REQ ID: 132464
JOB TITLE: Energy System Engineer - HV Battery
LOCATION: Budapest
Reimagine the future of modern luxury at JLR Hungary. Here you'll find roles from technical to supply chain. You'll collaborate with global teams across multiple sites and work with cutting-edge innovations to deliver extraordinary experiences. Your work will directly shape the next generation of our iconic brands. Come, create an exceptional future.
THE OPPORTUNITY
JLR Energy Platform is a place to grow your experience, knowledge and capability. We are on an exciting transformation journey to continuously improve and deliver engineering integrity, quality, collaboration, diversity and inclusion.
This is an exciting time to become part of JLR history as we shape our future electrified portfolio and deliver the Energy Platform Core through modular, scalable and reusable system architectures that can be deployed across multiple vehicle programmes.
This role is responsible for the development of HV Battery System architectures, requirements, models and validation artefacts using modern Systems Engineering and MBSE methodologies. Working within the Energy Platform organisation, the role supports the definition and deployment of battery technologies, system strategies, compliance requirements and future energy storage solutions across JLR's Electrified Propulsion portfolio.
The position operates across Energy Storage, Charging, ESMS, HV Distribution, Thermal Systems and Vehicle Architecture teams to ensure HV Battery systems are performant, safe, compliant, reusable and fully integrated within the wider vehicle platform.
As a key member of the Energy Storage Core team, this role contributes to the development of future battery technologies, battery architectures, compliance strategies and performance targets that deliver outstanding customer attributes whilst meeting the evolving technical, commercial and regulatory needs of global markets
WHAT YOU WILL DO
- Develop HV Battery System architectures, requirements and behavioural models using Systems Engineering and MBSE methodologies.
- Translate vehicle and feature requirements into Battery System requirements, logical architectures, physical architectures and validation artefacts.
- Assess technical constraints, dependencies and opportunities to optimise battery system performance, safety, durability, usable battery energy (UBE) and vehicle integration.
- Develop and maintain battery system requirements, test methods and validation strategies, ensuring complete traceability from requirement to verification.
- Support the development of battery concepts and strategies covering energy storage, battery management, thermal management, electrical protection, charging integration and functional safety.
- Generate and maintain Core System artefacts including SRDs, SAADs, interface definitions, functional architectures and system documentation.
- Develop battery architectures compatible with BEV and PHEV platforms, ensuring alignment between cell technology, battery management systems, cooling systems, enclosures, charging systems and HV electrical architectures.
- Develop validation methods and test cases covering performance, durability, ageing, degradation, thermal behaviour, fault handling and customer usage conditions across all battery functions.
- Analyse, interpret and deploy global battery standards, REESS legislation, market requirements, battery regulations and emerging regulatory changes into Energy Storage Core requirements and architectures.
- Support compliance activities relating to battery legislation, homologation, battery passport requirements, sustainability regulations, EMC legislation, electrical safety and Functional Safety objectives.
- Contribute to battery technology roadmaps by evaluating emerging cell technologies, battery architectures, safety concepts, thermal management approaches and future market trends.
- Support Design Authority activities by preparing technical evidence, architecture proposals and system recommendations.
- Work closely with Charging, ESMS, HV Distribution, Thermal Systems and Vehicle Architecture teams to resolve technical issues and architectural dependencies.
- Support issue resolution and change management activities using structured engineering approaches including AIMS, 8D and FMEA methodologies.
- Maintain Systems Engineering documentation and configuration management records to support traceability, compliance and engineering quality objectives.
- Support supplier engagement, technical reviews and requirement clarification across battery cells, BMS, cooling systems, electrical hardware and enclosure technologies.
- Capture lessons learnt and continuously improve battery architectures, engineering processes and validation methodologies across future programmes.
WHAT YOU WILL NEED
Essential:
- Degree in Mechatronics, Electrical Engineering, Electronics Engineering, Systems Engineering, Battery Technologies, Chemistry or a related engineering discipline.
- Strong understanding of HV Battery Systems, Electrified Propulsion architectures and Energy Storage technologies.
- Strong understanding of battery physics including cell technologies, battery ageing, degradation mechanisms, thermal propagation, electrical protection and energy storage performance.
- Experience developing system requirements, logical architectures and physical architectures for complex engineering systems.
- Strong requirements authoring, decomposition and validation development skills.
- Experience applying Systems Engineering and MBSE methodologies to complex products and technologies.
- Good understanding of Battery Management Systems (BMS), battery sensing architectures, control systems, diagnostics and performance management.
- Knowledge of battery thermal management systems, cooling technologies and thermal performance optimisation.
- Understanding of usable battery energy (UBE), battery performance targets, state estimation strategies and customer attribute delivery.
- Knowledge of global battery regulations and standards including REESS legislation, homologation requirements and battery compliance frameworks.
- Familiarity with battery safety requirements including thermal propagation, hazardous energy management, electrical safety and ISO 26262 Functional Safety principles.
- Understanding of EMC principles, electrical compatibility and HV battery integration requirements.
- Experience integrating complex multi-ECU systems within automotive, aerospace or transportation applications.
- Strong analytical problem-solving, technical communication and stakeholder engagement skills.
- Ability to manage technical delivery against programme timing, quality and functionality objectives.
- Experience using FMEA, Fault Trees and structured problem-solving methodologies.
Desired:
- Experience using MSOSA and MBSE toolsets.
- Experience creating FFA, LAD, SAAD and SRD architectural artefacts.
- Knowledge of SysML and model-based architecture development.
- Experience with MATLAB/Simulink, 1D system modelling, HiL, SiL and vehicle-level validation environments.
- Familiarity with AIMS, APQP, TVM and Design Release processes.
- Experience interpreting battery legislation and standards across multiple global markets.
- Knowledge of EU Battery Regulation, Battery Passport concepts and evolving sustainability requirements.
- Understanding of advanced cell technologies, Cell-to-Pack architectures and future battery system trends.
- Experience working with battery suppliers and technology partners.
- Product development experience from concept through to production.
THE BENEFITS
This role is rewarding in more ways than one. On top of our core offering, you’ll do extraordinary work with amazing people. In addition, you can expect the following benefits:
- Join us for the next level of your career and help develop solutions that shape the future of cars
- Be part of an international, inclusive, and open-minded team where you have actual influence on the processes
- See the product you’re working on come to life from testing all the way to production
- Work flexibly with high percentage of home office or from our award-winning office
- Competitive salary and performance related bonus scheme
- Health and life insurance and cafeteria package
- Various company programs such as charity events or our regular board game club
Creating Modern Luxury requires a modern approach to work. At JLR, hybrid working is a voluntary, non-contractual arrangement providing employees more choice and flexibility around how, when and where they work.
Some roles require more on-site work, but details of this can be discussed with the hiring manager during the interview stage.
We work hard to nurture a culture that is inclusive and welcoming to all. We understand candidates may require reasonable adjustments during the recruitment process. Please discuss these with your recruiter so we can accommodate your needs.
Applicants from all backgrounds are welcome. If you’re unsure that you meet the full criteria of a role– but you're interested in where it could take you – we still encourage you to apply.
We believe in people’s ability to grow and develop within their role – it’s what makes living the exceptional with soul possible.
JLR is committed to equal opportunity for all.
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