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HPE Storage Integrator Solutions (HPE0-J83)

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Vendor

HPE

Certification

Storage

Content

60 Qs

Status

Verified

Updated

10 hours ago

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Exam Overview

The HPE Storage Integrator Solutions (HPE0-J83) certification validates your expertise in designing, implementing, and managing robust HPE storage solutions tailored to diverse business needs. This credential signifies your ability to translate complex business requirements into high-performing, scalable, and resilient data storage architectures using leading HPE technologies like Nimble Storage, Alletra, Primera, StoreOnce, and 3PAR. Earning this certification demonstrates a deep understanding of storage networking, data protection, and performance optimization, positioning you as a valuable asset for organizations seeking to maximize their data infrastructure's efficiency and reliability. It proves your capability to integrate diverse HPE storage products seamlessly, ensuring optimal data availability and security while providing a competitive edge in today's data-driven landscape.

Questions

65

Passing Score

700/1000

Duration

100 Minutes

Difficulty

Intermediate

Level

Professional

Skills Measured

Planning and Design of HPE Storage Solutions
Implementation and Configuration of HPE Storage Products (e.g., Nimble, Alletra, Primera, StoreOnce)
Data Protection, Backup, and Recovery Strategies
Performance Optimization, Monitoring, and Troubleshooting
Storage Networking and Connectivity (SAN, NAS, Fibre Channel, iSCSI)

Career Path

Target Roles

Storage Administrator Solutions Architect Technical Consultant

Common Questions

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Free Study Guide Samples

Previewing updated HPE0-J83 bank (12 Questions).

QUESTION 1

Which data availability technology in the HPE Alletra Storage MP B10000 controller tolerates drive failures?

A
Spare drive
B
RAID DP+
C
RAID 6 (10+2)
D
Triple Parity

Correct Option: D

โœ… Option D (Correct) Reasoning: HPE Alletra Storage MP controllers feature Triple Parity RAID, a data availability technology that provides robust protection by tolerating up to three simultaneous drive failures within a RAID set, significantly enhancing data resilience.
โŒ Why the other choices are incorrect:


Option A is incorrect: A spare drive facilitates data rebuilds after a failure but is not the primary technology that tolerates a drive failure to keep data accessible; that function is performed by RAID.

Option B is incorrect: RAID DP+ (Dual Parity) typically tolerates two drive failures. While a valid technology, Triple Parity offers a higher level of drive failure tolerance.

Option C is incorrect: RAID 6 (10+2) refers to a RAID 6 configuration, which is Dual Parity and tolerates two drive failures. Triple Parity provides superior fault tolerance compared to RAID 6.



Reference: https://www.hpe.com/psnow/doc/a50004958enw
QUESTION 2

Which concept can be used to limit access to a virtual volume on a specific server?

A
RAID
B
Selective storage presentation
C
Thin provisioning
D
Redundant array of independent nodes

Correct Option: B

โœ… Option B (Correct) Reasoning: Selective storage presentation, also known as LUN masking, is the method used to restrict access of a virtual volume to specific servers. This ensures that only authorized hosts can 'see' and utilize the designated storage resources within a SAN. โŒ Why the other choices are incorrect:

Option A is incorrect: RAID (Redundant Array of Independent Disks) is a data storage virtualization technology focused on combining multiple physical disk drive components for redundancy and performance, not for controlling server access.

Option C is incorrect: Thin provisioning is a storage allocation method that allocates physical storage space only when data is written, optimizing storage utilization rather than limiting server access.

Option D is incorrect: "Redundant array of independent nodes" is not a standard or recognized storage concept directly related to limiting virtual volume access.



Reference: https://www.hpe.com/ca/en/what-is/lun-masking.html
QUESTION 3

What is the maximum number of ISLs that can be combined to enhance the performance and availability of switch connections in a B-Series trunk group?

A
6
B
12
C
8
D
4

Correct Option: C

โœ… Option C (Correct) Reasoning: HPE B-Series Fibre Channel switches support combining up to eight Inter-Switch Links (ISLs) into a single trunk group. This feature, known as ISL Trunking, aggregates bandwidth and provides link redundancy, enhancing performance and availability between switches.โŒ Why the other choices are incorrect:

Option A is incorrect: While fewer ISLs (e.g., 6) can form a trunk, this is not the maximum for a B-Series trunk group.

Option B is incorrect: Twelve ISLs exceed the maximum capacity for a single trunk group in B-Series switches, which is limited to eight.

Option D is incorrect: Four ISLs are permissible for a trunk group, but this does not represent the maximum number of ISLs that can be combined.



Reference: https://www.hpe.com/h20195/v2/GetDocument.aspx?docname=4AA4-9781ENW
QUESTION 4

What is the maximum set size value supported by HPE Alletra Storage MP B10000 system equipped with two enclosures/cages, considering a high availability (HA) level for a drive/disk?

A
5+1
B
6+2
C
8+2
D
10+2

Correct Option: D

โœ… Option D (Correct) Reasoning: HPE Alletra Storage MP B10000 systems use RAID-DP (dual parity) for high availability and data protection, which can tolerate two drive failures per set. The maximum supported RAID-DP set size for these systems is 10 data drives plus 2 parity drives, commonly expressed as 10+2. The presence of two enclosures allows for distributing these drives for resilience but does not alter the maximum logical set size. โŒ Why the other choices are incorrect:

Option A is incorrect: 5+1 indicates a single parity RAID level (like RAID 5), which does not provide the dual parity (HA) required for a drive/disk failure scenario and is not the maximum set size for Alletra MP's RAID-DP.

Option B is incorrect: 6+2 is a valid RAID-DP set size, but it is not the maximum supported set size for the HPE Alletra Storage MP B10000 system.

Option C is incorrect: 8+2 is a valid RAID-DP set size, but it is not the maximum supported set size for the HPE Alletra Storage MP B10000 system.



Reference: https://www.hpe.com/psnow/doc/a00122240enw
QUESTION 5

Which low-latency protocol should you recommend for a local flash-based drive connected directly to PCIe, eliminating the performance penalty of an array controller?

A
FATA
B
SATA
C
SAS
D
NVMe

Correct Option: D

โœ… Option D (Correct) Reasoning: NVMe (Non-Volatile Memory express) is a protocol specifically designed for high-speed access to flash storage over a PCIe bus. It provides a direct path from the CPU to the storage, significantly reducing latency and eliminating the performance bottlenecks associated with traditional array controllers used by SATA or SAS. โŒ Why the other choices are incorrect:

Option A is incorrect: FATA (Fibre Attached Technology Attachment) is an obsolete, non-standard term, not a modern low-latency protocol for direct PCIe flash.

Option B is incorrect: SATA (Serial ATA) is a legacy interface that connects through a host bus adapter or southbridge, not directly to PCIe, introducing higher latency than NVMe.

Option C is incorrect: SAS (Serial Attached SCSI) is an enterprise interface designed for controllers. Like SATA, it does not offer the direct PCIe connection and lower latency of NVMe for flash drives.



Reference: https://www.hpe.com/us/en/what-is/nvme.html
QUESTION 6

On a HPE Alletra Storage MP B10000 array, what is the amount of expansion shelves to automatically achieve RAID6: 4+2 with HA level of cage?

A
2
B
3
C
4
D
5

Correct Option: A

โœ… Option A (Correct) Reasoning: A RAID6: 4+2 configuration requires 6 drives. To achieve an HA level of cage, these drives must be distributed across multiple expansion shelves so that the failure of one entire shelf does not lead to data loss. A minimum of two expansion shelves is required to distribute the 6 drives (e.g., 3 drives per shelf) to ensure high availability at the cage level. โŒ Why the other choices are incorrect:

Option B is incorrect: While 3 shelves could also host the drives, it is not the minimum number required to meet the specified cage-level HA for a 6-drive RAID set.

Option C is incorrect: 4 expansion shelves are more than the minimum required to provide cage-level HA for a RAID6: 4+2 volume.

Option D is incorrect: 5 expansion shelves far exceed the minimum necessary to distribute 6 drives for cage-level high availability.

QUESTION 7

Which statement is valid for HPE Alletra Storage MP B10000 default high availability settings?

A
Drive level, sparing level will reserve 5 chunklets per drive.
B
Drive level, sparing level will reserve one drive worth of capacity.
C
Enclosure level, sparing level will reserve one drive worth of capacity.
D
Enclosure level, sparing level will reserve one drive worth of capacity per drive enclosure.

Correct Option: D

โœ… Option D (Correct) Reasoning: HPE Alletra Storage MP, utilizing dRAID, allocates global spare capacity. For robust default high availability in systems capable of scaling with multiple drive enclosures, the sparing level reserves capacity equivalent to one drive's worth per drive enclosure. This ensures resilience against drive failures in multiple physical enclosures.โŒ Why the other choices are incorrect:

Option A is incorrect: Reserving only '5 chunklets per drive' is insufficient and not a standard default for enterprise-level sparing, which typically reserves capacity equivalent to full drives.

Option B is incorrect: 'Drive level' is ambiguous in dRAID, and reserving just 'one drive worth of capacity' system-wide is less resilient than per-enclosure sparing for multi-enclosure configurations.

Option C is incorrect: While 'enclosure level' is relevant, reserving only 'one drive worth of capacity' in total (not per enclosure) would not provide optimal high availability for systems with multiple drive enclosures.

QUESTION 8

How does HPE Alletra Storage MP B10000 perform write operations caching?

A
Data is cached on DFC-hosted SSDs
B
Data is stored in supercapacitor-protected RAM
C
Data is buffered in NVDIMM
D
Data goes directly to space based on NVMe

Correct Option: C

โœ… Option C (Correct) Reasoning: HPE Alletra Storage MP B10000 leverages NVDIMM (Non-Volatile Dual In-line Memory Module) for its write cache. NVDIMM provides extremely fast, persistent buffering for incoming write operations, ensuring data integrity during power loss and accelerating performance before destaging to flash media.โŒ Why the other choices are incorrect:

Option A is incorrect: DFC-hosted SSDs are primarily used for persistent storage and read caching, not for the initial, high-speed, volatile write caching of new data.

Option B is incorrect: While NVDIMM technology does use capacitors for data persistence, "supercapacitor-protected RAM" is a less specific or potentially outdated term compared to NVDIMM for modern HPE Alletra systems.

Option D is incorrect: Data does not go directly to NVMe space for writes. All high-performance enterprise storage systems, including Alletra MP, utilize a fast write cache (like NVDIMM) to improve performance and protect data during writes.



Reference: https://www.hpe.com/psnow/doc/a50004951enw
QUESTION 9

Which SAN topology will result in E Port type at the SAN switch?

A
Meshed fabric
B
Point-to-point
C
Routed fabric
D
Arbitrated loop

Correct Option: A

โœ… Option A (Correct) Reasoning: A meshed fabric topology connects multiple Fibre Channel switches together to form a larger, interconnected fabric. These inter-switch links (ISLs) utilize E-ports (Expansion Ports) on the SAN switches to extend the fabric and provide redundancy.โŒ Why the other choices are incorrect:

Option B is incorrect: Point-to-point connections typically refer to a single device (like a server HBA or storage array) connected directly to a switch, which uses an F-port (Fabric Port) on the switch.

Option C is incorrect: While a routed fabric involves connecting different Fibre Channel fabrics, the underlying inter-fabric links often use E-ports or specialized routing ports (e.g., EX_Ports, which are a type of E-Port). However, 'Meshed fabric' directly describes the topology where switches are interconnected using E-ports to form the core fabric itself.

Option D is incorrect: An Arbitrated Loop is a legacy topology where devices are connected in a loop. Switch ports connecting to an Arbitrated Loop are typically FL-ports (Fabric Loop Ports), not E-ports.

QUESTION 10

Which configuration provides the fastest write speeds?

A
Single-level cell (SLC) implementation of NAND flash
B
Three-level cell (MLC) implementation of NAND flash
C
Three-level cell (SLC) implementation of NAND flash
D
Multi-level cell (MLC) implementation of NAND flash

Correct Option: A

โœ… Option A (Correct) Reasoning: Single-Level Cell (SLC) NAND flash stores only one bit of data per cell. This architecture simplifies the write process and requires fewer voltage states, leading to the fastest write speeds and highest endurance among NAND flash types. โŒ Why the other choices are incorrect:

Option B is incorrect: Multi-level cell (MLC) stores two bits per cell, which is slower than SLC due to more complex voltage states and programming cycles. The term "Three-level cell" generally refers to TLC, which is even slower.

Option C is incorrect: This option presents a contradiction; "Three-level cell" (TLC) stores three bits per cell and is slower than SLC. SLC itself means single-level, not three-level.

Option D is incorrect: Multi-level cell (MLC) NAND flash stores two bits per cell. While denser than SLC, it offers slower write speeds because it requires more precise voltage control and more complex write operations.

QUESTION 11

Which technology increases data reduction efficiency on an enterprise array by combining odd-size pages into a writable single page on drives?

A
Deduplication
B
Zero detection
C
Data packing
D
Compression

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QUESTION 12

In discussion with a customer, you are asked about support for iSCSI on a HPE Alletra Storage MP B10000.

Which statement is valid about this topic?

A
SFP56 Short Wave optics are supported for the connectivity
B
QSFP Short Wave optics are supported for the connectivity
C
QSFP28 Short Wave optics are supported for the connectivity
D
SFP28 Short Wave optics are supported for the connectivity

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