![]() The 860M packs a 2 GB GDDR5 memory buffer which runs across a 128-bit wide bus at a frequency of 5. The actual pixel rate is also dependant on lots of other factors, most notably the memory bandwidth of the card - the lower the memory bandwidth is, the lower the ability to get to the max fill rate. The GeForce GTX 860M features 640 CUDA Cores, 40 Texture Mapping Units and 16 Raster operators. ROPs (Raster Operations Pipelines - also called Render Output Units) are responsible for outputting the pixels (image) to the screen. The figure is calculated by multiplying the number of Render Output Units by the the card's clock speed. Pixel Rate: Pixel rate is the maximum amount of pixels the video card can possibly write to its local memory in a second - measured in millions of pixels per second. It is measured in millions of texels processed in one second. NVIDIA GeForce GTX 860M (2GB GDDR5, GM107) 16GB RAM 256GB SSD 15.6, 4K UHD (3840 x 2160), IPS Detailed review 919.00 ASUS ROG G551 Intel Core i7-4710HQ NVIDIA GeForce GTX 860M (2GB GDDR5, GM107) 16GB RAM 1000GB HDD + 128GB SSD 15. Upgrading from a GTX 860 Ti, the first thing I notice is that I never heard. ![]() The better this number, the better the card will be at handling texture filtering (anisotropic filtering - AF). MSI Nvidia GeForce GTX 970 OC 4 GB GDDR5 PCI Express x16 Video Card 219.99. This is worked out by multiplying the total amount of texture units by the core speed of the chip. Texel Rate: Texel rate is the maximum amount of texture map elements (texels) that can be applied in one second. ![]() It especially helps with AA, High Dynamic Range and high resolutions. The better the memory bandwidth, the better the card will be in general. ![]() If the card has DDR RAM, it must be multiplied by 2 once again. It's worked out by multiplying the bus width by its memory speed. 1 Type B Graphics Card N17E-G3-A1 Aetina M3N1080-NN Genuine New Graphics Video Card NVIDIA GeForce GTX 860M GDDR5 2GB for Alienware 13 R1 18 17 R1 R2 R3. Memory Bandwidth: Bandwidth is the largest amount of data (in units of megabytes per second) that can be transported across the external memory interface in a second.
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