197 Jobs on this page

    • The system analysis and specification of system requirements for an automated powertrain, such as an electric drive unit or a transmission with the customer are part of your area of responsibility.
    • You extend the modular FEV software architecture
    • You are responsible for the specification of functional requirements for software components and functions.
    • You create the specification models in Simulink/Targetlink
    • You also create the systems and functional test specifications
    • You are responsible for the review of the implemented MATLAB Simulink/TargetLink models as well as for the validation of the specified functionalities on the HiL/vehicle
    • You carry out the basic application of the functionalities with INCA or CANape
    • You take part in worldwide test drives lasting several weeks
    • You support the further development and improvement of processes and methods

  • You'll be placed within the battery system and safety engineering team at FEV which develops battery system solutions from cell and concept selection into series production.

    You'll have the opportunity to work on one of the most trending topics of the decade and autonomously deal with following topics:

    • Battery safety engineering in customer projects
    • Development of battery system safety concepts
    • Creation, discussion, and handling of safety requirement specifications
    • Pro-actively progress the technical safety solutions within the technical areas
    • Discussion of specific requirements and tests
    • Discussion with customers and suppliers
    • supports the development of software for our customers
    • builds up and transfers competence in the field of Software Defined Vehicles in the development team
    • takes over the technical lead and implementation of client projects
    • takes over technical lead of cross-functional project teams
    • is responsible for softwaredesign and -development on cutting edge high performance computers in automotive context
    • creates requirements analysis and specification for software on high-performance computers in the car
    • supports of Code- and designreviews
  • ■ Interface with customers to understand their specific requirements, provide technical support, and address any inquiries related to the model-based design software

    ■ Maintain project plans, monitor progress, and report status updates regularly to both internal stakeholders and customers

    ■ Collaborate with cross-functional teams to define project requirements and system specifications, ensuring alignment with customer needs and industry standards

    ■ Design, develop and validate advanced automotive control software models, ensuring they meet industry standards and performance requirements

    ■ Guide and oversee team members in the design, development and validation of automotive control software models

    ■ Troubleshoot and resolve complex technical issues that may arise during the software development and integration process

    ■ Contribute to continuous process improvement initiatives to enhance the efficiency and effectiveness of the model-based software design workflow

    • enjoys working in software application in the area of electrics/electronics (E/E) and OBD-1 of powertrain control units of conventional, hybridized and purely electric vehicles
    • would like to take over the application responsibility for functional scopes and/or vehicle variants
    • ensures the application maturity of the series (e.g. for milestone discussions)
    • coordinates tasks between all involved roles and parties (e.g. vehicle manager, test manager, etc.)
    • takes over reporting to our project management and our customers
    • Attends regular meetings with the project management to clarify open technical issues
    • You take over the integration of software for intelligent charging (ISO 15118) on a microcontroller
    • You conceptualize a test bench for testing the intelligent charging communication 
    • You develop interfaces for the integration of further components into the test bench
    • You integrate the test bench into an overall simulation environment
    • supports/leads procedural activities to define/adapt processes to different customer projects in the automotive sector
    • defines and adapts processes following ASPICE/ISO26262/ISO21434 guidelines
    • drives process improvement
    • implements efficient quality management in individual projects and participates in required project reviews and audits
    • defines, tracks and analyses metrics and KPIs to quantify the quality of project results
    • mentors less experienced colleagues
    • performs calibration, verification and testing in the vehicle or on HiL test benches
    • evaluates and documents test results
    • enjoys designing and implementing customer-specific test cases
    • takes charge of developing tools for evaluation in MATLAB
    • handles customer specific requests
    • works closely with clients and various teams
    • You will take over the development of a concept for the parameterized coupling of thermal interfaces on component and system level for battery electric vehicles
    • You analyze the requirements of the components to be used within thermal systems as well as optimal configurations for different use cases
    • You design a system parametrization based on existing grey-box models, which can represent modularity
    • You integrate the concept into an automated MPC build approach 
    • Develop and implement Data Loss Prevention (DLP) solution requirements and initiatives and define and support on our security roadmap.
    • Collaborate with internal and external stakeholders to understand the organizational needs around DLP, Insider Treat, Data-labeling and related topics.
    • Configure, upgrade, and maintain DLP tools within the organization's environment
    • Provide operational support for related Incidents, including process re-engineering, automation, and documentation.
    • Develop DLP incident response processes and procedures to enhance the organization's security posture.
    • Analyze event data, metrics, and escalation information to identify patterns and trends in high-risk controls. Proactively propose, develop, and implement enhancements to mitigate risks.

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