3DMark Benchmark (DirectX, Raytracing)
3DMark is a benchmark program that determines the performance of certain components of a computer and then reports the performance as a numerical value.

The Gainward GeForce RTX 2070 SUPER Phoenix GS is based on the NVIDIA GeForce RTX 2070 SUPER (Turing) and has 8 GB GDDR6 graphics memory with a bandwidth of 448 GB/s.

The KFA2 GeForce GTX 1660 is based on the NVIDIA GeForce GTX 1660 (Turing) and has 6 GB GDDR5 graphics memory with a bandwidth of 192 GB/s.
In FP32 performance, the Gainward GeForce RTX 2070 SUPER Phoenix GS is 85 % faster than the KFA2 GeForce GTX 1660.
| GPU | Gainward GeForce RTX 2070 SUPER Phoenix GS | KFA2 GeForce GTX 1660 |
|---|---|---|
| Based on | NVIDIA GeForce RTX 2070 SUPER | NVIDIA GeForce GTX 1660 |
| GPU Chip | TU104 | TU116-300-A1 |
| Streaming Multiprocessors | 40 | 22 |
| Shader | 2560 | 1408 |
| Render Output Units | 64 | 48 |
| Texture Units | 160 | 88 |
| Raytracing Cores | 40 | -- |
| Memory | Gainward GeForce RTX 2070 SUPER Phoenix GS | KFA2 GeForce GTX 1660 |
|---|---|---|
| Memory Size | 8 GB | 6 GB |
| Memory Type | GDDR6 | GDDR5 |
| Memory Clock | 1.750 GHz | 2.000 GHz |
| Memory Speed | 14.0 Gbps | 8.0 Gbps |
| Memory bandwidth | 448 GB/s | 192 GB/s |
| Memory Interface | 256 bit | 192 bit |
| Clock Speeds | Gainward GeForce RTX 2070 SUPER Phoenix GS | KFA2 GeForce GTX 1660 |
|---|---|---|
| Base Clock | 1.605 GHz | 1.530 GHz |
| Boost Clock | 1.815 GHz | 1.785 GHz |
| Overclocking | Yes | Yes |
| Thermal Design | Gainward GeForce RTX 2070 SUPER Phoenix GS | KFA2 GeForce GTX 1660 |
|---|---|---|
| TDP | 215 W | 120 W |
| Tjunction max | 88 °C | 95 °C |
| PCIe-Power | 1 x 6-Pin, 1 x 8-Pin | 1 x 8-Pin |
| Cooler & Fans | Gainward GeForce RTX 2070 SUPER Phoenix GS | KFA2 GeForce GTX 1660 |
|---|---|---|
| Fan-Type | Axial | Radial |
| Fan 1 | 3 x 80 mm | 1 x 75 mm |
| Cooler-Type | Air cooling | Air cooling |
| Noise (Idle) | 0 dB | -- |
| Connectivity | Gainward GeForce RTX 2070 SUPER Phoenix GS | KFA2 GeForce GTX 1660 |
|---|---|---|
| Max. Displays | 4 | 3 |
| HDCP | 2.2 | 2.2 |
| HDMI | 1x HDMI 2.0b | 1x HDMI 2.0b |
| DisplayPort | 3x DP 1.4a | 3x DP 1.4 |
| Featureset | Gainward GeForce RTX 2070 SUPER Phoenix GS | KFA2 GeForce GTX 1660 |
|---|---|---|
| Max. resolution | 7680x4320 | 7680x4320 |
| DirectX | 12_2 (Ultimate) | 12_1 |
| Raytracing | Yes | No |
| DLSS / FSR | Yes | Yes |
| LED | No LED lighting | No LED lighting |
| Supported Video Codecs | Gainward GeForce RTX 2070 SUPER Phoenix GS | KFA2 GeForce GTX 1660 |
|---|---|---|
| h264 | Decode / Encode | Decode / Encode |
| h265 / HEVC | Decode / Encode | Decode / Encode |
| VP8 | Decode | Decode |
| VP9 | Decode | Decode |
| AV1 | No | No |
| Dimensions | Gainward GeForce RTX 2070 SUPER Phoenix GS | KFA2 GeForce GTX 1660 |
|---|---|---|
| Length | 288 mm | 281 mm |
| Height | 112 mm | 124 mm |
| Width | -- | 41 mm |
| Width (Slots) | 3 Slots | 2 Slots |
| SFF-Ready | No | No |
| Additional data | Gainward GeForce RTX 2070 SUPER Phoenix GS | KFA2 GeForce GTX 1660 |
|---|---|---|
| GPU Interface | PCIe 3.0 x 16 | PCIe 3.0 x 16 |
| Release date | Q1/2020 | Q1/2019 |
| Launch Price | 499 $ | 219 $ |
| Structure size | 12 nm | 12 nm |
| Part-no | 471056224-1662 | 60SRH7MD01BK |
| Documents | data sheet | data sheet |
3DMark is a benchmark program that determines the performance of certain components of a computer and then reports the performance as a numerical value.
Cyberpunk 2077 was developed by CD Projekt Red and is based on the development studio's own REDengine 4. Ray tracing is switched off in our benchmarks.
The Last of Us Part One is a game released by Sony in June 2013 exclusively for the Playstation and released for the PC in early 2023. The benchmark values here were determined at high details.
Battlefield 5 is a visually stunning game that is ideal as a graphics card benchmark. We test the game with maximum details on Windows 10.
Geekbench 6 is a cross-platform benchmark for main processors, which also carries out 3 different graphics benchmarks and outputs them in the form of a numerical value.
The theoretical computing power of the graphics card with single precision (32 bit) in TFLOPS indicates how many trillion FP32 floating point operations the graphics card (GPU) can perform per second.