2

Remote Lithography Engineer Jobs (NOW HIRING)

Technical Product Support Engineer 3

$71K - $107K/yr

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

... lithography for advanced semiconductor packaging. Our breadth of offerings across the entire ... via remote support or at customer sites Develop and effectively communicate with internal and ...

Remote Lithography Engineer information

See salary details

$38K

$115.9K

$191.5K

How much do remote lithography engineer jobs pay per year?

As of Aug 18, 2026, the average yearly pay for remote lithography engineer in the United States is $115,864.00, according to ZipRecruiter salary data. Most workers in this role earn between $83,000.00 and $151,500.00 per year, depending on experience, location, and employer.

What is a remote lithography engineer?

A Remote Lithography Engineer is a professional who specializes in the process of transferring patterns onto semiconductor wafers using photolithography, typically working from a remote location. They are responsible for developing, optimizing, and troubleshooting lithography processes used in the manufacturing of microchips and other electronic components. This role often involves collaborating with on-site teams through digital tools, analyzing data, and providing technical guidance to ensure high-quality production and yield. Key skills include expertise in photolithography equipment, process control, and semiconductor manufacturing technologies. Remote Lithography Engineers play a crucial role in advancing semiconductor technology while supporting flexible and distributed work environments.

What are the key skills and qualifications needed to thrive as a remote lithography engineer?

To thrive as a Remote Lithography Engineer, you need a solid background in semiconductor processing, photolithography techniques, and a relevant engineering degree. Familiarity with tools such as CAD software, mask aligners, stepper systems, and process control software is typically required, along with certifications in cleanroom or semiconductor fabrication processes being advantageous. Strong problem-solving skills, attention to detail, and effective remote communication are essential soft skills for success in this position. These competencies ensure precise patterning, minimize defects, and facilitate seamless collaboration across distributed engineering teams.

How does a remote lithography engineer typically collaborate with on-site teams to troubleshoot process issues?

Remote Lithography Engineers often work closely with on-site process engineers and technicians through video conferencing, remote desktop tools, and collaborative software platforms. They provide real-time guidance, analyze data sent from the fabrication floor, and help diagnose or optimize photolithography processes. Effective communication and clear documentation are essential for bridging the gap between remote and on-site teams, ensuring rapid problem-solving and process improvements.
More about Remote Lithography Engineer jobs

What cities are hiring for Remote Lithography Engineer jobs?

Cities with the most Remote Lithography Engineer job openings:

What are the most commonly searched types of Lithography Engineer jobs?

The most popular types of Lithography Engineer jobs are:

What states have the most Remote Lithography Engineer jobs?

States with the most job openings for Remote Lithography Engineer jobs include:

Infographic showing various Remote Lithography Engineer job openings in the United States as of August 2026, with employment types broken down into 94% Full Time, 2% Part Time, and 4% Contract. Highlights an 85% Physical, 6% Hybrid, and 9% Remote job distribution, with an average salary of $115,864 per year, or $55.7 per hour.

Superconducting Engineer - Fully Remote | Upto $84/hr

Mercor

San Francisco, CA • Remote

$84/hr

Full-time

Posted 6 days ago


Job description

About the job

Mercor connects elite creative and technical talent with leading AI research labs. Headquartered in San Francisco, our investors include Benchmark, General Catalyst, Peter Thiel, Adam D'Angelo, Larry Summers, and Jack Dorsey.

Position: Experimental Scientist / Engineer – Superconductors
Type: Contract
Compensation: $84/hour
Location: Remote

Role Responsibilities

  • Contribute deep domain expertise across superconducting material synthesis, characterisation, experimental superconductivity, fabrication, and device physics to build high-quality training and evaluation data.
  • Review and evaluate AI-generated scientific reasoning related to superconducting materials and phenomena, identifying experimental or theoretical errors and improving technical accuracy.
  • Design and solve challenging, expert-level problems involving critical temperature (Tc), critical current density (Jc), critical magnetic fields, magnetic susceptibility, electrical transport, flux pinning, vortex behaviour, and structure–property relationships.
  • Analyse and reason about experimental results from techniques such as XRD, SEM/TEM, SQUID/VSM magnetometry, resistivity and magnetotransport measurements, spectroscopy, and cryogenic measurements.
  • Rate and rank model outputs against defined scientific criteria, providing clear written reasoning grounded in experimental superconductivity.
  • Structure technical knowledge — including synthesis procedures, processing parameters, phase and structural data, transport measurements, magnetic measurements, and device data — into well-organised, model-ready data.

Qualifications

Must-Have

  • Hands-on experimental experience with one or more classes of superconducting materials, including cuprate/high-temperature superconductors, iron-based superconductors, conventional superconductors, MgB₂, REBCO/YBCO systems, or emerging superconducting materials.
  • Experience with superconducting material synthesis or processing, such as solid-state synthesis, single-crystal growth, powder processing, thin-film deposition, or related techniques.
  • Strong experience characterising superconducting properties through electrical resistivity/transport, magnetotransport, magnetic susceptibility, SQUID/VSM magnetometry, critical current measurements, critical field measurements, or cryogenic experiments.
  • Strong understanding of superconducting phenomena, including Tc, Jc, critical magnetic fields, Meissner effect, flux pinning, vortex dynamics, and the relationship between material structure and superconducting performance.
  • An advanced degree (PhD/MS) or equivalent hands-on research experience in materials science, condensed matter physics, applied physics, chemistry, electrical engineering, or a closely related field.
  • Clear written English and the ability to explain complex experimental results and technical reasoning concisely.

Preferred

  • Experience with superconducting thin films, heterostructures, or device fabrication using techniques such as PLD, MBE/epitaxy, sputtering, lithography, etching, or clean-room micro/nanofabrication.
  • Experience with applied superconductors or superconducting devices, such as superconducting wires and tapes, coated conductors, Josephson junctions, SQUIDs, superconducting circuits, resonators, detectors, or superconducting quantum devices.

Application Process (Takes 20–30 mins to complete)

  • Upload resume
  • AI interview based on your resume
  • Submit form

Resources & Support

  • For details about the interview process and platform information, please check: https://talent.docs.mercor.com/welcome
  • For any help or support, reach out to: support@mercor.com

PS: Our team reviews applications daily. Please complete your AI interview and application steps to be considered for this opportunity.