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20. Februar 2005

Test: Intels neue Pentium 4 der 600-Serie (13/30)

64-Bit, 2 MB L2-Cache und SpeedStep
Autor: Thomas Hübner

Encoding

Lame 3.96.1

  • Offizielle Website: lame.sourceforge.net

  • Download: Freenet.de

    • Kostenpunkt: Freeware

  • Was benchen wir?

    • Komprimieren einer Wave-Datei in MP3: "Iron Butterfly - In-A-Gadda-DA-Vida" CD Rip, 17,04 Minuten, 180,75MB.

    • Besondere Einstellungen: bitrate 192kbit / joint stereo, optimization; quality, VBR: 320kbit, Quality 0

Razorlame (Lame 3.96.1)

A64 FX-55 (2,6 GHz, 130 nm, HT1000)
01:34
P4 EE 3,46 GHz (130 nm, FSB1066)
01:36
P4 EE 3,40 GHz (130 nm, FSB800)
01:37
P4 570J (3,8 GHz, 90 nm, FSB800)
01:37
P4 EE 3,73 GHz (90 nm, FSB1066)
01:39
A64 3800+ (2,4 GHz, 130 nm, HT1000)
01:42
A64 4000+ (2,4 GHz, 130 nm, HT1000)
01:42
P4 560 (3,6 GHz, 90 nm, FSB800)
01:43
P4 660 (3,6 GHz, 90 nm, FSB800)
01:43
P4 660 (3,6 GHz, 90 nm, FSB800) mit EIST
01:43
P4 3,06 GHz (130 nm, FSB533)
01:48
P4 550 (3,4 GHz, 90 nm, FSB800)
01:49
P4 650 (3,4 GHz, 90 nm, FSB800)
01:50
A64 3500+ (2,2 GHz, 130 nm, HT1000)
01:51
A64 3500+ (2,2 GHz, 90 nm, HT1000)
01:51
A64 3500+ (2,2 GHz, 90 nm, HT1000) mit CnQ
01:53
P4 540 (3,2 GHz, 90 nm, FSB800)
01:56
A64 3200+ (2,0 GHz, 90 nm, HT1000)
02:02
A64 3200+ (2,0 GHz, 130 nm, HT1000)
02:03
P4 530 (3,0 GHz, 90 nm, FSB800)
02:04
P4 520 (2,8 GHz, 90 nm, FSB800)
02:12
A64 3000+ (1,8 GHz, 130 nm, HT1000)
02:16
A64 3000+ (1,8 GHz, 90 nm, HT1000)
02:16
P4 2,00 GHz (130 nm, FSB400)
02:50
Angaben in Minuten, Sekunden

Ogg Vorbis 1.1.0

  • Offizielle Website: Vorbis.com

  • Download: Rarewares.org (OggdropXPd 1.7.11 mit libVorbis v1.1.0)

    • Für AMD: Version P3/AMD
    • Für Intel: Version P4

    • Kostenpunkt: Freeware

  • Was benchen wir?

    • Komprimieren einer Wave-Datei in OGG-Vorbis mittels Ogg-Drop: "Iron Butterfly - In-A-Gadda-DA-Vida" CD Rip, 17,04 Minuten, 180,75 MB.

    • Besondere Einstellungen: nominal Bitrate 320 kbps (Quality 9)

OggdropXP (Ogg Vorbis 1.1.0)

P4 570J (3,8 GHz, 90 nm, FSB800)
00:53
P4 EE 3,73 GHz (90 nm, FSB1066)
00:53
P4 EE 3,46 GHz (130 nm, FSB1066)
00:54
P4 EE 3,40 GHz (130 nm, FSB800)
00:55
P4 660 (3,6 GHz, 90 nm, FSB800) mit EIST
00:55
P4 560 (3,6 GHz, 90 nm, FSB800)
00:56
P4 660 (3,6 GHz, 90 nm, FSB800)
00:56
A64 FX-55 (2,6 GHz, 130 nm, HT1000)
00:57
P4 550 (3,4 GHz, 90 nm, FSB800)
00:59
P4 650 (3,4 GHz, 90 nm, FSB800)
00:59
A64 4000+ (2,4 GHz, 130 nm, HT1000)
01:01
P4 3,06 GHz (130 nm, FSB533)
01:01
A64 3800+ (2,4 GHz, 130 nm, HT1000)
01:02
P4 540 (3,2 GHz, 90 nm, FSB800)
01:03
A64 3500+ (2,2 GHz, 90 nm, HT1000)
01:06
A64 3500+ (2,2 GHz, 130 nm, HT1000)
01:07
P4 530 (3,0 GHz, 90 nm, FSB800)
01:07
A64 3500+ (2,2 GHz, 90 nm, HT1000) mit CnQ
01:07
P4 520 (2,8 GHz, 90 nm, FSB800)
01:11
A64 3200+ (2,0 GHz, 90 nm, HT1000)
01:13
A64 3200+ (2,0 GHz, 130 nm, HT1000)
01:17
A64 3000+ (1,8 GHz, 130 nm, HT1000)
01:21
A64 3000+ (1,8 GHz, 90 nm, HT1000)
01:21
P4 2,00 GHz (130 nm, FSB400)
01:42
Angaben in Minuten, Sekunden

In Kooperation mit Lycos Europe Network