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下表列出了三个测试的成绩,分别是原始频率的测试,以及将FSB上升到1600MHz,而主频保持不变,用来测试单纯的FSB提升对性能的影响,最后才是超频到3.2GHz的成绩。最右边显示了主频、FSB都提升后相应项目的成绩提升。
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Inno3D SL7I680A超频性能测试 |
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1066FSB 2.4G DDR2 800 |
1600FSB 2.4G DDR2 800 |
1600FSB 3.2G DDR2 800 |
超频提升 |
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23.0% |
Internet Content Creation Overall |
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28.0% |
Office Productivity Overall |
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18.2% |
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18.9% |
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33.5% |
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31.5% |
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3.80% |
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0.38% |
Everest Ultimate Edition 2006 3.01.652 |
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28.2% |
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49.9% |
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25.4% |
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20.8% |
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33.4% |
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0.8% |
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33.3% |
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32.4% |
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33.3% |
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33.4% |
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31.6% |
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24.8% |
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32.2% |
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32.6% |
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32.1% |
Shading(OpenGL Software Lighting) |
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32.7% |
Shading(OpenGL Hardware Lighting) |
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16.0% |
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14.6% |
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34.5% |
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32.6% |
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32.6% |
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32.8% |
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RAM Bandwidth Int Buff'd iSSE2 |
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33.2% |
RAM Bandwidth Float Buff'd iSSE2 |
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33.4% |
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Memory Latency(Random Access) |
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17.8% |
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13.1% |
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22.7% |
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6.28% |
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26.7% |
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19.2% |
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16.9% |
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11.4% |
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4.59% |
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5.02% |
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32.4% |
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23.2% |
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29.3% |
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176.8 |
-1.12% |
在仅将FSB从1033MHz提升到1600MHz而保持主频不变的测试中,关于CPU本身的运算能力的测试成绩仅仅是有了略微的成长——当然这也不容易了,而在内存相关的项目中则有了不小的提升,带宽明显增大,延迟也有所降低,而WinRAR这样的测试成绩也有了提升,这表明单纯的提升FSB对系统影响还是蛮大的,特别是考虑到未来的4核应用(已经发布了)。
再看主频也提升的测试,CPU和内存相关的理论性能提升约为30%,而综合的测试性能提升大概为20%,SYSMark2004SE这样的工业/商用测试最为典型,这个提升比较明显了,然而其实我们感觉还应该可以超得更高。
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