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Chip Fabrication Jobs (NOW HIRING)

... chip-scale implementation. This role focuses on translating advanced quantum and AI concepts into ... Analyze fabrication tolerances and material constraints to assess design robustness. Optimize ...

You'll be involved in the development process, from design and fabrication to testing and analysis, for complex photonic devices and systems-on-chip. Collaborate with experienced designers on ...

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Chip Fabrication information

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How much do chip fabrication jobs pay per hour?

As of Jun 15, 2026, the average hourly pay for chip fabrication in the United States is $25.39, according to ZipRecruiter salary data. Most workers in this role earn between $18.27 and $27.88 per hour, depending on experience, location, and employer.

What is the difference between Chip Fabrication vs Semiconductor Process Technician?

AspectChip FabricationSemiconductor Process Technician
CredentialsAssociate's or Bachelor's in Engineering, Electronics, or related fieldsAssociate's or Bachelor's in Engineering, Electronics, or related fields
Work EnvironmentCleanrooms, manufacturing facilitiesCleanrooms, manufacturing facilities
Industry UsageUsed interchangeably in industry, with slight focus on manufacturing processesFocuses on operating and maintaining fabrication equipment

Chip Fabrication and Semiconductor Process Technician roles often overlap in credentials and work environment, but Chip Fabrication generally refers to the broader process of creating semiconductor devices, while Semiconductor Process Technicians focus on operating specific equipment and ensuring process quality within fabrication facilities.

What are some common challenges faced by professionals in chip fabrication roles, and how can they be addressed?

Professionals in chip fabrication often encounter challenges such as maintaining extremely high levels of cleanliness in cleanroom environments, ensuring precise control over manufacturing processes, and troubleshooting complex equipment issues. Working with advanced machinery and delicate materials requires excellent attention to detail and adherence to strict safety protocols. Addressing these challenges typically involves continuous training, collaboration with engineers and technicians, and staying updated on the latest industry standards and technologies.

What are the key skills and qualifications needed to thrive in Chip Fabrication, and why are they important?

To thrive in chip fabrication, you need a solid background in materials science, electronics, and semiconductor processing, typically supported by a degree in electrical engineering, materials engineering, or a related field. Familiarity with cleanroom protocols, photolithography systems, and process control software is essential. Attention to detail, problem-solving abilities, and effective teamwork are standout soft skills in this role. These competencies are crucial to ensuring the production of high-quality, reliable semiconductor devices in a highly controlled and precise manufacturing environment.

What is chip fabrication?

Chip fabrication is the process of creating integrated circuits (ICs), commonly known as microchips, on semiconductor wafers. This involves multiple steps such as photolithography, etching, doping, and deposition to build complex electronic circuits at the microscopic level. Chip fabrication is typically performed in cleanroom environments to prevent contamination and ensure high precision. The resulting microchips are used in a wide range of electronic devices, including computers, smartphones, and automotive systems.
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What states have the most Chip Fabrication jobs? States with the most job openings for Chip Fabrication jobs include:

Research Scientist - Quantum & AI Photonic Chip Simulation

QCi

Hoboken, NJ โ€ข On-site

Full-time

Posted 23 days ago


Job description

Location: Hoboken, NJ
Department: Tomorrow
Reports to: Ting Bu
Position Overview
The Research Scientist will work on the modeling, simulation, and architectural development of
quantum and artificial intelligence (AI) computational structures intended for chip-scale
implementation. This role focuses on translating advanced quantum and AI concepts into
physically realistic, simulation-validated device and system designs suitable for fabrication. It
concentrates on high-fidelity simulation, feasibility analysis, and performance optimization under
practical fabrication constraints. The role serves as a technical bridge between the research
team developing novel quantum/AI architectures and the chip fabrication team responsible for
implementation, ensuring that proposed designs are physically realizable, scalable, and
performance-optimized prior to tape-out.
Duties and Responsibilities
โ€ข Develop and simulate quantum and AI-based photonic architectures for on-chip
implementation.
โ€ข Translate high-level computational concepts into device-level and system-level
simulation models.
โ€ข Perform rigorous electromagnetic and multiphysics simulations to evaluate optical,
nonlinear, and quantum effects.
โ€ข Model and simulate quantum photonic circuits and quantum gates under realistic device
conditions.
โ€ข Analyze fabrication tolerances and material constraints to assess design robustness.
Optimize photonic device structures for performance, scalability, and manufacturability.
โ€ข Collaborate closely with fabrication and packaging teams to ensure simulation models
align with process capabilities.
โ€ข Support post-fabrication validation by correlating experimental results with simulation
predictions.
โ€ข Document modeling methodologies, simulation results, and architectural trade-offs for
internal and external reporting.
Required Qualifications
Education
โ€ข Ph.D. in Physics, Applied Physics, Electrical Engineering, or a closely related discipline.
Technical Background
โ€ข Strong foundation in Photonics, Quantum optics, Nonlinear optics
โ€ข Demonstrated experience in simulation of photonic integrated circuits.
โ€ข Experience modeling and simulating quantum gates or quantum optical systems.
โ€ข Understanding of semiconductor/TFLN and photonic chip fabrication processes sufficient
to incorporate realistic constraints into simulations.
โ€ข Familiarity with chip testing and packaging considerations from a modeling perspective.
Software Proficiency
โ€ข Lumerical (FDTD, MODE, INTERCONNECT)
โ€ข Tidy3D
โ€ข COMSOL Multiphysics
โ€ข Python
โ€ข MATLAB