19
Oct
17

Motherboard: EPoX EP-8K3A

Today’s motherboard is a Socket 462 board (also known as Socket A) it is an EPoX EP-8K3A made in early 2002. The CPUs that fit this socket type have an exposed die that makes direct contact with the heat sink, this is generally good for heat dissipation, but makes installing or removing a heat sink a risky business. Here’s a photo of the board.

The board has a VIA KT333 chip-set, which at the time was one of the first to support the then new DDR333 standard. VIA chip-sets were very common at the time, especially where AMD CPUs were installed. An interesting feature was it’s ability to run the memory and FSB clocks asynchronously, although in practise this wasn’t that useful. If the memory was slower it became a bottle neck for the entire system. If it was faster the CPU wouldn’t have been able to make full use of the extra bandwidth, although that bandwidth could be used by other devices such as a graphic or sound card. Also noteworthy is the fact that this is a single memory channel board, later systems made use of the dual channel architecture which had a memory bandwidth advantage.

It has the usual suspects as far as peripherals go. It has a HDD/FDD controller, Serial/parallel ports, two USB ports, AC97 audio and a game port, which would have covered most users needs at the time. It lacks on-board LAN and USB 2.0, which would have been nice to have, but are easily added via the 6 PCI slots. There were two models, one had extra IDE ports connected to a RAID controller along with a diagnostic module that displayed the status on a two digit seven segment display. I have the board without these extra features, which doesn’t worry me as I can add a RAID card if needed.

EPoX was known for making boards for the enthusiast and over-clocker, and this board doesn’t disappoint on that front. You can see the voltage regulation circuitry has more capacitors and chokes than contemporary boards. They called this three-phase, but that’s not really a good description, basically it has three separate voltage regulator circuits just for the CPU core voltage. This results in a power supply with less noise on the line, and with the larger capacitor bank it also handles spikes in workload/power drain better. It probably increased the boards reliability over the long term, even if you didn’t over-clock. I found a review of the board that was written at the time it was released that has more details.

By the time this board was made jumpers were mostly a thing of the past, with everything under software control in the BIOS settings generally. With the front panel connectors clearly marked this board would have been quite easy to install and set up for an end use. This board would have been favoured by technicians partly because of this, but also because it would have almost certainly been more reliable, was fairly cheap, and was even forward compatible with processors and RAM that was yet to be released.

For end users this would have been a great work horse board for anyone, it is cheap, reliable, and has extensive upgrade options. However now as an old board, there are better socket A boards from the era with more features, better compatibility and faster chip-sets more capable of over-clocking. It would still be good in a vintage PC build, but not for a high performance machine of the era.


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