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Free PDF 2026 High Pass-Rate HP HPE7-A07 Study Reference

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Free PDF 2026 High Pass-Rate HP HPE7-A07 Study Reference

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HP HPE7-A07 Exam Syllabus Topics:
TopicDetails
Topic 1
  • Connectivity: The topic covers developing configurations, applying advanced networking technologies, and identifying design flaws. It tests the skills of a senior HP RF network engineer in creating reliable, high-performing networks tailored to specific customer needs.
Topic 2
  • WLAN: This HP HPE7-A07 exam topic tests the ability of a senior RF network engineer to design and troubleshoot RF attributes and wireless functions. It also includes building and troubleshooting wireless configurations, critical for optimizing WLAN performance in enterprise environments.
Topic 3
  • Switching: Senior HP RF network engineers must demonstrate proficiency in implementing and troubleshooting Layer 2
  • 3 switching, including broadcast domains and interconnection technologies. This ensures seamless and efficient data flow across network segments.
Topic 4
  • Security: This topic evaluates the ability of a senior HP RF network engineer to design and troubleshoot security implementations, focusing on wireless SSID with EAP-TLS and GBP. It ensures the network is secure from unauthorized access and threats.
Topic 5
  • Network Stack: This topic of the HP HPE7-A07 Exam evaluates the ability of a senior HP RF network engineer to analyze and troubleshoot network solutions based on customer issues. Mastery of this ensures effective problem resolution in complex network environments.
Topic 6
  • Authentication
  • Authorization: Senior HP RF network engineers are tested on their skills in designing and troubleshooting AAA configurations, including ClearPass integration. This ensures that network access is securely managed according to the customer's requirements.
Topic 7
  • Troubleshooting: This topic of the HP HPE7-A07 exam assesses skills of a senior HP RF network engineer in troubleshooting. It also assesses the ability to remediate issues in campus networks. It is vital for ensuring network reliability and minimizing downtime in critical environments.
Topic 8
  • Performance Optimization: The Aruba Certified Campus Access Mobility Expert Written exam focuses on analyzing and remediating performance issues within a network. It measures the ability of a senior RF network engineer to fine-tune network operations for maximum efficiency and speed.

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HP Aruba Certified Campus Access Mobility Expert Written Exam Sample Questions (Q51-Q56):NEW QUESTION # 51
You are troubleshooting a WLAN deployment with APs and gateways set up with an 802.1X tunneled SSID.
End-users are complaining that they can't connect to the enterprise SSID. Which possible AP tunnel states could be the cause of the issue? (Select two.)
  • A. SM_STATE_CONNECTING
  • B. SM_STATE_SURVIVING
  • C. SM_STATE_REKEYING
  • D. SM_STATE_SURVIVED
  • E. SM_STATE_CONNECTED
Answer: A,B
Explanation:
Comprehensive and Detailed Explanation From Exact Extract of HPE Aruba Networking Switching:
In Aruba gateway/AP tunnel state reporting, the following tunnel state semantics apply:
* SM_STATE_CONNECTING - indicates the AP has received tunnel configuration/keys and is attempting to bring up the tunnel; the tunnel is not yet available for client traffic.
* SM_STATE_SURVIVING - indicates the AP is in a survival/fallback condition (for example, it did not receive a fresh tunnel key and is attempting resolution via IKE); this state reflects a problem condition that can prevent successful client connectivity.
By contrast:
* SM_STATE_CONNECTED - indicates the IPsec tunnel to the endpoint is established and available.
* SM_STATE_REKEYING - indicates a rekey operation is in progress; the session is being updated, not necessarily failed.
* SM_STATE_SURVIVED - indicates the AP completed survival procedures and the IPsec tunnel is available.
Because end-users cannot connect, the problematic states are those where the tunnel is not up in normal service: SM_STATE_CONNECTING and SM_STATE_SURVIVING.
References:* ArubaOS/ArubaOS 10 Gateway and AP Tunnel State Descriptions; Command Reference for tunnel endpoint status and state-machine definitions (section describing CONNECTING, SURVIVING, SURVIVED, CONNECTED, and REKEYING states).* Aruba Campus WLAN Design and Operations Guide; Troubleshooting AP-to-Gateway IPsec Tunnel States (tunnel state meanings and client impact).

NEW QUESTION # 52
Refer to the exhibit.

Which statement is true?
  • A. The client performed passive scanning
  • B. The client is failing 802.1X authentication
  • C. The client is using BSS Fast Transition
  • D. The client used an incorrect passphrase
Answer: B
Explanation:
The exhibit shows a series of 802.1X authentication steps with multiple "Deauthentication" frames, which indicate that the client is not successfully completing the authentication process. Since the frames show repeated attempts at authentication followed by deauthentication, this suggests that the client is failing the
802.1X authentication process, which is required for network access in a WPA2/WPA3-Enterprise security environment.

NEW QUESTION # 53
A customer is evaluating device profiles on a CX 6300 switch. The test device has the following attribute:

* MAC address=81:cd:93:13:ab:31
The test device needs to be assigned the "lot-prod'' role, in addition the "lot-default" role must be applied for any other device connected lo interface 1/1/1. This is a lab environment with no configuration of any external authentication server for the test.
Given the configuration example, what is required to meet this testing requirement?
  • A. Enter the command "pot-access device-profile mode block-until-profile-applied"" for interface 1/1/1.
  • B. Enter the command "port-access device-profile mode block-until-profile-applied" globally.
  • C. Enter the command "port-access onboarding-method precedence" to set device profiles with a lower precedence.
  • D. Enter the command "port-access fallback-role lot-default globally
Answer: D
Explanation:
The fallback role is used as a default role in the absence of a specified role or when an authentication server is not available. Given the scenario, where the test device with MAC address 81:cd:93:13:ab:31 needs to be assigned to "iot-prod" and other devices to "iot-default", and considering there is no external authentication server configured for the test, the appropriate action would be to set a global fallback role that applies to all devices connecting to the network. This ensures that any device that does not match the specific device profile will inherit the "iot-default" role. Since the configuration for a specific MAC address (81:cd:93:xx:xx:xx) to associate with the "iot-prod" role is already in place, setting the fallback role globally accommodates the requirement for other devices.

NEW QUESTION # 54
An engineer has applied the above configuration to R1 and R2. However, the router's OSPF adjacency never progresses past the "EXSTART/DR" state.

Which configuration action on either router will allow R1 and R2 to progress past the "EXSTART/DR" state?
  • A. Remove the layer 3 MTU configuration
  • B. Change the IP address and mask applied to interface 1/1/1
  • C. Change R1 and R2 to a network type of point-to-point
  • D. Ensure the OSPF process is not configured with passive-interface default
Answer: A
Explanation:
In Aruba AOS-CX, OSPF neighbors that reach EXSTART/EXCHANGE but fail to advance typically indicate a database description (DD) negotiation issue, most commonly caused by an MTU mismatch on the link. The OSPF header carries the interface MTU; if the values do not match, the peer rejects DD packets and the adjacency remains stuck at EXSTART (often shown as EXSTART/DR or EXSTART/BDR).
Aruba's OSPF guidance states:
* "If neighbors remain in EXSTART/EXCHANGE, verify that the Layer-3 MTU matches on both ends of the adjacency. An MTU mismatch causes DD packets to be rejected and prevents the adjacency from reaching FULL."
* Recommended corrective action is to align or remove custom L3 MTU settings on the participating interfaces (or use the mtu-ignore feature where appropriate).
In this scenario, removing the custom Layer-3 MTU configuration so both sides use the same default MTU allows DD packet negotiation to succeed and the adjacency to progress to FULL.

NEW QUESTION # 55
A customer is evaluating device profiles on a CX 6300 switch. The test device has the following attribute:
* MAC address = 81:cd:93:13:ab:31
The test device needs to be assigned the "iot-prod" role. In addition, the "iot-default" role must be applied for any other device connected to interface 1/1/1.
This is a lab environment with no configuration of any external authentication server for the test.

Given the configuration example, what is required to meet this testing requirement?
  • A. Enter the command port-access device-profile mode block-until-profile-applied globally
  • B. Enter the command port-access fallback-role iot-default globally
  • C. Enter the command port-access onboarding-method precedence to set device profiles with a higher precedence
  • D. Enter the command port-access onboarding-method precedence to set device profiles with a lower precedence
Answer: B
Explanation:
In Aruba CX 6300 and other AOS-CX switches, device profiling enables automatic assignment of roles and policies to endpoints based on device attributes such as MAC OUI, LLDP, or DHCP fingerprint - without requiring an external authentication server such as ClearPass or RADIUS.
The configuration snippet shows:
mac-group iot
seq 10 match mac-oui 81:cd:93
port-access device-profile iot-prod
enable
associate role iot-prod
associate mac-group iot
This means that any device with a MAC address matching the OUI 81:cd:93 will automatically be assigned the iot-prod device profile and its associated role (iot-prod).
However, the requirement also specifies that any other device connected to the same interface (that does not match the OUI or device profile) should still be assigned a default role called iot-default.
To ensure that endpoints not matching any known device profile still receive limited network access, Aruba AOS-CX uses the fallback-role feature under port-access configuration.
The command:
port-access fallback-role iot-default
defines the role that will be automatically assigned to endpoints that fail to match any of the configured device-profile conditions.
This mechanism is crucial in lab or standalone environments where no external authentication (e.g., RADIUS, ClearPass) is configured. It ensures devices are still given a default policy, preventing them from being left in an unauthenticated or blocked state.
Official HPE Aruba Extract (ArubaOS-CX Security and Access Guide):
"The fallback-role command allows the switch to assign a predefined local role to a device when no authentication server is available, or when the device does not match any configured device profile."
"This command is typically used in test or lab environments where profiling is local to the switch, and a baseline role must still be enforced for unknown devices." Therefore, in this case:
* Devices matching the MAC OUI 81:cd:93 # assigned iot-prod role
* All other devices # automatically assigned iot-default role via port-access fallback-role iot-default Option Analysis:
* A. Incorrect - The port-access onboarding-method precedence command changes the priority order between authentication methods (e.g., 802.1X, MAC-auth, device profile). It does not control fallback behavior.
* B. Incorrect - The block-until-profile-applied option delays port activation until profiling completes, but it doesn't provide a fallback role.
* C. Correct - The port-access fallback-role iot-default command ensures that any device not matching the iot-prod profile receives the iot-default role.
* D. Incorrect - Lowering precedence has no effect on assigning a default role.
Final Verified answer: C
Reference Sources (HPE Aruba Official Materials):
* Aruba AOS-CX Security and Access Configuration Guide - Device Profiling and Role Assignment
* Aruba Certified Switching Professional (ACSP) Study Guide - Port Access and Device Profiling
* ArubaOS-CX Fundamentals Guide - Port Access and Fallback Role Implementation

NEW QUESTION # 56
......
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