Computer Systems Networking at Erwin Technical College

Tampa, FL · Public · Certificate · Computer Systems Networking and Telecommunications

a compact campus enrolling 556 students in Tampa, FL.

Program Analysis

First-year earnings of $23,744 place Erwin Technical College below the $39,678 national median for Computer Systems Networking — worth weighing against tuition and cost of living.

Some AI exposure exists in Computer Systems Networking's career paths, with 68% of job tasks potentially affected. The pessimistic scenario still projects solid returns, with a 0% gap from the optimistic case.

Ranked #90 of 92 Computer Systems Networking programs, Erwin Technical College falls below the median. Stronger options exist, though cost and location may compensate.

One registered apprenticeship pathway (It Project Manager with a median wage of $171,200/yr) connects to Computer Systems Networking careers, offering a paid training alternative to the classroom model.

50 /100
TradeSchoolOutlook Score
41
Low End
50
Score
52
High End
Earnings $23,744/yr (-40% vs median)
AI-Proof Exposed (32% shielded)
Job Market Very Large (258,000 openings/yr)

Earnings Overview

Projected 10-Year Earnings
$249K
1.1% annual growth
Viable Career Paths
10 of 10
Occupations with strong AI resilience

Projected 10-Year Earnings

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

Top Career Paths

Top career paths for Computer Systems Networking graduates by median salary.

Career Path Median Salary Growth AI-ProofAI
Computer and information systems managers $171,200 +15.2% 47%
Computer and information research scientists $140,910 +19.7% 37%
Database architects $135,980 +8.7% 6%
Computer and information systems managers
$171,200
+15.2% growth 47% AI-proof
Computer and information research scientists
$140,910
+19.7% growth 37% AI-proof
Database architects
$135,980
+8.7% growth 6% AI-proof

View all 10 career paths with full salary data →

About Computer Systems Networking Careers

You’ll likely start your career with hands-on work as a network support specialist, spending your days in server rooms racking equipment, running ethernet cable, and using command-line tools to diagnose connectivity problems. With a few years of experience, you can advance into high-demand specializations. You might become an information security analyst—a rapidly growing field—using software to hunt for threats and configure firewalls. Or you could become a network architect, designing the blueprints for a company’s entire cloud infrastructure in AWS or Azure.

Read the full Computer Systems Networking career guide →

Compare & Explore

Computer Systems Networking Overview

Computer Systems Networking at Other Schools

Other Majors at Erwin Technical College

Explore the Degree Alternative

Not sure if a trade program or four-year degree fits better? Compare both paths.

Frequently Asked Questions

How does Erwin Technical College's Computer Systems Networking program score?
A score of 50/100 reflects decent absolute metrics, but Erwin Technical College trails the majority of Computer Systems Networking programs on relative rankings. Context matters more than the raw number.
Should I worry about AI if I study Computer Systems Networking?
With 68% of typical job tasks exposed to AI, this is one of the higher-risk fields. Our pessimistic scenario projects $248,413 in decade earnings vs $249,499 in the optimistic case — a meaningful gap.
Why are Computer Systems Networking earnings lower at Erwin Technical College?
Lower starting pay at Erwin Technical College may reflect local labor market conditions rather than program quality. Many graduates see convergence with national averages within 3-5 years.
How many job openings are there for Computer Systems Networking graduates?
With approximately 258,000 annual openings across mapped careers, Computer Systems Networking offers a very large employment pool. Physical trades tend to have steady demand driven by infrastructure and construction cycles.
Data from College Scorecard, BLS, and AI resilience research. Methodology & sources →