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Candidates for this exam are Azure IoT developers with subject matter
expertise in creating and maintaining the cloud and device portions of an IoT
solution. In addition to configuring and maintaining the devices by using cloud
services, they also set up the physical devices. They are responsible for
maintaining and troubleshooting the configuration of the devices throughout the
lifecycle.
Azure IoT developers implement design specifications for IoT solutions,
including device topology, connectivity, diagnostics and monitoring, and
security. They develop the code that enables two-way communication between the
device and the cloud. They also develop and deploy modules and configure device
networking for the Azure IoT Edge portion of the solution. Professionals in this
role implement designs for solutions to manage data streams, including
monitoring and data transformation as they relate to IoT. The Azure IoT
developer works with architects, device developers, data engineers, and other
stakeholders to help ensure successful business integration.
Candidates for this exam should have a general understanding of device types and
Azure services, including data storage options, data analysis, data processing,
AI, and other platform as a service (PaaS) options. They must be able to program
in at least one Azure IoT software development kit–supported (SDK-supported)
language.
Exam AZ-220: Microsoft Azure IoT Developer
Languages: English, Japanese, Korean, French, Spanish, Portuguese (Brazil),
Russian, Arabic (Saudi Arabia), Chinese (Simplified), Italian, German, Chinese
(Traditional), Indonesian (Indonesia)
Retirement date: none
This exam measures your ability to accomplish the following technical tasks: set
up the Azure IoT Hub solution infrastructure; provision and manage devices;
implement IoT Edge; process and manage data; monitor, troubleshoot, and optimize
IoT solutions; and implement security.
Skills measured
The English language version of this exam will be updated on January 30,
2023. Download the study guide in the preceding “Tip” box for more details about
the skills measured and upcoming changes.
Set up the Azure IoT Hub solution infrastructure (10-15%)
Provision and manage devices (15-20%)
Implement IoT Edge (15-20%)
Implement business integration (5-10%)
Process and manage data (15-20%)
Monitor, troubleshoot, and optimize IoT solutions (5-10%)
Implement security (5-10%)
Skills measured prior to January 30, 2023
* Set up the Azure IoT Hub solution infrastructure (10–15%)
* Provision and manage devices (15–20%)
* Implement IoT Edge (15–20%)
* Implement business integration (5–10%)
* Process and manage data (15–20%)
* Monitor, troubleshoot, and optimize IoT solutions (5-10%)
* Implement security (5-10%)
Set up the Azure IoT Hub solution infrastructure (10–15%)
Create and configure an 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 for IoT Hub
* Connect to IoT Hub by using Transport Layer Security (TLS) server certificates
Configure physical IoT devices
* Recommend an appropriate protocol or gateway based on device
specifications
* Configure device networking, topology, and connectivity * Add IoT Plug and
Play capabilities to a device in a model-driven solution
Provision and manage devices (15–20%)
Set up the device provisioning service
* Create a device provisioning service
* Create a new enrollment in the device provisioning service
* Link an IoT hub to the device provisioning service
Manage the device lifecycle
* Provision a device by using the device provisioning service
* Deprovision an auto-enrollment
* 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
* Specify a set of devices to manage by using IoT Hub Automatic Device
Management
* Implement and manage configuration on a set of devices by using IoT Hub
Automatic Device Management
* Control access to device functionality by using module identities and module
twins
Manage IoT devices by using Azure IoT Central
* Create and manage device templates by using Azure IoT Central and Digital
Twins Definition Language (DTDL)
* Configure rules, actions, and commands in Azure IoT Central
* Add, enroll, and manage devices by using Azure IoT Central
* Manage Azure IoT Central applications, including security, tenants,
customization, and visualizations
* Manage data integration, including data ingress, data export, and data
transformation
* Configure and manage Azure IoT Central jobs
* Manage Azure IoT Central by using APIs
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
* Install container runtime on IoT devices
* Configure container startup options to interact with the host system
* Update IoT Edge runtime
* Provision IoT Edge devices by using the device provisioning service
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 IoT Edge module
* Deploy a custom IoT Edge module to an IoT Edge device
* Publish an IoT Edge module to Azure Container Registry
* Define module configuration
* Configure IoT Edge module routing
* Configure environment for IoT Edge development
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)
* Create a layered hierarchy of IoT Edge devices
* Interact with the IoT Edge security manager
Implement business integration (5–10%)
Integrate with upstream and downstream systems
* Set up input and output connections to support native Azure services and
to enable third-party services * Set up IoT Hub routing to support downstream
Azure resources
Develop an IoT solution that uses Azure Digital Twins
* Create models and digital twins
* Map IoT device data to digital twin models and relationships
* Ingest IoT device messages, and translate messages to digital twins
* Configure routes and endpoints to trigger business logic and data processing
* Manage and query the Azure Digital Twins graph
* Update properties on Azure Digital Twins entities in the graph
* Monitor and troubleshoot Azure Digital Twins
Process and manage data (15–20%)
Configure message routing in Azure IoT Hub
* Implement message enrichment in IoT Hub
* Implement routing of IoT device telemetry to endpoints
* Implement routing of IoT Hub non-telemetry events to endpoints
* Define and test routing queries
* Configure IoT Hub as an Azure Event Grid source
* Reconfigure the default Azure Event Hubs endpoint when there are multiple
endpoints
Configure stream processing of IoT data
* Create Azure Stream Analytics for data, and stream processing by using the
Azure portal
* Process and filter IoT data by using Azure Functions
* Write user-defined functions and aggregations in Stream Analytics
* Consume Azure Machine Learning functions in Stream Analytics
* Configure Stream Analytics outputs
Create Azure Stream Analytics queries
* Write a Stream Analytics query that runs in IoT Edge
* Write a Stream Analytics query that runs in the cloud
Process real-time data by using Azure Time Series Insights
* Create a Time Series Insights environment
* Connect the IoT hub and the Time Series Insights environment
* Create a reference data set for a Time Series Insights 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 (5–10%)
Configure health monitoring
* Configure rules and alerts based on IoT Hub metrics
* Set up diagnostics logs for IoT Hub
* Apply Azure Policy definitions for IoT Hub
* Gather IoT Edge metrics
* Retrieve diagnostic logs from IoT Edge
Troubleshoot device communication
* Verify that device telemetry is received by IoT Hub
* Validate device twin properties, tags, and direct methods
* Troubleshoot device disconnects and connects
* Troubleshoot IoT Edge modules and devices
* Troubleshoot message loss
* Evaluate and test IoT Hub failover
Implement security (5–10%)
Implement security for IoT devices and services
* Implement device and gateway security, including shared access keys, key
rotation, managed identities, Hardware Security Modules (HSMs), and Trusted
Platform Modules (TPMs)
* Implement secure connections, including access control, authentication, shared
access policies, and TLS
* Implement secure networking, including IP filtering and private endpoints
Implement Microsoft Defender for IoT
* Configure a Defender for IoT agent-based solution
* Install and configure Defender-IoT-micro-agents (security agents)
* Configure built-in and custom alerts for IoT Hub
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Question: 1
Note: This question is part of a series of questions that present the same
scenario. Each question in
the series contains a unique solution Determine whether the solution meets the
stated goals.
You need to ensure that the SecurityPin security requirements are met.
Solution: Enable Always Encrypted for the SecurityPin column using a certificate
based on a trusted
certificate authority. Update the Getting Started document with instruction to
ensure that the
certificate is installed on user machines.
Does the solution meet the goal?
A. Yes
B. No
Answer: B
Question: 2
Note: This question is part of a series of questions that present the same
scenario. Each question in
the series contains a unique solution. Determine whether the solution meets the
stated goals.
You need to ensure that the SecurityPin security requirements are met.
Solution: Enable Always Encrypted for the SecurityPin column using a certificate
contained in Azure
Key Vault and grant the WebAppIdentity service principal access to the
certificate.
Does the solution meet the goal?
A. Yes
B. No
Answer: A
Question: 3
Note: This question is part of a series of questions that present the same
scenario. Each question in
the series contains a unique solution. Determine whether the solution meets the
stated goals.
You need to ensure that the SecurityPin security requirements are met.
Solution; Using the Azure Portal, add Data Masking to the SecurityPin column,
and exclude the dbo
user. Add a SQL security policy with a filter predicate based on the user
identity.
Does the solution meet the goal?
A. Yes
B. No
Answer: B
Question: 4
You need to construct the link to the summary report for the email that is
sent to users.
What should you do?
A. Create a SharedAccessBlobPolicy and add it to the containers
SharedAccessPolicies. Call GetSharedAccessSignature on the blob and use the
resulting link.
B. Create a SharedAccessBlobPolicy and set the expiry time to two weeks from
today. Call GetSharedAccessSignature on the blob and use the resulting link.
C. Create a SharedAccessAccountPolicy and call GetsharedAccessSignature on
storage account and use the resulting link.
D. Create a SharedAccessBlobPolicy and set the expiry time to two weeks from
today. Call GetSharedAccessSignature on the container and use the resulting
link.
Answer: B
Question: 5
You need to resolve the log capacity issue.
What should you do?
A. Implement Application Insights Sampling.
B. Change the minimum log level in the host.json file for the function.
C. Create an Application Insights Telemetry Filter.
D. Set a LogCategoryFilter during startup.
Answer: A
Jsaon
I always enjoy Scott Duffy training videos. I like how this followed the skills
outline from Microsoft.
It was a great course which helped me to clear AZ-220, I had previous experience
in QnA Maker and Bot services but other major areas are very well covered by
Scott. In the practice test I scored 70% in the first attempt.. but it gave
proper understanding and logic building thrust.
Jessica
This course is a great walkthrough Azure Cognitive Services, but definitely not
prep material for AZ-220 exam.
Scott: cleard my exam in one week
Despite being recently updated this course feels out of date, for example there
are 31 minutes of videos on QnA maker, but this service does not appear on the
current study guide and its not clear from the course content how this differs
from its replacement (Azure Cognitive Service for Language).
Furthermore, 10 minutes of videos on knowledge mining feels low for an area that
makes up 15-20% of the exam
Richel
I have cleared exam today with 900!, these mock tests were very helpful to me
and highly recommended. Thank you
David
Successfully cleared AZ-220 exam today with 960 marks. All the questions similar
and came from this Mock tests. Thanks a lot certkingdom.
Hillary - CANADA
Oct 26, 2022
Rating: 4.3 / 5.0
I studied and pass my exams using cerkingdom material carefully and took every
question seriously. At last, I passed the exam with high score. Prepare well and
study much more.