NVIDIA GeForce 610M vs NVIDIA GeForce RTX 2070 SUPER Max-Q

VS
Performance
GeForce 610M
507.50% of 104,598
GeForce RTX 2070 SUPER Max-Q5,363% better
27,72427% of 104,598

The GeForce RTX 2070 SUPER Max-Q has 5,363% better performance than the GeForce 610M for the 3DMark 11 Performance GPU benchmark.

Performance per dollar
GeForce 610M
No data available
GeForce RTX 2070 SUPER Max-Q
No data available

We do not have any performance per dollar data for the GeForce 610M and the GeForce RTX 2070 SUPER Max-Q for the 3DMark 11 Performance GPU benchmark.

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Summary

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About the NVIDIA GeForce 610M GPU

The NVIDIA GeForce 610M is an end-of-life mobile graphics card that released in Q4 2011. It is built on the Fermi GPU microarchitecture (codename GF108) and is manufactured on a 40 nm process.

Memory

The 610M has 1,024 MB of DDR3 memory, with a 800 MHz memory clock and a 64 bit interface. This gives it a memory bandwidth of 12.8 Gb/s, which affects how fast it can transfer data to and from memory. GPU memory stores temporary data that helps the GPU with complex math and graphics operations. More memory is generally better, as not having enough can cause performance bottlenecks.

Cores and Clock Speeds

The 610M includes 48 CUDA cores, the processing units for handling parallel computing tasks. The GPU operates at a core clock speed of 672 MHz and can dynamically boost its clock speed up to 900 MHz. Complementing the processing units are 8 texture mapping units (TMUs) for efficient texture filtering and 2 render output units (ROPs) for pixel processing.

Compatibility & Power Consumption

The GPU has a thermal design power (TDP) of 12 W. A power supply not strong enough to handle this might result in system crashes and potentially damage your hardware.

Benchmark Performance

The 610M has the 515th best 3DMark 11 Performance GPU score among the 543 benchmarked GPUs in our database. It achieves 0.49% of the performance of the best benchmarked GPU, the NVIDIA GeForce RTX 4090.

About the NVIDIA GeForce RTX 2070 SUPER Max-Q GPU

The NVIDIA GeForce RTX 2070 SUPER Max-Q is a mobile graphics card that launched in Q2 2020. It is built on the Turing GPU microarchitecture (codename TU104) and is manufactured on a 12 nm process.

Memory

The RTX 2070 SUPER Max-Q has 8 GB of GDDR6 memory, with a 1,375 MHz memory clock and a 256 bit interface. This gives it a memory bandwidth of 352 Gb/s, which affects how fast it can transfer data to and from memory. GPU memory stores temporary data that helps the GPU with complex math and graphics operations. More memory is generally better, as not having enough can cause performance bottlenecks.

Cores and Clock Speeds

The RTX 2070 SUPER Max-Q includes 2,560 CUDA cores, the processing units for handling parallel computing tasks. The GPU operates at a core clock speed of 930 MHz and can dynamically boost its clock speed up to 1,155 MHz. Complementing the processing units are 160 texture mapping units (TMUs) for efficient texture filtering and 64 render output units (ROPs) for pixel processing. Additionally, the GPU features 320 tensor cores optimized for AI-accelerated workloads and 40 RT cores dedicated to real-time ray tracing calculations.

Compatibility & Power Consumption

The GPU has a thermal design power (TDP) of 80 W. A power supply not strong enough to handle this might result in system crashes and potentially damage your hardware.

Benchmark Performance

The RTX 2070 SUPER Max-Q has the 85th best 3DMark 11 Performance GPU score among the 543 benchmarked GPUs in our database. It achieves 26.51% of the performance of the best benchmarked GPU, the NVIDIA GeForce RTX 4090.

General Info

General overview of the GPU, including details like its manufacturer, release date, launch price, and current production status.

InfoGeForce 610MGeForce RTX 2070 SUPER Max-Q
ManufacturerNVIDIANVIDIA
ArchitectureFermiTuring
Market SegmentMobileMobile
Release DateQ4 2011Q2 2020
Production StatusEnd-of-lifeActive
ShopCheck PriceCheck Price

Gaming Performance

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Select a game to compare FPS metrics

Display FPS for Cyberpunk 2077 (1.0)
Cyberpunk 2077 (1.0)
Display FPS for Call of Duty: Black Ops Cold War
Call of Duty: Black Ops Cold War
Display FPS for Yakuza: Like a Dragon
Yakuza: Like a Dragon
Display FPS for Assassin's Creed Valhalla
Assassin's Creed Valhalla
Display FPS for DIRT 5
DIRT 5
Display FPS for Watch Dogs: Legion
Watch Dogs: Legion
Display FPS for Serious Sam 4
Serious Sam 4

FPS Benchmarks

This table showcases the average frame rate (FPS) achieved both GPUs in at various resolutions. Frame rate is a crucial indicator of how smoothly the GPU can run the game. A higher FPS generally translates to a smoother gameplay experience.

  • Frames Per Second
FPS data for Cyberpunk 2077 (1.0)
Cyberpunk 2077 (1.0)
GeForce 610MGeForce RTX 2070 SUPER Max-Q
Low - 720p
--
118 FPS
Medium - 1080p
--
68 FPS
High - 1080p
--
57 FPS
Ultra - 1080p
--
49 FPS
QHD - 1440p
--
--
4K UHD - 2160p
--
--
FPS Source: Notebookcheck

Compare Frames Per Second (FPS)

The average frame rate (FPS) in can be compared to similar GPUs to assess relative performance. Generally, higher FPS results in a smoother gameplay experience.

Choose Baseline GPU:GeForce 610M orGeForce RTX 2070 SUPER Max-Q

Compare Cost Per Frame

The average cost per frame in can be compared to similar GPUs to assess relative value. Generally, a lower cost per frame implies better value for your money.

Choose Baseline GPU:GeForce 610M orGeForce RTX 2070 SUPER Max-Q
GPUCost Per Frame
Our database does not have enough data to compare the FPS per dollar with other GPUs.

Benchmark Performance

#
Performance
GeForce 610M
507.50% of 104,598
GeForce RTX 2070 SUPER Max-Q5,363% better
27,72427% of 104,598

The GeForce RTX 2070 SUPER Max-Q has 5,363% better performance than the GeForce 610M for the 3DMark 11 Performance GPU benchmark.

The GeForce 610M is ranked 515th with a score of 507.5, and the GeForce RTX 2070 SUPER Max-Q is ranked 85th with a score of 27,724.

Performance per dollar
GeForce 610M
No data available
GeForce RTX 2070 SUPER Max-Q
No data available

We do not have any performance per dollar data for the GeForce 610M and the GeForce RTX 2070 SUPER Max-Q for the 3DMark 11 Performance GPU benchmark.

Relative Performance

The average score in the benchmark test can be compared to similar GPUs to assess relative performance. Generally, powerful GPUs tend to have higher scores.

Choose Baseline GPU:GeForce 610M or

Relative Value For Money

The average performance per dollar in the benchmark test can be compared to similar GPUs to assess relative value. A higher score implies a better value for your money.

Choose Baseline GPU:GeForce 610M orGeForce RTX 2070 SUPER Max-Q
GPUPerformance Per Dollar
Our database does not have enough data to compare the benchmark performance per dollar with other GPUs.

Benchmark Scores

This table showcases the average performance scores achieved by both GPUs across industry-standard benchmark tests. These scores provide a valuable insight into overall performance. Powerful GPUs tend to have higher scores.

  • Popular
BenchmarkGeForce 610MGeForce RTX 2070 SUPER Max-Q
3DMark Time Spy Graphics
--
7,373.5
3DMark Time Spy Score
--
7,611.5
3DMark Cloud Gate Graphics
--
126,747
3DMark Fire Strike Standard Graphics
--
20,872.5
3DMark 11 Performance Score
582
23,755.5
(+3,981.7%)
Cinebench R15 OpenGL 64 Bit
--
138
PassMark G3D Mark
290
13,725
(+4,632.76%)
PassMark G2D Mark
110
610
(+454.55%)
Benchmarks Source: Notebookcheck

Technical Specs

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Graphics Processor

General information about the graphics processing unit like their architecture, manufacturing process size, and transistor count. Newer GPU architectures generally bring efficiency improvements and may introduce technologies that enhance graphical capabilities.

SpecGeForce 610MGeForce RTX 2070 SUPER Max-Q
CodenameGF108TU104
ArchitectureFermiTuring
Process Size40 nm12 nm
Transistors585 million13,600 million

Memory Details

Memory specifications like their capacity, bandwidth, and clock speeds. GPU memory stores graphics data like frames, textures, and shadows which helps display rendered images. These specs are crucial for graphics-intense applications like gaming and 3D modeling.

SpecGeForce 610MGeForce RTX 2070 SUPER Max-Q
Memory Size1,024 MB8 GB
Memory TypeDDR3GDDR6
Memory Bandwidth12.8 Gb/s352 Gb/s
Memory Clock800 MHz1,375 MHz
Memory Interface64 bit256 bit
L1 Cache64 KB64 KB
L2 Cache128 KB4 MB

Board Compatibility

Compatibility information like their slot size, bus interface, power consumption, and display support. These specs are useful for verifying compatibility with your motherboard, power supply, and monitor.

SpecGeForce 610MGeForce RTX 2070 SUPER Max-Q
Bus InterfacePCIe 2.0 x16PCIe 3.0 x16
Thermal Design Power (TDP)12 W80 W
OutputsDevice DependentDevice Dependent

Cores & Clock Speeds

Processing power information like its cores and clock speed. These specs impact how fast they can process graphics. Each type of core or component serves a specific computational purpose.

SpecGeForce 610MGeForce RTX 2070 SUPER Max-Q
CUDA Cores482,560
Stream Multiprocessors (SM)140
Texture Mapping Units (TMU)8160
Render Output Units (ROP)264
Tensor Cores--320
Ray Tracing Cores--40
Core Clock Speed672 MHz930 MHz
Core Clock Speed (Boost)900 MHz1,155 MHz

Theoretical Performance

Theoretical performance numbers derived from the raw specifications of the different components like core count and clock speeds. While these provide a glimpse into peak processing power, they do not represent real-world performance.

SpecGeForce 610MGeForce RTX 2070 SUPER Max-Q
Pixel Fill Rate1.34 GPixel/s73.92 GPixel/s
Texture Fill Rate5.38 GTexel/s184.8 GTexel/s
FP32 Performance129 GFLOPS5.91 TFLOPS
FP64 Performance10.75 GFLOPS184.8 GFLOPS

API Support

Graphics API versions supported by these graphics cards. APIs evolve over time, introducing new features and functionalities. Older GPUs may not support recent versions.

SpecGeForce 610MGeForce RTX 2070 SUPER Max-Q
DirectX12 (11_0)12 Ultimate (12_2)
OpenCL1.13.0
OpenGL4.64.6
Shader Model5.16.8

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* Performance rating, performance per dollar, and rankings are based on the 3DMark 11 Performance GPU benchmark and MSRP.