NVIDIA RTX A4500 (Rev. 1.0)

Specifications

  • Architecture
  • NVIDIA Ampere Architecture
  • GPU Memory
  • 20 GB GDDR6 with ECC
  • Memory Bandwidth
  • 640 GB/s
  • NVIDIA CUDA® Cores
  • 7168
  • NVIDIA Tensor Cores
  • 224
  • NVIDIA RT Cores
  • 56
  • Single Precision Performance
  • 23.7 TFLOPS1
  • RT Core Performance
  • 46.2 TFLOPS1
  • Tensor Performance
  • 189.2 TFLOPS1, 2
  • Max Power Consumption
  • 200W
  • Thermal Solution
  • Active
  • Memory Bus
  • 320-bit
  • Card Bus
  • PCI Express 4.0 x16
  • Output
  • 4x DisplayPort 1.4
  • Card size
  • 4.4" H x 10.5" L Dual Slot
  • Product Weight
  • 1.025 kg
  • Power Connectors
  • 8-pin CPU x1
  • NVENC | NVDEC
  • 1x | 1x (+ AV1 decode)
  • NVIDIA NVLINK
  • Low profile bridges connect two NVIDIA RTX A4500 GPUs
  • NVIDIA NVLINK Interconnect
  • 112.5 GB/s (bidirectional)
  • Accessory
  • 1x Quick Start Guide
    1x Support Guide
    1x DisplayPort to HDMI cable
  • Footnotes
  • 1. Peak rates are based on GPU boost clock.
    2. Effective TOPS/TFLOPS using the new sparsity feature.
  • Architecture
  • NVIDIA Ampere Architecture
  • GPU Memory
  • 20 GB GDDR6 with ECC
  • Memory Bandwidth
  • 640 GB/s
  • NVIDIA CUDA® Cores
  • 7168
  • NVIDIA Tensor Cores
  • 224
  • NVIDIA RT Cores
  • 56
  • Single Precision Performance
  • 23.7 TFLOPS1
  • RT Core Performance
  • 46.2 TFLOPS1
  • Tensor Performance
  • 189.2 TFLOPS1, 2
  • Max Power Consumption
  • 200W
  • Thermal Solution
  • Active
  • Memory Bus
  • 320-bit
  • Card Bus
  • PCI Express 4.0 x16
  • Output
  • 4x DisplayPort 1.4
  • Card size
  • 4.4" H x 10.5" L Dual Slot
  • Product Weight
  • 1.025 kg
  • Power Connectors
  • 8-pin CPU x1
  • NVENC | NVDEC
  • 1x | 1x (+ AV1 decode)
  • NVIDIA NVLINK
  • Low profile bridges connect two NVIDIA RTX A4500 GPUs
  • NVIDIA NVLINK Interconnect
  • 112.5 GB/s (bidirectional)
  • Accessory
  • 1x Quick Start Guide
    1x Support Guide
    1x DisplayPort to HDMI cable
  • Footnotes
  • 1. Peak rates are based on GPU boost clock.
    2. Effective TOPS/TFLOPS using the new sparsity feature.
* The entire materials provided herein are for reference only. GIGABYTE reserves the right to modify or revise the content at anytime without prior notice.
* Advertised performance is based on maximum theoretical interface values from respective Chipset vendors or organization who defined the interface specification. Actual performance may vary by system configuration.
* All trademarks and logos are the properties of their respective holders.
* Due to standard PC architecture, a certain amount of memory is reserved for system usage and therefore the actual memory size is less than the stated amount.

Support