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Overclock with rivatuner.
Generally, novices can steadily exceed 650 1500MHz
However, the maximum can exceed 700 1700MHz, and at this time, 3DMark05 exceeds 10,000.
If you want to run a large DX10 game, it is still not recommended to use this graphics card, and it is still very depressing to run DX10 games with 8600GT.
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Overclocking is not only related to the graphics card, the motherboard, the power supply has a great impact, it is recommended that you fill in the information of other hardware.
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Don't overdo it. The standard frequency is around 1440MHz, and 1500 is about the same. The stability is stronger than anything else, and it's not cost-effective if it's super bad! If you really want to go to the next rivaturner.
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It is not recommended to overclock, if you have a professional, you can try it, or change the hardware, if you overclock, it is easy to overbreak, and it depends on what power supply you have, add a fan, etc. If you use it, it's okay not to overdo it.
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CPU overclocking, the current related technology motherboard, usually when the CPU has a serious abnormality, will effectively protect the CPU. For example, alarm, automatic shutdown, restart, at least fail, there will not be much loss.
But if the graphics card is overclocked, if it fails, it can easily be a puff of smoke, which means that you may be telling your graphics card for nothing in an instant. So personal advice, don't go for overclocking graphics cards. The stakes are enormous.
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What age are you still overclocking? It's all pretty cheap and get a new one.
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Graphics card overclocking is the purpose of improving performance by increasing the operating frequency of the graphics card's cores and video memory. Similar to CPU overclocking, the main means are to change the voltage and frequency of the core and video memory, and if you want to achieve a higher stable frequency, you must also strengthen the heat dissipation system of the graphics card. But no matter how you do it, overclocking can cause irreversible damage to your graphics card.
Graphics card overclocking is generally divided into two types: hardware overclocking and software overclocking.
Hardware overclocking increases the frequency of the AGP bus by increasing the external frequency of the system, and can add voltage to the AGP when appropriate. However, the difficulty and risk of hardware overclocking are relatively large, and improper operation can easily lead to machine burnout. Compared to hardware overclocking, software overclocking is relatively safe and easy to use, and is mostly used by most overclockers.
How it works. The main ways to overclock software are to modify the registry to turn on the hidden overclocking options and set the overclocking directly, or to use special software to increase the memory frequency.
1 It is best to install the public driver provided by the graphics chip developer, rather than the driver provided by the graphics card manufacturer, because the latter is often based on the former, which can cause some problems when working with overclocking software.
2 The vast majority of tests have proven that core overclocking significantly improves overall graphics card performance over memory overclocking at the same magnitude. However, in some special cases, such as the wide shrinkage of the graphics card's video memory and the large amount of fill texture data, the video memory overclocking effect will be more obvious than the core overclocking.
3 The frequency of cores and memory should be kept at a certain rate, and a unilateral increase in frequency that is too high will not result in a significant performance increase. This is because overclocking the core can improve the polygon generation ability and pixel filling ability of the graphics card per unit time, shorten the modeling and rendering cycle, and increase the memory frequency can make the graphics card work efficiently under the core to ensure that the data "throughput" of the "logistics" part will not be overwhelmed. Therefore, it can theoretically be deduced that in most cases, increasing the core frequency will significantly improve the performance of the graphics card, and at the same time, it can be inferred that because the video memory bit width is in the "logistics" position, if the increase in the memory frequency far exceeds the increase in the core frequency, that is, when the core frequency cannot meet the application, it will not bring performance gains.
I really don't mind, and there's no need for that.
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It depends on the physique of the graphics card itself. If it can be stable by more than 20%, it means that your graphics card is in good shape. You also need to pay attention to the voltage, and if you want to be superb, you have to work the voltage. However, CPU memory overvoltages have also been seen. There are relatively few motherboards where the graphics card can overvoltage.
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Looking at the video memory system, the general A card driver comes with an overclocking function, and the N card needs to install NV overclocking software.
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I'll tell you about it: the graphics card.
It is a precision electronic instrument, and if the BAI is overclocked, it will damage the hard.
Du piece, zhi gains outweigh losses! The overclocking of the graphics card depends on many objective factors: the heat dissipation of the graphics card, the physique of the graphics card chip, and ......You can test it first, the temperature of the graphics card when gaming, if it is high, it is not recommended to overclock, if the heat dissipation performance is good, you can appropriately increase the core frequency by 10% 17%.
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Graphics cards are generally OK with a 5% overclocking core.
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Overclocking is to exceed the original frequency of computer overclocking, for example, when we are running, such as running at a speed of 5 meters s, but after a while, you want to run faster to finish the route, then you have to accelerate the run, then your speed is adjusted to 7 meters s, your speed is significantly accelerated. During this time, your cadence picks up. That's a little overclocking in our lives.
Therefore, the same is true for computer super, which is to speed up its operation and make it run faster!!
Overclocking software provides you with DIY players to test the stability of the computer, test the performance of the graphics card, CPU stability and other software, and also provides the tools needed for the overclocking of the graphics card and CPU, so that you can overclock the computer more conveniently! If you like overclocking, let the overclocking tool help you!
Summary of overclocking failures.
Phenomenon 1: The system can be started, but it crashes when running large software, and it is fast and slow. Analysis and Resolution:
At this point, your system has reached a bottleneck, and if you can't slightly reduce the CPU frequency, you should stabilize it by increasing the voltage and increasing the heat dissipation.
Phenomenon 2: The computer can boot, but cannot enter the operating system. Analysis and Resolution: Your computer is on the verge of not booting, and you should reduce the overclocking amplitude to achieve stability.
Phenomenon 3: The computer cannot be started and the screen is completely black. Analysis and solution: The super is too high, resulting in frequent errors in CPU operations and cannot work normally, don't be too greedy, less than a little over.
Symptom 4: The system can be started, but the screen is patchy from time to time. Analysis and solution: If the graphics card can't withstand it, consider reducing the overclocking amplitude of the graphics card or the overclocking amplitude of the bus.
Symptom 5: Other boards in the system are not working properly. But the system is stable.
Analysis and solution: If your motherboard is poorly designed, the electromagnetic interference will increase after overclocking, which will affect the working stability of the board.
Finally, it is necessary to reiterate the principle of overclocking, which is reasonable overclocking, moderate overclocking, if the system is unstable because of the blind pursuit of overclocking, it is better not to overclock, it is more comfortable to use it stably. After all, computers are for us to use, not to experiment.
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The current graphics card overclocking is not good, the frequency of the factory is already very high, and if you really want to overclock, you can only exceed it a little, and the performance is very little, and the graphics card will burn out.
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Today's graphics cards don't have any overclocking potential, they are all overclocked to a very high level before they leave the factory, and some of them have even exceeded their heads.
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The graphics card can not be overclocked at will, you need to look at the physique of the graphics card, the graphics card chip is super good, you can overclock up to 15, and the general one can only be overclocked 5-10.
Because now GTX1060 6G has long been a non-public version of the product, itself has been overclocked, although the manufacturer's non-public version of overclocking is limited, and I want to overclock it significantly, and there is not much improvement.
So now there isn't much need for overclocking the graphics card.
Overclocking of a computer is to increase the working frequency of hardware such as CPU, graphics card, and memory through the overclocking method of the computer operator, so that they can work stably at a frequency higher than their rated rate, so as to improve the working speed of the computer. The English name of overclocking is "over clock", which is a technical means to obtain performance beyond the rated frequency by adjusting the hardware settings to increase the main frequency of the chip. Take the AMD Phenom II X4 955 black box CPU as an example, its rated operating frequency is Hertz), as a native quad-core processor, it can steadily exceed the 4GHz air-cooled limit frequency through software alone, and the system can run stably, completing a successful overclocking.
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