Intel Optane PMem 300 | 512Module de mémoire persistante Go DDR5 - Serveur Xinchuan | Fournisseur de matériel de serveur d'entreprise

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Intel Optane PMem 300 | 512Module de mémoire persistante Go DDR5

Your Database Needs 3 TB of Memory. Your Server Has 2 TB of DRAM Slots. Now What?This is the moment when the budget meeting gets tense. Option A: buy a 4-socket R860 with 64 DIMM slots at $85,000 plus. Option B: live with the performance bottleneck. Option C was not on the table because most IT teams do not know it exists — Intel Optane Persistent Memory 300 Modules de série, which plug into the same DDR5 DIMM slots as DRAM, but deliver 512 GB per module instead of 64-256 Go. Populate four Optane modules in four DDR5 channels, and you add 2 TB of memory to a server that was already full of DRAM — without adding a single DIMM

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Your Database Needs 3 TB of Memory. Your Server Has 2 TB of DRAM Slots. Now What?

This is the moment when the budget meeting gets tense. Option A: buy a 4-socket R860 with 64 DIMM slots at $85,000 plus. Option B: live with the performance bottleneck. Option C was not on the table because most IT teams do not know it exists — Intel Optane Persistent Memory 300 Modules de série, which plug into the same DDR5 DIMM slots as DRAM, but deliver 512 GB per module instead of 64-256 Go. Populate four Optane modules in four DDR5 channels, and you add 2 TB of memory to a server that was already full of DRAM — without adding a single DIMM slot, CPU socket, or server node.

Spécifications techniques

Paramètre spécification
Modèle Intel Optane Persistent Memory 300 Série (Crow Pass, 4th Gen Xeon)
Capacité 512 GB per module (also: 128 Go, 256 Go)
Memory Technology Intel Optane (3D XPoint) — byte-addressable, persistent, non-volatile
Facteur de forme DDR5 DIMM (DDR-T2 interface, 288-broche)
Interface DDR5 memory bus — connects to CPU memory controller, not PCIe
Memory Mode (App Direct) Byte-addressable persistent memory accessed via DAX (Direct Access) filesystem or PMDK library. Data survives power loss.
Memory Mode (Memory Mode) Volatile, used as system memory with DRAM as cache. OS sees total Optane capacity as volatile RAM. DRAM acts as L4 cache.
Latence (App Direct, 4K random read) ~350 nanoseconds (vs ~90ns DRAM, ~10,000ns NVMe SSD)
Bande passante (per module, sequential read) ~15 GB/s (DDR5-4400 equivalent)
Endurance 100% of capacity written per day for 5 years (essentially wear-out-proof for data center workloads)
Pouvoir (Idle / Active) ~3W / ~15W
Data Persistence Oui (App Direct mode) — data retained across power cycles without battery backup
Chiffrement AES-256 hardware encryption (always-on, transparent to OS)
Compatible CPUs 4th Gen Intel Xeon Scalable (Rapides Saphir), LGA 4677
Max Modules per Socket 4 Optane modules + 16 DRAM DIMMs per CPU (mixed configuration)
Prise en charge du système d'exploitation (Memory Mode) VMware ESXi 7.0 U3+, 8.0+ | Serveur Windows 2022/2025 | RHEL 9.x | SLES 15 SP4+
Prise en charge du système d'exploitation (App Direct) RHEL 9.x, SLES 15 SP4+ (DAX filesystem), Serveur Windows 2022+ (DAX volume)
garantie 3-année (avec serveur)

Optane PMem vs DRAM vs NVMe — The Performance Pyramid

Attribut DRAM (DDR5 RDIMM) Optane PMem 300 NVME SSD (Gen4)
Latence (4K random read) ~90 ns ~350 ns ~75,000 ns (75 us)
Bande passante ~38 GB/s (5600 MT/s) ~15 GB/s ~7 GB/s
Max capacity per DIMM/slot 256 Go (3DS RDIMM) 512 Go 30.72 TB (U.3 SSD)
Cost per GB (relative) 100% (ligne de base) ~60% ~3%
Byte-addressable Oui (volatile) Oui (persistent) Non (block storage)
Data survives power loss Non Oui (App Direct mode) Oui
Idéal pour Active working set, hot data Large in-memory datasets, database buffer pool extension, Redis/Memcached tier Bulk storage, données froides, backups

Use Case: Database Buffer Pool Extension

An Oracle database with a 1.5 TB working set and a server with 1 TB of DRAM has a 500 GB gap that spills to NVMe storage — where every page fault costs 75 microseconds instead of 90 nanoseconds. With 2x Optane PMem 300 512 GB modules (1 TB total) in Memory Mode, the DRAM acts as a 1 TB cache backed by the Optane modules as the buffer pool extension. Page faults that would have gone to NVMe instead hit Optane at 350 nanoseconds — over 200x faster. The difference between a database that runs at 10,000 transactions per second and one that runs at 14,000 TPS is this 500 GB gap and how it is filled.

Compatible Platforms

Requires 4th Gen Intel Xeon Scalable (Rapides Saphir) processors and BIOS support for Optane PMem. Compatible avec Dell PowerEdge R660, R760, R770, R860, R960, xFusion FusionServer V7 (1288H/2288H/2488H/5288/5885H). Not compatible with AMD EPYC platforms (R7715) or earlier Xeon generations (R740, R750). Verify the server BIOS has Optane PMem configuration enabled — not all system boards enable it by default.

Source via Xincuan

We supply Optane PMem 300 modules pre-installed in Dell and xFusion servers. Tarification directe en usine, 3-an de garantie, et expédition mondiale.

Request an Optane PMem configured server quote

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