Intel's Pentium Extreme Edition 955: 65nm, 4 threads and 376M transistors
by Anand Lal Shimpi on December 30, 2005 11:36 AM EST- Posted in
- CPUs
Power Consumption and The Test
When we went to go measure power consumption on our Pentium EE 955 platform, we were met with some extremely troubling results. Not only did we not see the power consumption figures that we originally saw with Presler and Cedar Mill a couple of months back, but power consumption was actually higher at 65nm than it was at 90nm. We contacted Intel and were assured that the problem had to do with an issue with our motherboard and a new motherboard is en-route to us now. When we do receive the new motherboard, we will take a look at power consumption once more to get an idea of the final state of Intel's 65nm power consumption, but until then, we don't want to draw any conclusions based on what we've seen.
The Test
When we went to go measure power consumption on our Pentium EE 955 platform, we were met with some extremely troubling results. Not only did we not see the power consumption figures that we originally saw with Presler and Cedar Mill a couple of months back, but power consumption was actually higher at 65nm than it was at 90nm. We contacted Intel and were assured that the problem had to do with an issue with our motherboard and a new motherboard is en-route to us now. When we do receive the new motherboard, we will take a look at power consumption once more to get an idea of the final state of Intel's 65nm power consumption, but until then, we don't want to draw any conclusions based on what we've seen.
The Test
CPU: | AMD Athlon 64 X2 4800+ (2.4GHz/1MBx2) AMD Athlon 64 X2 3800+ (2.0GHz/512KBx2) AMD Athlon 64 FX-57 (2.8GHz/1MB) Intel Pentium Extreme Edition 955 (3.46GHz/2MBx2) Intel Pentium Extreme Edition 840 (3.2GHz/1MBx2) Intel Pentium D 820 (2.8GHz/1MBx2) |
Motherboard: | ASUS A8N-SLI Deluxe Intel BadAxe 975X |
Motherboard BIOS: | ASUS: Version 1013 Dated 08/10/2005 |
Chipset: | NVIDIA nForce4 SLI Intel 975X |
Chipset Drivers: | nForce4 6.70 Intel 7.0.0.1020 |
Memory: | OCZ PC3500 DDR 2-2-2-7 DDR2-667 5-5-5-15 |
Video Card: | ATI Radeon X1800 XT |
Video Drivers: | ATI Catalyst 5.13 |
Desktop Resolution: | 1280 x 1024 - 32-bit @ 60Hz |
OS: | Windows XP Professional SP2 |
84 Comments
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skunkbuster - Friday, December 30, 2005 - link
cramitpal is that you?coldpower27 - Friday, December 30, 2005 - link
This is the Pentium Extreme Edition of course it's price is going to be 999US.If you want cheaper Presler cores, wait for the Pentium D 920 to 950 line to com out in Mid January.
Betwon - Friday, December 30, 2005 - link
INQ says Presler 920 will be about 240$.It is very interesting that PD820 defeat FX-57 in a SMP game.
phaxmohdem - Friday, December 30, 2005 - link
Let's recap, the X2 4800+ was ahead in most tests, and at worst could probably be called the 955 EE's equivilent....
955EE = $999
4800+ = ~$785
Yeah, I'd definately recommend "sticking with AMD for now and re-evaluating Intel's offerings when Conroe arrives."
Did anyone else notice how the lowly 3800+ did better in most gaming scenarios?
955EE = $999
3800+ = ~$315
Tasty :)
GhandiInstinct - Friday, December 30, 2005 - link
LOL, honestly your post is the only necessary post here. It compares and contrats the two perfectly in terms of which is a better buy, given the reader has seen all of the benchmarks in which the 4800 beats the 955EE.Intel just can't win because of EGO.
Anemone - Friday, December 30, 2005 - link
Kudos because no matter where you sat personally you seemed to have called the shots fairly. I'd agree with the conclusion as well, that you are either Conroe or A64, that the P4 is an overdue dead end. It performs well, but it is hot and uses lots of electricity to do so. Overclocking wasn't needed because, quite frankly the X2 chips oc too, and you'd find they probably do it better.Socket M2 is again, something you "should" wait for if you can, as is Conroe. These are heavy recomendations, you really would be very smart to wait for these two things. Barring that, given the better of two bad options (meaning you have to upgrade now when you should be waiting), AMD is the better choice, partially for the power consumption, partially for the "less of a dead end than a P4" issue.
Still, heavy, heavy emphasis on "you should wait", as a complete changeover is going on with both AMD and Intel and your ability to perform minor upgrades 1-2 years from now will depend on waiting patiently for a few more months.
:)
JarredWalton - Friday, December 30, 2005 - link
Socket M2 doesn't appear to be anything special. Why wait 6 months for a 5% performance boost and a RAM change? Just like waiting for Prescott ended up being much ado about nothing, M2 isn't going to be wildly different from today's 939 chips. Get a good socket 939 system with an X2 and SLI, and you should be set for at least 18 months.Calin - Tuesday, January 3, 2006 - link
I don't find SLI important - except for the possibility to run two top of the line video cards. And increased speed won't come from higher RAM speed - not so much anyway in order to keep you waiting.I just wonder how long will the Socket 939 be kept - considering that the value line is the cheaper Socket 754 (cheaper in having a single memory channel, so half as many lines to memory banks). Or if Socket 754 will be abandoned before Socket 939, or if Socket M2/2 (single channel DDR2 memory) will appear.
nserra - Friday, December 30, 2005 - link
Two cores on the same packing is an excellent idea!Will amd do that with m2?
Could lower the dual core price and even at 90nm could put 2 dual core processors on the same packing and build a 4 core processor (fake one, but 4 cores there).
ViRGE - Friday, December 30, 2005 - link
The problem with 2 physical cores is that you're forgoing any sort of on-die communication benefits by doing so. It's certainly cheaper for Intel to make things this way, but it's a poor way to go for performance, as it makes it harder for the cores to quickly send data to each other and share resources. It's certainly a valid solution(especially given how Intel didn't have any inter-core communication even when both cores were on the same die), but ultimately a combined die for inter-core communication is superior for performance and scaling.