The Lean Startup Methodology: A Catalyst for Semiconductor Innovation

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Vydáno v:PQDT - Global (2025)
Hlavní autor: da Silva Machado Rodrigues, Inês Filipa
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ProQuest Dissertations & Theses
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100 1 |a da Silva Machado Rodrigues, Inês Filipa 
245 1 |a The Lean Startup Methodology: A Catalyst for Semiconductor Innovation 
260 |b ProQuest Dissertations & Theses  |c 2025 
513 |a Dissertation/Thesis 
520 3 |a This thesis investigates the integration of Lean Startup principles into the semiconductor lithography industry’s research and development (R&D) procedures. This field has historically relied on highly structured models that emphasize predictability, traceability, and risk mitigation, such as the V-Model and Technology Readiness Levels (TRLs). However, time-to-market pressures, technological uncertainty, and increasing market volatility are forcing businesses to take more flexible and iterative approaches.This study identifies key issues with current R&D practices through a conceptual and simulation-based analysis, such as the high cost and complexity of physical prototyping, limited early customer involvement, and delayed feedback loops. It assesses the selective use of Lean Startup techniques in early-stage, high-uncertainty development phases, including validated learning, rapid experimentation, and MVP development.The results give credence to the application of a hybrid development framework that blends the rigor of conventional models with the flexibility of Lean Startup. While preserving compliance and system-level dependability in later phases, this dual-track approach allows for quicker innovation and risk reduction in early development.The thesis ends with actionable implementation suggestions, such as purchasing simulation tools, implementing dual governance structures, launching cultural transformation programs, and updating performance metrics to reflect customer validation and learning. The study’s limitations are noted, and recommendations are made for further research in the areas of executive engagement, quantitative validation, and wider industry application. All things considered, the suggested framework encourages more flexible, client-focused innovation in hardware-intensive industries like semiconductor lithography. 
653 |a Simulation 
653 |a Corporate culture 
653 |a Integrated circuits 
653 |a Sustainable development 
653 |a Teams 
653 |a Semiconductors 
653 |a Computer aided software engineering 
653 |a Customer feedback 
653 |a Startups 
653 |a Dissertations & theses 
653 |a Literature reviews 
653 |a Objectives 
653 |a Research & development--R&D 
653 |a Transistors 
653 |a Regulated industries 
653 |a Product development 
653 |a Efficiency 
653 |a Comparative analysis 
653 |a Electrical engineering 
653 |a Organizational behavior 
653 |a Computer engineering 
773 0 |t PQDT - Global  |g (2025) 
786 0 |d ProQuest  |t ProQuest Dissertations & Theses Global 
856 4 1 |3 Citation/Abstract  |u https://www.proquest.com/docview/3288188065/abstract/embedded/L8HZQI7Z43R0LA5T?source=fedsrch 
856 4 0 |3 Full Text - PDF  |u https://www.proquest.com/docview/3288188065/fulltextPDF/embedded/L8HZQI7Z43R0LA5T?source=fedsrch