The best Microsoft AZ-220 exam simulator engine for you
To prepare to the Microsoft Azure IoT Developer test, we have different AZ-220 test dump versions to satisfy examinees' exam need. The AZ-220 practice test dumps of common PDF version are very convenient to use. You just download the files to your computer, your phone, ipad and any electronic devices to read. It just likes a AZ-220 study guide book. If you are used to reading paper book, suggest you print the electronic PDF file out.
When the AZ-220 practice test has a lot Microsoft Azure IoT Developer exam actual questions and answers, it's better to use exam simulator to prepare. It's a little hard for many people to understand and member so many questions in a short time. Using the AZ-220 exam simulator engine, you will get more effective and quicker interactive learning in the process. And the Microsoft AZ-220 exam simulator engine including PC test engine and online test engine will give you a pass mark % at the end of the test. The dumps content of two AZ-220 test engine versions are all the same, the only difference that the pc test engine only supports windows operating system, the Microsoft Azure IoT Developer exam simulator of online test engine supports windows/Mac/Android/IOS operating systems.
Secure and convenient AZ-220 test online shopping experience
When you pay attention to our AZ-220 test dumps, you can try out the free demo first. After the check of free demos, if you think ok, just add it to the shopping cart. The process of buying AZ-220 test online in Test4Engine is very convenient, simple and secure. You needn't register account in our site, just add your product to the cart and confirm your receiving email and pay for it. After your payment, your email will receive our AZ-220 test questions in a few seconds to minutes. It's very fast to get the dumps. And in the mails, you can see the auto-generated account for you for the next use. The all payments are protected by the biggest international payment Credit Card system.
Asked Prerequisites
The Microsoft AZ-220 candidate should ensure that a considerable amount of work experience in implementing the Azure services must have been gained beforehand. Data storage options, ways to perform data processing, and data analysis concepts must be also clear for those targeting this test. Besides, it is important that the exam aspirant is capable to recognize the Azure IoT service configuration setting along with languages like C#, Node, C, and Python.
Reference: https://docs.microsoft.com/en-us/learn/certifications/exams/az-220
Strong guarantee to pass Microsoft AZ-220 test-100% pass rate and refund policy
We've set strong guarantee to promise you to pass AZ-220 test. Before you decide you buy it, there are the free demos for you to see part of the AZ-220 test questions and answers. All the dumps are finished by our IT master team with very high quality. After the market test, they are all almost 100% passing rate to pass AZ-220 tests.
Even if you don't pass the AZ-220 exam with our Microsoft dumps, no worry about it, we will give your all refund to balance the failure risk. More guarantee is, there is all 365-days free update for you if buy the AZ-220 test dumps from us. Once there is any test update, we will send to your email address at the first time. Choosing us, guarantee you to pass your AZ-220 exam with full great service!
Microsoft AZ-220 Exam Syllabus Topics:
| Topic | Details |
|---|---|
Set up the IoT Solution Infrastructure (10-15%) | |
| Create and configure an Azure IoT Hub | -create an IoT Hub -register a device -configure a device twin -configure IoT Hub tier and scaling |
| Build device messaging and communication | - build messaging solutions by using SDKs (device and service) -implement device-to-cloud communication -implement cloud-to-device communication -configure file upload for devices - optimize message size and scaling - connect to IoT Hub using TLS server certificates |
| Configure physical IoT devices | -recommend an appropriate protocol based on device specifications -configure device networking, topology, and connectivity |
Provision and Manage Devices (15-20%) | |
| Set Up Device Provisioning Service (DPS) | -create a Device Provisioning Service -create a new enrollment in DPS -link an IoT Hub to the DPS |
| Manage the device lifecycle | -provision a device by using DPS -deprovision an autoenrollment -decommission (disenroll) a device |
| Manage IoT devices by using IoT Hub | -manage devices list in the IoT Hub device registry -modify device twin tags and properties -configure a set of devices by using IoT Hub Automatic Device Management -trigger an action on a set of devices by using IoT Hub Jobs and Direct Methods -implement a device firmware update process by using device management primitives - configure module identities |
| Manage IoT devices by using Azure IoT Central | - create a custom device template by using Azure IoT Central -configure rules and actions in Azure IoT Central - customize the operator view -add and manage devices from IoT Central -troubleshoot device connections and data mapping -create an application based on an app template for an industry vertical - export a custom application template -create and manage a new application based on a custom application template - upgrade and version a device template - run IoT Central jobs |
Implement IoT Edge (15-20%) | |
| Set up an IoT Edge device | -create a device identity in IoT Hub - set up an IoT device for IoT Edge -select and install container runtime on IoT devices -implement module access to the host system - update IoT Edge runtime - provision IoT Edge devices by using DPS |
| Deploy an IoT Edge device | - create and implement a deployment manifest -create a deployment for a single IoT Edge device -create a deployment to target multiple devices -create a continuous deployment by using Azure DevOps |
| Develop IoT Edge modules | - create and customize an Edge module -deploy a custom IoT Edge module to an Edge device -deploy an IoT Edge module from the Azure Marketplace to an Edge device -publish an IoT Edge module to an Azure Container Registry - define module configuration - configure IoT Edge module routing -configure environment for IoT Edge development; debug Edge modules in development environment |
| Configure an IoT Edge device | - select an appropriate gateway pattern -deploy an IoT gateway by using IoT Hub and IoT Edge - configure IoT Edge certificates - implement and configure offline support (including local storage) |
Implement Business Integration (5-10%) | |
| Integrate with upstream and downstream systems | - set up input and output connections -set up IoT Hub routing for triggering workflows - test data interface integration - integrate third-party solutions -configure workflows, including rules and alerts |
| Develop Azure Digital Twins (ADT) solutions | -create ADT models and digital twins -map IoT device data to ADT models and relationships -ingest IoT device messages and translate messages to ADT -configure routes and endpoints to trigger business logic and data processing - query the ADT graph - update properties on ADT entities in the graph - monitor and troubleshoot ADT |
Process and manage data (15-20%) | |
| Configure message routing in Azure IoT Hub | -implement message enrichment in IoT Hub - implement routing of IoT device messages to endpoints -define and test routing queries - configure IoT Hub as an Event Grid source -reconfigure the default EventHub endpoint when there are multiple endpoints |
| Configure stream processing of IoT data | -create ASA for data and stream processing of IoT data -process and filter IoT data by using Azure Functions - write user-defined functions and aggregations in ASA - consume Azure Machine Learning functions in ASA - configure Stream Analytics outputs |
| Create ASA queries | - write an ASA query that runs in the IoT Edge - write an ASA query that runs in the cloud |
| Process real-time data by using Time Series Insights (TSI) | - create a TSI environment - connect the IoT Hub and the TSI environment - create a reference data set for a TSI environment by using the Azure portal - implement Time Series model hierarchies, types, and instance fields - consume data by using Time Series Expression syntax |
Monitor, troubleshoot, and optimize IoT solutions (15-20%) | |
| Configure health monitoring | -configure metrics in IoT Hub -set up diagnostics logs for Azure IoT Hub - configure IoT Hub scaling (SKUunit) programmatically -query and visualize tracing by using Azure Monitor - apply Azure Policy definitions for IoT Hub - gather IoT Edge metrics - retrieve diagnostics from Azure IoT Edge |
| Troubleshoot device communication | -establish maintenance communication by using RDP or SSH - establish maintenance communication by using Device Streams -verify device telemetry is received by IoT Hub -validate device twin properties, tags and direct methods -troubleshoot device disconnects and connects - troubleshoot IoT Edge devices |
| Ensure performance and availability | - identify and resolve bottlenecks -calculate capacity requirements for each service -create a simulated fleet of devices for performance and stress testing - troubleshoot message loss - test manual failover |
Implement security (10-15%) | |
| Implement security for IoT devices and services | - implement device and gateway security - ensure secure connections |
| Implement Azure Defender for IoT | -configure an Azure Defender for IoT agent-based solution - implement Defender-IoT-micro-agents (security agents) -configure built-in and custom alerts for IoT Hub |
Wrapping up
IoT is a promising field in the IT sector and the Microsoft AZ-220 test acts as an ideal launching pad for this path since such an exam throws light on every essential skill of this subject matter. While you aim at it, don’t overlook the need of referring to updated study materials like official training offered by the vendor.





