Jobs index / Manufacturing & Industrial Maintenance / Industrial Electronics Repairer
SOC 49-2094.00

Industrial Electronics Repairer

VerdictModerate Risk
Signal 01 · structural exposure
39
/ 100

This occupation's high structural score (61/100) reflects genuinely hands-on physical repair work: diagnosing a fault, physically replacing a worn component, and calibrating test instruments all require direct access to the equipment and real-time technical judgment about what's actually wrong.

Signal 02 · real-world AI usage
Not yet available

We have not ingested real-world usage data for this occupation yet. We show a band only where genuine data exists, rather than estimate one.

What this is not
Neither reading measures whether any single industrial electronics repairer has lost work to AI. That data does not exist anywhere yet — both signals describe tasks, not headcount.
How we calculated this →

What a industrial electronics repairer actually does

Industrial electronics repairers, officially titled Electrical and Electronics Repairers, Commercial and Industrial Equipment, test faulty industrial controls, transmitters, antennas, and other electronic equipment to diagnose malfunctions, then repair, adjust, and replace worn parts to get that equipment back in service. Daily work includes setting up and testing repaired industrial equipment, inspecting components for defects, calibrating test instruments, entering data to update equipment schematics, and performing scheduled preventive maintenance to catch problems before they cause downtime.

The work happens directly on physical equipment in factories and industrial facilities, requiring hands-on diagnostic skill with real test instruments and the technical judgment to trace an intermittent fault back to its actual cause rather than just the symptom. Industrial electronics repairers work primarily in manufacturing plants, industrial-equipment service companies, and utilities, and most positions require an associate's degree, postsecondary certificate, or substantial on-the-job training in electronics.

Why it reads this way

This occupation's high structural score (61/100) reflects genuinely hands-on physical repair work: diagnosing a fault, physically replacing a worn component, and calibrating test instruments all require direct access to the equipment and real-time technical judgment about what's actually wrong.

Real, current AI tools are already narrowing diagnosis time in this field, industrial IoT sensor networks paired with AI analytics already flag likely failures before a repairer is even dispatched, one deployment across more than 50,000 sensors cut maintenance costs by 45%, but the physical repair itself, replacing the part, recalibrating the equipment, remains manual work no AI system performs directly. No individual professional license is required for this occupation.

Growth outlook is honestly flat (little or no change projected through 2034), but BLS attributes that specifically to equipment-design improvements and increasingly disposable parts, manufacturers building equipment that gets replaced rather than repaired, a real, disclosed economic trend distinct from AI displacing the repair work itself.

Skills this role draws on

We don't yet have task-by-task time-share data for this occupation, so we can't show which specific tasks carry the exposure score above. This is the real skill set instead.

Industrial Electronics Diagnosis & RepairTest Instrument CalibrationPreventive MaintenanceSchematic Reading & UpdatingComponent-Level Troubleshooting
Pay & demand

Typical salary range (USD)

$41,600–$100,510

Average: $74,090/yr

Demand
Low
Growth outlook
Flat
Projected growth
Little or no change (2024-2034, per BLS Electrical and Electronics Installers and Repairers outlook; attributed to disposable-parts design trend, not automation)

Range source: BLS Occupational Employment and Wage Statistics / O*NET OnLine, May 2023-2025
Average source: O*NET OnLine 2025 wage data (Annual Median Wage) for Electrical and Electronics Repairers, Commercial and Industrial Equipment (49-2094.00); min/max from BLS OEWS May 2023 10th/90th percentile

Training
1-2 years (associate degree, postsecondary certificate, or substantial on-the-job training in electronics)
Associate Degree in Electronics TechnologyPostsecondary Certificate in Industrial ElectronicsOn-the-Job Training / Apprenticeship
Research verdict
Assessed as of 2026-08-19
Safe

Industrial Electronics Repairer scores 61/100, reflecting genuinely hands-on physical repair work: diagnosing faults and physically replacing worn components requires direct access to equipment and real-time judgment. Real, current AI-driven predictive-maintenance systems already narrow diagnosis time (one 50,000-sensor deployment cut maintenance costs 45%), but the physical repair remains manual. No individual license is required. Growth outlook is honestly flat, but BLS attributes that specifically to equipment-design trends toward disposable parts rather than to AI automating the repair work, a real, disclosed distinction.

This is a researched judgment (checklist v1.2), not a statistical measurement — it sits alongside, not instead of, the structural exposure signal above. Next scheduled review: 2027-02-19.

Sources (2)
Last updated: December 2025Source: BLS Occupational Employment and Wage Statistics / O*NET OnLine, May 2023-2025

Data sources & methodology

Salary data: BLS Occupational Employment and Wage Statistics / O*NET OnLine, May 2023-2025. Min/max figures represent the 10th–90th percentile annual wage range across the United States. Average figure sourced separately: O*NET OnLine 2025 wage data (Annual Median Wage) for Electrical and Electronics Repairers, Commercial and Industrial Equipment (49-2094.00); min/max from BLS OEWS May 2023 10th/90th percentile.

Automation Risk Score: Based on O*NET occupational analysis (49-2094.00) evaluating task complexity, physical requirements, social intelligence, and environmental variability. Methodology based on research from Frey & Osborne (Oxford, 2017).

Growth projections: Little or no change (2024-2034, per BLS Electrical and Electronics Installers and Repairers outlook; attributed to disposable-parts design trend, not automation), based on BLS Occupational Outlook Handbook.

Learn more about our methodology