HP HPE7-J02 Exam (page: 2)
HP Advanced E Storage Integrator Solutions Written
Updated on: 12-Feb-2026

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A junior engineer doing their first assessment makes the comment that all assessments are basically done "entirely by the assessment tool" and all they must do is start the process in the HPE website. You caution them that some assessment tools require a manual email by the engineer to HPE to really start the process.
Which type of assessments require an email?

  1. Backup
  2. SAF
  3. Non-HPE
  4. CloudPhysics

Answer(s): B

Explanation:

Detailed Explanation;
Rationale for Correct Answer;
The SAF (Storage Assessment Framework) requires engineers to manually email the collected assessment data to HPE for processing. This is different from fully automated tools like CloudPhysics or Backup assessments that integrate directly with portals. This distinction is important for new engineers performing customer assessments.

Distractors:
A: Backup assessments are usually tool-driven (StoreOnce, RMC, etc.) and automated.
C: Non-HPE assessments are outside scope and not part of HPE standard process.
D: CloudPhysics is fully automated and cloud-based -- no manual email required. Key Concept: SAF = requires manual email submission to HPE.


Reference:

HPE Internal Assessment and Sizing Tools Guide.



Your customer wants to use their HPE Alletra Storage MP B10000 array to store persistent data for Kubernetes-based applications. After deploying the CSI driver using Helm and creating the secret with the command kubectl create -f hpe-backed.yaml, what is the next required step to enable the containerized applications to consume persistent volumes on the Alletra MP array?

  1. Update the Helm repository by using helm repo update to recognize the CSI driver
  2. Create a PersistentVolumeClaim by using kubectl create -f my-pvc.yaml
  3. Create a PersistentVolume by using kubectl create -f pv.yaml
  4. Define a StorageClass by running kubectl create -f storageclass.yaml

Answer(s): D

Explanation:

Detailed Explanation;
Rationale for Correct Answer;
After installing the HPE CSI driver and creating backend secrets, the next critical step is to define a StorageClass that references the backend driver and parameters. Without the StorageClass, Kubernetes cannot dynamically provision PersistentVolumes (PVs). Once the StorageClass is created, workloads can request storage using PersistentVolumeClaims (PVCs).
Distractors:
A: Helm repo update only refreshes Helm charts; it does not enable CSI provisioning.
B: A PVC requires a StorageClass to bind dynamically -- it cannot be created successfully beforehand.
C: Manually creating PVs is possible, but not the HPE best practice with CSI, which relies on StorageClass for dynamic provisioning.
Key Concept: Kubernetes CSI workflow: Secret StorageClass PVC Pod.



Refer to the exhibit.



You are sizing an HPE Alletra Storage MP B10000 as shown in the graphic below.
What change must be made to the current storage configuration to achieve maximum IOPS performance?

  1. Additional network cards or HBAs need to be added for more throughput
  2. Additional disks need to be added to the system
  3. No change needed -- the system is already operating at maximum performance
  4. The controller must be upgraded to a 32-core model

Answer(s): C

Explanation:

Detailed Explanation;
Rationale for Correct Answer;
From the exhibit, the system shows maximum estimated IOPS performance (over 250K IOPS read, 115K IOPS mixed, 62K write). These values align with HPE's published performance specifications for this model with full cores enabled. The network interface count and disk count are balanced relative to controller capability. Therefore, no further upgrades are required to achieve maximum performance.
Distractors:
A: Adding NICs/HBAs may improve throughput but will not exceed controller-bound IOPS.
B: Adding disks increases capacity, not peak IOPS, as performance is primarily controller-driven.
D: The system already matches controller capability; upgrading cores is not an option in Alletra MPB10000 mid-range systems.
Key Concept: Understanding performance sizing based on controller and architecture limits, not just capacity or NICs.


Reference:

HPE Alletra MP Performance and Sizing Guide.



Which statement is true regarding HPE's SAP HANA solutions?

  1. HPE supplies custom HANA licenses exclusive for HPE appliances.
  2. Customers can reduce licensing costs with Alletra MP Block.
  3. 77% of customers prefer SAP HANA solutions on HPE.
  4. About 40% of HANA infrastructure runs on HPE.

Answer(s): D

Explanation:

Detailed Explanation;
Rationale for Correct Answer;
HPE is one of the leading infrastructure providers for SAP HANA, with ~40% of global SAP HANA deployments running on HPE platforms (ProLiant, Alletra, Nimble/Primera for storage). This is an official HPE statistic repeatedly cited in white papers and customer references.
Distractors:
A: SAP HANA licensing is provided directly by SAP, not custom-issued by HPE.
B: Licensing costs are tied to SAP metrics (memory size), not Alletra storage type.
C: "77% prefer" is a marketing exaggeration and not the accurate documented figure. Key Concept: HPE's strong positioning in SAP HANA infrastructure market share.


Reference:

HPE SAP HANA Solutions Overview, HPE Global SAP HANA Customer Reference Sheet.



Refer to the exhibit of Zerto Vault architecture.



Which statement about the Zerto Vault architecture is correct?

  1. Data is replicated via encrypted periodic replication between Production and the Replication Target.
  2. Data is replicated via encrypted periodic replication between the Replication Target and the Vault.
  3. The Resilience Automation Server manages port access between Production and the Replication Target.
  4. Immutable snapshots of all Zerto components are taken at the Replication Target and replicated to the Vault.

Answer(s): B

Explanation:

Detailed Explanation;
Rationale for Correct Answer;
In the Zerto Vault architecture, production workloads replicate continuously to a Replication Target (secondary site). From there, data is further replicated periodically and encrypted into the Vault (air- gapped, isolated site). This two-step process ensures ransomware resilience and immutability, as the Vault acts as a hardened third copy.
Distractors:
A: Production-to-replication target traffic is continuous synchronous/asynchronous replication, not periodic. Periodic replication applies to Replication Target Vault.
C: The Resilience Automation Server (RAS) is responsible for orchestrating failover and immutability enforcement, but it does not control port access between production and replication target.
D: Snapshots of Zerto components are not what is replicated -- it's application data VMs/volumes. The Vault ensures immutability of replicated data, not ZVM components. Key Concept: Zerto Vault = encrypted, periodic replication from replication target to immutable vault.


Reference:

HPE Zerto Vault Architecture White Paper, HPE Ransomware Recovery Solutions.



A global financial services company is looking to enhance its disaster recovery (DR) capabilities. They operate VMware workloads across multiple data centers and a mix of AWS and Azure cloud workloads. They need a solution that can replicate data with near-zero recovery point objectives (RPOs) and orchestrate rapid recovery of critical applications in case of a site-wide failure.

  1. Zerto
  2. CommVault
  3. Cohesity
  4. SimpliVity

Answer(s): A

Explanation:

Detailed Explanation;
Rationale for Correct Answer;
Zerto, now part of HPE, provides continuous data protection (CDP) with near-zero RPOs and very low

RTOs. It supports VMware workloads, as well as hybrid cloud deployments with AWS and Azure. Zerto is specifically designed for disaster recovery orchestration, enabling automated failover, failback, and application-consistent protection across sites and cloud environments.
Distractors:
B (CommVault): Primarily a backup/recovery and data management platform -- RPOs are not near- zero.
C (Cohesity): Strong in backup, secondary storage, and ransomware recovery, but not near-zero RPO DR orchestration.
D (SimpliVity): Hyperconverged infrastructure with built-in backup, but not optimized for large-scale multi-cloud DR.
Key Concept: Continuous Data Protection (Zerto) for hybrid/multi-cloud disaster recovery.


Reference:

HPE Zerto DR for Hybrid and Multi-cloud Environments.



You need to evaluate a customer virtual server environment to size an HPE Block storage solution according to the metrics seen on the system over a period of time. The environment consists of Lenovo servers and Pure Storage as the storage vendor for a Microsoft Hyper-V cluster managed by Microsoft SCVMM.
Which HPE tools can you utilize to gather the usage metrics of this setup?

  1. Import the HPE CloudPhysics.vhdx collector to the Hyper-V cluster to gather the analytics.
  2. Use the HPE InfoSight Primary Storage sizing tool to calculate the competitive performance metrics.
  3. Install the SAFcollector agents into the environment and use SAFanalyze to import the agent output.
  4. Export the Microsoft System Center Virtual Machine Manager database for NinjaProtected analysis.

Answer(s): A

Explanation:

Detailed Explanation;
Rationale for Correct Answer;
HPE CloudPhysics provides comprehensive environment assessment and competitive sizing for virtualized environments (VMware, Hyper-V, etc.). The CloudPhysics collector (available as a .vhdx for Hyper-V) is deployed into the cluster to gather metrics on CPU, memory, storage IOPS/latency, and utilization trends. These analytics feed into the sizing of HPE storage solutions.
Distractors:
B: InfoSight sizing tools work with HPE systems, not competitive 3rd-party storage like Pure.
C: SAF is a manual assessment requiring email submission and is not the correct modern method for this case.
D: NinjaProtected applies to backup analysis, not production Hyper-V cluster sizing. Key Concept: CloudPhysics.vhdx collector for Hyper-V sizing with 3rd-party infrastructure.


Reference:

HPE CloudPhysics Assessment Guide.



Two HPE Storage Alletra MP B10000 arrays are deployed with Active Peer Persistence. Both arrays and hosts are installed in close proximity to each other. To enable symmetric access, Peer Persistence must be configured accordingly.
Which Host Proximity Parameter should be selected for host ESX31 in this case?

  1. Secondary
  2. All
  3. Exclusive
  4. Primary

Answer(s): B

Explanation:

Detailed Explanation;
Rationale for Correct Answer;
Option B (All) is correct because in an Active Peer Persistence deployment where both arrays and hosts are in close proximity (metro or campus cluster scenario), the hosts should be configured with Host Proximity = All. This ensures that the host (ESX31) can access both arrays symmetrically and concurrently, enabling active-active paths. This is essential to deliver seamless failover and load balancing across the arrays in an HPE Alletra MP Peer Persistence environment.
Analysis of Incorrect Options (Distractors):
A (Secondary): This is used for hosts located closer to the secondary array, to bias access toward it in asymmetric deployments. Not applicable here since the hosts are near both arrays. C (Exclusive): This option assigns the host to a single array exclusively, preventing dual-active access. This would defeat the purpose of symmetric Peer Persistence. D (Primary): Similar to Secondary, this biases access to only the primary array, which is not correct when arrays and hosts are in the same site for active-active.
Key Concept:
This question focuses on Host Proximity parameters in HPE Peer Persistence. Primary/Secondary = asymmetric designs (hosts closer to one array). All = symmetric design (hosts equidistant to both arrays, enabling active-active).
Exclusive = restricts access to one array only.


Reference:

HPE Alletra MP Storage Peer Persistence Best Practices Guide HPE Primera/Alletra Remote Copy and Peer Persistence Technical White Paper VMware Metro Storage Cluster with HPE Peer Persistence Implementation Notes



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