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[General] 2026 Fortinet Unparalleled NSE5_FSW_AD-7.6: Latest Fortinet NSE 5 - FortiSwitch

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【General】 2026 Fortinet Unparalleled NSE5_FSW_AD-7.6: Latest Fortinet NSE 5 - FortiSwitch

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Fortinet NSE 5 - FortiSwitch 7.6 Administrator Sample Questions (Q26-Q31):NEW QUESTION # 26
How is traffic routed on FortiSwitch?
  • A. Hardware-based routing on FortiSwitch is handled by the CPU.
  • B. ASIC hardware routing can only handle dynamic routing, if supported.
  • C. FortiSwitch looks up the hardware routing table and then the forwarding information base (FIB).
  • D. Layer 3 routing can be configured on FortiSwitch, while managed by FortiGate.
Answer: D
Explanation:
Layer 3 routing can be configured on FortiSwitch, while managed by FortiGate (D): FortiSwitch, when managed by FortiGate, supports Layer 3 routing capabilities. This allows for routing between VLANs directly on the switch, enhancing network efficiency by reducing the need to pass traffic through higher network layers for inter-VLAN communication. This configuration enables more sophisticated network setups and efficient routing directly at the switch level.

NEW QUESTION # 27
Which two statements about managing a FortiSwitch stack on FortiGate are true? (Choose two.)
  • A. Only a hardware-based FortiGate can manage a FortiSwitch stack.
  • B. A FortiLink interface must be enabled on FortiGate.
  • C. FortiSwitch must be operating in standalone mode before authorization.
  • D. The switch controller feature must be enabled on FortiGate.
Answer: B,D
Explanation:
* A FortiLink interface must be enabled on FortiGate (A): To manage a FortiSwitch stack, a dedicated FortiLink interface on the FortiGate is required. This interface is used to manage the communication between FortiGate and the FortiSwitch stack, enabling centralized control and configuration of the switches directly from the FortiGate.
* The switch controller feature must be enabled on FortiGate (B): Enabling the switch controller feature on FortiGate allows it to manage connected FortiSwitch units. This feature provides tools and interfaces on the FortiGate for overseeing FortiSwitch configurations, monitoring switch status, and managing network policies across the stack.

NEW QUESTION # 28
Which statement best describes a benefit of using MAC, IP address, or protocol-based VLAN assignments on FortiSwitch? (Choose one answer)
  • A. It requires devices to authenticate through a RADIUS server before VLAN tagging.
  • B. It disables 802.1X authentication while preserving user access control.1
  • C. It offers dynamic segmentation benefits similar to 802.1X authentication.2
  • D. It assigns ports to VLANs regardless of device type or traffic.
Answer: C
Explanation:
According to theFortiSwitchOS 7.6 Administration Guideand theFortiSwitch 7.6 Study Guide, MAC- based, IP-based, and protocol-based VLAN assignments are methods ofdynamic VLAN assignment. These features allow the switch to categorize incoming traffic and assign it to a specific VLAN based on the packet's attributes rather than just the physical port it is connected to.3 The primary benefit of these methods is that theyoffer dynamic segmentation benefits similar to 802.1X authentication (Option D). In a modern network, devices with different security requirements (such as IoT devices, printers, and workstations) often connect to the same physical switch ports. 802.1X is the "gold standard" for dynamic segmentation but requires a supplicant on the client device.4For devices that do not support 802.1X, MAC or protocol-based assignments provide a similar result: they ensure the device is automatically placed into its designated secure segment (VLAN) the moment it is identified by the switch.
* MAC-based:Assigns a VLAN based on the source MAC address.
* IP-based:Assigns a VLAN based on the source IP address or subnet.
* Protocol-based:Assigns a VLAN based on the Ethernet type (e.g., IPv4, IPv6, or AppleTalk).
Option A is incorrect because these features complement rather than "disable" 802.1X. Option B is incorrect because these specific assignment types can be configured locally on the switch without a RADIUS server.
Option C is the opposite of how these features work, as they explicitly look at the device type or traffic to make an assignment.

NEW QUESTION # 29
(Full question statement start from here)
How does enabling an IGMP snooping proxy on FortiSwitch help reduce the number of IGMP reports processed by the IGMP querier? (Choose one answer)
  • A. By forwarding IGMP reports only when the first member joins and the last member leaves
  • B. By suppressing duplicate IGMP reports within the VLAN
  • C. By converting IGMP traffic to unicast
  • D. By converting IGMP reports into broadcast packets to reach all VLAN members
Answer: A
Explanation:
In FortiSwitchOS 7.6,IGMP snooping proxyis an enhancement to standard IGMP snooping that optimizes multicast control-plane traffic between hosts, switches, and the upstream IGMP querier. Its primary purpose is toreduce the number of IGMP membership reportsthat the querier must process, thereby improving scalability and efficiency in multicast-enabled networks.
Without an IGMP snooping proxy, every multicast receiver on a VLAN independently sends IGMP membership reports to the querier. In environments with many hosts subscribing to the same multicast groups, this behavior can generate a large volume of redundant IGMP reports, unnecessarily increasing control-plane load on both the querier and intermediate network devices.
When the IGMP snooping proxy feature is enabled, the FortiSwitch acts as anIGMP proxy agenton behalf of hosts within the VLAN. The switch tracks multicast group membership locally andsuppresses individual IGMP reports from downstream hosts. Instead, the FortiSwitch forwards an IGMP report upstreamonly when the first host joins a multicast group. Likewise, when hosts leave the group, the switch sends an IGMP leave message or reportonly when the last remaining member leaves.
This aggregation mechanism dramatically reduces IGMP signaling traffic while preserving correct multicast forwarding behavior. Importantly, the switch does not alter IGMP packet types or convert them to broadcast or unicast traffic. It simply optimizes reporting behavior based on group membership state.
Therefore, the correct explanation is that IGMP snooping proxy reduces IGMP report processingby forwarding IGMP reports only when the first member joins and the last member leaves, makingOption Dthe correct and fully verified answer according to FortiSwitchOS 7.6 documentation.

NEW QUESTION # 30
You are managing FortiSwitch ports from a FortiGate device with multiple VDOMs. Which two methods can you use to assign FortiSwitch ports to VDOMs? (Choose two answers)
  • A. Use FortiGate policies to control inter-VDOM traffic for FortiSwitch ports
  • B. Use interface role mapping to dynamically assign FortiSwitch ports to VDOMs based on Dynamic Host Configuration Protocol (DHCP) scope
  • C. Using a virtual port pool (VPP) to create virtualized ports that can be assigned to different VDOMs
  • D. Assigning the port directly to a specific VDOM for dedicated physical isolation
Answer: C,D
Explanation:
According to theFortiOS 7.6 Administration Guideand theFortiSwitch 7.6 FortiLink Guide, managing FortiSwitch units in a multi-VDOM environment allows for granular control over physical switch resources.
By default, when a FortiSwitch is discovered and authorized via FortiLink, its ports reside in the same VDOM as the FortiLink interface (typically the root or a dedicated management VDOM).
To allocate these ports to other VDOMs, administrators have two primary methods. The first method isdirect assignment(Option A). Using the FortiGate CLI or GUI, an administrator can export a specific physical port directly to a target VDOM. For example, the command set export-to <VDOM_name> under the config switch- controller managed-switch port settings physically isolates that port for use only by the specified VDOM.
This is ideal for multi-tenant scenarios where a specific physical connection must be dedicated to a single business unit.
The second method involves using aVirtual Port Pool (VPP)(Option D). This method provides a layer of virtualization for switch ports. An administrator first creates a pool (VPP) in the management VDOM and assigns physical ports to it. Then, from the tenant VDOM, an administrator can "request" a port from that specific pool. This allows for a more flexible "shared" infrastructure where ports are not permanently tethered to a single VDOM until they are claimed from the pool. Both methods ensure that traffic remains logically and physically isolated between VDOMs, supporting the security requirements of complex enterprise deployments. Options B and C are incorrect as they relate to traffic routing and device identification rather than the foundational assignment of hardware ports to virtual domains.


NEW QUESTION # 31
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