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Internship Entry Level Instrumentation & Controls Engineer Jobs in Pittsburgh, PA

Collaborates with other engineers to develop accurate, efficient instrumentation, and data ... Works collaboratively with controls, production, and quality engineers to implement process control ...

Collaborates with other engineers to develop accurate, efficient instrumentation, and data ... Works collaboratively with controls, production, and quality engineers to implement process control ...

Automation Engineer L1

Coraopolis, PA · On-site

$80K - $95K/yr

Activities will include electrical/instrumentation design/specification as well as process control ... Solid problem-solving skills and is proficient with Electrical and Controls troubleshooting ...

Automation Engineer L1

Coraopolis, PA · On-site

$80 - $95/hr

Activities will include electrical/instrumentation design/specification as well as process control ... Solid problem‑solving skills and is proficient with Electrical and Controls troubleshooting ...

New

... instrumentation interfaces, and control systems supporting chemical process operations. The ... and Controls engineers. * Assist with troubleshooting electrical-related process issues impacting ...

... instrumentation interfaces, and control systems supporting chemical process operations. The ... and Controls engineers. * Assist with troubleshooting electrical-related process issues impacting ...

Candidates may include new graduates (Electrical Engineering) with internships or up to ~5 years of ... Specifying, selecting, and integrating test equipment, instrumentation, and automation systems,

Showing results 21-40

Internship Entry Level Instrumentation Controls Engineer information

See Pittsburgh, PA salary details

$27

$52

$79

How much do internship entry level instrumentation & controls engineer jobs pay per hour?

As of Aug 21, 2026, the average hourly pay for internship entry level instrumentation & controls engineer in Pittsburgh, PA is $52.94, according to ZipRecruiter salary data. Most workers in this role earn between $41.30 and $60.19 per hour, depending on experience, location, and employer.

What does an internship entry level instrumentation & controls engineer do?

An Internship Entry Level Instrumentation & Controls Engineer assists in designing, developing, and maintaining systems that control and monitor industrial processes. They typically work under the supervision of senior engineers, helping to specify instrumentation, configure control systems, and troubleshoot issues. Interns may also be involved in testing equipment, preparing technical documentation, and supporting the implementation of automation solutions. This role provides valuable hands-on experience in the field of instrumentation and controls engineering.

What are the key skills and qualifications needed to thrive as an internship entry level instrumentation & controls engineer, and why are they important?

To excel as an Internship Entry Level Instrumentation & Controls Engineer, you need a background in electrical or mechanical engineering, strong analytical skills, and familiarity with instrumentation fundamentals, often gained through coursework or relevant internships. Experience with industry-standard tools like PLC programming, SCADA systems, and AutoCAD, as well as exposure to ISA standards, is highly beneficial. Attention to detail, eagerness to learn, and effective teamwork and communication skills help interns stand out in collaborative engineering environments. These abilities enable accurate system design, troubleshooting, and integration, ensuring project success and professional growth.

What types of projects and tasks can an internship entry level instrumentation & controls engineer expect to work on?

As an Internship Entry Level Instrumentation & Controls Engineer, you can expect to assist with designing, testing, and troubleshooting control systems and instrumentation for various engineering projects. Your daily tasks may include creating wiring diagrams, configuring PLCs (Programmable Logic Controllers), supporting senior engineers with system documentation, and participating in equipment calibration and commissioning activities. You'll often collaborate with multidisciplinary teams, including mechanical, electrical, and software engineers, gaining exposure to both technical and project management aspects. This hands-on experience provides a solid foundation for future roles and helps you develop a comprehensive understanding of industrial automation and process control systems.

What is the difference between Internship Entry Level Instrumentation & Controls Engineer vs Entry Level Electrical Engineer?

AspectInternship Entry Level Instrumentation & Controls EngineerEntry Level Electrical Engineer
Required CredentialsTypically pursuing or recently completed a degree in electrical, mechanical, or control engineeringBachelor's degree in electrical engineering or related field
Work EnvironmentIndustrial plants, manufacturing facilities, automation projectsPower plants, manufacturing, design firms, or consulting
Employer & Industry UsageManufacturing, process industries, automation companiesPower generation, electronics, consulting firms

Both roles are entry-level positions requiring similar educational backgrounds. The main difference lies in focus: Instrumentation & Controls Engineers specialize in automation systems and control devices, while Electrical Engineers have a broader scope including power systems and circuitry. Interns in both roles gain hands-on experience in their respective fields, often within industrial or manufacturing environments.

Are internship entry level instrumentation & controls engineers in demand?

Entry-level instrumentation and controls engineering internships are in demand due to the growing need for automation and control systems across industries such as manufacturing, energy, and utilities. These roles often require knowledge of PLCs, SCADA systems, and relevant certifications, making them valuable for companies seeking to develop skilled engineers for future employment.

How to become an internship entry level instrumentation & controls engineer with no experience?

To become an entry-level instrumentation and controls engineer intern with no experience, focus on obtaining a relevant degree such as electrical, mechanical, or control engineering, and develop foundational skills in PLC programming, control systems, and instrumentation. Gaining hands-on experience through coursework, personal projects, or certifications like OSHA or NICET can improve your prospects, and applying to internships that offer training programs can provide practical exposure.

What are popular job titles related to Internship Entry Level Instrumentation & Controls Engineer jobs in Pittsburgh, PA?

For Internship Entry Level Instrumentation & Controls Engineer jobs in Pittsburgh, PA, the most frequently searched job titles are:

What job categories do people searching Internship Entry Level Instrumentation & Controls Engineer jobs in Pittsburgh, PA look for?

The top searched job categories for Internship Entry Level Instrumentation & Controls Engineer jobs in Pittsburgh, PA are:

R&D Engineer, Instrumentation

Vitro Flat Glass

Cheswick, PA

Full-time

Re-posted 19 days ago


Job description

Vitro Architectural Glass manufactures a broad range of industry-leading, energy-efficient products such asSolarban,SungateandStarphire Ultra-Clearglasses. Throughout our storied history, collaboration and innovation have been central to our advancements. Today, the key to our success continues to lie in the strength of our partnerships. With a foundation formed on trust, teamwork and shared excitement, the possibilities for impactful innovations in glass are truly endless.

With manufacturing facilities throughout the U.S. and Mexico, Vitro Architectural Glass is committed to sustainable manufacturing processes and products. Vitro also operates one of the world's largest glass research and development facilities in Pittsburgh, PA and has four residential glass fabrication plants in Canada.

Website:www.vitroglazings.com

The Engineer's general function is to build, maintain, and improve laboratory and plant-level equipment (including equipment for sample preparation, test, and measurement), and develop new experimental methods, in support of R&D and non-R&D customers. The Engineer also own process and product improvement projects that may have visibility beyond R&D.

Responsibilities:

  • Coordinate, closely with the building and facilities services group, to improve and maintain laboratory equipment.
  • Under supervision from a scientist or higher-level colleague, the individual may be responsible for designing new products and processes involving technology and improving and maintaining existing products.
  • The individual may conduct design analysis on components or assemblies to assist in the development process by ensuring designs are cost efficient, manufacturable, and reliable.
  • Define process improvements that yield results in safety, quality, cost, and control.
  • Responsible for working independently with known technologies; will further develop new technologies under supervision.
  • The incumbent does not direct the work of others but may offer technical information or opinion toward solutions.
  • Initiate and maintain relationships with vendors and purchase equipment and supplies to ensure efficiency and continuity of laboratory operation.
  • Assist other professionals in performing assigned phases of work, ranging from the use of defined methods to exercise of some degree of technical judgement.
  • Provide limited technical guidance to more junior professionals or technicians.
  • Lead and manage HOSHIN level projects focused on product or process improvement.
  • Analyze and evaluate current equipment and measurement protocols for new products; identify gaps and areas for improvement; design and develop instrumentation to meet those needs.
  • Collaborate with other engineers to develop accurate, efficient instrumentation, and data interfaces in accordance with safety and usability standards, customer expectations, and controls methodologies.
  • Design and test prototypes of equipment. Develop statistically robust measurement process. Leverage external resources and designs as appropriate.
  • Creates basic schematics and simulated models to test designs; modify designs to meet specifications and budget requirements.
  • Working with internal and external resources, oversee the implementation of new measuring devices and control systems, ensuring devices are correctly installed and properly tested at the production location. Demonstrate statistically robust measurement process.
  • Draft and present formal technical documents, reports, and testing results to manager for approval.
  • Draft technical and user manuals for instrumentation.
  • Provide training related to devices to employees and/or customers.
  • Work collaboratively with controls, production, and quality engineers to implement process control protocols and tools.

Qualifications:

  • B.S. in technical field plus 3 years relevant experience.
  • M.S. in technical field plus 1 year relevant experience.
  • Excellent written and verbal communication skills; ability to plan, organize and share information in interactions with management, peers, associates, and vendors.
  • Ability to troubleshoot, analyze and resolve problems.
  • Must be able to work autonomously as well as in a team setting.
  • Computer knowledge required for use of Microsoft Office products.
  • Working knowledge of computer-aided design equipment and computerized processes preferred.
  • Desired: Coding skills in at least two programming languages such as Visual Basic, C, C++, C#, VB, MATLAB, Python, etc. Fundamental understanding of statistics and process engineering. Technical knowledge and experience in Wonderware InTouch, Allen Bradley PLC, and/or other types of control systems. Experience with SQL, OSISoft-PI, and Azure Platform and familiarity with artificial intelligence and machine learning concepts and implementation. Demonstrated proficiency with two or more programming (e.g., C, C++, Python) languages and SQL. Experience with data interfaces and communication protocols (e.g., TCP/IP) between data acquisition equipment systems.