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System Name | Hotbox |
---|---|
Processor | AMD Ryzen 7 5800X, 110/95/110, PBO +150Mhz, CO -7,-7,-20(x6), |
Motherboard | ASRock Phantom Gaming B550 ITX/ax |
Cooling | LOBO + Laing DDC 1T Plus PWM + Corsair XR5 280mm + 2x Arctic P14 |
Memory | 32GB G.Skill FlareX 3200c14 @3800c15 |
Video Card(s) | PowerColor Radeon 6900XT Liquid Devil Ultimate, UC@2250MHz max @~200W |
Storage | 2TB Adata SX8200 Pro |
Display(s) | Dell U2711 main, AOC 24P2C secondary |
Case | SSUPD Meshlicious |
Audio Device(s) | Optoma Nuforce μDAC 3 |
Power Supply | Corsair SF750 Platinum |
Mouse | Logitech G603 |
Keyboard | Keychron K3/Cooler Master MasterKeys Pro M w/DSA profile caps |
Software | Windows 10 Pro |
If you're going to go that technical, please pay some attention to punctuation and presenting your argument. I normally understand that stuff, but I can't make heads nor tails of your post.(...)
That's cause rx580 was just going overboard with clocks to gain anything over 1060. When I said polaris, I meant rx480.
Yet Vega 56 matches the RX480 - and isn't clocked as high as the 64. Again: Vega is pushed to its limit in terms of clocks, just like RX 5XX polaris, and is thus very, very similar in terms of clock scaling and perf/W.
Well, that begs the question why AMD's arch needs so much more memory bandwidth than Nvidia's for the same performance. I'm not saying you're wrong, but I don't think it's that simple. Also, if memory bandwidth was the real limitation (and there's no architectural max limit on CUs), releasing 7nm Vega 20 (with 4x HBM2) would make sense. Yet that's not happening. I'm choosing to interpret that as a sign, but you're of course welcome to disagree here. At the very least, it'll be interesting to see the CU count of Vega 20.Not a hard limit, a memory chokepoint limit. People that mined with the card overclocked the memory and underclocked the core because there's not enough bandwidth to supply 64 CUs. Fury X was starved too. Vega 64 only has a little bit more bandwidth than Fury X.