Asus P4P800 Standard Driver
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Asus P4P800 Standard Driver
I would not be afraid to change over if I was you.
The Hyperthreading kicks arse. I here will run it with serv. Reply Share this post. Multifunktion Standard.
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Asus P4P800 Standard/Deluxe Bios
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The context of CAS latency is actually a good example to explain the chipset latencies. That is, at lower frequency, the CAS latency can be lowered. That means that bypass switches are closed or opened, depending on the MRS short for mode register setting commands Asus P4P800 Standard device initialization. In other words, if DRAM can work with fewer pipeline stages at lower frequencies, then the same is possible on the chipset level as well. Likewise, if higher grade memory is capable of maintaining lower latencies at higher frequencies, the same Asus P4P800 Standard go for chipset speed bins.
Lower latencies at higher frequency are called PAT. Third, if lower grade memory is to be run at higher speed, it will be necessary to add extra pipeline buffers; the same holds for chipset bins. The overclocking community is well aware of the fact that there is always the possibility to run hardware faster than what the specs call for. That means, there is always a possibility to run a CAS The problem in this case is that at some point, there will be a brick wall at which the settings will have to be changed back to a more conservative mode of operation and that will cause a relatively greater performance hit than if the original settings Asus P4P800 Standard maintained across the bench.
Keep in mind that we use the term "relative", meaning that the absolute performance can still be above average, it just does not scale with the expectations derived from the somewhat inflated performance at stock Asus P4P800 Standard. To summarize the above: At lower frequencies, the chipset Asus P4P800 Standard enough time to process all memory requests with relatively few pipeline stages in the memory controller.
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To warrant operability at high frequencies, extra pipeline stages are added that are activated Asus P4P800 Standard the MHz PSB frequency. This, of course, opens up the possibility to activate the bypass by simply faking a lower bus speed to the chipset while cranking up Asus P4P800 Standard frequency. Keep in mind that the default value is assigned to the registers by the strap assigned to the BSEL pins. Therefore, if the strap can be changed, the frequency assignment will also be changed and if the chipset thinks it is running in MHz mode while receiving an MHz clock input, it will activate the bypass.
Of course, there is a problem with this scheme, usually wafers are tested to make sure that the speed bin will be able to withstand the high operating frequency at reduced pipeline stages. Those wafers that pass Asus P4P800 Standard binned as Canterwood and packaged using the more elaborate BGA package.
Asus P4P800, checking DDR ram speed with XP?
Keep in mind though that only a small fraction of die is tested, and that the qualification means passing speed tests way in excess Asus P4P800 Standard the nominal frequency. This leaves a waste majority of chips that will pass at the nominal value but with small margins and probably more that just fall through the cracks because they were not tested at Asus P4P800 Standard. On the legal side of things, PAT is reserved for the Canterwood and Canterwood only and, therefore, it cannot be used for any other chipset.
At One Glance.