Valid NSE6_OTS_AR-7.6 Exam Topics, NSE6_OTS_AR-7.6 Latest Exam Tips

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Fortinet NSE6_OTS_AR-7.6 Exam Syllabus Topics:

TopicDetails
Topic 1
  • Network access control: Focuses on OT Ethernet fundamentals and designing secure network segmentation strategies. It also includes configuring authentication methods to control and verify access to the OT network.
Topic 2
  • Asset management: Covers understanding OT standards and how Fortinet aligns with compliance requirements in industrial environments. It also includes using the Fortinet Security Fabric to manage assets and implementing device detection using FortiGate and FortiNAC.
Topic 3
  • Network security: Explains how to apply security inspections specifically for industrial protocols and implement virtual patching to protect vulnerable systems. It also includes configuring automation to enhance threat response and operational efficiency.
Topic 4
  • Monitoring and risk assessment: Covers creating event handlers in FortiAnalyzer to monitor network activity and detect threats. It also includes performing risk assessments and analyzing security reports to support ongoing risk management.

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Fortinet NSE 6 - OT Security 7.6 Architect Sample Questions (Q104-Q109):

NEW QUESTION # 104
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.)

Answer: B,D

Explanation:
In an offline IDS deployment, FortiGate is placed out-of-band and acts as a network sensor, inspecting mirrored OT traffic without being directly in the traffic path. Applying security profiles improves cybersecurity visibility by allowing FortiGate to detect and log threats, suspicious activity, and protocol anomalies for monitoring and analysis.


NEW QUESTION # 105
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,D

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 # 106
Refer to the exhibit. You are navigating through FortiSIEM in an OT network. How do you view information presented in the exhibit and what does the FortiGate device security status tell you?

Answer: C


NEW QUESTION # 107
What is the next step if FortiGate cannot detect a device locally? (Choose one answer)

Answer: D

Explanation:
The correct answer is A. FortiGate queries FortiGuard servers. The study guide explains the device detection process very clearly: "First, FortiGate attempts to detect the devices based on the information in the local device database (CIDB). If FortiGate cannot detect the devices locally, it queries the FortiGuard servers by sending data about the unknown devices to the FortiGuard servers. In response, the FortiGuard servers provide additional information about those devices." This directly answers the question and shows that querying FortiGuard is the next step after local detection fails.
Option D is incorrect because the guide says FortiGate checks the local device database (CIDB) first, before this next step. Option B refers more to FortiNAC-style profiling logic, not FortiGate's OT device detection flow. Option C is also incorrect because service connectors are not described here as the immediate follow-up step for unknown local device detection. The study guide specifically identifies FortiGuard servers as the next destination for device identification assistance.


NEW QUESTION # 108
As the first step in your OT network protection plan, you must identify the OT protocols that the FortiGate device supports. Which two configurations must you implement on this FortiGate device? (Choose two answers)

Answer: B,D

Explanation:
The correct answers are B and C . The study guide states that "You can use application control signatures to detect OT protocols" and that "Application control detects the protocols used in applications like Modbus, IEC 104, and the contents of the telecontrol messages" . It also shows that a Modbus application control profile can be enabled on a firewall policy "for OT protocol visibility in the monitor status." This directly supports B , because application control is the feature used to identify and monitor OT protocols on FortiGate.
The guide also explains under IPS that "By default, OT signatures are excluded from the signatures lists on the GUI until you enable them on the CLI" using config ips global and set exclude-signatures none .
Once enabled, FortiGate can use those OT signatures for OT-aware inspection and protection. That supports C as the second required configuration. A is related to device discovery, not protocol identification, and D is focused on exploit and vulnerability detection rather than the first-step goal of identifying OT protocols.


NEW QUESTION # 109
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