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Vehicle Validation Engineer Jobs in Florida (NOW HIRING)

Execute launch vehicle separation system mechanical integration activities, including installation ... validation activities required during launch integration campaigns. * Maintain strict Safe-to-Mate ...

Globaltech, Inc. is a design-build company of engineers and contractors that serves primarily ... Possess a valid Florida Driver License and able to pass a motor vehicle record search * Able to ...

... systems, vehicle integration, or development rigs, such as requirements management, product ... Analyze, decompose, allocate, and validate stakeholder needs and input requirements, including ...

Globaltech, Inc. is a design-build company of engineers and contractors that serves primarily ... Possess a valid Florida Driver License and able to pass a motor vehicle record search * Able to ...

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Vehicle Validation Engineer information

See Florida salary details

$16

$38

$58

How much do vehicle validation engineer jobs pay per hour?

As of Aug 8, 2026, the average hourly pay for vehicle validation engineer in Florida is $38.86, according to ZipRecruiter salary data. Most workers in this role earn between $29.47 and $47.26 per hour, depending on experience, location, and employer.

Do vehicle validation engineers make good money?

Vehicle validation engineers typically earn competitive salaries that vary by industry, experience, and location. They often require knowledge of testing procedures, quality standards, and tools like MATLAB or CAN protocols, which can influence earning potential. Overall, the role offers solid compensation within automotive and transportation sectors.

What does a vehicle validation engineer do?

A Vehicle Validation Engineer is responsible for testing and verifying that vehicles meet all required safety, performance, and regulatory standards before they go to market. They design and execute test plans, analyze data, and collaborate with design and manufacturing teams to identify and resolve any issues. Their work ensures that vehicles are reliable, safe, and function as intended under various conditions.

What are some common challenges faced by vehicle validation engineers during the testing phase?

Vehicle Validation Engineers often encounter challenges such as tight project timelines, rapidly evolving technology, and the need to coordinate tests across multiple departments. They must ensure that vehicles meet stringent safety, performance, and regulatory standards while adapting quickly to unexpected test results or component issues. Effective communication and problem-solving skills are essential for addressing these challenges and collaborating with design, manufacturing, and quality teams to implement solutions efficiently.

What is the difference between Vehicle Validation Engineer vs Vehicle Test Engineer?

AspectVehicle Validation EngineerVehicle Test Engineer
Required CredentialsBachelor's in Mechanical, Automotive, or Electrical Engineering; certifications like ISTQB or SAE are commonBachelor's in Mechanical, Automotive, or Electrical Engineering; similar certifications often required
Work EnvironmentDesigning validation plans, analyzing data, ensuring vehicle complianceConducting tests, operating testing equipment, recording test results
Industry UsageUsed in automotive manufacturing, OEMs, and suppliers for validation phasesUsed in testing labs, manufacturing plants, and R&D departments

Vehicle Validation Engineers focus on validating vehicle systems through analysis and testing to ensure compliance and performance, while Vehicle Test Engineers primarily conduct physical tests and operate testing equipment. Both roles require similar educational backgrounds and certifications, often working closely within automotive development teams to ensure vehicle quality and safety.

Are vehicle validation engineers in demand?

Vehicle validation engineers are in demand due to the growing automotive industry and the shift toward electric and autonomous vehicles. They are needed to ensure safety, compliance, and performance standards, often requiring skills in testing, data analysis, and familiarity with industry regulations. Job prospects are strong in regions with advanced manufacturing and automotive research centers.

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

To thrive as a Vehicle Validation Engineer, you need a solid background in mechanical or automotive engineering, strong analytical skills, and experience with vehicle testing and validation processes. Familiarity with diagnostic tools, data acquisition systems, and relevant industry standards or certifications, such as ISO or Six Sigma, is typically required. Excellent problem-solving abilities, attention to detail, and strong communication skills help you collaborate effectively and deliver accurate results. These skills are crucial for ensuring vehicle safety, quality, and compliance with regulatory standards during the development process.
Infographic showing various Vehicle Validation Engineer job openings in Florida as of August 2026, with employment types broken down into 58% Full Time, 39% Part Time, and 3% Contract. Highlights an 99% Physical, and 1% Remote job distribution, with an average salary of $80,821 per year, or $38.9 per hour.

Mechanisms Launch Engineer

AST SpaceMobile

Titusville, FL โ€ข On-site

Full-time

Posted 25 days ago


Job description

AST SpaceMobile is building the first and only global cellular broadband network in space to operate directly with standard, unmodified mobile devices based on our extensive IP and patent portfolio and designed for both commercial and government applications. Our engineers and space scientists are on a mission to eliminate the connectivity gaps faced by today's five billion mobile subscribers and finally bring broadband to the billions who remain unconnected.
Position Overview
We are seeking a Mechanisms Launch Base Engineer to support the final integration, inspection, verification, and launch-site readiness of spacecraft mechanical systems and launch vehicle interface hardware. This role is responsible for executing critical launch campaign activities involving spacecraft mechanisms, separation systems, electrical disconnect interfaces, and related flight hardware. The engineer will perform hands-on integration and test operations in support of launch readiness while ensuring strict adherence to configuration control, safety requirements, quality standards, and operational procedures.
As the on-site mechanisms subject matter expert, this individual will work closely with engineering, integration, launch operations, and external mission partners to ensure all mechanical and electrical interfaces meet flight requirements prior to launch. Success in this position requires exceptional attention to detail, sound engineering judgment, and the ability to operate effectively in a fast-paced, schedule-driven launch environment.
Key Responsibilities:
  • Perform and document final flight inspections of spacecraft mechanisms and launch vehicle separation systems, verifying configuration, torque values, fastener installation, cleanliness, and compliance with approved engineering documentation and interface requirements.
  • Execute launch vehicle separation system mechanical integration activities, including installation and verification of separation hardware, mechanical interfaces, release systems, and associated flight hardware.
  • Perform final flight electrical connector mating operations, verifying connector condition, engagement, alignment, continuity, and overall interface integrity.
  • Conduct mechanical and electrical verification testing of separation systems and related flight hardware, documenting results and supporting certification of launch readiness.
  • Perform continuity testing, interface verification, loopback checks, and other electrical validation activities required during launch integration campaigns.
  • Maintain strict Safe-to-Mate (S2M) processes and inspection requirements, including connector inspections, environmental controls, documentation, and photographic traceability.
  • Support mechanism and spacecraft configuration control through final vehicle processing, integrated testing, and launch operations.
  • Review and disposition hardware discrepancies, support anomaly investigations, and provide real-time feedback on procedures, work instructions, and operational best practices.
  • Coordinate closely with launch vehicle integration teams, mission partners, operations personnel, quality representatives, and safety organizations to execute launch campaign activities.
  • Maintain thorough documentation and traceability of inspections, testing, hardware configurations, and installation records required for mission certification and launch documentation packages.
  • Support launch countdown activities, rehearsals, readiness reviews, and mission-critical troubleshooting efforts.
  • Ensure compliance with all applicable safety, quality, contamination control, and operational requirements during launch site activities.

Qualifications
Education:
Bachelor's Degree in Mechanical Engineering, Aerospace Engineering, Electrical Engineering, or a related engineering discipline.
Required Qualifications:
  • Demonstrated experience performing and documenting hardware inspections, integration activities, and torque-controlled mechanical operations.
  • Direct experience working with electrical connectors, harnesses, or flight-like electrical interfaces, including continuity and functional verification.
  • Ability to read and interpret engineering drawings, assembly procedures, interface control documents (ICDs), specifications, and test procedures.
  • Familiarity with configuration management and documentation processes in highly regulated engineering environments.
  • Strong understanding of mechanical assembly techniques, hardware verification, and engineering quality standards.

Experience:
  • Minimum of 3+ years of experience supporting aerospace, spacecraft, launch vehicle, defense, aviation, or other complex engineering hardware programs.
  • Experience supporting hardware integration, test, manufacturing, commissioning, or field engineering activities in a mission-critical environment.

Preferred Qualifications:
  • Direct launch-site experience supporting spacecraft or launch vehicle integration campaigns.
  • Experience with spacecraft mechanisms, deployment systems, separation hardware, release systems, or comparable flight-critical devices.
  • Familiarity with launch vehicle mechanical and electrical interface verification activities.
  • Experience working with disconnect systems, umbilical interfaces, or other integrated launch support hardware.
  • Knowledge of electrical test techniques including continuity verification, insulation resistance testing, and interface validation.
  • Understanding of pyrotechnic, ordnance, or other controlled aerospace systems and associated safety protocols.
  • Familiarity with industry standards and best practices related to aerospace structures, mechanisms, and launch integration activities.
  • Experience supporting flight hardware through final integration, environmental testing, or launch operations.
  • Knowledge of quality management systems, nonconformance processes, and corrective action workflows.

Soft Skills
  • Exceptional attention to detail and inspection discipline when working with flight-critical hardware.
  • Ability to maintain rigorous compliance with procedures and configuration control requirements under schedule-driven conditions.
  • Strong verbal and written communication skills with technical and non-technical stakeholders.
  • Effective problem-solving and troubleshooting abilities in fast-paced operational environments.
  • Sound independent judgment and decision-making during mission-critical activities.
  • Ability to work collaboratively across engineering, manufacturing, integration, quality, and operations teams.
  • Willingness to raise concerns and stop work when hardware, processes, or safety requirements are not being met.
  • Adaptability and composure while working under launch campaign schedules and operational constraints.

Technology Stack
  • Microsoft Office Suite (Excel, PowerPoint, Word, Outlook)
  • PLM and document control systems (e.g., Windchill, Arena, or equivalent)
  • Configuration management and engineering change documentation systems
  • Calibrated torque tools and torque documentation systems
  • Electrical test equipment including DMMs, continuity testers, insulation resistance testers, and related verification tooling
  • CAD viewing tools (CATIA, SolidWorks, Creo, or equivalent)
  • Digital work instruction, quality, and test documentation platforms

Physical Requirements
  • Ability to perform hands-on hardware operations in cleanroom, integration facility, and launch site environments.
  • Ability to work in confined spaces, elevated work platforms, and other aerospace operational environments.
  • Compliance with ESD, contamination control, and clean-as-you-go requirements.
  • Ability to lift, carry, and manipulate hardware, tools, fixtures, and test equipment required for integration activities.
  • Willingness and ability to travel to launch sites and support extended-duration launch campaigns.
  • Ability to work flexible schedules, including nights, weekends, holidays, and schedule shifts driven by launch operations.
  • Ability to work safely in accordance with applicable safety protocols, including in proximity to hazardous operations.
  • Ability to obtain and maintain required site access, training certifications, and operational authorizations necessary to support launch activities.

This job description may not be inclusive to the duties and responsibilities listed. Additional tasks may be assigned to the employee from time to time or the scope of the job may change as needed by business demands.
AST SpaceMobile is an Equal Opportunity, at will Employer; employment is governed on the basis of merit, competence and qualifications and will not be influenced in any manner by race, color, religion, gender, national origin/ethnicity, veteran status, disability status, age, sexual orientation, gender identity, marital status, mental or physical disability or any other legally protected status.