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Intel

Intel SBFPF2BU076T001 D5-P5430 7.68TB enterprise SSD

SKU CH-BAZZ-2R0KS MPN SBFPF2BU076T001

7.68 TB U.2 enterprise NVMe drive delivering 6800 MB/s reads and 1730 MB/s writes for read-intensive server workloads

  • 68 TB capacity stores massive datasets
  • PCIe 5.0 x4 interface delivers 6800 MB/s sequential reads
  • NVMe protocol enables 717000 IOPS random reads
  • 1730 MB/s sequential writes accelerate write-intensive workloads
  • 100000 IOPS random writes sustain mixed enterprise I/O

Capacity and interface

This Solidigm D5-P5430 drive delivers 7.68TB of storage over a PCI Express NVMe 5.0 x4 link in a U.2 15MM form factor. It targets data-centre workloads that need high read throughput and consistent endurance. The new condition means it arrives with full factory specifications and zero prior wear.

Sequential and random speeds

Sequential reads reach 6800 MB/s while sequential writes peak at 1730 MB/s. Random read performance hits 717000 IOPS and random write reaches 100000 IOPS, giving strong mixed-workload responsiveness for database and analytics tiers.

Write-throughput ceiling

The 1730 MB/s maximum write transfer rate is the single figure that determines whether this drive suits sustained ingest pipelines; workloads requiring higher sustained writes will need a different endurance class.

商品特色

  • 68 TB capacity stores massive datasets
  • PCIe 5.0 x4 interface delivers 6800 MB/s sequential reads
  • NVMe protocol enables 717000 IOPS random reads
  • 1730 MB/s sequential writes accelerate write-intensive workloads
  • 100000 IOPS random writes sustain mixed enterprise I/O

商品規格

本商品目前尚未公佈規格。

商品問答

How often will the 7.68TB D5-P5430 need replacement based on its write endurance?

The drive is rated for 1 drive write per day, meaning the 7.68TB capacity can be fully rewritten daily for the warranty period before replacement is typically required.

Which limit appears first during sustained writes: the 1730 Mb/s sequential ceiling or the 100000 IOPS random ceiling?

The 1730 Mb/s maximum write transfer rate is the sequential bottleneck; the 100000 random write IOPS figure applies to 4K random workloads and is a separate constraint.

Does the PCIe 5.0 x4 NVMe interface increase power draw or heat when the drive runs all day at 6800 Mb/s reads?

Operating at the 6800 Mb/s maximum read rate over PCIe 5.0 x4 will elevate power consumption and temperature, requiring adequate airflow in the 15mm U.2 bay.

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