Micron 9550 NVME SSD
Leading the pack of data center PCIe Gen5 SSDs1 for mission-critical workloads
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Workloads accelerated
Optimize your infrastructure for AI and other high-performance applications where high-capacity and power efficiency are key differentiators
Cutting-edge capabilities
Experience the ideal mix of features and technology:
Power loss protection
OCP 2.0+ and NVMe 2.0
Firmware activated without reset
128 NVMe namespaces
Enterprise data path protection
NVMe Management Interface (MI)
Secure erase and secure boot
Self-monitoring and reporting technology (SMART)
TCG Opal 2.01
HNVMe power states
Secure signed firmware and download
5-year limited warranty5
Why choose 9550 NVMe SSD?
Improve performance
Get better results while supporting the latest in security
Reduce latency
Ensure responsiveness for real-time analytics, AI training and OLTP
Accelerate workloads
Power the processes behind AI, databases and cloud computing
Specifications
Superior performance across a wide range of workloads and broad support for the Open Compute Project (OCP)
Micron 9550 NVMe PRO
| Capacities | 3.84TB | 7.68TB | 15.36TB | 30.72TB |
|---|---|---|---|---|
| Seq read (MB/s)6 | 14,000 | 14,000 | 14,000 | 14,000 |
| Seq write (MB/s)6 | 6,000 | 10,000 | 9,000 | 7,600 |
| Random read (KIOPS)3 | 2,900 | 3,300 | 3,300 | 2,800 |
| Random write (KIOPS)3 | 280 | 400 | 400 | 380 |
| 70/30 Random read/write (KIOPS) | 500 | 730 | 970 | 1,100 |
| Endurance (TBW)7 | 7,008 (RND) 29,400 (SEQ) | 14,016 (RND) 58,300 (SEQ) | 28,032 (RND) 104,500 (SEQ) | 56,064 (RND) 201,200 (SEQ) |
| Latency (TYP)8 | 60 (read) 15 (write) | |||
| Interface | PCIe Gen5 1x4, NVMe v2.0b | |||
| NAND | Micron 232-layer 3D TLC NAND | |||
| MTTF9 | MTTF: 2.0M hours @ 0–55°C and 2.5M hours @ 0–50°C | |||
Micron 9550 NVMe MAX
| Capacities | 3.2TB | 6.4TB | 12.8TB | 25.6TB |
|---|---|---|---|---|
| Seq read (MB/s)6 | 14,000 | 14,000 | 14,000 | 14,000 |
| Seq write (MB/s)6 | 6,000 | 10,000 | 9,000 | 7,600 |
| Random read (KIOPS)3 | 2,900 | 3,300 | 3,300 | 2,800 |
| Random write (KIOPS)3 | 600 | 900 | 900 | 750 |
| 70/30 Random read/write (KIOPS) | 740 | 1,100 | 1,360 | 1,400 |
| Endurance (TBW)7 | 17,520 (RND) 37,200 (SEQ) | 35,040 (RND) 74,200 (SEQ) | 70,080 (RND) 143,100 (SEQ) | 140,160 (RND) 282,600 (SEQ) |
| Latency (TYP)8 | 60 (read) 15 (write) | |||
| Interface | PCIe Gen5 1x4, NVMe v2.0b | |||
| NAND | Micron 232-layer 3D TLC NAND | |||
| MTTF9 | MTTF: 2.0M hours @ 0–55°C and 2.5M hours @ 0–50°C | |||
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Note: All values provided are for reference only and are not warranted values. For warranty information, visit https://www.micron.com/sales-support/sales/returns-and-warranties or contact your Micron sales representative.
1. Among currently in production Gen5 data center performance SSDs from the top competitive suppliers of enterprise SSDs with at least 10% of market share by revenue as of February 2024, as noted in Forward Insights “SSD Supplier Status Quarterly Q4”
2. 30.72TB capacity is the largest option. User capacity: 1GB = 1 billion bytes; formatted capacity is less.
3. Performance measured under the following conditions: Steady state as defined by SNIA Solid State Storage Performance Test Specification Enterprise v1.1; Drive write cache enabled; NVMe power state 0; Sequential workloads measured using FIO with a queue depth of 32; Random READ workloads measured using FIO with a queue depth of 512.
4. Refer to https://www.micron.com/products/storage/nand-flash/232-layer-nand
5. Warranty valid for 5 years from the original date of purchase or before writing the maximum total bytes written (TBW) as published in the product datasheet and as measured in the product’s SMART data, whichever comes first.
6. Unformatted. 1GB = 1 billion bytes. Formatted capacity is less.
7. Actual lifetime will vary by workload. Total bytes written calculated assuming drive is 100% full (user capacity) with workload of 100% 4KB random in TB (first value) or 100% 128KB sequential (second value) in TB. Refer to percentage used in the SMART/Health information (Log Identifier 02h) to check the device life used.
8. Latency values measured with random workloads using FIO, 4KB transfers, queue depth = 1; Typical latency = median, 50th percentile.
9. Product achieves MTTF based on population statistics not relevant to individual units.
