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| Certification Vendor: | Pure Storage |
|---|---|
| Exam Name: | Pure Storage Certified FlashArray Implementation Specialist Exam |
| Exam Number: | FlashArray-Implementation-Specialist |
| Passing Score: | 70% |
| Available Languages: | English |
| Certificate Validity Period: | 3 years |
| Exam Duration: | 120 minutes |
| Exam Format: | Multiple choice, Scenario-based questions |
| Real Exam Qty: | 60-75 |
| Related Certifications: | Pure Storage Certified FlashArray Support Specialist Pure Storage Certified FlashArray Storage Professional |
| Exam Price: | $300 USD |
| Recommended Training: | FlashArray Implementation Specialist Study Guide Pure Academy - FlashArray Implementation Specialist Prep Course |
| Exam Registration: | Pure Storage Certification Portal |
| Sample Questions: | Pure Storage FlashArray-Implementation-Specialist Sample Questions |
| Exam Way: | Online proctored exam / Authorized test center |
| Pre Condition: | Recommended: 3–5 years storage industry experience, 6–12 months Pure Storage experience; no mandatory prerequisites |
| Official Syllabus URL: | https://www.purestorage.com/uk/services/certifications/flasharray-implementation-specialist.html |
>> Reliable FlashArray-Implementation-Specialist Test Experience <<
If you want to demonstrate your expertise in solving complex Pure Storage real-life problems, then you need to pass the Pure Storage FlashArray-Implementation-Specialist certification exam. However, passing this exam is not an easy task. It requires you to master complicated subjects related to Pure Storage Certified FlashArray Implementation Specialist. To help you prepare for this exam, ExamsReviews offers verified Pure Storage FlashArray-Implementation-Specialist Exam Questions that are ruling the preparation world.
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NEW QUESTION # 61
If a Technical Support Engineer (TSE) is not available to perform health checks after an installation, what action should the Implementation Engineer take?
Answer: C
Explanation:
Ensuring Remote Assist is enabled allows Support to perform remote health checks, and updating the case keeps all parties informed for follow-up.
NEW QUESTION # 62
A client needs to upgrade Purity on their FlashArray, but is unable to wait for an available upgrade date from support.
What action should the customer take?
Answer: B
Explanation:
Pure Storage provides a robust, non-disruptive upgrade (NDU) architecture. Historically, PurityOS upgrades were strictly scheduled and executed entirely by Pure Storage Support to ensure maximum safety. However, modern iterations of the platform allow customers complete autonomy via the Self-Service Upgrade portal within Pure1 Manage.
If a client is on a tight timeline and cannot align with a support-scheduled maintenance window, they can securely initiate the upgrade themselves. The Pure1 portal orchestrates pre-flight checks (like running the internal hardware_check.py script and assessing cluster health) entirely in the background. Once the array's health is validated, the client can deploy the new Purity software directly from the cloud interface.
Customers should never attempt to manually run the internal pureinstall command via the CLI (Options B and C). That specific command circumvents critical automated safety checks and is reserved strictly for certified Implementation Engineers or Pure Support during offline KVM installations or complex hardware replacements.
NEW QUESTION # 63
FlashArray//C and //E models use which flash storage architecture, identifiable by gray tabs on the DirectFlash Module carriers?
Answer: C
Explanation:
The Pure Storage product portfolio is strategically segmented to address different tiering requirements in the modern datacenter. While the FlashArray//X and FlashArray//XL are optimized for absolute performance and ultra-low latency using Triple-Level Cell (TLC) flash and Storage Class Memory (SLC), the FlashArray//C and FlashArray//E lines are engineered specifically for capacity consolidation and tier-2 workloads.
To achieve massive storage density at a much lower cost per terabyte, the //C and //E models exclusively utilize Quad-Level Cell (QLC) flash architecture. QLC technology stores four bits of data per NAND cell, significantly increasing physical capacity compared to TLC, while the Purity operating system intelligently mitigates the inherent wear-leveling and write-amplification challenges traditionally associated with dense QLC media.
Because QLC and TLC DirectFlash Modules (DFMs) share the exact same physical U.2 form factor and slot seamlessly into the identical drive bays, Implementation Engineers must be able to visually distinguish them onsite to prevent accidentally mixing drive types within a single chassis. Pure Storage strictly color-codes the physical release latches on the drive carriers to prevent this mistake: QLC DFMs feature distinct gray tabs , whereas standard TLC DFMs feature blue tabs. Identifying the gray tabs ensures the engineer is working with the correct //C or //E capacity modules before proceeding with the physical admission process.
NEW QUESTION # 64
A customer has a DirectFlash Shelf installed on a FlashArray//X90R4. The 208V rack PDUs are full, but there are five 120V connections available at the top of the rack.
What should the Implementation Engineer understand about powering the DirectFlash Shelf in this scenario?
Answer: C
Explanation:
When dealing with power architecture on high-end arrays like the FlashArray//X90 R4, understanding the difference between the base chassis and the expansion shelves is critical. The base //X90 chassis-housing the powerful Intel CPUs, massive memory footprint, and primary PCIe lanes-draws significant wattage and strictly requires 200V-240V (208V minimum) power inputs to function. It will literally not power on if plugged into a 120V circuit.
However, a DirectFlash Shelf (DFS) is merely an external NVMe-oF expansion enclosure. It houses the DirectFlash Modules (DFMs) and the necessary backend I/O modules, but completely lacks the compute- heavy controllers of the main array. Because its overall power draw is significantly lower, the official Pure Storage hardware specifications state that DirectFlash Shelves are fully rated and completely supported to run on standard 120 VAC power indefinitely.
Therefore, the Implementation Engineer can confidently cable the DFS power supplies into the available
120V PDU connections without sacrificing any performance, redundancy, or hardware lifespan. It is a fully supported, permanent configuration.
NEW QUESTION # 65
Which I/O card type is compatible across all FlashArray models?
Answer: C
Explanation:
The Fibre Channel (FC) I/O card type is the only option listed that is universally compatible and supported across all FlashArray models, from the entry-level //X10 and //X20 up to the high-end //X90 and //XL.
Fibre Channel: Pure Storage architectures rely heavily on Fibre Channel as the primary enterprise storage protocol. All chassis generations and controller sizes feature PCIe risers compatible with Pure's standard 16Gb or 32Gb Fibre Channel HBAs.
Ethernet/iSCSI: While all arrays support iSCSI, the physical card type varies.
10GBase-T: This refers to "copper" Ethernet (RJ45). This card type is not supported on all models. High-end FlashArrays (like the //X70, //X90, and //XL) typically utilize SFP+ or QSFP28 cages for optical connectivity (10/25GbE or 40/100GbE) and do not standardly support 10GBase-T copper cards due to power and latency characteristics.
Therefore, while the protocol (iSCSI) is supported everywhere, the specific physical card (10GBase-T) is not. Fibre Channel cards remain the consistent hardware constant across the entire product line.
NEW QUESTION # 66
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