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Technical details | |
Device type | SSD |
Weight & dimensions | |
Weight | 140 g |
Energy management | |
Power consumption (idle) | 4.2 W |
Operational conditions | |
Operating temperature (T-T) | 0 - 70 °C |
Maximum operating temperature | 70 °C |
Non-operating vibration | 3.13 G |
Operating vibration | 2.17 G |
Minimum operating temperature | 0 °C |
Brand-specific features | |
Intel High Endurance Technology (HET) | ![]() |
Intel® Optane™ | ![]() |
Other features | |
Internal memory type | PCIe 4.0 x4, NVMe |
Power consumption (active) | 18 W |
Processor family | Intel Optane SSD DC P5800X |
Sequential writing speed | 6100 MB/s |
Sequential reading | 7200 MB/s |
Status | Launched |
SSD endurance rating | 100 DWPD |
Launch date | Q4'20 |
SSD shock | 1000G,0.5ms |
Target market | Artificial Intelligence, Cloud Computing, High Performance Computing |
Features | |
Drive capacity | 800 GB |
Interface | PCI Express 4.0 |
Security algorithms | 256-bit AES |
Mean time between failures (MTBF) | 2000000 h |
Memory type | Intel(R) Optane(TM) Memory Media |
Component for | Server/workstation |
Uncorrectable Bit Error Rate (UBER) | < 1 per 10^17 bits read |
Read latency | 5 µs |
Write latency | 5 µs |
Enhanced Power Loss Data Protection technology | ![]() |
Random write (100% span) | 1350000 IOPS |
Random read (100% span) | 1500000 IOPS |
Hardware encryption | ![]() |
SSD temperature monitoring | ![]() |
End-to-End Data Protection | ![]() |
SSD form factor | 2.5" |
NVMe | ![]() |
Logistics data | |
Harmonized System (HS) code | 84717070 |
Export Control Classification Number (ECCN) | 5A992C |
Commodity Classification Automated Tracking System (CCATS) | G162706 |
EAN | 7358584700704 |
Warranty | 1 year |
Source: Icecat.biz |
Enhanced Power Loss Data Protection
Enhanced Power Loss Data Protection prepares the SSD for unexpected system power loss by minimizing data in transition in temporary buffers, and uses on-board power-loss protection capacitance to provide enough energy for the SSD firmware to move data from the transfer buffer and other temporary buffers to the NAND, thus protecting system and user data.
Hardware Encryption
Hardware encryption is data encryption done at the drive level. This is used to ensure that the data stored on the drive is secured from unwanted intrusion.
End-to-End Data Protection
End-to-End Data Protection ensures integrity of stored data from the computer to the SSD and back.
Temperature Monitoring and Logging
Temperature Monitoring and Logging uses an internal temperature sensor to monitor and log airflow and device internal temperature. The logged results can be accessed using the SMART command.
High Endurance Technology (HET)
High Endurance Technology (HET) in SSD's combines Intel® NAND Flash Memory silicon enhancements and SSD system management techniques to help extend the endurance of the SSD. Endurance is defined as the amount of data that can be written to an SSD during its lifetime.
Enhanced Power Loss Data Protection prepares the SSD for unexpected system power loss by minimizing data in transition in temporary buffers, and uses on-board power-loss protection capacitance to provide enough energy for the SSD firmware to move data from the transfer buffer and other temporary buffers to the NAND, thus protecting system and user data.
Hardware Encryption
Hardware encryption is data encryption done at the drive level. This is used to ensure that the data stored on the drive is secured from unwanted intrusion.
End-to-End Data Protection
End-to-End Data Protection ensures integrity of stored data from the computer to the SSD and back.
Temperature Monitoring and Logging
Temperature Monitoring and Logging uses an internal temperature sensor to monitor and log airflow and device internal temperature. The logged results can be accessed using the SMART command.
High Endurance Technology (HET)
High Endurance Technology (HET) in SSD's combines Intel® NAND Flash Memory silicon enhancements and SSD system management techniques to help extend the endurance of the SSD. Endurance is defined as the amount of data that can be written to an SSD during its lifetime.
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The above technical details are for reference only and may change without notice. We reserve the right to correct printing errors and use illustrations for guidance. Some text may be auto-generated or machine-translated, which could lead to inaccuracies.