User's Manual
Table Of Contents
- ===============================
- MAIN MENU
- MASTER INDEX
- GLOSSARY
- ===============================
- DEFINITY® ECS Release 8.2 Administration for Network Connectivity
- Contents
- Preface
- 1 Networking Overview
- 2 H.323 Trunks
- Overview
- H.323 Trunk Administration
- Enabling Administration
- H.323 Trunk Administration — Task Summary
- H.323 Trunk Administration — Task Detail
- Task 1 — Assign Node Names
- Task 2 — Define IP Interfaces
- Task 3 — Assign Link via ethernet Data Module to the LAN
- Task 4 — Create a signaling group
- Task 5 — Create a trunk group
- Task 6 — Modify signaling group
- Task 7 — Specify codecs
- Troubleshooting IP Solutions
- 3 C-LAN Administration
- Overview
- Configuration 1: R8r <—ppp—> R8si
- Task Summary
- Prerequisite Administration
- Switch 1 Task — Assign Node Names
- Switch 1 Task — Assign Link via ppp Data Module to Switch 2
- Switch 1 Task — Assign Processor Channels
- Switch 2 Task — Assign Node Names
- Switch 2 Task — Assign Link via ppp Data Module to Switch 1
- Switch 2 Task — Assign Processor Channels
- Enable links and processor channels
- Configuration 2: R7r (+CMS) <—ethernet—> R7csi
- Task Summary
- Switch 1 Task — Assign Node Names
- Switch 1 Task — Assign IP Interfaces
- Switch 1 Task — Assign Link via ethernet Data Module to the LAN
- Switch 1 Task — Assign Processor Channels
- Switch 2 Task — Enable Bus Bridge Connectivity
- Switch 2 Task — Assign Node Names
- Switch 2 Task — Define IP Interfaces
- Switch 2 Task— Assign Link via ethernet Data Module to the LAN
- Switch 2 Task — Assign IP Route (to Switch 1)
- Switch 2 Task— Assign Processor Channels
- Intuity System Administration
- Administer Subscribers
- Worksheet A: Names and IP Addresses for Lucent Intuity System
- Worksheet B: LAN Data for the Lucent Intuity System
- Enable links and processor channels
- Configuration 3:R8si<—x.25 —> R8r Gateway <—ethernet—> R8si
- Task Summary
- Prerequisite Administration
- Switch 1 Task — Assign Node Names
- Switch 1 Task — Assign pdm Data Module
- Switch 1 Task — Assign Link via x.25 Data Module to Switch 2
- Switch 1 Task — Assign IP Interfaces
- Switch 1 Task — Assign Link via ethernet Data Module to the LAN
- Switch 1 Task — Assign Processor Channels
- Switch 2 Task — Assign Link via procr-intf Data Module to Switch 1
- Switch 2 Task — Assign Processor Channels
- Switch 3 Task — Assign Node Names
- Switch 1 Task — Assign IP Interfaces
- Switch 3 Task — Assign Link via ethernet Data Module to the LAN
- Switch 3 Task — Assign Processor Channels
- Enable links and processor channels
- Configuration 4: R8csi <—ISDN—> R8si Gateway <—ppp—> R8csi
- Task Summary
- Prerequisite Administration
- Switch 1 Task — Assign Node Names
- Switch 1 Task — Assign Link via ppp Data Module to Switch 3
- Switch 1 Task — Assign Processor Channels
- Switch 1 Task — Assign Signaling Group and administered NCA TSC
- Switch 1 Task — Assign ISDN-TSC Gateway
- Switch 2 Task — Assign Signaling Group and administered NCA TSC
- Switch 3 Task — Enable Bus Bridge Connectivity
- Switch 3 Task — Assign Node Names
- Switch 3 Task — Assign Link via ppp Data Module to Switch 1
- Switch 3 Task — Assign Processor Channels
- Enable links and processor channels
- Configuration 5A: R8csi <—ppp—> R8r (one C-LAN) <—ethernet—> R8si
- Task Summary
- Prerequisite Administration
- Switch 1 Task — Assign Node Names
- Switch 1 Task — Assign Link via ppp Data Module to Switch 2
- Switch 1 Task — Assign IP Interfaces
- Switch 1 Task — Assign Link via ethernet Data Module to Ethernet
- Switch 1 Task — Assign Processor Channels
- Switch 2 Task — Enable Bus Bridge Connectivity
- Switch 2 Task — Assign Node Names
- Switch 2 Task — Assign Link via ppp Data Module to Switch 1
- Switch 2 Task — Assign Processor Channels
- Switch 2 Task — Assign IP Route to node-3
- Switch 3 Task — Assign Node Names
- Switch 3 Task — Assign IP Interfaces
- Switch 3 Task — Assign Link via ethernet Data Module to the LAN
- Switch 3 Task — Assign Processor Channels
- Enable links and processor channels
- Configuration 5B:R8csi <—ppp—> R8r (2 C-LANs) <—ethernet—> R8si
- Task Summary
- Prerequisite Administration
- Switch 1 Task — Assign Node Names
- Switch 1 Task — Assign Link via ppp Data Module to Switch 2
- Switch 1 Task — Assign IP Interfaces
- Switch 1 Task — Assign Link via ethernet Data Module to the LAN
- Switch 1 Task — Assign Link via ppp Data Module to C-LAN(a)
- Switch 1 Task — Assign Link via ppp Data Module to C-LAN(b)
- Switch 1 Task — Assign Processor Channels
- Switch 1 Task — Assign IP Route: C-LAN(a) to node-3
- Switch 1 Task — Assign IP Route: C-LAN(b) to node-2
- Switch 2 Task — Enable Bus Bridge Connectivity
- Switch 2 Task — Assign Node Names
- Switch 2 Task — Assign Link via ppp Data Module to Switch 1
- Switch 2 Task — Assign Processor Channels
- Switch 2 Task — Assign IP Route to node-3
- Switch 3 Task — Assign Node Names
- Switch 3 Task — Assign IP Interfaces
- Switch 3 Task — Assign Link via ethernet Data Module to the LAN
- Switch 3 Task — Assign Processor Channels
- Enable links and processor channels
- 4 Networking Example
- A Screens Reference
- Networking Screens
- Other Network-Related DEFINITY Screens
- Networking Screens
- Node Names
- page 1
- Pages 2 – 6
- IP Interfaces
- IP Routing
- IP Media Parameters
- Data Module Screens
- Common Data Module Fields
- Data Module — Type ethernet
- Data Module — Type ppp
- Data Module — Type procr-intf (used for BX.25 connections with the si model)
- Data Module - type X.25 (used for BX.25 connections with the r model)
- Data Module - type pdm (used for BX.25 connections with the r model)
- Communication-Interface Processor Channel
- Circuit Packs
- Signaling Group
- ISDN TSC Gateway Channel Assignments
- Other Networking-Related DEFINITY Screens
- Communication Interface Links
- Data Module - type netcon
- Data Module - type analog-dm
- Extended Trunk Access Call Screening
- Extension Number Portability Numbering Plan
- Hop Channel Assignments Screen
- Implementation notes
- Node Number Routing
- Message Waiting Indication Subscriber Number Prefixes
- Synchronization Plan
- Pages 1–X of the screen
- Uniform Dial Plan
- B Private Networking
- Contents of this Appendix
- Distributed Communications System
- Description of DCS
- DCS Features
- Italian DCS Protocol
- ISDN/X.25 gateway
- DCS Over ISDN-PRI D-channel
- DCS feature considerations
- DCS Interactions
- Example DCS configurations
- Centralized Attendant Service
- Extended Trunk Access
- Extension Number Portability
- Inter-PBX Attendant Service
- Private Network Access
- Uniform Dial Plan
- ISDN Feature Plus
- QSIG
- Centralized Voice Mail Via Mode Code
- Japan TTC Q931-a Private Networking Protocols
- C Security Issues
- D Capacities and Performance
- E C-LAN Installation
- F IP Trunk Installation and Administration
- IP Trunk Installation
- IP Trunk Administration
- Procedures for Extension Dialing Between Sites
- DCS over IP Trunk
- DCS or Dedicated Trunks to Specific Locations Configurations
- Rerouting calls when IP transmission quality is poor
- Placing a test telephone call
- Setting up alerts on IP trunks
- Alert types
- Viewing error messages
- Troubleshooting IP trunk
- Maintaining the performance of the IP trunk server
- Configuring Microsoft NetMeeting™ on a PC
- IP Trunk Worksheets
- G References
- Glossary
- Index

Configuration 2: R7r (+CMS) <—ethernet—> R7csi 3 C-LAN Administration
Administration for Network Connectivity
CID: 77730 555-233-504 — Issue 1 — April 2000
78
> Submit the screen
End
Subnet Mask Enter the subnet mask associated with the IP address for this IP
interface.
The IP address for node-1, specified on the Node Names screen,
is 192.168.1.124. The 192 in the first octet puts this address in
the range of “Class C” addresses, which means the first 3 octets
are used for the network ID and the fourth octet is used for host
IDs.
The subnet mask defines the network and host parts of the IP
addresses. In the Subnet Mask for this example (192.168.1.224),
the 224 in the fourth octet indicates that 3 high-order bits from
the fourth octet are used to define subnets on the network
192.168.1 (224 = 128+64+32 = 11100000). The first 3 bits are
used for subnet IDs and the last 5 bits are used for host IDs.
Eight subnets can be defined with 3 bits and each subnet can
have a maximum of 32 hosts, defined with the remaining 5 bits.
Of these, only 6 subnets with 30 hosts each are usable.
The usable IP addresses in the 6 subnets have the following
ranges of values for the fourth octet: 33–62, 65–94, 97–126,
129–158, 161–190, and 193–222. The IP address for this
(node-1) IP interface, 192.168.1.124, is on the third subnet
because 124 lies in the range 97–126. Note that node 2 (adjunct,
192.168.1.125) and node 3 (router, 192.168.1.97) are both also
on the third subnet. Node 4 (192.168.1.51) and node 5
(192.168.1.39) are both on the first subnet.
The first and last IP addresses in each subnet are not usable as
host addresses because they have all 0’s or all 1’s for host IDs.
For example, in the third subnet, the fourth octet of the first IP
address is 96 (= 01100000
) and the fourth octet of the last IP
address is 127 (= 01111111
).
The “network address” of a subnet is the first IP address (the all
0’s host ID) of that subnet. In this example, the subnet addresses
of the six subnets are — 1st: 192.168.1.32 2nd: 192.168.1.64
3rd: 192.168.1.96 4th: 192.168.1.128 5th: 192.168.1.160
6th: 192.168.1.192.
See Chapter 1 for more information on IP addresses and
subnetting.
Gateway Addr Enter the address of a network node that will serve as the default
gateway for the IP interface.
Net Rgn Enter the region number for this IP interface.
Field Conditions/Comments
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