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Ald Process Engineer Jobs in Dallas, TX (NOW HIRING)

R&D Senior Process Engineer Job type: Full Time · Department: Microfabrication · Work type ... Define material selection criteria and deposition strategies (ALD, PECVD, sputtering, e-beam ...

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Ald Process Engineer information

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$49K

$91K

$141K

How much do ald process engineer jobs pay per year?

As of Aug 7, 2026, the average yearly pay for ald process engineer in Dallas, TX is $91,027.00, according to ZipRecruiter salary data. Most workers in this role earn between $73,700.00 and $101,900.00 per year, depending on experience, location, and employer.

What is the difference between Ald Process Engineer vs Chemical Process Engineer?

AspectAld Process EngineerChemical Process Engineer
CredentialsBachelor's in Chemical Engineering or related field; often requires process-specific certificationsBachelor's or higher in Chemical Engineering; similar certification requirements
Work EnvironmentIndustrial plants, manufacturing facilities, chemical processing plantsRefineries, chemical manufacturing, research labs
Industry UsagePrimarily in chemical, petrochemical, and refining industriesBroader, including pharmaceuticals, food processing, and chemicals

The Ald Process Engineer and Chemical Process Engineer roles share similar educational backgrounds and work environments, often overlapping in chemical and petrochemical industries. While both focus on process optimization and safety, the Ald Process Engineer may specialize more in specific refining processes, whereas the Chemical Process Engineer has a broader scope across various chemical sectors.

What are some common challenges faced by an ALD process engineer in optimizing thin film deposition?

ALD Process Engineers often encounter challenges related to achieving uniform film thickness and conformality across complex wafer topographies. Fine-tuning process parameters like temperature, precursor pulse times, and purge sequences is critical to prevent issues such as particle contamination or incomplete reactions. Additionally, collaborating closely with equipment engineers and R&D teams is essential to troubleshoot process deviations and implement improvements. Staying updated on the latest ALD chemistries and tool capabilities also helps address evolving production requirements.

What is an ALD process engineer?

ALD Process Engineers are professionals who specialize in Atomic Layer Deposition (ALD), a thin-film deposition technique used in semiconductor manufacturing and other industries. They develop, optimize, and monitor ALD processes to ensure precise control of film thickness and composition at the atomic level. These engineers work closely with equipment, materials, and design teams to improve device performance and yield. Their role involves troubleshooting process issues, scaling up production, and implementing new technologies in fabrication environments.

What are the key skills and qualifications needed to thrive as an ALD process engineer, and why are they important?

To thrive as an ALD Process Engineer, you need a solid background in chemical engineering, materials science, or a related field, often with experience in thin film deposition and semiconductor manufacturing. Familiarity with atomic layer deposition (ALD) tools, process characterization techniques, and statistical process control systems is typically required. Analytical thinking, problem-solving abilities, and effective communication skills help professionals excel in cross-functional teams and troubleshoot complex processes. These competencies are crucial for optimizing production yield, ensuring process reliability, and advancing technology in high-precision manufacturing environments.
What job categories do people searching Ald Process Engineer jobs in Dallas, TX look for? The top searched job categories for Ald Process Engineer jobs in Dallas, TX are:
What cities near Dallas, TX are hiring for Ald Process Engineer jobs? Cities near Dallas, TX with the most Ald Process Engineer job openings:

R&D Senior Process Engineer

Neara

Addison, TX • On-site

$135 - $150/hr

Other

Posted 2 days ago

New


Job description

R&D Senior Process Engineer

Job type: Full Time · Department: Microfabrication · Work type: Hybrid · USD 135,000-150,000 / year

Addison, Texas, United States

ABOUT PRECISION NEUROSCIENCE

Precision Neuroscience is building a next-generation brain–computer interface (BCI) to heal and empower millions of people living with neurological conditions.

Our first product, Layer 7, is designed to help people with severe paralysis operate digital devices using only their thoughts—opening up new possibilities for daily life.

Our team brings together experts in neurosurgery, AI and machine learning, microfabrication, electrical engineering, clinical science, and more. We combine deep technical rigor with a people-first mindset to turn breakthrough research into real-world medical solutions.

As a Precision employee, you’ll join one of the fastest-moving and best-capitalized companies in the emerging field of brain–computer interfaces. Since our founding in 2021, we have raised more than $180 million, advanced our technology through validation, and initiated human trials with leading hospitals across the country.

Our Values:

We build for human impact, measuring progress by the lives our work can change.

We do no harm, holding ourselves to the highest standards of safety, integrity, and responsibility.

We innovate with urgency because the stakes are high and our users can’t wait.

We bring sharp minds, open ears, pairing expertise with curiosity, humility, and respect.

And we lead the way, taking ownership of our work and helping to shape the future of our field.

We are seeking a R&D Senior Process Engineer to lead the materials and MEMS manufacturing development of our neural interface technologies.

This role owns the development of our thin-film based manufacturing and materials development. You will lead this work in our in-house ISO-certified MEMS facility in Addison, TX.

You will span the range of technology development from early research to early production, bridging the gap from feasibility to scale-up.

This position will be based in our Addison, TX office. We are unable to consider remote workers or individuals who are not currently based in the US and legally authorized to work in the US.

Key Responsibilities
  • Lead the design and development of thin film ceramic encapsulation/insulation layers integrated with polymer films.
  • Define material selection criteria and deposition strategies (ALD, PECVD, sputtering, e-beam evaporation) based on required film properties: barrier performance, dielectric strength, stress/adhesion behavior, and biocompatibility.
  • Characterize film properties and analyzing data from techniques such as ellipsometry, XRD, SEM/TEM, profilometry, and electrochemical impedance spectroscopy (EIS).
  • Collaborate with process engineers to integrate ceramic thin film steps into a MEMS microfabrication flow (e.g., photolithography, etching, metallization).
  • Develop test structures and DOEs to systematically evaluate ceramic film performance as a function of deposition parameters, thickness, and multilayer stack design.
  • Author technical reports, process documentation, and IP disclosures; present findings to internal stakeholders and, where appropriate, at scientific conferences or in peer-reviewed publications.
  • Stay current with emerging thin film ceramic materials and deposition technologies relevant to implantable bioelectronics, and recommend adoption where beneficial.
Skills, Knowledge and Expertise Qualifications
  • Ph.D. in Materials Science, Electrical Engineering, Chemical Engineering, Physics, or a related field, with a research focus on thin film ceramics or dielectric materials (or M.S. with equivalent industry experience).
  • 5+ years of hands‑on experience with thin film ceramic deposition techniques (ALD, PECVD, sputtering, e‑beam evaporation) and a deep understanding of the structure‑property relationships governing film performance.
  • Experience in thin film characterization methods such as ellipsometry, XRD, SEM/TEM, AFM, profilometry, and electrochemical impedance spectroscopy (EIS).
  • Strong working knowledge of MEMS microfabrication processes (photolithography, dry/wet etching, metallization, wafer/substrate handling) and cleanroom experience.
  • Proven ability to design and interpret test studies for evaluating encapsulation or barrier film reliability.
  • Understanding of failure mechanisms in multilayer thin film stacks, including interfacial adhesion, stress management, and mechanical fatigue under flexing or cyclic loading.
  • Excellent experimental design (DOE) skills and data analysis capabilities to drive process optimization decisions.
  • Strong written and verbal communication skills, with experience documenting technical processes and presenting findings to cross‑functional teams.
Preferred Experience
  • Experience with nanolaminate or multilayer ceramic barrier stack design for moisture/ion barrier applications.
  • Background in chronic in vivo or in vitro reliability testing of implantable electronics.
  • Track record of peer‑reviewed publications or patents in thin film ceramics, MEMS, or bioelectronics.
  • Familiarity with biocompatibility and regulatory standards for implantable devices (ISO 10993, ISO13485 FDA guidance documents).
  • Experience mentoring or leading small technical teams in a startup or fast‑paced R&D environment.
  • Familiarity with wafer‑level or panel‑level packaging and hermetic sealing approaches for implantable microdevices.

Diverse workforces create the best culture, company, and products. We at Precision are committed to an inclusive culture that celebrates the uniqueness and contributions of everyone.

As an equal opportunity employer, Precision does not discriminate on the basis of sex, race, religion, national origin, disability status, protected veteran status, or any other characteristic protected by law.

The actual base salary offered is determined by a number of variables, including, as appropriate, the applicant's qualifications for the position, years of relevant experience, distinctive skills, level of education attained, certifications or other professional licenses held, and the location of residence and/or place of employment.

We prioritize candidate security. Please be aware that job offers will only come from emails ending with @precisionneuro.io

For roles based in Massachusetts: it is unlawful in Massachusetts to require or administer a lie detector test as a condition of employment or continued employment. An employer who violates this law shall be subject to criminal penalties and civil liability.

Precision Neuroscience does not accept unsolicited resumes or candidate profiles from recruitment agencies, staffing firms, or third‑party recruiters. Any resumes submitted without a prior written agreement and an authorized job order will be considered the property of Precision Neuroscience, and no fee will be owed in the event a candidate is hired. All qualified candidates should apply directly through our careers page.

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