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NEW QUESTION # 213
An Implementation Engineer is assigned to install a 4X Module 9.1 TB Conversion Kit in a Flash Array Chassis. Why are there only four Direct Flash Modules?
Answer: C
Explanation:
A "4X Module" kit is specifically designed to widen an existing write group (RAID set).
Write Group Geometry: In standard FlashArray//X configurations, DirectFlash Modules (DFMs) operate in "Write Groups" (typically 10 modules wide for a standard data pack). However, to offer more flexible entry points or capacity expansion options, Pure Storage allows configurations that start with smaller write groups (e.g., 6 modules).
Widening: When a customer wants to expand capacity or performance on these smaller configurations without adding a full new 10-pack, they can purchase a widening kit (in this case, 4 modules).
Process: The Implementation Engineer installs these 4 modules into the empty slots. The Purity operating system then logically integrates these new drives into the existing narrow write group, "widening" it to the standard width (e.g., 6 + 4 = 10). This operation redistributes parity and data across the full set of 10 drives, improving performance and efficiency.
NEW QUESTION # 214
A customer has purchased a FlashArray//XL. What power cables are required in order to connect this array to rack PDUs?
Answer: B
Explanation:
The FlashArray//XL requires 4 x C19/C20 power cables to connect to the rack Power Distribution Units (PDUs).
The FlashArray//XL chassis (5U) is significantly larger and draws more power than the standard FlashArray
//X series (3U). It is equipped with four high-capacity Power Supply Units (PSUs) to support the increased thermal and electrical load of the dense DirectFlash Modules and high-performance controllers.
* Connector Type: To handle the higher amperage safely, the //XL utilizes IEC C20 inlets on the chassis side (rectangular with horizontal pins) rather than the standard C14 inlets found on most servers.
Consequently, the required cables must have a C19 connector (female) to plug into the array and a C20 connector (male) to plug into the PDU (assuming a high-power PDU).
* Quantity: Since the chassis has four PSUs for N+2 redundancy, four distinct cables are required. The standard C13/C14 cables (Option A/B) used for lower-wattage IT equipment are physically incompatible and electrically insufficient for the //XL platform.
NEW QUESTION # 215
What is the minimum AC voltage required to operate a FlashArray//X20R4 array?
Answer: C
Explanation:
The FlashArray//X20 R4 operates with a minimum AC voltage input of approximately 90 VAC.
The FlashArray//X series (specifically the entry-to-mid-range models like the X10, X20, and X50) utilizes high-efficiency Power Supply Units (PSUs) designed with auto-ranging capabilities. These PSUs conform to standard global power infrastructure requirements, supporting a nominal input range of 100V to 240V AC (50/60 Hz).
Low-Line Support: Because the X20 is an entry-level enterprise array often deployed in diverse environments (including edge locations or standard office server rooms), it fully supports "low-line" power (100-120V nominal). The technical minimum tolerance for these power supplies typically extends down to 90 VAC to account for voltage sags or fluctuations.
Contrast with High-End: Larger, higher-density systems like the FlashArray//XL or fully loaded high-performance chassis configurations often require "high-line" power (200V-240V) to deliver sufficient wattage efficiently. However, the X20 R4 does not have this restriction. Therefore, Option A (90V) represents the correct minimum floor, whereas Options B and C represent high-line voltages that are supported but not required for minimum operation.
NEW QUESTION # 216
After completing an installation, the customer requests to configure replication IP settings. Where in the GUI does the customer need to navigate in order to do this?
Answer: C
Explanation:
When an Implementation Engineer or storage administrator needs to configure the foundational networking for array-to-array replication, it is essential to distinguish between configuring the network interfaces and configuring the replication partnerships .
To set up the IP addresses, subnet masks, gateways, and assign the replication service to specific Ethernet ports (such as eth2 and eth3), the user must navigate to Settings > Network in the Purity GUI. This section of the interface is strictly dedicated to managing the physical and virtual network topology of the array. Here, the engineer defines which physical ports are allowed to handle replication traffic, ensuring it is isolated from frontend host I/O or management traffic.
It is a common misconception to navigate to "Storage > Array Connections" for this step. However, the
"Array Connections" tab is used after the network settings are fully configured. "Array Connections" is where the administrator actually enters the Connection Key to establish the synchronous (ActiveCluster) or asynchronous replication link between two fully networked arrays. Therefore, the foundational IP configuration must always be completed first under the Settings > Network tab.
NEW QUESTION # 217
An Implementation Engineer is installing a second DirectFlash Shelf (DFS) on a FlashArray//XR4 controller.
How should the Implementation Engineer complete the installation?
Answer: B
Explanation:
The FlashArray//XR4 architecture fundamentally changed how external capacity is attached compared to older SAS-based or early NVMe platforms. Because DirectFlash Shelves (DFS) utilize massive 100GbE RDMA over Converged Ethernet (RoCE) for their backend loops to maintain NVMe-level performance, specific port and slot assignments are heavily regulated.
On an //XR4 model (such as the //X70 R4 or //X90 R4), the controllers feature dedicated, integrated 100GbE ports on the motherboard (specifically eth18 and eth19) which are strictly reserved for the first DirectFlash Shelf loop.
However, when an Implementation Engineer needs to install a second DirectFlash Shelf, the integrated onboard ports are already fully saturated. Pure Storage does not support daisy-chaining NVMe-oF RoCE shelves in the same manner as legacy SAS enclosures. Instead, a new dedicated backend fabric loop must be established. To accomplish this, the engineer must install an additional 100GbE RoCE PCIe expansion card.
According to the official //XR4 PCIe Slot Population Matrix, the designated location for this secondary backend expansion card is PCIe Slot 4 . Installing the card into other frontend-designated slots (like Slot 0 or Slot 3) will trigger a topology mismatch during the array's pre-flight hardware checks and prevent the new shelf from initializing.
NEW QUESTION # 218
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