Solid State Drives (SSDs)
Enterasource stocks enterprise server SSDs in SAS, SATA, and NVMe interfaces across read-intensive, mixed-use, and write-intensive endurance classes. All SSDs are tested, hot-swap compatible with Dell PowerEdge and HPE ProLiant servers, and backed by warranty.
Filter by interface, form factor, capacity, and endurance class below.
- Dell G5N65 3.84TB TLC NVMe SSD 2.5" Gen4 x4 RI Solid State Drive | MZ-WLR3T80Availability: In StockManufacturer: Dell Condition: Refurbished 1 Year WarrantyBuy Now$1,199.99
- Dell HN8H6 BOSS-N1 960GB TLC NVMe M.2 2280 Gen4 RI SED SSD | Micron MTFDKBA96TDZAvailability: Available by QuoteManufacturer: Dell Condition: Refurbished 1 Year WarrantyRequest PricingOut of stock
- Dell 4KCVT 30.72TB NVMe QLC SSD 2.5" Gen4 x4 RI Solid State Drive | Intel SSDPF2NV307TZEAvailability: Available by QuoteManufacturer: Dell Condition: Refurbished 1 Year WarrantyRequest PricingOut of stock
- Dell 2RN2N 3.84TB TLC NVMe M.2 22110 Gen4 RI SSD | Micron MTFDKBG3T8TDZAvailability: Available by QuoteManufacturer: Dell Condition: Refurbished 1 Year WarrantyRequest PricingOut of stock
- Dell PRV6C PE BOSS-N1 960GB TLC NVMe M.2 2280 Gen4 RI SSD | Micron MTFDKBA960TDZAvailability: Available by QuoteManufacturer: Dell Condition: Refurbished 1 Year WarrantyRequest PricingOut of stock
- Dell GHRW8 800GB TLC NVMe M.2 2280 Gen4 MU Solid State DriveAvailability: Available by QuoteManufacturer: Dell Condition: Refurbished 1 Year WarrantyRequest PricingOut of stock
- Dell RG3T2 7.68TB TLC NVMe U.2 2.5" Gen4 x4 RI Solid State Drive | Hynix HFS7T6GEETX099NAvailability: Available by QuoteManufacturer: Dell Condition: Refurbished 1 Year WarrantyRequest PricingOut of stock
- Dell RTRG0 1TB BiCS NVMe M.2 2280 Gen4 x4 Solid State Drive KIOXIA KXG80ZNV1T02Availability: Available by QuoteManufacturer: Dell Condition: Refurbished 1 Year WarrantyRequest PricingOut of stock
- Dell R1J8J 7.68TB TLC NVMe U.2 2.5" Gen4 x4 RI Solid State Drive | MZ-WLR7T6BAvailability: Available by QuoteManufacturer: Dell Condition: Refurbished 1 Year WarrantyRequest PricingOut of stock
- Dell XM80T 800GB TLC NVMe U.2 2.5" Gen4 x4 WI Solid State Drive | MTFDKCC800TFSAvailability: Available by QuoteManufacturer: Dell Condition: Refurbished 1 Year WarrantyRequest PricingOut of stock
- Dell 91KYJ 7.68TB TLC NVMe U.2 2.5" Gen4 x4 RI Solid State Drive | MTFDKCC7T6TFRAvailability: Available by QuoteManufacturer: Dell Condition: Refurbished 1 Year WarrantyRequest PricingOut of stock
- Dell MJ37V 800GB Optane NVMe U.2 2.5" Gen4 x4 WI Solid State DriveAvailability: In StockManufacturer: Dell Condition: Refurbished 1 Year WarrantyBuy Now$699.99
SAS vs SATA vs NVMe Server SSDs
NVMe SSDs connect over PCIe for the lowest latency and highest throughput. Enterprise NVMe Gen 4 SSDs list sequential reads of up to 7,400 MB/s, more than three times a dual-port 12 Gb/s SAS SSD from the same maker. Used for database storage, caching tiers, and latency-sensitive applications. Requires NVMe-capable drive bays or universal slots.
SAS SSDs provide dual-port connectivity for failover. They connect at 12 Gb/s, or at 22.5 Gb/s as 24G SAS when both the drive and the controller support it. Compatible with SAS-capable drive bays and SAS-capable Dell PERC and HPE Smart Array controllers.
SATA SSDs are the lowest-cost SSD option at 6 Gb/s. Single-port only. Suitable for boot drives, read-heavy workloads, and cost-sensitive deployments where SAS dual-port redundancy is not required.
Read-Intensive vs Mixed-Use vs Write-Intensive
Enterprise SSDs are rated by endurance class — the number of drive writes per day (DWPD) the drive is warranted for:
- Read-Intensive (RI) — Less than 1 DWPD. Lowest cost per GB. For read-heavy workloads: web serving, media streaming, boot drives, read replicas.
- Mixed-Use (MU) — 1-3 DWPD. Balanced read/write. For virtual machine datastores, general database, email servers.
- Write-Intensive (WI) — 3-10+ DWPD. Highest endurance. For write-heavy databases, OLTP, logging, caching tiers.
Choosing the right endurance class affects both cost and drive lifespan. Over-specifying wastes budget; under-specifying risks premature wear.
How to Choose the Right Server SSD
- Check your server's interface support — NVMe requires NVMe-capable bays; SAS requires SAS-capable bays; SATA works in SAS or SATA bays
- Match endurance to workload — RI for reads, MU for balanced, WI for writes
- Select form factor — 2.5-inch (standard) or E3.S (NVMe, on select 16th and 17th Gen PowerEdge servers, such as the R660, R760 and R770)
- Contact Enterasource for volume pricing on multi-drive configurations
Frequently Asked Questions
- What is the difference between read-intensive, mixed-use, and write-intensive SSDs?
- Enterprise SSDs are rated by DWPD (drive writes per day) — the amount of write endurance warranted over the drive's service life. Read-intensive drives (under 1 DWPD) cost the least per gigabyte and are designed for workloads that are 90%+ reads, such as web serving, media delivery, and database read replicas. Mixed-use drives (1-3 DWPD) handle balanced read/write patterns for VM datastores and general databases. Write-intensive drives (3-10+ DWPD) withstand the heaviest write loads for OLTP, transaction logging, and caching tiers. Selecting the correct endurance class optimizes both cost and drive lifespan.
- NVMe vs SAS SSD: which is better for my server?
- NVMe SSDs connect over PCIe; enterprise Gen 4 models list sequential reads of up to 7,400 MB/s and, on Seagate's datasheets, lower average read latency than 12 Gb/s SAS SSDs. NVMe is the best choice for latency-sensitive databases, caching, and any workload that saturates SAS bandwidth. SAS SSDs provide dual-port redundancy and are managed by SAS-capable hardware RAID controllers (Dell PERC, HPE Smart Array). If your server has NVMe-capable bays and your workload benefits from maximum throughput, choose NVMe. If your server has SAS bays and a SAS-capable controller, choose SAS SSDs; SATA SSDs also work in SAS bays. For hardware RAID on NVMe, choose an NVMe RAID controller such as the Dell PERC H755N.
- What SSD endurance class do I need for virtualization?
- For most VMware vSphere and Hyper-V virtualization workloads, mixed-use (MU) SSDs rated at 1-3 DWPD are the standard. VM datastore I/O patterns are typically a 60/40 to 70/30 read/write mix, which aligns with mixed-use endurance. Read-intensive drives can work for lightly-written VM environments (VDI read replicas, web server pools), but risk premature wear under sustained VM provisioning or vMotion activity. Write-intensive drives are only necessary for dedicated database VMs with heavy transaction logging.
Need spinning storage for capacity workloads? Browse enterprise server hard drives. Looking for a complete storage build? Configure a server with pre-built RAID arrays.












