GPU Comparison

NVIDIA
GEFORCE

NVIDIA GeForce RTX 3050 OEM

CORE STATE GA106
VRAM 8 GB
CLOCK SPEED 1755 MHz
TDP 130 W
BUS WIDTH 128 bit
ARCHITECTURE Ampere
nm
PROCESS 8 nm
LAUNCH DATE 2022
VS
NVIDIA
GEFORCE

T600

CORE STATE TU117
VRAM 4 GB
CLOCK SPEED 1335 MHz
TDP 40 W
BUS WIDTH 128 bit
ARCHITECTURE Turing
nm
PROCESS 12 nm
LAUNCH DATE 2021

PERFORMANCE BENCHMARKS

geekbench_opencl
60,740
27,875
geekbench_vulkan
57,103
25,580
passmark_directx_10
61
32
passmark_directx_11
86
49
passmark_directx_12
58
25
passmark_directx_9
137
114
passmark_g2d
973
756
passmark_g3d
11,857
6,479
passmark_gpu_compute
5,779
2,402

Analysis: NVIDIA GeForce RTX 3050 OEM vs NVIDIA T600

During this graphics card showdown, NVIDIA RTX 3050 establishes its superiority obviously. Whether you're rendering at 1080p, NVIDIA RTX 3050 steadily outperforms NVIDIA NVIDIA T600 by considerable margins. This benchmark margin grows especially larger at higher settings. The graphics card handles intensive games with ease. Its design benefits are evident.

When it comes to real-time ray tracing, NVIDIA RTX 3050 pulls even more beyond of NVIDIA NVIDIA T600. The dedicated accelerators manage demanding lighting calculations considerably more efficiently. Users demanding next-gen fidelity will strongly choose NVIDIA RTX 3050. The ray tracing capability is significant. Next-gen releases continually take advantage of ray tracing technology.

In conclusion, NVIDIA RTX 3050 delivers the more capable choice in this matchup. Its performance leads warrant consideration for buyers building a high-performance gaming build. While NVIDIA NVIDIA T600 possesses its positives, this benchmark numbers definitely benefits NVIDIA RTX 3050. Form your conclusion considering this. The performance gap is significant enough to impact.

DETAILED SPECIFICATIONS

SPECIFICATION
RTX 3050 OEM
T600
Core Specs
Shading Units
2,304
640 -72.2%
Shaders
2,304
640 -72.2%
TMUs
72
40 -44.4%
ROPs
32
32 0.0%
SM Count
18
10 -44.4%
Clocks
Base Clock
1515 MHz
735 MHz
Boost Clock
1755 MHz
1335 MHz
Memory Clock
1750 MHz 14 Gbps effective
1250 MHz 10 Gbps effective
Memory
Memory Size
8 GB
4 GB
VRAM (MB)
8,192
4,096 -50.0%
Memory Type
GDDR6
GDDR6
Memory Bus
128 bit
128 bit
Bandwidth
224.0 GB/s
160.0 GB/s
Cache
L1 Cache
128 KB (per SM)
64 KB (per SM)
L2 Cache
2 MB
1024 KB
Performance
Pixel Rate
56.16 GPixel/s
42.72 GPixel/s
Texture Rate
126.4 GTexel/s
53.40 GTexel/s
FP32 (TFLOPS)
8.087 TFLOPS
1.709 TFLOPS
FP64 (TFLOPS)
126.4 GFLOPS (1:64)
53.40 GFLOPS (1:32)
FP16 (TFLOPS)
8.087 TFLOPS (1:1)
3.418 TFLOPS (2:1)
AI/RT
RT Cores
18
Tensor Cores
72
Power
TDP
130 W
40 W
TDP (W)
130
40 -69.2%
Suggested PSU
300 W
200 W
Power Connectors
1x 8-pin
None
Architecture
Architecture
Ampere
Turing
GPU Name
GA106
TU117
Generation
GeForce 30
Quadro Turing (Tx000)
Process Size
8 nm
12 nm
Transistors
12,000 million
4,700 million
Die Size
276 mm²
200 mm²
Foundry
Samsung
TSMC
Density
43.5M / mm²
23.5M / mm²
API Support
DirectX
12 Ultimate (12_2)
12 (12_1)
OpenGL
4.6
4.6
Vulkan
1.4
1.4
OpenCL
3.0
3.0
CUDA
8.6
7.5
Shader Model
6.8
6.8
Physical
Slot Width
Dual-slot
Single-slot
Length
242 mm 9.5 inches
Height
112 mm 4.4 inches
Outputs
1x HDMI 2.13x DisplayPort 1.4a
4x mini-DisplayPort 1.4a
Bus Interface
PCIe 4.0 x8
PCIe 3.0 x16
Other
Production
End-of-life
End-of-life
Predecessor
GeForce 20
Quadro Volta
Successor
GeForce 40
Workstation Ampere
View GeForce RTX 3050 OEM Details View T600 Details