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Silicon General Semiconductor Diodes
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Silicon Carbide $93.99 Silicon carbide (SiC), also known as carborundum, is a compound of silicon and carbon with a chemical formula SiC. It occurs in nature as the extremely rare mineral moissanite. Silicon carbide powder has been massproduced since 1893 for use as an abrasive. Grains of silicon carbide can be bonded together by sintering to form very hard ceramics which are widely used in applications requiring high endurance, such as car brakes and ceramic plates in bulletproof vests. Electronic applications of silicon carbide as light emitting diodes and detectors in early radios were first demonstrated around 1907, and nowadays SiC is widely used in hightemperature/highvoltage semiconductor electronics. Large single crystals of silicon carbide can be grown by the Lely method; they can be cut into gems known as synthetic moissanite. Silicon carbide with high surface area can be produced from SiO2 contained in plant material. Author: Surhone, Lambert M./ Timpledon, Miriam T./ Marseken, Susan F. Binding Type: Paperback Number of Pages: 138 Publication Date: 2010/07/18 Language: English Dimensions: 6.00 x 9.02 x 0.32 inches |
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Handbook of Semiconductor Silicon Technology $214.5 No Synopsis Available |
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The Diodes $93.99 High Quality Content by WIKIPEDIA articles The Diodes were a Canadian punk/new wave band formed in 1976. They released five albums: Diodes (1977), Released (1979), ActionReaction (1980), Survivors (1982), and Time/Damage Live 1978 (2010). One of the first Toronto bands playing that style of music, The Diodes helped foster the scene in the city. Along with manager Ralph Alfonso, The Diodes opened the first Canadian punk nightclub in 1977, called Crash n Burn, where many of the citys punk bands at that time played. The first band to play the club was The Nerves, on a double bill with The Diodes. The club was closed at the end of the summer of 1977 due to complaints by the Liberal Party of Ontario (the principal tenants of the building). Author: Surhone, Lambert M./ Timpledon, Miriam T./ Marseken, Susan F. Binding Type: Paperback Number of Pages: 130 Publication Date: 2010/08/01 Language: English Dimensions: 6.00 x 9.02 x 0.31 inches |
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Semiconductor Energy Conversion Devices $170.47 Finding ways of cost efficient, environmentfriendly and sustainable energy generation as well as energy consumption, is one of our biggest challenges. Solid state energy conversion technologies such as photovoltaic (PV) cells, (solar or otherwise thermophotovoltaic (TPV) systems, concentrated solar power (CSP) and solidstate lighting (SSL), provides very attractive prospects for sustainable, environmentally clean and gridcompetitive energy generation and general purpose lighting on a large scale. Despite many years of research and development, the power conversion efficiencies of these technologies remain far below their theoretical limits. The efficiency of conversion between electrical and photonic energy in optoelectronic devices such as lightemitting diodes, photodetectors and solar cells is strongly affeected by the photonic modes supported by the device structure. In this book, we explore the theoretical conversion efficiencies of these technologies and demonstrate how tuning of the local photon density of states in subwavelength structures can be used to optimize device performance and achieve better efficiency as well as cost. Author: Agrawal, Mukul/ Peumans, Peter Binding Type: Paperback Number of Pages: 256 Publication Date: 2010/03/21 Language: English Dimensions: 6.00 x 9.00 x 0.58 inches |
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Introduction to Nitride Semiconductor Blue Lasers and Light Emitting Diodes $204.7 No Synopsis Available |
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Principles of Solar Cells, Leds and Diodes (Hardcover) $364.39 The book will cover the two most important applications of semiconductor diodes – solar cells and LEDs - together with quantitative coverage of the physics of the PN junction at the senior undergraduate level. It will include: Review of semiconductor physicsIntroduction to PN diodesThe solar cellPhysics of efficient conversion of sunlight into electrical energy Semiconductor solar cell materials and device physicsAdvanced solar cell materials and devicesThe light emitting diodePhysics of efficient conversion of electrical energy into lightSemiconductor light emitting diode materials and device physicsAdvanced light emitting diode materials and devices |
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Principles of Solar Cells, Leds and Diodes (Paperback) $148.45 The book will cover the two most important applications of semiconductor diodes – solar cells and LEDs - together with quantitative coverage of the physics of the PN junction at the senior undergraduate level. It will include: Review of semiconductor physicsIntroduction to PN diodesThe solar cellPhysics of efficient conversion of sunlight into electrical energy Semiconductor solar cell materials and device physicsAdvanced solar cell materials and devicesThe light emitting diodePhysics of efficient conversion of electrical energy into lightSemiconductor light emitting diode materials and device physicsAdvanced light emitting diode materials and devices |
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Semiconductor Optics and Transport Phenomena $269.24 Wellbalanced and uptodate introduction to the field of semiconductor optics, including transport phenomena in semiconductors. Starting with the theoretical fundamentals of this field the book develops, assuming a basic knowledge of solidstate physics. The application areas of the theory covered include semiconductor lasers, detectors, electrooptic modulators, singleelectron transistors, microcavities and doublebarrier resonant tunneling diodes. One hundred problems with hints for solution help the readers to deepen their knowledge. Author: Wegener, Martin/ Schafer, Wilfried/ Schfer, Wilfried Series Title: Advanced Texts in Physics (Hardcover) Binding Type: Hardcover Number of Pages: 495 Publication Date: 2002/06/11 Language: English Dimensions: 9.70 x 6.38 x 1.36 inches |
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Rate Equations in Semiconductor Electronics $58.93 This is a novel approach to teaching dynamic aspects of the operation of semiconductor and optoelectronic devices. The traditional approach emphasizes an understanding of the steady equilibrium operation. However, dynamic aspects often determine the steady state conditions and the dynamical operation is of increasing importance as modern methods of communicating data and information require electronic devices that switch electrical or optical signals at ever faster rates. The opening chapter considers a number of simple problems, several drawn from daily experience, where the rates of movement can be used to determine equilibrium states. The remainder of the book concentrates on specific problems in semiconductor physics: the rates at which transistors and diodes can switch, and the rates at which electrons and holes can interact with photons, and photons with photons. Author: Carroll, John E./ Carroll, J. E. Binding Type: Paperback Number of Pages: 192 Publication Date: 1990/03/30 Language: English Dimensions: 9.12 x 6.12 x 0.49 inches |
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Silicon Carbide Biotechnology (Hardcover) $334.98 Silicon Carbide (SiC) is a wide-band-gap semiconductor biocompatible material that has the potential to advance advanced biomedical applications. SiC devices offer higher power densities and lower energy losses, enabling lighter, more compact and higher efficiency products for biocompatible and long-term in vivo applications ranging from heart stent coatings and bone implant scaffolds to neurological implants and sensors. The main problem facing the medical community today is the lack of biocompatible materials that are also capable of electronic operation. Such devices are currently implemented using silicon technology, which either has to be hermetically sealed so it cannot interact with the body or the material is only stable in vivo for short periods of time. For long term use (permanent implanted devices such as glucose sensors, brain-machine-interface devices, smart bone and organ implants) a more robust material that the body does not recognize and reject as a foreign (i.e., not organic) material is needed. Silicon Carbide has been proven to be just such a material and will open up a whole new host of fields by allowing the development of advanced biomedical devices never before possible for long-term use in vivo. This book provides not only the materials and biomedical engineering communities with a seminal reference book on SiC that they can use to further develop the technology, but to also provide a technology resource for medical doctors and practitioners who are hungry to identify and implement advanced engineering solutions to their everyday medical problems that currently lack long term, cost effective solutions. Discusses Silicon Carbide biomedical materials and technology in terms of their properties, processing, characterization, and application, in one book, from leading professionals and scientistsCritical assesses existing literature, patents and FDA approvals for clinical trials, enabling |
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Semiconductor Lasers I (Hardcover) $256.23 This book covers the device physics of semiconductor lasers in five chapters written by recognized experts in this field. The volume begins by introducing the basic mechanisms of optical gain in semiconductors and the role of quantum confinement in modern quantum well diode lasers. Subsequent chapters treat the effects of built-in strain, one of the important recent advances in the technology of these lasers, and the physical mechanisms underlying the dynamics and high speed modulation of these devices. The book concludes with chapters addressing the control of photon states in squeezed-light and microcavity structures, and electron states in low dimensional quantum wire and quantum dot lasers. The book offers useful information for both readers unfamiliar with semiconductor lasers, through the introductory parts of each chapter, as well as a state-of-the-art discussion of some of the most advanced semiconductor laser structures, intended for readers engaged in research in this field. This book may also serve as an introduction for the companion volume, Semiconductor Lasers II: Materials and Structures, which presents further details on the different material systems and laser structures used for achieving specific diode laser performance features.* Introduces the reader to the basics of semiconductor lasers* Covers the fundamentals of lasing in semiconductors, including quantum confined and microcavity structures* Beneficial to readers interested in the more general aspects of semiconductor physics and optoelectronic devices, such as quantum confined heterostructures and integrated optics* Each chapter contains a thorough introduction to the topic geared toward the non-expert, followed by an in-depth discussion of current technology and future trends* Useful for professionals engaged in research and development* Contains numerous schematic and data-containing illustrations |
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Silicon Carbide Biotechnology By Saddow, Stephen $262.89 Author: Saddow, Stephen E. Subtitle: A Biocompatible Semiconductor for Advanced Biomedical Devices and Applications Publication Date: 2011/11/28 Number of Pages: 479 Binding Type: Hardcover Language: English Depth: 1.00 Width: 6.25 Height: 9.00 |
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Post Silicon Validation $54.86 High Quality Content by WIKIPEDIA articles Postsilicon validation and debug is the last step in the development of a semiconductor integrated circuit. During the presilicon process, engineers test devices in a virtual environment with sophisticated simulation, emulation, and formal verification tools. In contrast, postsilicon validation tests occur on actual devices running atspeed in commercial, realworld system boards using logic analyzer and assertionbased tools. Large semiconductor companies spend millions creating new components; these are the sunk costs of design implementation. Consequently, it is imperative that the new chip function in full and perfect compliance to its specification, and be delivered to the market within tight consumer windows. Even a delay of a few weeks can cost tens of millions of dollars. Postsilicon validation is therefore one of the most highly leveraged steps in successful design implementation. Author: Surhone, Lambert M./ Timpledon, Miriam T./ Marseken, Susan F. Binding Type: Paperback Number of Pages: 72 Publication Date: 2010/06/20 Language: English Dimensions: 5.98 x 9.01 x 0.17 inches |
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Silicon Carbide Biotechnology : A Biocompatible Semiconductor for Advanced Biomedical Devices and Applications $191.05 No Synopsis Available |
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OLED Display Fundamentals and Applications (Wiley Series in Display Technology)
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DescriptionThis book covers all of the aspects necessary to the design and manufacturing of OLED displays. Topics include emission mechanism, material selection, device processing, manufacturing issues and countermeasures and display design basics... |
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Device Applications of Silicon Nanocrystals and Nanostructures (Nanostructure Science and Technology)
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DescriptionRecent developments in the technology of silicon nanocrystals and silicon nanostructures, where quantum-size effects are important, are systematically described including examples of device applications... |
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Wide Bandgap Semiconductors: Fundamental Properties and Modern Photonic and Electronic Devices
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DescriptionThis book offers a comprehensive overview of the development, current state, and future prospects of wide bandgap semiconductor materials and related optoelectronics devices. With 901 references, 333 figures and 21 tables, this book will serve as a one-stop source of knowledge on wide bandgap semiconductors and related optoelectronics devices. |
Frbiz.com reports Inspur spend 4 billion yuan to build the nation's largest industrial LED base
November 7 morning news, a total investment of 40 billion wave (Jinan) Optoelectronics Industrial Park, Jinan Hi-tech Zone, Shandong Province yesterday, the official start of the project. After the completion of the wave (Jinan) Optoelectronics Industry Park will become the sole owner of silicon carbide substrates, epitaxial wafers, die, packaged devices and applications, a complete industrial chain of the domestic first-class photonics Park.
According to the plan, the wave (Jinan) Optoelectronics Industrial Park in three phases, covering 242 mu, building area of 16 square meters. This is the wave started construction (Jinan) Optoelectronic Industry Park, an engineering, planning a total investment 17 million yuan, is expected to completed in 2011, put into operation can realize annual sales income of 3.0 billion. The entire wave (Jinan) Optoelectronics Industrial Park project planned for the completion of 5-8 years, three are completed, annual sales income will reach 9.0 billion.
In addition to Jinan, the wave of the optoelectronics industry park is also covered by Weifang, Linyi two places. Weifang base which covers an area of 151 acres, the park master plan construction area of 90,000 square meters, Linyi base covers an area of 300 acres, the park planning construction area of 120,000 square meters, Jinan, Linyi, Weifang three optoelectronic industry base will realize synergies, waves of optical Industrial Park total upon completion, will have an annual output of LED epitaxial wafers 4 million, die 80 billion, 10 billion devices, applications, three million sets of silicon carbide substrate production capacity of 300,000, the annual sales revenue of up to 13.8 billion, will become the nation's largest optoelectronic semiconductor lighting industrial base and production base.
In November 2007, the tide Raisen Guanghua Holding Group replenishment into the LED semiconductors. Raisen is the earliest professional Huaguang compound semiconductor epitaxial wafers and optoelectronic device development and production of high-tech enterprise, after the wave of its capital increase, in strengthening the existing advantages of epitaxial wafers and die on the basis of further accelerate Blu-ray, The Industrial Development of Silicon Carbide, becoming the only one present, China's master red, yellow, blue, green and wide color gamut LED chip, proprietary vendors.
Solid-state lighting is the fourth-generation light source, known as the era since the Edison light again after the revolution. With the light-emitting diode (LED) technology, the continuous enhancement of semiconductor lighting applications has gradually expanded from the initial city lighting, special lighting developed to screen, traffic lights, brake lights, liquid crystal display backlight, as well as outdoor lighting, general lighting.
China has a huge lighting industry and lighting market, LED application market in China in 2008 the scale of 540 billion yuan, by 2010 the size of the domestic LED industry will be more than 100 billion yuan.
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