P65193-001 HPE 1.92TB Nvme Gen4 Mainstream Performance Static V2 Multi Vendor Read Intensive Sff U.3 SSD.
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Product Overview of HPE P65193-001 1.92TB SSD
General Information
- Brand Name: HPE
- Part Number: P65193-001
- Product Type: Solid State Drive
Technical Specifications
- Storage Capacity: 1.92 Terabytes
- Physical Height: 15 Millimeters
- Drive Format: Small Form Factor (SFF)
- Connection Protocol: NVMe Interface
- Insertion Method: Hot-Swappable Plug
- Mounting Frame: BC Carrier
- Memory Architecture: Triple-Level Cell (TLC) Flash
- Connector Type: Single-Port Configuration
Performance Metrics
- Sequential Read Speed: Up to 6200 MiB per second
- Sequential Write Speed: Up to 2681 MiB per second
- Random Read Operations: 202,698 IOPS
- Random Write Operations: 133,123 IOPS
Reliability & Efficiency
- Optimized for high-speed data access and transfer
- Hot-plug capability ensures minimal downtime
- NVMe interface delivers ultra-low latency
Ideal Use Cases
- Data center deployments
- Enterprise-grade server environments
- High-performance computing platforms
HPE P65193-001 1.92TB NVMe SSD
Capacity and Form Factor
The HPE P65193-001 delivers 1.92TB of high-performance storage in a 2.5-inch Small Form Factor (SFF) design, optimized for space-constrained server environments. This U.3 interface drive provides exceptional storage density while maintaining compatibility with existing SFF infrastructure.
NVMe Generation 4 Technology
Leveraging PCIe 4.0 interface technology, this SSD doubles the bandwidth compared to previous Generation 3 NVMe drives, supporting up to 64,000 MB/s PCIe link speed. The NVMe 1.4 protocol implementation ensures optimal queue depths and efficient command processing for enterprise workloads.
Performance Characteristics
Read-Intensive Workload Optimization
Engineered specifically for read-intensive applications, the P65193-001 delivers sustained read performance of up to 3,500 MB/s and write performance up to 1,200 MB/s. The drive supports random read IOPS up to 500,000 and random write IOPS up to 60,000, making it ideal for database query operations, content delivery networks, and virtual desktop infrastructure.
Endurance and Write Cycles
With a rated endurance of 1.3 Drive Writes Per Day (DWPD), this read-intensive SSD provides sufficient write capability for mixed-use scenarios while maintaining cost-effectiveness. The total bytes written (TBW) rating of 1,400 terabytes ensures long-term reliability under sustained operational loads.
Wide Compatibility
HPE ProLiant Generation 10 Plus Servers
Fully certified and optimized for HPE P65193-001 ProLiant Gen10 Plus servers including DL360 Gen10 Plus, DL380 Gen10 Plus, and DL325 Gen10 Plus models. The drive integrates seamlessly with HPE Smart Array controllers and HPE UEFI system ROM for simplified deployment and management.
HPE ProLiant Generation 11 Servers
Designed for forward compatibility with HPE Gen11 server platforms, ensuring investment protection and seamless technology refresh cycles. The drive supports HPE iLO 6 advanced management features and health monitoring capabilities.
Cross-Platform Compatibility
The Static V2 Multi-Vendor firmware enables broad compatibility with third-party server platforms while maintaining enterprise-grade reliability features. This flexibility allows deployment in heterogeneous data center environments without compromising performance or management capabilities.
U.3 Interface Universal Compatibility
The P65193-001 U.3 interface provides backward compatibility with U.2 backplanes and infrastructure while supporting NVMe, SATA, and SAS protocols through a single connector. This universal compatibility simplifies inventory management and provides deployment flexibility across different server generations.
Enterprise Features and Reliability
Advanced Error Correction
Incorporates end-to-end data path protection with advanced ECC algorithms and power-loss protection circuits. The drive features T10 DIF (Data Integrity Field) support for enhanced data integrity between host and storage device, critical for enterprise and database applications.
Security Implementation
Comprehensive security features including TCG Enterprise SSC compliance with multiple security states, secure firmware updates, and crypto-erase capabilities. Supports IEEE 1667 and EHS (Encrypted Hardware Security) for robust data-at-rest protection.
NVMe Management Interface
Full support for NVMe Management Interface (NVMe-MI) 1.1 specifications enabling out-of-band management through BMC controllers. Includes comprehensive S.M.A.R.T. attributes monitoring, temperature tracking, and performance metrics collection for enterprise monitoring systems.
Workload Optimization and Use Cases
Database and Analytics Workloads
Optimized for OLTP databases, data warehousing, and business intelligence applications where fast read access and low latency are critical. The high random read performance accelerates database queries and reporting operations significantly.
Virtualization and Cloud Infrastructure
Ideal for hyper-converged infrastructure, virtual machine storage, and containerized applications. The consistent low latency and high IOPS performance support dense virtualization environments with multiple VMs accessing storage concurrently.
Performance Consistency
Sustained Performance Characteristics
Maintains consistent performance under sustained workloads with advanced flash management algorithms including dynamic wear leveling, garbage collection, and background media management. The P65193-001 drive delivers predictable latency profiles essential for quality of service in multi-tenant environments.
NAND Flash Technology
Utilizes high-quality 3D TLC NAND flash memory with advanced signal processing and read-retry algorithms to maximize data retention and endurance. The flash management controller implements sophisticated error correction and bad block management for extended lifespan.
Power Consumption Profile
Typical active power consumption of 12-14 watts during read operations and 8-10 watts during idle states. The drive supports multiple power states including PS0, PS1, PS2, and PS3 for optimal power efficiency across different workload conditions.
