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Fortinet NSEI_OTS_AR-7.6 Exam Syllabus Topics:

SectionObjectives
Topic 1: Asset management- Fortinet Security Fabric for an OT network
- Implement device detection on FortiGate and FortiNAC
- Explain OT standard and Fortinet compliance
Topic 2: Network security- Configure automation
- Configure virtual patching
- Configure security inspections for industrial protocols
Topic 3: Monitoring and risk assessment- Create FortiAnalyzer event handlers
- Analyze security reports from FortiAnalyzer
- Perform risk assessment and management
Topic 4: Network access control- Explain OT Ethernet concepts
- Configure network access authentication
- Configure network segmentation schemas

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Fortinet NSE I - OT Security 7.6 Architect Sample Questions (Q10-Q15):

NEW QUESTION # 10
Refer to the exhibit.

The Core Network Security Connectors page of the FortiGate-2 device is shown. Which statement is correct? (Choose one answer)

Answer: B

Explanation:
Based on the provided exhibit and the OT Security 7.6 Architect curriculum regarding the Fortinet Security Fabric :
* Fabric Role : The exhibit clearly shows that FortiGate-2 has the role set to Join Fabric . This confirms it is a downstream device and not the Fabric Root (eliminating Option A).
* Upstream Connection : The device is configured to point to an Upstream FortiGate at IP address
10.1.2.254 .
* Fabric Status : The status is currently displayed as Not Connected . In a standard Fortinet Security Fabric deployment, once a downstream device is configured to join the fabric, it sends a request to the upstream root device. The root FortiGate must then explicitly authorize the downstream unit before the connection is established and the status changes to " Connected. "
* Authorization Requirement : The " Not Connected " status, while having the upstream IP correctly configured, is the classic indicator that the authorization step is pending on the root FortiGate.
Furthermore, under the LAN Edge Devices section, it shows another downstream FortiGate requiring authorization on this specific unit, highlighting that authorization is a manual security requirement for all stages of the Fabric hierarchy.
* FortiAnalyzer Status : While the Logging & Analytics section shows FortiAnalyzer is Disabled , this is a configuration choice and does not prevent the Security Fabric from connecting; therefore, configuring it is not the solution to the connectivity status shown (eliminating Option C).
In summary, FortiGate-2 cannot join the fabric until an administrator logs into the Root FortiGate (10.1.2.254) and authorizes the join request from FortiGate-2.


NEW QUESTION # 11
Refer to the exhibits.

A partial Basic Event Handler page on FortiAnalyzer and the creation of a trigger in a FortiGate device are shown. To improve the protection of your OT network, you want to automate the handling of compromised devices notified through FortiAnalyzer. You have configured an event handler named Alert_trigger as shown in the exhibit. When you create the trigger on the FortiGate device, the Event handler name field does not provide the Alert_trigger option. What two actions must you perform to make the Alert_trigger option available? (Choose two answers)

Answer: A,B

Explanation:
The correct answers are C and D .
Option C is correct because the study guide explains that when "a handler generates an event with the automation stitch option enabled, FortiAnalyzer sends a notification" and, in the Security Fabric workflow, "FortiAnalyzer parses the logs and notifies the root FortiGate." This means FortiGate must first have the FortiAnalyzer connection configured so it can consume FortiAnalyzer event handlers and use them in automation. The wizard message in the exhibit also points to this requirement by indicating that a FortiAnalyzer connection must be configured.
Option D is also correct because the study guide explicitly says that in this automation flow "the root FortiGate triggers the action" and shows "Stitches configured on root FortiGate." Therefore, if you want the FortiAnalyzer event handler to appear and be usable for automation, the trigger must be configured on the root FortiGate , not on an arbitrary downstream FortiGate.
Option A is incorrect because + Create is only a GUI control and does not solve the missing-event-handler visibility problem. Option B is not identified in the study guide as the requirement for making a FortiAnalyzer event handler available in the FortiGate automation trigger list.


NEW QUESTION # 12
Refer to the exhibit.

An automation trigger creation wizard is shown. You want to automate some tasks in your OT network. In a FortiGate device, you create a new automation trigger based on a FortiAnalyzer event handler. When you want to configure the Event handler name field, the event handler created in FortiAnalyzer is not shown.
What are two reasons for this? (Choose two answers)

Answer: A,D

Explanation:
The correct answers are A and B .
Option B is correct because the study guide states that "When a handler generates an event with the automation stitch option enabled, FortiAnalyzer sends a notification" to FortiGate. If Automation Stitch is not enabled in the FortiAnalyzer event handler, that handler will not be usable for the FortiGate automation- stitch workflow. The guide also explains that the configuration of each event handler can include
"Automation stitches" and "Rules," showing that this is a required part of the FortiAnalyzer-to-FortiGate automation path.
Option A is also correct. The study guide explains the automation flow in the Security Fabric:
"FortiAnalyzer parses the logs and notifies the root FortiGate" and then "The root FortiGate triggers the action." That means FortiGate must have the FortiAnalyzer connection configured through the Security Fabric side before it can consume FortiAnalyzer event handlers. The warning in the exhibit about configuring a FortiAnalyzer connection also points directly to that requirement.
Option C is incorrect because + Create is not the reason the existing event handler is missing; it is only an interface control. Option D is not the best answer for this item because the question is about why the event handler name list on FortiGate is empty for FortiAnalyzer-triggered automation. The study guide's verified requirements for that workflow are the FortiAnalyzer-to-FortiGate Fabric connection and enabling Automation Stitch on the FortiAnalyzer event handler.


NEW QUESTION # 13
For the installation of your first FortiGate device, you want to minimize the impact in your OT network.
Therefore, you deploy it initially as an offline IDS. Which two statements about this deployment are correct?
(Choose two answers)

Answer: B,D


NEW QUESTION # 14
What is the main OT component for monitoring and controlling industrial processes? (Choose one answer)

Answer: C

Explanation:
The correct answer is C. Industrial Control System (ICS) . The study guide states that "ICS is a main component of OT" and "consists of systems used for monitoring and controlling industrial processes." It also explains that ICS includes various devices, systems, controls, and networks that manage industrial processes, and that the most common types are SCADA and distributed control systems (DCS) . This makes ICS the primary OT component for monitoring and controlling industrial processes.
The other options are related OT components, but they are not the best answer to this wording. SCADA collects real-time data and helps visualize and control the OT environment, but it is described as a system within the broader ICS structure. PLC devices collect and transmit real-time data and connect sensors and RTUs to SCADA, while IIoT refers to sensors, actuators, and other connected field devices. Therefore, the overarching main OT component for monitoring and controlling industrial processes is ICS .


NEW QUESTION # 15
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