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Fpga Embedded System Engineer Jobs in Kentucky (NOW HIRING)

Validating complex embedded software interactions spanning propulsion, ADAS/AD, body, infotainment, and connected services. Lead integration and validation of embedded software at the component ...

Validating complex embedded software interactions spanning propulsion, ADAS/AD, body, infotainment, and connected services. Lead integration and validation of embedded software at the component ...

Validating complex embedded software interactions spanning propulsion, ADAS/AD, body, infotainment, and connected services. Lead integration and validation of embedded software at the component ...

Validating complex embedded software interactions spanning propulsion, ADAS/AD, body, infotainment, and connected services. Lead integration and validation of embedded software at the component ...

Validating complex embedded software interactions spanning propulsion, ADAS/AD, body, infotainment, and connected services. Lead integration and validation of embedded software at the component ...

Validating complex embedded software interactions spanning propulsion, ADAS/AD, body, infotainment, and connected services. Lead integration and validation of embedded software at the component ...

This role is ideal for an engineer who enjoys working across mechanical, electrical, controls, and ... Integrate sensors, motors, actuators, pneumatic systems, motion controls, PLCs, and embedded ...

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Fpga Embedded System Engineer information

What are the key skills and qualifications needed to thrive as an FPGA Embedded System Engineer, and why are they important?

To thrive as an FPGA Embedded System Engineer, you need a strong background in digital design, hardware description languages (such as VHDL or Verilog), and embedded systems, typically supported by a degree in electrical engineering or a related field. Proficiency in using FPGA development tools like Xilinx Vivado or Intel Quartus, as well as experience with simulation and debugging tools, is crucial. Strong problem-solving abilities, attention to detail, and effective teamwork and communication skills help engineers excel in this role. These competencies ensure the successful design, implementation, and integration of reliable, high-performance embedded solutions.

How do FPGA Embedded System Engineers typically collaborate with software and hardware teams during a project?

FPGA Embedded System Engineers often serve as a bridge between hardware and software teams, collaborating closely to ensure seamless integration of programmable logic with embedded software. They work with hardware engineers to define system requirements and interface specifications, while coordinating with software developers to implement and test embedded code on the FPGA platform. Regular meetings, design reviews, and the use of version control systems help facilitate smooth communication and resolve integration challenges. This collaborative approach ensures that both hardware and software components function together effectively, leading to successful project outcomes.

What are FPGA Embedded System Engineers?

FPGA Embedded System Engineers are professionals who design, develop, and implement embedded systems using Field Programmable Gate Arrays (FPGAs). They create custom hardware solutions by programming FPGAs to perform specific tasks, often working closely with software and hardware teams. Their work involves hardware description languages like VHDL or Verilog, debugging, testing, and optimizing systems for performance, power, and efficiency. These engineers are crucial in industries like telecommunications, automotive, aerospace, and consumer electronics, where high-performance and flexible hardware solutions are needed.

What is the difference between Fpga Embedded System Engineer vs Digital Signal Processing (DSP) Engineer?

AspectFpga Embedded System EngineerDigital Signal Processing (DSP) Engineer
Required CredentialsBachelor's/Master's in Electrical Engineering, Computer Engineering; FPGA certificationsBachelor's/Master's in Electrical Engineering, Signal Processing, or related; DSP certifications
Work EnvironmentDesigning FPGA hardware, embedded software development, hardware testingDeveloping algorithms for signal processing, software implementation, testing
Industry UsageAerospace, defense, telecommunications, embedded systems

While both roles involve hardware and software skills, Fpga Embedded System Engineers focus on FPGA hardware design and embedded systems integration, whereas DSP Engineers specialize in developing algorithms for signal processing. Both roles often collaborate but serve different technical needs within similar industries.

What are popular job titles related to Fpga Embedded System Engineer jobs in Kentucky? For Fpga Embedded System Engineer jobs in Kentucky, the most frequently searched job titles are:
What job categories do people searching Fpga Embedded System Engineer jobs in Kentucky look for? The top searched job categories for Fpga Embedded System Engineer jobs in Kentucky are:
What cities in Kentucky are hiring for Fpga Embedded System Engineer jobs? Cities in Kentucky with the most Fpga Embedded System Engineer job openings:
Infographic showing various Fpga Embedded System Engineer job openings in Kentucky as of June 2026, with employment types broken down into 96% Full Time, 2% Part Time, and 2% Contract. Highlights an 94% Physical, 3% Hybrid, and 3% Remote job distribution.

R&D Embedded Design Engineer

Car Keys Express

Louisville, KY • On-site

Full-time

Re-posted 12 days ago


Car Keys Express rating

4.9

Company rating: 4.9 out of 10

Based on 6 frontline employees who took The Breakroom Quiz


Job description

R amp;D Embedded Design Engineer
Purpose
Deliver advanced engineering solutions through the integration of mixed-signal, microprocessor-based, and FPGA-based hardware subsystems. The role also includes significant involvement in algorithm development and encryption research.
Summary
A significant portion of the employee’s role will involve researching new technologies and applying those insights to the development of new products. They bring a strong engineering background and the ability to address complex problems quickly and effectively. As an Embedded Design Engineer, they are expected to have experience across a wide range of microprocessor-based development platforms, with particular expertise in resource-constrained systems where efficiency and optimization are critical.
Duties Critical to Success
  • Perform R amp;D tasks which lead to the development of future products or embedded subsystems.
  • Development of desktop or mobile applications to perform engineering analysis or develop customized production tools.
  • Develop desktop and mobile applications for engineering analysis and customized production tools.
  • Train and mentor employees in reverse engineering techniques and procedures.
  • Apply reverse engineering tools and methods to identify key functions and processes in integrated circuits, board-level systems, and embedded software.
  • Contribute to team-based problem solving and project planning.
Knowledge, Skills and Abilities Critical to Success
  • Design, analysis, and implementation of communications protocols in Radio Frequency (RF) devices, and/or common automotive data buses
  • Schematic capture and PCB layout for internal development boards and production products
  • Experience with reverse engineering processes and procedures
  • Software development experience for embedded systems
  • Experience in serial communication protocols e.g., I2C, SPI, UART etc.
  • Knowledge of cryptography, including stream and block ciphers, hashing algorithms, and pseudo-random number generation
  • Logic design experience, preferably with familiarity in VHDL or Verilog modeling
  • Ability to design and develop test/programming fixtures, including necessary hardware/software interfaces
  • Familiarity with applying artificial intelligence (AI) techniques to improve embedded system efficiency and optimize development processes is desirable
Deliverables
  • RKE/PKE systems for a wide range of vehicles, contributing to 1-2 product designs per year
  • Contributions to product-related patents
  • Hardware or software tools for advanced signal or behavioral analysis using analog and/or digital subsystems
  • Production test fixtures to support our internal production line as needed
Relations to supervisory and subordinating roles within the company
Immediate Supervisor: R amp;D Manager or NPI Manager
Direct Reports: None
Job specifications, standards, and requirements
  • BS/MS degrees in electrical, electronics, or computer engineering. At least 3-4 years of industry experience that demonstrates success delivering embedded projects
  • Mixed-signal design and analysis skills (board or ASIC level)
  • Experience in qualifying products through all phases of FCC certification
  • C, C++, Python, or Labview software development experience
  • Experience on a broad range of computing platforms
  • Excellent teamwork and communication skills
Essential Job Functions (ADA-Compliant)
The following essential job functions are fundamental to the successful performance of the Embedded Design Engineer role and cannot be eliminated or significantly modified without changing the nature of the position:
Physical Requirements
  • Ability to sit, stand, walk, or remain in a stationary position for extended periods as required by job tasks
  • Adequate hearing and vision (corrected or uncorrected) to perform job duties, including reading printed materials, viewing screens, communicating via telephone or computer, and understanding verbal communication in various settings
  • Adequate vision, including close-up work, to inspect small components and read detailed instructions
  • Sufficient auditory capacity to follow verbal instructions and hear alerts from production equipment
  • Vision abilities required include close, distance, color vision, depth perception, and the ability to adjust focus
  • Capacity for peripheral vision and depth perception to safely navigate workspaces
  • Manual dexterity and coordination sufficient for typing, data entry, and computer use
  • Manual dexterity to handle small parts, hand tools, and assembly fixtures in a safe and efficient manner
  • Manual dexterity to work with delicate electronic components, small tools, and precision devices requiring fine motor skills
  • Ability to use and wear personal protective equipment (PPE) as required by the work environment
  • Ability to operate lab equipment as needed for purposes such as prototype testing and quality assurance
  • Ability to speak clearly and be understood to convey instructions and exchange information
  • Ability to communicate clearly and professionally, both verbally and in writing, with individuals and groups in person, via virtual meetings, and over the phone
Work Environment
  • Ability to travel to various locations, including client sites, field locations, or training venues
  • Capacity to work in diverse environments, which may include office settings, manufacturing or production areas, outdoor locations, or client facilities, sometimes with varying temperatures, noise levels, or exposure to dust, fumes, or chemicals

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