Recommended System Requirements | ||
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Game | GeForce GTX 2050 | GeForce GTX 1070 Zotac AMP! |
Hitman 3 | 97% | 4% |
Cyberpunk 2077 | 52% | 27% |
Assassins Creed: Valhalla | 39% | 33% |
FIFA 21 | 23% | 63% |
Grand Theft Auto VI | 113% | 3% |
Call of Duty: Black Ops Cold War | 34% | 35% |
Resident Evil 8 | 52% | 27% |
Genshin Impact | 52% | 27% |
Far Cry 6 | 119% | 6% |
The Medium | 89% | 8% |
In terms of overall gaming performance, the graphical capabilities of the Nvidia GeForce GTX 1070 Zotac AMP! are massively better than the Nvidia GeForce GTX 2050.
The GTX 1070 has a 253 MHz higher core clock speed and 80 more Texture Mapping Units than the GeForce GTX 2050. This results in the GTX 1070 providing 138.6 GTexel/s better texturing performance. This still holds weight but shader performance is generally more relevant, particularly since both of these GPUs support at least DirectX 10.
The GTX 1070 has a 253 MHz higher core clock speed and 32 more Render Output Units than the GeForce GTX 2050. This results in the GTX 1070 providing 59.5 GPixel/s better pixeling performance. However, both GPUs support DirectX 9 or above, and pixeling performance is only really relevant when comparing older cards.
The GTX 1070 was released over three years more recently than the GeForce GTX 2050, and so the GTX 1070 is likely to have far better driver support, meaning it will be much more optimized and ultimately superior to the GeForce GTX 2050 when running the latest games.
Both GPUs exhibit very powerful performance, so it probably isn't worth upgrading from one to the other, as both are capable of running even the most demanding games at the highest settings.
The GTX 1070 has 4096 MB more video memory than the GeForce GTX 2050, so is likely to be much better at displaying game textures at higher resolutions. This is supported by the fact that the GTX 1070 also has superior memory performance overall.
The GTX 1070 has 144.2 GB/sec greater memory bandwidth than the GeForce GTX 2050, which means that the memory performance of the GTX 1070 is massively better than the GeForce GTX 2050.
The GeForce GTX 2050 has 640 Shader Processing Units and the GeForce GTX 1070 Zotac AMP! has 1920. However, the actual shader performance of the GeForce GTX 2050 is 931 and the actual shader performance of the GTX 1070 is 4658. The GTX 1070 having 3727 better shader performance and an altogether better performance when taking into account other relevant data means that the GTX 1070 delivers a massively smoother and more efficient experience when processing graphical data than the GeForce GTX 2050.
The GeForce GTX 2050 transistor size technology is 2 nm (nanometers) smaller than the GTX 1070. This means that the GeForce GTX 2050 is expected to run very slightly cooler and achieve higher clock frequencies than the GTX 1070.
The GeForce GTX 2050 requires 75 Watts to run and the GeForce GTX 1070 Zotac AMP! requires 220 Watts. We would recommend a PSU with at least 300 Watts for the GeForce GTX 2050 and a PSU with at least 500 Watts for the GTX 1070. The GTX 1070 requires 145 Watts more than the GeForce GTX 2050 to run. The difference is significant enough that the GTX 1070 may have an adverse affect on your yearly electricity bills in comparison to the GeForce GTX 2050.
Core Speed | 1354 MHz | vs | ![]() | 1607 MHz | |
---|---|---|---|---|---|
Boost Clock | 1455 MHz | vs | ![]() | 1797 MHz | |
Architecture | Turing T107 | Pascal P104-200-A1 | |||
OC Potential | - | vs | - | ||
Driver Support | - | vs | Great | ||
Release Date | 30 Nov -0001 | vs | ![]() | 10 Jun 2016 | |
GPU Link | GD Link | GD Link | |||
Approved | ![]() | ![]() | |||
Comparison |
1366x768 | 10
|
![]() |
vs | ![]() |
10
|
---|---|---|---|---|---|
1600x900 | 10
|
![]() |
vs | ![]() |
10
|
1920x1080 | 8.6
|
vs | ![]() |
10
|
|
2560x1440 | 6.3
|
vs | ![]() |
9.2
|
|
3840x2160 | 4.7
|
vs | ![]() |
7.2
|
Memory | 4096 MB | vs | ![]() | 8192 MB | |
---|---|---|---|---|---|
Memory Speed | 1752 MHz | vs | ![]() | 2002 MHz | |
Memory Bus | 128 Bit | vs | ![]() | 256 Bit | |
Memory Type | GDDR5 | ![]() | vs | ![]() | GDDR5 |
Memory Bandwidth | 112.1GB/sec | vs | ![]() | 256.3GB/sec | |
L2 Cache | 0 KB | vs | ![]() |
2048 KB | |
Delta Color Compression | no | vs | yes | ||
Memory Performance | 0% | ![]() |
vs | ![]() |
0% |
Comparison |
Shader Processing Units | 640 | vs | ![]() | 1920 | |
---|---|---|---|---|---|
Actual Shader Performance | 45% | vs | ![]() | 100% | |
Technology | 14nm | ![]() | vs | 16nm | |
Texture Mapping Units | 40 | vs | ![]() | 120 | |
Texture Rate | 54.2 GTexel/s | vs | ![]() | 192.8 GTexel/s | |
Render Output Units | 32 | vs | ![]() | 64 | |
Pixel Rate | 43.3 GPixel/s | vs | ![]() | 102.8 GPixel/s | |
Comparison |
Max Digital Resolution (WxH) | 7680x4320 | ![]() | vs | ![]() | 7680x4320 |
---|---|---|---|---|---|
VGA Connections | 0 | vs | 0 | ||
DVI Connections | 1 | ![]() | vs | ![]() | 1 |
HDMI Connections | 1 | ![]() | vs | ![]() | 1 |
DisplayPort Connections | 1 | vs | ![]() | 3 | |
Comparison |
Max Power | 75 Watts | ![]() | vs | 220 Watts | |
---|---|---|---|---|---|
Recommended PSU | 300 Watts & 27 Amps | ![]() | vs | 500 Watts & 33 Amps |
DirectX | 12.1 | ![]() | vs | ![]() | 12.1 |
---|---|---|---|---|---|
Shader Model | 5 | ![]() | vs | ![]() | 5.0 |
Open GL | 4.5 | ![]() | vs | ![]() | 4.5 |
Open CL | - | vs | - | ||
Notebook GPU | no | no | |||
SLI/Crossfire | no | vs | no | ||
Dedicated | yes | ![]() | vs | ![]() | yes |
Comparison |
Recommended Processor | - | Intel Core i5-6500 3.2GHz | |||
---|---|---|---|---|---|
Recommended RAM | 8 GB | ![]() | vs | 16 GB | |
Maximum Recommended Gaming Resolution | 1920x1080 | vs | ![]() | 2560x1600 |
Performance Value | ![]() |
---|
Mini Review | Overview The GeForce GTX 2050 is an expect Nvidia low-end graphics card due to launch in 2019. The GTX 2050 is designed to compete against AMD's more affordable gaming cards such as the RX 550 and the RX 560, and expected to replace the outgoing GTX 1050. Architecture The Turing Architecture aims for 30-50% as much performance as the previous-gen Turing Architecture. GPU It equips a GPU Codenamed Turing T107-400 which has [TBA] SM activated and thus [TBA] Shader Processing Units, [TBA] TMUs and [TBA] ROPs. The central unit runs at [TBA]MHz and goes up to [TBA]MHz with the Boost Clock. Memory The GPU accesses a 4GB frame buffer of fast GDDR5, through a 128-bit memory interface, while the memory clock Operates at 3504MHz. Power Consumption With a rated board TDP of 75W, it relies entirely on the PCI Slot for power, meaning no extra connectors are required. Performance The GTX 2050 will enable low to mid-level graphics performance on modern AAA 2018 released games. Although there will be variations on this frame rate we expect this card to deliver around 50+ FPS on medium graphics settings at a 1080p screen resolution. Comparatively, this card will have slightly faster performance than the GTX 1050 Ti. System Suggestions The GeForce GTX 2050 is best suited for resolutions up to and including 1920x1080, so our recommendation would be to use 1600x900 in order to get the most out of your settings. We recommend a high-end processor such as the i5-7500 and 8GB of RAM for optimal performance. | Overview The GTX 1070 AMP! is a Special Edition GTX 1070 high end graphics card by Zotac based on the Nvidia Pascal Architecture. Architecture It equips a GPU Codenamed P104-200-A1, which is a first gen Pascal GPU and has 15 SM activated, offering 1920 shader processing units, 120 TMUs and 64 ROPs. GPU The AMP! central unit runs at 1607MHz and goes up to 1797MHz, under the Boost Mode, higher than the reference card. Memory The GPU accesses a 8GB frame buffer of Fast GDDR5, through a 256-bit memory interface, while the Memory Clock Operates at 2002MHz. Power Consumption With a rated board TDP of 200W, it requires at least a 500W PSU with one available 8-pin connector. Performance The AMP! Extreme GTX 1070 by Zotac has a high end performance rating. It can meet 2016 AAA system requirements comfortably, gaming at high graphics settings across all games. This GPU will deliver strong frame rates at 1080p on any game at high graphics levels. System Suggestions This graphics card benchmark performance is best suited to resolutions up to and including 2560x1600. We recommend a High-End Processor and 16GB of RAM for optimal performance. |
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Recommended CPU | - | ||||
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Possible GPU Upgrades | - | ||||
GPU Variants | - | - |