GPU Comparison

Select up to 2 GPUs to analyze their pricing, performance, and specifications side-by-side.

Workstation Verdict

Its memory bandwidth is 78% higher (768 GB/s vs 432 GB/s), translating directly to faster inference throughput. The RTX A5000 is $145 EUR cheaper than the RTX 4500 Ada Generation.

Maximum Capacity Reached. Remove a model to add another. (2/2)

VS
Price
€2,583
VRAM
24 GB GDDR6
Mem. Speed
432 GB/s
FP32 Compute
39.6 TFLOPS
Key Specs Advantage
+42% FP32 (TFLOPS) (39.6 TFLOPS vs 27.8 TFLOPS)
NVIDIA
RTX A5000
Price
€2,438
VRAM
24 GB GDDR6
Mem. Speed
768 GB/s
FP32 Compute
27.8 TFLOPS
Key Specs Advantage
+100% Memory Bus (384-bit vs 192-bit)
+78% Bandwidth (768 GB/s vs 432 GB/s)
+7% CUDA Cores (8,192 vs 7,680)

RTX 4500 Ada Generation vs RTX A5000: In-Depth Breakdown

Inference Speed: Memory Bandwidth

Memory bandwidth determines how quickly data is fed to the compute units — it's the main bottleneck for autoregressive inference (token generation in LLMs). The RTX A5000 delivers 768 GB/s versus 432 GB/s on the RTX 4500 Ada Generation, a 78% edge. For models already loaded into VRAM, token generation speed scales closely with this number: the RTX A5000 will produce tokens proportionally faster in bandwidth-bound workloads.

AI Training & Compute

For model training, scientific simulation, and rendering, FP32 throughput is the key metric. The RTX 4500 Ada Generation delivers 39.6 TFLOPS against 27.8 TFLOPS for the RTX A5000 — a 42% compute advantage. Training runs and heavy matrix operations will complete proportionally faster on the RTX 4500 Ada Generation.

Price & Value

The RTX A5000 lists from $2,438 EUR, $145 EUR less than the RTX 4500 Ada Generation at $2,583 EUR. For budget-constrained teams, the savings may outweigh the spec gap — especially if the smaller card covers your typical workload.

Which should you buy: RTX 4500 Ada Generation or RTX A5000?

Both cards serve similar workloads. Base your decision on whichever spec matters most: VRAM for model capacity, memory bandwidth for inference speed, and FP32 compute for training throughput.

Frequently Asked Questions

Can the RTX 4500 Ada Generation or RTX A5000 run large language models?

Yes — with 24GB of VRAM each, both support a similar range of models. Memory bandwidth and compute throughput then differentiate their performance.

Which is faster for LLM inference, the RTX 4500 Ada Generation or the RTX A5000?

The RTX A5000 is faster for token generation — its 768 GB/s memory bandwidth vs 432 GB/s on the RTX 4500 Ada Generation is the primary driver of inference throughput in autoregressive models.

Which is better for AI training?

The RTX 4500 Ada Generation has the advantage at 39.6 TFLOPS vs 27.8 TFLOPS, making training runs proportionally faster than on the RTX A5000.

Technical Specifications Comparison

Architecture & Cores

SpecificationRTX 4500 Ada GenerationRTX A5000
ArchitectureAda LovelaceAmpere
CUDA Cores (CUDA Cores / CUDA Cores)7,6808,192

Memory

SpecificationRTX 4500 Ada GenerationRTX A5000
VRAM Capacity24 GB24 GB
Memory TypeGDDR6GDDR6
Memory Bus192-bit384-bit
Bandwidth432 GB/s768 GB/s

Connectivity & Power

SpecificationRTX 4500 Ada GenerationRTX A5000
InterfacePCIe 4.0 x16PCIe 4.0 x16
TDP210 W230 W
ReleasedNov 2022Apr 2021

Workstation

SpecificationRTX 4500 Ada GenerationRTX A5000
FP32 (TFLOPS)39.6 TFLOPS27.8 TFLOPS
ECCYesYes
NVLinkNoYes
Form factordual-slotdual-slot