Test FlashArray-Implementation-Specialist Duration, Test FlashArray-Implementation-Specialist Study Guide

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Pure Storage FlashArray-Implementation-Specialist Exam Syllabus Topics:

TopicDetails
Topic 1
  • Pre-Installation
  • Upgrade: This section of the exam measures the skills of Enterprise Infrastructure Technicians and covers all preparation activities before deploying or upgrading a Pure Storage FlashArray. It includes understanding environmental requirements, verifying prerequisites, checking compatibility, and validating system readiness through appropriate tools and documentation.
Topic 2
  • Installation: This section of the exam measures the skills of Enterprise Infrastructure Technicians and focuses on executing a successful installation of FlashArray systems. It tests the ability to perform physical setup, cabling, configuration of network settings, and the application of initial system configurations necessary for full deployment.
Topic 3
  • Post-Installation
  • Upgrade: This section of the exam measures the skills of FlashArray Implementation Specialists and evaluates how professionals confirm system functionality after installation or an upgrade. It involves validating connectivity, running health checks, confirming configurations, and ensuring that the deployment meets operational expectations.
Topic 4
  • Upgrades: This section of the exam measures the skills of FlashArray Implementation Specialists and focuses on tasks involved in managing firmware and software upgrades. Candidates must demonstrate knowledge of upgrade planning, verification steps, and rollback procedures, ensuring that systems are updated with minimal disruption to service.

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Pure Storage Certified FlashArray Implementation Specialist Sample Questions (Q110-Q115):

NEW QUESTION # 110
Which command should an Implementation Engineer use to allow Support access to an array?

Answer: C

Explanation:
To enable Pure Storage Support to access the FlashArray for diagnostics, upgrades, or troubleshooting, the correct command is purearray remoteassist --connect.
Remote Assist (RA): This feature creates a secure, outbound SSH tunnel from the FlashArray to the Pure Storage support infrastructure. It allows support engineers to log in remotely without requiring the customer to open inbound firewall ports or set up a VPN.
Command Syntax:
purearray remoteassist: Running this command without arguments simply displays the current status of the session (e.g., "connected" or "disconnected") and the port number.
--connect: This is the specific flag (action) required to initiate the tunnel.
Workflow: When an Implementation Engineer is on-site and needs assistance (or is handing over for a remote upgrade), they execute this command. The output will confirm "Remote Assist enabled" and provide a session name/port, which the engineer then communicates to the Support team. The session typically stays active for a set duration (default 24 hours) or until manually disconnected (purearray remoteassist --disconnect).


NEW QUESTION # 111
An Implementation Engineer is performing an inventory for an NDU from a FlashArray//X70R2 to a FlashArray//X70R4 and discovers that a complete FlashArray//X70R4 was shipped instead of an NDU kit.
What is the minimum hardware the Implementation Engineer should use from the new array to complete the NDU?

Answer: C

Explanation:
When performing a hardware non-disruptive upgrade (NDU) from a FlashArray//X70 R2 to a FlashArray
//X70 R4, the Implementation Engineer must understand which components govern the compute upgrade and which house the actual customer data and state. A standard NDU kit for this specific inter-generational upgrade strictly includes the new //XR4 controllers and updated Power Supply Units (PSUs).
The //XR4 controllers utilize significantly more powerful Intel processors and PCIe Gen4 architecture compared to the older //XR2 models. Consequently, they draw considerably more power, necessitating a mandatory upgrade from the older //XR2 PSUs to the higher-wattage units included with the //XR4.
However, the existing NVRAM modules, chassis midplane, and DirectFlash Modules (capacity drives) currently serving data must absolutely remain in place. The legacy NVRAM holds the active, unwritten write cache for the array. If an engineer mistakenly uses the entire shipped //XR4 array (swapping NVRAM modules or migrating drives prematurely without a swing shelf procedure), they risk severe data corruption and an unrecoverable cache loss event. Thus, to safely complete the NDU while preserving data, only the controllers and the power supplies should be harvested from the newly shipped chassis.


NEW QUESTION # 112
Which PCI cards must be validated on the Bill of Materials (BOM) to allow an Implementation Engineer to attach a DirectFlash Shelf to a FlashArray//XL130R5?

Answer: B

Explanation:
When expanding a Pure Storage FlashArray//XL130 R5 with an external DirectFlash Shelf (DFS), the backend connection between the shelf controllers and the main chassis relies on massive 100GbE bandwidth via the NVMe-oF (RoCE) protocol. Validating the Bill of Materials (BOM) before an onsite installation is a critical preparatory step to ensure the correct internal hardware was shipped to support this connection.
According to the official Pure Storage hardware matrix, the supported PCIe expansion card required for //XL series shelf connectivity is the FA-XL-100G Ethernet/RoCE 2-Port CX6 . This card utilizes the modern Mellanox/Nvidia ConnectX-6 (CX6) chipset, which is explicitly engineered to provide the necessary 100GbE RDMA capabilities to maintain ultra-low latency, NVMe-level speeds across the external storage fabric.
Option B (the CONNECTX-5 card) is an older, End-of-Sale component generally associated with legacy deployments or specific frontend iSCSI requirements, not the modern //XL backend loop. Option C (a 200G CX7 card) is not the standard validated BOM component for a single DFS loop on an //XL130 R5.
Confirming the presence of the 100G CX6 card ensures the engineer has the exact hardware required to successfully cable the 100GbE backend ports.


NEW QUESTION # 113
What is the longest supported cable length for use with DirectFlash shelves?

Answer: A

Explanation:
DirectFlash Shelves (DFS) connect to the FlashArray controllers using high-speed protocols (typically RoCE
- RDMA over Converged Ethernet) that require high-fidelity signal integrity. Due to the high bandwidth (50Gb or 100Gb speeds) and low latency requirements of the NVMe-oF (NVMe over Fabrics) protocol used for backend connectivity, the physical cabling length is strictly limited.
Pure Storage officially supports a maximum cable length of 3 meters for connecting DirectFlash Shelves to the controller or for daisy-chaining shelves (where supported). Cables longer than 3 meters (such as 5m or
7m) introduce signal attenuation and latency that can destabilize the backend fabric, leading to CRC errors, path flapping, or drive disconnections.
Implementation Engineers must ensure that the rack layout allows the shelves to be placed within this 3-meter radius of the controllers. Typically, shelves are racked immediately above or below the controller chassis to minimize cable run distance. Attempting to span across multiple racks using longer, unsupported cables will result in an unsupported configuration and likely immediate I/O errors.
=========


NEW QUESTION # 114
Which PCIe slot supports 4-port FC cards on FlashArray//XL?

Answer: A

Explanation:
On the FlashArray//XL , the 4-port Fibre Channel (FC) cards are specifically supported in Slot 8 (and typically Slot 4 depending on configuration depth). The FlashArray//XL chassis (5U) utilizes a significantly different PCIe bus layout compared to the standard 3U FlashArray//X series. While the //X series typically uses Slot 0 or Slot 2 for host connectivity, the //XL architecture reserves the lower-numbered slots (0-3) primarily for backend connectivity (SAS/NVMe-oF) or specific NVRAM modules in certain configurations.
To support the high bandwidth requirements of the 4-port 32Gb FC cards, the //XL chassis provides specific x16 electrical slots. Slot 8 is a designated high-performance slot located in the upper riser section of the controller, making it the correct placement for these dense host I/O cards. Using an incorrect slot such as Slot
2 (often x8 or reserved for other functions in XL) would likely result in the card not being recognized or operating at reduced performance. Therefore, Implementation Engineers must verify the specific "slot map" for the //XL model in the FlashArray//XL Hardware Guide before seating cards, with Slot 8 being the standard supported location for the 4-port FC option among the choices provided.


NEW QUESTION # 115
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