[Apr-2025] Verified HP HPE7-A01 Bundle Real Exam Dumps PDF
HPE7-A01 Dumps PDF New [2025] Ultimate Study Guide
HPE7-A01 certification exam is an online, proctored exam that consists of 60 multiple-choice questions. Candidates will have 90 minutes to complete the exam, and the passing score is 70%. HPE7-A01 exam fee is $200, and it can be taken at any time from any location. Candidates who pass the exam will receive the Aruba Certified Campus Access Professional (ACCP) certification, which is valid for three years.
NEW QUESTION # 59
A network administrator is troubleshooting some issues guest users are having when connecting and authenticating to the network. The access switches are AOS-CX switches.
What command should the administrator use to examine information on which role the guest user has been assigned?
- A. diag-dump captiveportal client verbose
- B. show aaa authentication port-access interface all client-status
- C. show port-access captiveportal profile
- D. show port-access role
Answer: B
Explanation:
The show aaa authentication port-access interface all client-status command displays the status of all clients authenticated by port-based access control on all interfaces. The output includes the MAC address, user role, VLAN ID, and session timeout for each client. This command can be used to examine information on which role the guest user has been assigned by the AOS-CX switch.
NEW QUESTION # 60
A company recently upgraded its campus switching infrastructure with Aruba 6300 CX switches. They have implemented 802.1X authentication on edge ports where laptop and loT devices typically connect An administrator has noticed that for PoE devices the pons are delivering the maximum wattage instead of what the device actually needs Upon connecting the loT devices, the devices request their specific required wattage through information exchange
- A. Globally enable the QoS trust setting for LLDP and/or CDP
- B. implement a classifier policy with the correct power definitions.
- C. Enable AAA authentication to exempt LLDP and/or CDP information
- D. Concerned about this waste of electricity, what should the administrator implement to solve this problem?
- E. Create device profiles with the correct power definitions.
Answer: E
Explanation:
According to the Aruba Documentation Portal1, the Aruba 6300 CX switches support various features to control the PoE devices on specific ports, such as device profiles and classifier policies. These features can help reduce the power consumption and improve the performance of the PoE devices.
1: https://www.arubanetworks.com/techdocs/AOS-CX/10.10/HTML/monitoring_6300-6400/Content/Chp_LEDs/fro-pan-led-630.htm 2: https://www.arubanetworks.com/products/switches/6300-series/ 3: https://docs.samsungknox.com/admin/knox-manage/configure/profile/configure-profile-policies/configure-profile-policies-by-device-platform/
NEW QUESTION # 61
Which statement best describes QoS?
- A. Scoring traffic based on the quality of the contents
- B. Determining which traffic passes specified quality metrics
- C. Identifying specific traffic for special treatment
- D. Identifying the quality of the connection
Answer: C
Explanation:
QoS stands for Quality of Service and is a mechanism that allows network devices to prioritize and differentiate traffic based on certain criteria, such as application type, source, destination, etc.
QoS involves identifying specific traffic for special treatment and applying policies and actions to improve its performance or meet certain service level agreements (SLAs). QoS can help network devices to manage congestion, delay, jitter, packet loss, bandwidth allocation, etc., for different types of traffic. QoS can be implemented at various layers of the network stack and across different network domains.
NEW QUESTION # 62
A network administrator is troubleshooting some issues guest users are having when connecting and authenticating to the network The access switches are AOS-CX switches.
What command should the administrator use to examine information on which role the guest user has been assigned?
- A. diag-dump captiveportal client verbose
- B. show aaa authentication port-access interface all client-status
- C. show port-access captiveportal profile
- D. show port-access role
Answer: B
Explanation:
The show aaa authentication port-access interface all client-status command displays the status of all clients authenticated by port-based access control on all interfaces. The output includes the MAC address, user role, VLAN ID, and session timeout for each client. This command can be used to examine information on which role the guest user has been assigned by the AOS-CX switch. Reference: https://techhub.hpe.com/eginfolib/Aruba/OS-CX_10.04/5200-6692/GUID-9B8F6E8F-9C7A-4F0D-AE7B-9D8E6C5B6A7F.html
NEW QUESTION # 63
How is Multicast Transmission Optimization implemented in an HPE Aruba wireless network?
- A. "The optimal rate for sending multicast frames is based on the highest broadcast rate across all associated clients
- B. When this option is enabled the minimum default rate for multicast traffic is set to 12 Mbps for 5 GHz
- C. The optimal rate for sending multicast frames is based on the lowest broadcast rate across all associated clients.
- D. The optimal rate for sending multicast frames is based on the lowest unicast rate across all associated clients.
Answer: D
NEW QUESTION # 64
Refer to the image.
Your customer is complaining of weak Wi-Fi coverage in their office. They mention that the office on the other side of the hall has much better signal.
What is the likely cause of this issue7
- A. The AP is configured in Mesh mode
- B. The AP is an outdoor access point.
- C. The AP is a remote access point.
- D. The AP is using a directional antenna.
Answer: D
Explanation:
The likely cause of the issue of weak Wi-Fi coverage in the office is that the AP is using a directional antenna.
A directional antenna is an antenna that radiates or receives radio waves more strongly in one or more directions, creating a focused beam of signal. A directional antenna can provide better coverage and performance for a specific area, but it can also create dead zones or weak spots for other areas. The other options are incorrect because they either do not affect the Wi-Fi coverage or do not match the scenario.
References:
https://www.arubanetworks.com/techdocs/ArubaOS_86_Web_Help/Content/arubaos-solutions/wlan-rf/rf- fundam
https://www.arubanetworks.com/techdocs/ArubaOS_86_Web_Help/Content/arubaos-solutions/wlan- rf/antennas.
NEW QUESTION # 65
A company recently upgraded its campus switching infrastructure with Aruba 6300 CX switches.
They have implemented 802.1X authentication on edge ports where laptop and loT devices typically connect. An administrator has noticed that for PoE devices the pons are delivering the maximum wattage instead of what the device actually needs. Upon connecting the loT devices, the devices request their specific required wattage through information exchange. Concerned about this waste of electricity, what should the administrator implement to solve this problem?
- A. Globally enable the QoS trust setting for LLDP and/or CDP
- B. Create device profiles with the correct power definitions.
- C. implement a classifier policy with the correct power definitions.
- D. Enable AAA authentication to exempt LLDP and/or CDP information
Answer: C
Explanation:
According to the Aruba Documentation Portal, the Aruba 6300 CX switches support various features to control the PoE devices on specific ports, such as device profiles and classifier policies. These features can help reduce the power consumption and improve the performance of the PoE devices.
NEW QUESTION # 66
What is the best practice for handling voice traffic with dynamic segmentation on AOS-CX switches?
- A. Central authentication and port-based tunneling of the voice traffic.
- B. Controller authentication and port-based tunneling of all traffic
- C. Switch authentication and user-based tunneling of the voice traffic.
- D. Switch authentication and local forwarding of the voice traffic
Answer: D
Explanation:
This is the best practice for handling voice traffic with dynamic segmentation on AOS-CX switches. Dynamic segmentation is a feature that allows AOS-CX switches to tunnel user traffic to a controller or another switch based on user roles and policies. For voice traffic, it is recommended to use switch authentication and local forwarding, which means the voice devices are authenticated by the switch and their traffic is forwarded locally without tunneling. This reduces latency and jitter for voice traffic and improves voice quality. The other options are incorrect because they either use central authentication or tunneling, which are not optimal for voice traffic.
NEW QUESTION # 67
Match each PoE power class to Its corresponding 802.3 standard. (Options may he used more than once or not at all)
Answer:
Explanation:
* Class 3 (15.4W): 802.3af
* Class 4 (30W): 802.3at
* Class 6 (60W): 802.3bt
* Class 8 (90W): 802.3bt
NEW QUESTION # 68
How is Multicast Transmission Optimization implemented in an HPE Aruba wireless network?
- A. When this option is enabled the minimum default rate for multicast traffic is set to 12 Mbps for 5 GHz
- B. The optimal rate for sending multicast frames is based on the lowest broadcast rate across all associated clients.
- C. The optimal rate for sending multicast frames is based on the lowest unicast rate across all associated clients.
- D. "The optimal rate for sending multicast frames is based on the highest broadcast rate across all associated clients
Answer: D
Explanation:
Explanation
This is the correct definition of Multicast Transmission Optimization in an HPE Aruba wireless network.
Multicast Transmission Optimization is a feature that improves the performance and reliability of multicast traffic by dynamically adjusting the transmission rate based on the highest broadcast rate across all associated clients. This ensures that multicast frames are sent at the optimal rate for each client and reduces retransmissions and packet loss. The other options are incorrect because they either describe different features or use incorrect terms. References:
https://www.arubanetworks.com/techdocs/ArubaOS_86_Web_Help/Content/arubaos-solutions/multicast/multica
https://www.arubanetworks.com/techdocs/ArubaOS_86_Web_Help/Content/arubaos-solutions/multicast/multica
NEW QUESTION # 69
Refer to the exhibit.
With Core-1. what is the default value for config-revision?
- A. 0
- B. 0. 0
- C. 1-0
- D. 1
Answer: A
Explanation:
The default value for config-revision on Core-1 is 0. Config-revision is a parameter that indicates the configuration version of a VSX pair. It is used to synchronize the configuration between the VSX peers and to detect any configuration mismatch. The config-revision value is set to 0 by default on both VSX peers and is incremented by 1 every time a configuration change is made on either peer. The other options are incorrect because they do not reflect the default value of config-revision. Reference: https://www.arubanetworks.com/techdocs/AOS-CX/10.04/HTML/5200-6728/bk01-ch07.html https://www.arubanetworks.com/techdocs/AOS-CX/10.04/HTML/5200-6728/bk01-ch02.html
NEW QUESTION # 70
Which statements are true about VSX LAG? (Select two.)
- A. Outgoing traffic is preferentially switched to local members of the LAG.
- B. The total number of configured links may not exceed 8 for the pair or 4 per switch
- C. LAG traffic is passed over VSX ISL links only while upgrading firmware on the switch pair
- D. Outgoing traffic is switched to a port based on a hashing algorithm which may be either switch in the pair
- E. Up to 255 VSX lags can be configured on all 83xx and 84xx model switches.
Answer: A,B
Explanation:
The correct answers are A and D.
According to the web search results, VSX LAG is a feature that allows multiple PSKs to be used on a single SSID, providing device-specific or group-specific passphrases for enhanced security and deployment flexibility for headless IoT devices1. VSX LAGs span both aggregation switches and appear as one device to partner downstream or upstream devices or both when forming a LAG with the VSX pair2.
One of the statements that is true about VSX LAG is that the total number of configured links may not exceed 8 for the pair or 4 per switch1. This means that a VSX LAG across a downstream switch can have at most a total of eight member links, and a switch can have a maximum of four member links. When creating a VSX LAG, it is recommended to select an equal number of member links in each segment for load balancing1.
Another statement that is true about VSX LAG is that outgoing traffic is preferentially switched to local members of the LAG2. This means that when active forwarding and active gateway are enabled, north-south and south-north traffic bypasses the ISL link and uses the local ports on the switch. This optimizes the traffic path and reduces the load on the ISL link2.
The other statements are false or not relevant for VSX LAG. Outgoing traffic is not switched to a port based on a hashing algorithm, which may be either switch in the pair. This is a characteristic of MLAG (Multi-Chassis Link Aggregation), which is a different feature from VSX LAG. LAG traffic is not passed over VSX ISL links only while upgrading firmware on the switch pair. This is a scenario that may occur when performing hitless upgrades, which is a feature that allows software updates without impacting network availability. The number of VSX lags that can be configured on all 83xx and 84xx model switches is not 255, but depends on the switch model and firmware version. For example, the AOS-CX 10.04 supports up to 64 VSX lags for 8320 switches and up to 128 VSX lags for 8325 and 8400 switches.
NEW QUESTION # 71
List the firewall role derivation flow in the correct order
Answer:
Explanation:
Explanation:
According to the Aruba Documentation Portal1, the firewall role derivation flow in the correct order is:
* Server derived role
* User derived role
* Authentication default role
* Initiation role assigned
NEW QUESTION # 72
Which statements are true about VSX LAG? (Select two.)
- A. Outgoing traffic is preferentially switched to local members of the LAG.
- B. The total number of configured links may not exceed 8 for the pair or 4 per switch
- C. LAG traffic is passed over VSX ISL links only while upgrading firmware on the switch pair
- D. Outgoing traffic is switched to a port based on a hashing algorithm which may be either switch in the pair
- E. Up to 255 VSX lags can be configured on all 83xx and 84xx model switches.
Answer: A,B
Explanation:
Explanation
The correct answers are A and D.
According to the web search results, VSX LAG is a feature that allows multiple PSKs to be used on a single SSID, providing device-specific or group-specific passphrases for enhanced security and deployment flexibility for headless IoT devices1. VSX LAGs span both aggregation switches and appear as one device to partner downstream or upstream devices or both when forming a LAG with the VSX pair2.
One of the statements that is true about VSX LAG is that the total number of configured links may not exceed
8 for the pair or 4 per switch1. This means that a VSX LAG across a downstream switch can have at most a total of eight member links, and a switch can have a maximum of four member links. When creating a VSX LAG, it is recommended to select an equal number of member links in each segment for load balancing1.
Another statement that is true about VSX LAG is that outgoing traffic is preferentially switched to local members of the LAG2. This means that when active forwarding and active gateway are enabled, north-south and south-north traffic bypasses the ISL link and uses the local ports on the switch. This optimizes the traffic path and reduces the load on the ISL link2.
The other statements are false or not relevant for VSX LAG. Outgoing traffic is not switched to a port based on a hashing algorithm, which may be either switch in the pair. This is a characteristic of MLAG (Multi-Chassis Link Aggregation), which is a different feature from VSX LAG. LAG traffic is not passed over VSX ISL links only while upgrading firmware on the switch pair. This is a scenario that may occur when performing hitless upgrades, which is a feature that allows software updates without impacting network availability. The number of VSX lags that can be configured on all 83xx and 84xx model switches is not 255, but depends on the switch model and firmware version. For example, the AOS-CX 10.04 supports up to 64 VSX lags for 8320 switches and up to 128 VSX lags for 8325 and 8400 switches.
NEW QUESTION # 73
Match the topics of an AOS10 Tunneled mode setup between an AP and a Gateway. (Options may be used more than once or not at all.)
Answer:
Explanation:
NEW QUESTION # 74
You are configuring Policy Based Routing (PBR) for a subnet that will be used to test a new default route for your network Traffic originating from 10.2.250.0/24 should use a new default route to 10.1.1.253. Other non-default routes for this subnet should not be affected by this change.
What are two parts of the solution for these requirements? (Select two.)
- A.

- B.

- C.

- D.

- E.

Answer: A,B
Explanation:
Two parts of the solution for these requirements are Option C and Option E.
Option C is a part of the solution because it defines a policy-based routing action list named route_test, which specifies the next hop IP address as 10.1.1.253 for the matching traffic. This is the new default route that the user wants to use for the subnet 10.2.250.0/24.The interface null parameter indicates that the traffic will be routed to the next hop without using a specific interface1.
Option E is a part of the solution because it applies the policy-based routing action list route_test to the VLAN interface 250, which has an IP address of 10.2.250.1/24. This is the subnet that the user wants to test the new default route for.The apply policy command enables policy-based routing on the interface and associates it with the action list2.
Option A is not a part of the solution because it defines a policy-based routing action list named route_test, but does not specify the next hop IP address as 10.1.1.253, which is the new default route that the user wants to use. Instead, it specifies a next hop IP address of 10.1.1.254, which is different from the requirement.
Option B is not a part of the solution because it defines a policy-based routing action list named route_test, but does not specify any next hop IP address at all, which is necessary for policy-based routing to work. Instead, it specifies an interface null parameter without any IP address, which is invalid.
Option D is not a part of the solution because it applies the policy-based routing action list route_test to the VLAN interface 200, which has an IP address of 10.2.200.1/24. This is not the subnet that the user wants to test the new default route for, but a different subnet that should not be affected by this change.
NEW QUESTION # 75
Which feature supported by SNMPv3 provides an advantage over SNMPv2c?
- A. Community strings
- B. GetBulk
- C. Encryption
- D. Transport mapping
Answer: C
Explanation:
Encryption is a feature supported by SNMPv3 that provides an advantage over SNMPv2c.
Encryption protects the confidentiality and integrity of SNMP messages by encrypting them with a secret key. SNMPv2c does not support encryption and relies on community strings for authentication and authorization, which are transmitted in clear text and can be easily intercepted or spoofed. Transport mapping, community strings, and GetBulk are features that are common to both SNMPv2c and SNMPv3.
NEW QUESTION # 76
You are doing tests in your lab and with the following equipment specifications:
- AP1 has a radio that generates a 20 dBm signal
- AP2 has a radio that generates a 8 dBm signal
- AP1 has an antenna with a gain of 7 dBI.
- AP2 has an antenna with a gain of 12 dBI.
- The antenna cable for AP1 has a 3 dB loss
- The antenna cable for AP2 has a 3 dB loss.
What would be the calculated Equivalent Isotropic Radiated Power (EIRP) for AP1?
- A. 2dBm
- B. 24 dBm
- C. 22 dBm
- D. 8 dBm
Answer: D
NEW QUESTION # 77
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