Home GPU Comparison NVIDIA RTX A6000 vs NVIDIA RTX A500 Embedded

NVIDIA RTX A6000 vs NVIDIA RTX A500 Embedded

We compared two Professional market GPUs: 48GB VRAM RTX A6000 and 4GB VRAM RTX A500 Embedded to see which GPU has better performance in key specifications, benchmark tests, power consumption, etc.

Main Differences

NVIDIA RTX A6000 's Advantages
Boost Clock has increased by 35% (1800MHz vs 1335MHz)
More VRAM (48GB vs 4GB)
Larger VRAM bandwidth (768.0GB/s vs 96.00GB/s)
8704 additional rendering cores
NVIDIA RTX A500 Embedded 's Advantages
Released 1 years and 5 months late
Lower TDP (20W vs 300W)

Score

Benchmark

FP32 (float)
RTX A6000 +607%
38.71 TFLOPS
RTX A500 Embedded
5.468 TFLOPS
VS

Graphics Card

Oct 2020
Release Date
Mar 2022
Quadro Ampere
Generation
Quadro Ampere-M
Professional
Type
Professional
PCIe 4.0 x16
Bus Interface
PCIe 4.0 x8

Clock Speeds

1410 MHz
Base Clock
435 MHz
1800 MHz
Boost Clock
1335 MHz
2000 MHz
Memory Clock
1500 MHz

Memory

48GB
Memory Size
4GB
GDDR6
Memory Type
GDDR6
384bit
Memory Bus
64bit
768.0GB/s
Bandwidth
96.00GB/s

Render Config

84
SM Count
16
-
Compute Units
-
10752
Shading Units
2048
336
TMUs
64
112
ROPs
32
336
Tensor Cores
64
84
RT Cores
16
128 KB (per SM)
L1 Cache
128 KB (per SM)
6 MB
L2 Cache
2 MB

Theoretical Performance

201.6 GPixel/s
Pixel Rate
42.72 GPixel/s
604.8 GTexel/s
Texture Rate
85.44 GTexel/s
38.71 TFLOPS
FP16 (half)
5.468 TFLOPS
38.71 TFLOPS
FP32 (float)
5.468 TFLOPS
604.8 GFLOPS
FP64 (double)
85.44 GFLOPS

Graphics Processor

GA102
GPU Name
GA107S
-
GPU Variant
-
Ampere
Architecture
Ampere
Samsung
Foundry
Samsung
8 nm
Process Size
8 nm
28.3 billion
Transistors
8.7 billion
628 mm²
Die Size
200 mm²

Board Design

300W
TDP
20W
700 W
Suggested PSU
-
4x DisplayPort 1.4a
Outputs
Portable Device Dependent
8-pin EPS
Power Connectors
None

Graphics Features

12 Ultimate (12_2)
DirectX
12 Ultimate (12_2)
4.6
OpenGL
4.6
3.0
OpenCL
3.0
1.3
Vulkan
1.3
8.6
CUDA
8.6
6.7
Shader Model
6.7

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