NVIDIA RTX 3500 Ada Generation vs NVIDIA Tesla V100 DGXS
Comparative analysis of NVIDIA RTX 3500 Ada Generation and NVIDIA Tesla V100 DGXS videocards for all known characteristics in the following categories: Essentials, Technical info, Video outputs and ports, Compatibility, dimensions and requirements, API support, Memory. Benchmark videocards performance analysis: PassMark - G2D Mark, PassMark - G3D Mark, Geekbench - OpenCL.
Differences
Reasons to consider the NVIDIA RTX 3500 Ada Generation
- Around 57% higher core clock speed: 1290 MHz vs 823 MHz
- Around 81% higher boost clock speed: 1665 MHz vs 918 MHz
- 575.4x more texture fill rate: 266.4 GTexel/s vs 463.0 GTexel / s
- A newer manufacturing process allows for a more powerful, yet cooler running videocard: 5 nm vs 12 nm
- 2.5x lower typical power consumption: 100 Watt vs 250 Watt
- Around 28% higher memory clock speed: 2250 MHz, 18 Gbps effective vs 1752 MHz
Core clock speed | 1290 MHz vs 823 MHz |
Boost clock speed | 1665 MHz vs 918 MHz |
Texture fill rate | 266.4 GTexel/s vs 463.0 GTexel / s |
Manufacturing process technology | 5 nm vs 12 nm |
Thermal Design Power (TDP) | 100 Watt vs 250 Watt |
Memory clock speed | 2250 MHz, 18 Gbps effective vs 1752 MHz |
Reasons to consider the NVIDIA Tesla V100 DGXS
- 2.7x more maximum memory size: 32 GB vs 12 GB
- Around 40% better performance in Geekbench - OpenCL: 161295 vs 115284
Specifications (specs) | |
Maximum memory size | 32 GB vs 12 GB |
Benchmarks | |
Geekbench - OpenCL | 161295 vs 115284 |
Compare benchmarks
GPU 1: NVIDIA RTX 3500 Ada Generation
GPU 2: NVIDIA Tesla V100 DGXS
Geekbench - OpenCL |
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Name | NVIDIA RTX 3500 Ada Generation | NVIDIA Tesla V100 DGXS |
---|---|---|
PassMark - G2D Mark | 693 | |
PassMark - G3D Mark | 19649 | |
Geekbench - OpenCL | 115284 | 161295 |
Compare specifications (specs)
NVIDIA RTX 3500 Ada Generation | NVIDIA Tesla V100 DGXS | |
---|---|---|
Essentials |
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Architecture | Ada Lovelace | Volta |
Code name | AD104 | GV100 |
Place in performance rating | 65 | 57 |
Launch date | 27 March 2018 | |
Type | Workstation | |
Technical info |
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Boost clock speed | 1665 MHz | 918 MHz |
Core clock speed | 1290 MHz | 823 MHz |
Manufacturing process technology | 5 nm | 12 nm |
Pipelines | 5120 | 5120 |
Pixel fill rate | 106.6 GPixel/s | |
Texture fill rate | 266.4 GTexel/s | 463.0 GTexel / s |
Thermal Design Power (TDP) | 100 Watt | 250 Watt |
Transistor count | 35800 million | 21,100 million |
Floating-point performance | 14,817 gflops | |
Video outputs and ports |
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Display Connectors | Portable Device Dependent | No outputs |
Compatibility, dimensions and requirements |
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Form factor | IGP | |
Interface | PCIe 4.0 x16 | PCIe 3.0 x16 |
Supplementary power connectors | None | None |
API support |
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DirectX | 12 Ultimate (12_2) | 12.0 (12_1) |
OpenCL | 3.0 | |
OpenGL | 4.6 | 4.6 |
Shader Model | 6.7 | |
Vulkan | ||
Memory |
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Maximum RAM amount | 12 GB | 32 GB |
Memory bandwidth | 432.0 GB/s | 897.0 GB / s |
Memory bus width | 192 bit | 4096 Bit |
Memory clock speed | 2250 MHz, 18 Gbps effective | 1752 MHz |
Memory type | GDDR6 | HBM2 |