1

Mocvd Process Jobs in Texas (NOW HIRING)

next page

Showing results 1-20

Mocvd Process information

What are the key skills and qualifications needed to thrive as an MOCVD process engineer?

To thrive as an MOCVD Process Engineer, you need a strong background in materials science, chemical engineering, or physics, often with a relevant degree and experience in semiconductor fabrication. Familiarity with MOCVD (Metal Organic Chemical Vapor Deposition) equipment, process control software, and cleanroom protocols is essential, and certifications in semiconductor manufacturing can be advantageous. Strong analytical thinking, problem-solving skills, and effective communication help you optimize processes and collaborate across multidisciplinary teams. These skills and qualities are crucial for maintaining high yield, product quality, and innovation in advanced semiconductor manufacturing environments.

What are some common challenges faced by MOCVD process engineers during production scale-up, and how can they be addressed?

MO CVD Process Engineers often encounter challenges such as maintaining uniform film thickness, ensuring repeatable material quality, and managing equipment stability when moving from lab-scale to full production. Addressing these issues requires close collaboration with equipment engineers, regular process calibration, and rigorous data analysis to identify and mitigate process drifts. Continuous communication with R&D and production teams is essential to implement improvements and rapidly resolve technical bottlenecks.

What is an MOCVD process engineer?

An MOCVD Process Engineer is a specialist who operates and optimizes Metal-Organic Chemical Vapor Deposition (MOCVD) systems, which are used to grow thin films of semiconductor materials. These engineers develop and refine processes for depositing complex material layers, often for use in LEDs, lasers, or advanced electronic devices. Their work involves monitoring equipment, troubleshooting process issues, ensuring quality control, and collaborating with research and development teams to improve material performance. A strong background in materials science, chemistry, or engineering is typically required.

What is the difference between Mocvd Process vs Chemical Vapor Deposition (CVD) Technician?

AspectMocvd ProcessCVD Technician
CredentialsTechnical diploma or associate degree in electronics or materials scienceTechnical diploma or associate degree in electronics or materials science
Work EnvironmentCleanroom semiconductor fabrication facilitiesCleanroom environments in semiconductor manufacturing
Industry UsageUsed primarily in III-V compound semiconductor productionUsed across various thin-film deposition processes in semiconductor industry

The Mocvd Process and CVD Technician roles share similar credentials and work environments, often overlapping in semiconductor manufacturing. However, Mocvd Process specialists focus specifically on metal-organic chemical vapor deposition for compound semiconductors, while CVD Technicians may work with a broader range of deposition techniques. Both roles are essential in producing high-quality semiconductor devices and are frequently searched together by industry professionals.

What cities in Texas are hiring for Mocvd Process jobs? Cities in Texas with the most Mocvd Process job openings:

Staff Materials Engineer

MetOx International, Inc.

Houston, TX โ€ข On-site

Full-time

Medical, Dental, Vision, Retirement

Posted 11 days ago


Job description

Empower Your Future: At MetOx International, we're pioneering the next era of energy security and abundance through breakthrough superconducting technology. As a Staff Materials Engineer focused on high-temperature superconducting (HTS) materials, you'll join a multidisciplinary team advancing the materials science that enables next-generation superconducting wire. Your work will directly influence superconducting performance, manufacturing capability, and the commercialization of one of the world's most transformative energy technologies.
Based at our global headquarters in Houston, TX, the Staff Materials Engineer provides technical leadership in the development, characterization, optimization, and scale-up of high-temperature superconducting materials and related complex oxide systems that support MetOx's manufacturing platform. Working closely with Process Engineering, Manufacturing Engineering, Equipment Engineering, Quality, and R&D, this role combines advanced materials science, thin-film engineering, and process development to establish technical direction, improve manufacturing robustness, and accelerate the commercialization of next-generation superconducting technologies.
Key Responsibilities
Materials Development Strategy
  • Leads the materials strategy supporting MetOx's HTS manufacturing platform and long-term technology roadmap.
  • Develops a first-principles understanding of the relationships between MOCVD process conditions, film growth, microstructure, and superconducting performance.
  • Defines microstructural targets (texture, defects, interfaces, pinning centers, and composition) required to maximize in-field critical current and manufacturing robustness.
  • Identifies and evaluates new precursor chemistries, deposition approaches, and characterization methods to improve performance, yield, and scalability.
  • Drives the transition of laboratory discoveries into robust, high-volume manufacturing processes.

Project & Experiment Leadership
  • Designs and leads experimental programs to establish processing-structure-property relationships in HTS thin films.
  • Develops MOCVD process windows through systematic experimentation, physics-based modeling, and statistical analysis.
  • Applies advanced characterization techniques, including XRD, SEM, TEM, EBSD, AFM, Raman spectroscopy, and XPS, to identify performance-limiting mechanisms.
  • Leverages large manufacturing datasets using multivariate statistics, machine learning, and artificial intelligence to correlate tool parameters, diagnostics, and film performance.
  • Develops new in situ and ex situ diagnostic methods to improve understanding and control of film growth.

Integration and Cross-Functional Leadership
  • Partners with Process, Equipment, Manufacturing, Quality, and Operations teams to transition new materials and processes into production.
  • Translates scientific understanding into manufacturable process improvements that increase yield, consistency, and performance.
  • Collaborates with suppliers, universities, national laboratories, and strategic partners to accelerate technology development.

Mentorship and Technical Leadership
  • Provides technical leadership and mentorship to engineers and scientists.
  • Promotes rigorous experimental design, data-driven decision-making, and scientific excellence.
  • Serves as the subject matter expert for HTS materials, MOCVD process science, and superconducting performance.
  • Guides technical problem solving and supports critical engineering decisions across research, process development, and manufacturing teams.
  • Builds technical capability by coaching engineers, fostering collaboration, and cultivating a culture of continuous learning and innovation.

Minimum Qualifications
  • Master's in Materials Science, Physics, Chemical Engineering, Chemistry, or a related discipline. An advanced degree may be substituted for required experience on a year-for-year basis, depending on relevance and level.
  • 7+ years of experience developing HTS materials, complex oxides, epitaxial thin films, or closely related functional materials.
  • Deep understanding of processing-structure-property relationships in advanced materials.
  • Experience with thin-film growth, epitaxy, crystal defects, microstructure evolution, and advanced materials characterization.
  • Demonstrated ability to design and execute complex experimental programs.
  • Experience applying multivariate statistics, machine learning, or AI to large experimental or manufacturing datasets.
  • Strong scientific foundation with the ability to connect first-principles materials behavior to manufacturing outcomes.

Preferred Qualifications
  • D. in Materials Science and Engineering, Materials Engineering, Physics, Chemistry, Chemical Engineering, or a related engineering or scientific discipline.
  • Direct experience with REBCO, YBCO, or related high-temperature superconductors.
  • Expertise in MOCVD or other epitaxial thin-film deposition methods (PLD, sputtering, ALD, CVD).
  • Experience developing vortex pinning architectures and optimizing in-field critical current.
  • Experience transferring research into pilot-scale or manufacturing environments.
  • Record of technical leadership demonstrated through publications, patents, or commercialization of advanced materials technologies.

Physical Demands: This position requires sitting at a desk and viewing a computer screen for extended periods while working or performing other office tasks. Ability to move around the office, including occasional standing, walking, and bending to retrieve documents, attend meetings, or use office equipment. Some light lifting may be required, up to 20 lbs.
MetOx is proud to offer competitive benefits including:
  • Health, dental, and vision available on the first day of employment
  • 401(k) match
  • Paid parental leave & adoption assistance
  • Educational reimbursement
  • And more!

We are an equal opportunity employer and all qualified applicants will receive consideration for employment without regard to race, color, religion, sex, national origin, disability status, protected veteran status, or any other characteristic protected by law.