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Remote Spacecraft Design Jobs in Florida (NOW HIRING)

Mechanical Systems Engineer Onsite Kennedy Space Center /Florida - No Hybrid or remote is available ... design, and other spacecraft systems . * Support manufacturing, integration, qualification, and ...

Remote Spacecraft Design information

What is remote spacecraft design?

Remote spacecraft design refers to the process of creating, developing, and testing spacecraft systems and components using digital collaboration tools, often allowing engineers and designers to work from different locations. This approach leverages advanced software for 3D modeling, simulation, and communication, enabling teams to design spacecraft without being physically present at a central facility. Remote spacecraft design has become increasingly popular due to advances in technology and the need for flexible work environments. It requires strong coordination, secure data sharing, and effective project management to ensure successful outcomes. The process may involve multiple disciplines, such as mechanical, electrical, and software engineering, all collaborating remotely.

What are the key skills and qualifications needed to thrive as a remote spacecraft designer?

To thrive as a Remote Spacecraft Designer, you need a solid background in aerospace engineering, physics, and CAD design, typically supported by a relevant engineering degree. Proficiency in industry-standard tools such as CATIA, SolidWorks, MATLAB, and familiarity with systems engineering software are essential, along with knowledge of applicable aerospace standards and regulations. Strong analytical thinking, problem-solving abilities, and effective remote communication skills help you excel in collaborative, distributed teams. These skills and qualities are vital to ensure the creation of safe, innovative, and reliable spacecraft components while coordinating seamlessly with global teams.

What are some common challenges faced by professionals working in remote spacecraft design teams?

Remote spacecraft design teams often navigate challenges such as coordinating across different time zones, maintaining clear communication, and ensuring all team members have access to up-to-date technical documentation and simulation tools. Collaboration is typically managed through digital platforms, requiring strong self-motivation and proactive communication. While the remote setup offers flexibility, it also demands rigorous project management to meet strict deadlines and mission requirements.

What is the difference between Remote Spacecraft Design vs Remote Satellite Engineer?

AspectRemote Spacecraft DesignRemote Satellite Engineer
CredentialsEngineering degree, aerospace certificationsEngineering degree, satellite systems certifications
Work EnvironmentDesign teams, CAD software, remote collaborationSatellite systems, testing labs, remote coordination
Industry UsageAerospace, space agencies, private space companiesSatellite manufacturing, telecommunications, space industry

Remote Spacecraft Design and Remote Satellite Engineer roles both require aerospace engineering expertise and involve remote collaboration. However, spacecraft design focuses on creating entire spacecraft systems, while satellite engineers specialize in satellite-specific systems and deployment. Both roles are vital in the space industry and often overlap in skills and industry applications.

How much does a remote spacecraft design make?

A remote spacecraft designer's salary typically ranges from $70,000 to $130,000 annually, depending on experience, education, and the complexity of projects. Senior roles or those with specialized skills in systems engineering or propulsion may earn higher salaries, especially when working for government agencies or private aerospace companies remotely.

How to become a remote spacecraft designer?

To become a remote spacecraft designer, typically a bachelor's degree in aerospace engineering, mechanical engineering, or a related field is required, along with experience in spacecraft systems and design software such as CAD tools. Developing skills in systems engineering, propulsion, and avionics, as well as gaining experience through internships or projects, can improve job prospects. Strong communication skills and the ability to work independently are also important for remote roles.

What are the most commonly searched types of Spacecraft Design jobs in Florida?

The most popular types of Spacecraft Design jobs in Florida are:

Infographic showing various Remote Spacecraft Design job openings in Florida as of August 2026, with employment types broken down into 92% Full Time, 6% Part Time, and 2% Contract. Highlights an 85% Physical, 4% Hybrid, and 11% Remote job distribution.

Mission Software Design Engineer

AVTC Group

Titusville, FL • On-site, Remote

Full-time

Posted 15 days ago


Job description

Mission Software Design Engineer
Onsite Kennedy Space Center /Florida - No Hybrid or remote is available.
NASA or AEROSPACE Exp
US Citizens or Perm Residents Only
These are immediate interviews for the right candidates.

We are looking for aMission Design Engineerto join our team to support Space flight programs
The Mission Design Engineer provides support on behalf of our customers to determine, negotiate and implement mission-enabling Mission Design requirements for spacecraft systems and associated hardware.Additionally, this position will perform independent modeling and simulation tool development and analysis to support independent verification and validation (IV&V) of requirements and work closely with the mission design team.
This position will be filled at either the Senior Engineer or Subject Matter Expert level, depending on qualifications, with salary commensurate with experience.
As a Mission Design Engineer you will:
  • Assist with software development and scripting oftrajectory optimization tools and related applications.
  • Develop new features and algorithms
  • Perform refactoring and improvements to the architecture for program efficiency.
  • Perform Integration with other trajectory software and tools.
  • General program maintenance and fixes.
  • Ensure requirements are satisfied by design solutions and support production/control board meetings, design, and system reviews.
  • Regression testing and documentation.
  • Provide trajectory products supporting spacecraft mission design & analysis
  • Perform trajectory optimization runs to characterize vehicle performance and mission availability for a variety of scenarios.
  • Development, integration and testing of new algorithms for evaluation of vehicle and mission performance.
  • Mission scenarios include ascent, entry, precision landing, and Rendezvous Proximity Operations and Docking (RPOD).
  • Travel as required in support of technical reviews and exchanges.
  • Provide recommendations for program acceptance of requirements verification, testing, risks and hazards.
  • Perform other duties as required.

Required Qualifications:
  • BS degree in engineering from an accredited engineering school and 8 years of experience with spacecraft trajectory analysis or master's degree in engineering with 4 years of experience with spacecraft trajectory analysis.
  • The candidate must have demonstrated capability to independently devise solutions to complex engineering problems by their own efforts and by soliciting inputs from other technical experts.
  • Expertise in orbital mechanics and/or spacecraft mission design.
  • Experience in programming and scripting languages such as modern Fortran, Python, and/or C++.
  • Experience working in a team environment.
  • Excellent written and oral communication skills.
  • Must be a U.S. Citizen and successfully complete a U.S. government background investigation.
Preferred Qualifications:
  • MS in Aerospace Engineering with a concentration in orbital mechanics and 5-10 years of spacecraft and cislunar trajectory design experience.
  • Lunar lander trajectory design experience.
  • Expertise in spacecraft trajectory optimization, including use of software tools such as Copernicus, GMAT, MONTE, STK, or FreeFlyer.
  • Experience in spacecraft guidance, navigation, control algorithms and software.
  • Experience with deep space missions.
  • Experience with deep space mission systems engineering including coordinating system requirements verification and validation between multiple organizations and centers.
  • Experience with deep space and/or human rated space flight.

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