Black Box Version 1.0 Technologies, XDSL technology, background, Asymmetric DSL Adsl technology

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4 TECHNOLOGIES

4.1xDSL technology, background

xDSL technology appeared due to the growing user’s demand to high-speed digital stream transfer over telephone copper pairs. Operators had to organize the interconnection of backbone stations of cellular networks, Digital Loop Carrier systems, interstation connection and to provide high-speed Internet access at minimal expenses. In these circumstances, it was reasonable to use the existing telephone cables. The new technology acquired the name – xDSL (Digital Subscriber Line).

“x” key

x is a variable in the DSL technology, where every word has its own meaning. Thus the term “Digital” means, that not an analogue but digital signal, that was processed by one of line encoding methods, is transmitted over pairs. In fact, the term xDSL points at this or that line code the distance of data transfer and maximal connection speed depend on it. However, some technologies, for example ADSL, can use one of the two line codes: either Discrete Multi-Tone (DMT) or Carrierless Amplitude/Phase (CAP).

The term “Subscriber Line” is referred to physical copper pairs of telephone cable, or in simple words, to “direct wires”. The term DSL was originally referred to the ISDN technology, but later was borrowed by the developers of xDSL technologies.

4.1.1 Asymmetric DSL (ADSL) technology

The most popular DSL technology, ADSL, was developed in Bellcore laboratory in late 1980s. Standards Institutes assigned the use of carrier set modulation, which acquired the name DMT, to ADSL, while another leading method received the name of Rate-Adaptive DSL (RADSL). ADSL transmits downstream to the end user and upstream to the net. The ADSL technology does not use 25–30-kHz frequencies, used for a subscriber’s access to public switched telephone network (PSTN). This provides simultaneous subscriber’s access to data transfer networks and PSTN over the same copper pair. The original ADSL implies the presence of splitters both on LTU and NTU. However, ADSL without splitters found its use and acquired the name of ADSL Lite or G.lite. Later, it was standardized by ITU-T. This standard supports downstream speeds up to 1.5 Mbit/s and upstream speeds up to 512 Kbit/s.

4.1.1.1 ADSL in brief

Standard

G.lite G.992.1 (G.DMT)

T1 413-1998

Interoperability between equipment of different manufacturers

Version: 1.0

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Contents Ethernet Router / Bridge MDS921AE-10BT MDS922AE-10BTSpecifications Firmware Loading Description of Interface Cables Major changes to previous version Version ControlIntroduction Version Specification XDSL technology, background TechnologiesAsymmetric DSL Adsl technology Adsl in briefLine code Isdn DSL technologyNumber of pairs UsageHigh bit rate DSL Hdsl technology Idsl in briefStandard Transmission rateHdsl in brief EXTRAns in brief EXTRAns technologyMdsl in brief Multispeed DSL Mdsl technologyMSDSL, in brief Multispeed DSL Msdsl technologyTransmission medium Straight-line code7.1 G.shdsl, in brief 7 G.shdsl technologyLocal area network integration. Access to Internet 1 TCP/IP stack structureLayer Correspondence of TCP/IP layers with the OSI model layers IP address classes Address assignment in IP networksMasks Automatic assignment of IP addressesTypes of bridges Bridging of local networksSimple network Version Network before running STA Routing components Routing of networksOptimal path determination Change of packet addresses SwitchingRouting algorithms, RIP Internet Access through LANs, NATStatic Network Address Translation NAT functioningDynamic Address Translation Masquerading NAPT, PATInternal IP Port local NAT port 191.167.0.10 1243 61300 Background Description of the DeviceStructural schematic of MDS92xxx-10BT Master/Slave mode Operation modeConnection at a fixed speed Fixed Mode Connection with an automatic speed regulation Adaptive modeRoute mode Bridge modeEthernet 10BaseT interface ATM interfaceLED Description of LEDsSub-Rack Mechanic DesignMDS920C-10BT, NG, front panel Xdsl Mini-RackMDS922AE-10BT, front panel LED Stand AloneEquipment Installation Version Programming Guide IntroductionManagement of devices of Sub-Rack type Management of devices of Mini-Rack and Stand Alone type Command structureCommand tree of bridge mode Command tree of router mode Help command Main menu of the bridge modeHome command Security password from an unauthorized accessLan command Default commandSetip command Show commandList command Manage command Setpass commandPassword setting Password disablement Password changeMode command Bridge mode setting modeRouter mode setting mode Quick command Ping commandANY 10 R1483 commandDelpvc command Pfilter commandSetpvc command Setspan command Setqos command10.6 6 Show command Restart commandSave command Shdsl shdsl Shdsl commandEnable command Terminal commandAnnex command Adapt command Fix commandPRE Activation Status commandVer command Main menu of the router mode Default commandDnsrelay command Setdnsip command Delwanip command Ipoa commandSetwanip command Setrip commandDhcpserver command Setdhcp command Addpatin command Pat commandSetpat command Delpatin commandPppoa command Adduser command Chpass commandDeluser command Setllc command Echo commandPppoe command 12 R1483 command 12.4 8.3.12.4 Setwanip command WAN Rtable command AddiprouteDeliproute All Deletes Firmware loading guide Firmware LoadingTechnical Specifications Interfaces Monitor interfaceNetwork management interface Network interface Surge safety Protection against dangerous affects10.3 10.3 Climatic conditions 10.5 10.5 Physical dimensions 10.4 10.4 GuaranteeCONNECTORS’ Description Shdsl connectorMonitor connector Power connector For MDS922AE-10BT Ethernet 10BaseT connector12.1 «Direct» Ethernet cable Description of Interface CablesCross-over Ethernet cable Typically the delivery set includes Delivery SETGlossary RJ45 RJ11RS232 SplitterTDM Router Example of Network ConfigurationVersion Ethernet IP Subnet mask 0.0.0.0 WAN IP Gateway

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