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| Certification Vendor: | Pure Storage |
|---|---|
| Exam Name: | Pure Storage FlashArray Implementation Specialist Exam |
| Exam Number: | FlashArray-Implementation-Specialist |
| Available Languages: | English |
| Exam Format: | Multiple choice, Scenario-based questions |
| Related Certifications: | Pure Storage Certified FlashArray Architect Pure Storage Certified FlashBlade Implementation Specialist |
| Recommended Training: | Pure Storage FlashArray Implementation Training |
| Exam Registration: | Pure Storage Certification & Training |
| Sample Questions: | Pure Storage FlashArray-Implementation-Specialist Sample Questions |
| Exam Way: | Online proctored exam via authorized certification platform |
| Pre Condition: | Recommended: basic storage and networking knowledge; familiarity with SAN concepts and enterprise storage environments. |
| Official Syllabus URL: | https://www.purestorage.com |
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NEW QUESTION # 192
Before leaving the site after an install, who is required to provide completion sign-off?
Answer: B
Explanation:
The customer's completion sign-off is required to confirm that the installation meets their expectations and requirements before the engineer leaves the site.
NEW QUESTION # 193
After upgrading Purity during a new installation, which command should an Implementation Engineer run to determine what version of Purity will be loaded at the next boot of the FlashArray?
Answer: C
Explanation:
The command pureboot list is the correct tool to verify which Purity version is designated to load upon the next system reboot.
FlashArray controllers maintain two boot partitions (often referred to as banks) for redundancy and upgrade safety. When an upgrade is performed, the new Purity software image is written to the inactive bank.
* Verification: Running pureboot list displays the status of both boot banks (e.g., Primary and Secondary) and explicitly flags which version is "Running" and which is set for "Next Boot."
* Why it's critical: Just checking the currently running version (using pureversion or purearray list) is insufficient during an upgrade workflow. An engineer must confirm that the boot pointer has successfully switched to the new version before issuing the reboot command. If pureboot list shows the old version as "Next Boot," a reboot would simply reload the current code, indicating the upgrade installation failed or wasn't finalized.
NEW QUESTION # 194
Which cards are required to connect a DirectFlash Shelf to an FlashArray//XLR5?
Answer: C
Explanation:
The FlashArray//XL series (specifically the //XLR5 in this context) utilizes a 100 Gigabit Ethernet-based back-end fabric to communicate with DirectFlash Shelves (DFS). This connection relies on the RoCE (RDMA over Converged Ethernet) protocol to ensure low-latency access to the external NVMe modules.
The specific PCIe interface card validated for this connectivity is often labeled in the Bill of Materials (BOM) or configuration guides as the 2-Port 100GbE iSCSI/RoCE card (or simply the 100GbE Ethernet/RoCE card depending on the specific firmware/labeling revision). Crucially, it must be a 100GbE capability card.
The //XL platform standardized on 100GbE for its shelf interconnects, moving away from the 50GbE used in some previous generations of the //X series. The 200GbE cards are typically reserved for high-speed host connectivity or clustering, not the standard shelf loop. Therefore, ensuring the BOM includes the correct
100GbE RoCE-capable cards is essential for successful shelf detection and operation during installation.
NEW QUESTION # 195
An Implementation Engineer is installing a FlashArray//XL chassis with two DirectFlash Shelves. What is the minimum rack space required for this installation?
Answer: B
Explanation:
Calculating rack space requirements is a fundamental pre-installation task. The FlashArray//XL series features a larger chassis than the //X series to accommodate its increased power, cooling, and DirectFlash capabilities.
The FlashArray//XL Chassis itself occupies 5 Rack Units (5U).
A standard DirectFlash Shelf (DFS) occupies 2 Rack Units (2U).
In this scenario, the customer is installing one //XL chassis and two DFS shelves.
Calculation:
1 x //XL Chassis (5U) = 5U
2 x DirectFlash Shelves (2U each) = 4U
Total = 9U.
Therefore, the Implementation Engineer must verify that there are at least 9 contiguous Rack Units available in the cabinet. Standard best practice also suggests placing the shelves immediately above or below the controller chassis to accommodate the 3-meter maximum cable length for the backend fabric, so these 9U should ideally be in a single block.
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NEW QUESTION # 196
When installing the first DirectFlash Shelf on a FlashArray//XR2/3, what mezzanine ports are used on the controllers?
Answer: B
Explanation:
When installing the first DirectFlash Shelf (DFS) on a FlashArray//XR2 or //XR3 utilizing the onboard or default mezzanine connectivity, the correct ports to use are ETH6 and ETH9 .
* Hardware Layout: The FlashArray//XR2 and //XR3 utilize a specific Ethernet Mezzanine (EMEZZ) slot for backend connectivity to NVMe-oF shelves. This card typically enumerates its ports as ETH6 through ETH9 (a 4-port configuration).
* Cabling Rule: To maximize physical separation and ensure redundancy across the internal ASIC lanes of the mezzanine card, standard cabling procedures for the first shelf dictate using the outer ports: ETH6 (Port 0) and ETH9 (Port 3).
* Redundancy: This configuration (Port 0 and Port 3) is preferred over using adjacent ports (like 6 and
7) to reduce the risk of a single lane cluster failure affecting both connections to the shelf. The second shelf, if added later, would typically utilize the remaining ports (ETH7 and ETH8).
NEW QUESTION # 197
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