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XP106H011T92P022T0400 Phison Pascari X100p 1.92TB NVMe U.2 Non-Opal Single Port SSD

XP106H011T92P022T0400
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Brief Overview of XP106H011T92P022T0400

Phison XP106H011T92P022T0400 Pascari X100p 1.92TB NVMe U.2 Single Port 3 DWPD Non-Opal 3D TLC Nand Flash SSD. New Sealed in Box (NIB) with 3 Years Warranty

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Phison XP106H011T92P022T0400 Pascari X100p 1.92TB NVMe U.2 Single Port 3 DWPD Non-Opal 3D TLC Nand Flash SSD. New Sealed in Box (NIB) with 3 Years Warranty

SKU/MPNXP106H011T92P022T0400Availability✅ In StockProcessing TimeUsually ships same day Manufacturer Warranty3 Years Warranty from Original Brand Product/Item ConditionNew Sealed in Box (NIB) ServerOrbit Replacement Warranty1 Year Warranty
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Description

Overview of Phison XP106H011T92P022T0400 1.92TB SSD

This 1.6TB enterprise NVMe solid state drive is engineered for demanding, performance-critical environments where speed, durability, and stability are essential. Designed with PCIe 4.0 technology and advanced 3D TLC NAND flash, it delivers consistent throughput for modern data-driven infrastructures, including cloud platforms, virtualization stacks, and large-scale enterprise servers.

General Information

  • Brand: Phison
  • Part Number: XP106H011T92P022T0400
  • Product Type: Solid State Drive

Technical Specifications

  •  Form Factor: U.2 
  •  Interface: Pcie 4.0 (x4 Or Dual X2 Support)
  •  Capacity: 1.6TB
  •  Nand: 3D TLC Flash
  •  Nvme Version: 1.4
  •  Endurance: 3 Dwpd (drive Writes Per Day)

Sequential Performance

  • Sequential read speeds up to 7,400 MB/s
  • Sequential write speeds up to 3,600 MB/s
  • Optimized for large file transfers and streaming data

Physical Specifications

  • Dimensions: 100.10 × 69.85 × 15.00 mm
  • Weight: approximately 198 g

The Phison Pascari X100p 1.92TB NVMe U.2 SSD

Enterprise NVMe solid state storage represents a critical infrastructure component for modern data centers, cloud platforms, and mission-critical computing environments. Solutions within this category are engineered to deliver consistent throughput, ultra-low latency, and sustained endurance under continuous read and write workloads. Products such as the Phison XP106H011T92P022T0400 Pascari X100p 1.92TB U.2 U.3 SSD exemplify how enterprise-class storage is designed for reliability, scalability, and predictable performance, making this category indispensable for database servers, virtualization platforms, analytics clusters, and high-performance computing ecosystems.

NVMe Architecture and PCI Express Integration

The foundation of enterprise NVMe SSDs lies in the Non-Volatile Memory Express protocol, which was purpose-built to maximize the performance potential of flash memory. Unlike legacy SATA or SAS interfaces that were constrained by older command sets and higher latency, NVMe communicates directly with the CPU through PCI Express lanes. This direct path reduces protocol overhead and enables parallel command processing, which is essential for environments where thousands or even millions of I/O operations are issued simultaneously.

PCIe Lane Utilization and Bandwidth Efficiency

Enterprise drives in this category typically leverage PCIe Gen4 connectivity, allowing for substantially higher bandwidth compared to earlier generations. With multiple lanes dedicated to data transfer, these SSDs can sustain high sequential throughput while also maintaining exceptional random I/O performance. This bandwidth efficiency ensures that storage does not become a bottleneck for CPU-intensive or memory-intensive applications, particularly in large-scale server deployments.

U.2 Form Factors

The U.2 form factors have become standards in enterprise storage deployments due to their balance of performance, serviceability, and compatibility. These form factors are designed to fit within traditional 2.5-inch drive bays while delivering PCIe-based NVMe performance. This compatibility allows data centers to upgrade storage performance without redesigning entire server chassis or cooling systems.

Advanced PCIe 4.0 Interface

Leveraging the PCIe 4.0 interface, this SSD supports both x4 and dual x2 lane configurations, making it compatible with a wide range of enterprise backplanes. The U.2 form factor ensures flexibility and seamless integration into modern server and storage platforms.

Hot-Swap Capability

One of the most significant advantages of U.2 SSDs is their support for hot-swap functionality. Administrators can replace or upgrade drives without powering down servers, reducing downtime and maintaining service continuity. In large-scale environments where uptime is critical, this feature directly contributes to operational efficiency and service-level agreement compliance.

Backward and Forward Compatibility

U.3 drives are engineered to provide compatibility across multiple protocols, enabling them to operate in systems designed for U.2 while also supporting newer backplanes. This flexibility allows organizations to standardize on a single drive type across mixed infrastructure generations, simplifying procurement, inventory management, and long-term upgrade planning.

3D TLC NAND Flash Technology

Three-dimensional triple-level cell NAND flash is a cornerstone of modern enterprise SSD design. By stacking memory cells vertically, manufacturers increase storage density while improving performance and efficiency. TLC NAND stores three bits per cell, striking a balance between capacity, endurance, and cost that is well suited for enterprise workloads requiring both high performance and large usable capacity.

Endurance Ratings and DWPD

Drive Writes Per Day, commonly abbreviated as DWPD, is a critical metric in the enterprise SSD category. A rating such as 3 DWPD indicates that the drive can be written to three times its total capacity every day over the warranty period without exceeding its endurance limits. This metric provides a clear guideline for matching storage solutions to workload intensity.

Single Port Design

Single port NVMe SSDs are optimized for environments where a single active connection provides sufficient redundancy at the system level. In many enterprise servers, redundancy is achieved through clustering, replication, or software-defined storage architectures rather than dual-port hardware. Single port designs reduce complexity and power consumption while still delivering enterprise-class reliability.

Non-Opal Configuration

Non-Opal enterprise SSDs are designed for environments where encryption is handled at the system, application, or network level rather than within the drive itself. This approach offers flexibility for organizations that implement custom security frameworks or rely on hardware security modules and software-based encryption solutions.

Thermal Management and Power Efficiency

Enterprise NVMe SSDs are engineered to operate reliably under continuous load, which requires careful thermal management. High-performance controllers and dense NAND arrays generate heat that must be dissipated effectively to prevent throttling and maintain performance consistency.

Capacity Optimization and 1.92TB Class Drives

The 1.92TB capacity class has become a standard in enterprise storage due to its optimal balance between usable space, endurance, and cost efficiency. This capacity aligns well with common RAID and software-defined storage configurations, allowing for efficient data distribution and redundancy planning.

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