9783954046218 - interference cancellation techniques for multiple-line transmission in modern dsl systems de ruan, yajie (4 resultados)
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Librería: BuchWeltWeit Ludwig Meier e.K., Bergisch Gladbach, AlemaniaBuchWeltWeit Ludwig Meier e.K.
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EUR 24,23
Envío por EUR 23,00Se envía de Alemania a Estados Unidos de AmericaCantidad disponible: 2 disponibles
Taschenbuch. Condición: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Ever since the invention of the first telephone by Phillip Reis in 1861, the twisted-pair copper wiring exists worldwide as part of gradually constructed infrastructure to support speech communications with an extremely large covera…ge. Developed over a century, the expanding network contains several hundred million copper telephone loop plants. Indeed, such huge resource can be used not only for voice communications but also for today¿s digital communications and transmission technique with extremely high data rates. Therefore, the technology which can enable broadband digital communications over the existing telephone infrastructure is urged. Digital subscriber line (DSL) technology was developed to provide digital data transmission as well as telephony since the late 1980s [SCS99] [SSCS03]. In the past three decades consumer-oriented Asymmetric DSL (ADSL) as well as High speed DSL such as high bit rate DSL (HDSL), Symmetric DSL (SDSL) and Very high speed DSL (VDSL) were designed and operated in the market. Nowadays, driven by the new applications such as the triple play of voice, data and video, consumers start to require fiber-fast broadband capacity and additionally high reliable transmission. Unfortunately, extending fiber to every home is still economically infeasible. Modern DSL systems such as VDSL2 systems are expected to be the last mile between the customer premise equipments (CPE) and the fiber-network core, and to enable the transmission with higher data rate and better quality of service (QoS). 126 pp. Englisch.
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Librería: moluna, Greven, Alemaniamoluna
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Condición: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. KlappentextrnrnEver since the invention of the first telephone by Phillip Reis in 1861, the twisted-pair copper wiring exists worldwide as part of gradually constructed infrastructure to support speech communications…with an extremely large cove.
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Librería: buchversandmimpf2000, Emtmannsberg, BAYE, Alemaniabuchversandmimpf2000
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EUR 24,23
Envío por EUR 60,00Se envía de Alemania a Estados Unidos de AmericaCantidad disponible: 1 disponibles
Taschenbuch. Condición: Neu. This item is printed on demand - Print on Demand Titel. Neuware -Ever since the invention of the first telephone by Phillip Reis in 1861, the twisted-pair copper wiring exists worldwide as part of gradually constructed infrastructure to support speech communications with an extremely large coverage.…Developed over a century, the expanding network contains several hundred million copper telephone loop plants. Indeed, such huge resource can be used not only for voice communications but also for today's digital communications and transmission technique with extremely high data rates. Therefore, the technology which can enable broadband digital communications over the existing telephone infrastructure is urged. Digital subscriber line (DSL) technology was developed to provide digital data transmission as well as telephony since the late 1980s [SCS99] [SSCS03]. In the past three decades consumer-oriented Asymmetric DSL (ADSL) as well as High speed DSL such as high bit rate DSL (HDSL), Symmetric DSL (SDSL) and Very high speed DSL (VDSL) were designed and operated in the market. Nowadays, driven by the new applications such as the triple play of voice, data and video, consumers start to require fiber-fast broadband capacity and additionally high reliable transmission. Unfortunately, extending fiber to every home is still economically infeasible. Modern DSL systems such as VDSL2 systems are expected to be the last mile between the customer premise equipments (CPE) and the fiber-network core, and to enable the transmission with higher data rate and better quality of service (QoS).Cuvillier Verlag, Nonnenstieg 8, 37075 Göttingen 126 pp. Englisch.
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Librería: AHA-BUCH GmbH, Einbeck, AlemaniaAHA-BUCH GmbH
Contactar con el vendedorVendedor de 5 estrellasCondición: Nuevo
EUR 24,23
Envío por EUR 60,87Se envía de Alemania a Estados Unidos de AmericaCantidad disponible: 1 disponibles
Taschenbuch. Condición: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - Ever since the invention of the first telephone by Phillip Reis in 1861, the twisted-pair copper wiring exists worldwide as part of gradually constructed infrastructure to support speech communications with an extremely large coverage. D…eveloped over a century, the expanding network contains several hundred million copper telephone loop plants. Indeed, such huge resource can be used not only for voice communications but also for today¿s digital communications and transmission technique with extremely high data rates. Therefore, the technology which can enable broadband digital communications over the existing telephone infrastructure is urged. Digital subscriber line (DSL) technology was developed to provide digital data transmission as well as telephony since the late 1980s [SCS99] [SSCS03]. In the past three decades consumer-oriented Asymmetric DSL (ADSL) as well as High speed DSL such as high bit rate DSL (HDSL), Symmetric DSL (SDSL) and Very high speed DSL (VDSL) were designed and operated in the market. Nowadays, driven by the new applications such as the triple play of voice, data and video, consumers start to require fiber-fast broadband capacity and additionally high reliable transmission. Unfortunately, extending fiber to every home is still economically infeasible. Modern DSL systems such as VDSL2 systems are expected to be the last mile between the customer premise equipments (CPE) and the fiber-network core, and to enable the transmission with higher data rate and better quality of service (QoS).



