CCENT: ICND1

Prepare for 100-105 ICND1 exam in classroom and become CCENT Cisco Certified Entry Networking Technician

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Looking for a 2-12 months training?

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Network Engineer career programme

Upcoming dates

There are no open public schedule dates for CCENT: ICND1 course. We can offer you a private training or arrange a public course for you. Contact us here and we can make arrangements for your course.

Delivery Formats

This course can be attended face to face in an open classrooms, live online virtual classroom remotely from home or office, private one-to-one and on-site for your team at your office.


Course Outline

CCENT: ICND1 course overview

The 100-105 "Interconnecting Cisco Networking Devices Part 1" (ICND1) v2 is a 90 minutes exam with 45-55 questions. The 100-105 "Interconnecting Cisco Networking Devices Part 1" (ICND1) exam is associated with the Cisco Certified Entry Network Technician (CCENT®) certification and is a tangible first step in achieving an Associate-level certification. Candidates can prepare for this exam by taking the "Interconnecting Cisco Networking Devices Part 1" (ICND1) course. This exam tests a candidate's knowledge and skills required to successfully install, operate, and troubleshoot a small branch office network.

This short CCENT fast track course is hands-on, instructor led and classroom based. This training can be taken as a part-time evening course or even on the weekends.


Who is CCENT: ICND1 training for?

  • Network Specialists
  • Network Administrators
  • Support Engineers
  • Cisco Channel Partners


Prerequisites for CCENT: ICND1 course

The knowledge and skills that a learner must have before attending this course are as follows:

  • Basic computer literacy
  • Basic Microsoft Windows navigation skills
  • Basic Internet usage skills
  • Basic e-mail usage skills
  • Basic IP address knowledge

Our MTA courses in networking can help with basics of computer networking.



What will I get?

  • Training from professional Cisco certified trainers:

    Training Dragon consultants have been implementing professional Cisco networking solutions across a range of companies for many years. Those consultants write and teach our Cisco training courses, so their experience directly informs course content.

  • Practical Projects:

    This CCENT training is designed to prepare you not only for CCENT certification, but also to train you for your next job. To do this, next to certification you will also work on real-world practical CCENT related exercises in this CCENT course. This will ensure that you can apply the knowledge gained from this course to your work environment.

  • Course Material and Practice exams:

    CCENT electronic notes are included in this course. You will also take practice exams as part of the course.

  • Course Completion Certificate:

    After completing this training you will receive CCENT course completion certificate.

  • Support and Careers Advice:

    After the course if you have any problems or questions regarding CCENT, do not hesitate to contact us. Training Dragon’s trainers and career consultants are expert in their fields and if you need any help with you career choice, please speak to one of our career consultants.

  • Pass Guarantee and Train again for Free:

    We are sure that you will pass your CCENT certification exam at first attempt. However, if you don’t, you can come back within a year and take the complete course for free.

  • Official Course Curriculum:

    This CCENT certification course is based on the official Cisco recommended course syllabus.


CCENT: ICND1 Course Contents

1.0 Network Fundamentals

1.1 Compare and contrast OSI and TCP/IP models

1.2 Compare and contrast TCP and UDP protocols

1.3 Describe the impact of infrastructure components in an enterprise network

1.3.a Firewalls

1.3.b Access points

1.3.c Wireless controllers

1.4 Compare and contrast collapsed core and three-tier architectures

1.5 Compare and contrast network topologies

1.5.a Star

1.5.b Mesh

1.5.c Hybrid

1.6 Select the appropriate cabling type based on implementation requirements

1.7 Apply troubleshooting methodologies to resolve problems

1.7.a Perform fault isolation and document

1.7.b Resolve or escalate

1.7.c Verify and monitor resolution

1.8 Configure, verify, and troubleshoot IPv4 addressing and subnetting

1.9 Compare and contrast IPv4 address types

1.9.a Unicast

1.9.b Broadcast

1.9.c Multicast

1.10 Describe the need for private IPv4 addressing

1.11 Identify the appropriate IPv6 addressing scheme to satisfy addressing requirements in a LAN/WAN environment

1.12 Configure, verify, and troubleshoot IPv6 addressing

1.13 Configure and verify IPv6 Stateless Address Auto Configuration

1.14 Compare and contrast IPv6 address types

1.14.a Global unicast

1.14.b Unique local

1.14.c Link local

1.14.d Multicast

1.14.e Modified EUI 64

1.14.f Autoconfiguration

1.14.g Anycast

2.0 LAN Switching Fundamentals

2.1 Describe and verify switching concepts

2.1.a MAC learning and aging

2.1.b Frame switching

2.1.c Frame flooding

2.1.d MAC address table

2.2 Interpret Ethernet frame format

2.3 Troubleshoot interface and cable issues (collisions, errors, duplex, speed)

2.4 Configure, verify, and troubleshoot VLANs (normal range) spanning multiple switches

2.4.a Access ports (data and voice)

2.4.b Default VLAN

2.5 Configure, verify, and troubleshoot interswitch connectivity

2.5.a Trunk ports

2.5.b 802.1Q

2.5.c Native VLAN

2.6 Configure and verify Layer 2 protocols

2.6.a Cisco Discovery Protocol

2.6.b LLDP

2.7 Configure, verify, and troubleshoot port security

2.7.a Static

2.7.b Dynamic

2.7.c Sticky

2.7.d Max MAC addresses

2.7.e Violation actions

2.7.f Err-disable recovery

3.0 Routing Fundamentals

3.1 Describe the routing concepts

3.1.a Packet handling along the path through a network

3.1.b Forwarding decision based on route lookup

3.1.c Frame rewrite

3.2 Interpret the components of routing table

3.2.a Prefix

3.2.b Network mask

3.2.c Next hop

3.2.d Routing protocol code

3.2.e Administrative distance

3.2.f Metric

3.2.g Gateway of last resort

3.3 Describe how a routing table is populated by different routing information sources

3.3.a Admin distance

3.4 Configure, verify, and troubleshoot inter-VLAN routing

3.4.a Router on a stick

3.5 Compare and contrast static routing and dynamic routing

3.6 Configure, verify, and troubleshoot IPv4 and IPv6 static routing

3.6.a Default route

3.6.b Network route

3.6.c Host route

3.6.d Floating static

3.7 Configure, verify, and troubleshoot RIPv2 for IPv4 (excluding authentication, filtering, manual summarization, redistribution)

4.0 Infrastructure Services

4.1 Describe DNS lookup operation

4.2 Troubleshoot client connectivity issues involving DNS

4.3 Configure and verify DHCP on a router (excluding static reservations)

4.3.a Server

4.3.b Relay

4.3.c Client

4.3.d TFTP, DNS, and gateway options

4.4 Troubleshoot client- and router-based DHCP connectivity issues

4.5 Configure and verify NTP operating in client/server mode

4.6 Configure, verify, and troubleshoot IPv4 standard numbered and named access list for routed interfaces

4.7 Configure, verify, and troubleshoot inside source NAT

4.7.a Static

4.7.b Pool

4.7.c PAT

5.0 Infrastructure Maintenance

5.1 Configure and verify device-monitoring using syslog

5.2 Configure and verify device management

5.2.a Backup and restore device configuration

5.2.b Using Cisco Discovery Protocol and LLDP for device discovery

5.2.c Licensing

5.2.d Logging

5.2.e Timezone

5.2.f Loopback

5.3 Configure and verify initial device configuration

5.4 Configure, verify, and troubleshoot basic device hardening

5.4.a Local authentication

5.4.b Secure password

5.4.c Access to device

5.4.c. [i] Source address

5.4.c. [ii] Telnet/SSH

5.4.d Login banner

5.5 Perform device maintenance

5.5.a Cisco IOS upgrades and recovery (SCP, FTP, TFTP, and MD5 verify)

5.5.b Password recovery and configuration register

5.5.c File system management

5.6 Use Cisco IOS tools to troubleshoot and resolve problems

5.6.a Ping and traceroute with extended option

5.6.b Terminal monitor

5.6.c Log events

View Complete Course outline

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Looking for a
2-12 months
training?

Choose

Network Engineer career programme

Our Trainers

Emiliano
Emiliano
Leads our teaching team with many years of experience in teaching web development.
Ross
Ross
Brings many years of Python and Java software development experience to classrooms.
Olu
Olu
Microsoft and Oracle certified developer with years teaching experience in Android, .NET and databases.

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