Intel's 800MHz FSB & AMD's 400MHz FSB

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In summary, Front-side bus (FSB) is the speed at which the CPU can access the computer's RAM and it is a critical factor in the overall system performance. However, it is important to make sure that the RAM can also run at a fast speed, as a fast FSB would be useless if the RAM cannot keep up. Additionally, the speed of RAM cannot be accurately described by a single number, as it depends on various factors.
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What is FSB? How is it critical to the whole system's performance? Is it to do with RAM ?
 
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Front-side bus: it's the speed at which your CPU can access the computer's RAM. It's fairly important for your overall system performance. But:

1) A really fast FSB is useless if your memory can't run that fast. Really fast RAM can get really expensive, so make sure you check that out.

2) RAM speed, just like CPU speed, can't be described by just a single number. 800mhz RAM could be way more or way less than twice as fast as 400mhz RAM, depending on various things.
 
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FSB stands for Front Side Bus and it refers to the communication pathway between the CPU (Central Processing Unit) and the rest of the system, including RAM (Random Access Memory), I/O (Input/Output) devices, and other components. It is critical to the whole system's performance as it determines the speed at which data can be transferred between the CPU and other components.

In the case of Intel's 800MHz FSB and AMD's 400MHz FSB, the higher the FSB speed, the faster the data can be transferred, resulting in better overall system performance. This is because the CPU can access data from other components more quickly, reducing the time it takes for tasks to be completed.

FSB is not directly related to RAM, but it does affect its performance indirectly. A higher FSB speed means that the CPU can access data from RAM more quickly, resulting in faster data transfer and improved overall system performance. However, the speed of RAM itself is determined by its own frequency, which is measured in MHz or GHz.

In conclusion, FSB plays a crucial role in the overall performance of a computer system by determining the speed at which data can be transferred between the CPU and other components. It is not directly related to RAM, but it does have an impact on its performance.
 

1. What is the difference between Intel's 800MHz FSB and AMD's 400MHz FSB?

The main difference between Intel's 800MHz FSB (Front Side Bus) and AMD's 400MHz FSB is the speed at which they transfer data between the CPU and the rest of the computer. The higher the FSB frequency, the faster the data can be transferred, resulting in improved overall performance and responsiveness.

2. Which one is better, Intel's 800MHz FSB or AMD's 400MHz FSB?

It is difficult to say which one is better as it depends on the specific needs and usage of the computer. Intel's 800MHz FSB may provide better performance for tasks that require high data transfer rates, such as gaming or video editing. On the other hand, AMD's 400MHz FSB may be more suitable for basic everyday tasks.

3. Does the FSB frequency affect the performance of the processor?

Yes, the FSB frequency does affect the performance of the processor. A higher FSB frequency allows for faster data transfer between the CPU and other components, resulting in better overall performance.

4. Can I upgrade the FSB frequency of my computer?

It depends on the motherboard of your computer. If the motherboard supports a higher FSB frequency, then it is possible to upgrade it. However, it is important to note that upgrading the FSB frequency may also require upgrading other components such as the CPU and RAM.

5. How does the FSB frequency affect the overall speed of the computer?

The FSB frequency plays a crucial role in determining the speed of a computer. A higher FSB frequency allows for faster data transfer, resulting in improved overall speed and responsiveness of the computer. However, the FSB frequency is not the only factor that affects the speed of a computer, as other components such as the CPU, RAM, and storage also play a role.

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