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Remote Flight Simulator Engineer Jobs in Dallas, TX

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SOFTWARE DEVELOPMENT ENGINEER IN TEST (SDET)

Dallas, TX ยท Remote

$80K - $100K/yr

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

... simulators, and web browsers; integrate automated tests into CI/CD pipelines for fast, reliable ... NO C2C OR CONTRACT APPLICANTS This is a permanent/full time direct-hire remote role with a salary ...

RTL Design Engineer

Richardson, TX ยท On-site +1

$122K/yr

Richardson, TX (Hybrid, Remote considered based on experience and qualifications) What You'll Do ... Familiarity with simulation, debug, lint, CDC, reset-domain crossing, and other design quality ...

Senior Engineer, Process Validation

Dallas, TX ยท On-site +1

$100K - $130K/yr

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

... simulation, sterile filling, visual inspection, container closure integrity testing, filter ... We recognize the benefits of flexible, remote working arrangements for eligible roles and are ...

Senior Engineer, Process Validation

Dallas, TX ยท On-site +1

$100K - $130K/yr

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

... simulation, sterile filling, visual inspection, container closure integrity testing, filter ... We recognize the benefits of flexible, remote working arrangements for eligible roles and are ...

Senior Transmission Planning Engineer - Remote

Dallas, TX ยท On-site +1

$103K - $142K/yr

  • Retirement

Conduct transient stability and dynamic simulation studies, including modeling of conventional ... Mentor junior and mid-level engineers through technical review, guidance, and day-to-day ...

New

Remote Monitoring * Collect and evaluate energy, weather, and building automation data on some ... Energy Modeling * Develop engineering-based energy models to simulate existing and proposed ...

Remote Monitoring * Collect and evaluate energy, weather, and building automation data on some ... Energy Modeling * Develop engineering-based energy models to simulate existing and proposed ...

Remote Monitoring * Collect and evaluate energy, weather, and building automation data on some ... Energy Modeling * Develop engineering-based energy models to simulate existing and proposed ...

Remote Monitoring * Collect and evaluate energy, weather, and building automation data on some ... Energy Modeling * Develop engineering-based energy models to simulate existing and proposed ...

Remote Monitoring * Collect and evaluate energy, weather, and building automation data on some ... Energy Modeling * Develop engineering-based energy models to simulate existing and proposed ...

Showing results 41-60

Remote Flight Simulator Engineer information

See Dallas, TX salary details

$46K

$117.2K

$257.7K

How much do remote flight simulator engineer jobs pay per year?

As of Aug 15, 2026, the average yearly pay for remote flight simulator engineer in Dallas, TX is $117,236.00, according to ZipRecruiter salary data. Most workers in this role earn between $94,000.00 and $113,800.00 per year, depending on experience, location, and employer.

What is the difference between Remote Flight Simulator Engineer vs Remote Flight Instructor?

AspectRemote Flight Simulator EngineerRemote Flight Instructor
CredentialsRelevant engineering certifications, FAA or EASA licenses, technical degreesFlight instructor certifications, FAA or EASA licenses, pilot ratings
Work EnvironmentSimulator development labs, remote technical supportRemote classroom sessions, live flight training via simulators
Industry UsageAircraft manufacturers, simulation companies, airlinesFlight schools, airlines, training organizations

The main difference is that Remote Flight Simulator Engineers focus on developing and maintaining flight simulation software and hardware, requiring technical engineering skills. In contrast, Remote Flight Instructors provide training and instruction to pilots using simulators, emphasizing teaching and pilot certification. Both roles may work remotely and require aviation credentials, but their core responsibilities differ significantly.

How much does a remote flight simulator engineer make?

A remote flight simulator engineer typically earns between $70,000 and $120,000 annually, depending on experience, certifications, and the complexity of simulation systems. Salaries can vary based on the employer, location, and specific technical skills such as programming, hardware integration, or software development.

How to become a remote flight simulator engineer?

To become a remote flight simulator engineer, candidates typically need a bachelor's degree in aerospace engineering, computer science, or a related field. Strong programming skills, experience with simulation software, and knowledge of aircraft systems are essential, along with proficiency in tools like C++, Python, and simulation platforms. Certifications in relevant areas and experience working remotely can also enhance job prospects.

Do remote flight simulator engineers get paid well?

Remote flight simulator engineers typically earn competitive salaries that reflect their specialized skills in software development, aviation systems, and simulation technology. Compensation can vary based on experience, certifications, and the complexity of the simulation environment, with many roles offering benefits and opportunities for advancement.

What are the most commonly searched types of Flight Simulator Engineer jobs in Dallas, TX?

The most popular types of Flight Simulator Engineer jobs in Dallas, TX are:

What are popular job titles related to Remote Flight Simulator Engineer jobs in Dallas, TX?

For Remote Flight Simulator Engineer jobs in Dallas, TX, the most frequently searched job titles are:

What job categories do people searching Remote Flight Simulator Engineer jobs in Dallas, TX look for?

The top searched job categories for Remote Flight Simulator Engineer jobs in Dallas, TX are:

What cities near Dallas, TX are hiring for Remote Flight Simulator Engineer jobs?

Cities near Dallas, TX with the most Remote Flight Simulator Engineer job openings:

Exciting Remote Opportunity for Thin-Gauge Thermoform Design Engineer

Noblesoft Technologies

Frisco, TX โ€ข Remote

Contractor

Posted 3 days ago

New


Job description

Position: Thin-Gauge Thermoform Design Engineer

Location:            REMOTE

Mode: Contract 6+ Months

Job Summary: 

This role focuses on designing thin-gauge thermoformed plastic components (e.g. lightweight trays, enclosures, packaging inserts) for Automotive OEM’s products and operations.

The engineer leads end-to-end design of thermoformed parts and tooling from concept through production, ensuring design for manufacturability in thin plastic sheet forming (typically <1.5 mm thickness).

Responsibilities include creating detailed 3D CAD models and drawings, conducting feasibility and tolerance analyses to optimize designs, and collaborating cross-functionally with manufacturing, quality, and supply chain teams to meet high-volume production and quality standards.

The engineer also supports tooling fabrication and validation with internal teams or external toolmakers to ensure that thermoforming molds and processes achieve the required performance and precision. (Notably there is flexibility for these specialized roles, even considering remote work arrangements.) This is a hands-on design position requiring technical expertise in thin-gauge thermoforming processes, creativity in problem-solving, and strong coordination skills.

Required Skills/Qualifications:

A solid foundation in mechanical design and specific experience with thin-gauge thermoforming is essential.
Key requirements typically include:

•            Education & Experience: A B.S. in Mechanical Engineering or a related field (e.g. Manufacturing or Industrial Design) and 3+ years of experience designing thermoformed plastic products and tooling – particularly in thin-gauge applications (e.g. packaging or lightweight enclosures).

•            CAD Proficiency: Advanced skill in 3D CAD software (such as SolidWorks, CATIA, or equivalent) for complex part modeling, assembly design, and detailed drawing creation.

•            Thermoforming Process Knowledge: Strong understanding of thin-gauge thermoforming processes, including vacuum forming and pressure forming techniques. Familiarity with thermoplastic materials commonly used in thin-gauge thermoforming (e.g. ABS, HIPS, PETG, PVC) and how they behave under heat and vacuum is critical.

•            Tooling & DFM Skills: Experience in designing thermoforming molds/tooling and collaborating with toolmakers or machine shops for fabrication and validation of those tools. Ability to optimize part designs for manufacturability, trimming, and high-volume production (DFM) is required.

•            Analytical & Quality Focus: Competence in tolerance analysis, material thickness optimization, and part feasibility studies for thin-gauge parts. Strong attention to detail with quality control considerations for plastic part integrity and consistency.

•            Collaboration & Communication: Ability to work with cross-functional teams (design engineering, manufacturing, quality, supply chain) to refine requirements and ensure successful integration of thermoformed components into the overall system. Excellent communication skills are essential for bridging design with production.

Preferred Skills/Pluses:

Candidates with the following are often preferred in thin-gauge thermoforming roles, per industry and Automotive OEM’s practices:

•            Industry Exposure: Prior experience in an automotive or high-volume manufacturing environment, especially involving packaging engineering or plastic component design, is a strong plus (demonstrates ability to meet rigorous performance and quality standards at scale).

•            Advanced Manufacturing Knowledge: Familiarity with lean/automated manufacturing processes and related plastic forming methods (e.g. heavy-gauge thermoforming or injection molding) is beneficial to broaden problem-solving approaches in design.

•            Simulation & Analysis: Experience with CAE/FEA tools for simulating thermoformed part behavior or design optimization can be advantageous, enabling better prediction of material performance (e.g. shrinkage, wall thinning).

•            Standards & Compliance: Knowledge of industry standards and testing protocols relevant to thin-gauge plastics (such as packaging standards or automotive component requirements) is helpful, especially if the role involves ensuring designs meet safety, durability, or regulatory criteria.