Advances in Green Electronics Technologies in 2023 / / Albert Sabban |
Autore | Sabban Albert |
Pubbl/distr/stampa | London, England : , : IntechOpen, , 2023 |
Descrizione fisica | 1 online resource (196 pages) |
Disciplina | 338.064 |
Soggetto topico |
Electronics
Technological innovations Sustainable development |
ISBN | 1-80356-834-8 |
Formato | Materiale a stampa ![]() |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto | Table of Contents -- 1. Introductory Chapter: Advances in Green Electronics Technologies in 2023 -- 2. Green Wearable Sensors for Medical, Energy Harvesting, Communication, and IoT Systems -- 3. Variable Renewable Energy: How the Energy Markets Rules Could Improve Electrical System Reliability -- 4. Management Methods of Energy Consumption Parameters Using IoT and Big Data -- 5. From Photovoltaic to Agri-Natural-Voltaic (ANaV) -- 6. Valorization of Forest Waste for the Production of Bio-oils for Biofuel and Biodiesel -- 7. Going Green in Ophthalmic Practice -- 8. Analysis of Rainwater Harvesting Method for Supply of Potable Water: A Case Study of Gosaba, South 24 Pargana, India -- 9. E-Waste Management in Different Countries: Strategies, Impacts, and Determinants. |
Record Nr. | UNINA-9910765540503321 |
Sabban Albert
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London, England : , : IntechOpen, , 2023 | ||
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Lo trovi qui: Univ. Federico II | ||
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Innovations in Indoor Positioning Systems (IPS) |
Autore | Sabban Albert |
Pubbl/distr/stampa | IntechOpen, 2024 |
Formato | Materiale a stampa ![]() |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Record Nr. | UNINA-9910978347403321 |
Sabban Albert
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IntechOpen, 2024 | ||
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Lo trovi qui: Univ. Federico II | ||
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Wideband RF technologies and antennas in microwave frequencies / / Dr. Albert Sabban |
Autore | Sabban Albert |
Pubbl/distr/stampa | Hoboken, New Jersey : , : Wiley, , 2016 |
Descrizione fisica | 1 online resource (464 p.) |
Disciplina | 621.381/3 |
Soggetto topico |
Microwave communication systems
Microwave receivers Microwave antennas Millimeter wave communication systems Broadband communication systems |
ISBN |
1-119-04865-6
1-119-04866-4 1-119-04864-8 |
Classificazione | TEC024000 |
Formato | Materiale a stampa ![]() |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
Intro; Title Page ; Copyright; Contents; Acknowledgments; Author Biography ; Preface; 1 Electromagnetic Wave Propagation and Applications; 2 ELECTROMAGNETIC THEORY AND TRANSMISSION LINES FOR RF DESIGNERS; 3 BASIC ANTENNAS FOR COMMUNICATION SYSTEMS; 4 MIC AND MMIC MICROWAVE AND MILLIMETER WAVE TECHNOLOGIES; 5 PRINTED ANTENNAS FOR WIRELESS COMMUNICATION SYSTEMS; 6 MIC AND MMIC MILLIMETER-WAVE RECEIVING CHANNEL MODULES; 7 INTEGRATED OUTDOOR UNIT FOR MILLIMETER-WAVE SATELLITE COMMUNICATION APPLICATIONS; 8 MIC AND MMIC INTEGRATED RF HEADS; 9 MIC AND MMIC COMPONENTS AND MODULES DESIGN
10 MICROELECTROMECHANICAL SYSTEMS (MEMS) TECHNOLOGY11 LOW-TEMPERATURE COFIRED CERAMIC (LTCC) TECHNOLOGY; 12 ADVANCED ANTENNA TECHNOLOGIES FOR COMMUNICATION SYSTEM; 13 Wearable Communication and Medical Systems; 14 RF Measurements; Index; EULA ; 1.1 Electromagnetic Spectrum; 1.2 Free-Space Propagation; 1.3 Friis Transmission Formula; 1.4 Link Budget Examples; 1.5 Noise; 1.6 Communication System Link Budget; 1.7 Path Loss; 1.9 Receivers: Definitions and Features; 1.10 Types of Radars; REFERENCES; 2.1 definitions; 2.2 electromagnetic waves; 2.3 TRANSMISSION LINES; 2.4 MATCHING TECHNIQUES 2.5 COAXIAL TRANSMISSION LINE2.6 MICROSTRIP LINE; 2.7 MATERIALS; 2.8 WAVEGUIDES; 2.9 CIRCULAR WAVEGUIDE; references; 3.1 INTRODUCTION TO ANTENNAS; 3.2 ANTENNA PARAMETERS; 3.3 DIPOLE ANTENNA; 3.4 BASIC APERTURE ANTENNAS; 3.5 HORN ANTENNAS; 3.6 ANTENNA ARRAYS FOR COMMUNICATION SYSTEMS; REFERENCES; 4.1 INTRODUCTION; 4.2 MICROWAVE INTEGRATED CIRCUITS MODULES; 4.4 MONOLITHIC MICROWAVE INTEGRATED CIRCUITS; 4.5 CONCLUSIONS; REFERENCES; 5.1 PRINTED ANTENNAS; 5.2 TWO LAYERS STACKED MICROSTRIP ANTENNAS; 5.3 STACKED MONOPULSE Ku BAND PATCH ANTENNA; 5.4 LOOP ANTENNAS; 5.5 WIRED LOOP ANTENNA 5.6 RADIATION PATTERN OF A LOOP ANTENNA NEAR A METAL SHEET5.7 PLANAR INVERTED-F ANTENNA; REFERENCES; 6.1 18-40 GHz COMPACT RF MODULES; 6.3 18-40 GHz Integrated Compact Switched Filter Bank Module; 6.4 FSU PERFORMANCE; 6.5 FSU DESIGN AND ANALYSIS; 6.6 FSU FABRICATION; 6.7 CONCLUSIONS; REFERENCES; 7.1 THE ODU DESCRIPTION; 7.2 THE LOW NOISE UNIT: LNB; 7.4 ISOLATION BETWEEN RECEIVING AND TRANSMITTING CHANNELS; 7.6 THE ODU MECHANICAL PACKAGE; 7.7 LOW NOISE AND LOW-COST K-BAND COMPACT RECEIVING CHANNEL FOR VSAT SATELLITE COMMUNICATION GROUND TERMINAL 7.8 KA-BAND INTEGRATED HIGH POWER AMPLIFIERS, SSPA, FOR VSAT SATELLITE COMMUNICATION GROUND TERMINAL7.9 CONCLUSIONS; REFERENCES; 8.1 INTEGRATED Ku-BAND AUTOMATIC TRACKING SYSTEM; 8.2 SUPER COMPACT X-BAND MONOPULSE TRANSCEIVER; REFERENCES; 9.1 INTRODUCTION; 9.3 POWER DIVIDERS AND COMBINERS; 9.4 RF AMPLIFIERS; 9.5 LINEARITY OF RF AMPLIFIERS AND ACTIVE DEVICES; 9.6 WIDEBAND PHASED ARRAY DIRECTION FINDING SYSTEM; 9.7 CONCLUSIONS; REFERENCES; 10.1 INTRODUCTION; 10.3 W-BAND MEMS DETECTION ARRAY; 10.4 ARRAY FABRICATION AND MEASUREMENT; 10.5 MUTUAL COUPLING EFFECTS BETWEEN PIXELS 10.6 MEMS BOW-TIE DIPOLE WITH BOLOMETER |
Record Nr. | UNINA-9910135031203321 |
Sabban Albert
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Hoboken, New Jersey : , : Wiley, , 2016 | ||
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Lo trovi qui: Univ. Federico II | ||
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Wideband RF technologies and antennas in microwave frequencies / / Dr. Albert Sabban |
Autore | Sabban Albert |
Pubbl/distr/stampa | Hoboken, New Jersey : , : Wiley, , 2016 |
Descrizione fisica | 1 online resource (464 p.) |
Disciplina | 621.381/3 |
Soggetto topico |
Microwave communication systems
Microwave receivers Microwave antennas Millimeter wave communication systems Broadband communication systems |
ISBN |
1-119-04865-6
1-119-04866-4 1-119-04864-8 |
Classificazione | TEC024000 |
Formato | Materiale a stampa ![]() |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
Intro; Title Page ; Copyright; Contents; Acknowledgments; Author Biography ; Preface; 1 Electromagnetic Wave Propagation and Applications; 2 ELECTROMAGNETIC THEORY AND TRANSMISSION LINES FOR RF DESIGNERS; 3 BASIC ANTENNAS FOR COMMUNICATION SYSTEMS; 4 MIC AND MMIC MICROWAVE AND MILLIMETER WAVE TECHNOLOGIES; 5 PRINTED ANTENNAS FOR WIRELESS COMMUNICATION SYSTEMS; 6 MIC AND MMIC MILLIMETER-WAVE RECEIVING CHANNEL MODULES; 7 INTEGRATED OUTDOOR UNIT FOR MILLIMETER-WAVE SATELLITE COMMUNICATION APPLICATIONS; 8 MIC AND MMIC INTEGRATED RF HEADS; 9 MIC AND MMIC COMPONENTS AND MODULES DESIGN
10 MICROELECTROMECHANICAL SYSTEMS (MEMS) TECHNOLOGY11 LOW-TEMPERATURE COFIRED CERAMIC (LTCC) TECHNOLOGY; 12 ADVANCED ANTENNA TECHNOLOGIES FOR COMMUNICATION SYSTEM; 13 Wearable Communication and Medical Systems; 14 RF Measurements; Index; EULA ; 1.1 Electromagnetic Spectrum; 1.2 Free-Space Propagation; 1.3 Friis Transmission Formula; 1.4 Link Budget Examples; 1.5 Noise; 1.6 Communication System Link Budget; 1.7 Path Loss; 1.9 Receivers: Definitions and Features; 1.10 Types of Radars; REFERENCES; 2.1 definitions; 2.2 electromagnetic waves; 2.3 TRANSMISSION LINES; 2.4 MATCHING TECHNIQUES 2.5 COAXIAL TRANSMISSION LINE2.6 MICROSTRIP LINE; 2.7 MATERIALS; 2.8 WAVEGUIDES; 2.9 CIRCULAR WAVEGUIDE; references; 3.1 INTRODUCTION TO ANTENNAS; 3.2 ANTENNA PARAMETERS; 3.3 DIPOLE ANTENNA; 3.4 BASIC APERTURE ANTENNAS; 3.5 HORN ANTENNAS; 3.6 ANTENNA ARRAYS FOR COMMUNICATION SYSTEMS; REFERENCES; 4.1 INTRODUCTION; 4.2 MICROWAVE INTEGRATED CIRCUITS MODULES; 4.4 MONOLITHIC MICROWAVE INTEGRATED CIRCUITS; 4.5 CONCLUSIONS; REFERENCES; 5.1 PRINTED ANTENNAS; 5.2 TWO LAYERS STACKED MICROSTRIP ANTENNAS; 5.3 STACKED MONOPULSE Ku BAND PATCH ANTENNA; 5.4 LOOP ANTENNAS; 5.5 WIRED LOOP ANTENNA 5.6 RADIATION PATTERN OF A LOOP ANTENNA NEAR A METAL SHEET5.7 PLANAR INVERTED-F ANTENNA; REFERENCES; 6.1 18-40 GHz COMPACT RF MODULES; 6.3 18-40 GHz Integrated Compact Switched Filter Bank Module; 6.4 FSU PERFORMANCE; 6.5 FSU DESIGN AND ANALYSIS; 6.6 FSU FABRICATION; 6.7 CONCLUSIONS; REFERENCES; 7.1 THE ODU DESCRIPTION; 7.2 THE LOW NOISE UNIT: LNB; 7.4 ISOLATION BETWEEN RECEIVING AND TRANSMITTING CHANNELS; 7.6 THE ODU MECHANICAL PACKAGE; 7.7 LOW NOISE AND LOW-COST K-BAND COMPACT RECEIVING CHANNEL FOR VSAT SATELLITE COMMUNICATION GROUND TERMINAL 7.8 KA-BAND INTEGRATED HIGH POWER AMPLIFIERS, SSPA, FOR VSAT SATELLITE COMMUNICATION GROUND TERMINAL7.9 CONCLUSIONS; REFERENCES; 8.1 INTEGRATED Ku-BAND AUTOMATIC TRACKING SYSTEM; 8.2 SUPER COMPACT X-BAND MONOPULSE TRANSCEIVER; REFERENCES; 9.1 INTRODUCTION; 9.3 POWER DIVIDERS AND COMBINERS; 9.4 RF AMPLIFIERS; 9.5 LINEARITY OF RF AMPLIFIERS AND ACTIVE DEVICES; 9.6 WIDEBAND PHASED ARRAY DIRECTION FINDING SYSTEM; 9.7 CONCLUSIONS; REFERENCES; 10.1 INTRODUCTION; 10.3 W-BAND MEMS DETECTION ARRAY; 10.4 ARRAY FABRICATION AND MEASUREMENT; 10.5 MUTUAL COUPLING EFFECTS BETWEEN PIXELS 10.6 MEMS BOW-TIE DIPOLE WITH BOLOMETER |
Record Nr. | UNINA-9910813791703321 |
Sabban Albert
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Hoboken, New Jersey : , : Wiley, , 2016 | ||
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Lo trovi qui: Univ. Federico II | ||
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