SSD 8Tb Intel DC P4510 2.5 PCIe/NVMe

SSD 8Tb Intel DC P4510 2.5 PCIe/NVMe

Intel
  • Capacity: 8Tb.
  • Interface: PCIe NVMe 3.1 x4.
  • Optimized for storage.
  • 3D technology NAND TLC 64 layers.
  • SMART monitoring.

P/N: SSDPE2KX080T801 - EAN/UPC: 00735858343886

1.556,47 € Without VAT
1.883,33 € With VAT
Canon Digital not included: 5,45 € + Taxes
Only 1 unit left
Approximate delivery between 25 septiembre and 28 septiembre
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This Intel 3D NAND SSD, inspired by the cloud and equipped with all the features, has been optimized for cloud infrastructures, offering extraordinary quality, reliability, advanced management capability and maintenance.

The DC P4510 meets the requirements of the modern data center. Significantly increases server agility and use while accelerating applications in a wide range of workloads.

Intel's 64-layer TLC 3D NAND technology allows the DC P4510 to double the available capacity compared to its predecessor, the DC P4500. This increase in density is essential to support broader cloud workloads, allowing cloud service providers to increase the number of users and improve levels of data services.

The DC P4510, with the increase in density of Intel's 64-layer 3D NAND and enhanced firmware features, is designed to handle intensive read workloads and much more. The DC P4510 creates higher quality of service (QoS), bandwidth and performance to guide data centers in their transformation.

SMART monitoring of health and disk status, combined with global data path protection and imminent power loss characteristics (PLI) industry leaders guarantee telemetry information without altering the current I / O .

Highlights...

* 8Tb capacity.
* Format: 2.5" 15mm.
* PCIe NVMe 3.1 x4 interface.

Capacity 8Tb
Lithography type 64-Layer 3D TLC NAND
Interface PCIe NVMe 3.1 x4
Form Factor 2.5" 15mm
Weight 139 gr
Performance
Sequential reading 3200 Mb/s
Sequential writing 3000 Mb/s
Random reading 620000 IOPS
Random writing 139500 IOPS
Latency - Reading 110 µs
Latency - Writing 110 µs
Consumption - Active 16 W
Consumption - Inactive 5 W
Reliability
Vibration - In operation 2.17 GRMS (5-700 Hz)
Vibration - Not in operation 3.13 GRMS (5-800 Hz)
Hits 1000G (0.5ms)
Operating temperature 0°C to 70°C
MTBF 5 millones de horas
UBER 1 sector per 10^17 bits read

This Intel 3D NAND SSD, inspired by the cloud and equipped with all the features, has been optimized for cloud infrastructures, offering extraordinary quality, reliability, advanced management capability and maintenance.

The DC P4510 meets the requirements of the modern data center. Significantly increases server agility and use while accelerating applications in a wide range of workloads.

Intel's 64-layer TLC 3D NAND technology allows the DC P4510 to double the available capacity compared to its predecessor, the DC P4500. This increase in density is essential to support broader cloud workloads, allowing cloud service providers to increase the number of users and improve levels of data services.

The DC P4510, with the increase in density of Intel's 64-layer 3D NAND and enhanced firmware features, is designed to handle intensive read workloads and much more. The DC P4510 creates higher quality of service (QoS), bandwidth and performance to guide data centers in their transformation.

SMART monitoring of health and disk status, combined with global data path protection and imminent power loss characteristics (PLI) industry leaders guarantee telemetry information without altering the current I / O .

Highlights...

* 8Tb capacity.
* Format: 2.5" 15mm.
* PCIe NVMe 3.1 x4 interface.

Capacity 8Tb
Lithography type 64-Layer 3D TLC NAND
Interface PCIe NVMe 3.1 x4
Form Factor 2.5" 15mm
Weight 139 gr
Performance
Sequential reading 3200 Mb/s
Sequential writing 3000 Mb/s
Random reading 620000 IOPS
Random writing 139500 IOPS
Latency - Reading 110 µs
Latency - Writing 110 µs
Consumption - Active 16 W
Consumption - Inactive 5 W
Reliability
Vibration - In operation 2.17 GRMS (5-700 Hz)
Vibration - Not in operation 3.13 GRMS (5-800 Hz)
Hits 1000G (0.5ms)
Operating temperature 0°C to 70°C
MTBF 5 millones de horas
UBER 1 sector per 10^17 bits read