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Negli ultimi anni, a causa dei massicci progressi tecnologici, c'è una continua richiesta di velocità di trasmissione dati e larghezza di banda elevate. La banda dello spettro EM che copre la frequenza da 0,1 THZ a 10 THZ è nota come banda THz. Grazie alle loro caratteristiche interessanti, le antenne terahertz sono diventate popolari tra i ricercatori. In questo libro viene presentata una rassegna esaustiva dei lavori più recenti relativi alle antenne in banda THz, alla tecnologia di fabbricazione, alla progettazione, alle sfide dell'antenna THZ e alle tecniche di misura.
In den letzten Jahren ist aufgrund der massiven Fortschritte in der Technologie eine kontinuierliche Nachfrage nach hohen Datenraten und Bandbreiten entstanden. Das Band im EM-Spektrum, das die Frequenzen 0,1 THZ bis 10 THZ umfasst, wird als THz-Band bezeichnet. Aufgrund der attraktiven Eigenschaften von Terahertz-Antennen sind sie bei Forschern sehr beliebt. In diesem Buch wird ein umfassender Überblick über die neuesten THZ-Arbeiten im Zusammenhang mit THz-Band-Antennen, Herstellungstechnologie, Design, THZ-Antennen-Herausforderungen und Messtechniken gegeben.
Nos últimos anos, devido aos enormes avanços tecnológicos, existe uma procura contínua de elevado débito de dados e largura de banda. A banda do espetro eletromagnético que abrange as frequências de 0,1 THZ a 10 THZ é conhecida como banda THz. Devido às características atractivas das antenas terahertz, estas tornaram-se populares entre os investigadores. Neste livro, é feita uma análise exaustiva dos últimos trabalhos sobre THZ relacionados com a antena de banda THz, a tecnologia de fabrico, a conceção, os desafios da antena THZ e as técnicas de medição.
Ces dernières années, en raison des progrès considérables de la technologie, il y a une demande constante de débit de données élevé et de largeur de bande. La bande du spectre électromagnétique qui couvre les fréquences de 0,1 THZ à 10 THZ est connue sous le nom de bande THz. En raison de leurs caractéristiques attrayantes, les antennes térahertz sont devenues populaires parmi les chercheurs. Ce livre présente un examen exhaustif des derniers travaux sur les antennes THZ, la technologie de fabrication, la conception, les défis posés par les antennes THZ ainsi que les techniques de mesure.
V poslednie gody, w swqzi s massowym razwitiem tehnologij, suschestwuet postoqnnyj spros na wysokuü skorost' peredachi dannyh i propusknuü sposobnost'. Polosa w älektromagnitnom spektre, ohwatywaüschaq chastoty ot 0,1 TGc do 10 TGc, izwestna kak TGc-diapazon. Blagodarq priwlekatel'nym harakteristikam teragercowyh antenn, oni stali populqrny sredi issledowatelej. V ätoj knige predstawlen ischerpywaüschij obzor poslednih rabot, swqzannyh s antennami TGc diapazona, tehnologiej izgotowleniq, dizajnom, problemami antenn TGc, a takzhe metodami izmerenij.
The development of a revolutionary transistor architecture that transformed the semiconductor industry may be seen in the timeline of FinFET technology. This novel three-dimensional structure has expanded the capabilities of conventional planar transistors from its initial inception. FinFET has evolved into the preferred option for high-performance computing systems throughout time thanks to its enhanced power efficiency, decreased leakage, and better control over the current flow.
In the recent years, due to massive advances in the technology, there is a continuous demand for high data rate and bandwidth. The band in the EM spectrum that covers frequency 0.1 THZ to 10 THZ is known as THz band. Due to attractive features of terahertz antenna, they become popular amongst researchers. An exhaustive review of latest THZ work related to THz band antenna, fabrication technology, design, THZ antenna challenges along with the measurement techniques are addressed in this book.
Seminar paper from the year 2023 in the subject Engineering - Computer Engineering, grade: A, , language: English, abstract: This book will discuss contemporary optimization techniques that aims low power dissipation in VLSI circuits.Since CMOS technology consumes less power it is a key technology for VLSI circuit design. With technologies reaching the scale of 10 nm, static and dynamic power dissipation in CMOS VLSI circuits are major issues. Dynamic power dissipation is increased due to requirement of high speed and static power dissipation is at much higher side now a days even compared to dynamic power dissipation due to very high gate leakage current and subthreshold leakage. Low power consumption is equally important as speed in many applications since it leads to a reduction in the package cost and extended battery life.
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