GPU Comparison

NVIDIA
GEFORCE

NVIDIA CMP 30HX

CORE STATE TU116
VRAM 6 GB
CLOCK SPEED 1785 MHz
TDP 125 W
BUS WIDTH 192 bit
ARCHITECTURE Turing
nm
PROCESS 12 nm
LAUNCH DATE 2021
VS
NVIDIA
GEFORCE

GeForce RTX 5050 Mobile

CORE STATE GB207
VRAM 8 GB
CLOCK SPEED 1500 MHz
TDP 50 W
BUS WIDTH 128 bit
ARCHITECTURE Blackwell 2.0
nm
PROCESS 5 nm
LAUNCH DATE 2025

PERFORMANCE BENCHMARKS

geekbench_opencl
65,199
84,171
geekbench_vulkan
62,484
N/A
3dmark_3dmark_steel_nomad_dx12
N/A
2,365

Analysis: NVIDIA CMP 30HX vs NVIDIA GeForce RTX 5050 Mobile

If analyzing NVIDIA RTX 5050 GPU against NVIDIA CMP 30HX (NVIDIA), a frame rate gap turns clearly visible. NVIDIA RTX 5050 GPU claims the lead in nearly all scenario we performed. This gap is substantial sufficiently to change practical rendering results. Enthusiasts will feel smoother visuals. The determination is evident.

The graphics memory benefit of NVIDIA RTX 5050 GPU grows progressively relevant at elevated detail settings. Ultra HD workloads consumes considerable video memory, and NVIDIA RTX 5050 GPU offers more headroom. This leads into better experiences in heavy workloads. Upcoming software can continually need extra memory. The superiority widens over releases.

This memory superiority of NVIDIA RTX 5050 GPU gets increasingly significant at higher resolutions. Demanding workloads consumes considerable graphics memory, and NVIDIA RTX 5050 GPU provides additional capability. The translates into enhanced frame rates in heavy scenarios. Next-gen releases will increasingly consume greater graphics memory. The edge widens over the years.

For those considering a acquisition decision, NVIDIA RTX 5050 GPU appears as the advised pick. Its consistent frame rate advantage over NVIDIA CMP 30HX (NVIDIA) positions it the better choice for gaming-focused users. Weigh your personal needs, however this benchmarks leads toward NVIDIA RTX 5050 GPU. Make an informed decision. This benchmark gap is significant and notable.

DETAILED SPECIFICATIONS

SPECIFICATION
CMP 30HX
RTX 5050 Mobile
Core Specs
Shading Units
1,408
2,560 +81.8%
Shaders
1,408
2,560 +81.8%
TMUs
88
80 -9.1%
ROPs
48
32 -33.3%
SM Count
22
20 -9.1%
Clocks
Base Clock
1530 MHz
1020 MHz
Boost Clock
1785 MHz
1500 MHz
Memory Clock
1750 MHz 14 Gbps effective
1500 MHz 24 Gbps effective
Memory
Memory Size
6 GB
8 GB
VRAM (MB)
6,144
8,192 +33.3%
Memory Type
GDDR6
GDDR7
Memory Bus
192 bit
128 bit
Bandwidth
336.0 GB/s
384.0 GB/s
Cache
L1 Cache
64 KB (per SM)
128 KB (per SM)
L2 Cache
1536 KB
32 MB
Performance
Pixel Rate
85.68 GPixel/s
48.00 GPixel/s
Texture Rate
157.1 GTexel/s
120.0 GTexel/s
FP32 (TFLOPS)
5.027 TFLOPS
7.680 TFLOPS
FP64 (TFLOPS)
157.1 GFLOPS (1:32)
120.0 GFLOPS (1:64)
FP16 (TFLOPS)
10.05 TFLOPS (2:1)
7.680 TFLOPS (1:1)
AI/RT
RT Cores
20
Tensor Cores
80
Power
TDP
125 W
50 W
TDP (W)
125
50 -60.0%
Suggested PSU
300 W
Power Connectors
1x 8-pin
None
Architecture
Architecture
Turing
Blackwell 2.0
GPU Name
TU116
GB207
Generation
Mining GPUs
GeForce 50 Mobile
Process Size
12 nm
5 nm
Transistors
6,600 million
16,900 million
Die Size
284 mm²
149 mm²
Foundry
TSMC
TSMC
Density
23.2M / mm²
113.4M / mm²
API Support
DirectX
12 (12_1)
12 Ultimate (12_2)
OpenGL
4.6
4.6
Vulkan
1.4
1.4
OpenCL
3.0
3.0
CUDA
7.5
12.0
Shader Model
6.8
6.8
Physical
Slot Width
Dual-slot
IGP
Length
229 mm 9 inches
Height
111 mm 4.4 inches
Outputs
No outputs
Portable Device Dependent
Bus Interface
PCIe 1.0 x4
PCIe 5.0 x16
Other
Launch Price
799 USD
Production
End-of-life
Active
Predecessor
GeForce 40 Mobile
View CMP 30HX Details View GeForce RTX 5050 Mobile Details