Find Jobs
Find Jobs Near You – Available Work in Your Location
Skip to job details
V
Vertiv
Test Automation & Process Engineer
Career Insights for Software QA Engineer / Tester
See where this job fits in the broader career landscape. Knowing your career path helps you see what's possible from here.
Scorecard
Based on Ohio data
Review key factors to help you decide if this role fits your goals. How is this calculated?
What they do
A Software QA Engineer or Tester designs and runs in-depth diagnostic tests to evaluate software and check for problems before new products are marketed. Pilots software and applies tests to check for errors and glitches.
$107,929 / year median in Ohio
-22% projected decline
Job Description
Job Summary Vertiv is seeking a Test Automation & Process Engineer for our Test Engineering team in Delaware, Ohio. This is not a typical test-automation job. You will not write software-QA frameworks, Selenium suites, or RPA bots. You will not spend your days running electrical tests. You will build the systems that collect the data, analyze the results, and make the work easy to follow. The job has three parts. Automate data collection from laboratory meters and instruments — precision power analyzers, oscilloscopes, and related measurement equipment. Create analysis tools — often using AI-assisted development tools such as Cursor — for the electrical tests our engineers perform. Turn the team's knowledge into simple, standard workflows using knowledge-management and AI-assisted tools. Internally this role is also called a Process Engineer. The work is process, but the method is automation, tooling, and knowledge made usable. We hire for Safety, Integrity, and Hard Work. You will work in a high-power electrical laboratory. You will be expected to tell the truth, finish what you start, and leave the team faster than you found it. Responsibilities Automate test data collection. Build and maintain automated capture from precision power analyzers, oscilloscopes, power meters, data loggers, and probes. Interface over Ethernet, USB, GPIB, or serial using SCPI and standard instrument libraries. Replace manual reads, screenshots, and USB file pulls with clean, time-stamped datasets tied to the unit and the test. Make long-duration logging reliable enough to run without someone standing by. Build analysis tools. Turn raw captures into engineering answers — efficiency, power quality, harmonics, transients, thermal performance, pass/fail against limits. Use AI-assisted development tools such as Cursor to ship useful software quickly.