Senior Engine Code Engineer

Overview

On Site
Full Time

Skills

Value Engineering
Innovation
ICE
Embedded Software
Functional Analysis
Energy
Evaluation
Design Review
Product Development
Reporting
Data Analysis
Scripting
Forecasting
Continuous Improvement
Science
Sensors
Embedded Systems
Computer Hardware
Modeling
Testing
Electrical Engineering
Mechanical Engineering
Aerospace
Computer Science
Writing
Python
MATLAB
Simulink
Dynamics
Test Methods
Workflow
Real-time
Machine Learning (ML)
Predictive Analytics
Analytical Skill
Problem Solving
Conflict Resolution
Communication
FOCUS
Law

Job Details

We are Generac, a leading energy technology company committed to powering a smarter world.

Over the 60 plus years of Generac's history, we've been dedicated to energy innovation. From creating the home standby generator market category, to our current evolution into an energy technology solutions company, we continue to push new boundaries.

The Senior Engine Code Engineer plays an important role in advancing the design and performance of internal combustion engines (ICE), through code creation, embedded software, and code validation. This position leverages CAN, ATI Vision, and Matlab/Simulink tools to optimize system behavior, improve engine control, and increase engine performance across a range of gaseous fueled applications.

Essential Duties and Responsibilities:
  • Create system-level engine code using Matlab/Simulink to support engine and generator design and development.
  • Conduct simulated and functional analyses to evaluate engine performance of mechanical and energy systems.
  • Conduct system evaluation and testing to aid in optimizing an engine's steady state and transient performance.
  • Interpret testing results and collaborates with cross-functional teams through code design reviews and technical discussions to guide product development.
  • Contribute to the development of software and code analysis best practices to improve efficiency and accuracy.
  • Document code objectives, methods, and results using standardized reporting formats.
  • Apply data analysis techniques, including Matlab/Simulink modeling and Python-based scripting and machine learning, to support code performance forecasting.
  • Stay informed on relevant technologies, tools, and industry trends to support continuous improvement.

Minimum Qualifications:
  • Bachelor of Science Degree in Mechanical or Electrical Engineering or related discipline
  • 5+ years of relevant work experience

Knowledge Skills and Abilities:
  • Proficiency in applying Matlab/Simulink to internal combustion engine related systems, including steady state, transient, fault codes, SPNs, SAE J1939 CAN networks, sensor integration, and embedded systems.
  • Experienced in automotive standards.
  • Experience with co-simulation environments, including Software-in-the-Loop (SiL) and Hardware-in-the-Loop (HiL).
  • Familiarity with machine learning and predictive analytics techniques applied to engine performance and emissions modeling.
  • Familiarity with generator design.
  • Strong analytical and problem-solving skills, with a deep understanding of internal combustion engine design, operation, and testing.
  • Strong written and verbal communication skills with the ability to clearly interpret and present complex simulation results to technical and non-technical audiences.

Preferred Qualifications:

  • Master's degree in Electrical Engineering, Mechanical Engineering, Aerospace Engineering, Computer Science, or a related field of study.
  • Advanced engine and engine system code writing in Matlab/Simulink.
  • Advanced experience applying MATLAB/Simulink and Python to internal combustion engine design.
  • Advanced experience using ATI Vision to set calibrations in internal combustion engines.
  • Advanced experience in applying MATLAB/Simulink and Python in engineering analysis and simulation.
  • Advanced proficiency in applying Matlab/Simulink code to complex propulsion systems, with demonstrated success in optimizing transients, steady state, and overall performance.
  • Deep expertise in internal combustion engine control code, operational dynamics, and advanced testing methodologies.
  • Extensive experience designing and executing co-simulation workflows, including SiL and HiL integration for real-time system validation.
  • Exceptional ability to synthesize and present complex code insights to diverse technical and non-technical stakeholders, influencing design decisions.
  • Proficient in applying machine learning and advanced predictive analytics to optimize engine performance with experience developing custom code.
  • Superior analytical acumen and strategic problem-solving capabilities, with a track record of delivering high-impact engineering solutions.
  • Excellent written and verbal communication skills with the ability to clearly interpret and present complex simulation results to technical and non-technical audiences.
  • Familiarity with gaseous fuel systems for internal combustion engines.

Physical Demands: While performing the duties of this job, the employee is regularly required to talk and hear; and use hands to manipulate objects or controls. The employee is regularly required to stand and walk. On occasion the incumbent may be required to stoop, bend or reach above the shoulders. The employee must occasionally lift up to 25 - 50 pounds. Specific conditions of this job are typical of frequent and continuous computer-based work requiring periods of sitting, close vision and ability to adjust focus. Occasional travel.

"We are an equal opportunity employer and all qualified applicants will receive consideration for employment without regard to race, color, religion, sex, sexual orientation, national origin, disability status, protected veteran status, or any other characteristic protected by law."
Employers have access to artificial intelligence language tools (“AI”) that help generate and enhance job descriptions and AI may have been used to create this description. The position description has been reviewed for accuracy and Dice believes it to correctly reflect the job opportunity.