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Flight Test Instrumentation Jobs in Florida (NOW HIRING)

You will serve as a key technical advisor, coordinate engineering support, and manage onboard flight test instrumentation projects from inception through execution under various operational ...

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Flight Test Instrumentation information

How much do flight testers make?

Flight test instrumentation specialists typically earn between $70,000 and $120,000 annually, depending on experience, certifications, and location. Senior roles or those with specialized skills in data analysis and aircraft systems may earn higher salaries. Compensation often includes benefits such as health insurance and retirement plans.

What are the primary daily responsibilities of someone working in Flight Test Instrumentation?

Professionals in Flight Test Instrumentation are typically responsible for installing, calibrating, and maintaining a wide array of sensors and data acquisition systems on aircraft before, during, and after test flights. Daily tasks may involve working closely with flight test engineers and pilots to define instrumentation requirements, troubleshoot issues, and validate data integrity. Collaboration with multidisciplinary teams is common, as is ensuring all instrumentation complies with strict safety and quality standards. This hands-on role often requires adaptability to changing test schedules and a proactive approach to solving technical challenges in dynamic environments.

What engineer makes $500,000 a year?

Highly experienced aerospace or defense engineers, such as senior flight test instrumentation engineers or systems engineers, can earn salaries approaching or exceeding $500,000 annually, especially with bonuses and profit sharing. These roles typically require advanced degrees, specialized skills in avionics and instrumentation, and extensive industry experience. Compensation varies based on company, location, and level of expertise.

What is a Flight Test Instrumentation job?

A Flight Test Instrumentation job involves designing, installing, maintaining, and operating specialized sensors and data acquisition systems used in aircraft testing. These engineers ensure accurate measurement of parameters like speed, pressure, temperature, and structural loads to evaluate aircraft performance and safety. They work closely with flight test engineers, pilots, and analysts to collect and interpret crucial flight data. Their role is essential for validating aircraft designs and ensuring regulatory compliance.

How much do flight test instrumentation engineers make?

Flight test instrumentation engineers typically earn between $70,000 and $120,000 annually, depending on experience, education, and location. Senior engineers or those with specialized skills in data acquisition systems and aircraft systems may earn higher salaries, especially in aerospace hubs or with advanced certifications.

What are the key skills and qualifications needed to thrive in the Flight Test Instrumentation position, and why are they important?

To thrive in Flight Test Instrumentation, you need a strong background in electronics, data acquisition, and sensor integration, typically supported by a degree in engineering or a related field. Familiarity with instrumentation software, data logging systems, and industry standards such as ARINC or MIL-STD protocols is crucial, and certification in safety procedures may be required. Attention to detail, strong problem-solving abilities, and effective communication are valuable soft skills in this role. These capabilities are essential for ensuring precise and reliable data collection, supporting test team collaboration, and maintaining safety during complex flight test operations.

What is flight test instrumentation?

Flight test instrumentation involves installing and managing specialized sensors, data acquisition systems, and recording equipment on aircraft to collect performance, safety, and flight data during testing. Professionals in this field analyze the data to evaluate aircraft systems and ensure compliance with safety standards, often working with tools like data loggers and software for data analysis.
What are the most commonly searched types of Flight Test Instrumentation jobs in Florida? The most popular types of Flight Test Instrumentation jobs in Florida are:
What are popular job titles related to Flight Test Instrumentation jobs in Florida? For Flight Test Instrumentation jobs in Florida, the most frequently searched job titles are:
What cities in Florida are hiring for Flight Test Instrumentation jobs? Cities in Florida with the most Flight Test Instrumentation job openings:
Infographic showing various Flight Test Instrumentation job openings in Florida as of July 2026, with employment types broken down into 57% Full Time, and 43% Contract. Highlights an 100% In-person job distribution.

Flight Test Engineer-UAS / Counter-UAS System

O W T Global Llc

Tampa, FL • On-site

Full-time

Posted 4 days ago


Job description


Flight Test Engineer – UAS / Counter-UAS Systems


Position Summary:OWT Global is seeking a highly motivated and technically proficient Flight Test Engineer to support the development, integration, and operational testing of advanced Unmanned Aircraft Systems (UAS) and Counter-Unmanned Aircraft Systems (C-UAS) technologies. The selected candidate will provide hands-on support for flight test planning, system integration, and execution of test events to evaluate performance across multi-sensor detection, tracking, and mitigation solutions.The Flight Test Engineer will be responsible for developing and executing test plans and procedures, supporting flight operations, and ensuring accurate collection of telemetry and sensor data. This role will focus on post-mission data analysis to assess system performance, identify anomalies, and evaluate mission effectiveness. The engineer will also develop data-driven analytical products, including performance assessments and correlation models, to support operational decision-making and system improvement.Working in a collaborative, multidisciplinary environment, the Flight Test Engineer will interface with autonomy developers, sensor engineers, system integrators, and operators to refine system capabilities and support iterative development. The role requires the ability to translate complex test data into actionable insights that enhance system performance, inform program direction, and support customer objectives.The ideal candidate will possess a strong background in flight test, data analysis, and system integration, with experience supporting UAS, C-UAS, or related aviation and defense systems. This position requires the ability to operate effectively in dynamic test environments and contribute to mission-critical efforts supporting air domain awareness and counter-UAS operations.Key Responsibilities
  • Flight Test Planning & Execution
    • Plan, coordinate, and execute developmental and operational flight tests for UAS and C-UAS systems
    • Develop test plans, test cards, safety documentation, and flight procedures
    • Coordinate with test ranges, regulatory authorities, and airspace managers
    • Support range safety, risk assessments, and airworthiness considerations for flight operations
    • Provide real-time monitoring and quick-look analysis during test execution to inform mission adjustments
  • System Integration & Validation
    • Support integration and validation of multi-sensor and C-UAS architectures, including:
      • RF detection systems
      • Radar and EO/IR sensors
      • Electronic warfare payloads
      • Counter-UAS mitigation systems
      • Autonomous mission management software
    • Integrate and validate data exchange with command and control (C2) systems and distributed network architectures
    • Evaluate system performance against technical, operational, and mission-level requirements
  • Data Collection & Telemetry Management
    • Design and implement data collection architectures for flight test events
    • Capture and manage telemetry, sensor data, RF signatures, and mission logs
    • Ensure precise time synchronization across all test assets and data sources
    • Validate data integrity and completeness for post-mission analysis and correlation
  • Data Analysis & Correlation Product Development
    • Analyze test data to evaluate detection accuracy, tracking fidelity, latency, and mitigation effectiveness
    • Develop multi-sensor correlation products that fuse data across platforms and systems
    • Build analytical products and visualizations to support:
    • Threat detection timelines
    • Sensor fusion performance
    • Tracking accuracy
    • Engagement outcomes
    • Mission effectiveness assessments
  • Develop mission playback tools, dashboards, and data visualization products
  • Apply quantitative performance metrics and statistical analysis to ensure repeatability and rigor
  • Digital Engineering & Data Integration
    • Support digital engineering frameworks to enable traceability between requirements, test events, and performance outcomes
    • Contribute to structured data environments supporting repeatable analysis and model-based evaluation
    • Enable integration of test data into broader system models and engineering workflows
  • Autonomy & Advanced System Evaluation
    • Evaluate autonomy behaviors, decision logic, and AI-enabled system performance
    • Support testing of sensor fusion algorithms and autonomous mission execution capabilities
  • Documentation & Reporting
    • Produce and maintain:
      • Flight test plans
      • Test execution reports
      • Data analysis reports
      • System performance assessments
    • Present findings to engineering leadership, program managers, and government stakeholders
Required Qualifications
  • Experience with UAS and Counter-UAS systems
  • 3–7 years of experience in flight test engineering, UAS testing, or aerospace system validation
  • Experience with telemetry systems, flight test instrumentation, and data collection architectures
  • Strong experience with data analysis, correlation, and visualization tools
  • Understanding of networking concepts and system integration (C2, data exchange, latency)
  • Ability to translate complex data into actionable insights
  • Experience with technical documentation and test reporting
  • Active Secret security clearance (or ability to obtain)
Preferred Qualifications & Skills
  • Bachelor’s degree in aerospace engineering, Electrical Engineering, Robotics, Data Engineering, or related field
  • Familiarity with RF sensing, radar, EO/IR systems, and electronic warfare
  • Experience supporting DoD test ranges, range safety processes, or military exercises
  • Knowledge of autonomy, sensor fusion, and AI-enabled mission systems
  • FAA Part 107 Remote Pilot Certificate and Class II Flight Physical
  • Experience with:
    • Python
    • MATLAB
    • Data analytics platforms
    • GIS mapping tools
    • Telemetry analysis software
  • Familiarity with MBSE and Digital Engineering environments
Knowledge, Skills, and Abilities
  • Knowledge of flight test methodologies, performance evaluation metrics, and test execution processes
  • Knowledge of multi-sensor systems, data fusion, and air domain awareness architectures
  • Ability to analyze large, complex datasets and develop meaningful performance insights
  • Ability to correlate multi-source data (telemetry, sensor, RF, Radar, operator inputs) into cohesive analytical products
  • Strong problem-solving skills in dynamic, mission-critical environments
  • Ability to manage multiple priorities and adapt to evolving test objectives and system configurations
  • Effective communication and collaboration skills across multidisciplinary teams
  • Attention to detail in data validation, synchronization, and reporting
Work Environment
  • Primary duty location is MacDill AFB, Florida.
  • Operational environment supporting live UAS and airspace management activities
  • Close coordination with engineers, operators, and program leadership in fast-paced, mission-critical environments
  • May require coordination with multiple stakeholders, including government personnel, contractors, and external partners
  • Occasional travel for training, integration events, or system support activities
  • May require flexible hours, including support during testing events or mission operations