Skip to content

Intel 2TB NVMe HHHL PCIe Gen 3.0 x4 Add-in Card SSD DC P3520 Series SSDPEDMX020T7

Original price $0.00 - Original price $0.00
Original price $0.00
$474.99
$474.99 - $474.99
Current price $474.99
SKU SSDPEDMX020T7
Availability:
50+ in stock

In-store Pickup

Local Pickup in Dallas, TX Available

Shopify Product Page with Tabs
  • Specifications
  • Description
Manufacturer Part Number SSDPEDMX020T7
Manufacturer Intel
Condition (90%+ Health) Refurbished
Standard Warranty 90 Day Replacement Warranty
Item Category Solid State Drives (SSD)
Model DC P3520 Series (Read Description)
Form Factor
Interface
External Interfaces
Storage Capacity
Transfer Rate
Network Management Type
Processor Type
Clock Speed
Number of Cores
Cache
Socket Type
TDP
Compatible Port
Number of Ports
CPU Type
HDD Form Factor
HDD Interface
HDD Rotation Speed
HDD Storage Capacity
HDD Transfer Rate
Memory Bus Speed
Memory Capacity Per Module
Memory Features
Memory Form Factor
Memory Kit Brand
Memory Kit Breakdown
Memory Kit Speed
Memory Kit Technology
Memory Kit Total Capacity
Memory Kit Voltage
Memory Number of Modules
Memory Number of Pins
Memory Total Capacity
Memory Type
Network Ports
Processor Model
SSD Capacity
SSD Interface
SSD Storage Capacity
SSD Transfer Rate
SSD Type

Intel 2TB NVMe HHHL PCIe Gen3 x4 Add-in Card SSD DC P3520 Series SSDPEDMX020T7

The Intel DC P3520 Series (SSDPEDMX020T7) is a 2TB enterprise-grade NVMe solid-state drive designed in a Half-Height, Half-Length (HHHL) PCIe add-in card form factor. Built with Intel’s reliable 3D MLC NAND, it delivers consistent performance, low latency, and strong endurance for data center and read-intensive workloads.


Related Part Numbers

SSDPEDMX020T7, SSDPEDMX020T701, H79704-004


Core Specifications

  • Capacity: 2TB
  • Series: Intel DC P3520
  • Form Factor: HHHL (Half-Height, Half-Length) Add-in Card
  • Interface: PCIe Gen3 x4 (NVMe)
  • NAND Type: 3D MLC NAND

Performance

  • Sequential Read: Up to 1,700 MB/s
  • Sequential Write: Up to 1,350 MB/s
  • Random Read (4KB): Up to 375,000 IOPS
  • Random Write (4KB): Up to 26,000 IOPS
  • Latency: ~20µs Read / ~30µs Write

Reliability & Endurance

  • Endurance (TBW): ~2,490 TBW
  • MTBF: 2,000,000 hours
  • UBER: Enterprise-grade data integrity
  • Workload Type: Read Intensive / Mixed enterprise workloads

Advanced Features

  • Hardware Encryption: 256-bit AES
  • Power Loss Protection: Safeguards in-flight data during unexpected outages
  • End-to-End Data Protection: Ensures data integrity across the entire data path
  • Thermal Monitoring: Built-in temperature tracking and logging

Power & Environmental

  • Power Consumption:
    • Idle: ~4W
    • Active Read: ~10W
    • Active Write: ~12W
  • Operating Temperature: 0°C to 35°C

Compatibility

  • Physical Requirement: PCIe x4, x8, or x16 slot (HHHL compatible bracket)
  • Interface: PCIe Gen3 (backward/forward compatible with Gen4/Gen5 slots at Gen3 speeds)
  • Protocol: NVMe

Enterprise Server Compatibility

  • Dell PowerEdge (12th Gen and newer): R620, R720, R630, R730, R640, R740
  • HPE ProLiant (Gen8 / Gen9 / Gen10): DL360, DL380
  • Lenovo ThinkSystem: SR630, SR650
  • Intel Server Boards: Validated on platforms like S2600 series

Desktop & Workstation Compatibility

  • Works in most modern systems with NVMe support:
    • Intel Chipsets: Z170 → Z790 / newer
    • AMD Platforms: X370 → X670E / newer
    • Workstations: Dell Precision, HP Z-series

Operating System Support

  • Windows: Windows 10/11, Windows Server (2012 R2+)
  • Linux: RHEL, Ubuntu, SLES, CentOS
  • Virtualization: VMware ESXi (5.5+), XenServer

Important Notes

  • Requires UEFI 2.3.1+ for boot support
  • In some older servers (e.g., Dell R720), booting may require specific NVMe configurations
  • Occupies a PCIe slot instead of a front drive bay

Summary

The Intel DC P3520 2TB HHHL NVMe SSD (SSDPEDMX020T7) is a dependable enterprise storage solution offering solid PCIe Gen3 performance, strong endurance, and broad compatibility. Its add-in card design makes it ideal for servers and workstations needing high-speed NVMe storage without relying on traditional drive bays.