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| Section | Objectives |
|---|---|
| Topic 1: FlashArray Architecture and Core Concepts | - Storage concepts
|
| Topic 2: Data Protection and Availability | - Snapshot and protection strategies
|
| Topic 3: Monitoring, Performance, and Troubleshooting | - System monitoring
|
| Topic 4: Installation and Initial Configuration | - System setup
|
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NEW QUESTION # 57
FlashArray//C and //E models use which flash storage architecture, identifiable by gray tabs on the DirectFlash Module carriers?
Answer: B
Explanation:
Pure Storage differentiates its product lines based on the type of NAND flash used, optimizing for either performance or capacity/cost.
* FlashArray//X uses TLC (Triple-Level Cell) flash for high performance and endurance. These modules typically have orange tabs.
* FlashArray//C and FlashArray//E are designed for high-capacity, capacity-optimized workloads.
They utilize QLC (Quad-Level Cell) flash.
QLC flash stores 4 bits per cell, offering higher density at a lower cost per terabyte, but with different endurance characteristics managed by the DirectFlash software. To help engineers and customers physically distinguish these modules, QLC DirectFlash Modules feature gray release tabs on the carrier. Identifying these tabs confirms that the correct media type is being installed into the capacity-oriented //C or //E chassis.
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NEW QUESTION # 58
Support requests a powercycle on a newly-installed FlashArray. What is the correct way to perform this action?
Answer: B
Explanation:
To perform a "powercycle" or restart of the FlashArray system as typically requested by Support for diagnostic or initialization purposes, the correct and safe method is to run the purearray reboot command.
While the term "power cycle" often implies a physical interruption of power in general IT terminology, Pure Storage FlashArrays are designed as "Always-On" systems and do not have standard physical power buttons on the controllers for this purpose (Option A is incorrect as no such button exists for system-wide power cycling). Physically unplugging the power cables (Option B) constitutes a "hard" power cycle or "cold boot," which is generally reserved for specific hardware replacements or emergency procedures, not standard support requests on a healthy or newly installed system.
The purearray reboot command gracefully shuts down the Purity operating system services, flushes data from the volatile memory to the non-volatile storage, and restarts both controllers sequentially or simultaneously depending on the arguments. This ensures that the system returns to a clean state without the risk of data inconsistency or "dirty" shutdowns that physical cable removal might cause. In the context of a new installation or support troubleshooting, this software-driven restart is the standard procedure.
NEW QUESTION # 59
What are the default replication ports on all three rack unit FlashArray models?
Answer: C
Explanation:
On standard 3-Rack Unit (3RU) FlashArray models (such as the FlashArray//X50, //X70, and //X90 series), the rear of the controller chassis features onboard 10GbE or 25GbE Ethernet ports. Pure Storage adheres to a strict convention for the default assignment of these ports to simplify deployment and troubleshooting.
ETH0 and ETH1 are invariably reserved and configured for Management traffic. These are used to access the GUI, CLI, and for the array to communicate with Pure1.
ETH2 and ETH3 are the designated default ports for Replication traffic. When an Implementation Engineer configures async or sync replication, Purity will default to looking for connectivity on these interfaces unless explicitly reconfigured. This separation ensures that heavy data replication traffic does not contend with management traffic, maintaining administrative access even during periods of high bandwidth utilization for replication. Implementation Engineers must ensure these specific physical ports are cabled to the replication network switches during installation.
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NEW QUESTION # 60
During an NDU, when is the Implementation Engineer required to install additional NVRAM modules in slots 2 and 3?
Answer: B
Explanation:
FlashArray models differ in their NVRAM requirements based on their performance tier and throughput capabilities. Lower and mid-range models (like the //X10, //X20, and //X50) typically operate with two NVRAM modules installed in slots 0 and 1. However, high-performance models (like the //X70 and //X90) require double the NVRAM buffer to handle the increased write I/O bandwidth, necessitating four NVRAM modules (populating slots 0, 1, 2, and 3).
When performing a Data-in-Place Upgrade (NDU) from a FlashArray//X50R3 to a FlashArray//X70R4, the chassis remains (or is upgraded in a way that preserves data), but the new controller configuration shifts from a "2-NVRAM" requirement to a "4-NVRAM" requirement. Therefore, as part of the physical upgrade procedure, the Implementation Engineer must install two additional NVRAM modules into slots 2 and 3 of the chassis to support the new //X70 controllers.
If these modules are not added, the new //X70 controllers will detect an "insufficient hardware" condition and fail to boot or initialize the Purity software properly. This step is unique to upgrades crossing the boundary between mid-range and high-end models.
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NEW QUESTION # 61
An Implementation Engineer is planning to add a DirectFlash Shelf to a FlashArray//XL with an existing DirectFlash Shelf. Which PCIe slot must be used for shelf connectivity?
Answer: B
Explanation:
When adding a second DirectFlash Shelf to a FlashArray//XL, the connectivity utilizes PCIe Slot 6 (in conjunction with Slot 0).
FlashArray//XL Architecture: The //XL chassis distributes its backend NVMe-oF (100GbE RoCE) connectivity across two dedicated PCIe slots to ensure redundancy and maximum bandwidth. As established in hardware diagrams, Slot 0 (lower riser) and Slot 6 (upper riser) are the designated slots for the 2-port 100GbE backend cards.
Expansion Logic:
First Shelf: Typically connects to Port 0 of the card in Slot 0 and Port 0 of the card in Slot 6 (providing HA).
Second Shelf: Connects to the remaining ports (Port 1) on the same cards in Slot 0 and Slot 6.
Exam Context: In the context of "which slot must be used" for the expansion or specifically highlighting the secondary backend slot distinct from the primary host slots, Slot 6 is the correct identifier for the backend expansion capability on the //XL. Options A (Slot 0) is the primary, but C (Slot 6) is often the specific answer required to demonstrate knowledge of the //XL's unique split-riser backend layout compared to legacy arrays.
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NEW QUESTION # 62
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