Wut. What does this have to do with Zen 6?
Yonah(Core(1)M) - Conroe(Core 2) IPC +15-25%.Sandy over Nehalem was childs play my man. Conroe over Netburst was like +85% IPC gain. By far the biggest jump in the last 25+ years.
Core for core MT gains, Zen + to Zen 2 was + 28% from 2950X to 3950X, and only 20% from 2700X to 3700X in Cinebench R20, while going Zen 3 to Zen 4 you got much more. But sure, if you want to compare a 2700X to a 3950X you are getting >100%MT there. I dont think we'll get 100% for 9950X to 11950X, but >75% in some highly threaded apps is certainly plausible. Core for Core MT, I think it will be the biggest gains in Zen history, due to the 2 node jump (if thats true).With 50% more cores and 1.7-1.75x expected better MT it s definitly no, it wont match the Zen/Zen+ to Zen 2 transition.
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AMD Ryzen 9 3950X im Test: Benchmarks in Anwendungen und Spielen
AMD Ryzen 9 3950X im Test: Benchmarks in Anwendungen und Spielen / Benchmarks in Anwendungen / Benchmarks in Spielen (Full HD und UHD)www.computerbase.de
Nothing, it's the usual conversation creep that comes from people derailing threads during a leaks/news shortage. The mods will clean it up if anyone complains enough.Wut. What does this have to do with Zen 6?
Banias was much more significant than that. It was 30% over Coppermine P3, so it would be probably ~20% against Tualatin. Yonah got barely anything, and it was mostly about making a proper dual core. Core-wise, Yonah is a tick. 5% average at most. You can go look at the uarch. It changed almost nothing in Yonah.Netbrust(Pentium 4) - Pentium III(Tualtin) IPC+~15-40%
Netbrust(Pentium 4) - Banias(Pentium M) IPC +~20-50%
Netbrust(Pentium 4) - Yonah(Core(1)M) IPC +~40-60%
You are thinking 2 node jump in the FinFET era. The GAAFET era will bring a lot less gains. Density gains for example plummets from 100% to just 30%.Core for core MT gains, Zen + to Zen 2 was + 28% from 2950X to 3950X, and only 20% from 2700X to 3700X in Cinebench R20, while going Zen 3 to Zen 4 you got much more. But sure, if you want to compare a 2700X to a 3950X you are getting >100%MT there. I dont think we'll get 100% for 9950X to 11950X, but >75% in some highly threaded apps is certainly plausible. Core for Core MT, I think it will be the biggest gains in Zen history, due to the 2 node jump (if thats true).
Conroe(2006) -> ivy bridge (2012) = intels golden era, banger after banger
Then completely fell off the cliff 🤣
Yeah, Haswell-U was a market-breaker.We could include Haswell in that golden period. Jim Keller said he liked Haswell.
No, Im thinking 2 node jump which supposedly enables ~6.5GHz max core freq. If thats true, its the same step change as Zen 3 to Zen 4, which also enables much higher all core frequencies. Power may have to increase yet again, but a 30%-45% MT jump from freq increase, +10% from IPC, and another 35% from 50% more cores would get you to the 75%+ MT gains scenario.You are thinking 2 node jump in the FinFET era. The GAAFET era will bring a lot less gains. Density gains for example plummets from 100% to just 30%.
We could include Haswell in that golden period. Jim Keller said he liked Haswell.
Yeah, Haswell-U was a market-breaker.
Nice Cope there were some good chips in between them like Kaby Lake U(i5-8250U) i had one the chip was pretty efficient as long as MB Vendor set sane limits challenge impossible and MTL has battery competitive with Phoenix.The whole U 15W idea since 2013 was an absolute failure. CPUs at that time were just not fast enough to run the basic stuff - windows 7 - efficient enough. ULW only became efficient in the last few years: Lunar lake is Intel's first FAST ULW chip. all previous were ass incl meteor lake etc
💲💲Man, you guys are bringing back memories. I was always an oddball once I had spending money.
I bought the q6600 when it first came out, the 2600k, Threadripper 1950X, and have bought every AMD 16 core processor except X3D and Zen 5 since (getting 9950X3D soon, need a better board)
I also always bought double the memory that everyone else did at any given time.
Man, you guys are bringing back memories. I was always an oddball once I had spending money.
I bought the q6600 when it first came out, the 2600k, Threadripper 1950X, and have bought every AMD 16 core processor except X3D and Zen 5 since (getting 9950X3D soon, need a better board)
I also always bought double the memory that everyone else did at any given time.
Man, you guys are bringing back memories. I was always an oddball once I had spending money.
I bought the q6600 when it first came out, the 2600k, Threadripper 1950X, and have bought every AMD 16 core processor except X3D and Zen 5 since (getting 9950X3D soon, need a better board)
I also always bought double the memory that everyone else did at any given time.
Do you even internet?Nope. All U models from haswell gen4 to gen10 were total ass 😂 awful to run. Maybe just 1 hour of extra battery life traded with permanent ultra-stutters...
The whole U 15W idea since 2013 was an absolute failure. CPUs at that time were just not fast enough to run the basic stuff - windows 7 - efficient enough. ULW only became efficient in the last few years: Lunar lake is Intel's first FAST ULW chip. all previous were ass incl meteor lake etc
"IPC" itself increases power consumption. You are lucky if you get 10% power increase for 10% perf increase. Usually the ratio is worse such as 10% perf and 25% power increase. You'd be lucky if you get 60% improvement in embarassingly parallel code.No, Im thinking 2 node jump which supposedly enables ~6.5GHz max core freq. If thats true, its the same step change as Zen 3 to Zen 4, which also enables much higher all core frequencies. Power may have to increase yet again, but a 30%-45% MT jump from freq increase, +10% from IPC, and another 35% from 50% more cores would get you to the 75%+ MT gains scenario.
Absolutely not, haswell was the beginning of the end
1. Barely any improvement https://www.notebookcheck.net/Review-Intel-Haswell-Processors.93189.0.HTML previous gen Ivy bridge is even faster in some benches
2. Mobile market was FLOODED with the awful 15w U models designed for maximum stuttering.