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Phd Chemical Engineering Semiconductor Jobs (NOW HIRING)

Chemical Process Engineer

Douglas, GA · On-site

$75K - $90K/yr

A bachelor's degree in Chemical Engineering and 0-5+ years of relevant experience, OR a Master's or ... MS, MBA, PhD, PE nice but optional Main functions: Work with process development, production, lab ...

Showing results 21-40

Phd Chemical Engineering Semiconductor information

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$40K

$87.5K

$140K

How much do phd chemical engineering semiconductor jobs pay per year?

As of Sep 15, 2026, the average yearly pay for phd chemical engineering semiconductor in the United States is $87,487.00, according to ZipRecruiter salary data. Most workers in this role earn between $67,500.00 and $106,500.00 per year, depending on experience, location, and employer.

What does a PhD chemical engineer in the semiconductor industry do?

A PhD in Chemical Engineering with a focus on semiconductors typically conducts advanced research and development in the design, fabrication, and optimization of semiconductor materials and devices. They work on improving manufacturing processes, developing new materials, and solving technical challenges in the semiconductor industry. Their expertise is essential in fields such as microelectronics, nanotechnology, and materials science, often collaborating with multidisciplinary teams to bring innovative solutions from concept to production.

What are the key skills and qualifications needed to thrive as a PhD chemical engineer in the semiconductor industry?

To excel as a PhD Chemical Engineer in the semiconductor industry, you need deep expertise in chemical process engineering, semiconductor fabrication, materials science, and a doctoral degree in chemical engineering or a related field. Experience with process simulation software, cleanroom protocols, and advanced analytical instrumentation is typically required. Strong problem-solving abilities, teamwork, and effective communication help you navigate complex projects and collaborate across multidisciplinary teams. These skills are crucial for driving innovation, ensuring product quality, and maintaining efficiency in the highly technical and competitive semiconductor sector.

What are some common interdisciplinary collaborations for PhD chemical engineers in the semiconductor industry?

PhD Chemical Engineers in the semiconductor industry frequently collaborate with professionals from materials science, electrical engineering, and physics to optimize fabrication processes and develop advanced materials. They also work closely with process integration teams, equipment engineers, and quality control specialists to ensure yield improvement and process reliability. This interdisciplinary environment provides valuable exposure to diverse expertise, fostering both technical growth and a broader understanding of the semiconductor manufacturing process.

What is the difference between Phd Chemical Engineering Semiconductor vs Phd Materials Scientist?

AspectPhd Chemical Engineering SemiconductorPhd Materials Scientist
Required credentialsPhD in Chemical Engineering or related field, specialized in semiconductor processesPhD in Materials Science or Engineering, focus on material properties and applications
Work environmentResearch labs, manufacturing facilities, R&D departments in semiconductor companiesResearch labs, academia, industry R&D in materials development
Employer and industry usageSemiconductor manufacturers, electronics companies, R&D firmsElectronics, aerospace, energy sectors, academia

The Phd Chemical Engineering Semiconductor focuses on chemical processes and fabrication techniques specific to semiconductors, while the Phd Materials Scientist emphasizes understanding and developing materials used across various industries. Both roles require advanced degrees and involve research, but their applications and focus areas differ.

Can a chemical engineer work in the semiconductor industry?

Yes, chemical engineers can work in the semiconductor industry, often focusing on processes such as chemical vapor deposition, etching, and materials synthesis. Their skills in process engineering, materials science, and chemical handling are valuable for manufacturing and developing semiconductor devices.

Is it worth getting a PhD in chemical engineering?

A PhD in chemical engineering can enhance expertise in areas like semiconductor manufacturing, research, and development, often leading to roles in advanced R&D, academia, or specialized industry positions. However, it requires significant time and investment, and career benefits depend on individual goals and industry demand for advanced technical skills.

What jobs can you get with a PhD in chemical engineering semiconductor?

A PhD in chemical engineering with a focus on semiconductors can lead to roles such as process engineer, research scientist, materials scientist, or process development engineer in semiconductor manufacturing, research labs, or technology companies. These positions often require expertise in materials, fabrication processes, and advanced analytical tools, and may involve working in cleanroom environments or with specialized equipment.

What are popular job titles related to Phd Chemical Engineering Semiconductor jobs?

For Phd Chemical Engineering Semiconductor jobs, the most frequently searched job titles are:

Infographic showing various Phd Chemical Engineering Semiconductor job openings in the United States as of September 2026, with employment types broken down into 50% Internship, and 50% Full Time. Highlights an 100% In-person job distribution, with an average salary of $87,487 per year, or $42.1 per hour.

Facilities Chemical Engineering Intern

Dallas, TX

Texas Instruments
Semiconductor and Electronic Component Manufacturing • 10K+ employees

$15.25 - $19.75/hr

Full-time

Posted 6 days ago


Texas Instruments rating

8.1

Company rating: 8.1 out of 10

Based on 87 frontline employees who took The Breakroom Quiz


Job description

JOB DESCRIPTION

About TI Texas Instruments Incorporated (TI) is a global semiconductor design and manufacturing company that develops analog ICs and embedded processors. By employing the world's brightest minds, TI creates innovations that shape the future of technology.

1. Systems Engineering & Sustaining Support:

  • Technical Exposure: Gain exposure to high-purity acid, base, and solvent systems (pumped/gas pressured), as well as ultra-pure gases (inert, flammable, corrosive, and pyrophoric).
  • Equipment Familiarity: Learn about critical components such as Chemical Distribution Units (CDUs), Valve Manifold Boxes (VMBs), Gas Cabinets, and Cryogenic Tanks.
  • Water Treatment: Assist in understanding de-ionized and ultrapure water systems, including reverse osmosis, ion exchange, and ultrafiltration processes.
  • Engineering Analysis: Support the team in reviewing system capacity vs. demand, assisting with troubleshooting, and performing systems assessments to drive improvement roadmaps.
  • Documentation: Assist in the development and maintenance of Piping and Instrumentation Diagrams (P&IDs), Process Flow Diagrams (PFDs), and Standard Operating Procedures (SOPs).
  • Reliability Focus: Participate in reliability-driven tasks such as FMEA (Failure Mode and Effects Analysis) and Root Cause Analysis (RCA).

2. Project Management Support:

  • Lifecycle Management: Support the engineering analysis, design, and installation oversight of chemical and gas distribution systems.
  • Scope & Execution: Assist with projects ranging from individual component installations (like a single VMB) to large-scale factory-wide distribution systems.
  • Cross-Functional Collaboration: Learn how to coordinate with diverse engineering disciplines, contractors, and suppliers to ensure projects stay on schedule and within budget.
  • Construction & Commissioning: Assist in reviewing construction documentation (submittals/RFIs) and participate in the commissioning process to ensure equipment performs to design specifications.
  • Financial Awareness: Learn the business side of engineering by assisting with project financial tracking, including purchase orders and capital forecasts.

Put your talent to work with us as a Facilities Chemical & Gas Engineering Intern!

Texas Instruments will not sponsor job applicants for visas or work authorization for this position.

QUALIFICATIONS

Minimum Requirements:

  • Currently pursuing a undergraduate or graduate degree in Chemical Engineering
  • Cumulative 3.0/4.0 GPA or higher

Preferred Qualifications:

  • Strong interest in semiconductor manufacturing, industrial utility systems, or large-scale facility operations.
  • Basic understanding of fluid mechanics, thermodynamics, or chemical properties.
  • Strong analytical and problem-solving skills.
  • Excellent communication skills and a desire to work in a fast-paced, collaborative environment.
  • Commitment to safety and operational excellence.

ABOUT US

Why TI?

  • Engineer your future. We empower our employees to truly own their career and development. Come collaborate with some of the smartest people in the world to shape the future of electronics.
  • We're different by design. Diverse backgrounds and perspectives are what push innovation forward and what make TI stronger. We value each and every voice, and look forward to hearing yours. Meet the people of TI
  • Benefits that benefit you. We offer competitive pay and benefits designed to help you and your family live your best life. Your well-being is important to us. Please find our country-specific benefits here

About Texas Instruments

Texas Instruments Incorporated (Nasdaq: TXN) is a global semiconductor company that designs, manufactures and sells analog and embedded processing chips for markets such as industrial, automotive, data center, personal electronics and communications equipment. At our core, we have a passion to create a better world by making electronics more affordable through semiconductors. This passion is alive today as each generation of innovation builds upon the last to make our technology more reliable, more affordable and lower power, making it possible for semiconductors to go into electronics everywhere. Learn more at TI.com.

Texas Instruments is an equal opportunity employer and supports a diverse, inclusive work environment. All qualified applicants will receive consideration for employment without regard to race, color, religion, creed, disability, genetic information, national origin, gender, gender identity and expression, age, sexual orientation, marital status, veteran status, or any other characteristic protected by federal, state, or local laws.

If you are interested in this position, please apply to this requisition.

ABOUT THE TEAM

TI does not make recruiting or hiring decisions based on citizenship, immigration status or national origin. However, if TI determines that information access or export control restrictions based upon applicable laws and regulations would prohibit you from working in this position without first obtaining an export license, TI expressly reserves the right not to seek such a license for you and either offer you a different position that does not require an export license or decline to move forward with your employment.


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About Texas Instruments

Sourced by ZipRecruiter

As a global semiconductor company, we design, manufacture, test and sell analog and embedded processing chips to nearly 100,000 customers. Our products enable electronics everywhere and in things you experience every day - from health care, smart homes and connected cars to drones, smart phones and more. Our passion to create a better and more sustainable world by making electronics more affordable through semiconductors drives us to make our technology smaller, more efficient, more reliable and more affordable.

Industry

Semiconductor and electronic component manufacturing

Company size

10,000+ Employees

Headquarters location

Dallas, TX, US

Year founded

1930