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Manufacturing test engineer skills for your resume and career

Updated January 8, 2025
5 min read
Quoted experts
Jonathan Puthoff,
Dr. David Grewell Ph.D.
Below we've compiled a list of the most critical manufacturing test engineer skills. We ranked the top skills for manufacturing test engineers based on the percentage of resumes they appeared on. For example, 5.5% of manufacturing test engineer resumes contained test equipment as a skill. Continue reading to find out what skills a manufacturing test engineer needs to be successful in the workplace.

15 manufacturing test engineer skills for your resume and career

1. Test Equipment

Test equipment is a mechanical tool or a device which is used create signals and gather response from an electronic device under test. It helps in detecting any faults in the device and it also proves the proper operation of the electronic device.

Here's how manufacturing test engineers use test equipment:
  • Identified, procured and setup required test equipment for functional tests, troubleshooting and verification to product specifications.
  • Provided with engineering specifications, developed functional and automated test equipment and related tooling/fixtures for production testing.

2. LabVIEW

Here's how manufacturing test engineers use labview:
  • Test programming & development for illuminated displays including; image data processing, light measurements and general instrument control using LabVIEW.
  • Developed LabVIEW program for test technicians to use with mechanical fixture to download new firmware revisions to the devices central PCB.

3. Troubleshoot

Troubleshooting is the process of analyzing and fixing any kind of problem in a system or a machine. Troubleshooting is the detailed yet quick search in the system for the main source of an issue and solving it.

Here's how manufacturing test engineers use troubleshoot:
  • Train technicians to troubleshoot and repair POS terminals and Back-Office-Computers for 30-day warranty replacements and RMA's.
  • Build, test, troubleshoot, and implement electrical test assemblies on a shared network infrastructure.

4. C++

C++ is a general-purpose programming language that is used to create high-performing applications. It was invented as an extension to the C language. C++ lets the programmer have a high level of domination over memory and system resources. C++ is an object-oriented language that helps you implement real-time issues based on different data functions

Here's how manufacturing test engineers use c++:
  • Developed software in C++ to manipulate CAD data to CAM.
  • Developed solutions in C++, ADA, and C. Troubleshot clients' software designs and presented alternatives to clients.

5. Test Fixtures

Here's how manufacturing test engineers use test fixtures:
  • Experience includes component tracing/ troubleshooting; creating test fixtures and developing automated computer based testing programs using Visual Basic.
  • Designed custom test fixtures for functional test of product in manufacturing environment.

6. Test Software

Here's how manufacturing test engineers use test software:
  • Test software handled initial firmware loading/configuration/verification, module and full system testing.
  • Developed production test systems and automated test software.

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7. Test Systems

Here's how manufacturing test engineers use test systems:
  • Developed & deployed manufacturing test systems to improve product quality & product assembly efficiency for Ignition Interlock Device.
  • Designed and implemented test systems to ensure functionality of electronic products being manufactured in the production facilities.

8. Product Design

Product design can be described as a process of imagining, creating, and iterating products that solve user's problems and talk about the specific needs of users in the market. Product design is an engineering disciple and it is the basic design and idea that goes before the mass production of the product.

Here's how manufacturing test engineers use product design:
  • Evaluated test results and trends and performed statistical analysis for the purpose of manufacturing process and product design improvement.
  • Participate in the gathering and implementation of manufacturing requirements directly from product design and manufacturing process engineers.

9. Test Procedures

Test procedure i defined as a tool for conducting an experiment to analyze or observe the specifications of a process or application.

Here's how manufacturing test engineers use test procedures:
  • Develop test strategies and test procedures on numerous telecommunication assemblies entering the manufacturing environment.
  • Identified all test procedures and documentation necessary for testing products after transition.

10. Continuous Improvement

Continuous improvement is an ongoing process of improvement of products, services, and processes with the help of innovative ideas. It is an organized approach that helps an organization to find its weaknesses and improve them.

Here's how manufacturing test engineers use continuous improvement:
  • Provided continuous improvement to overall process including process development, scheduling, documentation, assembly, and production processing.
  • Worked with manufacturing, implementing Lean Manufacturing, supporting Continuous Improvement Team activities, developing tools and fixtures.

11. RF

Here's how manufacturing test engineers use rf:
  • Developed and validated RF Test specifications and requirements for electrical/electronic hardware and components.
  • Experienced with RF signal measurements and communication.

12. Technical Support

Technical support or tech support are the services provided by any hardware or software company to users. They help in solving the technical difficulties the customers face with their products or services. Moreover, the tech support employees maintain, manage, and repair the IT faults. They are also responsible for resolving the network problems, installing and configuring hardware and software.

Here's how manufacturing test engineers use technical support:
  • Provided direct technical support to production staff to solve complex electrical and mechanical problems.
  • Provided technical support to Manufacturing Operations, Contract Manufacturers and Suppliers.

13. Sigma

In Greek alphabets, sigma is the 18th letter that means "to sum up". In statistics, the lower case symbol of sigma is the unit of measurement for standard deviation which is used to assess the variability in a given set of data. While the upper case symbol is for summation notation means to add up all the given numbers in the data set.

Here's how manufacturing test engineers use sigma:
  • Streamlined manufacturing production through Lean and Six Sigma DMAIC methodology.
  • Incorporated 5S, Lean/Six Sigma, data analysis, capacity planning, statistical process control, financial planning and quality assurance.

14. Product Quality

Product quality is the basic element of a business. It means to add features in a product or service in such a way that it meets the needs and wants of the customers. Enhancing the product quality also means improve the goods from any existing defects to ensure customer satisfaction.

Here's how manufacturing test engineers use product quality:
  • Investigated product quality issues and made recommendations for manufacturing process changes.
  • Participated in CAPA, SCAR, and RCCA review board to resolve product quality issues.

15. SQL

Here's how manufacturing test engineers use sql:
  • Maintained CGI scripts interfaced to SQL databases that tracked and reported system and processor performance.
  • Conducted processor failure analysis by querying Oracle SQL databases, providing prompt chip bug fixes.
top-skills

What skills help Manufacturing Test Engineers find jobs?

Tell us what job you are looking for, we’ll show you what skills employers want.

What skills stand out on manufacturing test engineer resumes?

Jonathan PuthoffJonathan Puthoff LinkedIn profile

Associate Professor, California State Polytechnic University - Pomona

Collaboration and communication skills. I also think that students should graduate knowing at least one field-specific software design tool or package, as well as some evidence that they can learn more on the job. Finally, workplaces are more diverse in terms of the generations, ethnicities, and genders represented than they have been at any time in the past, so students who have a wide variety of out-of-classroom experiences (and presumably make more considerate colleagues) could do well to highlight those.

What hard/technical skills are most important for manufacturing test engineers?

Dr. David Grewell Ph.D.

Department Chair and Professor, North Dakota State University

An IE must be able to break down complex problems into manageable issues and provide solutions for these problems that face the world in today's complex interconnected systems. A background in statistics, design and analysis, process management, and a strong foundation in the engineering disciplines make this possible.

What manufacturing test engineer skills would you recommend for someone trying to advance their career?

Andre Knoesen Ph.D.Andre Knoesen Ph.D. LinkedIn profile

Professor, Electrical and Computer Engineering, University of California, Davis

The gap year is an excellent period to expand soft skills (e.g., communication, critical thinking, creativity, writing, and exposure to other cultures) that are essential for new engineers. Basic engineering talents could be maintained by volunteering time in K-12 schools, such as assisting in distance learning efforts.

What type of skills will young manufacturing test engineers need?

Dr. Ramanarayanan "Vish" Viswanathan Ph.D.Dr. Ramanarayanan "Vish" Viswanathan Ph.D. LinkedIn profile

Chair and Professor, University of Mississippi

All graduates need to 1) have a broad understanding of electrical engineering and have programming skills, 2) be able to work collaboratively, and 3) effectively communicate with co-workers, both orally and through writing. Additionally, depending upon the nature of the job, some would need effective communication skills to interface with external stakeholders, and some would need strong foundations on theory and applications of electrical engineering, including networking of computers and devices.

What technical skills for a manufacturing test engineer stand out to employers?

Tracy FarrellTracy Farrell LinkedIn profile

Adjunct Instructor, Clarkson University

Technical skills that employers are seeking include "real" computer skills like Microsoft Office Suite tools, proper communication skills via email and website development and postings, developing proper document format that is appropriate to send to stakeholders (i.e., letter formatting, report writing, email formatting); strong communication skills that include speaking professionally and respectfully to stakeholders as well as writing professionally (i.e., making eye contact when speaking, proper handshake, respectful dialogue including questioning); project management - knowing how to organize work and develop a timeline that includes who will be responsible for what and follow through; data analysis - being able to not only present data in an organized and understandable manner; but, be able to interpret data correctly offering the justification behind what they are interpreting and why.

Respectfully, today's graduates do not understand that being able to text and use social media does not prepare them for "real" computer skills. Many students that I have in high school and in college do not have proper writing skills, document formatting skills, or document management skills to know how to save documents properly and where to save to.

List of manufacturing test engineer skills to add to your resume

Manufacturing test engineer skills

The most important skills for a manufacturing test engineer resume and required skills for a manufacturing test engineer to have include:

  • Test Equipment
  • LabVIEW
  • Troubleshoot
  • C++
  • Test Fixtures
  • Test Software
  • Test Systems
  • Product Design
  • Test Procedures
  • Continuous Improvement
  • RF
  • Technical Support
  • Sigma
  • Product Quality
  • SQL
  • Linux
  • Test Data
  • Failure Analysis
  • Test Processes
  • Lean Manufacturing
  • Test Development
  • Functional Test
  • Test Results
  • Test Hardware
  • CAD
  • R
  • Data Collection
  • Test Coverage
  • DFT
  • Power Electronics
  • PCB
  • ISO
  • Process Improvement
  • Debugging
  • Contract Manufacturers
  • Quality Issues
  • Corrective Action
  • Windows
  • Unix
  • Circuit Boards
  • BOM
  • Lean Six Sigma
  • FMEA
  • ICT
  • Test Stations
  • Manufacturing Support
  • ECO
  • Process Control
  • SPC

Updated January 8, 2025

Zippia Research Team
Zippia Team

Editorial Staff

The Zippia Research Team has spent countless hours reviewing resumes, job postings, and government data to determine what goes into getting a job in each phase of life. Professional writers and data scientists comprise the Zippia Research Team.

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