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Build component-category strategies, analyse total cost, evaluate suppliers, manage sourcing risks, negotiate effectively and improve supplier performance across the two-wheeler value chain.
Interpret engineering drawings, understand sheet-metal and injection-moulding processes, evaluate prototype parts, inspect components against drawing requirements, identify manufacturing defects and recommend corrective actions.
Apply geometric controls to different feature types, interpret material and datum boundary modifiers, calculate virtual and resultant conditions, evaluate fastener assemblies, apply composite position and profile controls, and align design requirements with manufacturing and inspection.
Evaluate vehicles through the customer lens, identify premium-perception attributes, connect product observations with manufacturing controls, conduct product-process-system audits and build a roadmap for consistent premium execution.
Apply the five phases of APQP, develop a functional timing plan, prepare process flowcharts and process instructions, create control plans, and compile a structured PPAP submission for a case-study product.
Participants will develop the ability to analyze combustion behavior in internal combustion engines using engineering data and diagnostic techniques. They will learn how to interpret combustion parameters, optimize air–fuel mixing, and apply advanced practices that improve engine efficiency, emissions performance, and overall powertrain development outcomes.
Participants will gain the ability to understand BS-VI emission regulations for three-wheelers, interpret emission testing results, and support certification and compliance management activities during vehicle development and approval.
Participants will gain the ability to understand BS-VI emission regulations, support emission testing programs, evaluate compliance results, and contribute to vehicle certification and regulatory approval processes.
Participants will gain the ability to understand engine electronic architectures, diagnose EMS faults using professional diagnostic tools, and support compliance with emission and safety regulations.
Participants will gain the ability to understand RDE regulatory requirements, design compliant testing strategies, interpret emissions measurement data, and support vehicle certification and regulatory compliance activities.
Participants will gain the capability to interpret VDA 6.x requirements, prepare for process and system audits, evaluate manufacturing processes using VDA methodologies, and implement quality improvement actions that meet German OEM supplier compliance expectations.
Participants will gain the ability to understand ASPICE framework structure, apply software development process standards in automotive control systems, align engineering practices with ASPICE capability levels, and support readiness for ASPICE process assessments.
Participants will develop the ability to align supplier operations with OEM requirements and regulatory frameworks. They will learn how to manage supplier compliance, coordinate program timelines with OEM partners, and strengthen supply chain collaboration to support successful product launches and uninterrupted component supply.
English
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