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NEW QUESTION # 17
After rebooting a controller, which command should an Implementation Engineer run to verify all the Purity services have started successfully?
Answer: C
Explanation:
The pureadm command suite is the primary CLI tool used by Implementation Engineers and Support to manage the Purity operating environment's services and high-availability states. After a controller reboot- whether part of a hardware replacement, NDU, or fresh install-it is critical to verify that the Purity software stack has initialized correctly and that all sub-services (such as the I/O handling process, management daemon, and scut) are running.
The specific command pureadm list is the correct syntax to display a summary of the Purity services and their current status (e.g., running, stable, or stopped) on the local controller. This command provides a clean, immediate view of the service stack's health. If the output shows all expected services as "running," the engineer can confirm the controller has successfully rejoined the cluster and is ready to handle operations.
While pureadm alone might print help text and pureadm status is often a valid guess for other systems, the strict syntax for FlashArray implementation verification relies on pureadm list. This step is a standard part of the "Health Check" procedures found in upgrade guides. Failing to verify service status before proceeding (e.
g., failing over to the other controller) could lead to an outage if the rebooted controller hasn't actually fully started its data services. Therefore, pureadm list is the validation checkpoint before declaring the controller healthy.
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NEW QUESTION # 18
How many chassis capacity drive slots come standard on a FlashArray//X Gen 2 chassis?
Answer: D
Explanation:
Understanding the physical chassis layout of the Pure Storage FlashArray is essential for capacity planning and hardware installation. The FlashArray//X Gen 2 (and Gen 3) utilizes a highly efficient 3U chassis design.
When looking at the front of a standard //X chassis, there are a total of 24 physical module bays. However, these bays serve fundamentally different architectural purposes:
* Capacity Drive Slots: There are exactly 20 slots strictly dedicated to capacity drives (DirectFlash Modules, or DFMs). These are numbered 0 through 19 and are where the data packs are installed to provide raw storage capacity.
* NVRAM Slots: The remaining 4 slots, located centrally in the chassis, are dedicated exclusively to NVRAM modules (NVB0, NVB1, NVB2, and NVB3). These provide the highly available, non-volatile write cache for the array and cannot be used for capacity expansion.
Therefore, when an Implementation Engineer is assessing the chassis for data pack expansion or module upgrades, there are exactly 20 standard capacity drive slots available before an external DirectFlash Shelf (DFS) must be added. (Note: FlashArray//XL utilizes a larger 5U chassis with 40 capacity slots, but the standard //X remains at 20).
NEW QUESTION # 19
How many power connections are required for the FlashArray//XL chassis?
Answer: B
Explanation:
The FlashArray//XL is a high-performance, 5U storage system designed for massive scale and throughput. To support its powerful processors and high-density DirectFlash modules, the chassis is equipped with four Power Supply Units (PSUs).
Consequently, the installation requires 4 power connections. Each PSU must be connected to a power source to ensure full redundancy and load sharing. Best practice dictates distributing these four connections across two independent Power Distribution Units (PDUs) (e.g., PSUs 1 & 3 to PDU A, PSUs 2 & 4 to PDU B) to survive the loss of a single power feed or PDU failure without interrupting array operations.
This is a key differentiator from the smaller 3U FlashArray//X models, which typically require only two power connections (one per PSU). Implementation Engineers must ensure that the rack has sufficient outlets (4 for the //XL chassis alone, plus additional outlets for any shelves) before beginning the physical installation.
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NEW QUESTION # 20
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: A
Explanation:
Pure Storage DirectFlash Shelves (DFS) are designed with high-efficiency, enterprise-grade power supply units (PSUs). These PSUs are "auto-ranging," meaning they can accept a wide range of input voltages, typically from roughly 90V to 264V AC.
While data centers often prefer 208V-240V power sources for better efficiency (less heat loss and lower amperage draw for the same wattage), the hardware is fully validated and supported to operate on standard 110V/120V circuits. There is no "temporary only" restriction or hardware lockout that prevents operation on 120V.
Therefore, if the customer's high-voltage PDUs are full, the Implementation Engineer can safely connect the DirectFlash Shelf to the available 120V outlets. The shelf will function normally, provided the circuit has sufficient amperage capacity (amps) to handle the slightly higher current draw that results from using a lower voltage. This configuration is supported for the entire service life of the shelf.
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NEW QUESTION # 21
What command will view NVRAM install and update status?
Answer: B
Explanation:
The command purehw list --all displays detailed hardware information, including NVRAM installation and update status on the FlashArray.
NEW QUESTION # 22
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