Ryzen(/ˈrzən/,RY-zən)[3]is a brand[4]ofmulti-corex86-64microprocessorsdesigned and marketed byAdvanced Micro Devices(AMD) for desktop, mobile, server, and embedded platforms based on theZen microarchitecture.It consists ofcentral processing units(CPUs) marketed for mainstream, enthusiast, server, and workstation segments andaccelerated processing units(APUs) marketed for mainstream and entry-level segments andembedded systemsapplications.

Ryzen
General information
LaunchedMarch 2, 2017;7 years ago(2017-03-02)[1]
Marketed byAMD
Designed byAMD
Common manufacturers
Performance
Max.CPUclock rate3.0 GHz to 5.7 GHz
HyperTransportspeeds800 MT/s to 2 GT/s
Architecture and classification
Technology node14 nmto5 nm
Microarchitecture
Instruction setMain processor:
x86-64
Platform Security Processor:
ARM Cortex-A5
Extensions
Physical specifications
Cores
  • Mainstream: 4–16 cores
    HEDT: 8–64 cores
    Workstation: 12–96 cores
GPURadeonGraphics on APUs
Sockets
Variants
History
PredecessorsA-Series
FX
Ryzen 3 PRO 2100GE
Ryzen 3 PRO 2100GE[2]found in some OEM markets in limited quantities

A majority of AMD's consumer Ryzen products use theAM4platform. In August 2017, AMD launched theirRyzen Threadripperline aimed at the enthusiast and workstation markets. Ryzen Threadripper uses different, larger sockets such asTR4,sTRX4,sWRX8,andsTR5which support additionalmemory channelsandPCI Expresslanes. AMD has moved to the newAM5platform for consumer desktop Ryzen with the release ofZen 4products in late 2022.

History

AMD Ryzen 7 3700X top and pins

Background

Ryzen uses the "Zen" CPU microarchitecture, a redesign that returned AMD to the high-end CPU market after a decade of near-total absence since 2006.[5]AMD's primary competitorIntelhad largely dominated this market segment starting from the 2006 release of theirCore microarchitectureand theCore 2 Duo.[6]Similarly, Intel had abandoned their priorPentium 4lineup, as itsNetBurstmicroarchitecture was uncompetitive with AMD'sAthlon XPin terms of price and efficiency, and withAthlon 64&64 X2they were outmatched in terms of raw performance as well.[7]

Until Ryzen's initial launch in early 2017, Intel's market dominance over AMD continued to grow with the launch of the now famous "Intel Core" CPU lineup and branding, as well as the successful rollout of their now well-known"tick-tock"CPU release strategy. That new strategy was most famous for alternating between a new CPU microarchitecture and a new fabrication node each year. Intel followed that release cadence for almost a decade, starting with Intel Core's initial Q3 2006 launch of 65 nm Conroe and continuing until the release of the 14 nmBroadwelldesktop CPUs, which were delayed a year from a planned 2014 launch to Q3 2015. That delay necessitated a refresh of their pre-existing 22 nmHaswellCPU lineup in the form of "Devil's Canyon", and thus officially ended "tick-tock" as a practice.[8][9]Those events proved to be incredibly important for AMD, as Intel's inability to further sustain "tick-tock" was critically important in providing both the initial and continually growing market openings for AMD's Ryzen CPUs and, indeed the Zen CPU microarchitecture as a whole to succeed.

Also of note is the release of AMD'sBulldozer microarchitecturein 2011, which despite being a ground up CPU design like Zen, had been designed and optimized forparallel computingabove all else, leading to starkly inferior real-world performance in any workload that was not highlymulti-threaded,which was still the case for the vast majority at that time. This caused it to be woefully uncompetitive in essentially every area outside of raw multi-thread performance and its use in low power APUs with integratedRadeongraphics.[10]Despite a die shrink and several revisions of the Bulldozer architecture, performance and power efficiency failed to catch up with Intel's competing products.[11]Consequently, all of this forced AMD to completely abandon the entire high-end CPU market (includingdesktop,laptops,andserver/enterprise) until Ryzen's release in 2017.

Ryzen is the consumer-level implementation of the newerZen microarchitecture,a complete redesign that marked the return ofAMDto the high-endcentral processing unit(CPU) market, offering a product range capable of competing with Intel.[12][13]Having more processing cores, Ryzen processors offer greater multi-threaded performance at the same price point relative to Intel's Core processors.[14]The Zen architecture delivers more than +52 percent improvement ininstructions per cycle(clock) over the prior-generation Bulldozer AMD core, without raising electrical power use.[15]The changes to theinstruction set architecturealso addsbinary-code compatibilityto AMD's CPU.[16]

Since the release of Ryzen, AMD's CPU market share has increased while Intel's appears to have stagnated and/or regressed.[17]

Release

AMD announced a new series of processors on December 13, 2016, named "Ryzen", and delivered them in Q1 2017,[4]the first of several generations. The 1000 series featured up to eight cores and sixteen threads, with a +52 percentinstructions per cycle(IPC) increase over their prior CPU products, namely AMD's previous Excavator microarchitecture.[15]

The second generation of Ryzen processors, the Ryzen 2000 series, released in April 2018, featured theZen+microarchitecture. The aggregate performance increased +10 percent (of which approximately +3 percent was IPC and +6 percent was clock frequency).[18]Most importantly, Zen+ fixed the cache and memory latencies that had been major weak points.[19]

The third generation of Ryzen processors launched on July 7, 2019, based on AMD'sZen 2architecture, featuring significant design improvements with a +15 percent average IPC boost, a doubling of floating point capability to a full 256-bit-wide execution data path much likeIntel'sHaswellreleased in 2014,[20]a shift to anmulti-chip module(MCM) style "chiplet" package design, and a further shrink to Taiwan Semiconductor Manufacturing Company (TSMC)'s7 nmfabrication process.

On June 16, 2020 AMD announced new Ryzen 3000XT series processors with increased boost clocks and other small performance enhancements compared to 3000X processors.[21]

On October 8, 2020 AMD announced the Zen 3 architecture for their Ryzen 5000 series processors, featuring a +19 percent IPC improvement over Zen 2, while being built on the same 7 nm TSMC node with out-of-the-box operating boost frequencies exceeding 5 GHz for the first time since AMD's Piledriver.[22]This was followed by an unusually short stop-gap release of Ryzen 6000 mobile-only series processors on January 4, 2022, using the modestly changed Zen 3+ core on a 6 nm process by TSMC, with claims up to +15 percent performance uplift gains from frequency rather than IPC.[23]

The Ryzen 7000 series was released September 27, 2022 for desktops, featuring the new Zen 4 core with a +13 percent uplift in IPC and +15 percent increase in frequency for a claimed nearly +30 percent in single thread performance.[24]The Ryzen 7000 series also features a brand new AM5 socket and usesDDR5memory.

In mid 2024, AMD confirms to announce a new grounds-up redesign of Ryzen named "Zen 5" stemming from a leaked slide by Zen father and legendary chip architect Jim Keller who worked with AMD to release the first Ryzen chips in 2017. Jim Keller, leading the new RISC-V team at Tenstorrent, claims absolute dominance in integer performance in a specific INTSPEC benchmark slide which was taken down.[citation needed]

Threadripper series

Threadripper, which is geared for high-end desktops (HEDT) and professional workstations, was not developed as part of a business plan or a specific roadmap. Instead, a small team inside AMD saw an opportunity to develop the benefits of Ryzen andEPYCCPU roadmaps, so as to give AMD the lead in desktop CPU performance. After some progress was made in their spare time, the project was greenlit and put in an official roadmap by 2016.[25]

Ryzen AI

Ryzen AIis the brand name for AMD's AI technology, based onintellectual propertyfrom AMD's acquisition ofXilinx.[26]AMD Ryzen AI can work across aNeural Processing Unit(NPU) powered byXDNAarchitecture, aRadeongraphics engine, and Ryzen processor cores.[27]Introduced on theRyzen 7040mobile series in mid 2023, it can be used to run neural network applications such as camera background effects, voice recognition, photo artifact removal and skin smoothing.[28]Neural network tasks can be computationally intensive to run on a general-purpose CPU, resulting in significant energy usage and a larger thermal footprint. An AI accelerator is acoprocessorspecifically designed to process neural networks efficiently, similar in concept to other work-offloading specialized processing units such as video decoders[26]orFPGAs.

Software support forMicrosoft Windowswas made widely available in December 2023,[29]while software support forLinuxwas introduced in January 2024.[30]

Product lineup

Ryzen 1000

Desktop

  • Socket AM4for Ryzen andSocket TR4for Ryzen Threadripper.[31][32]
  • Based on first generationZen.Ryzen CPUs based on Summit Ridge architecture. Threadripper based on Whitehaven architecture.
  • 4.8 billiontransistorsper 192 mm2[33]8-core "Zeppelin"die[1]with one die being used for Ryzen and two for Ryzen Threadripper.
  • Stepping:B1[34]
  • Memory support:
    • Ryzendual-channel:DDR4–2666 ×2 single rank, DDR4–2400 ×2 dual rank, DDR4–2133 ×4 single rank, or DDR4–1866 ×4 dual rank.[31][35]
    • Ryzen Threadripperquad-channel:DDR4–2666 ×4 single rank, DDR4–2400 ×4 dual rank, DDR4–2133 ×8 single rank, or DDR4–1866 ×8 dual rank.
  • Instructions sets:x87,MMX,SSE,SSE2,SSE3,SSSE3,SSE4.1,SSE4.2,AES,CLMUL,AVX,AVX2,FMA3,CVT16/F16C,ABM,BMI1,BMI2,SHA.[16]
  • All Ryzen-branded CPUs (except PRO variants) feature unlocked multipliers.
  • AMD's SenseMI Technology monitors the processor continuously and uses Infinity Control Fabric to offer the following features:[31][36][37]
    • Pure Power reduces the entire ramp of processor voltage and clock speed, for light loads.
    • Precision Boost increases the processor voltage and clock speed by 100–200 MHz if three or more cores are active (five or more, in the case of Threadripper, and by 300 MHz); and significantly further when less than three are active (less than five, in the case of Threadripper).[38]
    • XFR (eXtended Frequency Range) aims to maintain the average clock speed closer to the maximum Precision Boost, when sufficient cooling is available.[39]
    • Neural Net Prediction and Smart Prefetch useperceptronbasedneural branch predictioninside the processor to optimize instruction workflow and cache management.
  • Ryzen launched in conjunction with a line ofstock coolers for Socket AM4:the Wraith Stealth, Wraith Spire and Wraith Max. This line succeeds the original AMD Wraith cooler, which was released in mid-2016.[40]The Wraith Stealth is a bundled low-profile unit meant for the lower-end CPUs with a rating for a TDP of 65 W, whereas the Wraith Spire is the bundled mainstream cooler with a TDP rating of 95 W, along with optional RGB lighting on certain models. The Wraith Max is a larger cooler incorporatingheatpipes,rated at 140 W TDP.
  • In December 2019, AMD started producing first generation Ryzen products built using the second generation Zen+ architecture.[41]An example is the Ryzen 5 1600, with new batches having an "AF" identifier instead of its usual "AE", essentially being an underbinned Ryzen 5 2600 with the same specifications as the original Ryzen 5 1600.
Overview of desktop Ryzen 1000 series models
Model line Codename Architecture Core count Integrated graphics
Ryzen Threadripper 1000 Whitehaven Zen (1st gen) 8–16 none
Ryzen 1000 / 1000X Summit Ridge 4–8
Ryzen 1000(AF) Pinnacle Ridge Zen+ 4–6

Ryzen 2000

Desktop

The first Ryzen 2000 CPUs, based on the 12 nmZen+microarchitecture, were announced for preorder on April 13, 2018[42]and launched six days later. Zen+ based Ryzen CPUs are based on Pinnacle Ridge architecture,[43]while Threadripper CPUs are based on the Colfax architecture. The first of the 2000 series of Ryzen Threadripper products, introducing Precision Boost Overdrive technology,[39]followed in August. The Ryzen 7 2700X was bundled with the newWraith Prismcooler.

In January 2018, AMD announced the first two Ryzen desktop APUs with integrated Radeon Vega graphics under the Raven Ridge codename. These are based on first generation Zen architecture. The Ryzen 3 2200G and the Ryzen 5 2400G were released in February.[44]

Overview of desktop Ryzen 2000 series models
Model line Codename Architecture Core count Integrated graphics
Ryzen Threadripper 2000 Colfax Zen+ 12–32 none
Ryzen 2000 / 2000X Pinnacle Ridge 4–8
Ryzen 2000G Raven Ridge Zen (1st gen) 4 Radeon Vega (GCN 5), up to 11CU

Mobile

In May 2017, AMD demonstrated a Ryzen mobile APU with four Zen CPU cores and RadeonVegaGPU.[45]The first Ryzen mobile APUs, codenamed Raven Ridge, were officially released in October 2017.[46]

  • 4.95 billion[47]transistors on a 210 mm2die,[47]based on a modified 14 nm Zeppelin die where four of the cores are replaced by an integrated fifth-generationGCN-based GPU.
  • Precision Boost 2[43]
  • 16 external PCIe 3.0 lanes (four each to chipset and M.2 socket; eight to a PCIe slot). 16 internal PCIe 3.0 lanes for the integrated GPU and on-boardinput/output(I/O).[citation needed]In 2019, AMD released some new dual core Zen mobile parts branded as 300 or 3000, codenamed Dali.
Overview of laptop Ryzen 2000 series models
Model line Codename Architecture Core count Integrated graphics
Ryzen 2000 Raven Ridge Zen (1st gen) 2–4 Radeon Vega (GCN 5), up to 11CU

Embedded

Great Horned Owl

In February 2018 AMD announced the V1000 series of embedded Zen+ Vega APUs, based on the Great Horned Owl architecture, with four SKUs.[48]

Banded Kestrel

In April 2019 AMD announced another line of embedded Zen+ Vega APUs, namely the Ryzen Embedded R1000 series with two SKUs.[49]

Ryzen 3000

Desktop

On May 27, 2019 atComputexinTaipei,AMD launched its third generation Ryzen processors which use AMD'sZen 2architecture. For this generation's microarchitectures, Ryzen usesMatisse,while Threadripper usesCastle Peak.The chiplet design separates the CPU cores, fabricated onTSMC's7FFprocess, and the I/O, fabricated onGlobalFoundries'12LPprocess, and connects them viaInfinity Fabric.[50]The Ryzen 3000 series uses the AM4 socket similar to earlier models and is the first CPU to offerPCI Express 4.0(PCIe) connectivity.[51]The new architecture offers a 15% instruction-per-clock (IPC) uplift and a reduction in energy usage. Other improvements include a doubling of the L3 cache size, a re-optimized L1 instruction cache, a larger micro-operations cache, double the AVX/AVX2 bandwidth, improved branch prediction, and better instruction pre-fetching.[50]The 6, 8 and 12 core CPUs became generally available on July 7, 2019, and 24 core processors were launched in November.[52]

The competingIntel Core i9-10980XEprocessor has only 18 cores and 36 threads. Another competitor, the workstation-orientedIntel Xeon W-3275 and W-3275M,has 28 cores, 56 threads, and cost more when launched.[citation needed]

The 4, 6 and 8 core processors have one core chiplet. The 12 and 16 core processors have two core chiplets. In all cases the I/O die is the same.[50]

The Threadripper 24 and 32 core processors have four core chiplets. The 64 core processor has eight core chiplets. All Threadripper processors use the same I/O die.

Desktop and mobile APUs are based on the Picasso microarchitecture, a 12 nm refresh of Raven Ridge, offering a modest (6 percent) increase in clock speeds (up to an additional 300 MHz maximum boost), Precision Boost 2, an up-to-3-percent increase in IPC from the move to the Zen+ core with its reduced cache and memory latencies, and newly added solderthermal interface materialfor the desktop parts.[53]Fabricated atGlobalFoundries,this givesPicassoan aggregate 10 percent performance uplift from the "original" 14 nm Zen-basedRaven Ridgeseries initially released in 2017.

Overview of desktop Ryzen 3000 series models
Model line Codename Architecture Core count Integrated graphics
Ryzen Threadripper PRO 3000 Castle Peak Zen 2 12–64 none
Ryzen Threadripper 3000 24–64
Ryzen 3000 / 3000X Matisse 4–16
Ryzen 3000G Picasso Zen+ 4 Radeon Vega (GCN 5), up to 11CU

Mobile

In 2019, AMD first released the Ryzen 3000 APUs, consisting only of quad core parts. Then in January 2020, they announced value dual-core mobile parts, codenamed Dalí, including the Ryzen 3 3250U and lower-endAthlon-branded parts.

Overview of laptop Ryzen 3000 series models
Model line Codename Architecture Core count Integrated graphics
Ryzen 3000 Picasso Zen+ 2–4 Radeon Vega (GCN 5), up to 11CU
Ryzen 3 3250U,
Ryzen 3 3200U
Dali Zen (1st gen) 2 Radeon Vega (GCN 5), 3CU

Ryzen 4000

Desktop

The Ryzen 4000 APUs are based on Renoir, a refresh of the Zen 2 Matisse CPU cores, coupled with Radeon Vega GPU cores. They were released only to OEM manufacturers in mid-2020. Unlike Matisse, Renoir does not support PCIe 4.0.[54]

Ryzen PRO 4x50G APUs are the same as 4x00G APUs, except they are bundled a Wraith Stealth cooler and are not OEM-only.[55]It is possible this is a listing mistake, since 4x50G CPUs are unavailable on retail (as of Oct 2020) and PRO SKUs are usually the OEM only parts.

In April 2022, AMD released the Ryzen 5 4600G to retail, and launched the Ryzen 4000 series of CPUs without integrated graphics, for budget-oriented users.[56]Unlike the Ryzen 3000 series CPUs which are based on"Matisse"cores, these new Ryzen 4000 series desktop CPUs are based on"Renoir"cores and are essentiallyAPUswith theintegrated graphicsdisabled.

Overview of desktop Ryzen 4000 series models
Model line Codename Architecture Core count Integrated graphics
Ryzen 4000 Renoir Zen 2 4–6 none
Ryzen 4000G 4–8 Radeon Vega (GCN 5), up to 8CU

Mobile

Zen 2 APUs, based on the 7 nm Renoir microarchitecture, commercialized as Ryzen 4000.[57][58][59]

Overview of laptop Ryzen 4000 series models
Model line Codename Architecture Core count Integrated graphics
Ryzen 4000 Renoir Zen 2 4–8 Radeon Vega (GCN 5), up to 8CU

Embedded

Grey Hawk

In November 2020, AMD announced the V2000 series of embedded Zen 2 Vega APUs.

Ryzen 5000

Desktop

The desktop Ryzen 5000 series, based on theZen 3microarchitecture, was announced on October 8, 2020.[60][61]They use the same 7 nm manufacturing process, which has matured slightly.[62]Mainstream Ryzen 5000 CPUs are codenamedVermeer.Enthusiast/workstation Threadripper 5000 CPUs are codenamedChagall,[63]initially named Ryzen Threadripper 4000 under the codenameGenesis.[64]

In contrast to their CPU counterparts, the APUs consist of single dies with integrated graphics and smaller caches. The APUs, codenamed Cezanne, forgo PCIe 4.0 support to keep power consumption low.[65]

Overview of desktop Ryzen 5000 series models
Model line Codename Architecture Core count Integrated graphics
Ryzen Threadripper PRO 5000 Chagall Zen 3 12–64 none
Ryzen 5000 / 5000X / 5000X3D Vermeer 6–16
Ryzen 7 5700G Cezanne 8 Radeon Vega (GCN 5), up to 8CU
Ryzen 7 5700 none
Ryzen 5 5600G 6 Radeon Vega (GCN 5), up to 8CU
Ryzen 5 5500 none
Ryzen 3 5100 4

Mobile

The 5000 series includes models based on theZen 2microarchitecture (codenameLucienne) andZen 3microarchitecture. The codenames of theZen 3-based mobile APUs areCezannefor the 2021 models andBarcelófor the 2022 models. HX models are unlocked, allowing them to be overclocked if the host device manufacturer has exposed that functionality.Simultaneous multithreading(SMT) is now standard across the lineup unlike the 4000-series Ryzen Mobile.

Overview of laptop Ryzen 5000 series models
Model line Codename Architecture Core count Integrated graphics
Ryzen 7 5700U,
Ryzen 5 5500U,
Ryzen 3 5300U
Lucienne Zen 2 4-8 Radeon Vega (GCN 5), up to 8CU
Ryzen 5000 Cezanne Zen 3 4-8
Barcelo 2-8

Ryzen 6000

Mobile

At CES 2022, AMD announced the Ryzen 6000 mobile series. It is based on theZen 3+architecture, which is Zen 3 on 6 nm with efficiency improvements, and is codenamedRembrandt.Other noteworthy upgrades are RDNA2 based graphics, PCIe 4.0 and DDR5/LPDDR5 support. Ryzen PRO versions of these processors were announced on April 19, 2022[66]and use a 6x50 naming scheme.

Overview of laptop Ryzen 6000 series models
Model line Codename Architecture Core count Integrated graphics
Ryzen 6000 Rembrandt Zen 3+ 6–8 Radeon 6x0M (RDNA 2), up to 12CU

Ryzen 7000

Desktop

AMD Ryzen 9 7900X processor

In May 2022 AMD revealed its roadmap showing the Ryzen 7000 series of processors for release later that year, to be based on theZen 4architecture in 5 nm (codenamedRaphael).[67][68]Included areDDR5andPCIe 5.0support as well as the change to the newAM5socket. On May 23, 2022 at AMD'sComputexkeynote, AMD officially announced the Ryzen 7000 to be released in Fall 2022, showing a 16-core CPU reaching boost speeds of 5.5 GHz and claiming a 15 percent increase in single-thread performance.[69]The initial four models of the Ryzen 7000 series, ranging from Ryzen 5 7600X to Ryzen 9 7950X, were launched on September 27, 2022.[70]

The L2 cache per core is doubled to 1 MB from Zen 3. The I/O die has moved from a 12 nm process to 6 nm and incorporates an integratedRDNA 2GPU with two CUs on all Ryzen 7000 models (except the Ryzen 5 7500F), as well as DDR5 and PCIe 5.0 support.[71][72]DDR4memory is not supported on Ryzen 7000. According to Gamers Nexus, AMD said that the RDNA GPU was intended for diagnostic and office purposes without using a discrete GPU and not for gaming.[73]The operating power of AM5 is increased to 170 W from AM4's 105 W, with the absolute maximum power draw or "Power Package Tracking" (PPT) being 230 W.[74]

The Ryzen Threadripper and Threadripper PRO 7000 series were released on November 21, 2023. Threadripper features up to 64 cores, while Threadripper PRO 7000 features up to 96 cores. These new HEDT and workstation processor lineups both utilize a new socket,sTR5,as well as DDR5 and PCIe 5.0. Two new chipsets have been introduced for the sTR5 socket:TRX50andWRX90.[75][76]

In conversations withGamers Nexusregarding the later Ryzen 7 9800X3D, AMD engineers revealed that in 7000X3D series processors, the 1st-generation V-Cache and accompanying structural silicon above the cores effectively act as a thermal insulator, thus inhibiting cooling of the cores.[77]The cores running hotter thus limited the clock frequencies of 7000X3D series processors, compared to their non-X3D counterparts.[77]The engineers refuted earlier speculation that the temperature of the V-Cache had instead been the limiting factor.[77]

Overview of desktop Ryzen 7000 series models
Model line Codename Architecture Core count Integrated graphics
Ryzen Threadripper PRO 7000 Storm Peak Zen 4 12–96 none
Ryzen Threadripper 7000 24–64
Ryzen 7000 / 7000X / 7000X3D Raphael 6–16 Radeon (RDNA 2), 2CU

Mobile

TheRyzen 7000mobile series initially launched in September 2022 with the Ryzen 7020Mendocinoline of low-end Zen 2 ultra mobile processors.[78]

In early 2023, the rest of the Ryzen 7000 mobile lineup was released, starting with Ryzen 7030, Ryzen 7035, and later Ryzen 7045 and Ryzen 7040 series processors.

TheRyzen 7020series targets the "everyday computing" segment.[79]It is a new Zen 2 design based on 6 nm process andRDNA 2integrated graphics.

TheRyzen 7030series is a refresh of Ryzen 5000 series processors codenamed "Barcelo-R",[80]targeting the "mainstream thin-and-light" segment.[79]

TheRyzen 7035series is a refresh of Ryzen 6000 series processors codenamed "Rembrandt-R",[80]targeting "premium thin-and-light" laptops.[79]

TheRyzen 7040series is a new design based on Zen 4, targeting "elite ultrathin" segment.[79]It integrates a built-in AI accelerator (branded as "Ryzen AI" ) for the first time in an x86 processor,[81]and features RDNA 3 integrated graphics with up to 12 compute units.

TheRyzen 7045series is the top of the range, based on Zen 4. It targets "extreme gaming and creator" laptops, i.e. desktop replacement class laptops,[79]with models providing up to 16 cores. It uses achipletpackage built using a separate CCD and I/OD, the same as those used in Raphael desktop processors.[82]

Altogether, there are four different CPU architectures, and three different GPU architectures used across the various models in the 7000 series lineup.[83]

With the launch of the mobile Ryzen 7000 series, a new CPU model naming system was also introduced, which is used with Ryzen and Athlon mobile processors launching from this point onwards, as follows:[84]

Ryzen/Athlonxabc:

  • x – timeline of creation (7 for 2022, 8 for 2023, etc)
  • a – performance segment (1 for low end, 7 for high-end, 9 for enthusiast, etc)
  • b – Microarchitecture the processor is based on (1 for Zen / Zen+, 3 for Zen 3 / 3+, 4 for Zen 4, 5 for Zen 5, etc)
  • c – feature / minor performance segment (0 for lower segment, 5 for higher segment)

The new naming system has drawn criticism for being overly complex and confusing to consumers.[85][86]Desktop processors continue to use the old naming system.[87]

Overview of laptop Ryzen 7000 series models
Model line Codename Architecture Core count Integrated graphics
Ryzen 7045 Dragon Range Zen 4 6–16 Radeon 610M (RDNA 2), 2CU
Ryzen 7040 Phoenix 4–8 Radeon 7x0M (RDNA 3), up to 12CU
Ryzen 7035 Rembrandt-R Zen 3+ Radeon 6x0M (RDNA 2), up to 12CU
Ryzen 7030 Barcelo-R Zen 3 Radeon Vega (GCN 5), up to 8CU
Ryzen 7020 Mendocino Zen 2 2–4 Radeon 610M (RDNA 2), 2CU

Ryzen 8000

Desktop

On January 8, 2024, AMD announced the Ryzen 8000G series of desktop APUs for the AM5 socket at the 2024 Consumer Electronics Show. These APUs are based on Zen 4 and feature up to 12 CUs of RDNA3 integrated graphics. Furthermore, the upper-end models such as Ryzen 5 8600G and Ryzen 7 8700G feature "Ryzen AI",which is aneural processing unit(NPU) for artificial intelligence PC applications.[88]AMD claims that the integrated graphics in Ryzen 8000G APUs is capable of playing AAA games such as Cyberpunk 2077 and Far Cry 6 at 1080p low settings.[89]

On April 1, 2024, AMD quietly released Ryzen 8000 series processors without integrated graphics, which also use the Zen 4 architecture. These processors are essentially based on the Ryzen 8000G series but with the integrated graphics and NPU disabled. The Ryzen 7 8700F however can provide AI acceleration when paired with a Radeon discrete GPU that supports it.[90]

Overview of desktop Ryzen 8000 series models
Model line Codename Architecture Core count Integrated graphics
Ryzen 8000 Phoenix Zen 4 6–8 none
Ryzen 8000G 4–8 Radeon 7x0M (RDNA 3), up to 12CU

Mobile

A refresh of Ryzen 7040 mobile processors named the Ryzen 8040 and 8045 series were announced on December 6, 2023.[91]These processors feature small firmware and software optimizations for performance and have up to 1.6x faster NPU performance (6 TOPS higher) compared to Ryzen 7040.[92]

Overview of mobile Ryzen 8000 series models
Model line Codename Architecture Core count Integrated graphics
Ryzen 8045
Ryzen 8040
Hawk Point Zen 4 4–8 Radeon 7x0M (RDNA 3), up to 12CU

Ryzen 9000

Desktop

The Ryzen 9000 series of desktop processors, codenamed "Granite Ridge", were announced on June 3, 2024 at aComputexpresentation. Utilizing theZen 5microarchitecture and built on a TSMC4 nmprocess, Granite Ridge features up to 16 cores, uses theAM5socket and has the same up-to-two-CCDs and one I/O die chiplet layout as the direct predecessor line of CPUs, Raphael. The initial lineup consists of four models with no 3D V-Cache variants, like with the Ryzen 7000 series at launch.[93]Ryzen 9000 processors were originally scheduled to launch at the end of July 2024, but had been delayed to early August for quality control reasons.[94]

On October 21, AMD teased that it would launch X3D model(s) (featuring 3D V-Cache) in the series on November 7.[95]On October 31, AMD announced it would release a Ryzen 7 9800X3D processor.[96]The 9800X3D will feature 2nd-generation 3D V-Cache, wherein the V-Cache has been moved from above the CCD to below the CCD.[96]This change is claimed to lower the CCD temperature, thus allowing for higher clock frequencies.[96]Originally, 9000 series X3D models had been expected to arrive in January 2025.[97]

Overview of desktop Ryzen 9000 series models
Model line Codename Architecture Core count Integrated graphics
Ryzen 9000X / 9000X3D Granite Ridge Zen 5 6–16 Radeon (RDNA 2), 2CU

Ryzen AI 300

Mobile

Alongside the Ryzen 9000 desktop series, AMD also introduced the Ryzen AI 300 series of elite ultrathin mobile processors codenamed "Strix Point" on June 3, 2024 at Computex. It features up to 12 cores, a third-generation Ryzen AI NPU based onXDNA 2and up to 16 compute units (CUs) ofRDNA 3.5integrated graphics. The NPU provides up to 50 TOPS for AI inference processing. These new processors also deviate from the naming scheme used with Ryzen 7000 and 8000 series mobile processors, instead using a three-digit model numbering system similar to Intel'sCore and Core Ultra 3/5/7/9series.[98]AMD has allegedly decided not to introduce a whole range of SKUs that previously existed, namely U (ultra-low power) and H(S) (high performance) models and instead OEMs are now allowed to configure the APU thermals as they see fit ranging from 15 to 54 W.[citation needed]

Overview of mobile Ryzen AI 300 series models
Model line Codename Architecture Core count Integrated graphics
Ryzen AI 300 Strix Point Zen 5
Zen 5c
10–12 Radeon 8x0M (RDNA 3.5), up to 16CU

Initial reception

The first Ryzen 7 (1700, 1700X, and 1800X) processors debuted in early March 2017 and were generally well received by hardware reviewers.[99][100][101]Ryzen was the first brand new architecture from AMD in five years, and without very much initial fine-tuning or optimization, it ran generally well for reviewers.[102]Initial Ryzen chips ran well with software and games already on the market, performing exceptionally well in workstation scenarios, and well in most gaming scenarios. Compared to Piledriver-powered FX chips, Zen-powered Ryzen chips ran cooler, much faster, and used less power. IPC uplift was eventually gauged to be 52 percent higher than Excavator, which was two full generations ahead of the architecture still being used in AMD's FX-series desktop predecessors like the FX-8350 and FX-8370.[1]Though Zen fell short of Intel'sKaby Lakein terms of IPC, and therefore single-threaded throughput, it compensated by offering more cores to applications that can use them. Power consumption and heat emission were found to be competitive with Intel, and the included Wraith coolers were generally competitive with higher-priced aftermarket units.

Ryzen 7 1800X's multi-threaded performance, in some cases while usingBlenderor other open-source software, was around four times the performance of the FX-8370, or nearly double that of the Core i7-7700K.[103]One reviewer found that Ryzen chips would usually outperform competing Intel's Core i7 processors for a fraction of the price when all eight cores are used.[103]

However, one complaint among a subset of reviewers was that Ryzen processors lagged behind their Intel counterparts when running older games, or some newer games at mainstream resolutions such as 720p or 1080p.[104]AMD acknowledged the gaming performance deficit at low resolutions during a Reddit "Ask Me Anything" thread, where it explained that updates and patches were being developed.[105]Subsequent updates toAshes of the Singularity: EscalationandRise of the Tomb Raiderincreased frame rates by 17-31 percent on Ryzen systems.[106][107]In April 2017, developerid Softwareannounced that, in the future, its games would exploit the greater parallelism available on Ryzen CPUs.[108]

It has been suggested that low threaded applications often result in Ryzen processors being underused, yielding lower than expected benchmark scores, because Zen relies on its core count to make up for its lowerIPCrating than that of Kaby Lake.[109][110][111]However, AMD and others have argued thread scheduling is not the fundamental issue to Windows 10 performance.[112][113]Early AM4 motherboards were also hindered by BIOS bugs and poor DDR4 memory support.[citation needed]

Operating system support

Windows

AMD verified that computers with Ryzen CPUs can bootWindows 7andWindows 8both 64- and 32-bit. However, newer hardware including AMD Ryzen and Intel Kaby Lake and later is only officially supported byMicrosoftwith the use ofWindows 10.Windows Updateblocks updates from being installed on newer systems running older versions of Windows, though that restriction can be circumvented with an unofficial patch.[114]Windows 11is only officially supported on Ryzen APUs and CPUs usingZen+architecture or newer; systems running Zen architecture-based CPUs or APUs are not entitled to receive updates.[115][116][117]

Although AMD initially announced that Ryzen chipset drivers would not be provided for Windows 7,[118]its chipset driver packages do in fact list and include them.[119]

Linux

Full support for Ryzen processors' performance features inLinuxrequireskernelversion 4.10 or newer.[120]

Known issues

Spectre

Like nearly all modern high performance microprocessors, Ryzen was susceptible to the"Spectre" vulnerabilities.The vulnerabilities can be mitigated without hardware changes viamicrocodeupdates and operating system workarounds, but the mitigations incur a performance penalty.[121]Ryzen andEpycsuffer up to 20 percent penalty from the mitigations,[122]depending on workload, comparing favorably with a penalty of in some benchmarks up to 30 percent for IntelCoreandXeonprocessors,[123][124]in part as a result of the AMD processors not requiring mitigation against the relatedMeltdown vulnerability.[125]

Launched in 2019, Zen 2 includes hardware mitigations against the Spectre V4 speculative store bypass vulnerability.[50][126]

Segmentation fault

Some early shipments of Ryzen 1000 series processors producedsegmentation faultson some workloads on Linux, especially while compiling code withGNU Compiler Collection(GCC).[127]AMD offered to replace the affected processors with newer ones that are unaffected by the problem.[128]

Alleged issues by CTS Labs

In early 2018, Israelicomputer securityconsultancy firm CTS Labs stated that they had discovered several major flaws in the Ryzen components ecosystem,[129]publicly disclosing them after giving AMD 24 hours to respond and raising concerns and questions regarding their legitimacy,[130][131]though they were later confirmed by two separate security firms.[132]AMD has since stated that while the flaws are real and will be fixed viamicrocodeupdates, their severity was overstated as physical access to the hardware is required to exploit the flaws.[133]

See also

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