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Head-to-head · every figure from the vendor documents

HPE DL380 Gen11 vs Lenovo SR650i V4

A specification-by-specification comparison of the HPE ProLiant DL380 Gen11 and the Lenovo ThinkSystem SR650i V4, built from HPE’s and Lenovo’s own documents. 5 headline measures favour the DL380 Gen11, 1 favours the SR650i V4, and they share no processors.

Bottom line. DL380 Gen11 leads on virtualisation, databases and in-memory work, storage density, AI and acceleration, network throughput. Neither vendor publishes benchmarks for these machines, so every call here is made on what their documents state.

HPE ProLiant DL380 Gen11 2U server, front view: 24 SFF drive bays in three 8-bay boxes, iLO service port, USB port and status LEDs
HPE ProLiant
DL380 Gen11
2U Rack2 sockets32 DIMMHPE iLO 6
VS
Lenovo ThinkSystem SR650i V4 Inference Model front: eight 2.5-inch drive bays in the centre, flanked by the front GPU riser openings
Lenovo ThinkSystem
SR650i V4
2U Rack2 sockets32 DIMMXClarity Controller 3
01 — Scoreboard

The measures that decide it

Each row is a figure both vendors publish. Bars show the split between the two; a badge marks the larger figure, which is not always the better buy — a shallower chassis or a lower power ceiling can matter more.

2
Processor sockets
2
128Higher
Cores, fully populated
Largest listed processor × its socket count
64
8 TBHigher
Memory ceiling
As each document states it
0.5 TB
36Higher
Drive bays
8
Up to 8Higher
Accelerators
Up to 2
2,200 W
Largest power supply
Higher3,200 W
2U Rack
Rack height
2U Rack
400 GbE classHigher
Fastest network option
25 GbE class
02 — Verdict

Which one, and why

Drawn from the measures above and each model’s own data sheet. Neither vendor publishes benchmark results for these servers, so nothing here claims one is “faster”.

Choose the DL380 Gen11 if…

  • Cores, fully populated: 128 against 64 on the SR650i V4
  • Memory ceiling: 8 TB against 0.5 TB on the SR650i V4
  • Drive bays: 36 against 8 on the SR650i V4
  • Five factory chassis — 8SFF, 24SFF, 8LFF, 12LFF and 12EDSFF — plus mid-tray and rear cages, so one model spans small SFF builds, 16 LFF bays and 36 EDSFF NVMe drives.

Choose the SR650i V4 if…

  • Largest power supply: 3,200 W against 2,200 W on the DL380 Gen11
  • 192 GB of GPU memory from a pair of RTX PRO 6000 Blackwell Server Edition cards from NVIDIA, each running in Lenovo’s full 600 W configuration.
03 — By workload

Where each one pulls ahead

Calls made on documented capacity only — cores, memory, bays, accelerators and network options — with the figures behind each one shown.

VirtualisationDL380 Gen11: 128 cores with 8 TB. SR650i V4: 64 cores with 0.5 TB.DL380 Gen11
Databases & in-memoryMemory ceiling 8 TB against 0.5 TB, across 32 and 32 DIMM slots.DL380 Gen11
Storage density36 bays in 2U against 8 in 2U.DL380 Gen11
AI & acceleration8 accelerators against 2 in the vendor documents.DL380 Gen11
Network throughputFastest card listed: 400 GbE class against 25 GbE class.DL380 Gen11
04 — Specifications

Side by side, differences first

Everything both documents state, grouped. The default view hides rows where the two machines are identical.

Processors

Every processor each vendor lists for the model, from its own document.

SpecificationDL380 Gen11SR650i V4
Processors listed661
Most cores per processor6432
Highest processor TDP385 W225 W
Processor families5th Gen Xeon Scalable · 4th Gen Xeon ScalableXeon 6 P-core
Single-processor optionYesNo

Memory

SpecificationDL380 Gen11SR650i V4
Largest module listed256 GB64 GB
Fastest rated speed5,600 MT/s6,400 MT/s
Memory typesRDIMM DDR5-5600 · RDIMM DDR5-4800 · RDIMM 3DS DDR5-5600 · RDIMM 3DS DDR5-4800RDIMM DDR5-6400

Storage

Bay counts are the maximum each document states, including rear and mid-chassis positions.

SpecificationDL380 Gen11SR650i V4
Maximum bays368
Documented layouts131
Bay sizes2.5-inch · 3.5-inch · E3.S2.5-inch
Boot devicesHPE NS204i-u Gen11 NVMe Hot Plug Boot Optimized Storage Device · HPE NS204i-u v2 960GB NVMe Hot Plug Boot Optimized Storage Device · HPE NS204i-u v2 960GB NVMe SED Hot Plug Boot Optimized Storage Device + 2 moreThinkSystem M.2 RAID B550i-2i SATA/NVMe Enablement Kit (internal, 2x M.2 NVMe, integrated Broadcom RAID)
Storage controllers132

Accelerators & I/O

SpecificationDL380 Gen11SR650i V4
Accelerators supportedUp to 8Up to 2
Double-wide cards listed31
PCIe network slots814
Network cards listed391

Power & platform

SpecificationDL380 Gen11SR650i V4
Power-supply options51
Output range800–2,200 W3,200–3,200 W
Input typesAC · −48 V DCAC
ManagementHPE iLO 6XClarity Controller 3
Chassis depthVendors measure depth differently — see each data sheetSFF CTO: 72.7 cm (28.62 in)924 mm (36.4 in.)
05 — The data

Processors, memory, bays and power

The same charts each data sheet carries, drawn to the same scale so the two ranges can be read against each other.

DL380 Gen11: processors by cores and TDP

HPE ProLiant DL380 Gen11 processors0816243240485664100 W150 W200 W250 W300 W350 W400 WCores per processorIntel Xeon Platinum 8593Q — 64 cores · 385 W · 2.2 GHz base · 320 MB cache · DDR5-5600Intel Xeon Platinum 8592+ — 64 cores · 350 W · 1.9 GHz base · 320 MB cache · DDR5-5600Intel Xeon Platinum 8592V — 64 cores · 330 W · 2 GHz base · 320 MB cache · DDR5-4800Intel Xeon Platinum 8580 — 60 cores · 350 W · 2 GHz base · 300 MB cache · DDR5-5600Intel Xeon Platinum 8581V — 60 cores · 270 W · 2 GHz base · 300 MB cache · DDR5-4800Intel Xeon Platinum 8570 — 56 cores · 350 W · 2.1 GHz base · 300 MB cache · DDR5-5600Intel Xeon Platinum 8568Y+ — 48 cores · 350 W · 2.3 GHz base · 300 MB cache · DDR5-5600Intel Xeon Platinum 8558P — 48 cores · 350 W · 2.7 GHz base · 260 MB cache · DDR5-5600Intel Xeon Platinum 8558 — 48 cores · 330 W · 2.1 GHz base · 260 MB cache · DDR5-5200Intel Xeon Platinum 8558U — 48 cores · 300 W · 2 GHz base · 260 MB cache · DDR5-4800Intel Xeon Gold 6554S — 36 cores · 270 W · 2.2 GHz base · 180 MB cache · DDR5-5200Intel Xeon Gold 6558Q — 32 cores · 350 W · 3.2 GHz base · 60 MB cache · DDR5-5200Intel Xeon Platinum 8562Y+ — 32 cores · 300 W · 2.8 GHz base · 60 MB cache · DDR5-5600Intel Xeon Gold 6530 — 32 cores · 270 W · 2.1 GHz base · 160 MB cache · DDR5-4800Intel Xeon Gold 6548N — 32 cores · 250 W · 2.8 GHz base · 60 MB cache · DDR5-5200Intel Xeon Gold 6548Y+ — 32 cores · 250 W · 2.5 GHz base · 60 MB cache · DDR5-5200Intel Xeon Gold 6538Y+ — 32 cores · 225 W · 2.2 GHz base · 60 MB cache · DDR5-5200Intel Xeon Gold 6538N — 32 cores · 205 W · 2.1 GHz base · 60 MB cache · DDR5-5200Intel Xeon Gold 5520+ — 28 cores · 205 W · 2.2 GHz base · 52.5 MB cache · DDR5-4800Intel Xeon Gold 6542Y — 24 cores · 250 W · 2.9 GHz base · 60 MB cache · DDR5-5200Intel Xeon Silver 4516Y+ — 24 cores · 185 W · 2.2 GHz base · 45 MB cache · DDR5-4400Intel Xeon Gold 6544Y — 16 cores · 270 W · 3.6 GHz base · 45 MB cache · DDR5-5200Intel Xeon Gold 6526Y — 16 cores · 195 W · 2.8 GHz base · 37.5 MB cache · DDR5-5200Intel Xeon Silver 4514Y — 16 cores · 150 W · 2 GHz base · 30 MB cache · DDR5-4400Intel Xeon Silver 4510 — 12 cores · 150 W · 2.4 GHz base · 30 MB cache · DDR5-4400Intel Xeon Gold 6534 — 8 cores · 195 W · 3.9 GHz base · 22.5 MB cache · DDR5-4800Intel Xeon Gold 5515+ — 8 cores · 165 W · 3.2 GHz base · 22.5 MB cache · DDR5-4800Intel Xeon Silver 4509Y — 8 cores · 125 W · 2.6 GHz base · 22.5 MB cache · DDR5-4400Intel Xeon Bronze 3508U — 8 cores · 125 W · 2.1 GHz base · 22.5 MB cache · DDR5-4400Intel Xeon Platinum 8490H — 60 cores · 350 W · 1.9 GHz base · 112.5 MB cache · DDR5-4800Intel Xeon Platinum 8480+ — 56 cores · 350 W · 2 GHz base · 105 MB cache · DDR5-4800Intel Xeon Platinum 8470 — 52 cores · 350 W · 2 GHz base · 105 MB cache · DDR5-4800Intel Xeon Platinum 8470Q — 52 cores · 350 W · 2.1 GHz base · 105 MB cache · DDR5-4800Intel Xeon Platinum 8470N — 52 cores · 300 W · 1.7 GHz base · 97.5 MB cache · DDR5-4800Intel Xeon Platinum 8468 — 48 cores · 350 W · 2.1 GHz base · 105 MB cache · DDR5-4800Intel Xeon Platinum 8468V — 48 cores · 330 W · 2.4 GHz base · 97.5 MB cache · DDR5-4800Intel Xeon Platinum 8458P — 44 cores · 350 W · 2.7 GHz base · 82.5 MB cache · DDR5-4800Intel Xeon Platinum 8460Y+ — 40 cores · 300 W · 2 GHz base · 105 MB cache · DDR5-4800Intel Xeon Platinum 8452Y — 36 cores · 300 W · 2 GHz base · 67.5 MB cache · DDR5-4800Intel Xeon Platinum 9462 — 32 cores · 350 W · 2.7 GHz base · 75 MB cache · DDR5-4800Intel Xeon Gold 6458Q — 32 cores · 350 W · 3.1 GHz base · 60 MB cache · DDR5-4800Intel Xeon Platinum 8462Y+ — 32 cores · 300 W · 2.8 GHz base · 60 MB cache · DDR5-4800Intel Xeon Gold 6430 — 32 cores · 270 W · 2.1 GHz base · 60 MB cache · DDR5-4400Intel Xeon Gold 6454S — 32 cores · 270 W · 2.2 GHz base · 60 MB cache · DDR5-4800Intel Xeon Gold 6448H — 32 cores · 250 W · 2.4 GHz base · 60 MB cache · DDR5-4800Intel Xeon Gold 6414U — 32 cores · 250 W · 2 GHz base · 60 MB cache · DDR5-4800Intel Xeon Gold 6448Y — 32 cores · 225 W · 2.1 GHz base · 60 MB cache · DDR5-4800Intel Xeon Gold 6438Y+ — 32 cores · 205 W · 2 GHz base · 60 MB cache · DDR5-4800Intel Xeon Gold 6438N — 32 cores · 205 W · 2 GHz base · 60 MB cache · DDR5-4800Intel Xeon Gold 6421N — 32 cores · 185 W · 1.8 GHz base · 60 MB cache · DDR5-4400Intel Xeon Gold 5420+ — 28 cores · 205 W · 2 GHz base · 52.5 MB cache · DDR5-4400Intel Xeon Gold 6442Y — 24 cores · 225 W · 2.6 GHz base · 60 MB cache · DDR5-4800Intel Xeon Gold 6418H — 24 cores · 185 W · 2.1 GHz base · 60 MB cache · DDR5-4800Intel Xeon Gold 5418Y — 24 cores · 185 W · 2 GHz base · 45 MB cache · DDR5-4400Intel Xeon Gold 5418N — 24 cores · 165 W · 1.8 GHz base · 45 MB cache · DDR5-4000Intel Xeon Gold 5411N — 24 cores · 165 W · 1.9 GHz base · 45 MB cache · DDR5-4400Intel Xeon Silver 4416+ — 20 cores · 165 W · 2 GHz base · 37.5 MB cache · DDR5-4000Intel Xeon Gold 6416H — 18 cores · 165 W · 2.2 GHz base · 45 MB cache · DDR5-4800Intel Xeon Platinum 8444H — 16 cores · 270 W · 2.9 GHz base · 45 MB cache · DDR5-4800Intel Xeon Gold 6444Y — 16 cores · 270 W · 3.6 GHz base · 45 MB cache · DDR5-4800Intel Xeon Gold 6426Y — 16 cores · 185 W · 2.5 GHz base · 37.5 MB cache · DDR5-4800Intel Xeon Gold 5416S — 16 cores · 150 W · 2 GHz base · 30 MB cache · DDR5-4400Intel Xeon Silver 4410Y — 12 cores · 150 W · 2 GHz base · 30 MB cache · DDR5-4000Intel Xeon Gold 6434 — 8 cores · 195 W · 3.7 GHz base · 22.5 MB cache · DDR5-4800Intel Xeon Gold 5415+ — 8 cores · 150 W · 2.9 GHz base · 22.5 MB cache · DDR5-4400Intel Xeon Bronze 3408U — 8 cores · 125 W · 1.8 GHz base · 22.5 MB cache · DDR5-40008593Q64 cores — the top SKU8581V4.5 W/core — most efficient
5th Gen Xeon Scalable 294th Gen Xeon Scalable 37Bubble size = L3 cache · hover a bubble for the full SKU

SR650i V4: processors by cores and TDP

Lenovo ThinkSystem SR650i V4 processors08162432200 W250 WCores per processorIntel Xeon 6 6530P — 32 cores / 64 threads · 225 W · 2.3 GHz base · 144 MB cache · DDR5-64006 6530P32 cores · 7.0 W/core — top SKU and most efficient
Xeon 6 P-core 1Bubble size = L3 cache · hover a bubble for the full SKU

DL380 Gen11: memory with every slot filled

16 GB512 GB32 GB1 TB64 GB2 TB96 GB3 TB128 GB4 TB256 GB8 TB32 slots · 16 per processor · each tick = one DIMM

SR650i V4: memory with every slot filled

64 GB2 TB32 slots · 16 per processor · each tick = one DIMM

DL380 Gen11: drive bays

Front panel

12 × EDSFF NVMe at the front — 12 bays in total.

SAS/SATANVMeSAS/SATA + NVMe

SR650i V4: drive bays

Front panel

8 × 2.5" NVMe at the front — 8 bays in total.

SAS/SATANVMeSAS/SATA + NVMe

DL380 Gen11: power supplies

05001000150020002500800 W Platinum — HPE 800W Flex Slot Platinum Hot Plug Low Halogen Power Supply Kit; rated input 100-240 VAC (240 VDC China only); up to 94% efficiency.800Platinum1000 W Titanium — HPE 1000W Flex Slot Titanium Hot Plug Power Supply Kit; rated input 100-240 VAC (1097W @100VAC per Rated Steady-State table, 1000W @240VAC; 240 VDC China only); up to 96% efficiency.1000Titanium1600 W null — HPE 1600W Flex Slot -48VDC Hot Plug Power Supply Kit; -48 VDC input; requires 1600W -48VDC Power Cable Lug Kit (P36877-B21) or DC PSU Power Cable Kit; no efficiency rating or input range printed in Technical Specifications.1600DC1600 W Platinum — HPE 1600W Flex Slot Platinum Hot Plug Low Halogen Power Supply Kit; high line only 200-240 VAC (1600W @240VAC; 240 VDC China only); up to 94% efficiency; C-14 inlet with HPE Power Discovery Services support.1600Platinum2200 W Titanium — HPE 1800W-2200W Flex Slot Titanium Hot Plug Power Supply Kit; rated input 200-240 VAC; 1800W @200VAC, 1900W @208VAC, 2000W @220VAC, 2100W @230VAC, 2200W @240VAC; 96% efficient (EU Lot 9 note). DOC INCONSISTENCY: its option note says 'Flex Slot Platinum power supplies support power efficiency of up to 94%' although named Titanium and listed as 96% elsewhere.2200TitaniumWatts · dashed line = output at 100–120 V low line
AC−48 V DC

SR650i V4: power supplies

05001000150020002500300035003200 W Titanium — CRPS Premium; 230V only; C203200TitaniumWatts · dashed line = output at 100–120 V low line
AC
07 — Questions

DL380 Gen11 vs SR650i V4, answered

Is the DL380 Gen11 or the SR650i V4 the faster server?

Neither document publishes benchmark results, so this page compares what they do state. The DL380 Gen11 lists 66 processors up to 64 cores at 385 W; the SR650i V4 lists 1 up to 32 cores at 225 W. Fully populated that is 128 cores against 64.

Which holds more memory?

The DL380 Gen11 has 32 DIMM slots and a stated ceiling of 8.0 TB. The SR650i V4 has 32 and 512 GB as configured.

Which takes more drives?

DL380 Gen11: 36 bays across 13 documented layouts. SR650i V4: 8 across 1. Counts include rear and mid-chassis positions where the vendor documents them.

Can either take GPUs?

DL380 Gen11: up to 8 accelerators, 3 double-wide cards listed. SR650i V4: up to 2, 1 double-wide listed.

Do they share any processors?

No. The two documents list different processors, so a like-for-like processor build is not possible across these two.

Where these figures come from. DL380 Gen11: HPE ProLiant DL380 Gen11 QuickSpecs (Version 47 - 08-Sep-2026) (HPE document). SR650i V4: Lenovo ThinkSystem SR650a V4 and SR650i V4 Servers (August 27, 2026) (Lenovo document). Each claim on this page is derived from those documents, checked page by page on the two data sheets, and carries no pricing.

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