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GPU Comparison
NVIDIA CMP 30HX vs AMD FireStream 9250
NVIDIA CMP 30HX vs AMD FireStream 9250
VS
NVIDIA CMP 30HX
AMD FireStream 9250
We compared two Desktop platform GPUs: 6GB VRAM CMP 30HX and 1024MB VRAM FireStream 9250 to see which GPU has better performance in key specifications, benchmark tests, power consumption, etc.
Main Differences
NVIDIA CMP 30HX 's Advantages
Released 12 years and 8 months late
Boost Clock1785MHz
More VRAM (6GB vs 1024GB)
Larger VRAM bandwidth (336.0GB/s vs 63.55GB/s)
608 additional rendering cores
Lower TDP (125W vs 150W)
Score
Benchmark
FP32 (float)
CMP 30HX
+402%
5.027 TFLOPS
FireStream 9250
1 TFLOPS
CMP 30HX
VS
FireStream 9250
Graphics Card
Feb 2021
Release Date
Jun 2008
Mining GPUs
Generation
FireStream
Desktop
Type
Desktop
PCIe 3.0 x4
Bus Interface
PCIe 2.0 x16
Clock Speeds
1530 MHz
Base Clock
-
1785 MHz
Boost Clock
-
1750 MHz
Memory Clock
993 MHz
Memory
6GB
Memory Size
1024MB
GDDR6
Memory Type
GDDR3
192bit
Memory Bus
256bit
336.0GB/s
Bandwidth
63.55GB/s
Render Config
-
Compute Units
10
22
SM Count
-
1408
Shading Units
800
88
TMUs
40
48
ROPs
16
-
-
-
-
-
-
64 KB (per SM)
L1 Cache
16 KB (per CU)
1536 KB
L2 Cache
256 KB
-
-
-
Theoretical Performance
85.68 GPixel/s
Pixel Rate
10.00 GPixel/s
157.1 GTexel/s
Texture Rate
25.00 GTexel/s
10.05 TFLOPS
FP16 (half)
-
5.027 TFLOPS
FP32 (float)
1000 GFLOPS
157.1 GFLOPS
FP64 (double)
200.0 GFLOPS
Board Design
125W
TDP
150W
300 W
Suggested PSU
450 W
No outputs
Outputs
1x DVI
1x 8-pin
Power Connectors
1x 6-pin
Graphics Processor
TU116
GPU Name
RV770
TU116-100-A1
GPU Variant
RV770 PRO
Turing
Architecture
TeraScale
TSMC
Foundry
TSMC
12 nm
Process Size
55 nm
6.6 billion
Transistors
0.956 billion
284 mm²
Die Size
256 mm²
Graphics Features
12 (12_1)
DirectX
10.1 (10_1)
4.6
OpenGL
3.3
3.0
OpenCL
1.1
1.3
Vulkan
N/A
7.5
CUDA
-
6.6
Shader Model
4.1
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4
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6
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7
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8
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9
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