Azure Networking Workshop Course Overview

Azure Networking Workshop Course Overview

The Azure Networking Workshop course is designed to provide learners with comprehensive knowledge and practical skills in managing and implementing networking solutions in the Microsoft Azure environment. This course covers a wide range of topics including the creation and configuration of virtual networks, load balancing, VPN connectivity, traffic management, network security, and performance optimization.

Starting with an introduction to Azure Virtual Network and various load-balancing solutions like Azure Load Balancer and Azure Application Gateway, the course progresses through hands-on lessons on creating and securing virtual networks, establishing VPN connections, and using Azure Traffic Manager for high availability. It also delves into advanced features such as Azure Network Watcher for monitoring, Azure Firewall for robust network security, and Azure DDoS Protection to safeguard against distributed denial-of-service attacks.

By participating in the AZ 700 training, learners will gain the skills necessary to design, implement, and manage Azure networking solutions, making the AZ 700 course an essential step for professionals aiming to specialize in Azure networking services. With best practices for Azure Networking emphasized throughout, participants will be well-prepared to optimize network performance and ensure security within their Azure infrastructure.

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Course Prerequisites

The Azure Networking Workshop course is designed to provide students with a comprehensive understanding of networking features on the Azure platform. To ensure that participants can fully benefit from the course content, the following minimum required prerequisites are recommended:


  • Basic understanding of networking concepts, including TCP/IP, DNS, VPNs, firewalls, and load balancers.
  • Familiarity with the Azure platform, including navigation of the Azure portal and basic Azure services.
  • Experience with setting up and managing virtual networks in a cloud environment, or willingness to learn these concepts.
  • Knowledge of Windows Server and Linux operating systems, as Azure services may interact with these platforms.
  • Ability to use PowerShell and the Azure CLI for basic scripting and automation tasks.

These prerequisites are intended to provide a foundation upon which the course material will build. A solid understanding of the above concepts will allow students to actively engage with the course content and apply the lessons effectively in real-world scenarios.


Target Audience for Azure Networking Workshop

The Azure Networking Workshop is designed for IT professionals focused on cloud infrastructure and network management within Azure.


Target Audience for the Azure Networking Workshop:


  • Network Engineers and Architects
  • Cloud Solutions Architects
  • IT Infrastructure Managers
  • Systems Administrators with a focus on cloud services
  • DevOps Engineers managing Azure resources
  • Security Engineers with a focus on cloud networks
  • Technical Support Engineers for Azure networking solutions
  • IT Professionals preparing for Azure certification exams
  • Software Developers interested in Azure infrastructure and networking
  • IT Project Managers overseeing Azure-based projects
  • Data Center Technicians transitioning to cloud platforms
  • Enterprise Architects planning cloud networking strategies
  • IT Consultants offering services in cloud solutions and networking


Learning Objectives - What you will Learn in this Azure Networking Workshop?

Introduction to the Course's Learning Outcomes:

Gain practical knowledge in Azure Networking to design, implement, and manage robust network architectures on Microsoft Azure, ensuring scalability, security, and performance.

Learning Objectives and Outcomes:

  • Understand the fundamentals of Azure Virtual Networks, including network creation, IP addressing, and subnet configuration.
  • Learn to deploy and manage Azure Load Balancer for distributing traffic evenly across virtual machines.
  • Acquire the skills to set up Azure Application Gateway for application-level load balancing and SSL/TLS termination.
  • Master the creation and management of Azure VPN Gateway for secure site-to-site and point-to-site connectivity.
  • Configure and troubleshoot VPN connections to ensure secure and stable networking between Azure and on-premises environments.
  • Utilize Azure Traffic Manager to improve application availability and performance with traffic routing and load balancing strategies.
  • Implement Azure Network Watcher for network monitoring, troubleshooting, and traffic analysis to maintain network health.
  • Establish Azure Firewall to protect Azure Virtual Network resources with advanced network rules and application rules configuration.
  • Protect network resources from Distributed Denial of Service (DDoS) attacks with Azure DDoS Protection, including setting up monitoring and alerts.
  • Apply best practices for Azure Networking, focusing on designing for scalability, security, and optimizing network performance.

Technical Topic Explanation

Virtual networks

Virtual networks allow computers and other devices to interact as though connected to the same physical network, despite being geographically dispersed. Essentially, they create an isolated network on the cloud, where you can manage applications and services securely. These networks provide both flexibility and scalability in configuring and managing your IT resources, crucial for implementing complex systems like Azure DevOps or integrating solutions such as Azure Data Factory. These capabilities are fundamental, especially when training for certifications like AZ-900 or AZ-700, focusing on mastering Microsoft Azure's environment and services.

Load balancing

Load balancing is a technique used in computing to distribute incoming network traffic across multiple servers. This ensures no single server bears too much demand. By spreading the load, it increases the responsiveness and availability of applications or websites. It's crucial for maintaining optimal service performance and preventing server overloads, which can lead to failures. Load balancers can be hardware-based or software-defined and are an essential component in managing data traffic efficiently. In environments like Azure, utilizing load balancing strategies ensures robust and scalable cloud application deployment, relevant to those seeking az 900 training or azure devops certification.

VPN connectivity

VPN connectivity establishes a secure and private network link over the public internet by encrypting the data sent between devices. This means that even if you are using a public Wi-Fi, your data travels securely as if you were connected to your private network at home or at the office. VPNs are crucial for maintaining privacy and securing data against potential cyber threats, making them vital for remote workers and businesses that handle sensitive information.

Azure Virtual Network

An Azure Virtual Network is a service that provides an isolated, secure environment in Microsoft Azure. It allows you to create private networks in the cloud, where you can securely link Azure resources and virtual machines to each other, and to the internet. It's fundamental for structuring a network topology within the Azure ecosystem, ensuring that communications between resources adhere to defined policies and are protected. It serves as a critical component for deploying and managing scalable and secure cloud applications, essential for professionals looking to enhance their cloud infrastructure skills, potentially through az 700 training.

Azure Load Balancer

Azure Load Balancer is a service that helps distribute incoming network traffic across several servers to ensure no single server becomes overwhelmed, improving application reliability and responsiveness. This balancing act enhances the performance of applications hosted on the Microsoft Azure platform, maintaining smooth operation even under high load conditions. It's essential for professionals managing high-traffic applications to understand how to configure and manage this tool effectively, making Azure Load Balancer a crucial component of Azure DevOps certification and other specialized Azure training like AZ 305 and AZ 700.

Traffic management

Traffic management in technology refers to the strategies and solutions employed to manage and direct the communication over networks to avoid congestion, ensure optimal use of the available bandwidth, and maintain quality of service (QoS). The concept includes prioritizing data packets, controlling admission to networks, and managing traffic load to keep data flowing efficiently across the internet and internal networks. This ensures all users receive stable and consistent access to network resources, improving overall performance and user experience. Effective traffic management is crucial for organizations to handle large volumes of data and for services like cloud computing to operate smoothly.

Network security

Network security involves protecting a computer network from intruders, whether targeted attackers or opportunistic malware. It requires a variety of strategies and tools to defend against threats and secure data and infrastructure. Effective network security manages access to the network by safeguarding the usability, reliability, integrity, and safety of a network and its data. This field is crucial for maintaining the confidentiality, integrity, and availability of information, often necessitating professional credentials and training such as AZ 700 training or an Azure DevOps certification to ensure practitioners are up-to-date with the latest defensive techniques and technologies.

Performance optimization

Performance optimization in technology involves enhancing a system or application to work more efficiently, faster, and with fewer resources. It encompasses evaluating and improving various aspects like speed, memory usage, and data handling. This is crucial for systems like Azure Data Factory, where efficient data integration and transformation can streamline business processes. Techniques often include refining code, optimizing data queries, and using better algorithms. Professionals interested in this field can benefit from training programs like AZ 305 training, Azure DevOps certification, and other specialized courses that focus on optimizing application performance and system configurations.

Azure Application Gateway

Azure Application Gateway is a web traffic load balancer that enables you to manage traffic to your web applications. It optimizes app server farm delivery while increasing application security with a Web Application Firewall. It routes traffic based on URL, ensuring the right requests go to the right servers, improving performance and resource use. Application Gateway also supports SSL termination, enabling secure connections from clients to the gateway while easing backend server load. This service integrates seamlessly with Azure's features, facilitating scalable and secure application delivery.

Azure Traffic Manager

Azure Traffic Manager is a service that directs user traffic to the most appropriate service endpoint based on its traffic-routing method. It enhances application responsiveness and availability by distributing traffic across global Azure regions, thereby improving the user experience. Traffic Manager continuously monitors the service endpoint health and can quickly reroute traffic to maintain performance during failures or maintenance activities. Ideal for optimizing traffic flow to applications running in different locations, it complements tools like Azure DevOps certification for efficient cloud operations and management.

Azure Network Watcher

Azure Network Watcher is a tool designed for monitoring, diagnosing, and gaining insights into network performance and health within Microsoft Azure. It helps troubleshoot network issues efficiently by providing features like packet capturing, next hop analysis, and connection monitoring. This service is crucial for professionals aiming to ensure optimal operation of their Azure environments, particularly useful for those undergoing AZ 700 training. Azure Network Watcher aids in maintaining secure and efficient network traffic flow, vital for applications relying on Azure infrastructure.

Azure Firewall

Azure Firewall is a cloud-based security service that provides centralized network protection for your resources within the Microsoft Azure ecosystem. It acts as a barrier, filtering incoming and outgoing traffic based on predefined security rules, ensuring authorized access while blocking malicious activities. This service supports scalability, high availability, and integrates seamlessly with other Azure services for enhanced security management and compliance tracking. Azure Firewall is essential for businesses aiming to protect their cloud infrastructure while maintaining high operational standards and data integrity.

Azure DDoS Protection

Azure DDoS Protection defends against Distributed Denial of Service (DDoS) attacks, which intentionally flood a network with excessive traffic to disrupt service. Azure's service provides enhanced security measures by analyzing traffic and applying mitigations to safeguard applications. It helps maintain availability and performance, automatically activating during an attack without the need for user intervention. This feature integrates seamlessly with Azure's security management, offering detailed insights and reports for a robust defense strategy. For professionals looking to manage and secure Azure environments effectively, it's a critical component of comprehensive Azure training courses like AZ 305 training.

Target Audience for Azure Networking Workshop

The Azure Networking Workshop is designed for IT professionals focused on cloud infrastructure and network management within Azure.


Target Audience for the Azure Networking Workshop:


  • Network Engineers and Architects
  • Cloud Solutions Architects
  • IT Infrastructure Managers
  • Systems Administrators with a focus on cloud services
  • DevOps Engineers managing Azure resources
  • Security Engineers with a focus on cloud networks
  • Technical Support Engineers for Azure networking solutions
  • IT Professionals preparing for Azure certification exams
  • Software Developers interested in Azure infrastructure and networking
  • IT Project Managers overseeing Azure-based projects
  • Data Center Technicians transitioning to cloud platforms
  • Enterprise Architects planning cloud networking strategies
  • IT Consultants offering services in cloud solutions and networking


Learning Objectives - What you will Learn in this Azure Networking Workshop?

Introduction to the Course's Learning Outcomes:

Gain practical knowledge in Azure Networking to design, implement, and manage robust network architectures on Microsoft Azure, ensuring scalability, security, and performance.

Learning Objectives and Outcomes:

  • Understand the fundamentals of Azure Virtual Networks, including network creation, IP addressing, and subnet configuration.
  • Learn to deploy and manage Azure Load Balancer for distributing traffic evenly across virtual machines.
  • Acquire the skills to set up Azure Application Gateway for application-level load balancing and SSL/TLS termination.
  • Master the creation and management of Azure VPN Gateway for secure site-to-site and point-to-site connectivity.
  • Configure and troubleshoot VPN connections to ensure secure and stable networking between Azure and on-premises environments.
  • Utilize Azure Traffic Manager to improve application availability and performance with traffic routing and load balancing strategies.
  • Implement Azure Network Watcher for network monitoring, troubleshooting, and traffic analysis to maintain network health.
  • Establish Azure Firewall to protect Azure Virtual Network resources with advanced network rules and application rules configuration.
  • Protect network resources from Distributed Denial of Service (DDoS) attacks with Azure DDoS Protection, including setting up monitoring and alerts.
  • Apply best practices for Azure Networking, focusing on designing for scalability, security, and optimizing network performance.