どのようにして短時間で試験に合格し、証明書を取得できますか? NSEI_OTS_AR-7.6試験トレントは、目標を達成するための最良の選択です。お客様のニーズに応じて、当社の製品は多くの専門家によって改訂されました。 NSEI_OTS_AR-7.6試験問題集のほとんどの機能は、お客様がより多くの時間を節約し、お客様をリラックスさせるのに役立ちます。 NSEI_OTS_AR-7.6テストクイズを使用することを選択した場合、短時間でNSEI_OTS_AR-7.6試験に合格することは非常に簡単です。 NSEI_OTS_AR-7.6試験問題の勉強に20〜30時間費やすだけです。他のことをする自由時間が増えます。
| Section | Objectives |
|---|---|
| Network Access Control | - Configure network segmentation schemas - Configure network access authentication - Explain OT Ethernet concepts |
| Network Security | - Configure security inspections for industrial protocols - Configure virtual patching - Configure automation |
| Monitoring and Risk Assessment | - Perform risk assessment and management - Analyze security reports from FortiAnalyzer - Create FortiAnalyzer event handlers |
| Asset Management | - Use Fortinet Security Fabric for an OT network - Implement device detection on FortiGate and FortiNAC - Explain OT standards and Fortinet compliance |
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質問 # 26
Refer to the exhibit.
An industrial Ethernet protocol skipping layers 3 to 6 is shown. Which industrial Ethernet protocol is it?
(Choose one answer)
正解:C
解説:
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 .
質問 # 27
Refer to the exhibits.
The Playbook Monitor dashboard and the analysis of the corresponding incident analysis are shown. You created the playbook with the objective of automatically attaching the report to the incident that was created.
Which two statements are correct? (Choose two answers)
正解:A、D
解説:
The correct answers are C and D .
Option D is correct because the Playbook Monitor clearly shows the starter as On_Demand and the trigger as user(admin) . The study guide states that "ON_DEMAND: The playbook runs when an administrator manually starts it" and also notes that to run it manually, you select the playbook and click Run . This exactly matches the exhibit, so the playbook was manually triggered.
Option C is also correct. The study guide explains that "tasks run one after another" and that "if needed, the output of one task can be used by the tasks that follow it." It also gives an example where workflow logic matters, such as creating an incident and then attaching details to it. In the exhibit, the sequence shown is Attach_report , then Run_report , then Create_Incident , while the incident analysis shows no report attached . Since the report must exist and the incident must already be available before it can be attached properly, the task order is wrong and must be reordered.
Option B is incorrect because the monitor shows multiple tasks completed successfully, not only Create_Incident . Option A is not the best answer because the main problem demonstrated by the exhibits is not simply waiting time, but the incorrect workflow order. The playbook completed successfully, yet the report is still not attached, which indicates a design issue in the task sequence rather than just a delay.
質問 # 28
Refer to the exhibit.
You have configured event handlers on FortiAnalyzer to monitor your OT network.
Based on the partial Event Monitor page shown in the exhibit, which statement is correct?
正解:B
解説:
The correct answer is D . The exhibit shows the IPS event with the status Mitigated . Fortinet defines a Mitigated event as one where the security risk has been blocked or dropped ; an IPS log whose action is block or drop is the explicit example given in the OT Security 7.6 study guide. A Contained status instead indicates that the risk source has been isolated, such as an antivirus quarantine action. An Unhandled status indicates that the risk remains open-for example, an IPS event where the action is pass. The Web.Client application-control entry in the exhibit has a blank status, so it cannot correctly be described as either Unhandled or Contained based solely on the displayed information. Therefore, the definitive conclusion from the Event Monitor is that the corresponding IPS action was block or drop .
質問 # 29
Refer to the exhibits.
A partial view of the Playbook Monitor page and the corresponding playbook configuration are shown.
Based on the monitor page and the configuration of the playbook, what has triggered the Run_Report task?
(Choose one answer)
正解:D
解説:
Based on the provided exhibits from the FortiAnalyzer playbook engine:
* Playbook Trigger Condition : The Partial Playbook configuration exhibit shows that the playbook is set to trigger based on a condition where the Basic Handler Name is Equal To IPS_Attack_Handling.
* Event vs. Log : In FortiAnalyzer, the field Basic Handler Name is a property of an Event record, indicating the specific Event Handler that generated it. A playbook configured with this condition is triggered by an Event , not directly by a raw log.
* Playbook Execution Flow : The Partial Playbook Monitor view shows the execution sequence:
* Event_Trigger (Starter) : This is the entry point of the playbook, which matches the condition defined in the configuration.
* IPS_Attack_Incident : The first task executed after the trigger.
* Run_Report : The task in question, which is executed as part of the automated workflow initiated by the starter.
* Conclusion : Since the playbook ' s " Starter " is defined by the IPS_Attack_Handling handler name, an event produced by that handler is the root trigger for the entire playbook execution, including the Run_Report task.
Therefore, the Run_Report task was triggered (as part of the playbook) by an IPS_Attack_Handling event .
質問 # 30
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)
正解:B
解説:
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 can "subdivide into multiple broadcast domains" by configuring set forward-domain < domain_ID > . It also states that "interfaces with the same domain ID belong to the same broadcast domain" and, with multiple forward domains,
"traffic arriving on one interface is broadcast only to interfaces in the same forward domain ID." That is the mechanism used to separate internal networks and confine traffic between network segments.
The other options do not fit this requirement. Universal ZTNA is for application access control, not segmentation between two OT networks. One traffic VDOM does not create segmentation by itself; multiple VDOMs would be needed for that type of isolation. An explicit software switch controls intraswitch traffic inside the same software-switch domain, not segmentation between separate networks like network 1 and network 2. Therefore, the correct way to implement the internal segmentation asked in the question is to assign different forward domain IDs to each network.
質問 # 31
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NSEI_OTS_AR-7.6認定資格: https://www.passtest.jp/Fortinet/NSEI_OTS_AR-7.6-shiken.html