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| Section | Objectives |
|---|---|
| Topic 1: Network access control | - Configure network access authentication - Explain OT Ethernet concepts - Configure network segmentation schemas |
| Topic 2: Network security | - Configure virtual patching - Configure security inspections for industrial protocols - Configure automation |
| Topic 3: Asset management | - Implement device detection on FortiGate and FortiNAC - Fortinet Security Fabric for an OT network - Explain OT standard and Fortinet compliance |
| Topic 4: Monitoring and risk assessment | - Create FortiAnalyzer event handlers - Perform risk assessment and management - Analyze security reports from FortiAnalyzer |
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NEW QUESTION # 30
What are two advantages provided by industrial Ethernet? (Choose two answers)
Answer: B,D
Explanation:
The correct answers are B. Real-time control and D. Determinism . The study guide defines industrial Ethernet as the "use of Ethernet and TCP/IP as transport mechanisms for industrial protocols" and states that it provides "real-time control," "low latency," and "determinism (meaning reliable and predictable data delivery)" in harsh environments. It further explains that industrial Ethernet "provides deterministic communication between machine controllers, actuators, sensors, and other units." These statements directly confirm that the two key advantages are real-time control and determinism.
The other options are not supported by the study guide as core advantages of industrial Ethernet. Encryption is not listed as one of the benefits in this section, and remote access is discussed elsewhere in the OT architecture but not as a defining advantage of industrial Ethernet itself. The guide is explicit that the main benefits here are predictable delivery and real-time communication, which are essential in industrial control environments where timing and reliability matter.
NEW QUESTION # 31
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,D
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 # 32
According to the IEC 62443 standard, your security level is 4 . What is your OT environment defending against? (Choose one answer)
Answer: A
Explanation:
Explanation:
NEW QUESTION # 33
Refer to the exhibit.
A partial OT network is shown. You have encountered many disconnections in the links and want to improve the availability of this network. Which action can you perform? (Choose one answer)
Answer: A
Explanation:
The correct answer is C. You can implement parallel redundancy protocol . The study guide explains that media redundancy involves creating a backup path that can be used when part of the network fails and specifically states that "Parallel Redundancy Protocol (PRP) can be used for a star topology." Since the problem described is many disconnections in the links , the issue is link availability, which is a media redundancy problem rather than a firewall virtualization or policy separation problem. PRP is designed to provide a backup communication path with low recovery time when links fail.
The other options do not fit this scenario as well. HA clusters are described in the guide as a solution for network node redundancy , where a backup firewall or switch takes over when the primary device fails. SD- WAN is recommended for remote site access across multiple WAN links, not for the local floor links shown in this topology. VDOMs provide logical segmentation, not link redundancy or higher link availability.
Because the question is specifically about repeated link disconnections , the best action is to implement PRP .
NEW QUESTION # 34
Refer to the exhibit.
An industrial Ethernet protocol skipping layers 3 to 6 is shown. Which industrial Ethernet protocol is it?
(Choose one answer)
Answer: C
Explanation:
The correct answer is D. EtherCAT . The study guide explicitly states under the Ethernet/IP and EtherCAT section that "EtherCAT is a protocol that offers real-time communication in a primary-secondary configuration" and "EtherCAT skips layers 3 to 6 to deliver real-time communication." It also adds that
"the most important feature of this protocol is that secondary devices collect only the information they need from the data packets." This matches the exhibit exactly, where the diagram shows Real-Time Data above a Proprietary MAC and Proprietary physical layer , reflecting the protocol structure that bypasses the intermediate OSI layers.
The other options do not match this behavior. The guide says POWERLINK uses layer 2 and layer 7 of the OSI model, not that it skips layers 3 to 6. It also explains that Ethernet/IP is the industrial protocol based entirely on Ethernet standards and adapts to the OSI model. Modbus is described as an open client/server protocol and is not suitable for transmitting data in real time . Therefore, the protocol in the exhibit is clearly EtherCAT .
NEW QUESTION # 35
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