What you'll do:
This position is to be part of a team supporting driveline software development solutions for vehicle embedded applications, specially on higher layers of software development, requiring Matlab skills. As a member of the team, will work closely with Senior Software Engineers and System Engineering to help define requirements, contribute to definition of hardware designs, generate controls algorithm solutions and models, define test plans and perform validation testing to confirm that system and functional requirements are met. In this role, you will work with your engineering manager to estimate development, resources, and timing to achieve the desired results. Achieving the desired results will require individual contributions as well as contributions attained as part of a team. Will work closely supporting engineers and global team members located in the U.S. and other regions.
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"A. Support vehicle software modeling and simulation activities to predict performance and impact due to hardware variability. Support prototype and production OEM vehicle integration and development efforts from the driveline controls perspective (e.g., configuration, calibration and drivability). Work with engine/electric motor & vehicle OEMs to support the development & validation of system functionality & optimal performance with Eaton Automated Transmissions to Eaton & customer requirements/specifications.
B. Communicate Eaton transmission interface requirements to engine manufacturers & vehicle OEMs and assist in development and integration of optimum engine/motor/transmission performance.
C. Support performance guidelines, requirements, and specifications for vehicle OEMs, engine OEMs, and transmission product teams.
D. Provide/communicate to engine & transmission organizations with approval/rejection disposition of transmission compatibility with engine or vehicle versus performance requirements or customer expectations.
E. Identify root cause and corrective action associated with the engine or vehicle AMT-integration
F. Develop controls strategies and model architecture design, with the technical experts, to achieve solutions. Use simulation tools to efficiently perform design iterations and optimization. Verify solutions created by you or other team members through simulation, sub-system and vehicle level testing.
G. Work in a multifunctional team developing software for embbeded systems. Entensive work in C/C++.
H. Support guidelines, requirements, and specifications for engine OEMs, truck OEMs, & transmission product teams.
I. Make use of engineering tools such as DFMEA,DFSS, DFM/DFA and Concurrent Engineering in order to attend organizational target of a flawless launch.
J. Analyze customer technical requirements and standards and adequately address eventual necessary changes to the engineering center responsible for the respective transmission platform and/or to Manufacturing, SCM, Quality, etc.
K. Build embeded software for eaton new systems in development. Including new actuators and electronics system."
Qualifications:
Mandatory
- Engineering in progress (ending in 2025) or complete engineering
- Experience with C programming language
- Experience with microcontroller programming
- Intermediate english (conversation, writing and reading)
Desirable:
- Experience in automotive product engineering and embedded software development
Skills:
A. Six Sigma tools knowledge for product development;
B. Expertise on MatLab/Simulink and knowledge on CAN, CANalyzer and SAE J1939 communication standard, CANape;
C. Knowledge on new product development process and tools (DFMEA, DVP, DAP, Change Management, Concurrent Engineering, Design for Assembly);
D. Demonstrated strong problem solving and root cause analysis skills;
E. ISO 26262, ASpice, AUTOSAR and ISO IATF standards awareness;
F. Automotive software development skills:
• C++ programming language,
• Analog to digital conversion (ADC),
• Solenoid diagnostics,
• Real-time operating systems,
• Experience in automotive or commercial vehicle dynamics, vehicle powertrain, or chassis control systems.
• Understanding of powertrain or chassis control principles, components, and system variants.
• ECU Calibration development
• Awareness of HILS environment like dSPACE, ETAS.
• Experience with Complex Device Drivers & BSW, MCAL drivers
"A. Problem solving, including failure analysis;
B. Advanced English language skill;
C. Interpersonal communication skills and professional presence.
D. The ideal candidate is a self-starter / self-motivated, strong communication skills, team player, adaptive, and results oriented."