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Skill set: Functional Safety, FTA, DFMEA Domain knowledge: ISO 26262 Parts 2, 3, 4, 5, 6, 8 and 9. Automotive domain experience preferred. Job Description: Roles & Responsibilities: 1. Drive and support functional safety activities throughout the product development lifecycle, ensuring compliance with ISO 26262. 2.Develop and maintain functional safety management plans and processes for automotive E/E systems. 3.Lead Hazard Analysis and Risk Assessments (HARA) to identify safety goals and ASILs. 4.Define and develop Functional Safety Concepts (FSC) and Technical Safety Concepts (TSC). 5.Derive and allocate functional and technical safety requirements to system and software architectures. 6.Perform safety analyses such as FMEA, FTA, and FMEDA at various levels of abstraction. 7.Collaborate with cross-functional engineering teams (system, hardware, software, test) to implement and verify safety mechanisms. 8.Support safety verification and validation activities to ensure the achievement of safety goals and the sufficiency of risk-reducing measures. 9.Contribute to safety cases and safety assessments to demonstrate functional safety compliance. Must have: Good communication skills Good problem-solving ability Proven experience working with ISO26262 Part 2, 3 & 4 development. Minimum 4 years’ experience working with the ISO 26262 product development lifecycle with focus on Parts 4, 5 & 6 development. Proven experience in performing HARA. Proven experience in deriving safety requirements Experience with modelling tools like Medini. Proven experience with developing ISO 26262 workproducts. Proven experience related to Automotive Embedded Software development. Proven experience in performing safety-oriented analysis such as software FTA, DFMEA and DFA. Experience in general automotive ECUs, components, features, and operations to work with safety critical systems.
Job Summary We are seeking a skilled Robotic Simulation professional to join our Manufacturing team. This role will focus on the simulation and optimization of robotic processes within our manufacturing environment. The ideal candidate will possess a strong understanding of robotic principles, simulation techniques, and manufacturing processes. Key Responsibilities This role will be responsible for a range of tasks related to robotic simulation, including the creation of simulation reports, program generation and optimization, and ensuring robot safety. The role will also require independent work and coordination with cross-functional teams to finalize layouts and validate tooling. Required Skills & Qualifications BIW Simulation : Demonstrated proficiency in simulating Body-in-White (BIW) processes using simulation software. BIW Manufacturing Processes : A thorough understanding of BIW manufacturing processes and their impact on robotic operations. Cell Building : Experience in the design and simulation of robotic workcells. Tool Validation : Ability to validate tooling designs through simulation to ensure optimal robotic performance. Robot Reachability : Expertise in analyzing robot reachability to ensure efficient and effective robotic operations. Robot Accessibility Analysis : Ability to perform accessibility analysis to identify and mitigate potential limitations in robotic workspace. Collision-Free Robotic Operations : Ability to design and simulate collision-free robotic operations. Cycle-Time Creation : Experience in creating accurate and efficient cycle times for robotic processes. Cycle-Time Optimization : Ability to optimize cycle times through simulation and process adjustments. Layout Finalization : Experience in finalizing layouts to ensure optimal robotic performance and safety. Robot Safety Concepts : A strong understanding of robot safety concepts and their application in manufacturing environments. Robot Safety Devices : Familiarity with various robot safety devices and their implementation. OLP : Experience with OLP (Offline Programming) software. Program Generation : Ability to generate robotic programs based on simulation results. Program Optimization : Ability to optimize robotic programs for efficiency and performance. Simulation Reports : Ability to create comprehensive and informative simulation reports. Documentation : Strong documentation skills to clearly communicate simulation results and findings. Independent Work : Ability to work independently and manage time effectively. Coordination with Cross-Functional Teams : Excellent communication and collaboration skills to work effectively with cross-functional teams. Analytical Skills : Strong analytical skills to interpret simulation data and identify areas for improvement. Problem-Solving Skills : Proven problem-solving skills to address challenges and implement solutions. Communication Skills : Excellent written and verbal communication skills to effectively communicate with stakeholders. Experience Required: The ideal candidate will have 2 - 6 years of experience in a related field. This level of experience indicates a level of proficiency and the ability to work with minimal supervision. What We Offer Salary:
Job Summary We are seeking a skilled and motivated Virtual Analysis Engineer L2 Safety to join our team in Chennai. This role will focus on performing virtual analysis and simulations to ensure the safety and performance of our automotive products. The ideal candidate will possess a strong understanding of CAE analysis techniques and a passion for contributing to a safe and reliable vehicle design. Key Responsibilities This role will involve a range of responsibilities centered around virtual analysis and safety assessments. You will be expected to contribute to the development and validation of safety models and simulations, ensuring adherence to industry standards and performance requirements. Collaboration with cross-functional teams will be essential to integrate analysis results into the overall design process. Required Skills & Qualifications Education: A Bachelor's degree (B.E, B.Tech) or Master's degree (M.E, M.Tech) in Mechanical, or Automobile Engineering is required. Experience: 3-7 years of experience in virtual analysis, specifically within the automotive industry, is expected. This level of experience indicates a proficiency in applying CAE techniques to solve complex engineering problems and a demonstrated ability to work independently and as part of a team. CAE Analysis: Demonstrated expertise in CAE analysis , including finite element analysis (FEA) and crash simulations. Safety FE Models: Proficiency in developing and utilizing Safety FE Models to assess vehicle safety performance. Sled Simulations: Experience with Sled simulations to evaluate crashworthiness and impact resistance. Full Vehicle Occupant Simulations: Ability to conduct Full Vehicle Occupant Simulations to assess occupant safety during crash events. Software Proficiency: Strong working knowledge of ANSA and LS-DYNA for performing finite element analysis and crash simulations. Engineering Fundamentals: Solid foundation in Classical Mechanics , Applied Mechanics , and Strength of Materials . Human Body Model (HBM): Familiarity with Human Body Model (HBM) techniques for simulating occupant response in crash scenarios. Scripting: Ability to utilize Scripting to automate analysis tasks and improve efficiency. AI Tools: Experience with AI tools for data analysis and optimization. Materials Knowledge: Understanding of the behavior of Metals and Composite parts under various loading conditions. Failure Analysis: Ability to perform Failure analysis to identify potential weaknesses in vehicle designs. Cross-Functional Collaboration: Ability to effectively collaborate with Cross-functional performance requirements teams to ensure alignment on safety goals. Design Proposals: Ability to contribute to Design proposals and provide feedback based on analysis results. Communication Skills: Excellent Communication skills , both written and verbal, to effectively communicate technical findings to stakeholders. Presentation Skills: Strong Presentation skills to clearly and concisely present analysis results. Analytical Skills: Exceptional Analytical Skills to interpret data and draw meaningful conclusions. Problem-Solving Skills: Demonstrated Problem-Solving Skills to identify and resolve complex engineering challenges. Teamwork: Ability to work effectively as part of a Teamwork environment. Personal Attributes: A Positive Attitude and a strong Learning aptitude are essential. What We Offer Salary:
Job Summary We are seeking an experienced EBOX HIL Test Engineer to join our team in the Automotive industry, located in Chennai . The ideal candidate will have a strong background in electrical engineering and experience with various testing tools and systems. Key Responsibilities The EBOX HIL Test Engineer will be responsible for testing and validating EBOX functionality, as well as working with various tools and systems such as MicroNova HIL systems , ECUTEST , and Vector toolchains including CANoe and CANape . The engineer will also be involved in Technical Safety Requirements (TSR) validation and UDS diagnostics . Required Skills & Qualifications The candidate should have a Bachelor’s or Master’s degree in Electrical Engineering , Mechatronics , Power Electronics , or a related field. The ideal candidate will have 5 - 10 years of experience and possess skills in: ISO-SPI MicroNova HIL systems ECUTEST Technical Safety Requirements (TSR) validation BMS Expertise EBOX Functionality Contactors Pyrotechnic Fuses Current Sensors HV Distribution MicroNova (NovaCarts) Vector toolchains (CANoe, CANape) ECU-TEST CAN-FD UDS diagnostics ISO 26262 Automated test sequence generation Analytical Skills Problem-Solving Skills Communication Skills What We Offer We offer a challenging role in a dynamic industry, with opportunities for growth and development.
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