting jobs in California are:

What cities in California are hiring for Superconducting jobs?

Cities in California with the most Superconducting job openings:

Infographic showing various Superconducting job openings in California as of August 2026, with employment types broken down into 86% Full Time, 10% Part Time, 3% Contract, and 1% Nights. Highlights an 91% Physical, 4% Hybrid, and 5% Remote job distribution.

Electrical Engineer (Instrumentation, Data Acquisition, and Controls)

Mountain View, CA • On-site

$125 - $150/hr

Other

Posted 10 days ago


Job description

Build where superconductors, cryogenics, and megawatts meet

Spinor Energy's mission is to accelerate the global transition to renewable energy with breakthrough technology.

We’re building the real-life flux capacitor: Superconducting Magnetic Energy Storage (SMES), a battery that stores electricity in the magnetic field of a superconducting coil instead of through chemical reactions. It never degrades, discharges megawatts in milliseconds, and is the most efficient form of energy storage ever conceived.

Our engineering spans four disciplines at once: fusion‑grade superconducting tape, megawatt‑scale high‑voltage power electronics, cryogenics, and vacuum systems. At Spinor, you'll get your hands on all of them.

Our founders came from SpaceX, where they designed Starlink solar arrays and helped scale production to 70 satellites per week. We are bringing the same first‑principles engineering, rapid iteration, and design‑for‑scale mindset to energy storage.

You will own consequential hardware architecture and first schematic through bring‑up, validation, and field deployment.

The role

We are hiring an Instrumentation, Data Acquisition and Controls Engineer to build the sensing and nervous system of operating superconducting magnets.

You will:

  • Define how we measure the electromagnetic, mechanical, and thermal state of the system across cryogenic, high‑magnetic‑field, high‑voltage, and vacuum environments

  • Select sensors and design the signal conditioning, filtering, calibration, digitization, and isolation required to produce accurate, reliable measurements

  • Develop synchronized embedded data‑acquisition and control systems using microcontrollers, FPGAs, and software

  • Turn measurements into real‑time state detection, fault protection, interlocks, and equipment commands

  • Lead system bring‑up, debugging, calibration, and end‑to‑end validation from physical signal through control response

  • Integrate across magnet, power‑electronics, cryogenic, vacuum, mechanical, firmware, and controls engineering

  • Take ambiguous multi‑physics measurement challenges from first principles to dependable operation in the field

Basic Qualifications:

  • Bachelor’s degree in electrical engineering, computer engineering, applied physics, another relevant discipline, or equivalent practical experience

  • 2+ years of hands‑on experience (including internships or co‑ops) developing instrumentation, data‑acquisition, embedded‑control, or mixed‑signal systems

Preferred Qualifications:

You have built consequential measurement or control hardware end to end. You have taken a system through sensor selection, circuit design, firmware development, bring‑up, calibration, validation, and operation in a real environment.

You bring several of the following:

  • Strength in analog electronics, sensor interfaces, filtering, grounding, isolation, and analog‑to‑digital conversion

  • Experience with STM32 microcontrollers, FPGAs, embedded C/C++, or real‑time systems

  • Experience measuring high‑voltage, high‑current, floating, low‑noise, or fast‑transient signals

  • The ability to troubleshoot across sensors, electronics, firmware, software, and physical system behavior

  • A record of turning incomplete requirements and ambiguous measurement problems into dependable hardware

Relevant experience may include scientific instrumentation, battery management systems, superconducting magnets, cryogenic systems, power electronics, industrial controls, test equipment, fusion systems, accelerators, aerospace hardware, or other complex electromechanical systems.

We do not expect one person to have worked in every one of these areas. We care most about technical depth, learning velocity, and evidence that you can build and ship.

Spinor Energy is an equal‑opportunity employer.

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