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Intel Process Engineer Jobs in Michigan (NOW HIRING)

... and intel. The role requires a significant understanding of the Regulatory function related to ... Thorough understanding of service-related processes and service engineering with ability to ...

Service Desk Lead

Lansing, MI · On-site

$81K - $120K/yr

Ensures all processes meet federal PWS requirements, quality benchmarks, security guidelines, and ... Collaborates with engineering, cybersecurity, network, and application teams to reduce recurring ...

New

It takes the imagination and passion of all of us-from design and engineering to the manufacturing ... Consistently demonstrate a strong understanding and execution of a proper sales process. * Develop ...

Intel Process Engineer information

See Michigan salary details

$43.1K

$80.2K

$124.2K

How much do intel process engineer jobs pay per year?

As of Aug 21, 2026, the average yearly pay for intel process engineer in Michigan is $80,202.00, according to ZipRecruiter salary data. Most workers in this role earn between $64,900.00 and $89,800.00 per year, depending on experience, location, and employer.

What is an Intel Process Engineer?

An Intel Process Engineer is responsible for developing, optimizing, and maintaining semiconductor manufacturing processes to ensure high-quality and efficient production of Intel's microchips. They work closely with design, equipment, and manufacturing teams to improve yield, resolve defects, and implement new process technologies. The role involves data analysis, troubleshooting, and continuous improvement efforts to enhance efficiency and product performance.

What are the primary day-to-day responsibilities of an Intel Process Engineer?

As an Intel Process Engineer, your daily tasks typically involve monitoring and optimizing semiconductor manufacturing processes, analyzing yield data to identify improvements, and troubleshooting equipment or production issues. You will collaborate closely with engineering, production, and quality assurance teams to implement process changes and support technology transfers. The role often requires hands-on work in cleanroom environments and active participation in meetings focused on continuous improvement. This dynamic environment provides opportunities to drive real impact on product quality and creates a strong foundation for career growth within Intel’s technical ladder or leadership tracks.

What are the key skills and qualifications needed to thrive as an Intel Process Engineer?

To thrive as an Intel Process Engineer, you need a strong background in materials science, chemical engineering, or a related field, often with at least a bachelor's degree or higher. Familiarity with semiconductor fabrication tools, process simulation software, and statistical process control (SPC) systems is critical. Strong analytical thinking, attention to detail, and effective communication skills help you excel in cross-functional teams. These competencies ensure efficient process optimization, yield improvement, and successful collaboration in Intel’s fast-paced manufacturing environment.

How much do Intel process engineers make?

Intel process engineers typically earn an average salary ranging from $80,000 to $130,000 annually, depending on experience, education, and location. Senior engineers or those with specialized skills may earn higher compensation, often including bonuses and benefits. Salary levels can also vary based on the complexity of manufacturing processes and certifications held.

What does an Intel Process Engineer do?

An Intel Process Engineer designs, develops, and optimizes manufacturing processes for semiconductor fabrication to improve chip performance and yield. They analyze production data, troubleshoot process issues, and work with equipment and materials to ensure high-quality semiconductor production. Proficiency in process control, statistical analysis, and industry tools like SPC is essential for this role.
Infographic showing various Intel Process Engineer job openings in Michigan as of August 2026, with employment types broken down into 1% As Needed, 75% Full Time, 17% Part Time, 2% Temporary, 3% Contract, and 2% Nights. Highlights an 91% Physical, 3% Hybrid, and 6% Remote job distribution, with an average salary of $80,202 per year, or $38.6 per hour.

Sr Firmware / FPGA Engineer - Contract to potential hire - pay 60-70/hr doe

Colonial Staffing Group

Sterling Heights, MI • On-site

$50 - $70/hr

Contractor

Re-posted 2 days ago


Job description

Contract to potential hire - (no guarantees)FULLY ONSITE POSITION -  US Cit Only – Might need to be able to obtain a Security Clearance
REQUIREMENTS
  • Bachelor's degree in Electrical or Computer Engineering or Computer Science
  • 10+ years of experience
  • Familiarity with the following:
  • C bare metal programming on xilinx FPGA preferably the ultra scale+
  • AMD/xilinx dev tools such as Vivado and Vitis
  • Understanding of HDMI and SDI video protocol, IP blocks and implementation of software solutions to drive them
  • Basic Linux familiarity
  • Petalinux is a plus
  • Yocto is a plus
 
 
Description
Tasks and Responsibilities:
  • Design, develop Firmware for Electronic Components and Subsystems for Processing and Interface Products
  • Collaborating with systems, software, and hardware engineers to develop designs for video, image &graphics processing
  • Develop and review requirements and digest into work packages
  • Perform embedded Linux development
  • Perform Yocto Linux development on NVIDIA Jetson and Xilinx Ultrascale platforms
  • Develop Linux drivers for custom peripherals
  • Develop Linux drivers
  • Develop system constraints
  • Perform debug through physical lab testing
    Knowledge of the following areas desired: 
    • MOSA, SOSA, GCIA, TSN
    • Microprocessor based products and Single Board Form Factors: Intel, AMD, ARM, VPX, VME, COM Express.
    • Industry standard interfaces and products (PCle, DDRxx, USB, SATA, RS422/485, MIL-1553, Ethernet, CAN, RS422/485, Solid State Drives)
    • Graphics/video interfaces (HDMI, DisplayPort, HD-SDI, RS-170, LVDS)
    • FPGA Design and Simulation (Xilinx Toolsets)
    • EMI/EMC, High Speed Signal Integrity design practices
    • Military design and test requirements including MIL-1275, MIL-461, MIL-464, MIL-810
    • Six Sigma design tools including DFMEA and Reliability Analysis