New Processor on K8N Neo2 Platinum Advice

Following on from getting my system stable after installing more Ram (thanks syar2003 and all who offered advice ) I'm now on the lookout for a new processor to round out my latest upgrades.
Currently I have what is listed in my signature. I was looking at the AMD64 FX-57 chips but at over £500 they are far too expensive. I was then looking at the single core AMD 4000+ at about £120 or there's AMD64 X2 4800's going for a little over £200. I predominately do gaming on my machine but I do other stuff at the same time, often downloading large files, running winamp/irc/ventrillo etc.
Should I just go for the AMD64 X2 4800 and make it the end chip for my current board ? I don't really want to upgrade to SLI or AM2 just yet as I fell there is much life left in this board.

Quote from: darkmast2 on 28-July-06, 21:09:40
Should I just go for the AMD64 X2 4800 and make it the end chip for my current board ? I don't really want to upgrade to SLI or AM2 just yet as I fell there is much life left in this board.
Sounds good to me! AM2 is just a "stop-gap" solution for now, IMHO.
I'd still be using my Neo2 Plat as my primary board if it weren't for the AGP "dead-end".
My Neo2 was much easier to OC than my Neo4 Plat. Although, I finally ended up with simliar results on both. It was a bit harder to get there with the Neo4.

Similar Messages

  • New CPU, Msi K8n neo2 platinum - no boot!

    Greetings!
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    *Samsung Spinpoint 500gb SATA HD
    *Corsair 620HX (620W) PSU
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    Quote from: BOSSKILLER on 14-November-07, 21:14:42
    remove power cord from the PSU(else will not work) and Clear CMOS Guide.
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  • New BIOS for K8N Neo2 Platinum

    Version 1.1
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    - Support Sempron CPU.
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    Quote
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  • I have constant K8N Neo2 problems advice needed. (long) Update

    I need some advice on what my problem might be and if I need to RMA the motherboard or power supply.
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    Maxtor 6Y120L0 120GB hard drive as master on IDE channel 2. Single partition.
    Sony DRU-500AX DVD-RW as slave on IDE channel 2.
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    Power Supply Specifications:
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    PFC: Acitve
    Power Good Signal: 100-500ms
    Hold-up Time: > 16ms at Full Load
    Efficiency: > 65%
    Over Voltage Protection: +5V trip pointInput Voltage: 100 VAC / 240 VAC
    Input Frequency Range: 47-63 Hz
    Input Current: 8.0A
    Output: +3.3V@30A;+5V@40A;[email protected];+12V@18A;[email protected];+5VSB@2A

    Quote
    I then installed Rome Total War and played for about 2 hours and had one black screen crash
    Great isn't it (although not without the occasional crash)
    Would you say it's better but not there yet ? or the same ?
    I thought the same as Ibn Quote
    Your PS unit is a little weak for that much hardware, but I doubt thats your problem as well
    re your PSU, given youv'e got a less hungry Graphic Card, thought it was at worse marginal, have seen worse.
    To investigate further it may be worth diconnecting one of your HD, maybe the 200gb for a time.
    It's a small thing but it may be slightly better to have both your maxtors together on IDE channel 1, given their identical.
    good luck - keeo us posted

  • K8N Neo2 Platinum Ordered - Advice for a noob please

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  • New to OC - a64 3200+ 939, MSI K8N Neo2 Platinum

    Dear All,
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    Quote
    Originally posted by dL.
    Temp at load (playing CS:S) is about 41-42 degrees.
    Idle is about 35-38. Temps look ok
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  • New K8N Neo2 Platinum, AMD 64 3500+ sytem freezing

    I have posted to a couple of forums and still can't get this problem resolved, hope you guys can help.
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    2 x 512 Kingston ddr400 (pc3200)
    antec true power 480
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    thanks

    Thank you both for your posts, they are both informative and I will be using your information Friday night. I'm just so tired after work, I don't want to get part way into it and have to leave it for the next day, I have to get up at 3am everyday and get home around 6-7pm and I'm beat!   
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  • K8N Neo2 Platinum 939 -new bios

    Hey,
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    There is a beta bios floating around here 1.25 i think, i tried it but Cpuz didnt work properly afterwards

  • New/modified voltage.ini for MBM5 5.3.7.0 to fully support K8N Neo2 Platinum

    I have been fed up with the misread of MBM5 with Neo2 since i made the switch from Neo1
    Fixed :
    vcore fixed calibration
    +3.3v fixed (showed to low level)
    +5v calibrated
    +12v fixed ( showed to high level)
    New section to select Neo2 Platinum as the voltage configuration .
    Here's the whole voltage.ini file in the code box .
    Just save the previous one as voltage.ini.bak and paste this in a new file , restart MBM .
    Code: [Select]
    /* Voltage file for MBM                                   */
    /* Dated: 18-Jun-2004 08:41:37                            */
    /* [name] = sensorchip name -exactly- as in chipinfo.ini  */
    /*     VT = number of voltage configurations start at 0   */
    /*     Vx = where x is voltage config number              */
    /*          this holds the name of voltage config         */
    /*   VxVy = where x is the voltage config number          */
    /*          where y is the voltage number default this is */
    /*                  1 core 0                              */
    /*                  2 core 1 or 1.5 or 2.5                */
    /*                  3 3.3                                 */
    /*                  4 5                                   */
    /*                  5 12                                  */
    /*                  6 -12                                 */
    /*                  7 -5                                  */
    /*          this holds the register and calculation for   */
    /*          the voltage in question                       */
    /*          As of MBM 5.3.0.0 you can use a total of 16   */
    /*          calculation, if for example you want sensor   */
    /*          to show a voltage that MBM does not show      */
    /*          right now then add an 8th line, place your    */
    /*          code in there and set MBM voltage sensor 8    */
    /*          to MBM Fixed                                  */
    /*    255 = should always be used if a voltage is not     */
    /*          supported by this voltage config selection    */
    /*    $xx = a register from the sensor chip, any $xx      */
    /*          value in the string will be replaced with     */
    /*          the value from that register of the sensor    */
    /*          chip                                          */
    /*      B = option to use bank switch on ISA based        */
    /*          sensor chips, always use at end and always    */
    /*          followed by a bank number in hexadecimal      */
    /*      | = needed on dual sensor chips, always use it,   */
    /*          followed by 0 or 1 for the 1st or 2nd sensor  */
    /*          chip found                                    */
    /*      - = a calculation with a negative number is only  */
    /*          possible if that number is between ( )        */
    /*          example:  $12*(-0.4) will work                */
    /*                    $12*-0.4 will NOT work              */
    /*     // = remarks, don't use anything else              */
    /*      . = in ALL calculation use a dot as the decimal   */
    /*          symbol, even if it's not your normal decimal  */
    /*          symbol.                                       */
    /* if you feel you have a new voltage configuration for   */
    /* your board then feel free to send it to support at     */
    /* [email protected]                                    */
    [None]
    VT=0
    V0=None
    V0V1=255
    V0V2=255
    V0V3=255
    V0V4=255
    V0V5=255
    V0V6=255
    V0V7=255
    [National LM78]
    VT=2
    V0=LM78 Standard
    V0V1=$20*0.016
    V0V2=$21*0.016
    V0V3=$22*0.016
    V0V4=$23*0.016*1.68
    V0V5=$24*0.016*3.8
    V0V6=$25*(-0.016)*3.47
    V0V7=$26*(-0.016)*1.5
    V1=LM78 Epox
    V1V1=$20*0.016
    V1V2=$21*0.016
    V1V3=$22*0.016
    V1V4=$23*0.016*1.68
    V1V5=$24*0.016*4
    V1V6=$25*(-0.016)*4
    V1V7=$26*(-0.016)*1.666
    V2=LM78 Tekram
    V2V1=$20*0.016
    V2V2=$21*0.016
    V2V3=$22*0.016
    V2V4=$23*0.016*1.68
    V2V5=$24*0.016*3.8
    V2V6=$25*(-0.016)*3.94
    V2V7=$26*(-0.016)*1.5
    [National LM78j]
    VT=2
    V0=LM78j Standard
    V0V1=$20*0.016
    V0V2=$21*0.016
    V0V3=$22*0.016
    V0V4=$23*0.016*1.68
    V0V5=$24*0.016*3.8
    V0V6=$25*(-0.016)*3.47
    V0V7=$26*(-0.016)*1.5
    V1=LM78j Epox
    V1V1=$20*0.016
    V1V2=$21*0.016
    V1V3=$22*0.016
    V1V4=$23*0.016*1.68
    V1V5=$24*0.016*4
    V1V6=$25*(-0.016)*4
    V1V7=$26*(-0.016)*1.666
    V2=LM78j Tekram
    V2V1=$20*0.016
    V2V2=$21*0.016
    V2V3=$22*0.016
    V2V4=$23*0.016*1.68
    V2V5=$24*0.016*3.8
    V2V6=$25*(-0.016)*3.94
    V2V7=$26*(-0.016)*1.5
    [National LM79]
    VT=2
    V0=LM79 Standard
    V0V1=$20*0.016
    V0V2=$21*0.016
    V0V3=$22*0.016
    V0V4=$23*0.016*1.68
    V0V5=$24*0.016*3.8
    V0V6=$25*(-0.016)*3.47
    V0V7=$26*(-0.016)*1.5
    V1=LM79 Epox
    V1V1=$20*0.016
    V1V2=$21*0.016
    V1V3=$22*0.016
    V1V4=$23*0.016*1.68
    V1V5=$24*0.016*4
    V1V6=$25*(-0.016)*4
    V1V7=$26*(-0.016)*1.666
    V2=LM79 Tekram
    V2V1=$20*0.016
    V2V2=$21*0.016
    V2V3=$22*0.016
    V2V4=$23*0.016*1.68
    V2V5=$24*0.016*3.8
    V2V6=$25*(-0.016)*3.94
    V2V7=$26*(-0.016)*1.5
    [Winbond W83781D]
    VT=0
    V0=W83781D Standard
    V0V1=$20*0.016
    V0V2=$21*0.016
    V0V3=$22*0.016
    V0V4=$23*0.016*1.68
    V0V5=$24*0.016*3.8
    V0V6=$25*(-0.016)*3.47
    V0V7=$26*(-0.016)*1.5
    [Winbond W83782D]
    VT=1
    V0=W83782D Standard
    V0V1=$20*0.016
    V0V2=$21*0.016
    V0V3=$22*0.016
    V0V4=$23*0.016*1.68
    V0V5=$24*0.016*3.8
    V0V6=(($25*0.016)-3.6)*5.14+3.6
    V0V7=(($26*0.016)-3.6)*3.14+3.6
    V1=W83782D Abit BP6
    V1V1=$20*0.016
    V1V2=$21*0.016B$05
    V1V3=$22*0.016
    V1V4=$23*0.016*1.68
    V1V5=$24*0.016*3.8
    V1V6=(($25*0.016)-3.6)*5.14+3.6
    V1V7=(($26*0.016)-3.6)*3.14+3.6
    [Winbond W83783S]
    VT=3
    V0=W83783S Standard
    V0V1=$20*0.016
    V0V2=$21*0.016
    V0V3=$22*0.016
    V0V4=$23*0.016*1.68
    V0V5=$24*0.016*3.8
    V0V6=(($25*0.016)-3.6)*5.14+3.6
    V0V7=255
    V1=W83783S Soyo 7IZB+
    V1V1=$20*0.016
    V1V2=$21*0.016
    V1V3=$22*0.016
    V1V4=$23*0.016*1.68
    V1V5=$24*0.016*3.8
    V1V6=(($25*0.016)-3.6)*5.14+3.6
    V1V7=(($26*0.016)-3.6)*3.14+3.6
    V2=W83783S K7NCR18D/G
    V2V1=$20*0.016
    V2V2=$21*0.016
    V2V3=$22*0.016
    V2V4=$23*0.016*1.68
    V2V5=$24*0.016
    V2V6=$25*0.016
    V2v7=255
    V3=W83783S Tekram P6BX-A
    V3V1=$20*0.016                             
    V3V2=$21*0.016                             
    V3V3=$22*0.016                           
    V3V4=$23*0.016*1.68                             
    V3V5=$24*0.016*3.8                           
    V3V6=(($25*0.016)-3.6)*5.14+3.6                             
    V3V7=(($26*0.016)-3.6)*3.14+3.6
    [Genesys Logic GL518SM]
    VT=0
    V0=GL518SM Standard
    V0V1=($0D+2) * (2.38/128)
    V0V2=255
    V0V3=255
    V0V4=255
    V0V5=255
    V0V6=255
    V0V7=255
    [Genesys Logic GL520SM]
    VT=0
    V0=GL520SM Standard
    V0V1=($0D-0.18) * (2.43/128)
    V0V2=($14-0.18) * (2.43/128)
    V0V3=($15+3) * 2.5 * (2.43/256)
    V0V4=($13-0.18) * (2.43/128)*4.191489
    V0V5=255
    V0V6=255
    V0V7=255
    [Analog Devices ADM9240]
    VT=0
    V0=ADM9240 Standard
    V0V1=$21*0.014
    V0V2=$25*0.014
    V0V3=$22*0.0172
    V0V4=$23*0.026
    V0V5=$24*0.062
    V0V6=((($25*0.014)-(5+(5-($23*0.026)))) * 2.879-(5+(5-($23*0.026))))
    V0V7=255
    [National LM80]
    VT=2
    V0=LM80 Standard 1
    V0V1=$25*0.01392
    V0V2=255
    V0V3=$21*0.016431
    V0V4=$23*0.025050
    V0V5=$24*0.06
    V0V6=$23*0.105476 - $20*0.052105
    V0V7=255
    V1=LM80 QDI BrillianX IS
    V1V1=$23*0.014736842
    V1V2=255
    V1V3=$22*0.017366666
    V1V4=$20*0.02632653
    V1V5=$24*0.063156146
    V1V6=$25*(-0.064432432)
    V1V7=$26*(-0.027526881)
    V2=LM80 QDI BrillianX I
    V2V1=$23*0.014736842
    V2V2=255
    V2V3=$22*0.017366666
    V2V4=$20*0.02632653
    V2V5=$24*0.063156146
    V2V6=$25*(-0.070114942)
    V2V7=$26*(-0.027526881)
    [Winbond W83627HF]
    VT=11
    V0=W83627HF Standard 1
    V0V1=$20*0.016
    V0V2=$21*0.016
    V0V3=$22*0.016
    V0V4=$23*0.016*1.68
    V0V5=$24*0.016*3.8
    V0V6=(($25*0.016)-3.6)*5.14+3.6
    V0V7=(($26*0.016)-3.6)*3.14+3.6
    V1=W83627HF Standard 2
    V1V1=$20*0.016
    V1V2=$21*0.016
    V1V3=$22*0.016
    V1V4=$23*0.016*1.68
    V1V5=$24*0.016*3.8
    V1V6=(($25*0.016)-3.6)*5.14+3.6
    V1V7=255
    V2=W83627HF Standard 3
    V2V1=$20*0.016
    V2V2=$21*0.016
    V2V3=$22*0.016
    V2V4=$23*0.016*1.68
    V2V5=$24*0.016*3.8
    V2V6=$25*(-0.016)*3.47
    V2V7=$26*(-0.016)*1.5
    V3=W83627HF Standard 4
    V3V1=$20*0.016
    V3V2=$21*0.016
    V3V3=$22*0.016
    V3V4=$23*0.016*1.68
    V3V5=$24*0.016*3.8
    V3V6=$25*(-0.016)
    V3V7=$26*(-0.016)*1.5
    V4=W83627HF Standard 5
    V4V1=$20*0.016
    V4V2=$21*0.016
    V4V3=$22*0.016
    V4V4=$23*0.016*1.68
    V4V5=$24*0.016*3.8
    V4V6=$25*0.016
    V4V7=$26*0.016
    V5=W83627HF Abit BE7/ KX7
    V5V1=$20*0.016                  // core
    V5V2=$21*0.016                  // ddr
    V5V3=$22*0.016                  // 3.3
    V5V4=$23*0.016*1.68             // 5
    V5V5=$24*0.016*3.8              // 12
    V5V6=$25*0.016                  // vtt
    V5V7=$26*0.016                  // vddq
    V5V8=$51*0.016B5                // vbat
    V5V9=$50*0.016*1.515B5          // 5vsb
    V6=W83627HF Abit NF7
    V6V1=$20*0.016                  // CPU
    V6V2=$21*0.016                  // DDR
    V6V3=$22*0.016                  // +3.3V
    V6V4=$23*0.016*1.68             // +5V
    V6V5=$24*0.016*3.8              // +12V
    V6V6=(($25*0.016)-3.6)*5.14+3.6 // -12V
    V6V7=(($26*0.016)-3.6)*3.14+3.6 // -5V
    V6V8=$50*0.016*1.515B5          // +5V Stand By
    V6V9=$51*0.016B5                // +3.3V Dual
    V7=W83627HF EPoX 8RDA3+
    V7V1=$20*0.016                  // MB (Vdd)
    V7V2=$21*0.016                  // CPU
    V7V3=$22*0.016                  // RAM
    V7V4=$23*0.016*1.68             // +5V
    V7V5=$24*0.016*3.8              // +12V
    V7V6=$25*0.016                  // AGP
    V7V7=(($26*0.016)-3.6)*3.14+3.6 // -5V
    V7V8=$50*0.016*1.515B5          // +5V Stand By
    V7V9=$51*0.016B5                // +3.3V Dual
    V8=Abit IC7/IC7-G
    V8V1=$20*0.016 // core
    V8V2=$21*0.016 // ddr
    V8V3=$22*0.016 // 3.3
    V8V4=$23*0.016*1.68 // 5
    V8V5=$24*0.016*3.8 // 12
    V8V6=$25*0.016 // vtt
    V8V7=$26*0.016 // vddq
    V8V8=$51*0.016B5 // vbat
    V8V9=$50*0.016*1.515B5 // 5vsb
    V9=W83627HF Aopen MX3S-T / MX3SP-T
    V9V1=$20*0.016
    V9V2=$21*0.016
    V9V3=$22*0.016
    V9V4=$23*0.016*1.68
    V9V5=$24*0.016*3.8
    V9V6=(($25*0.016)-3.6)*5.14+3.6
    V9V7=$26*(-0.016)*1.5
    V10=W83627HF EPoX 8RDA/8RDA+
    V10V1=$20*0.016                  // NorthBridge (Vdd)
    V10V2=$21*0.016                  // CPU
    V10V3=$22*0.016                  // DDR RAM
    V10V4=$23*0.016*1.68             // +5V
    V10V5=$24*0.016*3.8              // +12V
    V10V6=(($25*0.016)-3.6)*5.14+3.6 // -12V
    V10V7=(($26*0.016)-3.6)*3.14+3.6 // -5V
    V10V8=$50*0.016*1.515B5          // +5V Stand By
    V10V9=$51*0.016B5                // +3.2 V Battery
    V11=W83627HF Standard 6
    V11V1=$20*0.016
    V11V2=$21*0.016
    V11V3=$22*0.016
    V11V4=$23*0.016*1.68
    V11V5=$24*0.016*3.8
    V11V6=(($25*0.016)-3.6)*5.14+3.6
    V11V7=(($26*0.016)-3.6)*3.14+3.6
    V11V8=$50*0.016*1.51B5         //5VSB
    V11V9=$51*0.016B5 //VBAT
    [Asus AS99127F]
    VT=2
    V0=AS99127F Standard 1
    V0V1=$20*0.016
    V0V2=$21*0.016
    V0V3=$22*0.016
    V0V4=$23*0.016*1.68
    V0V5=$24*0.016*3.8
    V0V6=($25*(-0.016))*3.97
    V0V7=($26*(-0.016))*1.503
    V1=AS99127F Standard 2
    V1V1=$20*0.016
    V1V2=$21*0.016
    V1V3=$22*0.016
    V1V4=$23*0.016*1.68
    V1V5=$24*0.016*3.8
    V1V6=(($25*0.016)-3.6)*5.14+3.6
    V1V7=(($26*0.016)-3.6)*3.14+3.6
    V2=ASUS P4S533-E
    V2V1=$20*0.016
    V2V2=255
    V2V3=$22*0.016
    V2V4=$23*0.016*1.68
    V2V5=$24*0.016*4
    V2V6=255
    V2V7=255
    [Texas Instruments THMC50]
    VT=0
    V0=THMC50 Standard
    V0V1=255
    V0V2=255
    V0V3=255
    V0V4=255
    V0V5=255
    V0V6=255
    V0V7=255
    [FairChild FMS2701]
    VT=0
    V0=FMS2701
    V0V1=255
    V0V2=255
    V0V3=255
    V0V4=255
    V0V5=255
    V0V6=255
    V0V7=255
    [Sis SiS5595]
    VT=0
    V0=Sis 5595 Standard
    V0V1=$20*0.016
    V0V2=255
    V0V3=$21*0.016
    V0V4=$23*0.016*1.68
    V0V5=$24*0.016*3.8
    V0V6=255
    V0V7=255
    [VIA Via686A]
    VT=2
    V0=VIA 686A Standard 1
    V0V1=(($22*25 + 133)/2628)*1.25
    V0V2=(($23*25 + 133)/2628)*1.25
    V0V3=(($24*25 + 133)/2628)*1.67
    V0V4=(($25*25 + 133)/2628)*2.6
    V0V5=(($26*25 + 133)/2628)*6.3
    V0V6=255
    V0V7=255
    V1=VIA 686A FIC SD-11
    V1V1=(($22*25 + 133)/2628)*1.143
    V1V2=(($23*25 + 133)/2628)*1.143
    V1V3=(($24*25 + 133)/2628)*1.67
    V1V4=(($25*25 + 133)/2628)*4
    V1V5=(($26*25 + 133)/2628)*9.6
    V1V6=255
    V1V7=255
    V2=VIA 686A Standard 2
    V2V1=(($22*25 + 133)/2628)*1.21
    V2V2=(($23*25 + 133)/2628)*1.25
    V2V3=(($24*25 + 133)/2628)*1.67
    V2V4=(($25*25 + 133)/2628)*2.6
    V2V5=(($26*25 + 133)/2628)*6.3
    V2V6=255
    V2V7=255
    [Winbond W83697HF]
    VT=13
    V0=W83697HF Standard 1
    V0V1=$20*0.016
    V0V2=$21*0.016
    V0V3=$22*0.016
    V0V4=$23*0.016*1.68
    V0V5=$24*0.016*3.8
    V0V6=(($25*0.016)-3.6)*5.14+3.6
    V0V7=(($26*0.016)-3.6)*3.14+3.6
    V1=W83697HF Standard 2
    V1V1=$20*0.016 // core
    V1V2=$22*0.016 // agp
    V1V3=$25*0.016 // 3.3
    V1V4=$23*0.016*1.68 // 5
    V1V5=$24*0.016*3.8 // 12
    V1V6=$26*0.016 // vdimm
    V1V7=255
    V2=W83697HF Standard 3
    V2V1=$20*0.016 // core
    V2V2=$26*0.016 // agp
    V2V3=$22*0.016 // 3.3
    V2V4=$23*0.016*1.68 // 5
    V2V5=$24*0.0643 // 12
    V2V6=$25*0.016 // ddr
    V2V7=255
    V3=W83697HF Standard 4
    V3V1=$20*0.016 // core
    V3V2=$22*0.016 // 1.5
    V3V3=$25*0.016 // 3.3
    V3V4=$23*0.016*1.68 // 5
    V3V5=$24*0.016*3.8 // 12
    V3V6=$26*0.016 // vdimm
    V3V7=255
    V4=W83697HF Standard 5
    V4V1=$20*0.016 // core
    V4V2=$25*0.016 // agp
    V4V3=$22*0.016 // 3.3
    V4V4=$23*0.016*1.68 // 5
    V4V5=$24*0.016*3.8 // 12
    V4V6=$26*0.016 // vdimm
    V4V7=255
    V5=ABIT KX7 333
    V5V1=$20*0.016
    V5V2=$21*0.016
    V5V3=$22*0.016
    V5V4=$23*0.016*1.68
    V5V5=$24*0.016*3.8
    V5V6=($25*(-0.016)*5.14)+5.91
    V5V7=($26*(-0.016)*3.14)+2.94
    V6=AsRock K7VT2
    V6V1=$20*0.016
    V6V2=$21*0.016
    V6V3=$22*0.016
    V6V4=$23*0.016*1.68
    V6V5=$24*0.016*3.8
    V6V6=$25*(-0.016)*3.78          //V -12.00
    V6V7=$26*(-0.016)*1.575         //V -5.00
    V7=AsRock K7S8X
    V7V1=$20*0.0164 // core
    V7V2=255
    V7V3=$22*0.0163 // 3.3
    V7V4=$23*0.0164*1.68 // 5
    V7V5=$24*0.0163*4 // 12
    V7V6=255
    V7V7=255
    V8=Abit AT7 MAX
    V8V1=$20*0.016 //VCORE
    V8V2=$22*0.016 //VIO
    V8V3=$23*0.016*1.68 //+5V
    V8V4=$24*0.016*3.8 //+12V
    V8V5=$25*0.016 //AGP
    V8V6=$26*0.016 //DDR
    V8V7=$50*0.016*1.51B5 //5VSB
    V8V8=$51*0.016B5 //VBAT
    V9=Asus P4SDX
    V9V1=$20*0.0154
    V9V2=$21*0.016
    V9V3=$22*0.016
    V9V4=$23*0.016*1.68
    V9V5=$24*0.016*4
    V9V6=255
    V9V7=255
    V10=W83697HF Standard 6
    V10V1=$20*0.016
    V10V2=$21*0.016
    V10V3=$22*0.016
    V10V4=$23*0.016*1.68
    V10V5=$24*0.016*3.8
    V10V6=(($25*0.016)-3.6)*5.14+3.6
    V10V7=(($26*0.016)-3.6)*3.14+3.6
    V10V8=$50*0.016*1.51B5         //5VSB
    V10V9=$51*0.016B5 //VBAT
    V11=W83697HF Epox 8K3A(+)
    V11V1=$20*0.016              // Core
    V11V2=$22*0.016              // AGP
    V11V3=$26*0.016              // DIMM
    V11V4=$25*0.016              // + 3.3
    V11V5=$23*0.016*1.68         // + 5
    V11V6=$24*0.016*3.8          // +12
    V11V7=$50*0.016*1.68B5      // 5VSB
    V11V8=$51*0.016B5            // VBAT
    V12=Abit KD7
    V12V1=$20*0.016                  // Vcore
    V12V2=$22*0.016                  // Vagp
    V12V3=$25*0.016                  // +3.3
    V12V4=$23*0.016*1.68             // +5
    V12V5=$24*0.016*3.8              // +12
    V12V6=$26*0.016                  // Vdimm
    V12V7=$51*0.016B5                // Vbat
    V12V8=$50*0.016*1.515B5          // 5Vsb
    V13=Cluster Labs CPU450
    V13V1=$20*0.016 // Core
    V13V2=$26*0.016 // RAM
    V13V3=$22*0.016 // 3.3
    V13V4=$23*0.016*1.69 // 5
    V13V5=$24*0.016*3.8 // 12
    V13V6=(($25*0.016)-3.6)*5.14+3.6  // -12
    V13V7=$51*0.016B5 // Battery
    [Analog Devices ADM1025]
    VT=0
    V0=ADM1025 Standard
    V0V1=$21*0.012
    V0V2=$20*0.013
    V0V3=$22*0.0172
    V0V4=$23*0.026
    V0V5=$24*0.062
    V0V6=((($25*0.014)-(5+(5-$23*0.026)) )* 2.879-(5+(5-$23*0.026)))
    V0V7=255
    [National LM87]
    VT=1
    V0=LM87 Standard 1
    V0V1=$21*0.014
    V0V2=255
    V0V3=$22*0.017366666
    V0V4=$23*0.016*1.632
    V0V5=$24*0.016*3.9
    V0V6=255
    V0V7=255
    V1=LM87 Standard 2
    V1V1=$21*0.014
    V1V2=$25*0.014
    V1V3=$22*0.017366666
    V1V4=$23*0.016*1.632
    V1V5=$24*0.016*3.9
    V1V6=255
    V1V7=255
    [VIA Via686B]
    VT=3
    V0=VIA 686B Standard
    V0V1=(($22*25 + 133)/2628)*1.25
    V0V2=(($23*25 + 133)/2628)*1.25
    V0V3=(($24*25 + 133)/2628)*1.67
    V0V4=(($25*25 + 133)/2628)*2.6
    V0V5=(($26*25 + 133)/2628)*6.3
    V0V6=255
    V0V7=255
    V1=VIA 686B ABIT VP6
    V1V1=(($22*25 + 133)/2628)*1.24
    V1V2=(($23*25 + 133)/2628)*1.25
    V1V3=(($24*25 + 133)/2628)*1.665
    V1V4=(($25*25 + 133)/2628)*2.54
    V1V5=(($26*25 + 133)/2628)*6.4
    V1V6=255
    V1V7=255
    V2=VIA 686B Asus A7VL-VM
    V2V1=(($22*25 + 133)/2628)*1.88
    V2V2=255
    V2V3=(($24*25 + 133)/2628)*1.66
    V2V4=(($25*25 + 133)/2628)*2.4
    V2V5=(($26*25 + 133)/2628)*16
    V2V6=255
    V2V7=255
    V3=VIA 686B MSI K7T Turbo
    V3V1=(($22*25 + 133)/2628)*1.20
    V3V2=255
    V3V3=(($24*25 + 133)/2628)*1.67
    V3V4=(($25*25 + 133)/2628)*2.6
    V3V5=(($26*25 + 133)/2628)*6.3
    V3V6=255
    V3V7=255
    [MySon MTP008]
    VT=1
    V0=MTP008 Standard 1
    V0V1=$20*0.016 // cpu 0
    V0V2=$23*0.016 // cpu 1
    V0V3=$21*0.016 // 3.3
    V0V4=$26*0.016 // 1.5
    V0V5=$22*0.016*3.9 // 12
    V0V6=255
    V0V7=255
    V1=MTP008 Standard 2
    V1V1=$20*0.0158 // cpu 0
    V1V2=$23*0.0158 // cpu 1
    V1V3=$21*0.016 // 3.3
    V1V4=$26*0.016*1.68 // 1.5
    V1V5=$22*0.016*3.9 // 12
    V1V6=255
    V1V7=255
    [National LM87 Dual]
    VT=1
    V0=LM87 Dual Standard
    V0V1=$21*0.014|1 // cpu 0
    V0V2=$25*0.014|0 // cpu 1
    V0V3=$22*0.0017366666|0 // 3.3
    V0V4=$23*0.016*1.632|1 // 5
    V0V5=$24*0.016*3.9|1 // 12
    V0V6=$25*0.014|0 // VTT
    V0V7=255
    V1=LM87 SM PIIIDME/370DE6
    V1V1=$21*0.0136|0 // cpu 0
    V1V2=$21*0.0136|1 // cpu 1
    V1V3=$22*0.017366666|0 // 3.3
    V1V4=$23*0.016*1.632|1 // 5
    V1V5=$24*0.016*3.9|1 // 12
    V1V6=255
    V1V7=255
    [ITE8712F]
    VT=13
    V0=ITE8712F Standard 1
    V0V1=$20*0.01565
    V0V2=$21*0.016
    V0V3=$22*0.016
    V0V4=$28*0.016 // vbat
    V0V5=$24*0.016*3.8
    V0V6=(($27*0.016)-3.6)*5.14+3.6
    V0V7=255
    V1=ITE8712F Standard 2
    V1V1=$20*0.01614 // cpu 0
    V1V2=$21*0.01614 // ??
    V1V3=$22*0.01614 // 3.3
    V1V4=$23*0.01614*1.68 // 5
    V1V5=$24*0.01614*3.9 // 12
    V1V6=255
    V1V7=255
    V2=ITE8712F Standard 3
    V2V1=$25*0.01614 // cpu 0
    V2V2=$21*0.016 // cpu 1
    V2V3=$22*0.016 // 3.3
    V2V4=$24*0.016 // 5
    V2V5=$23*0.01614*3.9 // 12
    V2V6=255
    V2V7=255
    V3=ITE8712F Standard 4
    V3V1=$20*0.016 //V P4
    V3V2=$21*0.016 //V AGP
    V3V3=$22*0.016 //V +3.3
    V3V4=$23*0.027 //V +5.00
    V3V5=$24*0.06564 //V +12.00
    V3V6=$25*0.016 + 4.25*($25*0.016 - 4.096) //V -12.00
    V3V7=$26*0.016 + 2.20*($26*0.016 - 4.096) //V -5.00
    V4=GA-8PE667
    V4V1=$20*0.01653                //V VCore
    V4V2=$21*0.016                  //V 1.5 line
    V4V3=$22*0.016                  //V +3.3
    V4V4=$23*0.02684                //V +5.00
    V4V5=$24*0.06398                //V +12.00
    V4V6=255                       
    V4V7=255 
    V5=CT-7NJS
    V5V1=$20*0.016    // CPU Core
    V5V2=$21*0.016    // +2.5
    V5V3=$22*0.016    // +3.3
    V5V4=$23*0.027    // +5.00
    V5V5=$24*0.06369  // +12.00
    V5V6=(($25*0.016)+(-3.299555556))*5.142857143  // -12
    V5V7=$26*0.016    // V_DDR
    V5V8=$27*0.016    // V_AGP
    V5V9=$28*0.016    // Battery
    V6=GA-8IK1100
    V6V1=$20*0.01565 // core
    V6V2=$23*0.016 // 2.5
    V6V3=$22*0.016 // 3.3
    V6V4=$24*0.016*1.68 // 5
    V6V5=$21*0.06564 // 12
    V6V6=$25*0,016 // 1.5
    V6V7=$27*0.016    // V_AGP
    V7=Shuttle SB61G
    V7V1=$20*0.016    // CPU Core
    V7V2=$21*0.016    // +2.5
    V7V3=$22*0.016    // +3.3
    V7V4=$23*0.027    // +5.00
    V7V5=$24*0.06369  // +12.00
    V7V6=(($25*0.016)+(-3.299555556))*5.142857143  // -12
    V7V7=$26*0.016    // V_DDR
    V7V8=$27*0.026    // +5VSB
    V7V9=$28*0.016    // Battery
    V8=GA-8IPE1000Pro
    V8V1=$20*0.01653                //V VCore
    V8V2=$21*0.016                  //V 2.5 line
    V8V3=$22*0.016                  //V +3.3
    V8V4=$23*0.032                  //V +5.00
    V8V5=$24*0.064                  //V +12.00
    V8V6=$28*0.016 //V Battery                       
    V8V7=255
    V9=GA-8KNXP
    V9V1=$20*0.016 // VCore CPU
    V9V2=$21*0.01565 // VMem DRAM
    V9V3=$22*0.016 // +3.3V
    V9V4=$23*0.032 // +5.00V
    V9V5=$24*0.064 // +12.00V
    V9V6=(($25*0.016)-3.6)*5.72 // -12V
    V9V7=(($26*0.016)-3.6)*2.33 // -5V
    V10=Gigabyte GA-7N400-L
    V10V1=$20*0.016    // V_core
    V10V2=$21*0.016    // ram
    V10V3=$22*0.016    // 3.3
    V10V4=$23*0.016*2.00  // 5
    V10V5=$24*0.016*4.00  // 12
    V10V6=$25*0.016    // AGP
    V10V7=$26*0.016 + 2.20*($26*0.016 - 4.096)  // -5V?
    V11=Asus A7V8X-X
    V11V1=$20*0.016            // Vcore
    V11V2=255
    V11V3=$22*0.016            // +3.3
    V11V4=$23*0.0265          // +5.00
    V11V5=$24*0.0654          // +12.00
    V11V6=255
    V11V7=255
    V12=GA-8PE667 Ultra
    V12V1=$20*0.01653                //V VCore
    V12V2=$21*0.016                  //V 1.5 line
    V12V3=$22*0.016                  //V +3.3
    V12V4=$23*0.02684 + .7           //V +5.00
    V12V5=$24*0.06398                //V +12.00
    V12V6=255
    V12V7=255
    V13=Elitegroup N2U400-A
    V13V1=$20*0.016    // CPU Core by MBM
    V13V2=$21*0.016    // Core 1 by MBM
    V13V3=($22+500)/185    // +3.3V by Bulli; min. 2.7V ($=0), max. 4V ($=255)
    V13V4=($23+400)/100 // +5V by Bulli; min. 4V ($=0), max. 6,5V ($=255)
    V13V5=($24+1100)/100 // +12V by Bulli; min. 11V ($=0), max. 13,5V ($=255)
    V13V6=-($25+1100)/100  // -12V by Bulli; min. -11V ($=0), max. -13,5V ($=255)
    V13V7=-($26+400)/100
    [ALi M5879]
    VT=2
    V0=ALi 5879 Standard 1
    V0V1=$22*0.0161 // cpu 0
    V0V2=255
    V0V3=$20*0.0161 // 3.3
    V0V4=$23*0.016*1.68 // 5
    V0V5=$21*0.016*3.8 // 12
    V0V6=255
    V0V7=255
    V1=Ali 5879 Standard 2
    V1V1=$22*0.0161 // cpu 0
    V1V2=255
    V1V3=$20*0.0161 // 3.3
    V1V4=$21*0.016*1.68 // 5
    V1V5=$23*0.016*3.4 // 12
    V1V6=255
    V1V7=255
    V2=Ali 5879 Standard 3
    V2V1=$22*0.0161 // cpu 0
    V2V2=255
    V2V3=$20*0.0161 // 3.3
    V2V4=$21*0.016*1.68 // 5
    V2V5=$23*0.016*3.41 // 12
    V2V6=255
    V2V7=255
    [Winbond W83L784R]
    VT=0
    V0=Winbond W83L784R Standard
    V0V1=$20*0.016
    V0V2=$21*0.016
    V0V3=$22*0.016
    V0V4=$23*0.016*1.68
    V0V5=255
    V0V6=255
    V0V7=255
    [Analog Devices ADM1024]
    VT=0
    V0=Analog Devices ADM1024 Standard
    V0V1=$21*0.014
    V0V2=$24*0.014
    V0V3=$22*0.0172
    V0V4=$23*0.026
    V0V5=$25*0.062
    V0V6=$20*0.013
    V0V7=255
    [Sis SiS5595 - rev 2.0]
    VT=1
    V0=Sis SiS5595 - rev 2.0 Standard 1
    V0V1=$20*0.016
    V0V2=255
    V0V3=$21*0.016
    V0V4=$22*0.016*1.68
    V0V5=$23*0.016*3.8
    V0V6=255
    V0V7=255
    V1=Sis SiS5595 - rev 2.0 Standard 2
    V1V1=$22*0.016
    V1V2=$23*0.016
    V1V3=$21*0.016
    V1V4=$20*0.016*1.68
    V1V5=255
    V1V6=255
    V1V7=255
    [Sis950 / ITE8705F]
    VT=13
    V0=Sis950 / ITE8705F -1
    V0V1=$20*0.01614 // cpu 0
    V0V2=$21*0.016 // 2.5
    V0V3=$22*0.016 // 3.3
    V0V4=$23*0.01614*1.68 // 5
    V0V5=$24*0.01614*4 // 12
    V0V6=$25*(-0.01614)*3.55 // -12
    V0V7=255
    V1=Sis950 / ITE8705F -2
    V1V1=$20*0.01565 // cpu 0
    V1V2=$21*0.016 // 2.5
    V1V3=$22*0.016 // 3.3
    V1V4=255
    V1V5=$24*0.01614*3.9 // 12
    V1V6=$27*(-0.01614)*3.47 // -12
    V1V7=$28*(-0.016)*1.503 // -5
    V2=Sis950 / ITE8705F -3
    V2V1=$20*0.01614 // cpu 0
    V2V2=$21*0.01614 // 2.5
    V2V3=$22*0.01614 // 3.3
    V2V4=$23*0.01614*1.68 // 5
    V2V5=$24*0.01614*3.9 // 12
    V2V6=$27*(-0.01614)*4 // -12
    V2V7=255
    V3=Sis950 / ITE8705F -4
    V3V1=$20*0.01565 // cpu 0
    V3V2=$21*0.016 // 2.5
    V3V3=$22*0.016 // 3.3
    V3V4=$23*0.016*1.68 // 5
    V3V5=$24*0.016*3.9 // 12
    V3V6=$27*(-0.016)*4.1 // -12
    V3V7=$28*(-0.016)*1.65 // -5
    V4=Sis950 / ITE8705F -5
    V4V1=$20*0.01614 // cpu 0
    V4V2=$21*0.01614 // 2.5
    V4V3=$22*0.01614 // 3.3
    V4V4=$23*0.01614*1.68 // 5
    V4V5=$24*0.01614*3.96 // 12
    V4V6=(($25*0.016)+(-3.299555556))*5.142857143
    V4V7=(($26*0.016)+(-2.792727273))*3.142857143
    V5=Sis950 / ITE8705F -6
    V5V1=$20*0.01630 // cpu 0
    V5V2=$21*0.01630 // 1.2
    V5V3=$22*0.01630 // 3.3
    V5V4=$23*0.01630*1.68 // 5
    V5V5=$24*0.01630*3.96 // 12
    V5V6=$25*0.01630 // ddr
    V5V7=$26*0.01630 // agp
    V6=Sis950 / ITE8705F -7
    V6V1=$20*0.016 // cpu 0
    V6V2=$24*0.016 // 2.5
    V6V3=$21*0.016 // 3.3
    V6V4=$22*0.016*1.68 // 5
    V6V5=$23*0.016*3.96 // 12
    V6V6=$25*0.016 // ddr
    V6V7=$26*0.016 // agp
    V7=SOYO DRAGON KT400 ULTRA PLATINUM
    V7V1=$20*0.01614 // cpu 0
    V7V2=$24*0.016 // 2.5
    V7V3=$21*0.01614  // 3.3
    V7V4=$22*0.016*1.69 // 5
    V7V5=$23*0.01614*4.02 // 12
    V7V6=$24*0.01614 // ddr
    V7V7=$25*0.01614          // agp
    V7V8=255
    V8=ECS L7S7A2
    V8V1=$20*0.01614 // cpu 0
    V8V2=255
    V8V3=$22*0.016          // ddr
    V8V4=255
    V8V5=255
    V8V6=255
    V8V7=255
    V9=GA-8SQ800ULTRA
    V9V1=$20*0.01614                        // cpu 0
    V9V2=$21*0.01614*1.300                  // 2.5
    V9V3=$22*0.01614*1.02                   // 3.3
    V9V4=$23*0.01614*1.68                   // 5
    V9V5=$24*0.01614*4.07                   // 12
    V9V6=(($25*0.016)+(-3.299555556))*5.16  //-12
    V9V7=(($26*0.016)+(-2.792727273))*3.68  //-5
    V9V8=$27*0.016                          // DDR
    V10=ECS L7S7A2
    V10V1=$20*0.01614          // cpu core
    V10V2=$21*0.016            // +2.5v (ddr)
    V10V3=$22*0.016            // +3.3v
    V10V4=$23*0.01614*1.68     // +5v
    V10V5=$24*0.01614*4        // +12v
    V10V6=$27*0.01614*1.68     // 5vsb
    V10V7=$28*0.016            // vbat
    V11=GA-8IK1100
    V11V1=$20*0.01565 // core
    V11V2=$22*0.016         // 3.3
    V11V3=$24*0.0268 // 5
    V11V4=$21*0.0736 // 12
    V11V5=$27*0.016    // V_AGP
    V12=Shuttle FX41
    V12V1=$20*0.016016 // CPU VCore 1.75 (modified)
    V12V2=$21*0.016 // VDDQ 3.3
    V12V3=$22*0.016 // 3.3
    V12V4=$23*0.016*1.68 // 5
    V12V5=$24*0.016*3.9 // 12
    V12V6=$27*(-0.016)*4.1 // -12
    V12V7=$28*(-0.016)*2.463 // -5 (modified)
    V13=SOYO KT400 DRAGON Lite
    V13V1=$20*0.01614 // CPU core
    V13V2=$24*0.01614 // DDR
    V13V3=$21*0.01614  // +3.3
    V13V4=$22*0.01614*1.663 // +5
    V13V5=$23*0.01614*3.94 // +12
    V13V6=$25*0.01614          // AGP
    [Genesys Logic GL525SM]
    VT=1
    V0=GL525SM Standard 1
    V0V1=$20+3 * (0.020078 * 1)
    V0V2=255
    V0V3=$22+3 * (0.020078 * 1)
    V0V4=$23-3 * (0.020078 * 5/3.5)
    V0V5=$24+3 * (0.020078 * (1.0+15.0/4.7))
    V0V6=$25+3 * (0.020078 * (210/28))
    V0V7=255
    V1=GL525SM Standard 2
    V1V1=$20+3 * (0.020078 * 1)
    V1V2=$21+3 * (0.019 *1)
    V1V3=$22+3 * (0.020078 * 1)
    V1V4=$23-3 * (0.020078 * 5/3.5)
    V1V5=$24+3 * (0.020078 * (1.0+15.0/4.7))
    V1V6=$25+3 * (0.020078 * (210/28))
    V1V7=255
    [Analog Devices ADM1024 Dual]
    VT=0
    V0=ADM1024 Dual Standard
    V0V1=$21*0.014|0 // core 0
    V0V2=$21*0.014|1 // core 1
    V0V3=$23*0.026|0 // 3.3
    V0V4=$20*0.026|0 // 5
    V0V5=$24*0.062|0 // 12
    V0V6=$20*0.010|1 // 1.5
    V0V7=255
    [Dallas SM DS1780]
    VT=0
    V0=Dallas DS1780 Standard
    V0V1=$21*0.014
    V0V2=$20*0.013
    V0V3=$22*0.017
    V0V4=$23*0.026
    V0V5=$24*0.0625
    V0V6=$25*0.096 - 29
    V0V7=255
    [Analog Devices ADM1025 Dual]
    VT=0
    V0=ADM1025 Dual Standard
    V0V1=$21*0.012|0 // core 0
    V0V2=$21*0.012|1 // core 1
    V0V3=$22*0.0172|0 // 3.3
    V0V4=$23*0.026|0 // 5
    V0V5=$24*0.062|0 // 12
    V0V6=((($25*0.014)-(5+(5-$23*0.026)) )* 2.879-(5+(5-$23*0.026)))
    V0V7=$20*0.013|1 // ??
    [Dallas SM DS1780 Dual]
    VT=2
    V0=Dallas DS1780 Dual Standard 1
    V0V1=$21*0.014|0 // core 0
    V0V2=$20*0.013|0 // 2.5
    V0V3=$22*0.017|0 // 3.3
    V0V4=$23*0.026|0 // 5
    V0V5=$24*0.0625|0 // 12
    V0V6=$25*0.096-29|0
    V0V7=255
    V1=Dallas DS1780 Dual Standard 2
    V1V1=$21*0.014|1 // core 0
    V1V2=$20*0.013|1 // 2.5
    V1V3=$22*0.017|1 // 3.3
    V1V4=$23*0.026|1 // 5
    V1V5=$24*0.0625|1 // 12
    V1V6=$25*0.096-29|1
    V1V7=255
    V2=Dell PWS 420
    V2V1=$21*0.014|0 // core 0
    V2V2=$20*0.013|0 // 2.5
    V2V3=$22*0.017|1 // 3.3
    V2V4=$23*0.026|0 // 5
    V2V5=$24*0.0625|0 // 12
    V2V6=255
    V2V7=255
    [Analog Devices ADM1030]
    VT=0
    V0=ADM1030 Standard
    V0V1=255
    V0V2=255
    V0V3=255
    V0V4=255
    V0V5=255
    V0V6=255
    V0V7=255
    [Analog Devices ADM1031]
    VT=0
    V0=ADM1031 Standard
    V0V1=255
    V0V2=255
    V0V3=255
    V0V4=255
    V0V5=255
    V0V6=255
    V0V7=255
    [ITE8693F]
    VT=0
    V0=ITE8693F Standard
    V0V1=$20*0.016
    V0V2=$21*0.016
    V0V3=$22*0.016
    V0V4=$23*0.016*1.28
    V0V5=$24*0.016*3.8
    V0V6=$25*(-0.016)*5.2
    V0V7=255
    [PC87366]
    VT=0
    V0=PC87366 Standard
    V0V1=255 // can't be done via ini file
    V0V2=255 // can't be done via ini file
    V0V3=255 // can't be done via ini file
    V0V4=255 // can't be done via ini file
    V0V5=255 // can't be done via ini file
    V0V6=255 // can't be done via ini file
    V0V7=255 // can't be done via ini file
    [VIA Via8231]
    VT=2
    V0=VIA8231 Standard 1
    V0V1=(($22*25 + 133)/2628)*1.25
    V0V2=(($23*25 + 133)/2628)*1.25
    V0V3=(($24*25 + 133)/2628)*1.67
    V0V4=(($25*25 + 133)/2628)*2.6
    V0V5=(($26*25 + 133)/2628)*6.3
    V0V6=(($27*25 + 133)/2628)*2.6
    V0V7=(($28*25 + 133)/2628)*6.3
    V1=VIA8231 Standard 2
    V1V1=(($24-3) * (2+10) / 10) / 95.8 // core 0
    V1V2=(($23-3) * (2+10) / 10) / 95.8 // 2.5
    V1V3=(($26-3) * (2+3) / 3) / 95.8 // 3.3
    V1V4=(($22-3) * (14+10) / 10) / 95.8 // 5
    V1V5=(($25-3) * (47+10) / 10) / 95.8 // 12
    V1V6=255
    V1V7=255
    v2=EPIA Ezra
    V2V1=(($24*25 + 133)/2628)*1.04         // core0
    V2V2=(($23*25 + 133)/2628)*1.26         // 2.5
    V2V3=(($22*25 + 133)/2628)*1.67         // 3.3
    V2V4=(($25*25 + 133)/2628)*2.4          // 5
    V2V5=(($26*25 + 133)/2628)*6            // 12
    V2V6=255
    V2V7=255
    v3=EPIA Samuel 2
    V3V1=(($24*25 + 133)/2628)*1.04         // core0
    V3V2=(($23*25 + 133)/2628)*1.26         // 2.5
    V3V3=(($22*25 + 133)/2628)*1.67         // 3.3
    V3V4=(($25*25 + 133)/2628)*2.4          // 5
    V3V5=(($26*25 + 133)/2628)*6            // 12
    V3V6=255
    V3V7=255
    [Winbond W83627HF/W83782D Combo]
    VT=1
    V0=Standard W83627HF/W83782D
    V0V1=$20*0.01614|0 // core 0
    V0V2=$20*0.01614|1 // core 1
    V0V3=$26*0.01614|1 // 3.3
    V0V4=$23*0.01614*1.68|0 // 5
    V0V5=$22*0.016*3.8|0 // 12
    V0V6=(($25*0.016)-3.6)*5.14+3.6|0 // -12
    V0V7=255
    V1=Tyan Tiger MP 2460
    V1V1=$20*0.01614|0 // core 0 (CPU 1)
    V1V2=$21*0.01614|0 // core 1 (CPU 2)
    V1V3=$22*0.01614|0 // +3.3 Volts
    V1V4=$23*0.027205|1 // +5 Volts
    V1V5=$24*0.075845|0 // +12 Volts
    V1V6=$25*(-0.38375)|0 // -12 Volts
    V1V7=255 // -5 Volts not implemented
    V1V8=$22*0.01614|1 // AGP Volts
    V1V9=$24*0.01614|1 // DDR Volts
    V1V10=$26*0.01614|1 // standby 3.3 Volts
    V1V11=$51*0.01614|1 B5 // battery Volts (on bank 5)
    [SMSC LPC47M192-NC]
    VT=1
    V0=LPC47M192 Standard
    V0V1=$21*0.012
    V0V2=$20*0.013
    V0V3=$22*0.0172
    V0V4=$23*0.026
    V0V5=$24*0.062
    V0V6=$50*0.008
    V0V7=$51*0.009
    V1=Dell Precision 650
    V1V1=$21*0.0114 // CPU voltage
    V1V2=$20*0.013 // +2.5V
    V1V3=$22*0.0171 // +3.3V
    V1V4=$23*0.026 // +5V
    V1V5=$24*0.06 // +12V
    V1V6=$50*0.0171 // SIO voltage
    V1V7=$51*0.0078 // AGP voltage
    V1V8=$25*0.0093 // +1.8V
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    VT=1
    V0=W83637HF Standard 1
    V0V1=$20*0.016
    V0V2=$21*0.016
    V0V3=$22*0.016
    V0V4=$23*0.016*1.68
    V0V5=$24*0.016*3.8
    V0V6=(($25*0.016)-3.6)*5.14+3.6
    V0V7=(($26*0.016)-3.6)*3.14+3.6
    V1=ECS Photon PF2 Lite
    V1V1=$20*0.016
    V1V2=$21*0.016
    V1V3=$22*0.016
    V1V4=$23*0.016*1.68
    V1V5=255
    V1V6=255
    V1V7=255
    [Analog Devices ADM1028]
    VT=0
    V0=not support by this device
    V0V1=255
    V0V2=255
    V0V3=255
    V0V4=255
    V0V5=255
    V0V6=255
    V0V7=255
    [Asus ASB100 (Bach)]
    VT=1
    V0=ASB100 Standard 1
    V0V1=$20*0.016
    V0V2=$21*0.016
    V0V3=$22*0.016
    V0V4=$23*0.016*1.68
    V0V5=$24*0.016*3.8
    V0V6=($25*(-0.016))*3.97
    V0V7=($26*(-0.016))*1.666
    V1=ASB100 Standard 2
    V1V1=$20*0.016
    V1V2=$21*0.016
    V1V3=$22*0.016
    V1V4=$23*0.016*1.68
    V1V5=$24*0.016*4
    V1V6=($25*(-0.016))*4
    V1V7=($26*(-0.016))*1.666
    [Analog Devices ADM1027]
    VT=0
    V0=ADM1027 Standard
    V0V1=$21*4*0.00293
    V0V2=$20*4*0.0032
    V0V3=$22*4*0.0042
    V0V4=$23*4*0.0065
    V0V5=$24*4*0.0156
    V0V6=255
    V0V7=255
    [ITE8722F]
    VT=0
    V0=ITE8722F Standard
    V0V1=$20*0.01565
    V0V2=$21*0.016
    V0V3=$22*0.016
    V0V4=$28*0.016 // vbat
    V0V5=$24*0.016*3.8
    V0V6=(($27*0.016)-3.6)*5.14+3.6
    V0V7=255
    [Asus Mozart2]
    VT=0
    V0=Mozart2 Standard
    V0V1=$20*0.016
    V0V2=255
    V0V3=$22*0.016
    V0V4=$23*0.016*1.68
    V0V5=$24*0.016*4
    V0V6=255
    V0V7=255
    [National LM85]
    VT=0
    V0=LM85 Standard
    V0V1=$21*0.01176
    V0V2=$20*0.013
    V0V3=$22*0.0172
    V0V4=$23*0.026
    V0V5=$24*0.0627
    V0V6=255
    V0V7=255
    [Winbond W83627HF/ADM1027 Combo]
    VT=1
    V0=W83627HF/ADM1027 Combo
    V0V1=$20*0.016|0                // core0
    V0V2=255
    V0V3=255
    V0V4=$23*4*0.0065|1 // +5
    V0V5=$24*4*0.0156|1 // +12
    V0V6=255
    V0V7=255
    [Winbond W83627HF/ADM1027 Combo]
    V1=Tyan 2665
    V1V1=$20*0.0.016|0              // core0
    V1V2=$21*0.01471|0         
    V1V3=$22*0.032|0             
    V1V4=$23*4*0.0065|1  // +5
    V1V5=$24*4*0.0156|1  // +12
    V1V6=255
    V1V7=255
    [Analog Devices ADM1025/1030 Combo]
    VT=0
    V0=ADM1025/1030 Combo
    V0V1=$21*0.012|1
    V0V2=$20*0.013|1
    V0V3=$22*0.0172|1
    V0V4=$23*0.026|1
    V0V5=$24*0.062|1
    V0V6=$25*0.0172|1
    V0V7=255
    [Analog Devices ADM1030 Dual]
    VT=0
    V0=ADM1030 Dual
    V0V1=255
    V0V2=255
    V0V3=255
    V0V4=255
    V0V5=255
    V0V6=255
    V0V7=255
    [WinBond W83L785TR]
    VT=0
    V0=WinBond W83L785TR
    V0V1=$20*0.044
    V0V2=$21*0.044
    V0V3=255
    V0V4=255
    V0V5=255
    V0V6=255
    V0V7=255
    [WinBond W83L785R]
    VT=0
    V0=WinBond W83L785R
    V0V1=$20*0.044
    V0V2=$21*0.044
    V0V3=255
    V0V4=255
    V0V5=255
    V0V6=255
    V0V7=255
    [Winbond W83627THF-A]
    VT=6
    V0=Winbond W83627THF-A
    V0V1=$20*0.016
    V0V2=$21*0.016
    V0V3=$22*0.016
    V0V4=$23*0.016*1.68
    V0V5=$24*0.016*4
    V0V6=255
    V0V7=255
    V1=Asus P4P800
    V1=Asus P4P800
    V1V1=$20*0.01567
    V1V2=255
    V1V3=$22*0.016
    V1V4=$23*0.016*1.68
    V1V5=$21*0.016*3.8
    V1V6=255
    V1V7=255
    V2=ASUS PC-DL
    V2V1=$20*0.00488 + 0.69 // VCORE (pin 100) (+ 1.5V)
    V2V2=$51*0.016B$05      // VBAT  (pin  74) (+ 3.0V)
    V2V3=$22*0.016          // VIN1  (pin  98) (+ 3.3V)
    V2V4=$23*0.016*1.68 

    Checked and worked fine for windows xp x64 pro version too .
    Just replace the voltage.ini
    MBM 5.3.7.0 64bits can be downloaded at http://www.planetAMD64.com

  • News - BIG PROBLEM - MSI K8N Neo2 Platinum - DOES NOT POWER!!!

    Hi to everyone.
    I'm a proudly owner of a MSI K8N Neo2 Platinum that in one year gave me no problem until yesterday morning.
    I used the computer in the night before and when I finished I turned it off and I went to bed.
    Yesterday morning I found the power led blinking (like if the system was in standby), and there was no way to turn the PC on.
    I even took off the battery for more than 12 hours and I left only minimal components installed:
    the video card (Gainward GeForce 6800),
    the psu (Antec TruePower 550W),
    1 x 512 MB Ram Crucial Ballistix,
    and I checked them into another computer and they work perfectly.
    I tried shorting the MB power switch pins with a screwdriver and I've even tried to power on the system without the Memory or the Video Card... I've tried everything that came across my mind with no efforts!!!!
    Every time I give power to the MB appens only that the power led starts blinking, but pressing the button the PC doesn't turn on.
    PLEASE HELP ME... I really don't know what else to do!!!
    Thanks,
    Alberto

    Quote from: alberto_melita on 20-August-05, 20:14:56
    Hi thanks for the answers.
    I do have a D-Bracket, but my problem is not that the system does not boot or does not post... my system DOES NOT POWER ON (!!!!), so d-bracket is useless!
    When I plug the system power    the only thing that happens is that the power led starts blinking (with the system still in soft-off), and if I press the power switch button nothing happens! 
    I've the bios for 7025 v1.8 and the settings where for OFF on power-loss ond pressing the button (can't rememeber if it was more than 4 sec) was meant to turn off the computer, but considering that I un-powered the pc more than once without the MB battery the settings should be factory default by now.
    I went through the Windows-XP shut-down system, and i could not be an electrical problem as I always used the PC with a pretty good UPS unit.
    Right now these are the full specs of my sytem:
    - MB MSI K8N Neo2 Platinum nForce3 Ultra
    - GAINWARD 6800 2600 GLH 256 MB Ram
    - PSU Antec TruPower 550 W
    - CPU AMD64 3500+ core Winchester @11*210 Mhz (this cpu has never overclocked very well)
    - HEATSINK Thermalright XP-90 with a 12 Cm Enermax Fan (CPU temp in always below 55 °C when stressed)
    - 1 x 512 Mb RAM Crucial Ballistix DDR400 optimized for  MSI K8N Neo2 Platinum
    I left only these things inside my computer in the hope that it would turn on... it did not work. I tested each component but the MB, and they work perfectly.
    Again...
    Thanks for you efforts, any help will be appreciated.
    Alberto.
    All parts have been tested: CPU/RAM/GFX/PSU/HD/DVD,  just not the MOBO ?
    Checked if the MOBO is shorting in the case ?
    Have you tried using the reset switch as power, on/off switch ?  I've seen before when the power switch stops working (lose/bad wire busted spring) after swapping  reset to power, then the system turned on. Worth a try, as sending it back to USA won't be cheap. If its over 1 year old it mite not be covered by the re-seller and or MSI. Best to check this out as law and warranty is different from country to country.
    Good Luck

  • K8N Neo2 Platinum not shutting down properly

    I built a new system with this motherboard and the Athlon 64 3500+ Processor.  I also installed Kingston Hyper X memory.  I installed Win XP pro with SP2.  I also have a eVGA 6800 GT card.  Everything works fine, surf the internet, and play games.  Problem I have is, that when I goto shut it down it starts to shutdown but it then will reboot instead.  If I keep selecting shutdown it will eventually shutdown.  I hope someone can offer advice to what the problem is, and offer a fix.  Thanks
    My Specs:
    AMD Athlon 64 3500+ Processor Socket 939
    MSI K8N Neo2 Platinum
    Kingston HyperX KHX3200K2/512 512MB Kit DDR400 PC3200
    eVGA (256-A8-N344-AX) GeForce 6800 GT AGP 8X 256MB
    Western Digital Raptor WD740GD 74GB Serial ATA 10,000RPM
    Seagate Barracuda ATA V ST380023AS 80GB Serial ATA 7200RPM
    Sony DRU700A Double Layer DVD+RW Drive
    Sony CD Writer/DVD drive
    Creative Labs Sound Blaster Audigy 2 ZS Sound Card
    Antec TruePower True430 430W Power Supply

    Go to Control Panel > System > Advanced > Startup and Recovery > Settings
    and  make sure "Automatically Restart" is unchecked.
    Its possible you are getting a Blue Screen stop error for some reason.   Doing the above will enable you to check if that is the case.
    Chip

  • Desperate: K8N Neo2 Platinum won't work!!

    Bought myself a new motherboard, processor and memory and it just won't work!
    Searched this forum for a solution, but  haven't found one yet.
    Try to install Windows XP, but it just won't start.
    I now get an error code 0x80040507.
    Before that, it just rebooted again and again.
    My configuration:
    MSI K8N Neo2 Platinum
    AMD Athlon 64 3500+ Winchester core
    2x512 Corsair Twinx1024-3200
    Prim. master: HDD 40 Gb Seagate U100/72 ATA
    Prim. slave   : DVD-RW NEC ND-3500
    Sec. master  : HDD 160 Gb Maxtor Diamond Max Plus 9  ATA
    Sec. slave    : DVD-R from LG
    PSU: Antec 350W, model SL350P (+5V=35A, +12V=16A, +3,3V=28A, -5V=0,5A, -12V=0,8A, +5V=2.0A)
    Sapphire 9800 Atlantis Pro 128Mb
    PCI-1 : empty
    PCI-2 : Hauppauge WinTV PVR250
    PCI-3 : Linksys wireless network card (model WMP11)
    PCI-4 : Creative Soundcard SB Live 1024
    Do I need a new PSU?? or is there another problem?

    AMD recommends a PSU with atleast 24a on the 12v rail. This does not mean your PSU won't hack it, it just means that as a rule of thumb, it's not supposed to.
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    I tried searching microsoft's knowledge base for your error and nothing turned up that had anything to do with windows installation errors. Are you sure you copied the error down correctly?
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    If all memtests' run successfully, you are now ready to install windows. If windows doesn't install correctly, you probably have a botched BIOS setting somewhere (like aggressive memory timings) or something similiar that's stopping you from successfully installing windows.
    Buy a new PSU  

  • MSI K8N Neo2 Platinum and Venice E6

    Hi!
    I have just bought an MSI K8N Neo2 Platinum motherboard and an AMD Athlon64 3000+ processor with Venice E6 core (ADA3000DAA4BW).
    Will this mobo boot with that processor? Or do i have to use a Winchester to flash the BIOS first? Personal experiences would be helpful!
    Andres.

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    You shouldn't need to use a Winchester, some X2 processors would be recognized as earlier X1 models until the newer bios was installed. I think you should be OK with the 1.9 bios. I have the San Diego 4000+ and my board, one month old, came with the 1.9 bios installed.

  • MSI K8N Neo2 Platinum power

    I am gonna buy the K8N Neo2 Platinum board and I was wondering if my current power supply could handle the new board and my 6800 ultra.  This is my current power supply:
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    If its not good enough, anyone have a suggestion on a new one?

    Quote
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    vanish
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  • K8N Neo2 Platinum 54G BIOS problem

    I recently bought a MSI K8N Neo2 Platinum-54G mainboard with W7025NMS v1.3  092204 revision of BIOS.
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    Aggressive Timings and Dynamic Overclocking values are [Disabled] (processor working on its defaulf settings); Spread Spectrum is [Disabled] while all DRAM Configuration settings are set to [Auto].
    While entering HT frequency settings, (locked to [x5])  there are no other values to select – empty, and there is no way to leave it (ESC doesn’t help, the only thing possible to do is to reset the computer by pressing the Reset button on the chassis), but  the HT frequency settings were enabled when I loaded Fail-Safe settings, offering [1x], [1.5x], [2x], [2.5x], [3x], [4x], [5x].
    Adjust CPU Ratio settings offer only [StartUp], [x4]~[x9] values, but as I understood by reading the manual there should be [StartUp], [x4]~[x20].
    CPU Voltage, Memory Voltage and AGP Voltage are set to default.
    CPU-Z, as well as SiSoft Sandra 2004 and SiSoft Sandra 2005 and MSI CORE CELL show that processor works at a core speed ~1005MHz, showing multiplier locked on x5.0 and HTT locked at ~200MHz, while the voltage is ~1.05V!
    I downloaded the latest BIOS revision (v1.4), did the BIOS flash, but the problem remains!
    Anybody, help!

    Quote
    HT frequency
    is a known fault in bios & is easily sorted Bas HT Bios Error
    Quote
    CPU Ratio settings
    AMD64 CPOU's have a lock on CPU ratios which varies according to the specification of the chip. therefore the multiplier available in your bios stops at the max multiplier allowed by amd for your cpu.
    As an example i'm running a 3200 754 which has a maximum muliplier of 11 so that is the max i see in bios.
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