Procesory AMD

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Procesory AMD Procesory AMD Mariusz Nowak 2019 Gniazdo PGA Socket AM2 • Liczba pinów: 940 • Rok wprowadzenia: 2006 • Magistrale: FSB 200 MHz, HyperTransport 2.0 • Obsługa kontrolera pamięci DDR2 zintegrowanego z procesorem • Athlon 64, Sempron, Opteron, Phenom Gniazdo PGA Socket AM2+ • Liczba pinów: 940 • Rok wprowadzenia: 2007 • Magistrale: FSB 200 MHz, HyperTransport 3.0 (2.6 GHz) • Obsługa procesorów 1-, 2-, 3-, 4-rdzeniowych • Athlon 64, Athlon II, Opteron, Phenom, Phenom II Gniazdo PGA Socket AM3 • Liczba pinów: 941 • Rok wprowadzenia: 2009 • Magistrale: FSB 200 MHz, HyperTransport 3.0 (2.6 GHz) • Obsługa DDR3 • Athlon II, Phenom II, Sempron, Opteron Gniazdo PGA Socket AM4 • Liczba pinów: 1331 • Rok wprowadzenia: 2016 • Obsługa DDR4, PCIe 3.0 i 4.0 • Wsparcie dla architektury ZEN (procesory Ryzen, Athlon) Gniazdo LGA Socket TR4 • Liczba pinów: 4094 • Rok wprowadzenia: 2017 • Obsługa DDR4 (8 modułów, 4 kanały), PCIe 3.0 i 4.0 • Wsparcie dla architektury ZEN (super wydajne procesory Ryzen Threadripper) Oznaczenia najnowszych procesorów AMD (Zen) Zapotrzebowanie na energię Nazwa • (brak) - komputer stacjonarny Ryzen 5 3 5 50 H • U - komputer przenośny handlowa • X - wysoka częstotliwość taktowania • WX - duża ilość rdzeni • G - z układem graficznym • E - obniżone zapotrzebowanie na energię (komputer stacjonarny) • M - obniżone zapotrzebowanie na Seria Generacja Wydajność Numer energię (komputer przenośny) • H - wysokowydajny komputer • 3 (mała wydajność) • 1 • 9 (ekstremalna) modelu przenośny • 5 (średnia wydajność) • 2 • 8 (najwyższa) procesora • 7 (wysoka wydajność) • 3 • 6-7 (wysoka) • Threadripper • 4-5 (średnia) (najwyższa wydajność) • 1-3 (mała) Parametry procesorów AMD • Mikroarchitektura • Liczba rdzeni / liczba wątków • Rozmiar pamięci podręcznej (L1, L2, L3) • Częstotliwość taktowania rdzenia (rdzeni) procesora • Zintegrowany układ graficzna • Rodzaj gniazda procesora • Technologia wykonania • Pobór mocy (TDP) • Zastosowane technologie Dane techniczne procesorów AMD https://www.amd.com/pl/partner/ processor-specifications Najpopularniejsze technologie i rozwiązania AMD • HyperTransport - łącze typu Point-to-Point (punkt do punktu) umożliwiające szybką transmisję między dwoma urządzeniami (np. między procesorami). Opracowane w celu zastąpienia FSB. Wersja HyperTransport Częstotliwość magistrali Maksymalna przepustowość 1.0 800 MHz 12,8 GB/s 2.0 1400 MHz 22,4 GB/s 3.0 2600 MHz 41,6 GB/s 3.1 3200 MHz 51,2 GB/s • SMT (ang. Simultaneous Multi-Threading) - czyli wielowątkowość. Do każdego fizycznego rdzenia procesora system operacyjny przypisuje dwa procesory wirtualne (logiczne). Służy zwiększeniu wydajności obliczeń prowadzonych równolegle. (odpowiednik technologii HT Intela) Najpopularniejsze technologie i rozwiązania AMD SenseMI - zestaw technologii w które są wyposażone procesory Ryzen: • Precision Boost - dostosowuje częstotliwość taktowanie rdzeni w czasie rzeczywistym, bez przerywania aktualnej pracy • XFR (ang. Extended Frequency Range) - pozwala na dodatkowe zwiększenie częstotliwości taktowania, jeśli procesor ma odpowiednią rezerwę energetyczno- cieplną (turbo) • Neural Net Prediction - technologia oparta o sztuczną inteligencję, procesor uczy się przewidywania kolejnych operacji do wykonania • Pure Power - technologia oparta o sieć czujników, która pozwala na uzyskanie tej samej wydajności przy zmniejszonym poborze mocy • Smart Prefetch - technologia służy do przewidywania jakich danych może potrzebować dana aplikacja Najpopularniejsze technologie i rozwiązania AMD • Architekutra Zen - rdzenie procesora są tak zaprojektowane, aby efektywnie wykorzystywać dostępne zasoby mikroarchitektury dla optymalnej wydajności obliczeniowej • AMD Ryzen Master Utility - oprogramowanie umożliwiające manipulowanie częstotliwością napięciem poszczególnych rdzeni procesora, a także pamięci DDR. • Aplikacja umożliwia również monitorowanie parametrów pracy procesorów AMD Ryzen.
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