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VO015360PXMTU HPE 15.36TB SAS 12GBPS SFF Read Intensive SC Hot Swap Solid State Drive

VO015360PXMTU
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Brief Overview of VO015360PXMTU

HPE VO015360PXMTU 15.36TB SAS 12GBPS 2.5inch SFF Read Intensive Multi Vendor SC Hot Swap Solid State Drive with Tray. Factory-Sealed New in Original Box (FSB) with 3 years Warranty

$11,542.50
$8,550.00
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SKU/MPNVO015360PXMTUAvailability✅ In StockProcessing TimeUsually ships same day ManufacturerHPE Manufacturer Warranty3 Years Warranty from Original Brand Product/Item ConditionFactory-Sealed New in Original Box (FSB) ServerOrbit Replacement Warranty1 Year Warranty
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Description

Overview of the Hot Swap Solid State Drive

The HPE VO015360PXMTU 15.36TB SAS 12Gbps 2.5-inch SFF Read Intensive Multi Vendor SC Hot Swap Solid State Drive with Tray is engineered for enterprise storage environments that demand high-capacity, low-latency, and consistent read performance at scale. Built on a Serial Attached SCSI (SAS) 12Gbps interface, this SSD category represents a high-performance tier of storage designed for mission-critical workloads in modern data centers. SAS architecture enables dual-port connectivity, improving redundancy, reliability, and sustained throughput compared to consumer-grade SATA solutions.

Primary Information

  • Manufacturer: HPE
  • Model Number: VO015360PXMTU
  • Product Type: Solid State Drive

Technical Features of Drive

  • Capacity: 15.36 TB
  • Form Factor: 2.5 Sff
  • Interface: Sas 12gb/s
  • Data Transfer Rate: 1.2 Gbps
  • Drive Class: Read Intensive

Performance

  • Drive Class: Read Intensive
  • Drive Transfer Rate: 1.2 Gbps (external)
  • Random Reads : Up To 100,000 Iops
  • Random Writes : Up To 63,000 Iops
  • Lifetime Writes: 27,393

Compatible

  • DL325 Gen10 Plus (2.5)
  • DL325 Gen10 Plus All-NVMe Flash Node for Qumulo (2.5)
  • DL325 Gen10 Plus All-NVMe Flash Node for Software Defined Storage (2.5)
  • DL325 Gen10 Plus for Weka Base Tracking (2.5)
  • DL325 Gen10 Plus for Weka Expansion Tracking (2.5)
HPE ProLiant DL360 Series
  • DL360 Gen10 32TB Performance Server for Cohesity DataPlatform (2.5)
  • DL360 Gen10 77TB Performance Server for Cohesity DataPlatform (2.5)
  • DL360 Gen10 All Flash Server for Datera (2.5)
  • DL360 Gen10 All Flash Server for Weka (2.5)
  • DL360 Gen10 Compute Server for Cohesity DataPlatform (2.5)
  • DL360 Gen10 for SAP HANA Compute Block (2.5)
  • DL360 Gen10 Network Choice (2.5)
  • DL360 Gen10 Network Choice for SAP HANA Compute Block (2.5)
  • DL360 Gen10 Performance for Cohesity DataPlatform (2.5)
  • DL360 Gen10 Premium (2.5)
  • DL360 Gen10 Remote Office Branch Office Server for Cohesity DataPlatform (2.5)
  • DL360 Gen10 Server for Ctera (2.5)
  • DL360 Gen10 SMB (2.5)
  • DL360 Gen10 SMB Network Choice (2.5)
  • DL360 Gen10 Special Server (2.5)
HPE ProLiant DL380 Series
  • DL380 Gen10 48TB Server for Cohesity DataPlatform (2.5)
  • DL380 Gen10 96TB Server for Cohesity DataPlatform (2.5)
  • DL380 Gen10 All Flash Server for Datera (2.5)
  • DL380 Gen10 Entry SMB (2.5)
  • DL380 Gen10 for Cohesity DataPlatform (2.5)
  • DL380 Gen10 for SAP HANA Compute Block (2.5)
  • DL380 Gen10 Hybrid Server for Datera (2.5)
  • DL380 Gen10 Network Choice (2.5)
  • DL380 Gen10 Network Choice for Ctera (2.5)
  • DL380 Gen10 Network Choice for SAP HANA Compute Block (2.5)
  • DL380 Gen10 NVMe All Flash Server for Datera (2.5)
  • DL380 Gen10 Server for Ctera (2.5)
  • DL380 Gen10 SMB (2.5)
  • DL380 Gen10 SMB Networking Choice (2.5)
  • DL380 Gen10 Special (2.5)
  • DL380 Gen10 with Microsoft Azure Stack Hub All Flash Node (2.5)
HPE ProLiant DL560 & ML350 Series
  • DL560 Gen10 for SAP HANA Compute Block (2.5)
  • ML350 Gen10 High Performance (2.5)
  • ML350 Gen10 SMB (2.5)
  • ML350 Gen10 Special Server (2.5)

Enterprise-Grade SAS 12Gbps Storage Architecture

This category of enterprise SSD is optimized for read-intensive workloads, making it ideal for applications where data retrieval speed is significantly more important than heavy write endurance. These workloads typically include virtualization, cloud storage, database querying, analytics, content delivery networks, and high-frequency transactional systems. The integration of advanced NAND flash technology ensures consistent performance even under sustained I/O pressure.

High-Capacity 15.36TB Storage Class Definition

At the core of this storage category is its ultra-high 15.36TB capacity configuration, which places it in the upper tier of enterprise SSD density. This level of capacity enables organizations to reduce physical drive counts in storage arrays, lowering rack space consumption, power usage, and cooling requirements. High-density SSDs like this are particularly valuable in hyperscale environments where storage consolidation is critical for operational efficiency.

The 15.36TB capacity class is typically built using high-layer 3D NAND flash memory, enabling greater storage density without increasing physical footprint. This advancement supports data-intensive environments such as AI training datasets, large-scale virtualization clusters, and distributed storage systems requiring massive parallel data access.

2.5-inch SFF Form Factor Advantages

The 2.5-inch Small Form Factor (SFF) design is a standard in enterprise storage systems due to its balance between density and compatibility. In this category, the SFF design allows seamless integration into HPE ProLiant servers and storage arrays. The compact form factor supports high drive counts per chassis, enabling scalable storage expansion without requiring additional infrastructure.

SFF drives also improve airflow efficiency in dense server configurations. Their reduced physical footprint contributes to optimized thermal distribution and better rack-level space utilization, making them ideal for modern data center architecture where space optimization is a critical performance metric.

SAS 12Gbps Interface Performance Characteristics

The SAS 12Gbps interface is a key differentiator in this SSD category. It provides twice the throughput of the previous 6Gbps generation, enabling faster data transfer rates and improved responsiveness in high-demand environments. SAS technology is widely used in enterprise systems because of its reliability, error correction capabilities, and full-duplex communication support.

Unlike SATA interfaces, SAS supports dual-port connectivity, allowing redundant paths to storage devices. This ensures continuous availability even if one path fails, making it essential for high-availability systems. The 12Gbps bandwidth supports large-scale data streaming operations and reduces bottlenecks in multi-user environments.

Read Intensive Workload Optimization

This SSD category is classified as read intensive, meaning it is engineered to handle workloads where read operations significantly outweigh write operations. Read-intensive SSDs typically provide higher read throughput and optimized cost-per-GB compared to mixed-use or write-intensive drives.

The firmware and NAND endurance characteristics are tuned to ensure long-term stability under read-heavy workloads, reducing unnecessary write amplification and extending operational lifespan in appropriate use scenarios.

Multi Vendor Compatibility in Enterprise Environments

The Multi Vendor (MV) classification indicates compatibility across multiple hardware ecosystems, ensuring interoperability within diverse enterprise infrastructures. This flexibility allows organizations to deploy the drive across heterogeneous storage environments without strict vendor lock-in constraints.

Multi Vendor SSDs undergo validation testing to ensure consistent behavior across supported platforms, including HPE ProLiant servers, storage arrays, and hybrid cloud architectures. This ensures predictable performance and simplified procurement processes for IT departments managing large-scale deployments.

Hot Swap Capability and Data Center Uptime

Hot swap functionality is a critical feature in enterprise SSD categories such as this one. It allows the drive to be replaced or upgraded without shutting down the server or storage system. This ensures uninterrupted service availability, which is essential for mission-critical applications.

Hot swap support is typically implemented through standardized drive carriers and backplane compatibility, enabling quick replacement while maintaining system integrity. This reduces maintenance windows and minimizes downtime risks in production environments.

Smart Carrier (SC) Integration and Tray Design

The Smart Carrier (SC) tray included with this SSD category provides enhanced management and monitoring capabilities. It often integrates status LEDs, drive activity indicators, and secure locking mechanisms for improved operational visibility.

The tray system ensures proper alignment and secure mounting within compatible server bays. This enhances vibration resistance and mechanical stability, especially in high-density rack deployments where multiple drives operate simultaneously under heavy workloads.

Enterprise NAND Flash and Endurance Engineering

The NAND flash architecture used in this SSD category is designed for enterprise-grade endurance. While classified as read intensive, the drive still maintains sufficient write endurance for metadata updates, caching operations, and system logging tasks.

Advanced wear leveling algorithms distribute data evenly across memory cells, preventing premature degradation and ensuring consistent performance over extended deployment cycles. Error correction codes (ECC) and over-provisioning strategies further enhance data integrity and reliability.

Performance Metrics: IOPS, Latency, and Throughput

Performance in this SSD category is measured through key metrics such as Input/Output Operations Per Second (IOPS), latency, and sustained throughput. The SAS 12Gbps interface allows for high sequential read speeds, while optimized controller firmware ensures low latency response times in random access workloads.

Enterprise environments benefit from predictable performance under mixed workloads, ensuring that applications such as databases and virtualization platforms maintain responsiveness even under peak demand conditions.

Power Efficiency

Power efficiency is a key consideration in modern data center storage design. This SSD category consumes significantly less power compared to traditional hard disk drives while delivering higher performance density. Reduced power consumption translates into lower operational costs and improved energy efficiency ratings for data center infrastructure.

Thermal management is optimized through advanced controller design and NAND efficiency improvements. The drive operates within controlled temperature thresholds, ensuring stability in high-density deployments where airflow may be constrained.

Data Integrity and Reliability

Enterprise SSDs in this category incorporate multiple layers of data protection, including end-to-end data path protection, power-loss protection mechanisms, and advanced ECC algorithms. These features ensure that data remains intact even in the event of unexpected power interruptions or system anomalies.

Metadata protection and firmware-level validation further enhance reliability, ensuring consistent performance across long-term deployments in critical environments such as financial systems, healthcare databases, and cloud infrastructure platforms.

HPE Server and Storage Array Integration

This SSD category is specifically designed for compatibility with HPE server ecosystems. It integrates seamlessly with HPE ProLiant servers, HPE Synergy platforms, and HPE storage arrays. This ensures optimized firmware behavior, validated performance profiles, and simplified system management.

Integration within HPE Smart Storage frameworks enables administrators to monitor drive health, predict failures, and manage storage pools efficiently using centralized management tools.

RAID Compatibility and Data Redundancy

This SSD category is fully compatible with RAID configurations commonly used in enterprise storage systems. RAID implementations such as RAID 0, RAID 1, RAID 5, RAID 6, and RAID 10 benefit from the high-speed read capabilities of SAS SSDs.

In RAID arrays, read-intensive SSDs significantly improve data retrieval performance, making them ideal for distributed systems where read requests dominate workload patterns. This enhances system responsiveness and improves overall application performance.

Cloud Computing and Virtualization Workloads

Cloud computing environments rely heavily on storage systems capable of handling large volumes of simultaneous read requests. This SSD category is optimized for virtualization platforms such as VMware, Hyper-V, and KVM, where multiple virtual machines share underlying storage resources.

High-capacity SSDs reduce storage bottlenecks and improve VM boot times, application loading speeds, and data synchronization processes. This makes them essential components in private cloud and hybrid cloud infrastructures.

Storage Scalability and Infrastructure Efficiency

The high-density nature of the 15.36TB SSD enables significant storage scalability improvements. Fewer drives are required to achieve petabyte-scale storage systems, reducing hardware complexity and simplifying infrastructure management.

This contributes to lower total cost of ownership (TCO), reduced maintenance overhead, and improved system reliability due to fewer physical components in operation.

Security Features and Data Protection Layers

Enterprise SSDs in this category often include security features such as self-encrypting drive (SED) capabilities, secure erase functions, and firmware-level authentication protocols. These features ensure compliance with data protection standards and regulatory requirements.

Secure data lifecycle management ensures that sensitive information can be safely decommissioned or repurposed without risk of unauthorized recovery.

Failure Prediction

Self-Monitoring, Analysis, and Reporting Technology (SMART) systems provide real-time insights into drive health, enabling early detection of potential failures. Metrics such as wear leveling count, temperature thresholds, and error rates are continuously monitored.

Predictive analytics help administrators replace drives before failure occurs, reducing downtime risks and improving system reliability in enterprise environments.

Use Case Expansion Across Enterprise Sectors

This SSD category is widely applicable across multiple industries including telecommunications, finance, healthcare, government, and cloud service providers. Each sector benefits from high-speed read access, reliability, and scalable storage architecture.

In financial systems, rapid transaction retrieval is essential. In healthcare, large imaging datasets require fast access. In telecommunications, real-time data processing depends on low-latency storage systems.

Future-Ready Storage Infrastructure Design

As enterprise storage demands continue to grow, high-capacity SAS SSDs such as this category will play a central role in future-ready infrastructure design. Their balance of performance, scalability, and reliability ensures long-term relevance in evolving data center architectures.

Integration with emerging technologies such as software-defined storage (SDS) and hyper-converged infrastructure (HCI) further enhances their strategic importance in next-generation IT ecosystems.

Features
Manufacturer Warranty:
3 Years Warranty from Original Brand
Product/Item Condition:
Factory-Sealed New in Original Box (FSB)
ServerOrbit Replacement Warranty:
1 Year Warranty