NETWORK CABLING - Juniata Collegejcsites.juniata.edu/faculty/kruse/it110/CH02_NET+.ppt · PPT...

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1 NETWORK CABLING Chapter 2

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NETWORK CABLING

Chapter 2

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Chapter 2: NETWORK CABLING 2

TOPOLOGIES

There are three main local area network (LAN) topologies: Bus Star Ring

Other network topologies include: Mesh Wireless

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Chapter 2: NETWORK CABLING 3

BUS TOPOLOGY

The bus topology supports thick and thin coaxial segments.

Segments are connected by repeaters. The bus topology uses the baseband signaling

method. Signals are broadcast in both directions

simultaneously. Both ends of each segment require termination to

avoid reflection. End systems connect to the segment in a linear

manner.

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Chapter 2: NETWORK CABLING 4

THICK AND THIN COAXIAL BUS

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Chapter 2: NETWORK CABLING 5

STAR TOPOLOGY

The star topology can use coaxial, twisted pair, or fiber optic cable.

A central device (hub) connects hubs and nodes to the network. Each node connects to its own dedicated port on

the hub. Hubs broadcast transmitted signals to all connected

devices. You can connect multiple hubs to form a

hierarchical star topology. The star topology uses the baseband signaling

method.

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Chapter 2: NETWORK CABLING 6

A SIMPLE STAR TOPOLOGY

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Chapter 2: NETWORK CABLING 7

A HIERARCHICAL STAR TOPOLOGY

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Chapter 2: NETWORK CABLING 8

RING TOPOLOGY

The ring topology can use twisted pair or fiber optic cabling.

A central device (hub) connects hubs and nodes to the network. Each node connects to its own dedicated port on the

hub. You can connect multiple hubs to form a larger ring.

The ring topology uses the baseband signaling method.

Frames are transmitted around the ring from node to hub to node.

Media Access Control (MAC) is used for token passing.

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Chapter 2: NETWORK CABLING 9

A RING NETWORK

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Chapter 2: NETWORK CABLING 10

MESH TOPOLOGY

Typically uses fiber optic cabling for redundant wide area network (WAN) links

Provides multiple paths to destinations for fault tolerance

Supports baseband and broadband signals Requires an enormous amount of cable

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Chapter 2: NETWORK CABLING 11

LAN MESH

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Chapter 2: NETWORK CABLING 12

ENTERPRISE MESH

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Chapter 2: NETWORK CABLING 13

WIRELESS TOPOLOGY

Cell-based technology that uses unbounded media

Two wireless topologies: Ad hoc Infrastructure

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Chapter 2: NETWORK CABLING 14

AD HOC WLAN

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Chapter 2: NETWORK CABLING 15

INFRASTRUCTURE WLAN

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Chapter 2: NETWORK CABLING 16

LAN CABLE TYPES

Three cable types are used in LANs: Coaxial Twisted pair Fiber optic

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Chapter 2: NETWORK CABLING 17

COAXIAL CABLE

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Chapter 2: NETWORK CABLING 18

AUI (ATTACHMENT UNIT INTERFACE) CABLE

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Chapter 2: NETWORK CABLING 19

THIN ETHERNET HARDWARE

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Chapter 2: NETWORK CABLING 20

UNSHIELDED TWISTED PAIR (UTP) CABLE

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Chapter 2: NETWORK CABLING 21

UTP CONNECTORS

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Chapter 2: NETWORK CABLING 22

UTP CABLE GRADES

Category Frequency Primary Application

1 Up to 0 MHz Voice networks2 Up to 1 MHz Voice and low-speed

data networks less than 4 Mbps

3 Up to 16 MHz Voice and data networks from 4 to 100 Mbps

4 Up to 20 MHz 16-Mbps Token Ring5 Up to 100 MHz 100-Mbps Fast Ethernet5e Up to 100 MHz 1000-Mbps Gigabit

Ethernet6 Up to 250 MHz 1000-Mbps Gigabit

Ethernet

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Chapter 2: NETWORK CABLING 23

FIBER OPTIC CABLE

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Chapter 2: NETWORK CABLING 24

STRAIGHT TIP (ST) CONNECTOR

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Chapter 2: NETWORK CABLING 25

STRAIGHT THROUGH AND CROSSOVER WIRING

Wiring within a twisted pair cable is configured as either Straight through, where each wire (or pin) is

attached to the same contact point at each end

Crossover, where transmit contacts on each end of the cable are connected to the receive contact at the other end

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Chapter 2: NETWORK CABLING 26

STRAIGHT THROUGH WIRING

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Chapter 2: NETWORK CABLING 27

CROSSOVER WIRING

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Chapter 2: NETWORK CABLING 28

SUMMARY

The three basic LAN topologies are bus, star, and ring. WLANs are becoming more popular. Mesh networks are not typically used in LANs.

The primary cable types used in LANs are coaxial, twisted pair, and fiber optic.