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2A392 Career Guide

Air Force

2A392: Aircraft Avionics Systems Technician

Career transition guide for Air Force Aircraft Avionics Systems Technician (2A392)

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Civilian Career Pathways

Top civilian roles for 2A392 veterans, with average salary and market demand data.

Avionics Technician

$78K
High matchHigh demand

Aircraft Mechanic/Service Technician

$73K
High matchHigh demand

Skills to develop:

FAA Airframe & Powerplant (A&P) license

Electrical Engineer

$95K
Good matchGrowing demand

Skills to develop:

Bachelor's degree in Electrical EngineeringExperience with specific engineering software (e.g., AutoCAD, MATLAB)

Aerospace Engineering Technician

$72K
Good matchStable demand

Skills to develop:

Associate's degree in Aerospace Engineering TechnologyCAD software proficiency

Wind Turbine Technician

$60K
Moderate matchVery high demand

Skills to develop:

Wind turbine safety certificationsExperience with industrial electricity

Salary estimates from VWC career data

Hidden Strengths

Cognitive skills your 2A392 training built — and where they transfer.

System Modeling

You develop a deep understanding of how complex avionics and electrical systems integrate within aircraft, allowing you to predict system behavior and identify potential points of failure.

This ability to understand and model complex systems translates to analyzing and optimizing processes, workflows, or even financial models in various civilian industries.

Procedural Compliance

Your work demands strict adherence to technical manuals, safety protocols, and maintenance procedures to ensure the airworthiness and safety of aircraft.

This rigorous discipline ensures accuracy, efficiency, and safety in any regulated environment. You excel at implementing and enforcing protocols to meet stringent standards.

Degraded-Mode Operations

You are skilled in troubleshooting and repairing aircraft systems under pressure, often with limited resources or incomplete information. You maintain functionality when things go wrong.

This capacity to perform effectively under stress is critical in crisis management, emergency response, and any role requiring quick thinking and problem-solving in challenging situations.

Situational Awareness

You continuously monitor system performance, analyze diagnostic data, and assess the impact of maintenance actions to maintain a comprehensive understanding of the aircraft's operational status.

This keen awareness makes you adept at identifying potential risks, anticipating problems, and making informed decisions in dynamic environments, essential for project management and leadership roles.

Non-Obvious Career Matches

Wind Turbine Technician

SOC 49-9099.01

You've been maintaining and repairing complex electromechanical systems in aircraft. Wind turbines are similar, requiring troubleshooting, repair, and maintenance of electrical and mechanical components in challenging environments. Plus, your experience with safety protocols will be invaluable.

Robotics Technician

SOC 49-9062.00

Your experience in avionics systems maintenance translates well to robotics, which integrates electronics, mechanics, and software. You've been troubleshooting and repairing complex automated systems, skills directly applicable to maintaining and repairing industrial robots.

Building Automation Systems Technician

SOC 49-9021.01

You're skilled at maintaining and troubleshooting integrated electronic and mechanical systems, just like modern building automation systems. You've been responsible for complex systems, and you can easily transfer those abilities to controlling HVAC, lighting, and security systems in large buildings.

Industrial Control Systems Cybersecurity Analyst

SOC 15-1212.00

You've worked with complex avionics systems that are increasingly networked and vulnerable to cyber threats. You understand the importance of system security and data integrity. You're familiar with troubleshooting and problem-solving, and you can leverage those skills to protect critical industrial infrastructure from cyberattacks.

Training & Education Equivalencies

Avionics Fundamentals Course, Sheppard AFB, TX followed by specific platform training at relevant CONUS or OCONUS base.

1,100 training hours28 weeksUp to 15 semester hours in avionics and electronics technology.

Topics Covered

  • Basic Electricity and Electronics Theory
  • Digital Logic Circuits
  • Microprocessor Fundamentals
  • Avionics Systems Troubleshooting
  • Use of Technical Publications and Diagrams
  • Aircraft Electrical and Environmental Systems
  • Specific Aircraft Avionics Systems (Radar, Navigation, Communication, Electronic Warfare)
  • Aerospace Ground Equipment (AGE) Operation

Certification Pathways

Partial Coverage

Certified Electronics Technician (CET)60% covered

Requires study of general electronics theory, circuits, and troubleshooting techniques specific to consumer or industrial electronics, as the military training is focused on avionics systems.

ETA Aircraft Electronics Technician (AET)70% covered

Requires focused study on FAA regulations and specific avionics systems beyond the military's curriculum. Also may require hands-on experience with general aviation aircraft.

Recommended Next Certifications

FAA Airframe and Powerplant (A&P) MechanicCertified Aviation Manager (CAM)Project Management Professional (PMP)

Technical Systems Translation

Military systems you've used and their civilian equivalents for your resume.

Military SystemCivilian Equivalent
AN/APG-83 Scalable Agile Beam Radar (SABR)Active electronically scanned array (AESA) radar systems used in weather forecasting and air traffic control
AN/ALQ-211(V)9 Suite of Integrated Radio Frequency Countermeasures (SIRFC)Radar jamming and electronic countermeasures used in industrial processes and telecommunications
CV-22 Osprey Integrated Avionics SystemIntegrated flight management systems in commercial helicopters like those from Sikorsky or Bell
F-22 Raptor Integrated Control SystemAdvanced process control systems used in chemical plants and oil refineries
RQ-4 Global Hawk Avionics SuiteAvionics systems in high-altitude research aircraft and weather drones
Joint Precision Approach and Landing System (JPALS)Differential GPS (DGPS) and local area augmentation system (LAAS) for precision landings at civilian airports
Automated Maintenance Information System (AMIS)Enterprise Asset Management (EAM) or Computerized Maintenance Management Systems (CMMS) like IBM Maximo or SAP Plant Maintenance

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