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Intel Core 2 overclocking Reference
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<blockquote data-quote="fallenzeraphine" data-source="post: 1766544" data-attributes="member: 76400"><p><span style="font-family: 'Verdana'"><span style="font-size: 10px">Most people here at EK have Intel Core 2 Processors, This article is for those who have the proper hardware, dedication, and the will to push their systems to the limit and <strong>is meant as a reference for overclocking which contains detailed descriptions of technical names that you might encounter</strong>, overclocking is a fun thing to do but as always there are a lot of risks involved with it and you might end up with your expensive and hard earned hardware damaged beyond repair, so first ill start this article with the Risks involved</span></span></p><p><span style="font-family: 'Verdana'"><span style="font-size: 10px"></span></span></p><p><span style="font-family: 'Verdana'"><span style="font-size: 10px"></span></span></p><p> <span style="font-family: 'Verdana'"><span style="font-size: 10px"><strong><u>Things that can go wrong when you overclock your System</u></strong></span></span> <ul> <li data-xf-list-type="ul"><span style="font-family: 'Verdana'"><span style="font-size: 10px">Overclocking the CPU means pushing your whole system to its limits, not only the CPU, because CPU clock is interconnected to every data path of the system, when you increase the front side bus, all the other busses connected to it will increase in frequency simultaneously, this includes the PCI bus, PCI Express bus, AGP bus, Memory Bus, the lot.</span></span></li> </ul> <ul> <li data-xf-list-type="ul"><span style="font-family: 'Verdana'"><span style="font-size: 10px"><span style="font-family: 'Symbol'">·</span>Your CPU can over heat and fail if you OC it without proper cooling and with High Voltages</span></span></li> </ul> <ul> <li data-xf-list-type="ul"><span style="font-family: 'Verdana'"><span style="font-size: 10px"><span style="font-family: 'Symbol'">·</span>You will void any warranty for the CPU if you overclock it</span></span></li> </ul> <ul> <li data-xf-list-type="ul"><span style="font-family: 'Verdana'"><span style="font-size: 10px"><span style="font-family: 'Symbol'">·</span>CPU’s life might reduce</span></span></li> </ul> <ul> <li data-xf-list-type="ul"><span style="font-family: 'Verdana'"><span style="font-size: 10px"><span style="font-family: 'Symbol'">·</span>System RAM might over heat and fail if the RAM can’t handle increased clock speeds and Reduced timings</span></span></li> </ul> <ul> <li data-xf-list-type="ul"><span style="font-family: 'Verdana'"><span style="font-size: 10px"><span style="font-family: 'Symbol'">·</span>Your expensive VGA card might take damage if the PCE clock remain high for extended periods of time</span></span></li> </ul> <ul> <li data-xf-list-type="ul"><span style="font-family: 'Verdana'"><span style="font-size: 10px"><span style="font-family: 'Symbol'">·</span>All other Peripheral cards might fail if they can’t handle the increased clocks</span></span></li> </ul><p><span style="font-family: 'Verdana'"><span style="font-size: 10px">So do Overclocking at your own risk, but remember that the above mentioned things never happens or happens very rarely if you do it the right way.</span></span></p><p><span style="font-family: 'Verdana'"><span style="font-size: 10px"></span></span></p><p><span style="font-family: 'Verdana'"><span style="font-size: 10px"></span></span></p><p> <span style="font-family: 'Verdana'"><span style="font-size: 10px"><strong><u>Terminology</u></strong></span></span></p><p><span style="font-family: 'Verdana'"><span style="font-size: 10px"></span></span></p><p><span style="font-family: 'Verdana'"><span style="font-size: 10px"></span></span></p><p> <span style="font-family: 'Verdana'"><span style="font-size: 10px">In this section ill describe some technical words you will encounter throughout your OC adventures, in detail.</span></span></p><p><span style="font-family: 'Verdana'"><span style="font-size: 10px"></span></span></p><p><span style="font-family: 'Verdana'"><span style="font-size: 10px"></span></span> <ul> <li data-xf-list-type="ul"><span style="font-family: 'Verdana'"><span style="font-size: 10px"><strong>Front Side Bus (FSB)</strong> – Front Side Bus is the name of the data transfer bus that carries information between the CPU and the Northbridge, it is the main interconnect that link the CPU to the rest of the system, this bus plays the major role of deciding the CPU frequency as it is a Multiple of the FSB frequency (explained later)<br /> <br /> </span></span></li> <li data-xf-list-type="ul"><span style="font-family: 'Verdana'"><span style="font-size: 10px"><strong>Northbridge (NB) or Memory Controller Hub (MCH)</strong> - The northbridge typically handles communications between the CPU, RAM, AGP or PCI Express, and the southbridge. The north bridge playes a Major role on how far you can push the FSB frequency and the RAM Frequency, Older the MCH on your motherboard harder it gets to overclock you system, <strong>an important thing to remember about modern FSB frequency is they are usually Double pumped or Quad pumped this means they actually transfer twice or four times the amount of data per clock, for an Example a FSB of 1066 MHz is actually working at the base frequency of 266 MHz and is Quad Pumped, means its processing Four times the data per clock, you should always use this base frequency to calculate the CPU frequency . Below are some FSB frequencies for Core 2 systems and corresponding base frequencies.</strong></span></span></li> </ul> <ul> <li data-xf-list-type="ul"><span style="font-family: 'Verdana'"><span style="font-size: 10px">800 MHz effective/ Base Frequency is 200 MHz/ Quad Pumped<br /> <br /> </span></span></li> <li data-xf-list-type="ul"><span style="font-family: 'Verdana'"><span style="font-size: 10px">1066 MHz Effective/ Base Frequency is 266 MHz/ Quad Pumped<br /> <br /> </span></span></li> <li data-xf-list-type="ul"><span style="font-family: 'Verdana'"><span style="font-size: 10px">1333 MHz Effective/ Base Frequency is 333 MHz/ Quad Pumped<br /> <br /> </span></span></li> <li data-xf-list-type="ul"><span style="font-family: 'Verdana'"><span style="font-size: 10px">1600 MHz Effective/ Base Frequency is 400 MHz/ Quad Pumped</span></span></li> </ul> <ul> <li data-xf-list-type="ul"><span style="font-family: 'Verdana'"><span style="font-size: 10px"><strong>CPU Multiplier</strong> - (or clock multiplier or bus/core ratio) is the ratio of CPU clock rate to front side bus or northbridge clock speed. A system with a CPU multiplier of 10x will have its CPU execute 10 complete cycles for every cycle of its FSB. In simple theory higher you can set the CPU multiplier easier it gets to overclock a system, A multiplier unlocked processor is the Nirvana for Overclockers but they are extremely expensive, The CPU speed is calculated as <strong>FSB Base Frequency x CPU Multiplier = CPU Frequency</strong></span></span></li> </ul><p><span style="font-family: 'Verdana'"><span style="font-size: 10px"><strong>[FONT=&quot]DRAM Frequency –</strong></span></span>[/FONT][FONT=&quot]<span style="font-family: 'Verdana'"><span style="font-size: 10px"> For this guide I will be focusing only on DDR2 RAM, DDR2 Ram comes with many frequencies and they are all double pumped so the base frequency of any DDR2 ram can be calculated by dividing the effective frequency by two, here is a Table containing the standard Spec for DDR2 RAM. Table is from Wikipedia.</span></span></p><p><span style="font-family: 'Verdana'"><span style="font-size: 10px"></span></span></p><p><span style="font-family: 'Verdana'"><span style="font-size: 10px"><img src="http://img518.imageshack.us/img518/1354/ddr2specnm6.jpg" alt="" class="fr-fic fr-dii fr-draggable " style="" /></span></span></p><p><span style="font-family: 'Verdana'"><span style="font-size: 10px"></span></span></p><p>[/FONT] <ul> <li data-xf-list-type="ul"><span style="font-family: 'Verdana'"><span style="font-size: 10px"><strong>EIST (Enhanced Intel SpeedStep)</strong> this is a technology that used on Intel processors to save power during the CPU is idle, EIST automatically Reduce CPU multiplier when the CPU is idle or not under heavy load, <strong>When overclocking you should always disable this feature from the BIOS menu.<br /> <br /> </strong></span></span></li> <li data-xf-list-type="ul"><span style="font-family: 'Verdana'"><span style="font-size: 10px"><strong>C1E (Enhanced Halt State) </strong>this is a Throttling technology that reduce heat output of the CPU when it’s under load. <strong>Always Disable this when overclocking for maximum Stability<br /> <br /> </strong></span></span></li> <li data-xf-list-type="ul"><span style="font-family: 'Verdana'"><span style="font-size: 10px"><strong>TM2 (Thermal Monitor 2) </strong>This is in par with EIST and should always be Disabled from BIOS for Maximum performance and stability<br /> <br /> </span></span></li> <li data-xf-list-type="ul"><span style="font-family: 'Verdana'"><span style="font-size: 10px"><strong>TCase – </strong>Tcase is the Estimated CPU temperature in the Middle of the Integrated Heat Spreader of a Core 2 Processor, the Maximum value for this Varies between different processor models and core Revisions, and it’s not measured using a thermal sensor, it is guessed by the motherboard so it is not reliable, always use the <strong>Tjunction</strong> temperature (see below) to properly monitor the heat output of your CPU<br /> <br /> </span></span></li> <li data-xf-list-type="ul"><span style="font-family: 'Verdana'"><span style="font-size: 10px"><strong>Tjunction – </strong>Tjunction temperature is measured using two digital Thermal Diodes located on Each physical core of a Intel Core 2 processor, and is the most reliable method to measure the heat output of a Core 2, Maximum Tjunction Temperature varies between 85C and 100C between different Core2 models and Core revisions, AT NO TIME A CPU SHOULD EXCEED THIS LIMIT FOR EXTENDED AMOUNTS OF TIME. When a Core 2 reaches this critical temperature it shuts itself down using the integrated Thermal Switch to Reduce damage. </span></span></li> <li data-xf-list-type="ul"><span style="font-family: 'Verdana'"><span style="font-size: 10px"><strong>Vcore –</strong> VCore is the Voltage that the CPU is operating, it varies between different models and core revisions. This is the most critical setting that corresponds to heat production of the CPU.<br /> <br /> </span></span></li> <li data-xf-list-type="ul"><span style="font-family: 'Verdana'"><span style="font-size: 10px"><strong>VDIMM –</strong> Voltage of the DDR2 ram, Standard is 1.8 Volts<br /> <br /> </span></span></li> <li data-xf-list-type="ul"><span style="font-family: 'Verdana'"><span style="font-size: 10px"><strong>Memory Timings – </strong>Memory timings can be useful to push the RAM little bit harder specially if they are value RAM here are the timings that we will touch on this guide,</span></span></li> </ul> <ul> <li data-xf-list-type="ul"><span style="font-family: 'Verdana'"><span style="font-size: 10px"><strong>CL -</strong> CAS Latency Time: The time it takes between a command having been sent to the memory and when it begins to reply to it. It is the time it takes between the processor asking for some data from the memory and it returning it. <strong>Lower this value higher the memory speed will be, but it will hinder maximum frequency the RAM can reach, higher values allows the RAM to clock Higher but will result in reduced performance.<br /> <br /> </strong></span></span></li> <li data-xf-list-type="ul"><span style="font-family: 'Verdana'"><span style="font-size: 10px"><strong>TRCD - </strong>DRAM RAS# to CAS# Delay: The number of clock cycles performed between activating the Row Access Strobe and the Column Access Strobe. This parameter relates to the time it takes to access stored data. <strong>Again</strong> <strong>Lower this value higher the memory speed will be, but it will hinder maximum frequency the RAM can reach, higher values allows the RAM to clock Higher but will result in reduced performance.<br /> <br /> </strong></span></span></li> <li data-xf-list-type="ul"><span style="font-family: 'Verdana'"><span style="font-size: 10px"><strong>TRP - </strong>DRAM RAS# Precharge: The amount of time between the 'precharge' command and the 'active' command. The precharge command closes memory that was accessed and the active command signifies that a new read/write cycle can begin.<br /> <br /> </span></span></li> <li data-xf-list-type="ul"><span style="font-family: 'Verdana'"><span style="font-size: 10px"><strong>TRAS - </strong>Active to Precharge delay: The total time that will elapse between an active state and precharge state. This is the sum of the previous timings: CL + TRCD + TRP</span></span></li> </ul> <ul> <li data-xf-list-type="ul"><span style="font-family: 'Verdana'"><span style="font-size: 10px"><strong>FSB to DRAM Ratio – </strong>This is the FSB frequency relative to the DRAM frequency, it should be 1:1 to achieve maximum performance on Core2 processors, a 1:1 Ratio means if your Base FSB frequency is 400 MHz (1600 MHz Effective) also you DRAM Base clock should be 400MHz (800 MHz Effective), <strong>hence one of the main limiting factors of your overclock will be your RAM and how Fast it can operate, I recommend that you have at least 800MHz (PC 6400)RAM to overclock with maximum stability and performance</strong></span></span></li> </ul><p><span style="font-family: 'Verdana'"><span style="font-size: 10px"><strong><u>Thermal Monitoring of Core 2 Processors</u></strong></span></span></p><p></p><p></p><p> <span style="font-family: 'Verdana'"><span style="font-size: 10px">The best way to detect your Processors Tjunction max temperature is to use the Software tool CoreTemp, it automatically detect the Tjunction of any Core 2 CPU, the trick is not letting the Cores get close to this maximum temperature by a delta of at least 15C</span></span></p><p><span style="font-family: 'Verdana'"><span style="font-size: 10px"></span></span></p><p><span style="font-family: 'Verdana'"><span style="font-size: 10px"></span></span></p><p> <span style="font-family: 'Verdana'"><span style="font-size: 10px"><strong><u>Tools you will need</u></strong></span></span> <ul> <li data-xf-list-type="ul"><span style="font-family: 'Verdana'"><span style="font-size: 10px"><a href="http://www.alcpu.com/CoreTemp/CoreTemp.zip" target="_blank">CoreTemp</a> – to monitor the Tjunction Temperature</span></span></li> <li data-xf-list-type="ul"><span style="font-family: 'Verdana'"><span style="font-size: 10px"><a href="http://www.almico.com/speedfan433.exe" target="_blank">SpeedFan</a> – monitoring the Fan speeds and various temperatures</span></span></li> <li data-xf-list-type="ul"><span style="font-family: 'Verdana'"><span style="font-size: 10px"><a href="http://sp2004.fre3.com/beta/orthos_exe_20060420.cab" target="_blank">Orthos</a> – for stress testing the CPU, for your system to be considered stable you should be able to run this program for at least 12 hours without generating any errors</span></span></li> <li data-xf-list-type="ul"><span style="font-family: 'Verdana'"><span style="font-size: 10px"><a href="http://www.cpuid.com/download/cpuz_144.zip" target="_blank">CPU-Z</a> – Viewing information about the CPU clock, voltage, memory timings</span></span></li> </ul><p><span style="font-family: 'Verdana'"><span style="font-size: 10px">Hope you got something out of this article and thank you for reading.</span></span></p><p><span style="font-family: 'Verdana'"><span style="font-size: 10px"></span></span></p><p><span style="font-family: 'Verdana'"><span style="font-size: 10px"><strong> © Zeraphine/2008-04-04</strong></span></span></p><p><span style="font-family: 'Verdana'"><span style="font-size: 10px"></span></span></p></blockquote><p></p>
[QUOTE="fallenzeraphine, post: 1766544, member: 76400"] [FONT=Verdana][SIZE=2]Most people here at EK have Intel Core 2 Processors, This article is for those who have the proper hardware, dedication, and the will to push their systems to the limit and [B]is meant as a reference for overclocking which contains detailed descriptions of technical names that you might encounter[/B], overclocking is a fun thing to do but as always there are a lot of risks involved with it and you might end up with your expensive and hard earned hardware damaged beyond repair, so first ill start this article with the Risks involved[/SIZE][/FONT] [FONT=Verdana][SIZE=2] [/SIZE][/FONT] [FONT=Verdana][SIZE=2][B][U]Things that can go wrong when you overclock your System[/U][/B][/SIZE][/FONT][LIST] [*][FONT=Verdana][SIZE=2]Overclocking the CPU means pushing your whole system to its limits, not only the CPU, because CPU clock is interconnected to every data path of the system, when you increase the front side bus, all the other busses connected to it will increase in frequency simultaneously, this includes the PCI bus, PCI Express bus, AGP bus, Memory Bus, the lot.[/SIZE][/FONT][/LIST][LIST] [*][FONT=Verdana][SIZE=2][FONT=Symbol]·[/FONT]Your CPU can over heat and fail if you OC it without proper cooling and with High Voltages[/SIZE][/FONT][/LIST][LIST] [*][FONT=Verdana][SIZE=2][FONT=Symbol]·[/FONT]You will void any warranty for the CPU if you overclock it[/SIZE][/FONT][/LIST][LIST] [*][FONT=Verdana][SIZE=2][FONT=Symbol]·[/FONT]CPU’s life might reduce[/SIZE][/FONT][/LIST][LIST] [*][FONT=Verdana][SIZE=2][FONT=Symbol]·[/FONT]System RAM might over heat and fail if the RAM can’t handle increased clock speeds and Reduced timings[/SIZE][/FONT][/LIST][LIST] [*][FONT=Verdana][SIZE=2][FONT=Symbol]·[/FONT]Your expensive VGA card might take damage if the PCE clock remain high for extended periods of time[/SIZE][/FONT][/LIST][LIST] [*][FONT=Verdana][SIZE=2][FONT=Symbol]·[/FONT]All other Peripheral cards might fail if they can’t handle the increased clocks[/SIZE][/FONT][/LIST][FONT=Verdana][SIZE=2]So do Overclocking at your own risk, but remember that the above mentioned things never happens or happens very rarely if you do it the right way.[/SIZE][/FONT] [FONT=Verdana][SIZE=2] [/SIZE][/FONT] [FONT=Verdana][SIZE=2][B][U]Terminology[/U][/B][/SIZE][/FONT] [FONT=Verdana][SIZE=2] [/SIZE][/FONT] [FONT=Verdana][SIZE=2]In this section ill describe some technical words you will encounter throughout your OC adventures, in detail.[/SIZE][/FONT] [FONT=Verdana][SIZE=2] [/SIZE][/FONT][LIST] [*][FONT=Verdana][SIZE=2][B]Front Side Bus (FSB)[/B] – Front Side Bus is the name of the data transfer bus that carries information between the CPU and the Northbridge, it is the main interconnect that link the CPU to the rest of the system, this bus plays the major role of deciding the CPU frequency as it is a Multiple of the FSB frequency (explained later) [/SIZE][/FONT] [*][FONT=Verdana][SIZE=2][B]Northbridge (NB) or Memory Controller Hub (MCH)[/B] - The northbridge typically handles communications between the CPU, RAM, AGP or PCI Express, and the southbridge. The north bridge playes a Major role on how far you can push the FSB frequency and the RAM Frequency, Older the MCH on your motherboard harder it gets to overclock you system, [B]an important thing to remember about modern FSB frequency is they are usually Double pumped or Quad pumped this means they actually transfer twice or four times the amount of data per clock, for an Example a FSB of 1066 MHz is actually working at the base frequency of 266 MHz and is Quad Pumped, means its processing Four times the data per clock, you should always use this base frequency to calculate the CPU frequency . Below are some FSB frequencies for Core 2 systems and corresponding base frequencies.[/B][/SIZE][/FONT][/LIST][LIST] [*][FONT=Verdana][SIZE=2]800 MHz effective/ Base Frequency is 200 MHz/ Quad Pumped [/SIZE][/FONT] [*][FONT=Verdana][SIZE=2]1066 MHz Effective/ Base Frequency is 266 MHz/ Quad Pumped [/SIZE][/FONT] [*][FONT=Verdana][SIZE=2]1333 MHz Effective/ Base Frequency is 333 MHz/ Quad Pumped [/SIZE][/FONT] [*][FONT=Verdana][SIZE=2]1600 MHz Effective/ Base Frequency is 400 MHz/ Quad Pumped[/SIZE][/FONT][/LIST][LIST] [*][FONT=Verdana][SIZE=2][B]CPU Multiplier[/B] - (or clock multiplier or bus/core ratio) is the ratio of CPU clock rate to front side bus or northbridge clock speed. A system with a CPU multiplier of 10x will have its CPU execute 10 complete cycles for every cycle of its FSB. In simple theory higher you can set the CPU multiplier easier it gets to overclock a system, A multiplier unlocked processor is the Nirvana for Overclockers but they are extremely expensive, The CPU speed is calculated as [B]FSB Base Frequency x CPU Multiplier = CPU Frequency[/B][/SIZE][/FONT][/LIST][FONT=Verdana][SIZE=2][B][FONT="]DRAM Frequency –[/B][/SIZE][/FONT][SIZE=2][B][/B][/SIZE][/FONT][FONT="][FONT=Verdana][SIZE=2] For this guide I will be focusing only on DDR2 RAM, DDR2 Ram comes with many frequencies and they are all double pumped so the base frequency of any DDR2 ram can be calculated by dividing the effective frequency by two, here is a Table containing the standard Spec for DDR2 RAM. Table is from Wikipedia. [IMG]http://img518.imageshack.us/img518/1354/ddr2specnm6.jpg[/IMG] [/SIZE][/FONT] [/FONT][LIST] [*][FONT=Verdana][SIZE=2][B]EIST (Enhanced Intel SpeedStep)[/B] this is a technology that used on Intel processors to save power during the CPU is idle, EIST automatically Reduce CPU multiplier when the CPU is idle or not under heavy load, [B]When overclocking you should always disable this feature from the BIOS menu. [/B][/SIZE][/FONT] [*][FONT=Verdana][SIZE=2][B]C1E (Enhanced Halt State) [/B]this is a Throttling technology that reduce heat output of the CPU when it’s under load. [B]Always Disable this when overclocking for maximum Stability [/B][/SIZE][/FONT] [*][FONT=Verdana][SIZE=2][B]TM2 (Thermal Monitor 2) [/B]This is in par with EIST and should always be Disabled from BIOS for Maximum performance and stability [/SIZE][/FONT] [*][FONT=Verdana][SIZE=2][B]TCase – [/B]Tcase is the Estimated CPU temperature in the Middle of the Integrated Heat Spreader of a Core 2 Processor, the Maximum value for this Varies between different processor models and core Revisions, and it’s not measured using a thermal sensor, it is guessed by the motherboard so it is not reliable, always use the [B]Tjunction[/B] temperature (see below) to properly monitor the heat output of your CPU [/SIZE][/FONT] [*][FONT=Verdana][SIZE=2][B]Tjunction – [/B]Tjunction temperature is measured using two digital Thermal Diodes located on Each physical core of a Intel Core 2 processor, and is the most reliable method to measure the heat output of a Core 2, Maximum Tjunction Temperature varies between 85C and 100C between different Core2 models and Core revisions, AT NO TIME A CPU SHOULD EXCEED THIS LIMIT FOR EXTENDED AMOUNTS OF TIME. When a Core 2 reaches this critical temperature it shuts itself down using the integrated Thermal Switch to Reduce damage. [/SIZE][/FONT] [*][FONT=Verdana][SIZE=2][B]Vcore –[/B] VCore is the Voltage that the CPU is operating, it varies between different models and core revisions. This is the most critical setting that corresponds to heat production of the CPU. [/SIZE][/FONT] [*][FONT=Verdana][SIZE=2][B]VDIMM –[/B] Voltage of the DDR2 ram, Standard is 1.8 Volts [/SIZE][/FONT] [*][FONT=Verdana][SIZE=2][B]Memory Timings – [/B]Memory timings can be useful to push the RAM little bit harder specially if they are value RAM here are the timings that we will touch on this guide,[/SIZE][/FONT][/LIST][LIST] [*][FONT=Verdana][SIZE=2][B]CL -[/B] CAS Latency Time: The time it takes between a command having been sent to the memory and when it begins to reply to it. It is the time it takes between the processor asking for some data from the memory and it returning it. [B]Lower this value higher the memory speed will be, but it will hinder maximum frequency the RAM can reach, higher values allows the RAM to clock Higher but will result in reduced performance. [/B][/SIZE][/FONT] [*][FONT=Verdana][SIZE=2][B]TRCD - [/B]DRAM RAS# to CAS# Delay: The number of clock cycles performed between activating the Row Access Strobe and the Column Access Strobe. This parameter relates to the time it takes to access stored data. [B]Again[/B] [B]Lower this value higher the memory speed will be, but it will hinder maximum frequency the RAM can reach, higher values allows the RAM to clock Higher but will result in reduced performance. [/B][/SIZE][/FONT] [*][FONT=Verdana][SIZE=2][B]TRP - [/B]DRAM RAS# Precharge: The amount of time between the 'precharge' command and the 'active' command. The precharge command closes memory that was accessed and the active command signifies that a new read/write cycle can begin. [/SIZE][/FONT] [*][FONT=Verdana][SIZE=2][B]TRAS - [/B]Active to Precharge delay: The total time that will elapse between an active state and precharge state. This is the sum of the previous timings: CL + TRCD + TRP[/SIZE][/FONT][/LIST][LIST] [*][FONT=Verdana][SIZE=2][B]FSB to DRAM Ratio – [/B]This is the FSB frequency relative to the DRAM frequency, it should be 1:1 to achieve maximum performance on Core2 processors, a 1:1 Ratio means if your Base FSB frequency is 400 MHz (1600 MHz Effective) also you DRAM Base clock should be 400MHz (800 MHz Effective), [B]hence one of the main limiting factors of your overclock will be your RAM and how Fast it can operate, I recommend that you have at least 800MHz (PC 6400)RAM to overclock with maximum stability and performance[/B][/SIZE][/FONT][/LIST][FONT=Verdana][SIZE=2][B][U]Thermal Monitoring of Core 2 Processors[/U][/B][/SIZE][/FONT] [FONT=Verdana][SIZE=2]The best way to detect your Processors Tjunction max temperature is to use the Software tool CoreTemp, it automatically detect the Tjunction of any Core 2 CPU, the trick is not letting the Cores get close to this maximum temperature by a delta of at least 15C[/SIZE][/FONT] [FONT=Verdana][SIZE=2] [/SIZE][/FONT] [FONT=Verdana][SIZE=2][B][U]Tools you will need[/U][/B][/SIZE][/FONT][LIST] [*][FONT=Verdana][SIZE=2][URL="http://www.alcpu.com/CoreTemp/CoreTemp.zip"]CoreTemp[/URL] – to monitor the Tjunction Temperature[/SIZE][/FONT] [*][FONT=Verdana][SIZE=2][URL="http://www.almico.com/speedfan433.exe"]SpeedFan[/URL] – monitoring the Fan speeds and various temperatures[/SIZE][/FONT] [*][FONT=Verdana][SIZE=2][URL="http://sp2004.fre3.com/beta/orthos_exe_20060420.cab"]Orthos[/URL] – for stress testing the CPU, for your system to be considered stable you should be able to run this program for at least 12 hours without generating any errors[/SIZE][/FONT] [*][FONT=Verdana][SIZE=2][URL="http://www.cpuid.com/download/cpuz_144.zip"]CPU-Z[/URL] – Viewing information about the CPU clock, voltage, memory timings[/SIZE][/FONT][/LIST][FONT=Verdana][SIZE=2]Hope you got something out of this article and thank you for reading. [B] © Zeraphine/2008-04-04[/B] [/SIZE][/FONT] [/QUOTE]
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