Media Encoding Performance & Power Consumption

The absolute performance crown under our WME test continues to belong to the E6600, followed by the X2 5000+, but after that it's a fairly close race between the contenders. The E6400 and X2 4800+ are basically equal in performance, with the 4600+ following closely. At the low end of the spectrum, the E6300 outperforms the X2 3800+ but albeit with much higher power consumption.

If we look at absolute power consumption, the X2 3800+ EE SFF can't be beat. Although it's outperformed by every other chip in the test, it consumes at least 20 fewer watts during the benchmark. Power consumption for the rest of the chips is basically equal, with the 90nm X2 5000+ sticking out as the only sore thumb.

Our E6300 sample's combination of high operating voltage and low performance relative to the competition results in it having the worst performance per watt out of the group. The X2 3800+ SFF comes in second to last in this metric due to its lower performance. Meanwhile, the E6600 places first, the 65nm X2 5000+ is in second place, closely followed by Intel's Core 2 Duo E6400 and the 65nm X2 4800+.

Windows Media Encoder Advanced Profile Performance

Windows Media Encoder Power Usage

Windows Media Encoder Performance per Watt

DivX performance favors Intel much more than our WME test, as the top three performance spots go to Intel. There's no performance difference between AMD's 90nm and 65nm chips in this test as both 5000+ CPUs are tied at 6.66 fps.

The absolute power advantage goes, once again, to the X2 3800+ EE SFF. Our 65nm 4800+ sample draws a bit less power than the 5000+ and even manages to draw less than the 90nm 4600+ EE. Unfortunately with no great power advantages and mid-range performance, the top three in the performance per watt category belong to Intel.

DivX 6.4 with Xmpeg 5.0.3 Performance

DivX 6.4 with Xmpeg 5.0.3 Power Usage

DivX 6.4 with Xmpeg 5.0.3 Performance per Watt

The Test Media Encoding Performance & Power Consumption - Continued
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