Systematic

Implementing Cisco Enterprise Advanced Routing and Services (300-410 ENARSI) 課程

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Course Information

Schedules
  • 15 Feb 2022 (Tue) - 1 Apr 2022 (Fri) 7:00 PM - 10:00 PM
Registration period
30 Nov 2021 (Tue) - 14 Feb 2022 (Mon)
Price
HKD 7,100
(超震撼:凡於 2021年 12月 3日 (五) 或之前報讀本課程,原價 $7,100,現只需 $5,680!)
Course Level
Study Mode
Duration
54 Hour(s)
Language
Cantonese
Location
九龍旺角亞皆老街 109 號皆旺商業大廈 18 樓 1802 - 1807 室
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Course Overview

Cisco Systems Inc. 是全球最大的網路設備生產商,在世界各地設有 120 個以上的分支據點。 Cisco 的產品包括 Switch (交換器)、LAN Router (區域網路由器)、WAN Router (廣域網路由器) 及 IOS (Internetwork Operating System) 網路管理操作系統等。全球的大企業、銀行、大學和政府機構之網路設備,無一不採用 Cisco 的產品,因此,管理 Cisco 網路設備便成為一門專業的學問。


而 Implementing Cisco Enterprise Advanced Routing and Services (300-410 ENARSI) 課程 實際上是CCNP Enterprise 國際認可證書課程 (Full Track) 的第二科,由本中心的全職 CCIE (Cisco Certified Internetwork Expert) 團隊籌備多時,精心編排。由上堂、溫習、實習、考試研習、做試題至最後考試,均為你度身訂造,作出有系統的編排。務求真正教識你,又令你考試及格。

What You’ll Learn

課程名稱:Implementing Cisco Enterprise Advanced Routing and Services (300-410 ENARSI) 課程

- 簡稱:ENARSI Training Course

ENARSI: Implementing Cisco Enterprise Advanced Routing and Services

1. Routing Basics

1.1. Routing Protocols
1.1.1. Overview
1.1.2. Exterior Gateway Protocol (EGP)
1.1.3. Interior Gateway Protocol (IGP)
1.2. Routing Table
1.2.1. Administrative Distance (AD)
1.2.2. Load Balancing Routes
1.2.3. Cisco Express Forwarding (CEF)
1.3. Loop Prevention Mechanism
1.3.1. Distance Vector Routing Protocols
1.3.2. Link State Routing Protocols
1.3.3. Path Vector Routing Protocols
1.4. Fault Detection Mechanism

2. Enhanced Interior Gateway Routing Protocol (EIGRP)

2.1. Overview
2.1.1. EIGRP Hello and Neighboring
2.1.2. EIGRP Metric
2.1.3. DUAL Algorithm
2.1.4. Unequal-Cost Load Balancing
2.1.5. Route Summarization
2.2. EIGRP Authentication
2.3. EIGRP Neighboring in Non-Broadcast Network
2.4. EIGRP Query and Stuck-In-Active
2.5. Route Filtering
2.5.1. Distribute List
2.5.2. Prefix List
2.5.3. Route Map
2.6. EIGRP Stub
2.7. Route Leaking
2.8. EIGRP Named Mode
2.9. EIGRP Configuration Example
2.9.1. Exercise for EIGRP
2.9.2. EIGRP Query Example

3. Open Shortest Path First (OSPF)

3.1. Overview
3.1.1. OSPF Neighboring
3.1.2. Areas and LSA Types
3.1.3. Route Summarization and Filtering
3.1.4. OSPF Metric / Cost
3.2. OSPF Authentication
3.3. Virtual Link
3.4. OSPF Stub Area
3.4.1. Stub Area
3.4.2. Totally Stub Area
3.4.3. Not So Stubby Area (NSSA)
3.4.4. Totally Not So Stubby Area.
3.4.5. Summary
3.5. OSPF Network Types
3.5.1. Overview
3.5.2. Point-to-Point
3.5.3. Broadcast
3.5.4. Loopback
3.5.5. Non-Broadcast MultiAccess / NBMA
3.5.6. Point-to-Multipoint
3.5.7. Point-to-Multipoint Non-broadcast
3.5.8. Summary
3.6. OSPF for IPv6
3.7. Configuration Examples
3.7.1. Exercise for OSPF
3.7.2. More about Route Filtering in OSPF (參考章節)
3.7.3. EIGRP Example for Partially Meshed Network

4. Border Gateway Protocol (BGP)

4.1. Overview
4.1.1. BGP Peering
4.1.2. BGP Routing Updates
4.1.3. BGP Path Attributes
4.1.4. BGP Best Path Selection Algorithm
4.2. More about BGP Peering
4.3. BGP Route Summarization
4.3.1. Summarization before Entering BGP Table
4.3.2. Summarization by BGP
4.3.3. Summarization with as-set
4.3.4. Summarization with Route Leaking
4.4. BGP Route Filtering
4.4.1. Route Filtering Configuration
4.4.2. BGP Route Refresh
4.5. BGP Dampening
4.6. iBGP
4.6.1. iBGP Peering
4.6.2. Route Reflector
4.6.3. Confederation
4.6.4. BGP Next Hop and Synchronization Rule
4.7. BGP for IPv6
4.8. Exercise for BGP

5. Redistribution

5.1. Overview
5.2. Parameters forredistribute Command
5.2.1. Types of Routes
5.2.2. Metric Value
5.2.3. Other Parameters
5.2.4. Example
5.3. Filtering
5.4. Problems in Redistribution
5.4.1. Only One Router at Routing Protocols’ Boundary
5.4.2. Two Routers at Routing Protocols’ Boundary
5.4.3. Two Routers performing Redistribution
5.4.4. More Complex Redistribution Problems
5.5. Route Tagging
5.6. Exercise for Redistribution

6. Policy Based Routing

6.1. Overview
6.2. PBR Configuration
6.2.1. Sample Route Map for PBR
6.2.2. match condition in Route Map for PBR
6.2.3. set in Route Map for PBR
6.3. Exercise for PBR

7. MPLS

7.1. MPLS
7.1.1. Overview
7.1.2. MPLS Label
7.1.3. Label Assignment and LIB
7.1.4. Label Exchange
7.1.5. Label Forwarding Information Base (LFIB)
7.1.6. Label Operations
7.1.7. Penultimate Hop Popping (PHP)
7.1.8. MPLS Configuration
7.2. MPLS VPN
7.2.1. Overview
7.2.2. VRF
7.2.3. MP-BGP
7.2.4. More about Setup / Feature for MPLS VPN
7.3. Exercise for MPLS

8. VRF Lite

8.1. Overview
8.2. Examples for Connecting Two VRF-Lite Routers
8.3. Import / Export Routes Between VRFs
8.4. Exercise for VRF Lite
8.5. Other Ways for Inter-VRF Routing
8.5.1. Inter-VRF Static Routes
8.5.2. Inter-VRF PBR

9. DMVPN

9.1. Overview
9.2. mGRE
9.3. NHRP
9.4. IPsec
9.4.1. Background
9.4.2. Traditional IPsec VPN Setup (參考章節)
9.4.3. IPsec Setup for DMVPN
9.5. Additional DMVPN Settings
9.5.1. Multicast Traffic
9.5.2. NHRP Tuning
9.5.3. Working with OSPF
9.5.4. Working with EIGRP
9.5.5. DMVPN Phase 3
9.6. Exercise for DMVPN

10. Security

10.1. IPv6 Security
10.1.1. IPv6 Access List
10.1.2. IPv6 First Hop Security (FHS)
10.2. Unicast Reverse Path Forwarding (uRPF)
10.2.1. Background
10.2.2. Mechanism and Configuration of uRPF
10.2.3. Options for Configuring uRPF
10.3. Access Control / Policy for Router’s Service
10.3.1. Inbound ACL
10.3.2. Service’ Access Control by ACL
10.3.3. Service’ Access Control by Authentication
10.3.4. Control Plane Policing (CoPP)
10.4. Exercise for Security

11. Monitoring and Troubleshooting

11.1. Config Log Archive
11.1.1. Overview
11.1.2. Configuration Settings
11.1.3. Password / Key Protection
11.1.4. Sending to Syslog
11.1.5. Time Information
11.2. IP SLA
11.2.1. Overview
11.2.2. Configuring Reaction Configuration
11.2.3. Configuring Track Object
11.3. Other Monitoring Tools
11.3.1. SNMP
11.3.2. SNMP Trap
11.3.3. NetFlow
11.4. DHCP
11.4.1. DHCP Operations
11.4.2. DHCP Configuration
11.4.3. DHCP Relay Agent
11.5. Exercise for Monitoring / Troubleshooting
11.6. Troubleshooting with Cisco DNA Center Assurance



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