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Contributed byMario AlkaQwen (Alibaba)

Qwen2.5-72B-Instruct

Performance benchmark · measured on 20.07.2026 14:56

Benchmark-IDrun-20260722-165903-3f4244
Dense72BRuntime: godclaw
Generation2,28tok/s
Prefill80,82tok/s
Time to First Token569,00ms
Total duration51,82s
Concurrency1parallel
Ranking in the field
1059of 1161 systems

Performance benchmark · Primary metric: Generation-Speed (tok/s) · 1× concurrent

This run is better than 9 % of all comparable systems.
Generation 2,3 tok/s
-97 % vs Ø 74,3
Prefill 80,8 tok/s
-97 % vs Ø 2.324,7
Time to First Token 569 ms
-98 % vs Ø 35.657
Distribution in the field0 – 405 tok/s
Ø 74 Median Dieser Lauf

Wie schlägt sich dieser Benchmark mit anderen Modellen?

How does this benchmark compare on other GPUs?

Same model on different hardware · 1× concurrent · Generation (tok/s)

Hardware

GPU: Keine GPU (CPU-only)
CPU: 51x Intel(R) Xeon(R) CPU E5-4620 v2 @ 2.60GHz
RAM: 504 GB
Mainboard: Dell Inc. PowerEdge R820

Setup

Runtime: godclaw
Quantization: -
Operating system: Ubuntu 24.04.3 LTS (Kernel 7.0.0-28-generic)
Model: Qwen2.5-72B-Instruct

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Model comparison

Qwen2.5-72B-Instruct on various hardware

All published performance runs of this model – each bubble a variant: position = prefill (X) × generation (Y), bubble size = number of runs. Closer to the top right = faster. ★ Marked gold = this benchmark.

GPUby graphics card

31123315577,60,009391.8782.818Prefill (tok/s)Generation (tok/s)NVIDIA RTX PRO 6000 Blackwell Workstation Edition - 239,2 tok/s Generation, 2.275 tok/s Prefill, TTFT 19.196 ms (3 Laufe)NVIDIA RTX PRO 6000 B...NVIDIA RTX PRO 6000 Blackwell Max-Q Workstation Edition - 203,8 tok/s Generation, 2.269 tok/s Prefill, TTFT 23.754 ms (9 Laufe)NVIDIA RTX PRO 6000 B...NVIDIA GeForce RTX 5070 Ti - 5,8 tok/s Generation, 159 tok/s Prefill, TTFT 42.383 ms (3 Laufe)NVIDIA GeForce RTX 50...NVIDIA GeForce RTX 3090 Ti - 4,9 tok/s Generation, 209 tok/s Prefill, TTFT 31.676 ms (3 Laufe)NVIDIA GeForce RTX 30...NVIDIA GeForce RTX 5090 - 3,0 tok/s Generation, 147 tok/s Prefill, TTFT 42.799 ms (3 Laufe)NVIDIA GeForce RTX 50...AMD Radeon AI PRO R9700 - 1,8 tok/s Generation, 19 tok/s Prefill, TTFT 300.177 ms (9 Laufe)AMD Radeon AI PRO R97...CPU-only - 2,3 tok/s Generation, 81 tok/s Prefill, TTFT 569 ms (2 Laufe) | DIESER LAUF★ CPU-only
NVIDIA RTX PRO 6000 Blackwell Workstation Edition 239,2 tok/sNVIDIA RTX PRO 6000 Blackwell Max-Q Workstation Edition 203,8 tok/sNVIDIA GeForce RTX 5070 Ti 5,8 tok/sNVIDIA GeForce RTX 3090 Ti 4,9 tok/sNVIDIA GeForce RTX 5090 3,0 tok/s★ CPU-only 2,3 tok/s this runAMD Radeon AI PRO R9700 1,8 tok/s

CPUby processor

31123315577,60,009391.8782.818Prefill (tok/s)Generation (tok/s)AMD Ryzen 9 9950X 16-Core Processor - 239,2 tok/s Generation, 2.275 tok/s Prefill, TTFT 19.196 ms (3 Laufe)AMD Ryzen 9 9950X 16-...AMD Ryzen Threadripper PRO 9965WX 24-Cores - 203,8 tok/s Generation, 2.269 tok/s Prefill, TTFT 23.754 ms (9 Laufe)AMD Ryzen Threadrippe...AMD Ryzen Threadripper PRO 5975WX 32-Cores - 5,8 tok/s Generation, 159 tok/s Prefill, TTFT 42.383 ms (3 Laufe)AMD Ryzen Threadrippe...AMD Ryzen 9 8945HX with Radeon Graphics - 4,9 tok/s Generation, 209 tok/s Prefill, TTFT 31.676 ms (3 Laufe)AMD Ryzen 9 8945HX wi...AMD Ryzen 7 5800X3D 8-Core Processor - 3,0 tok/s Generation, 147 tok/s Prefill, TTFT 42.799 ms (3 Laufe)AMD Ryzen 7 5800X3D 8...Intel(R) Xeon(R) CPU E5-4657L v2 @ 2.40GHz - 2,3 tok/s Generation, 81 tok/s Prefill, TTFT 569 ms (1 Lauf)Intel(R) Xeon(R) CPU ...AMD Ryzen Threadripper PRO 7955WX 16-Cores - 1,8 tok/s Generation, 19 tok/s Prefill, TTFT 300.177 ms (9 Laufe)AMD Ryzen Threadrippe...Intel(R) Xeon(R) CPU E5-4620 v2 @ 2.60GHz - 2,3 tok/s Generation, 81 tok/s Prefill, TTFT 569 ms (1 Lauf) | DIESER LAUF★ Intel(R) Xeon(R) CPU ...
AMD Ryzen 9 9950X 16-Core Processor 239,2 tok/sAMD Ryzen Threadripper PRO 9965WX 24-Cores 203,8 tok/sAMD Ryzen Threadripper PRO 5975WX 32-Cores 5,8 tok/sAMD Ryzen 9 8945HX with Radeon Graphics 4,9 tok/sAMD Ryzen 7 5800X3D 8-Core Processor 3,0 tok/s★ Intel(R) Xeon(R) CPU E5-4620 v2 @ 2.60GHz 2,3 tok/s this runIntel(R) Xeon(R) CPU E5-4657L v2 @ 2.40GHz 2,3 tok/sAMD Ryzen Threadripper PRO 7955WX 16-Cores 1,8 tok/s

MBby mainboard

31023315577,60,009361.8712.807Prefill (tok/s)Generation (tok/s)ASUSTeK COMPUTER INC. ProArt X870E-CREATOR WIFI - 239,2 tok/s Generation, 2.275 tok/s Prefill, TTFT 19.196 ms (3 Laufe)ASUSTeK COMPUTER INC....ASUSTeK COMPUTER INC. Pro WS WRX90E-SAGE SE - 203,8 tok/s Generation, 1.144 tok/s Prefill, TTFT 161.966 ms (18 Laufe)ASUSTeK COMPUTER INC....ASUSTeK COMPUTER INC. Pro WS WRX80E-SAGE SE WIFI - 5,8 tok/s Generation, 159 tok/s Prefill, TTFT 42.383 ms (3 Laufe)ASUSTeK COMPUTER INC....Meigao Innovation Technology (Shen Zhen) Co., Ltd DRFXL (MotherBoard Series) - 4,9 tok/s Generation, 209 tok/s Prefill, TTFT 31.676 ms (3 Laufe)Meigao Innovation Tec...ASUSTeK COMPUTER INC. ROG STRIX B550-A GAMING - 3,0 tok/s Generation, 147 tok/s Prefill, TTFT 42.799 ms (3 Laufe)ASUSTeK COMPUTER INC....Dell Inc. PowerEdge R820 - 2,3 tok/s Generation, 81 tok/s Prefill, TTFT 569 ms (2 Laufe) | DIESER LAUF★ Dell Inc. PowerEdge R...
ASUSTeK COMPUTER INC. ProArt X870E-CREATOR WIFI 239,2 tok/sASUSTeK COMPUTER INC. Pro WS WRX90E-SAGE SE 203,8 tok/sASUSTeK COMPUTER INC. Pro WS WRX80E-SAGE SE WIFI 5,8 tok/sMeigao Innovation Technology (Shen Zhen) Co., Ltd DRFXL (MotherBoard Series) 4,9 tok/sASUSTeK COMPUTER INC. ROG STRIX B550-A GAMING 3,0 tok/s★ Dell Inc. PowerEdge R820 2,3 tok/s this run

ENGby engine

31023315577,60,003827651.147Prefill (tok/s)Generation (tok/s)llama.cpp - 239,2 tok/s Generation, 937 tok/s Prefill, TTFT 107.229 ms (31 Laufe)llama.cppunbekannt - 2,3 tok/s Generation, 81 tok/s Prefill, TTFT 569 ms (1 Lauf)unbekannt
llama.cpp 239,2 tok/sunbekannt 2,3 tok/s

DRVby driver

263251239227215856892928965Prefill (tok/s)Generation (tok/s)unbekannt - 239,2 tok/s Generation, 910 tok/s Prefill, TTFT 103.896 ms (32 Laufe)unbekannt
unbekannt 239,2 tok/s
💰 Economics

Economics of this run

Operating cost, TCO and comparison with the next-best runs of the same model at identical concurrency (1× concurrent). Methodology →

⚙️ ConfigurationAll metrics and charts below follow these settings – based on a 24-month runtime.Save to URLReset
⚡ Electricity price EUR/kWh
⚙️ System utilization 100 %
🖥️ Acquisition EUR
🔌 Idle 35 W
⚡ TDP 105 W
☁️ External LLM (API)
Electricity0.30 EUR/kWh
Avg power (incl. idle)105 W estimated (TDP)CPU 95 + Board 10 W full load
Avg cost / hourEUR 0.032
Electricity / 1M tokensEUR 3.84
Token / kWh78.17K
Acquisition (system)EUR 2,175 partial priceCPU EUR 39 · RAM EUR 2,016 · PSU EUR 120
Electricity (2 years)
TCO (2 years)EUR 2,727
Output tokens (2 years)143.80M
☁️ External LLM (API) – comparison
External LLM cost (2 years)
Savings vs. external (2 years)

All values above and the charts below take the configured system utilization into account: at X% the system generates only X% of the time, the rest it idles (35 W). Cost per hour drops (more idle), cost per token rises.

Cost over 2 years – electricity only

Cost over 2 years – incl. acquisition (TCO)

Speed vs. tokens per euro

Euro per 1M tokens

Comparison vs. API – economics per benchmark

Qwen2.5-72B-InstructKeine GPU (CPU-only)Qwen2.5-72B-InstructNVIDIA RTX PRO 6000 Blackwell Workstation EditionQwen2.5-72B-Instruct3x NVIDIA RTX PRO 6000 Blackwell Max-Q Workstation EditionQwen2.5-72B-Instruct3x NVIDIA RTX PRO 6000 Blackwell Max-Q Workstation Edition
Electricity cost (24 mo.)
Acquisition cost
Total cost (TCO)
Generated tokens (24 mo.)
Token price via API
Break-even point (days)
Result (savings / extra cost)

Comparison with up to 3 next-best runs of this model at the same concurrency (at least one on different hardware). Power = GPU TDP + CPU (idle + 15 %) + board (estimated), acquisition = full system (GPU + CPU + board + RAM + PSU), prices = stored market prices.

Contributed by

Mario Alka Administrator

@marioalka

Ich bin Unternehmer, Softwareentwickler und KI-Enthusiast. Seit vielen Jahren entwickle ich Unternehmenssoftware und beschäftige mich inzwischen fast täglich mit lokalen LLMs, KI-Agenten und leistungsfähiger KI-Hardware.

Mit LLM-Benchmark.de möchte ich eine Plattform schaffen, auf der Modelle, GPUs und Agenten objektiv und reproduzierbar miteinander verglichen werden.