Precision Metal Working at Ohio Technical College

Cleveland, OH · Private for-profit · Certificate

a smaller institution with 331 students in Cleveland, OH.

Program Analysis

Ohio Technical College's Precision Metal Working program produces graduates earning $32,154/yr — within striking distance of the $36,869 national average for this trade.

Career paths for Precision Metal Working carry above-average AI exposure (13% of tasks). The 32% scenario spread means the difference between optimistic and pessimistic outcomes is substantial.

Loan repayment is a non-issue here — $13,000 in median debt clears fast against $32,154 in annual earnings.

A #283 ranking among 355 Precision Metal Working programs places Ohio Technical College in the lower half. Price, proximity, and personal fit become the stronger arguments.

A 43% earnings increase from $32,154 to $45,912 over five years is solid — not a moonshot, but evidence of normal career advancement.

The 131 apprenticeship pathways connected to Precision Metal Working reflect strong industry infrastructure for this trade. Apprenticeships typically lead to journeyman-level wages.

49 /100
TradeSchoolOutlook Score
48
Low End
49
Score
50
High End
Earnings $32,154/yr (-13% vs median)
AI-Proof AI-Proof (87% shielded)
Job Market Very Large (164,200 openings/yr)

Earnings Overview

Projected 10-Year Earnings
$496K
9.3% annual growth
Viable Career Paths
22 of 24
Occupations with strong AI resilience

Projected 10-Year Earnings

Based on actual graduate salary data and Bureau of Labor Statistics growth projections.

Median Debt at Graduation
$13,000
4.9 months of Year 1 earnings
Reported Earnings (5 Year)
$45,912
43% growth from Year 1

Top Career Paths

Top career paths for Precision Metal Working graduates by median salary.

Career Path Median Salary Growth AI-ProofAI
Computer numerically controlled tool programmers $65,670 +12.8% 20%
Tool and die makers $63,180 -10.8% 81%
Model makers, metal and plastic $62,700 -18.2% 84%
Computer numerically controlled tool programmers
$65,670
+12.8% growth 20% AI-proof
Tool and die makers
$63,180
-10.8% growth 81% AI-proof
Model makers, metal and plastic
$62,700
-18.2% growth 84% AI-proof

View all 24 career paths with full salary data →

About Precision Metal Working Careers

You’ll begin your career with your hands on the tools of the trade. As a welder, you could be fusing steel beams high on a construction site or meticulously joining pipes for critical infrastructure. As a machinist, you might work from complex blueprints, operating lathes and mills to craft high-tolerance parts for the aerospace or medical industries. Most paths start with an apprenticeship, learning directly from seasoned professionals on the job.

Read the full Precision Metal Working career guide →

Compare & Explore

Precision Metal Working Overview

Precision Metal Working at Other Schools

Other Majors at Ohio Technical College

Frequently Asked Questions

What does a 49/100 TradeSchoolOutlook Score mean for Precision Metal Working at Ohio Technical College?
A score of 49/100 indicates below-average financial outcomes for Precision Metal Working. Earnings, ROI, or job market factors are pulling the score down.
How safe is Precision Metal Working from automation?
This is one of the more automation-resistant trades. Precision Metal Working work requires physical skill and on-site presence — qualities AI cannot provide. Our model rates it "AI-Proof" overall.
Are there apprenticeship options for Precision Metal Working?
Yes — 131 registered apprenticeship programs are mapped to Precision Metal Working career paths, including Cnc Operator - Milling. Apprenticeships offer paid on-the-job training as an alternative or complement to certificate programs.
How many job openings are there for Precision Metal Working graduates?
The career paths mapped to Precision Metal Working have roughly 164,200 combined annual openings nationally, making this a very large job market. Trade careers in this field benefit from consistent replacement demand as workers retire.
Data from College Scorecard, BLS, and AI resilience research. Methodology & sources →