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Remote Aerospace Electrical Engineer Jobs (NOW HIRING)

Senior Electrical Engineer

Parsippany, NJ · On-site +1

$115K - $145K/yr

Remote work flexibility, competitive compensation and benefits, and a supportive culture have ... The Senior Electrical Engineer will review, sign, and seal electrical drawings and will also ...

Senior Electrical Engineer

Sparta, NJ · On-site +1

$115K - $145K/yr

Remote work flexibility, competitive compensation and benefits, and a supportive culture have ... The Senior Electrical Engineer will review, sign, and seal electrical drawings and will also ...

We are seeking an experienced Electrical Engineer with a background in engineering, architecture ... Remote/flexible hours * Generous personal time off and holiday programs * Health, dental, vision ...

Engineering & Science Job Schedule: Full time Remote: No The opportunity Hitachi Energy is seeking a motivated Electrical Design Engineer to join our Power Transformer Engineering team in South ...

Are you an experienced Electrical Engineer ready to take the next step in your career? Do you enjoy ... However, for highly qualified candidates, we may offer hybrid or remote flexibility if you reside ...

Eden Prairie, MN | Hybrid | Remote Schedule: Full-Time Salary: $100,000 - $140,000 (based on ... Bachelor's degree in Electrical, Mechanical, or Aerospace Engineering. * 5+ years of experience ...

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Remote Aerospace Electrical Engineer information

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$50.5K

$111.1K

$168K

How much do remote aerospace electrical engineer jobs pay per year?

As of Jun 24, 2026, the average yearly pay for remote aerospace electrical engineer in the United States is $111,091.00, according to ZipRecruiter salary data. Most workers in this role earn between $83,000.00 and $132,000.00 per year, depending on experience, location, and employer.

How does a Remote Aerospace Electrical Engineer effectively collaborate with on-site teams during complex projects?

Remote Aerospace Electrical Engineers typically use a combination of digital collaboration tools, such as video conferencing, shared design platforms, and real-time messaging, to stay closely connected with on-site teams. Effective communication is essential, as remote engineers must coordinate design reviews, troubleshoot issues, and align on project milestones with colleagues in different locations. They may also participate in virtual stand-up meetings and use cloud-based simulation or CAD software to share progress and receive feedback. Building strong relationships and setting clear expectations with on-site counterparts helps ensure that project goals are met efficiently.

What are the key skills and qualifications needed to thrive as a Remote Aerospace Electrical Engineer, and why are they important?

To thrive as a Remote Aerospace Electrical Engineer, you need a solid background in electrical engineering principles, experience with aerospace systems, and typically a bachelor’s degree in electrical or aerospace engineering. Familiarity with CAD software, circuit simulation tools, and industry standards like DO-254, as well as relevant certifications such as Professional Engineer (PE) licensure, are commonly required. Strong problem-solving, teamwork, and clear communication skills help you excel in virtual project environments and collaborate across distributed teams. These competencies are crucial to ensure the design, development, and integration of reliable and compliant electrical systems in aerospace applications.

What does a Remote Aerospace Electrical Engineer do?

A Remote Aerospace Electrical Engineer designs, develops, tests, and maintains electrical systems and components used in aircraft and spacecraft, all while working from a remote location. They collaborate with multidisciplinary teams to ensure electrical systems meet safety and performance standards. Their tasks may include circuit design, system integration, troubleshooting, and supporting testing procedures. Remote engineers use specialized software and digital communication tools to work effectively with their teams and manage projects from afar.
More about Remote Aerospace Electrical Engineer jobs
What cities are hiring for Remote Aerospace Electrical Engineer jobs? Cities with the most Remote Aerospace Electrical Engineer job openings:
What are the most commonly searched types of Aerospace Electrical Engineer jobs? The most popular types of Aerospace Electrical Engineer jobs are:
What states have the most Remote Aerospace Electrical Engineer jobs? States with the most job openings for Remote Aerospace Electrical Engineer jobs include:
Infographic showing various Remote Aerospace Electrical Engineer job openings in the United States as of June 2026, with employment types broken down into 89% Full Time, and 11% Contract. Highlights an 100% Remote job distribution, with an average salary of $111,091 per year, or $53.4 per hour.

Navigation Engineer (Remote)

Moonshot Aerospace

Madison, AL • Remote

Full-time

Posted 9 days ago


Job description

Moonshot Aerospace is seeking a Staff Navigation Engineer to lead spacecraft navigation system design and analysis. Initial assignments will support navigation system development for lunar lander, cislunar orbital transfer vehicle (OTV), and related spacecraft programs for commercial and government customers, including the Human Landing System (HLS) and Commercial Lunar Payload Services (CLPS).

This is a navigation-focused position requiring deep experience in Kalman filter design, spacecraft state estimation, and navigation sensor integration for cislunar and planetary environments. The engineer will serve as a technical authority on navigation architecture and will be expected to independently drive navigation system development from requirements through flight operations support. Multiple experience levels are available, and responsibilities will scale with demonstrated capability.

Responsibilities

  • Design, develop, and tune navigation filters (EKF) for lunar lander, OTV, and related spacecraft applications
  • Define navigation system architecture for cislunar and planetary mission phases including sensor selection, measurement models, and filter configuration
  • Develop navigation error budgets and perform covariance analysis for orbit determination and powered descent
  • Implement navigation algorithms in flight software and support SWIL/HWIL integration and test
  • Perform Monte Carlo analysis to verify navigation performance under dispersed conditions across cislunar and descent phases
  • Develop and validate sensor models (IMU, star tracker, GPS/GNSS, LiDAR, optical navigation camera) for lunar and cislunar environments
  • Support navigation sensor testing, calibration, and characterization
  • Contribute to technical documentation, peer reviews, and customer presentations
  • Collaborate across GN&C, flight software, and systems engineering teams

Required Qualifications

  • U.S. Citizenship and ability to obtain and maintain a security clearance
  • B.S. in Aerospace Engineering, Electrical Engineering, Physics, or related field
  • 5+ years of professional experience in spacecraft navigation system design and analysis
  • Demonstrated experience designing and implementing Kalman filters for spacecraft applications
  • Experience with navigation sensor integration and testing (IMU, star tracker, GPS, LiDAR)
  • Strong programming skills in C/C++, Python, and MATLAB
  • Experience with spacecraft dynamics and orbital mechanics
  • Familiarity with real-time software systems and flight software integration
  • Effective written and verbal communication skills

Preferred Qualifications

  • M.S. or Ph.D. in Aerospace Engineering, Electrical Engineering, Physics, or related field
  • 8+ years of navigation engineering experience on spacecraft programs
  • Lunar or cislunar navigation experience, including orbit determination and powered descent navigation
  • Terrain Relative Navigation (TRN), optical navigation, or image-based navigation for lunar surface operations
  • Experience with navigation analysis tools (MONTE, GEONS, ODTK, or equivalent)
  • Multi-sensor fusion and relative navigation for rendezvous and proximity operations
  • Hardware-in-the-loop (HWIL) navigation sensor integration and test
  • Experience with NASA Trick simulation framework or equivalent
  • Conference publications or technical papers in spacecraft navigation
  • Launch vehicle or satellite navigation experience