NSE6_OTS_AR-7.6 Exam Registration, Latest NSE6_OTS_AR-7.6 Exam Papers

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Fortinet NSE6_OTS_AR-7.6 Exam Overview:

Certification Vendor:Fortinet
Exam Name:Fortinet NSE 6 - OT Security 7.6 Architect
Exam Number:NSE6_OTS_AR-7.6
Real Exam Qty:30 - 50
Related Certifications:Fortinet Certified Solution Specialist (FCSS) - Secure Networking
Fortinet NSE 4
Exam Format:Multiple Select, Multiple Choice
Exam Duration:65 - 90
Available Languages:English
Passing Score:Not publicly disclosed
Certificate Validity Period:2 years
Exam Price:$200 USD
Recommended Training:Fortinet OT Security Architect 7.6 Training
Exam Registration:Pearson VUE Registration
Sample Questions:Fortinet NSE6_OTS_AR-7.6 Sample Questions
Exam Way:Online proctored or onsite at Pearson VUE test centers
Pre Condition:No mandatory prerequisites; Recommended: NSE 4 certification or equivalent knowledge, understanding of networking and cybersecurity, familiarity with ICS/SCADA environments, experience with Fortinet solutions
Official Syllabus URL:https://training.fortinet.com/local/staticpage/view.php?page=ot_security_architect_exam

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Fortinet NSE6_OTS_AR-7.6 Exam Syllabus Topics:

TopicDetails
Topic 1
  • 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 2
  • 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.
Topic 3
  • 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 4
  • 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.

Fortinet NSE 6 - OT Security 7.6 Architect Sample Questions (Q36-Q41):

NEW QUESTION # 36
Refer to the exhibit.

A partial OT network is shown. In this OT network, you must add additional security measures to detect OT protocols and, therefore, increase the traffic visibility. Which security sensor must you implement to detect the OT protocols in this network? (Choose one answer)

Answer: D

Explanation:
The correct answer is C. Application sensor set to monitor on all the FortiGate devices .
The study guide clearly explains that application control is the feature used to identify OT protocols. It states that "application control detects the protocols used in applications like Modbus, IEC 104, and the contents of the telecontrol messages" and also says "You can use application control signatures to detect OT protocols." It further shows an example where a Modbus application control profile is enabled on a firewall policy "for OT protocol visibility in the monitor status." This directly matches the requirement in the question, which is to detect OT protocols and increase traffic visibility .
The other options do not fit the requirement as precisely. Device detection is for identifying devices and collecting endpoint information, not for detecting industrial protocols. Inline IDS and IPS are focused more on detecting or blocking attacks, exploits, protocol abnormalities, and known vulnerabilities. While IPS can inspect some OT traffic, the study guide distinguishes it from application control by stating that IPS signatures tend to detect exploits, whereas application control signatures tend to provide protocol detection at various levels . Therefore, the required security sensor for OT protocol detection and traffic visibility is the application sensor in monitor mode .


NEW QUESTION # 37
To improve the protection of your OT network, you want to automate on FortiGate the handling of compromised devices notified by FortiAnalyzer. What must you configure?

Answer: D

Explanation:
Automation between FortiAnalyzer and FortiGate relies on event handlers configured on FortiAnalyzer with Automation Stitch enabled, which allows FortiAnalyzer to trigger automated actions on FortiGate when specific events, such as compromised devices, are detected.


NEW QUESTION # 38
What is the next step if FortiGate cannot detect a device locally?

Answer: B

Explanation:
When FortiGate cannot identify a device locally, it uses service connectors to query OT-related servers and external sources for additional device information to improve identification accuracy.


NEW QUESTION # 39
Refer to the exhibit.

A partial legacy OT network is shown.
You must improve this historically flat OT network and minimize the risk of lateral movement.
Which action must you perform?

Answer: A

Explanation:
Micro-segmentation using firewall policies creates granular control between devices and zones within the OT network, effectively limiting lateral movement and reducing the attack surface.


NEW QUESTION # 40
Refer to the exhibit.

A partial OT network is shown. You want to configure an automated alert sent by FortiAnalyzer when an attack occurs on a FortiGate device. Which two configurations must you implement? (Choose two answers)

Answer: A,B

Explanation:
The correct answers are A and D . The study guide provides a direct use case called Attack Detection and Automated Alert . It states: "A downstream FortiGate detects an attack and sends logs to FortiAnalyzer. FortiAnalyzer parses the logs and notifies the root FortiGate. The root FortiGate triggers the action, which in this case, is a notification to the administrator." The same slide also explicitly shows "Stitches configured on root FortiGate." This confirms that to send the automated alert, you must configure the automation stitch on the root FortiGate .
The second required configuration is an event handler on FortiAnalyzer . The guide explains that "Event handlers generate events" and that "FortiAnalyzer uses event handlers to filter all incoming logs. If logs match the conditions configured in an event handler, FortiAnalyzer generates an event." Since FortiAnalyzer must detect the attack from the received logs before notifying the root FortiGate, an event handler is required on FortiAnalyzer.
Option B is incorrect because the study guide does not identify a LOCALHOST task as the required configuration for this attack-alert flow. Option C is also incorrect because the question asks what must be configured to enable the automated alert workflow . An IPS profile may detect some attacks, but the required automation path in the study guide is specifically event handler on FortiAnalyzer + stitch on the root FortiGate .


NEW QUESTION # 41
......

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