Dell D4CC6 / Intel DC P4510 2TB NVMe U.2 SSD – Enterprise-Grade Performance
Experience exceptional reliability and high-speed storage performance with the Dell D4CC6 / 0D4CC6 2TB NVMe SSD, powered by the Intel DC P4510 Series (Model SSDPE2KX020T8). Designed for enterprise workloads, data centers, and high-performance computing environments, this solid-state drive delivers the speed, endurance, and efficiency modern servers demand.
Built with 64-layer 3D TLC NAND and the Intel SLLWY controller, the Dell D4CC6 SSD provides blazing-fast transfer rates — up to 3,200 MB/s sequential read and 2,000 MB/s write speeds — along with outstanding random read performance of 637,000 IOPS. With NVMe 1.3 over PCIe 3.1 x4 and a U.2 (SFF-8639) interface, it ensures low latency, consistent Quality of Service (QoS), and compatibility with Dell enterprise systems.
This drive also includes power-loss protection, 256-bit hardware encryption, and enhanced S.M.A.R.T. monitoring for maximum data integrity and reliability.
Key Specifications
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Dell Part Number: D4CC6 / 0D4CC6
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Intel Part Number: SSDPE2KX020T8 (Intel DC P4510 Series)
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Capacity: 2TB (2000 GB)
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Form Factor: 2.5-inch SFF (15mm height)
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Interface: U.2 (SFF-8639), PCIe 3.1 x4, NVMe 1.3 protocol
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NAND Type: 64-layer 3D TLC
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Controller: Intel SLLWY
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Performance:
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Sequential Read: Up to 3,200 MB/s
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Sequential Write: Up to 2,000 MB/s
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Random Read (4K): Up to 637,000 IOPS
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Random Write (4K): Up to 81,500 IOPS
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Endurance: 1 DWPD | 2.61 PBW (2610 TBW)
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MTBF: 2.0 million hours
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Power Consumption: Idle 5W | Typical 10W | Max 12W
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Encryption: 256-bit SED (Self-Encrypting Drive)
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Warranty: 5 years
Advanced Features
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Power-Loss Protection – Safeguards data during unexpected shutdowns.
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Intelligent Firmware Optimization – Enhances QoS and workload prioritization.
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Enhanced S.M.A.R.T. Monitoring – Real-time health and performance tracking.
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Thermal Management – Integrated heat dissipation for stable operation.
Ideal For
Enterprise servers • Data centers • Virtualization environments • Cloud infrastructure • AI and HPC workloads