NVIDIA T1000 8 GB vs NVIDIA RTX A4500 Mobile
Comparative analysis of NVIDIA T1000 8 GB and NVIDIA RTX A4500 Mobile 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 T1000 8 GB
- Around 15% higher core clock speed: 1065 MHz vs 930 MHz
- 2.8x lower typical power consumption: 50 Watt vs 140 Watt
Core clock speed | 1065 MHz vs 930 MHz |
Thermal Design Power (TDP) | 50 Watt vs 140 Watt |
Reasons to consider the NVIDIA RTX A4500 Mobile
- Videocard is newer: launch date 10 month(s) later
- Around 8% higher boost clock speed: 1500 MHz vs 1395 MHz
- 3.5x more texture fill rate: 276.0 GTexel/s vs 78.12 GTexel/s
- 6.6x more pipelines: 5888 vs 896
- A newer manufacturing process allows for a more powerful, yet cooler running videocard: 8 nm vs 12 nm
- 2x more maximum memory size: 16 GB vs 8 GB
- Around 60% higher memory clock speed: 2000 MHz, 16 Gbps effective vs 1250 MHz, 10 Gbps effective
- 2.8x better performance in Geekbench - OpenCL: 107601 vs 38055
Specifications (specs) | |
Launch date | 22 Mar 2022 vs 6 May 2021 |
Boost clock speed | 1500 MHz vs 1395 MHz |
Texture fill rate | 276.0 GTexel/s vs 78.12 GTexel/s |
Pipelines | 5888 vs 896 |
Manufacturing process technology | 8 nm vs 12 nm |
Maximum memory size | 16 GB vs 8 GB |
Memory clock speed | 2000 MHz, 16 Gbps effective vs 1250 MHz, 10 Gbps effective |
Benchmarks | |
Geekbench - OpenCL | 107601 vs 38055 |
Compare benchmarks
GPU 1: NVIDIA T1000 8 GB
GPU 2: NVIDIA RTX A4500 Mobile
Geekbench - OpenCL |
|
|
Name | NVIDIA T1000 8 GB | NVIDIA RTX A4500 Mobile |
---|---|---|
PassMark - G2D Mark | 876 | |
PassMark - G3D Mark | 7654 | |
Geekbench - OpenCL | 38055 | 107601 |
Compare specifications (specs)
NVIDIA T1000 8 GB | NVIDIA RTX A4500 Mobile | |
---|---|---|
Essentials |
||
Architecture | Turing | Ampere |
Code name | TU117 | GA104 |
Launch date | 6 May 2021 | 22 Mar 2022 |
Place in performance rating | 140 | 143 |
Technical info |
||
Boost clock speed | 1395 MHz | 1500 MHz |
Core clock speed | 1065 MHz | 930 MHz |
Manufacturing process technology | 12 nm | 8 nm |
Peak Double Precision (FP64) Performance | 78.12 GFLOPS (1:32) | 552.0 GFLOPS (1:32) |
Peak Half Precision (FP16) Performance | 5.000 TFLOPS (2:1) | 17.66 TFLOPS (1:1) |
Peak Single Precision (FP32) Performance | 2.500 TFLOPS | 17.66 TFLOPS |
Pipelines | 896 | 5888 |
Pixel fill rate | 44.64 GPixel/s | 144.0 GPixel/s |
Texture fill rate | 78.12 GTexel/s | 276.0 GTexel/s |
Thermal Design Power (TDP) | 50 Watt | 140 Watt |
Transistor count | 4700 million | 17400 million |
Video outputs and ports |
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Display Connectors | 4x mini-DisplayPort 1.4a | Portable Device Dependent |
Compatibility, dimensions and requirements |
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Form factor | Single-slot | |
Interface | PCIe 3.0 x16 | PCIe 4.0 x16 |
Recommended system power (PSU) | 250 Watt | |
Supplementary power connectors | None | None |
API support |
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DirectX | 12 (12_1) | 12 Ultimate (12_2) |
OpenCL | 3.0 | 3.0 |
OpenGL | 4.6 | 4.6 |
Shader Model | 6.7 (6.4) | 6.7 |
Vulkan | ||
Memory |
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Maximum RAM amount | 8 GB | 16 GB |
Memory bandwidth | 160.0 GB/s | 512.0 GB/s |
Memory bus width | 128 bit | 256 bit |
Memory clock speed | 1250 MHz, 10 Gbps effective | 2000 MHz, 16 Gbps effective |
Memory type | GDDR6 | GDDR6 |