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Fpga Programming Jobs in Michigan (NOW HIRING)

Senior FPGA Engineer

Detroit, MI

$128K - $165K/yr

Developing and scaling FPGA driven technology that enables highly accurate, real time micro location systems. The position blends hands on FPGA and RTL design with advanced digital signal processing ...

FPGA Development Engineer

Novi, MI · On-site

$122K - $156K/yr

FPGA Development Engineer Location: Farmington Hills, MI USA We are seeking self-motivated ... Solid understanding of general programming software technology * Understanding of software ...

Develop the system and board level architectural design, but working collaboratively with the software and FPGA programmers to analyze requirements * Provide schematic design and component selection ...

Acron Aviation designs, engineers, and manufactures certified avionics systems that support safety ... Minimum 7 years of experience in FPGA and firmware design * Hands‑on experience designing and ...

Define system architecture and allocate requirements across RF, analog, digital, mixed-signal, software, FPGA/firmware, mechanical, and systems engineering disciplines * Serve as technical lead for ...

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Fpga Programming information

See Michigan salary details

$74.1K

$128.4K

$173K

How much do fpga programming jobs pay per year?

As of Aug 16, 2026, the average yearly pay for fpga programming in Michigan is $128,399.00, according to ZipRecruiter salary data. Most workers in this role earn between $113,300.00 and $145,600.00 per year, depending on experience, location, and employer.

Is FPGA programming a good career?

FPGA programming is a specialized field involving designing and implementing digital circuits using hardware description languages like VHDL or Verilog. It offers strong job prospects in industries such as telecommunications, aerospace, and embedded systems, often requiring knowledge of digital design, hardware architecture, and tools like Xilinx or Intel FPGA development environments. The role typically demands problem-solving skills, attention to detail, and sometimes certifications or experience with hardware testing and debugging.

What is an FPGA programming?

An FPGA Programming job involves designing, developing, and optimizing digital circuits using hardware description languages (HDLs) such as VHDL or Verilog. FPGA (Field-Programmable Gate Array) engineers work with configurable hardware to implement custom logic for applications in industries like telecommunications, aerospace, and embedded systems. Responsibilities typically include coding, simulation, synthesis, testing, and debugging FPGA designs. Engineers in this role often collaborate with software and hardware teams to ensure efficient system integration.

What are the key skills and qualifications needed for FPGA programming?

To thrive in FPGA Programming, you need strong expertise in digital design principles, proficiency in hardware description languages (such as VHDL or Verilog), and a solid background in electrical or computer engineering. Familiarity with FPGA development tools like Xilinx Vivado or Intel Quartus, and often industry certifications, are highly valued. Problem-solving, meticulous attention to detail, and the ability to communicate technical concepts clearly are key soft skills for success. These abilities are critical for creating robust, efficient FPGA solutions that meet project specifications and collaborate effectively within engineering teams.

How much do FPGA programmers make?

FPGA programmers typically earn between $80,000 and $130,000 annually, depending on experience, location, and industry. Senior roles or those with specialized skills in hardware description languages like VHDL or Verilog can command higher salaries, especially in high-tech or aerospace sectors.

What are common challenges faced in FPGA programming and how can I prepare for them?

FPGA programming roles often involve addressing complex timing constraints, debugging hardware-software interactions, and optimizing designs to meet performance and resource requirements. You may encounter steep learning curves with various vendor tools and constantly evolving technologies, so continuous learning and adaptability are invaluable. Collaboration with software, hardware, and verification engineers is typical, requiring you to communicate technical issues clearly and work through multi-disciplinary challenges together. Gaining experience with simulation tools, staying up to date with the latest FPGA architectures, and practicing systematic troubleshooting can help you succeed in these demanding environments.

What are the most commonly searched types of Fpga Programming jobs in Michigan?

The most popular types of Fpga Programming jobs in Michigan are:

What job categories do people searching Fpga Programming jobs in Michigan look for?

The top searched job categories for Fpga Programming jobs in Michigan are:

Infographic showing various Fpga Programming job openings in Michigan as of August 2026, with employment types broken down into 1% Internship, 78% Full Time, 13% Part Time, 2% Temporary, 5% Contract, and 1% Nights. Highlights an 87% Physical, 4% Hybrid, and 9% Remote job distribution, with an average salary of $128,399 per year, or $61.7 per hour.

Senior FPGA Engineer (DSP & IQ Radio Processing)

talentmovers inc

Southfield, MI • On-site

$50/hr

Contractor

Re-posted 18 days ago


Job description

Job Title: Senior FPGA Engineer (DSP & IQ Radio Processing)

Location: Southfield, MI (5 days in a week onsite)

Duration: 12+ Months

Rate: $50.00 Per Hour on C2C (No flexibility on the rate)

IRC: IRC275306

Job Description

Join GlobalLogic as a Senior FPGA Engineer (DSP & IQ Radio Processing) and be part of an experienced team that is reshaping technological boundaries! This exceptional opportunity allows you to work on innovative projects, employing your skills to develop extraordinary FPGA solutions. You'll be at the forefront of innovation, chipping in to our daring aims of developing detailed, high-accuracy micro-location systems. If you have a consistent record in FPGA/ASIC design and a passion for DSP algorithms, this is the place for you!

Algorithmic Approach

We are in need of a candidate with a robust algorithmic approach. You must be skilled in crafting, optimizing, and validating high-performance DSP algorithms, specifically for wireless communication or localization technologies. Understanding advanced signal processing techniques such as error correction, MIMO, and beamforming will give you a position. Your talent for definitively choosing the most effective methods for sophisticated problems is key.

Problem-Solver

As a true problem-solver, you will thrive in our fast-paced R&D environment, where you will address ambiguous problems and transform them into innovative solutions. You'll work from limited initial concept ideas to develop proof-of-concept systems and see them through to production-ready solutions. Your creative problem-solving skills will be key to our success.

Self-Motivated & Collaborative

We appreciate individuals who take initiative and are committed to overseeing their projects from conception to completion. You should be enthusiastic about working in a team with varied collaborators, communicating effectively with different interested parties, and actively seeking input. Your skill in working harmoniously with product managers, hardware technicians, and other team members will guarantee the successful execution of our projects.

Job Responsibilities

· Craft and establish FPGA-based solutions to fortify real-time, high-precision micro-location systems.

· Integrate sophisticated DSP and IQ radio processing algorithms that empower centimeter-level accuracy in changing surroundings.

· Streamline FPGA resource usage for high-speed interfaces and precision timing applications.

· Partner with multi-functional teams—hardware, software, RF, and product design—to explore new approaches for micro-location accuracy and robustness.

· Explore new technologies and industry trends in signal processing, radio interfaces, and localization methods.

· Swiftly prototype modern concepts and convert them into functional, production-ready solutions.