This document provides an overview of the Poly Rove wireless DECT IP phone solution, including its key components, configuration and calling features. It discusses the Poly Rove B2 and B4 base stations, R30 and R40 handsets, and R8 repeaters. It outlines how to provision the base stations, pair handsets and repeaters to extend the wireless range, and use calling features like transfer and conference. The goal is to train users on setting up and using the Poly Rove DECT system.
Overview of Alianza's hosted fixed VoLTE solution. Adding VoIP to fixed LTE broadband is never easier and less risky then going with the leading cloud voice platform.
Overview of Alianza's hosted fixed VoLTE solution. Adding VoIP to fixed LTE broadband is never easier and less risky then going with the leading cloud voice platform.
CCNA Voice Primer MaterialsCCNA Voice Primer MaterialsVo.docxtidwellveronique
CCNA Voice Primer Materials
CCNA Voice Primer Materials
Voice Primer Packet Tracer Lab
Topology
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Objective
Use Packet Tracer to configure Cisco Unified Communications Manager Express (CUCME) in a basic two site topology.
Background
Cisco Unified Communications Manager Express (CUCME) is VoIP call management software which runs within the router IOS. In this lab you will practice some of the basic CUCME and voice related configuration commands which would enable IP and analog phones at two locations to communicate. You will also apply many of the configuration skills learned in your CCNA curriculum.
Note: Packet Tracer (PT) is a simulation tool not an emulation tool. It is somewhat limited in its capabilities, especially in the VoIP area. Many commands, especially show and debug commands, which could be utilized to troubleshoot this lab are not supported in the PT environment. You may optionally use physical hardware for a richer experience with this lab if you have access to the appropriate hardware and software.
Note: This lab is introducing concepts which are probably not familiar to you. Be sure to read and follow all of the directions carefully or things will probably not work as you expect.
Required Resources
You will need the following tools to complete this lab:
· Packet Tracer software version 5.3.3 or later
IP Addressing Table
Device
Interface
Address
RouterA-1
FastEthernet0/0
n/a
FastEthernet0/0.10
172.16.10.1 /24
FastEthernet0/0.20
172.16.20.1 /24
FastEthernet0/0.99
172.16.99.1 /24
FastEthernet0/1
10.0.0.1/24
RouterB-1
FastEthernet0/0
n/a
FastEthernet0/0.10
172.17.10.1 /24
FastEthernet0/0.20
172.17.20.1 /24
FastEthernet0/0.99
172.17.99.1 /24
FastEthernet0/1
10.0.0.2/24
SwitchA-1
Vlan99
172.16.99.2
SwitchB-1
Vlan99
172.17.99.2
Step 1: Build the Packet Tracer Topology.
Open a new PT file and use the device and connections tools in PT to build the topology shown on the first page of this lab. The IP phones at site A will be receiving Power over Ethernet (PoE) from the switch but the IP phones at site B should be configured with power supplies.
Step 2: Perform basic device configuration.
On each router and switch:
· Set the hostname as indicated on the topology diagram
· Set the enable secret to class
· Disable DNS lookups
· Set a Telnet and Console password of cisco
· Set IP addresses as indicated on the above chart
On each switch:
· Create VLAN 10 with the name VOICE
· Create VLAN 20 with the name DATA
· Create VLAN 99 with the name MANAGEMENT
On each PC:
· Configure to receive IP address via DHCP
Step 3: Configure DHCP service on the routers.
The VoIP devices and PCs in PT need to receive IP addressing information by DHCP. Each router will need to act as the DHCP server for its location. We will be separating the voice and data networks at each location so we will need two DHCP pools. The special DHCP option 150 is used to send the CUCME address to the V ...
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CCNA Voice Primer MaterialsCCNA Voice Primer MaterialsVo.docxtidwellveronique
CCNA Voice Primer Materials
CCNA Voice Primer Materials
Voice Primer Packet Tracer Lab
Topology
Fa0/1
Fa0/1
Fa0/4
Fa0/1
Fa0/3
Fa0/2
Fa0/3
Fa0/2
Fa0/1
Fa0/0
Fa0/0
Objective
Use Packet Tracer to configure Cisco Unified Communications Manager Express (CUCME) in a basic two site topology.
Background
Cisco Unified Communications Manager Express (CUCME) is VoIP call management software which runs within the router IOS. In this lab you will practice some of the basic CUCME and voice related configuration commands which would enable IP and analog phones at two locations to communicate. You will also apply many of the configuration skills learned in your CCNA curriculum.
Note: Packet Tracer (PT) is a simulation tool not an emulation tool. It is somewhat limited in its capabilities, especially in the VoIP area. Many commands, especially show and debug commands, which could be utilized to troubleshoot this lab are not supported in the PT environment. You may optionally use physical hardware for a richer experience with this lab if you have access to the appropriate hardware and software.
Note: This lab is introducing concepts which are probably not familiar to you. Be sure to read and follow all of the directions carefully or things will probably not work as you expect.
Required Resources
You will need the following tools to complete this lab:
· Packet Tracer software version 5.3.3 or later
IP Addressing Table
Device
Interface
Address
RouterA-1
FastEthernet0/0
n/a
FastEthernet0/0.10
172.16.10.1 /24
FastEthernet0/0.20
172.16.20.1 /24
FastEthernet0/0.99
172.16.99.1 /24
FastEthernet0/1
10.0.0.1/24
RouterB-1
FastEthernet0/0
n/a
FastEthernet0/0.10
172.17.10.1 /24
FastEthernet0/0.20
172.17.20.1 /24
FastEthernet0/0.99
172.17.99.1 /24
FastEthernet0/1
10.0.0.2/24
SwitchA-1
Vlan99
172.16.99.2
SwitchB-1
Vlan99
172.17.99.2
Step 1: Build the Packet Tracer Topology.
Open a new PT file and use the device and connections tools in PT to build the topology shown on the first page of this lab. The IP phones at site A will be receiving Power over Ethernet (PoE) from the switch but the IP phones at site B should be configured with power supplies.
Step 2: Perform basic device configuration.
On each router and switch:
· Set the hostname as indicated on the topology diagram
· Set the enable secret to class
· Disable DNS lookups
· Set a Telnet and Console password of cisco
· Set IP addresses as indicated on the above chart
On each switch:
· Create VLAN 10 with the name VOICE
· Create VLAN 20 with the name DATA
· Create VLAN 99 with the name MANAGEMENT
On each PC:
· Configure to receive IP address via DHCP
Step 3: Configure DHCP service on the routers.
The VoIP devices and PCs in PT need to receive IP addressing information by DHCP. Each router will need to act as the DHCP server for its location. We will be separating the voice and data networks at each location so we will need two DHCP pools. The special DHCP option 150 is used to send the CUCME address to the V ...
Matrix Telecom Solutions: ETERNITY NE - IP-PBXMatrix Comsec
Matrix Presents, ETERNITY NE – The Next Generation IP-PBX built to mature today’s nascent businesses into flourished enterprises, breaking the confines of conventional telephony systems. Right from its perception, each and every attribute of ETERNITY NE revolves around the needs of the small businesses. ETERNITY NE brings complete synergy of the wired, wireless and packet based communication into the SMB premise. The multi-functional persona of NE wipes out the need of investing in multiple devices. With the superior features that it delivers, it puts any small business at par to compete actively with the constantly evolving and challenging surrounding.
Building VoIP service now, for tomorrow - By Doug HillVoiceSA
In today's business world it is vitally important to develop service based on products that will carry us for the next 10 years. Learn how to deploy IP based voice services now and for the future.
net2phone presents an opportunity to upgrade your business phone system. Migrating to the cloud – via net2phone - will provide significant cost savings and the ability to communicate more effectively.
Kubernetes & AI - Beauty and the Beast !?! @KCD Istanbul 2024Tobias Schneck
As AI technology is pushing into IT I was wondering myself, as an “infrastructure container kubernetes guy”, how get this fancy AI technology get managed from an infrastructure operational view? Is it possible to apply our lovely cloud native principals as well? What benefit’s both technologies could bring to each other?
Let me take this questions and provide you a short journey through existing deployment models and use cases for AI software. On practical examples, we discuss what cloud/on-premise strategy we may need for applying it to our own infrastructure to get it to work from an enterprise perspective. I want to give an overview about infrastructure requirements and technologies, what could be beneficial or limiting your AI use cases in an enterprise environment. An interactive Demo will give you some insides, what approaches I got already working for real.
DevOps and Testing slides at DASA ConnectKari Kakkonen
My and Rik Marselis slides at 30.5.2024 DASA Connect conference. We discuss about what is testing, then what is agile testing and finally what is Testing in DevOps. Finally we had lovely workshop with the participants trying to find out different ways to think about quality and testing in different parts of the DevOps infinity loop.
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3. Introduction
• Poly wireless DECT IP Phone
Solution
• Poly Rove B2 Base Station
• Poly Rove B4 Base Station
• Poly Rove 30 Handset
• Poly Rove 40 Handset
• Poly Rove R8 Repeater
4. Poly Rove –Base Station and Repeaters
1. Rove B2:
• DECT range Indoor up to 50m and outdoor up to
300m
• Up to 20 Handsets (Single/Dual Cell)
• Up to 10 Simultaneous Calls (Single Cell)
• Up to 20 Simultaneous Calls (Dual Cell)
• Up to 20 SIP Registrations
*Blueface Template is designed for 10 Lines
2. Rove B4:
• DECT range Indoor up to 50 m and outdoor up to 300
m.
• Up to 30 Handsets per Base Station
• Up to 8 Simultaneous Calls per Base Station
• Up to 1000 Handsets per System
• Up to 1000 SIP Registrations per System
• Up to 2000 Simultaneous Calls per System
3. Rove R8 Repeater
• Extend range between base station
and handset by 50 m indoor and
300 m outdoor
• Pairing up to six repeaters for each
Poly Rove B2 base station
• Pairing up to three repeaters for
each Poly Rove B4 base station
• Automatically hand-off calls
between repeaters
5. Poly Rove –Handsets
1. Rove R30:
• Multiple Lines Support for Handsets (20 lines
per HS)
Multilingual user interface
Dedicated 3.5 mm standard headset port
2. Rove R40:
• Multiple Lines Support for Handsets (20 lines
per HS)
• Multilingual user interface
• Dedicated 3.5 mm standard headset port
• Bluetooth® headset compatibility
6. Poly Rove
Provisioning
1. On the Blueface UC portal template
"Poly Rove B2" is created
2. The MAC address of Base Station B2
or B4 to be used for provisioning
3. Once DECT base station is provisioned
successfully the LED will turn solid
green.
4. This will add one line to DECT base
station
5. The line will become active when
Handset is paired successfully to
Base Station
7. Pairing Base R2 with handsets R30, R40
• On the wireless handset R30 or R40, go to Menu > Settings
• Select Connectivity > Easy Registration
• Once registered successfully a message "Registration Success!" Will pop-up on handset
• To add additional handsets to same Base Station.
• On the already registered handset Select Connectivity > Easy Registration
• At the message "? Add another device to the system?" Select Yes
• One the new handset which you which to pair go to > Settings Connectivity > Easy Registration
• Once registered successfully a message "Registration Success!" Will pop-up on both the handsets
8. Repeaters R8
• Power all the repeaters you want to pair.
The status indicator on the repeaters flash green when they are
in pairing mode.
• On the already registered wireless handset, go
to Menu > Settings .
• Select Connectivity > Easy Registration.
• At the message "? Add another device to the system?" Select Yes
The Poly Rove base station searches for a repeater in pairing
mode and assigns it to the first available index. The repeater's
status indicator displays solid green when it's paired with a base
station.
9. Calling Features
• Calling Features
• Support upto 10 lines per base station with independent realms,
transport mode (TCP, UDP & TLS)
• Inbound, outbound, transfer, conference.
• DND
• BLF
• Voicemail