Gigabyte K8NSNXP-939: Overclocking and Stress Testing

FSB Overclocking Results

Front Side Bus Overclocking Testbed
Processor: Athlon 64 FX53 Socket 939
2.4GHz
CPU Voltage: 1.5V (default)
Cooling: Thermaltake Silent Boost K8
Power Supply: Antec TruePower 430W
Maximum OC:
(Standard Ratios)
204FSB x13
2652MHz (+10.5%)
Maximum FSB:
(Lower Ratio)
267FSB x 9 at 1:1 Memory

Our FX53 easily achieved the next speed level of 2.6GHz on the Gigabyte. In fact, the two nVidia nF3 boards tied for the highest overclock of this FX53 at 2652MHz. This is a bit faster than the 2.6GHz, which will likely be the speed rating of the FX55 to appear later this year. On recent Gigabyte boards, the BIOS overclocks have been more modest, with the rest of the overclock only doable with EZTune in Windows. It is good to see Gigabyte allowing a higher OC in BIOS, since we could achieve 267 in BIOS at lower multipliers. However, any higher value requires EZTune after booting into the OS. We still did not reach spectacular levels with EZTune, topping out about 280, but these levels should be more than enough to satisfy most users.

Memory Stress Test Results:

Since you need a score card for Dual Channel setup on 939, DIMMs 1 and 2 are the first DC bank on the Gigabyte, and yes, this can be very confusing. Our advice is to check memory and your start-up screen carefully to make sure that you are really in Dual-Channel mode when setting up a 939. Everyone seems to be doing it differently.

The memory stress test is very basic, as it simply tests the ability of the Gigabyte K8NSNXP-939 to operate at its officially supported memory frequency (400MHz DDR), at the best performing memory timings that our Mushkin PC3500 Level 2 or OCZ PC3500 Platinum Ltd Modules will support. Memory stress testing was conducted by running RAM at 400MHz with 2 DIMM slots in a Dual-Channel configuration.

Stable DDR400 Timings - 2 DIMMs
(2/4 DIMMs - 1 Dual-Channel Bank)
Clock Speed: 200MHz
Timing Mode: N/A
CAS Latency: 2.0
Bank Interleave: N/A
RAS to CAS Delay: 2T
RAS Precharge: 10T*
Precharge Delay: 2T
Command Rate: 1T
*Several memory tests have shown that memory performs fastest on the nVidia nForce and VIA K8T800 chipsets at a TRas (RAS Precharge) setting in the 9 to 13 range. We ran our own Memory Bandwidth tests with memtest86, with TRas settings from 5 to 15 at a wide range of different memory speeds. The best bandwidth was consistently at 9 to 11 at every speed, with TRas 10 always in the best range at every speed. The memory bandwidth improvement at TRas 10 was only 2% to 4% over TRas 5 and 6 depending on the speed, but the performance advantage was consistent across all tests. Since best performance was achieved at 2-2-2-10 timings, all Athlon 64 benchmarks were run at a TRas setting of 10.

The Gigabyte 939 was completely stable with two DIMMs in Dual-Channel mode at the best 1T Command Rate settings.

Filling all four available memory slots is more strenuous on the memory subsystem than testing 2 DIMMs on a motherboard.

Stable DDR400 Timings - 4 DIMMs
(4/4 DIMMs - 2 Dual-Channel Banks)
Clock Speed: 200MHz
Timing Mode: N/A
CAS Latency: 2.0
Bank Interleave: N/A
RAS to CAS Delay: 2T
RAS Precharge: 10T*
Precharge Delay: 2T
Command Rate: 2T

The K8NSNXP-939 was able to run with all 4 DIMM slots at the same aggressive 2-2-2-10 settings used for 2 DIMMs. However, as we have seen on the other 939 boards running all 4 DIMMs, Command Rate must be reduced to 2T when filling both Dual Channels.

Gigabyte K8NSNXP-939: Features and Layout MSI K8N Neo2 Platinum: Features and Layout
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  • bigtoe33 - Tuesday, July 20, 2004 - link

    Asus USA did block sales of the A8V but some US resellers decided to go it alone with imported european boards.
    While it does p1$$ me off that there were still boards in europe not upto scratch you have to commend Asus USA for blocking sales and trying to at least look after some customers...they are also honouring RMA's also.

    So #1 it does show some resarch was needed before you bought your board as i tried to let everyone know that the first boards available were not PCI lock fixed although any of them do work with the lock and work VERY well.
  • Wesley Fink - Tuesday, July 20, 2004 - link

    #1 - Asus never advertised or listed an AGP/PCI lock as a feature on the original release of the A8V Deluxe. That is the only reason we have not yet reviewed this board. While we did have a sample with a working lock, we have stated in every comment about the A8V in memory reviews and articles that Asus had not yet released a production board with this feature, but that they planned to implement this feature in the future.

    It is also our understanding that the US office even held release of the board to the US market, but many huge on-line vendors direct imported this board or brought it in from European sources. Since we were working with Asus, we know they tried very hard to hold release of this baord until they could work through issues of adding a stable PCI/AGP lock to the A8V.

    It is our understanding than Revision 2.0 will implement an AGP/PCI lock, but we have not yet seen the production board, which we expect this week. We will confirm the new feature when the board is received.

    We tried to caution readers about the AGP/PCI lock on early VIA boards as loudly as we could. In fact we got a lot of flak from manufacturers and VIA about our articles on the problems with the AGP/PCI lock on early VIA boards.

    Asus did not even list the AGP/PCI lock as an option on the AV8 Deluxe. Our suggestion is to contact Asus, but you got the features Asus advertised and listed for this board.
  • shamgar03 - Tuesday, July 20, 2004 - link

    I bought a ASUS A8V like 3 weeks ago, but in the article it says they are re-releasing it or something, does anyone know if they are going to patch that with bios updates, or did I just get the shaft?

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