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Each format has a pool of Fortinet NSE 6 - OT Security 7.6 Architect (NSE6_OTS_AR-7.6) actual questions which have been compiled under the guidance of thousands of professionals worldwide. Questions in this product will appear in the Fortinet NSE6_OTS_AR-7.6 final test. Hence, memorizing them will help you get prepared for the NSE6_OTS_AR-7.6 examination in a short time. The product of PassTorrent comes in PDF, desktop practice exam software, and NSE6_OTS_AR-7.6 web-based practice test. To give you a complete understanding of these formats, we have discussed their features below.
| Certification Vendor: | Fortinet |
|---|---|
| Exam Name: | Fortinet NSE 6 - OT Security 7.6 Architect |
| Exam Number: | NSE6_OTS_AR-7.6 |
| Related Certifications: | Fortinet Certified Solution Specialist (FCSS) - Secure Networking Fortinet NSE 4 |
| Exam Format: | Multiple Select, Multiple Choice |
| Certificate Validity Period: | 2 years |
| Available Languages: | English |
| Exam Duration: | 65 - 90 |
| Real Exam Qty: | 30 - 50 |
| Exam Price: | $200 USD |
| Passing Score: | Not publicly disclosed |
| 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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NEW QUESTION # 34
Refer to the exhibit. A partial OT network is shown. You must improve the security of this OT network and implement internal segmentation between network 1 and network 2. How can you achieve the segmentation? (Choose one answer)
Answer: A
Explanation:
The correct answer is D. You can configure forward domain IDs for each network. The study guide explains that in FortiGate transparent mode, "all interfaces belong to the same broadcast domain, even interfaces with different VLAN IDs" and then states that you should "use this command to subdivide into multiple broadcast domains" with set forward-domain <domain_ID>. It further explains that "interfaces with the same domain ID belong to the same broadcast domain" and "traffic arriving on one interface is broadcast only to interfaces in the same forward domain ID." This is exactly the mechanism used to separate one internal network from another and improve segmentation.
The other options do not match this requirement. Universal ZTNA is described as controlling user access to applications, not segmenting two internal OT networks. An explicit software switch is for controlling intra-switch or intra-VLAN traffic inside the same software switch broadcast domain, which is more aligned with microsegmentation than separating two routed internal networks. One traffic VDOM does not create segmentation by itself; segmentation with VDOMs requires multiple VDOMs, not one. Therefore, the best choice for segmenting network 1 and network 2 in this scenario is to assign separate forward domain IDs.
NEW QUESTION # 35
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 # 36
What is the main OT component for monitoring and controlling industrial processes?
Answer: B
Explanation:
SCADA is the main OT system used to monitor and control industrial processes. It provides centralized supervision, data collection, operator visibility, and control functions across distributed industrial devices such as PLCs, RTUs, sensors, and actuators.
NEW QUESTION # 37
Refer to the exhibit.
Which statement about this partial Asset Identity List page is correct? (Choose one answer)
Answer: A
Explanation:
Based on the OT Security 7.6 Architect study guide regarding the Asset Identity Center and Asset Management :
* Vulnerability Visibility : The Asset Identity List tab displays key metadata for IT and OT devices, including detected addresses, users, and a specific column for Vulnerabilities .
* Virtual Patching Feature : In the OT Security 7.6 architecture, the " Vulnerabilities " column is populated through the OT Security Service license, which includes " OT vulnerability correlation definitions & virtual patching signatures " .
* Correlation Mechanism : FortiGate extracts metadata from OT traffic and uses these signatures to identify known vulnerabilities on the assets. For these vulnerabilities to be identified and correlated in the Asset Identity Center as shown in the exhibit (displaying a count of 8 vulnerabilities), the Virtual Patching feature must be active.
* Architectural Implementation : Virtual patching is a critical component of the " Protection " layer in OT networks, allowing administrators to secure legacy or unpatchable PLCs and RTUs by blocking exploit attempts at the network level using IPS-based virtual patching signatures.
* Exhibit Analysis : The presence of identified vulnerabilities (the number " 8 " in the red shield) in the Asset Identity List confirms that the FortiGate is actively performing vulnerability correlation, which is the operational result of having a Virtual Patching security profile applied to the relevant firewall policy.
NEW QUESTION # 38
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 # 39
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