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NEW QUESTION # 125
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: B
Explanation:
When performing a controller upgrade (Non-Disruptive Upgrade) from an //X50R3 to an //X50R4, the specific hardware configuration of the source array dictates the target bill of materials. The presence of SAS drives in the chassis indicates that the source is a legacy or transitional configuration, as the standard //X R4 platform is optimized for end-to-end NVMe (DirectFlash).
However, the question asks for the specific controller SKU required. In Pure Storage nomenclature for upgrades, the standard controller replacement part is typically the base model code, here FLASHARRAY
//XC50 R4 .
The "XC" designation often refers to the controller component itself in upgrade kits. While special considerations apply to SAS media (which are usually phased out or require specific handling during R4 upgrades since R4 natively drops legacy SAS support on the motherboard), the controller part number itself remains the standard R4 SKU (Option C). Options like "SE" or "NS" (often denoting specific encryption or networking variants) are not the standard identifiers for the base controller upgrade in this context.
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NEW QUESTION # 126
A customer has a FlashArray X20R3 with 22/22 data packs in the chassis at 80% space usage and wishes to swap one of the data packs for a 45TB pack. What step needs to be taken to facilitate this consolidation?
Answer: C
Explanation:
To facilitate a Capacity Consolidation (CapCon) in a chassis that is physically full (both data pack slots occupied) and logically utilized above the threshold to allow internal evacuation, the standard procedure requires temporary external capacity, often referred to as "swing gear." In this scenario, the FlashArray//X20 chassis is fully populated with two 22TB data packs. Since there are no empty slots to insert the new 45TB pack, one of the existing packs must be removed first. However, with the array at 80% usage, the data residing on the pack designated for removal (roughly half the raw capacity) cannot fit into the remaining free space of the other pack.
Therefore, Pure Storage Support will provision a DirectFlash Shelf (DFS) containing temporary capacity (e.g., a 63TB pack as mentioned in Option B). The Implementation Engineer attaches this shelf, adds it to the system, and utilizes it as a destination to evacuate data from the old 22TB pack. Once the old pack is empty and removed, the new 45TB pack is installed into the chassis. Finally, the data is moved from the temporary shelf back into the new chassis capacity, and the temporary shelf is disconnected and returned. Option A is incorrect because an empty shelf provides no storage to offload data, and Option C is operationally unfeasible for most customers.
NEW QUESTION # 127
What command should the Implementation Engineer run to view NVRAM install and update status?
Answer: D
Explanation:
Within the Purity//FA operating system architecture, dedicated NVRAM modules (used heavily in standard non-DFMD arrays to provide non-volatile write caching) are fundamentally treated as specialized drives by the software layer. They are physically installed into specific central chassis bays labeled NVB0, NVB1, NVB2, and NVB3.
Because they are classified as drive components, the primary and most direct command an Implementation Engineer should use to verify their physical installation, health, capacity, and update status is puredrive list.
When this command is executed via the CLI, it generates a comprehensive table detailing every DirectFlash Module (DFM) and NVRAM module currently seated in the chassis.
The output explicitly shows the slot location (e.g., CH0.NVB0), the component's operational status (healthy, empty, evacuating, or updating), and its specific firmware version. While the purehw list command is excellent for viewing broader chassis components (like fans, temperature sensors, and controllers), puredrive list is the purpose-built command required to monitor the precise synchronization and firmware update phases of the NVRAM modules, especially crucial during a non-disruptive upgrade (NDU) when ensuring cache mirror integrity is paramount.
NEW QUESTION # 128
What is the rack unit height of a FlashArray//XR2/3?
Answer: A
Explanation:
The FlashArray//XR2 and //XR3 (representing the FlashArray//X generation) utilize a standardized 3U (3 Rack Units) chassis form factor.
This 3U chassis is the foundation for the majority of the FlashArray//X line, including the //X10, //X20, //X50, //X70, and //X90 models. It is designed to be compact while providing sufficient airflow and space for the dual controllers, two data packs (up to 20 DirectFlash Modules), and power/cooling infrastructure.
Dimensions: Approximately 5.12 inches (13 cm) in height.
Rack Layout: Implementation Engineers must reserve 3U of contiguous space for the base controller chassis. If expansion shelves are included, they typically require an additional 2U each (for SAS or NVMe shelves).
Option B (4U) is not a standard height for current Pure Storage arrays. Option C (5U) refers to the FlashArray//XL, a larger, performance-optimized platform designed for maximum scale and density, which uses a significantly taller chassis to accommodate more expansion slots and power components. Therefore, for the specified R2/R3 X-series, 3U is the correct height.
NEW QUESTION # 129
An Implementation Engineer is performing a capacity consolidation on an X50R3.
Which command is needed for the engineer to determine whether the customer's FlashArray supports SAS Flash Modules?
Answer: A
Explanation:
To determine whether a specific FlashArray configuration, such as the FlashArray//X50R3, supports or is currently equipped to handle SAS Flash Modules, the command purehw list --type drive --all is the correct diagnostic tool. While the FlashArray//X series is architected as a 100% NVMe platform using DirectFlash Modules (DFMs) in the base chassis, it retains the capability to support legacy SAS Flash Modules (SSDs) through the attachment of external SAS expansion shelves.
The purehw list --type drive --all command provides a comprehensive enumeration of the physical drive hardware components recognized by the system. Unlike the puredrive list command, which focuses on the logical status, capacity, and admission state of the drives, the purehw command with the --type drive flag exposes the hardware-level details, including the interface protocol (SAS vs. NVMe) and the physical location of the drive bays.
By running this command, an Implementation Engineer can verify if the array is communicating with any SAS-based drive hardware. If SAS modules or SAS-compatible drive bays in an external shelf are listed, support is confirmed. Conversely, option A is syntactically incorrect for this purpose, and option B (purehw list --type controller) focuses on the compute node specifications rather than the storage media interfaces.
Therefore, listing the drive hardware components is the definitive method to validate the presence and support of SAS Flash media within the specific array configuration during a capacity consolidation.
NEW QUESTION # 130
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