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NEW QUESTION # 15
What is the speed of the Ethernet ports to connect a FlashArray //E to a DFS?
Answer: B
Explanation:
The FlashArray//E connects to its DirectFlash Shelves (DFS) using 25Gb Ethernet (RoCE) .
The FlashArray//E is the "Capacity Optimized" member of the FlashArray family, designed to replace spinning disk repositories with all-flash efficiency. While the high-performance FlashArray//XL utilizes
100GbE for its backend NVMe-oF connectivity to maximize throughput for mission-critical databases, the //E prioritizes cost-efficiency, density, and power consumption.
* Architecture: To maintain this efficiency balance, the backend connectivity for expansion shelves on the //E platform is standardized on 25GbE . This provides ample bandwidth for the QLC-based workloads (typically unstructured data, repository, or Tier 2 block) without the higher cost and power draw of 100GbE optics and controllers.
* Comparison: Option A (40G) is a legacy QSFP standard not used in modern Pure backend designs.
Option C (100G) is reserved for the performance-tier //XL and high-end //X models.
NEW QUESTION # 16
The Pure Engagement Request (PER) specifies that iSCSI ports ETH2 and ETH3 should be set to 10 Gb/s.
After configuring the ports and connecting them to the SAN, the Implementation Engineer observes that ETH2
/3 are not negotiating and display 0 b/s. The SAN is operating at 40 Gb/s, with support for up to 100 Gb/s.
What should the Implementation Engineer do to resolve this issue and complete the install?
Answer: C
Explanation:
This scenario describes a physical layer mismatch between the FlashArray optics and the customer's switch infrastructure.
* The PER (planning document) specified 10 Gb/s , so the Implementation Engineer likely installed 10 Gb SFP+ transceivers into the array.
* The SAN Switch is operating at 40 Gb/s (likely using QSFP+ ports).
You cannot simply "force negotiate" a 10Gb SFP+ optic to run at 40Gb/s, nor can you plug a 10Gb SFP+ directly into a 40Gb QSFP+ port without specific breakout cables or QSA adapters that match the signaling.
The physical transceivers themselves are incompatible with the link speed required by the switch.
To resolve this, the Implementation Engineer must replace the transceivers with the appropriate type .
* If the switch is 40Gb native, the array needs 40Gb (QSFP+) optics (if supported on that slot).
* Alternatively, if the customer intends to use 10Gb, they must provide 10Gb ports on their switch side.
* Given the prompt implies the SAN is 40Gb, the 10Gb optics in the array are the incorrect hardware for that link.
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NEW QUESTION # 17
When updating Purity on a new array, which command should the Implementation Engineer run to start the process?
Answer: B
Explanation:
To initiate a Purity Operating Environment (OE) software upgrade from the Command Line Interface (CLI), the correct command is pureinstall.
pureinstall: This command manages the upgrade workflow. It typically takes an image file (ISO) as an argument or downloads it from the repository, unpacks it, performs pre-flight checks, and then applies the update to the controllers in a non-disruptive rolling fashion.
purereboot is used to restart a controller or the array but does not install software.
puresetup is used for the initial configuration of network settings and array names, not for software updates.
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NEW QUESTION # 18
An Implementation Engineer is upgrading a FlashArray//X50R3 to an //X50R4. The array has 10 SAS and 10 DirectFlash modules in the chassis.
What type of controller is required to complete the upgrade?
Answer: D
Explanation:
When executing a cross-generational Hardware Non-Disruptive Upgrade (HWNDU) for a customer who has been with Pure Storage for several years, an Implementation Engineer will often encounter legacy storage media. Early generations of the FlashArray relied on SAS-based Solid State Drives (SSDs) before the industry entirely shifted to the much faster NVMe protocol (DirectFlash Modules).
Pure Storage is famous for its Evergreen architecture, which allows customers to upgrade their controllers without having to rip and replace their existing drives. However, a standard modern //XR4 controller natively communicates strictly via NVMe and PCIe lanes. If a customer is upgrading an array that still contains legacy SAS drives (in this scenario, 10 SAS drives mixed with 10 NVMe drives), a standard NVMe-only controller will not be able to read the SAS media, leading to immediate data unavailability.
To solve this, Pure Storage manufactures specific controller configurations. The SE (SAS-Enabled) controller models are explicitly designed with the necessary internal SAS Host Bus Adapters (HBAs) and routing logic to support legacy SAS media alongside modern NVMe drives. Conversely, the NS (Non-SAS) controllers strictly support NVMe media. Because this specific chassis still houses 10 SAS modules, the Implementation Engineer must verify that the Bill of Materials (BOM) shipped for the upgrade is explicitly the "FLASHARRAY//X50 R4, SE" variant to ensure a safe, non-disruptive migration.
NEW QUESTION # 19
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 # 20
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