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The date the product was first introduced.
Speed with which the device is able to retrieve data that forms one contiguous, ordered block of data. Measured in MB/s (MegaBytes per Second)
Speed with which the device is able to record data into one contiguous, ordered block of data. Measured in MB/s (MegaBytes per Second)
Speed with which the SSD is able to retrieve data from arbitrary locations in the memory, within 8GB of LBA (Logical Block Address) range on the drive. Measured in IOPS (Input/Output Operations Per Second)
Speed with which the SSD is able to record data to arbitrary locations in the memory, within 8GB of LBA (Logical Block Address) range on the drive. Measured in IOPS (Input/Output Operations Per Second)
Read Latency indicates the elapsed time to execute a data retrieval task. Measured in micro-seconds.
Write Latency indicates the elapsed time to execute a data record task. Measured in micro-seconds.
Active Power indicates typical power consumption of the device when operating.
Idle Power indicates typical power consumption of the device when idle.
Operating Vibration indicates the tested capability of the SSD to withstand the reported vibration in the operating state and remain functional. Measured in G-force RMS (Root Mean Square)
Non-Operating Vibration indicates the tested capability of the SSD to withstand the reported vibration in the non-operating state and remain functional. Measured in G-force RMS (Root Mean Square)
Shock indicates the tested capability of the SSD to withstand the reported shock in both operating and non-operating states and remain functional. Measured in G-force (Max)
MTBF (Mean Time Between Failures) indicates the expected elapsed operating time between failures. Measured in hours.
Uncorrectable Bit Error Rate (UBER) indicates the number of uncorrectable bit errors divided by the total number of transferred bits during a tested time interval.
Form factor indicates the industry standard size and shape of the device.
Interface indicates the industry standard bus communication method employed by the device.
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.
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All information provided is subject to change at any time, without notice. Intel may make changes to manufacturing life cycle, specifications, and product descriptions at any time, without notice. The information herein is provided "as-is" and Intel does not make any representations or warranties whatsoever regarding accuracy of the information, nor on the product features, availability, functionality, or compatibility of the products listed. Please contact system vendor for more information on specific products or systems.
Intel classifications are for informational purposes only and consist of Export Control Classification Numbers (ECCN) and Harmonized Tariff Schedule (HTS) numbers. Any use made of Intel classifications are without recourse to Intel and shall not be construed as a representation or warranty regarding the proper ECCN or HTS. Your company as an importer and/or exporter is responsible for determining the correct classification of your transaction.
Refer to Datasheet for formal definitions of product properties and features.
‡ This feature may not be available on all computing systems. Please check with the system vendor to determine if your system delivers this feature, or reference the system specifications (motherboard, processor, chipset, power supply, HDD, graphics controller, memory, BIOS, drivers, virtual machine monitor-VMM, platform software, and/or operating system) for feature compatibility. Functionality, performance, and other benefits of this feature may vary depending on system configuration.
“Announced” SKUs are not yet available. Please refer to the Launch Date for market availability.