From power electronics to power integrated circuits (PICs), smart power technologies, devices, and beyond, Integrated Power Devices and TCAD Simulation provides a complete picture of the power management and semiconductor industry. An essential reference for power device engineering students and professionals, the book not only describes the physics inside integrated power semiconductor devices such lateral double-diffused metal oxide semiconductor field-effect transistors (LDMOSFETs), lateral insulated-gate bipolar transistors (LIGBTs), and super junction LDMOSFETs but also delivers a simple introduction to power management systems. Instead of abstract theoretical treatments and daunting equations, the text uses technology computer-aided design (TCAD) simulation examples to explain the design of integrated power semiconductor devices. It also explores next generation power devices such as gallium nitride power high electron mobility transistors (GaN power HEMTs). Including a virtual process flow for smart PIC technology as well as a hard-to-find technology development organization chart, Integrated Power Devices and TCAD Simulation gives students and junior engineers a head start in the field of power semiconductor devices while helping to fill the gap between power device engineering and power management systems.
In Redefining Heresy and Tolerance, Hung Tak Wai examines how the Qing empire governed Muslims and Christians under its rule with a non-interventionist policy. Manchu emperors adopted a tolerant attitude towards Islam and Christianity as long as political stability and loyalty remained unthreatened. However, Hung argues that such tolerance had its limitations. Since the mid-eighteenth century, the Qing court intentionally minimised the importance of the Islamic identity. Restrictions were imposed on the Muslims’ external connections with Western Asia. The Christian minority was kept distant from politics and the Han majority. At the same time, Confucian scholars began to acquire a new understanding of religion, but they were not encouraged to get in touch with the Muslims and Christians. This book demonstrates how, from the late eighteenth to the early nineteenth century, the Qing government prevented Confucian scholar-bureaucrats from interfering in the religious life of Christians and Muslims, and how the Confucians’ understanding of ‘religion’ was reshaped during the implementation of such policy in the period. This book reveals that a different kind of ‘religious tolerance’ had already emerged among Sinophone intellectuals before their contact with the West. ‘This book goes beyond the assumption of a homogeneous Han society and pays attention to the religious groups that emerged after the seventeenth century, which differed from, or even contradicted, Confucianism and other Chinese religions, and it is concerned with how such alien communities influenced the development of Confucianism itself.’ —Wang Fan-sen, Academia Sinica ‘This book significantly enriches our comprehension of how early modern Confucians, as adherents of a state/public religion, engaged with Abrahamic religions. By delving into the dynamics of interreligious interaction, Redefining Heresy and Tolerance sheds new light on the encounters between Confucianism and the Abrahamic faiths, offering fresh insights into the complex religious landscape of Asian culture.’ —Huang Chin-shing, Academia Sinica
From power electronics to power integrated circuits (PICs), smart power technologies, devices, and beyond, Integrated Power Devices and TCAD Simulation provides a complete picture of the power management and semiconductor industry. An essential reference for power device engineering students and professionals, the book not only describes the physics inside integrated power semiconductor devices such lateral double-diffused metal oxide semiconductor field-effect transistors (LDMOSFETs), lateral insulated-gate bipolar transistors (LIGBTs), and super junction LDMOSFETs but also delivers a simple introduction to power management systems. Instead of abstract theoretical treatments and daunting equations, the text uses technology computer-aided design (TCAD) simulation examples to explain the design of integrated power semiconductor devices. It also explores next generation power devices such as gallium nitride power high electron mobility transistors (GaN power HEMTs). Including a virtual process flow for smart PIC technology as well as a hard-to-find technology development organization chart, Integrated Power Devices and TCAD Simulation gives students and junior engineers a head start in the field of power semiconductor devices while helping to fill the gap between power device engineering and power management systems.
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