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Endurance
Endurance for the SSD can be predicted based on the usage conditions applied to the
device, the internal NAND component cycles, the write amplification factor, and the
wear-leveling efficiency of the drive. The tables below show the drive lifetime for each
SSD capacity by client computing and sequential input and based on predefined usage
conditions.
Table 7: Drive Lifetime – Client Computing
Capacity Drive Lifetime (Total Bytes Written)
128GB 100TB
256GB 200TB
512GB 300TB
Notes:
1. Total bytes written validated with the drive 90% full.
2. SSD volatile write cache is enabled.
3. Access patterns used during reliability testing are 25% sequential and 75% random and
consist of the following: 50% are 4 KiB; 40% are 64 KiB; and 10% are 128 KiB.
4. Host workload parameters, including write cache settings, I/O alignment, transfer sizes,
randomness, and percent full, that are substantially different than the described notes
may result in varied endurance results.
5. GB/day can be calculated by dividing the total bytes written value by (365 × number of
years). For example: 100 TB/5 years/365 days = 54 GB/day for 5 years.
M600 mSATA NAND Flash SSD
Reliability
PDF: 09005aef85992c19
m600_msata_ssd.pdf - Rev. E 3/15 EN
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Micron Technology, Inc. reserves the right to change products or specifications without notice.
© 2014 Micron Technology, Inc. All rights reserved.
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