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Insoft Services er en af de få uddannelsesudbydere i EMEAR, der tilbyder hele spektret af Cisco-certificering og specialiseret teknologiuddannelse.

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Oplev en blandet læringsmetode, der kombinerer det bedste fra instruktørstyret træning og e-læring i eget tempo for at hjælpe dig med at forberede dig til din certificeringseksamen.

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Cisco Learning Credits

Cisco Learning Credits (CLCs) er forudbetalte træningskuponer, der indløses direkte med Cisco, og som gør det nemmere at planlægge din succes, når du køber Cisco-produkter og -tjenester.

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Cisco Continuing Education Program tilbyder alle aktive certificeringsindehavere fleksible muligheder for at gencertificere ved at gennemføre en række kvalificerede træningselementer.

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Certificerede medarbejdere er VÆRDSATTE aktiver. Udforsk Ciscos officielle digitale læringsbibliotek for at uddanne dig selv gennem optagede sessioner.

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Cisco Business Enablement

Cisco Business Enablement Partner Program fokuserer på at skærpe Cisco Channel Partners og kunders forretningsmæssige færdigheder.

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Fortinet-certificeringer

Fortinet Network Security Expert (NSE) -programmet er et otte-niveau uddannelses- og certificeringsprogram for at undervise ingeniører i deres netværkssikkerhed for Fortinet FW-færdigheder og erfaring.

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Insoft er anerkendt som Autoriseret Fortinet Training Center på udvalgte steder på tværs af EMEA.

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Tjek vores ATC-status på tværs af udvalgte lande i Europa.

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Fortinet Professionelle Services

Globalt anerkendte team af certificerede eksperter hjælper dig med at gøre en mere jævn overgang med vores foruddefinerede konsulent-, installations- og migreringspakker til en lang række Fortinet-produkter.

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Insoft Services tilbyder Microsoft-undervisning i EMEAR. Vi tilbyder Microsoft tekniske kurser og certificeringskurser, der ledes af instruktører i verdensklasse.

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Extreme træning

Find all the Extreme Networks online and instructor led class room based calendar here.

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Som autoriseret uddannelsespartner (ATP) sikrer Insoft Services, at du får de højeste uddannelsesstandarder, der findes.

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Vi leverer innovativ og avanceret support til design, implementering og optimering af IT-løsninger. Vores kundebase omfatter nogle af de største Telcos globalt.

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  • +45 32 70 99 90
  • ROKD – Red Hat, OpenShift, Kubernetes, Docker in Juniper Cloud Deployments

    Duration
    4 Dage
    Delivery
    (Online Og På stedet)
    Price
    Pris på forespørgsel

    This four-day course is designed to provide students with the background knowledge required to work with the Juniper Cloud products. Students will gain in-depth knowledge of how to use Linux Kernel-based Virtual Machines (KVM), Red Hat OpenStack Platform, Docker, Kubernetes, and Red Hat OpenShift. Through demonstrations and hands-on labs, students will gain experience with the features of each of these technologies. It should be noted that this course does not cover Contrail Networking. This course is based on Red Hat Linux version 7.8, RHOSP version 13, Docker version  3:19.03.12-3.el7, Kubernetes version 1.18.6-0, and Red Hat OpenShift version 3.11.

    • List the various open source technologies and their basic differences.
    • Describe how each open source technology plays a role in a Contrail solution.
    • Describe the basic architecture of Red Hat Linux and other distributions.
    • Configure namespaces and virtual networking using Linux and OVS bridges.
    • Describe the function of libvirt.
    • Instantiate virtual machines using Virtual Machine Manager.
    • Create and import and OVS bridge into libvirt.
    • Instantiate a VXLAN tunnel between OVS bridges.
    • Instantiate virtual machines using virsh.
    • Describe the purpose of OpenStack.
    • Identify the function of each of the main OpenStack projects.
    • Use the OpenStack CLI.
    • Describe the OpenStack networking features available to workloads.
    • Describe traditional OpenStack block and object storage.
    • Describe how Ceph can be integrated with OpenStack.
    • Use Ceph storage to better scale an RHOSP deployment.
    • Describe the usage of TripleO in a RHOSP deployment.
    • Describe the functions of the undercloud.
    • Describe the functions of the overcloud.
    • Describe the networks used in an RHOSP deployment.
    • Describe how to deploy the undercloud.
    • Describe how to deploy the overcloud while using YAML files.
    • Describe the benefits of containers.
    • Describe the reasons to use Docker.
    • Describe the basic CLI commands for Docker.
    • Describe how to run a container in Docker.
    • Describe the difference between attached and detached mode.
    • Describe how to interact with Dockerhub.
    • Describe how to network a Docker container.
    • Describe how to inspect and view the logs of a Docker container.
    • Describe how to build and image using a Dockerfile.
    • Describe the difference between CMD and ENTRYPOINT.
    • Describe how to compose a Docker container.
    • Describe how to build a private registry.
    • Describe the k8s architecture.
    • Describe the usage of k8s pods.
    • Describe the basic usage of the k8s CLI.
    • Instantiate a pod using YAML.
    • Describe the function replication controllers and sets.
    • Describe how to create a deployment.
    • Describe networking in k8s.
    • Describe how to use namespaces with k8s.
    • Describe the basic differences between k8s and OpenShift.
    • Describe the basic CLI commands of OpenShift.
    • Describe the basic functionality of the OpenShift web UI.

    DAY 1

    1. Course Introduction

     

    2 Open Source Cloud Technologies

    • Open Source Technologies Overview
    • Juniper’s Usage of Open Source Technologies (Contrail, CSO, EVO, etc.)

     

    3. Linux Architecture

    • Hardware, Kernel, OS Interaction
    • Namespaces
    • Cgroups
    • Virtual Networking

     

    Lab 1: Linux Namespaces and Virtual Networking

     

    4. Linux Virtualization

    • QEMU/KVM
    • Libvirt
    • Virtual Machine Manager
    • Virsh
    • OVS Bridging with VXLAN tunneling

     

    Lab 2: Linux Virtualization

     

    DAY 2

    5. OpenStack Fundamentals

    • OpenStack Overview
    • OpenStack Projects
    • OpenStack CLI

     

    Lab 3: Exploring the OpenStack CLI

     

    6. OpenStack Configuration

    • OpenStack Interface Options
    • OpenStack Heat Templates
    • OpenStack Configuration

     

    Lab 4: OpenStack Configuration

     

    7. OpenStack Networking

    • Networks
    • Routers
    • Security Groups
    • Load Balancers
    • Floating IPs
    • Trunks
    • Network Topology

     

    Lab 5: OpenStack Networking

     

    DAY 3

    8. OpenStack Storage

    • Default OpenStack Storage
    • Ceph Storage
    • Ceph Integration with OpenStack
    • Launch VMs using Ceph for Block and Object Storage

     

    Lab 6: Ceph Storage

     

    9. RHOSP

    • OpenStack over OpenStack (TripleO)
    • Deploying the Undercloud
    • Deploying the Overcloud
    • Working with YAML files and RHOSP
    • Troubleshooting RHOSP after installation

     

    Lab 7: RHOSP

     

    10. Docker Basics

    • Why Docker and Containers?
    • What Is a Container?
    • Docker Overview
    • Working with Docker (dockerhub, installation, image versus container)
    • Getting Started with the Docker CLI

     

    Lab 8: Getting to Know Docker

     

    11. Advanced Docker

    • More Commands
    • Port Mapping
    • Container Details
    • Passing Environment Variables
    • Creating Your Own Image
    • ENTRYPOINT versus CMD
    • Understanding Docker Networking
    • Docker Storage
    • Composing Docker Containers
    • Registries
    • Docker Engine

     

    Lab 9: Composing Docker Containers

     

    DAY 4

    12. Kubernetes Basics

    • K8s Overview
    • K8s Architecture
    • Pods
    • kubectl
    • Using YAML to Create a Pod

     

    Lab 10: Creating a Docker Pod

     

    13. K8s Advanced Topics

    • Replica Controller and ReplicaSet
    • Deployments
    • Networking K8s
    • Services
    • Working with Namespaces

     

    Lab 11: ReplicaSets and Networking in K8s

     

    14. Red Hat OpenShift

    • OpenShift Overview
    • OpenShift Flavors
    • OpenShift CLI
    • OpenShift Webconsole
    • Deploying Containers with OpenShift
    • Behind the Scenes App Dev
    • Scaling Up New Hosts

    Lab 12: OpenShift Container Orchestration

    Individuals responsible for working with software-defined networking solutions in data center, service provider, and enterprise network environments

    • Basic networking knowledge
    • Basic TCP/IP skills
    • General understanding of data center virtualization

    This four-day course is designed to provide students with the background knowledge required to work with the Juniper Cloud products. Students will gain in-depth knowledge of how to use Linux Kernel-based Virtual Machines (KVM), Red Hat OpenStack Platform, Docker, Kubernetes, and Red Hat OpenShift. Through demonstrations and hands-on labs, students will gain experience with the features of each of these technologies. It should be noted that this course does not cover Contrail Networking. This course is based on Red Hat Linux version 7.8, RHOSP version 13, Docker version  3:19.03.12-3.el7, Kubernetes version 1.18.6-0, and Red Hat OpenShift version 3.11.

    • List the various open source technologies and their basic differences.
    • Describe how each open source technology plays a role in a Contrail solution.
    • Describe the basic architecture of Red Hat Linux and other distributions.
    • Configure namespaces and virtual networking using Linux and OVS bridges.
    • Describe the function of libvirt.
    • Instantiate virtual machines using Virtual Machine Manager.
    • Create and import and OVS bridge into libvirt.
    • Instantiate a VXLAN tunnel between OVS bridges.
    • Instantiate virtual machines using virsh.
    • Describe the purpose of OpenStack.
    • Identify the function of each of the main OpenStack projects.
    • Use the OpenStack CLI.
    • Describe the OpenStack networking features available to workloads.
    • Describe traditional OpenStack block and object storage.
    • Describe how Ceph can be integrated with OpenStack.
    • Use Ceph storage to better scale an RHOSP deployment.
    • Describe the usage of TripleO in a RHOSP deployment.
    • Describe the functions of the undercloud.
    • Describe the functions of the overcloud.
    • Describe the networks used in an RHOSP deployment.
    • Describe how to deploy the undercloud.
    • Describe how to deploy the overcloud while using YAML files.
    • Describe the benefits of containers.
    • Describe the reasons to use Docker.
    • Describe the basic CLI commands for Docker.
    • Describe how to run a container in Docker.
    • Describe the difference between attached and detached mode.
    • Describe how to interact with Dockerhub.
    • Describe how to network a Docker container.
    • Describe how to inspect and view the logs of a Docker container.
    • Describe how to build and image using a Dockerfile.
    • Describe the difference between CMD and ENTRYPOINT.
    • Describe how to compose a Docker container.
    • Describe how to build a private registry.
    • Describe the k8s architecture.
    • Describe the usage of k8s pods.
    • Describe the basic usage of the k8s CLI.
    • Instantiate a pod using YAML.
    • Describe the function replication controllers and sets.
    • Describe how to create a deployment.
    • Describe networking in k8s.
    • Describe how to use namespaces with k8s.
    • Describe the basic differences between k8s and OpenShift.
    • Describe the basic CLI commands of OpenShift.
    • Describe the basic functionality of the OpenShift web UI.

    DAY 1

    1. Course Introduction

     

    2 Open Source Cloud Technologies

    • Open Source Technologies Overview
    • Juniper’s Usage of Open Source Technologies (Contrail, CSO, EVO, etc.)

     

    3. Linux Architecture

    • Hardware, Kernel, OS Interaction
    • Namespaces
    • Cgroups
    • Virtual Networking

     

    Lab 1: Linux Namespaces and Virtual Networking

     

    4. Linux Virtualization

    • QEMU/KVM
    • Libvirt
    • Virtual Machine Manager
    • Virsh
    • OVS Bridging with VXLAN tunneling

     

    Lab 2: Linux Virtualization

     

    DAY 2

    5. OpenStack Fundamentals

    • OpenStack Overview
    • OpenStack Projects
    • OpenStack CLI

     

    Lab 3: Exploring the OpenStack CLI

     

    6. OpenStack Configuration

    • OpenStack Interface Options
    • OpenStack Heat Templates
    • OpenStack Configuration

     

    Lab 4: OpenStack Configuration

     

    7. OpenStack Networking

    • Networks
    • Routers
    • Security Groups
    • Load Balancers
    • Floating IPs
    • Trunks
    • Network Topology

     

    Lab 5: OpenStack Networking

     

    DAY 3

    8. OpenStack Storage

    • Default OpenStack Storage
    • Ceph Storage
    • Ceph Integration with OpenStack
    • Launch VMs using Ceph for Block and Object Storage

     

    Lab 6: Ceph Storage

     

    9. RHOSP

    • OpenStack over OpenStack (TripleO)
    • Deploying the Undercloud
    • Deploying the Overcloud
    • Working with YAML files and RHOSP
    • Troubleshooting RHOSP after installation

     

    Lab 7: RHOSP

     

    10. Docker Basics

    • Why Docker and Containers?
    • What Is a Container?
    • Docker Overview
    • Working with Docker (dockerhub, installation, image versus container)
    • Getting Started with the Docker CLI

     

    Lab 8: Getting to Know Docker

     

    11. Advanced Docker

    • More Commands
    • Port Mapping
    • Container Details
    • Passing Environment Variables
    • Creating Your Own Image
    • ENTRYPOINT versus CMD
    • Understanding Docker Networking
    • Docker Storage
    • Composing Docker Containers
    • Registries
    • Docker Engine

     

    Lab 9: Composing Docker Containers

     

    DAY 4

    12. Kubernetes Basics

    • K8s Overview
    • K8s Architecture
    • Pods
    • kubectl
    • Using YAML to Create a Pod

     

    Lab 10: Creating a Docker Pod

     

    13. K8s Advanced Topics

    • Replica Controller and ReplicaSet
    • Deployments
    • Networking K8s
    • Services
    • Working with Namespaces

     

    Lab 11: ReplicaSets and Networking in K8s

     

    14. Red Hat OpenShift

    • OpenShift Overview
    • OpenShift Flavors
    • OpenShift CLI
    • OpenShift Webconsole
    • Deploying Containers with OpenShift
    • Behind the Scenes App Dev
    • Scaling Up New Hosts

    Lab 12: OpenShift Container Orchestration

    Individuals responsible for working with software-defined networking solutions in data center, service provider, and enterprise network environments

    • Basic networking knowledge
    • Basic TCP/IP skills
    • General understanding of data center virtualization
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