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A video card slot is the spot inside a computer that is specifically designed to hold a video card. There are three common types of video card slots available: peripheral component interconnect (PCI); accelerated graphics port (AGP); and peripheral component interconnect express (PCI-E). In order for a video card to fit inside the computer, the video card slot and video card need to be of the same type. This slot connects directly to the northbridge section of the computer’s chipset, allowing fast communication between the graphics card and the rest of the computer.
Inside a computer, there are several expansion slots on a motherboard. These slots allow new hardware to interface with preexisting hardware, increasing the capabilities of the computer. Most motherboards have a single slot in the highest position on the board that is specifically for a video card. Unlike the other slots, where you can plug a card into any compatible slot, this one is for video cards only.
There have been several different video card slot types over the years. On a modern computer there are only three common types, from least to most common they are PCI, AGP and PCI-E slots. Older computers have other kinds, such as industry standard architecture (ISA) or video electronics standards association (VESA), but these types are nearly unheard of today.
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The PCI interface was the standard video card slot type until the mid-90s. While it is nearly gone today, this slot type may still be found on some older office computers and on very low budget parts. Even though it is rarely used for video cards, this slot design is still the standard for many types of expansion cards, such as sound or network cards. As a result, PCI slots are still on most modern motherboards, they are just not used for video cards.
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AGP video card slots took over from PCI as the most common style. They were on nearly every computer from the mid-90s until the mid-00s. AGP cards slots commonly have multipliers associated with them, such as x2, x4 or x8, that indicate the speed of the port. In order to utilize the slot to its fullest, it needs an AGP card with the same multiplier.
The most common style of video card slot today is PCI-E. This slot type took over from AGP in the mid-00s as the default type. While APG cards are far from gone, PCI-E has taken over the market in the late-00s. These slots are very fast, which allows for more powerful video cards.
Introduction
NVIDIA recently launched its GeForce RTX 20-series graphics cards based on its new 'Turing' architecture with two high-end parts: the GeForce RTX 2080 Ti and RTX 2080. Despite a long list of innovations, NVIDIA chose to give these chips a PCI-Express 3.0 x16 bus interface, even though the PCI-Express gen 4.0 specification has been published over a year ago and could be implemented in desktop platforms in the next few months. Rival AMD is rumored to be implementing PCI-Express gen 4.0 in its next-generation GPU.
The PCI-Express bus interface has endured close to two decades of market dominance thanks to its scalable design, backwards compatibility, and near-doubling in data bandwidth every five years or so. PCI-Express generation 3, introduced in 2011, has seen NVIDIA and AMD launch four generations of GPUs on it, with each failing to saturate it at full x16 bus width. That, coupled with the decline in multi-GPU beyond two graphics cards, has blunted the overall connectivity edge the high-end desktop (HEDT) platform had over mainstream-desktop.
We have a tradition of testing PCI-Express bus utilization and scaling each time a new graphics architecture from either company is launched. We do so by testing a new generation graphics card's performance on various configurations of the PCI-Express bus by narrowing its bus width (number of lanes) and limiting its bandwidth to that of older generations, giving us valuable data to draw inferences on a number of things. It lets us know if the new GeForce RTX 2080 Ti can be bottlenecked in multi-GPU setups on mainstream desktop platforms and whether it's time you changed your old motherboard that uses older generations of PCI-Express. It will also help answer questions like 'Will my graphics card run slower when using PCIe x8?' and 'Do I need to run my SLI in x16, buying the more expensive X299 platform, for the best performance?'
In this review, we are taking the fastest graphics card from NVIDIA, the GeForce RTX 2080 Ti Founders Edition, and test it across PCI-Express 3.0 x16 (the most common configuration for single-GPU builds), PCI-Express 3.0 x8 (bandwidth comparable to PCI-Express 2.0 x16), PCI-Express 3.0 x4 (comparable to PCI-Express 2.0 x8), and for purely academic reasons, PCI-Express 2.0 x4 (what would happen if you installed your card in the bottom-most slot of your motherboard). The table below gives you an idea of the theoretical maximum bandwidths of the common PCI-Express configurations:
![Card Card](/uploads/1/3/6/9/136972342/672870343.jpg)