NVIDIA Quadro RTX 4000 vs NVIDIA Quadro RTX 4000 Max-Q
What is the difference between NVIDIA Quadro RTX 4000 and NVIDIA Quadro RTX 4000 Max-Q. Find out which graphics card has better performance.
Benchmarks
7937 | 3DMark Time Spy | 7150 |
3754 | 3DMark Time Spy Extreme | 3149 |
17884 | 3DMark Fire Strike | 16470 |
9643 | 3DMark Fire Strike Extreme | 8536 |
4895 | 3DMark Fire Strike Ultra | 4259 |
Graphics Processor (GPU)
TU104 | GPU Name | TU104 |
Turing | Architecture | Turing |
TSMC | Foundry | TSMC |
12 nm | Process Size | 12 nm |
13,600 million | Transistors | 13,600 million |
545 mm² | Die Size | 545 mm² |
Graphics Card
Nov 13th, 2018 | Release Date | May 27th, 2019 |
Quadro (Tx000) | Family | Quadro Mobile (Tx000) |
Active | Production | Active |
PCIe 3.0 x16 | Bus Interface | PCIe 3.0 x16 |
Memory
8 GB | Memory Size | 8 GB |
GDDR6 | Memory Type | GDDR6 |
256 bit | Memory Bus | 256 bit |
416.0 GB/s | Bandwidth | 416.0 GB/s |
Performance
98.88 GPixel/s | Pixel fillrate | 88.32 GPixel/s |
222.5 GTexel/s | Texture fillrate | 220.8 GTexel/s |
14.24 TFLOPS (2:1) | FP16 (half) performance | 14.13 TFLOPS (2:1) |
7.119 TFLOPS | FP32 (float) performance | 7.066 TFLOPS |
222.5 GFLOPS (1:32) | FP64 (double) performance | 220.8 GFLOPS (1:32) |
Clock Speeds
1005 MHz | Base Clock | 780 MHz |
1545 MHz | Boost Clock | 1380 MHz |
1625 MHz 13 Gbps effective | Memory Clock | 1625 MHz 13 Gbps effective |
Render Config
2304 | Shading Units | 2560 |
144 | TMUs | 160 |
64 | ROPs | 64 |
36 | RT Cores | 40 |
64 KB (per SM) | L1 Cache | 64 KB (per SM) |
4 MB | L2 Cache | 4 MB |
36 | SM Count | 40 |
288 | Tensor Cores | 320 |
Board Design
Single-slot | Slot Width | IGP |
160 W | Thermal design power (TDP) | 80 W |
3x DisplayPort 1x USB Type-C | Display Connectors | No outputs |
1x 8-pin | Power Connectors | None |
API support
12 Ultimate (12_2) | DirectX | 12 Ultimate (12_2) |
4.6 | OpenGL | 4.6 |
3.0 | OpenCL | 3.0 |
1.2 | Vulkan | 1.2 |
6.6 | Shader Model | 6.6 |
7.5 | CUDA | 7.5 |