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 Sapphire Nitro+ Radeon RX Vega 56 LE is equipped with 56 execution and 3584 shader units. With single precision, a theoretical FP32 computing power of 11.26 TFLOPS is achieved.
The Sapphire Nitro+ Radeon RX Vega 56 LE has a 2048 bit wide memory interface, with which a memory bandwidth of 410 GB/s is achieved. In total, 8 GB HBM2 graphics memory is available for the graphics card.
The manufacturer specifies the memory clock of the Sapphire Nitro+ Radeon RX Vega 56 LE with 1.266 GHz (base clock) or with 1.572 GHz (turbo clock). If overclocking is supported (see below), the clock rate can be increased even further.
The Sapphire Nitro+ Radeon RX Vega 56 LE has 2 x 8-Pin plugs, which supply the graphics card with energy. The maximum operating temperature of the card is 100 °C.
The Sapphire Nitro+ Radeon RX Vega 56 LE is equipped with 3 Axial main fans, which are used to cool the graphics processor and graphics memory.
Up to 4 screens can be connected to the Sapphire Nitro+ Radeon RX Vega 56 LE, whereby the backward-compatible HDCP copy protection is supported in the -- version.
The Sapphire Nitro+ Radeon RX Vega 56 LE supports a maximum resolution of 7680x4320 pixels and the DirectX standard version 12_1.
Here is a list of which video codecs can be decoded / encoded by the Sapphire Nitro+ Radeon RX Vega 56 LE in hardware in order to minimize the processor load.
The dimensions of the Sapphire Nitro+ Radeon RX Vega 56 LE are 310 mm in length, 133 mm in height and 54 mm in width. Thus 3 PCIe-Slots are needed in a case.
The Sapphire Nitro+ Radeon RX Vega 56 LE is manufactured in a structure width of 14 nm and has a PCIe 3.0 x 16 lanes interface. The graphics card was released in Q3/2017.
Sapphire Nitro+ Radeon RX Vega 56 LEType a model name – the comparison opens automatically.
3DMark is a benchmark program that determines the performance of certain components of a computer and then reports the performance as a numerical value.
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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.
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