Solidigm D5-P5336 122.88TB SSD
The 122.88TB Solidigm D5-P5336 is the highest-capacity member of the P5336 family. It targets dense read-intensive storage where reducing SSD count, bays and PCIe lanes is more important than write-heavy endurance.
This page is specific to the Solidigm product. The separate 122TB SSD market page compares the broader 122.88TB class across manufacturers.
D5-P5336 specifications
| Manufacturer | Solidigm |
|---|---|
| Product family | D5-P5336 |
| Positioning | PCIe 4.0 capacity SSD |
| NAND | 192-layer QLC 3D NAND |
| Interface | PCIe 4.0 x4, NVMe 2.0 |
| Form factors | U.2 15mm, E3.S 7.5mm and E1.L 9.5mm; ordering options vary by capacity |
| Capacities | 7.68, 15.36, 30.72, 61.44 and 122.88TB |
| Sequential performance | Up to 7,000 MB/s read and 3,300 MB/s write |
| Random performance | Up to 1.005M random-read IOPS; write performance varies by capacity |
| Endurance | 0.42 to 0.60 DWPD over five years; 5.9 to 134.3 PBW by capacity |
| Warranty | Five-year limited warranty |
| Primary workload | Read-intensive data lakes, object storage, CDN, scale-out storage and large AI datasets |
122.88TB raw-capacity planning
| Raw target | Drive count | Installed raw capacity | Capacity note |
|---|---|---|---|
| 500TB raw | 5 | 614.4TB | Before RAID, erasure coding, spares, metadata and filesystem overhead |
| 1PB raw | 9 | 1,105.92TB | Before RAID, erasure coding, spares, metadata and filesystem overhead |
| 2PB raw | 17 | 2,088.96TB | Before RAID, erasure coding, spares, metadata and filesystem overhead |
| 5PB raw | 41 | 5,038.08TB | Before RAID, erasure coding, spares, metadata and filesystem overhead |
Published endurance: 0.60 DWPD and 134.3 PBW over five years. Form-factor note: U.2, E3.S and E1.L family options; confirm the exact ordering code.
No exact 122.88TB public offer is currently available. The official product remains documented above without an invented price.
122.88TB density and failure domains
The device count advantage is substantial: five drives clear 500TB raw, nine clear 1PB and forty-one clear 5PB. Fewer drives can reduce slot count and management overhead, but each device also holds more data and may take longer to repopulate after replacement.
Design protection across realistic node and rack failure domains. Raw capacity alone does not describe rebuild exposure, network recovery bandwidth or the usable capacity available while a device is being repaired.
Workload and endurance fit
Solidigm publishes 0.60 DWPD and 134.3PBW over five years for the 122.88TB capacity. That is a large total-write allowance because the drive is large, but the daily endurance class remains read intensive.
Use it for data lakes, object repositories, content delivery and AI datasets whose working set is read repeatedly. For continuously rewritten KV cache, heavy database logs or scratch data, compare the write rate with PS1030 or a dedicated high-endurance tier.
Platform qualification
Check the exact form factor, bay depth, backplane, PCIe generation, airflow and firmware support. A server advertising NVMe bays does not automatically support every U.2, E3.S or E1.L capacity option.
At this capacity, procurement should include spare strategy, firmware consistency and support ownership. A publicly listed bare SSD may not carry the same platform qualification as an OEM system option.
Frequently asked questions
How many 122.88TB SSDs make 1PB raw?
Nine drives provide 1,105.92TB raw. Protection and filesystem overhead reduce usable capacity.
Is this page the same as the 122TB SSD page?
No. This page covers the Solidigm D5-P5336 122.88TB specifically; the 122TB SSD page is a cross-brand market and capacity overview.
What is the 122.88TB P5336 endurance?
Solidigm publishes 0.60 DWPD and 134.3PBW over five years for this capacity.
Sources checked: Solidigm D5-P5336 product page and product brief.
Specifications are manufacturer-published maxima and vary by capacity, form factor, firmware and test conditions. Current price appears only for a matching product that is presently offered.