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Fundamentals of Solid-State Lighting: LEDs, OLEDs, and Their Applications in Illumination and Displays PDF - فينود كومار خانا
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Fundamentals of Solid-State Lighting by Vinod Kumar Khanna
Fundamentals of Solid-State Lighting: LEDs, OLEDs, and Their Applications in Illumination and Displays by Vinod Kumar Khanna is a comprehensive and technically detailed reference that explores the rapidly evolving world of solid-state lighting technologies. Published by CRC Press, this authoritative book provides an in-depth examination of LEDs, OLEDs, semiconductor lighting systems, and their growing role in modern illumination and display applications. The book is widely recognized as an important resource for engineers, researchers, students, and professionals involved in electronics, photonics, materials science, electrical engineering, and display technologies. (embs.org)
Solid-state lighting has transformed the global lighting industry by offering energy-efficient, durable, and environmentally friendly alternatives to traditional incandescent and fluorescent lighting systems. This book carefully explains the scientific principles behind these technologies while also connecting theory with practical engineering applications. Readers are introduced to the foundations of light generation in semiconductors, the structure and operation of inorganic LEDs, the chemistry and physics of OLEDs, thermal management challenges, device fabrication techniques, and smart lighting solutions used in modern industries. (Better World Books)
A Complete Guide to LEDs and OLED Technologies
One of the strongest aspects of this book is its broad yet highly organized coverage of the entire field of solid-state lighting. The text begins with the historical evolution of lighting technologies, allowing readers to understand how lighting systems progressed from traditional lamps to modern semiconductor-based illumination. It then develops a strong theoretical foundation in optics, photometry, radiometry, and color science before moving into advanced LED engineering concepts. (embs.org)
The book explores key technical concepts including:
- Semiconductor physics and electroluminescence
- Homojunction and heterojunction LEDs
- Surface-emitting and edge-emitting LEDs
- Light extraction efficiency
- LED packaging technologies
- Thermal management and reliability
- High-brightness LEDs (HBLEDs)
- White light generation techniques
- Phosphor materials for LEDs
- OLED structures and polymer LEDs
- Smart lighting systems and controls
- LED driving circuits and power electronics
These topics are presented with a balance of theoretical explanation and engineering practicality, making the book valuable both as an academic textbook and as a professional reference guide.
Strong Focus on Practical Applications
Unlike many purely theoretical semiconductor books, this work dedicates significant attention to real-world applications of LED and OLED technologies. The author discusses how solid-state lighting is used in:
- General indoor and outdoor illumination
- Automotive lighting systems
- Street lighting
- Display panels and digital screens
- AMOLED and PMOLED displays
- Flexible OLED technologies
- Medical and biomedical lighting
Optical communications
Smart and adaptive lighting systems
Horticultural lighting applications
This application-oriented approach makes the book especially useful for engineers and technology professionals seeking to understand not only how LEDs work, but also how they are integrated into modern commercial and industrial products. (embs.org)
Detailed Coverage of OLED Display Technology
The sections devoted to OLED technology are particularly valuable because college-level and professional resources on OLEDs are relatively limited compared to traditional semiconductor textbooks. The book explains the materials, device architectures, emission mechanisms, and display technologies behind OLED systems in a clear and methodical manner. Readers gain insight into both small-molecule OLEDs and polymer LEDs, including their advantages, limitations, manufacturing approaches, and future potential. (embs.org)
The discussion of OLED displays is highly relevant for readers interested in modern televisions, smartphones, wearable electronics, and flexible display technologies. Concepts such as active-matrix OLEDs (AMOLEDs), passive-matrix OLEDs (PMOLEDs), thin-film transistor backplanes, and RGB stacking methods are explained with technical depth suitable for advanced learners and industry professionals.
Engineering, Manufacturing, and Reliability Analysis
Another major strength of the book is its engineering-oriented treatment of manufacturing and reliability issues. Many lighting books focus mainly on optical performance, but this text also emphasizes production methods, fabrication technologies, packaging systems, and device reliability.
The author discusses:
Semiconductor material selection
Epitaxial growth techniques
Fabrication processes
Packaging methods
Heat dissipation challenges
Performance metrics
Failure mechanisms
Device lifetime considerations
This makes the book especially relevant for readers involved in semiconductor manufacturing, electronics packaging, optoelectronics design, and industrial product development. Thermal management and reliability analysis are presented as critical factors in determining the performance and lifespan of LED systems, which is essential knowledge for practical engineering work. (Better World Books)
Ideal Audience for This Book
This book is designed primarily for readers with technical or engineering backgrounds. It is especially suitable for:
Electrical engineering students
Electronics and communication engineers
Semiconductor researchers
- Display technology specialists
- Optoelectronics professionals
- Materials science researchers
Lighting designers and architects
Graduate students in photonics and applied physics
Although the book includes advanced technical material, its structured presentation and broad coverage also make it accessible to motivated readers seeking a deeper understanding of modern lighting technologies. Engineers transitioning into the LED or display industry will find it particularly useful as a foundational reference.
Why This Book Remains Important
Even years after publication, Fundamentals of Solid-State Lighting remains highly relevant because LED and OLED technologies continue to dominate innovation in energy-efficient lighting and display systems. The global shift toward sustainable lighting solutions, smart cities, low-power electronics, and advanced displays has only increased the importance of understanding solid-state lighting technologies.
The book offers readers a rare combination of semiconductor theory, practical engineering, display technology, manufacturing processes, and application-driven analysis within a single volume. Its multidisciplinary approach makes it valuable across academic research, industrial development, and professional engineering education. (Routledge)
An Essential Reference for Modern Lighting and Display Engineering
For anyone interested in LED engineering, OLED displays, semiconductor lighting systems, energy-efficient illumination, or advanced display technologies, this book provides a detailed and carefully structured learning experience. Its extensive coverage of both inorganic and organic lighting technologies, combined with practical insights into manufacturing and applications, makes it a significant reference work in the field of solid-state lighting.
Whether used as a university textbook, a professional engineering guide, or a technical reference for research and development, Fundamentals of Solid-State Lighting: LEDs, OLEDs, and Their Applications in Illumination and Displays stands as an authoritative resource for understanding one of the most important technological transformations in modern electronics and illumination systems.
فينود كومار خانا
ولد فينود كومار خانا في 25 نوفمبر 1952 في لكناو ، أوتار براديش ، الهند ، وهو عالم فخري في هندسة الإلكترونيات معهد البحوث ، بيلاني ، راجستان ، الهند ، وأستاذ فخري ، AcSIR (أكاديمية البحث العلمي والابتكاري) ، الهند. وهو كبير العلماء والرئيس السابق لمجموعة MEMS and Microsensors Group و CSIR-CEERI و Pilani وأستاذ في AcSIR. خلال فترة خدمته لأكثر من 34 عامًا في CSIR-CEERI ، بدءًا من أبريل 1980 ، عمل على العديد من مشاريع البحث والتطوير على أجهزة أشباه الموصلات (مقوم التيار العالي والجهد العالي ، ترانزستور انحراف التلفزيون عالي الجهد ، ترانزستور دارلينجتون للطاقة ، ثايرستور للتبديل السريع ، DMOSFET و IGBT) ، مقياس جرعات نيوترون ثنائي الصمام الثنائي ومقياس جرعات أشعة غاما PMOSFET ، ترانزستور تأثير المجال الحساس للأيونات (ISFET) ، مستشعر غاز مدمج في السخان الصغير ، محول طاقة بالموجات فوق الصوتية بالسعة MEMS (CMUT) ، و أجهزة MEMS الأخرى. كانت اهتماماته البحثية عبارة عن أجهزة استشعار دقيقة ومتناهية الصغر وأجهزة أشباه موصلات الطاقة. من عام 1977 إلى عام 1979 ، كان مساعد باحث في قسم الفيزياء بجامعة لكناو. تشمل مندوبات الدكتور خانا في الخارج جامعة جامعة دارمشتات للتكنولوجيا ، ألمانيا ، 1999 ؛ معهد كورت شواب للقياس وتكنولوجيا الاستشعار e.V. ، Meinsberg ، ألمانيا ، 2008 ؛ ومعهد الفيزياء الكيميائية ، نوفوسيبيرسك ، روسيا ، 2009. كما شارك وقدم أوراق بحثية في الاجتماع السنوي IEEE-IAS ، دنفر ، كولورادو ، الولايات المتحدة الأمريكية ، 1986. حصل الدكتور خانا على درجة الماجستير. حاصل على درجة في الفيزياء مع تخصص في الإلكترونيات من جامعة لكناو عام 1975 ، ودكتوراه. حصل على درجة البكالوريوس في الفيزياء من جامعة كوروكشيترا ، كوروكشيترا ، هاريانا ، في عام 1988 لعمله على مستشعر الرطوبة بأكسيد الألومنيوم ذي الأغشية الرقيقة. زميل في معهد مهندسي الإلكترونيات والاتصالات (IETE) بالهند ، وهو عضو مدى الحياة في جمعية الفيزياء الهندية (IPA) ، وجمعية أشباه الموصلات (SSI) ، والهند والرابطة التقنية الهندية الفرنسية. نشر الدكتور خانا تسعة كتب وستة فصول في كتب محررة و 181 بحثًا في المجلات الوطنية / الدولية ووقائع المؤتمرات. وهو حاصل على براءتي اختراع من الولايات المتحدة واثنتين من الهند.
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