Movatterモバイル変換


[0]ホーム

URL:


Jump to content
WikipediaThe Free Encyclopedia
Search

List of AMD processors with 3D graphics

From Wikipedia, the free encyclopedia

This is a list of microprocessors designed byAMD containing a 3Dintegrated graphics processing unit (iGPU), including those under theAMD APU (Accelerated Processing Unit) product series.

Features overview

[edit]

The following table shows features ofAMD's processors with 3D graphics, includingAPUs.

[ VisualEditor ]
PlatformHigh, standard and low powerLow and ultra-low power
CodenameServerBasicToronto
MicroKyoto
DesktopPerformanceRaphaelPhoenix
MainstreamLlanoTrinityRichlandKaveriKaveri Refresh (Godavari)CarrizoBristol RidgeRaven RidgePicassoRenoirCezanne
Entry
BasicKabiniDalí
MobilePerformanceRenoirCezanneRembrandtDragon Range
MainstreamLlanoTrinityRichlandKaveriCarrizoBristol RidgeRaven RidgePicassoRenoir
Lucienne
Cezanne
Barceló
Phoenix
EntryDalíMendocino
BasicDesna, Ontario, ZacateKabini, TemashBeema, MullinsCarrizo-LStoney RidgePollock
EmbeddedTrinityBald EagleMerlin Falcon,
Brown Falcon
Great Horned OwlGrey HawkOntario, ZacateKabiniSteppe Eagle,Crowned Eagle,
LX-Family
Prairie FalconBanded KestrelRiver Hawk
ReleasedAug 2011Oct 2012Jun 2013Jan 20142015Jun 2015Jun 2016Oct 2017Jan 2019Mar 2020Jan 2021Jan 2022Sep 2022Jan 2023Jan 2011May 2013Apr 2014May 2015Feb 2016Apr 2019Jul 2020Jun 2022Nov 2022
CPUmicroarchitectureK10PiledriverSteamrollerExcavator"Excavator+"[1]ZenZen+Zen 2Zen 3Zen 3+Zen 4BobcatJaguarPumaPuma+[2]"Excavator+"ZenZen+"Zen 2+"
ISAx86-64 v1x86-64 v2x86-64 v3x86-64 v4x86-64 v1x86-64 v2x86-64 v3
SocketDesktopPerformanceAM5
MainstreamAM4
EntryFM1FM2FM2+FM2+[a],AM4AM4
BasicAM1FP5
OtherFS1FS1+,FP2FP3FP4FP5FP6FP7FL1FP7
FP7r2
FP8
FT1FT3FT3bFP4FP5FT5FP5FT6
PCI Express version2.03.04.05.04.02.03.0
CXL
Fab. (nm)GF32SHP
(HKMGSOI)
GF28SHP
(HKMG bulk)
GF14LPP
(FinFET bulk)
GF12LP
(FinFET bulk)
TSMCN7
(FinFET bulk)
TSMCN6
(FinFET bulk)
CCD: TSMCN5
(FinFET bulk)

cIOD: TSMCN6
(FinFET bulk)
TSMC4nm
(FinFET bulk)
TSMCN40
(bulk)
TSMCN28
(HKMG bulk)
GF 28SHP
(HKMG bulk)
GF14LPP
(FinFET bulk)
GF12LP
(FinFET bulk)
TSMCN6
(FinFET bulk)
Die area (mm2)228246245245250210[3]156180210CCD: (2x) 70
cIOD: 122
17875(+ 28FCH)107?125149~100
MinTDP (W)351712101565354.543.95106128
Max APUTDP (W)10095654517054182565415
Max stock APU base clock (GHz)33.84.14.13.73.83.63.73.84.03.34.74.31.752.222.23.22.61.23.352.8
Max APUs per node[b]11
Max core dies per CPU1211
Max CCX per core die1211
Max cores per CCX482424
MaxCPU[c]cores per APU481682424
Maxthreads per CPU core1212
Integer pipeline structure3+32+24+24+2+11+3+3+1+21+1+1+12+24+24+2+1
i386, i486, i586, CMOV, NOPL, i686,PAE,NX bit, CMPXCHG16B,AMD-V,RVI,ABM, and 64-bit LAHF/SAHFYesYes
IOMMU[d]v2v1v2
BMI1,AES-NI,CLMUL, andF16CYesYes
MOVBEYes
AVIC,BMI2,RDRAND, and MWAITX/MONITORXYes
SME[e],TSME[e],ADX,SHA,RDSEED,SMAP,SMEP, XSAVEC, XSAVES, XRSTORS, CLFLUSHOPT, CLZERO, and PTE CoalescingYesYes
GMET, WBNOINVD, CLWB, QOS, PQE-BW, RDPID, RDPRU, and MCOMMITYesYes
MPK,VAESYes
SGX
FPUs percore10.5110.51
Pipes per FPU22
FPU pipe width128-bit256-bit80-bit128-bit256-bit
CPUinstruction setSIMD levelSSE4a[f]AVXAVX2AVX-512SSSE3AVXAVX2
3DNow!3DNow!+
PREFETCH/PREFETCHWYesYes
GFNIYes
AMX
FMA4, LWP,TBM, andXOPYesYes
FMA3YesYes
AMD XDNAYes
L1 data cache per core (KiB)64163232
L1 data cacheassociativity (ways)2488
L1 instruction caches percore10.5110.51
Max APU total L1 instruction cache (KiB)2561281922565122566412896128
L1 instruction cacheassociativity (ways)23482348
L2 caches percore10.5110.51
Max APU total L2 cache (MiB)424161212
L2 cacheassociativity (ways)168168
Max on-dieL3 cache per CCX (MiB)416324
Max 3D V-Cache per CCD (MiB)64
Max total in-CCDL3 cache per APU (MiB)4816644
Max. total 3D V-Cache per APU (MiB)64
Max. boardL3 cache per APU (MiB)
Max totalL3 cache per APU (MiB)48161284
APU L3 cacheassociativity (ways)1616
L3 cache schemeVictimVictim
Max.L4 cache
Max stockDRAM supportDDR3-1866DDR3-2133DDR3-2133,DDR4-2400DDR4-2400DDR4-2933DDR4-3200,LPDDR4-4266DDR5-4800,LPDDR5-6400DDR5-5200DDR5-5600,LPDDR5x-7500DDR3L-1333DDR3L-1600DDR3L-1866DDR3-1866,DDR4-2400DDR4-2400DDR4-1600DDR4-3200LPDDR5-5500
MaxDRAM channels per APU21212
Max stockDRAMbandwidth (GB/s) per APU29.86634.13238.40046.93268.256102.40083.200120.00010.66612.80014.93319.20038.40012.80051.20088.000
GPUmicroarchitectureTeraScale 2 (VLIW5)TeraScale 3 (VLIW4)GCN 2nd genGCN 3rd genGCN 5th gen[4]RDNA 2RDNA 3TeraScale 2 (VLIW5)GCN 2nd genGCN 3rd gen[4]GCN 5th genRDNA 2
GPUinstruction setTeraScale instruction setGCN instruction setRDNA instruction setTeraScale instruction setGCN instruction setRDNA instruction set
Max stock GPU base clock (MHz)60080084486611081250140021002400400538600?847900120060013001900
Max stock GPU baseGFLOPS[g]480614.4648.1886.71134.517601971.22150.43686.4102.486???345.6460.8230.41331.2486.4
3D engine[h]Up to 400:20:8Up to 384:24:6Up to 512:32:8Up to 704:44:16[5]Up to 512:32:8768:48:8128:8:480:8:4128:8:4Up to 192:12:8Up to 192:12:4192:12:4Up to 512:?:?128:?:?
IOMMUv1IOMMUv2IOMMUv1?IOMMUv2
Video decoderUVD 3.0UVD 4.2UVD 6.0VCN 1.0[6]VCN 2.1[7]VCN 2.2[7]VCN 3.1?UVD 3.0UVD 4.0UVD 4.2UVD 6.2VCN 1.0VCN 3.1
Video encoderVCE 1.0VCE 2.0VCE 3.1VCE 2.0VCE 3.4
AMD Fluid MotionNoYesNoNoYesNo
GPU power savingPowerPlayPowerTunePowerPlayPowerTune[8]
TrueAudioYes[9]?Yes
FreeSync1
2
1
2
HDCP[i]?1.42.22.3?1.42.22.3
PlayReady[i]3.0 not yet3.0 not yet
Supported displays[j]2–32–433 (desktop)
4 (mobile, embedded)
42344
/drm/radeon[k][11][12]YesYes
/drm/amdgpu[k][13]Yes[14]Yes[14]
  1. ^For FM2+ Excavator models: A8-7680, A6-7480 & Athlon X4 845.
  2. ^A PC would be one node.
  3. ^An APU combines a CPU and a GPU. Both have cores.
  4. ^Requires firmware support.
  5. ^abRequires firmware support.
  6. ^No SSE4. No SSSE3.
  7. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.
  8. ^Unified shaders :texture mapping units :render output units
  9. ^abTo play protected video content, it also requires card, operating system, driver, and application support. A compatible HDCP display is also needed for this. HDCP is mandatory for the output of certain audio formats, placing additional constraints on the multimedia setup.
  10. ^To feed more than two displays, the additional panels must have nativeDisplayPort support.[10] Alternatively active DisplayPort-to-DVI/HDMI/VGA adapters can be employed.
  11. ^abDRM (Direct Rendering Manager) is a component of the Linux kernel. Support in this table refers to the most current version.

Graphics API overview

[edit]

The following table shows the graphics and computeAPIs support across ATI/AMD GPU microarchitectures. Note that a branding series might include older generation chips.

[ VisualEditor ]
Chip seriesMicro­architectureFabSupportedAPIsAMD supportYear introducedIntroduced with
RenderingComputing /ROCm
Vulkan[15]OpenGL[16]Direct3DHSAOpenCL
WonderFixed-pipeline[a]1000 nm
800 nm
Ended1986Graphics Solutions
Mach800 nm
600 nm
1991Mach8
3D Rage500 nm5.019963D Rage
Rage Pro350 nm1.16.01997Rage Pro
Rage 128250 nm1.21998Rage 128 GL/VR
R100180 nm
150 nm
1.37.02000Radeon
R200Programmable
pixel & vertex
pipelines
150 nm8.12001Radeon 8500
R300150 nm
130 nm
110 nm
2.0[b]9.0
11 (FL 9_2)
2002Radeon 9700
R420130 nm
110 nm
9.0b
11 (FL 9_2)
2004Radeon X800
R52090 nm
80 nm
9.0c
11 (FL 9_3)
2005Radeon X1800
R600TeraScale 180 nm
65 nm
3.310.0
11 (FL 10_0)
ATI Stream2007Radeon HD 2900 XT
RV67055 nm10.1
11 (FL 10_1)
ATI Stream APP[17]Radeon HD 3850/3870
RV77055 nm
40 nm
1.02008Radeon HD 4850/4870
EvergreenTeraScale 240 nm4.5
(Linux 4.2)
[18][19][20][c]
11 (FL 11_0)1.22009Radeon HD 5850/5870
Northern IslandsTeraScale 2
TeraScale 3
2010Radeon HD 6850/6870
Radeon HD 6950/6970
Southern IslandsGCN 1st gen28 nm1.0 (Windows)

1.3 (Linux)[21]

4.611 (FL 11_1)
12 (FL11_1)
Yes1.2
2.0 possible
2012Radeon HD 7950/7970
Sea IslandsGCN 2nd gen1.2 (Windows)

1.3 (Linux)

11 (FL 12_0)
12 (FL 12_0)
2.0
(1.2 in MacOS, Linux)
2.1 Beta in Linux ROCm
2.2 possible
2013Radeon HD 7790
Volcanic IslandsGCN 3rd gen1.2 (Windows)

1.4 (Linux)[22]

2014Radeon R9 285
Arctic IslandsGCN 4th gen28 nm
14 nm
1.4Supported2016Radeon RX 480
Polaris2017Radeon 520/530
Radeon RX 530/550/570/580
VegaGCN 5th gen14 nm
7 nm
11 (FL 12_1)
12 (FL 12_1)
2017Radeon Vega Frontier Edition
NaviRDNA7 nm2019Radeon RX 5700 (XT)
Navi 2xRDNA 27 nm
6 nm
11 (FL 12_1)
12 (FL 12_2)
2020Radeon RX 6800 (XT)
Navi 3xRDNA 36 nm
5 nm
2022Radeon RX 7900 XT(X)
Navi 4xRDNA 44 nm2025Radeon RX 9070 (XT)
  1. ^Radeon 7000 Series has programmable pixel shaders, but do not fully comply with DirectX 8 or Pixel Shader 1.0. See article onR100's pixel shaders.
  2. ^These series do not fully comply with OpenGL 2+ as the hardware does not support all types of non-power-of-two (NPOT) textures.
  3. ^OpenGL 4+ compliance requires supporting FP64 shaders and these are emulated on some TeraScale chips using 32-bit hardware.

[23][24][25]

Desktop processors with 3D graphics

[edit]

APU or Radeon Graphics branded

[edit]

Lynx: "Llano" (2011)

[edit]
  • SocketFM1
  • CPU:K10 (alsoHusky orK10.5) cores with an upgradedStars architecture, no L3 cache
  • GPU:TeraScale 2 (Evergreen); all A and E series models featureRedwood-class integrated graphics on die (BeaverCreek for the dual-core variants andWinterPark for the quad-core variants). Sempron and Athlon models exclude integrated graphics.[26]
  • List of embedded GPU's
  • Support for up to fourDIMMs of up toDDR3-1866 memory
  • Fabrication 32 nm onGlobalFoundriesSOI process;Die size:228 mm2, with 1.178 billion transistors[27][28]
  • 5 GT/sUMI
  • IntegratedPCIe 2.0 controller
  • Select models support Turbo Core technology for faster CPU operation when the thermal specification permits
  • Select models support Hybrid Graphics technology to assist a discrete Radeon HD 6450, 6570, or 6670 discrete graphics card. This is similar to the Hybrid CrossFireX technology available in the AMD 700 and 800 chipset series
Model[note 1]ReleasedFabStep.CPUGPUDDR3
memory
support
TDP
(W)
Box numberPart number
Cores
(threads)
Clock rate (GHz)Cache[a]ModelConfigClock
(MHz)
Processing
power
(GFLOPS)[b]
BaseBoostL1L2
Sempron X2 198201232 nm SOILN-B02 (2)2.564 KB inst.
64 KB data

per core
2×512 KB160065SD198XOJGXBOXSD198XOJZ22GX
Athlon II X2 22120122.8AD221XOJGXBOXAD221XOJZ22GX
Athlon II X4 63120124 (4)2.64×1 MB1866AD631XOJGXBOXAD631XOJZ43GX
Aug 15, 2011100AD631XOJGXBOXAD631XWNZ43GX
Athlon II X4 638Feb 8, 20122.765AD638XOJGXBOXAD638XOJZ43GX
Athlon II X4 641Feb 8, 20122.8100AD641XWNGXBOXAD641XWNZ43GX
Athlon II X4 651Nov 14, 20113.0AD651XWNGXBOXAD651XWNZ43GX
Athlon II X4 651K2012AD651KWNGXBOXAD651KWNZ43GX
E2-320020112 (2)2.42×512 KBHD 6370D160:8:4443141.7160065ED3200OJGXBOXED3200OJZ22GX
ED3200OJZ22HX
A4-3300Sep 7, 20112.5HD 6410DAD3300OJGXBOX
AD3300OJHXBOX
AD3300OJZ22GX
AD3300OJZ22HX
A4-3400Sep 7, 20112.7600192AD3400OJGXBOX
AD3400OJHXBOX
AD3400OJZ22GX
AD3400OJZ22HX
A4-3420Dec 20, 20112.8AD3420OJZ22HX
A6-3500Aug 17, 20113 (3)2.12.43×1 MBHD 6530D320:16:8443283.51866AD3500OJGXBOXAD3500OJZ33GX
A6-3600Aug 17, 20114 (4)4×1 MBAD3600OJGXBOXAD3600OJZ43GX
A6-3620Dec 20, 20112.22.5AD3620OJGXBOXAD3620OJZ43GX
A6-3650Jun 30, 20112.6100AD3650WNGXBOXAD3650WNZ43GX
A6-3670KDec 20, 20112.7AD3670WNGXBOXAD3670WNZ43GX
A8-3800Aug 17, 20112.42.7HD 6550D400:20:860048065AD3800OJGXBOXAD3800OJZ43GX
A8-3820Dec 20, 20112.52.8AD3820OJGXBOXAD3820OJZ43GX
A8-3850Jun 30, 20112.9100AD3850WNGXBOXAD3850WNZ43GX
A8-3870KDec 20, 20113.0AD3870WNGXBOXAD3870WNZ43GX
  1. ^AMD in its technical documentation uses KB, which it defines as Kilobyte and as equal to 1024 bytes, and MB, which it defines as Megabyte and as equal to 1024 KB.[29]
  2. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.
  1. ^Models with "K" suffixes feature an unlocked multiplier and overclockable GPU.

Virgo: "Trinity" (2012)

[edit]
ModelReleasedFabStep.CPUGPUDDR3
memory
support
TDP
(W)
Box numberPart number[36]
[Modules/FPUs]
Cores/threads
Clock rate (GHz)Cache[a]ModelConfigClock
(MHz)
Processing
power
(GFLOPS)[b]
BaseBoostL1L2
Sempron X2 240[37]32 nmTN-A1[1]22.93.364 KB inst.
per module

16 KB data
per core
1 MB160065SD240XOKA23HJ
Athlon X2 340[38]Oct 20123.23.6AD340XOKA23HJ
Athlon X4 730Oct 1, 2012[2]42.83.22×2 MB1866AD730XOKA44HJ
Athlon X4 740Oct 20123.23.7AD740XOKHJBOXAD740XOKA44HJ
Athlon X4 750K3.44.0100AD750KWOHJBOXAD750KWOA44HJ
FirePro A300Aug 7, 20123.44.0FirePro384:24:8
6 CU
760583.665AWA300OKA44HJ
FirePro A3203.84.2800614.4100AWA320WOA44HJ
A4-5300Oct 1, 2012[1]23.43.61 MBHD 7480D128:8:4
2 CU
723185160065AD5300OKHJBOXAD5300OKA23HJ
A4-5300BOct 2012AD530BOKA23HJ
A6-5400KOct 1, 20123.63.8HD 7540D192:12:4
3 CU
760291.81866AD540KOKHJBOXAD540KOKA23HJ
A6-5400BOct 2012AD540BOKA23HJ
A8-5500Oct 1, 2012[2]43.23.72×2 MBHD 7560D256:16:8
4 CU
760389.1AD5500OKHJBOXAD5500OKA44HJ
A8-5500BOct 2012AD550BOKA44HJ
A8-5600KOct 1, 20123.63.9100AD560KWOHJBOXAD560KWOA44HJ
A10-57003.44.0HD 7660D384:24:8
6 CU
760583.665AD5700OKHJBOXAD5700OKA44HJ
A10-5800K3.84.2800614.4100AD580KWOHJBOXAD580KWOA44HJ
A10-5800BOct 2012AD580BWOA44HJ
  1. ^AMD in its technical documentation uses KB, which it defines as Kilobyte and as equal to 1024 bytes, and MB, which it defines as Megabyte and as equal to 1024 KB.[29]
  2. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

"Richland" (2013)

[edit]
ModelReleasedFabStep.CPUGPUDDR3
memory
support
TDP
(W)
Box numberPart number
[Modules/FPUs]
Cores/threads
Clock rate (GHz)Cache[a]ModelConfigClock
(MHz)
Processing
power
(GFLOPS)[b]
BaseBoostL1L2
Sempron X2 250[37]32 nmRL-A1[1]23.23.664 KB inst.
per module

16 KB data
per core
1 MB65SD250XOKA23HL
Athlon X2 350[40]3.53.91866AD350XOKA23HL
Athlon X2 370KJun 20134.04.2AD370KOKHLBOXAD370KOKA23HL
Athlon X4 750Oct 2013[2]43.44.02×2 MBAD750XOKA44HL
Athlon X4 760KJun 20133.84.1100AD760KWOHLBOXAD760KWOA44HL
FX-670K[41]Mar 2014 (OEM)3.74.365FD670KOKA44HL
A4-4000May 2013[1]23.03.21 MBHD 7480D128:8:4
2 CU
720184.31333AD4000OKHLBOXAD4000OKA23HL
A4-4020Jan 20143.23.4AD4020OKHLBOXAD4020OKA23HL
A4-6300Jul 20133.73.9HD 8370D760194.51600AD6300OKHLBOXAD6300OKA23HL
A4-6300BAD630BOKA23HL
A4-6320Dec 20133.84.0AD6320OKHLBOXAD6320OKA23HL
A4-6320BMar 2014AD632BOKA23HL
A4-7300Aug 2014HD 8470D192:12:4
3 CU
800307.2AD7300OKA23HL
A4 Pro-7300BAD730BOKA23HL
A6-6400BJun 4, 20133.94.11866AD640BOKA23HL
A6-6400KAD640KOKHLBOXAD640KOKA23HL
A6-6420BJan 20144.04.2AD642BOKA23HL
A6-6420KAD642KOKHLBOXAD642KOKA23HL
A8-6500TSep 18, 2013[2]42.13.12×2 MBHD 8550D256:16:8
4 CU
720368.645AD650TYHHLBOXAD650TYHA44HL
A8-6500Jun 4, 20133.54.1HD 8570D800409.665AD6500OKHLBOXAD6500OKA44HL
A8-6500BAD650BOKA44HL
A8-6600K3.94.2844432.1100AD660KWOHLBOXAD660KWOA44HL
A10-6700TSep 18, 20132.53.5HD 8650D384:24:8
6 CU
720552.945AD670TYHHLBOXAD670TYHA44HL
A10-6700Jun 4, 20133.74.3HD 8670D844648.165AD6700OKHLBOXAD6700OKA44HL
A10-6790BOct 29, 20134.0100AD679KWOHLBOXAD679KWOA44HL
A10-6790KOct 28, 2013AD679BWOA44HL
A10-6800KJun 4, 20134.14.42133AD680KWOHLBOXAD680KWOA44HL
A10-6800BAD680BWOA44HL
  1. ^AMD in its technical documentation uses KB, which it defines as Kilobyte and as equal to 1024 bytes, and MB, which it defines as Megabyte and as equal to 1024 KB.[29]
  2. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

"Kabini" (2013,SoC)

[edit]
ModelReleasedFabStep.CPUGPUDDR3
memory
support
TDP
(W)
Box numberPart number
Cores
(threads)
Clock rate (GHz)Cache[a]ModelConfigClock
(MHz)
Processing
power
(GFLOPS)[b]
BaseBoostL1L2
Athlon X4 53028 nmKB-A14 (4)2.0032 KB inst.
32 KB data

per core
2 MB1600
single-channel
25AD530XJAH44HM
Athlon X4 5502.20AD550XJAH44HM
Sempron 2650Apr 9, 20142 (2)1.451 MBR3 (HD 8240)128:8:4
2 CU
400102.41333
single-channel
SD2650JAHMBOXSD2650JAH23HM
Sempron 38504 (4)1.302 MBR3 (HD 8280)450115.21600
single-channel
SD3850JAHMBOXSD3850JAH44HM
Athlon 51501.60R3 (HD 8400)600153.6AD5150JAHMBOXAD5150JAH44HM
Athlon 53502.05AD5350JAHMBOXAD5350JAH44HM
Athlon 5370Feb 20162.20AD5370JAH44HM
  1. ^AMD in its technical documentation uses KB, which it defines as Kilobyte and as equal to 1024 bytes, and MB, which it defines as Megabyte and as equal to 1024 KB.[29]
  2. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

"Kaveri" (2014) & "Godavari" (2015)

[edit]
ModelReleasedFabStep.CPUGPUDDR3
memory
support
TDP
(W)
Box numberPart number
[Modules/FPUs]
Cores/threads
Clock rate (GHz)Cache[a]ModelConfigClock
(MHz)
Processing
power
(GFLOPS)[b]
BaseBoostL1L2
Athlon X2 450[40]Jul 31, 201428 nmKV-A1[1]23.53.996 KB inst.
per module

16 KB data
per core
1 MB186665AD450XYBI23JA
Athlon X4 8302018[2]43.03.42×2 MB2133AD830XYBI44JA
Athlon X4 840[40]Aug 20143.13.8AD840XYBJABOXAD840XYBI44JA
Athlon X4 8502015GV-A13.2AD835XACI43KA
Athlon X4 860KAug 2014KV-A13.74.095AD860KXBJABOX
AD860KWOHLBOX
AD860KXBJASBX
AD860KXBI44JA
Athlon X4 870KDec 2015GV-A13.94.1AD870KXBJCSBXAD870KXBI44JC
Athlon X4 880KMar 1, 20164.04.2AD880KXBJCSBX
FX-770K[52]Dec 2014KV-A13.53.965FD770KYBI44JA
A4 Pro-7350BJul 31, 2014[1]23.43.81 MBR5192:12:8
3 CU
514197.31866AD735BYBI23JA
Pro A4-8350BSep 29, 20153.53.9256:16:8
4 CU
757387.5AD835BYBI23JC
A6-7400KJul 31, 20143.53.9756387AD740KYBJABOXAD740KYBI23JA
A6 Pro-7400BAD740BYBI23JA
A6-7470KFeb 2, 2016GV-A13.74.0800409.62133AD747KYBJCBOXAD747KYBI23JC
Pro A6-8550BSep 29, 2015AD855BYBI23JC
A8-7500[53][54]2014KV-A1[2]43.03.72×2 MBR7384:24:8
6 CU
720552.9AD7500YBI44JA
A8-7600Jul 31, 20143.13.8AD7600YBJABOXAD7600YBI44JA
A8 Pro-7600BAD760BYBI44JA
A8-7650KJan 7, 20153.395AD765KXBJABOX
AD765KXBJASBX
AD765KXBI44JA
A8-7670KJul 20, 2015GV-A13.63.9757581.3AD767KXBJCSBX
AD767KXBJCBOX
AD767KXBI44JC
Pro A8-8650BSep 29, 20153.265AD865BYBI44JC
A10-7700KJan 14, 2014KV-A13.43.8720552.995AD770KXBJABOXAD770KXBI44JA
A10-7800Jul 31, 20143.53.9512:32:8
8 CU
737.265AD7800YBJABOXAD7800YBI44JA
A10 Pro-7800BAD780BYBI44JA
A10-7850KJan 14, 20143.74.095AD785KXBJABOXAD785KXBI44JA
A10 Pro-7850BJul 31, 2014AD785BXBI44JA
A10-7860KFeb 2, 2016GV-A13.6757775.165AD786KYBJABOX
AD786KYBJCSBX
AD786KYBI44JC
A10-7870KMay 28, 20153.94.1866886.795AD787KXDJCBOX
AD787KXDJCSBX
AD787KXDI44JC
A10-7890KMar 1, 20164.14.3AD789KXDJCHBXAD789KXDI44JC
Pro A10-8750BSep 29, 20153.64.0757775.165AD875BYBI44JC
Pro A10-8850B3.94.1800819.295AD885BXBI44JC
ModelReleasedFabStep.[Modules/FPUs]
Cores/threads
BaseBoostL1L2ModelConfigClock
(MHz)
Processing
power
(GFLOPS)[b]
DDR3
memory
support
TDP
(W)
Box numberPart number
Clock rate (GHz)Cache[a]
CPUGPU
  1. ^abAMD in its technical documentation uses KB, which it defines as Kilobyte and as equal to 1024 bytes, and MB, which it defines as Megabyte and as equal to 1024 KB.[29]
  2. ^abSingle-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

"Carrizo" (2016)

[edit]
ModelReleasedFabStep.SocketCPUGPUMemory
support
TDP
(W)
Box number[a]Part number
[Modules/FPUs]
Cores/threads
Clock rate (GHz)Cache[b]ModelConfigClock
(MHz)
Processing
power
(GFLOPS)[c]
BaseBoostL1L2
Athlon X4 83528 nmCZ-A1FM2+[2]43.196 KB inst.
per module

32 KB data
per core
2×1 MBDDR3-213365AD835XACI43KA
Athlon X4 845Feb 2, 20163.53.8AD845XYBJCSBX
AD845XACKASBX
AD845XACI43KA
A6-7480[56]Oct 2018[1]21 MBR5384:24:8
6 CU
900691.2AD7480ACABBOXAD7480ACI23AB
A8-7680[57][2]42×1 MBR7AD7680ACABBOXAD7680ACI43AB
Pro A6-8570EOct 2016AM4[1]23.03.41 MBR5256:16:4
4 CU
800409.6DDR4-240035AD857BAHM23AB
Pro A6-85703.53.8384:24:6
6 CU
1029790.265AD857BAGM23AB
Pro A10-8770E[2]42.83.52×1 MBR7847650.435AD877BAHM44AB
Pro A10-87703.53.81029790.265AD877BAGM44AB
Pro A12-8870E2.9512:32:8
8 CU
900921.635AD887BAHM44AB
Pro A12-88703.74.211081134.565AD887BAUM44AB
  1. ^With cooler if available.
  2. ^AMD in its technical documentation uses KB, which it defines as Kilobyte and as equal to 1024 bytes, and MB, which it defines as Megabyte and as equal to 1024 KB.[29]
  3. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

"Bristol Ridge" (2016)

[edit]
ModelReleasedFabStep.CPUGPUDDR4
memory
support
TDP
(W)
Box number[a]Part number
[Modules/FPUs]
Cores/threads
Clock rate (GHz)Cache[b]ModelConfigClock
(MHz)
Processing
power
(GFLOPS)[c]
BaseBoostL1L2
Athlon X4 940[59]Jul 27, 201728 nmBR-A1[2]43.23.696 KB inst.
per module

32 KB data
per core
2×1 MB240065AD940XAGABBOXAD940XAGM44AB
Athlon X4 950[60]3.53.8AD950XAGABBOXAD950XAGM44AB
Athlon X4 970[61]3.84.0AD970XAUABBOXAD970XAUM44AB
A6-9400[62]Mar 16, 2019[1]23.43.71 MBR5192:12:4
3 CU
720276.4AD9400AGABBOXAD9400AGM23AB
A6-9500E[63]Sep 5, 20163.03.4256:16:4
4 CU
800409.635AD9500AHABBOXAD9500AHM23AB
Pro A6-9500E[64]Oct 3, 2016AD950BAHM23AB
A6-9500[65]Sep 5, 20163.53.8384:24:6
6 CU
1029790.265AD9500AGABBOXAD9500AGM23AB
Pro A6-9500[66]Oct 3, 2016AD950BAGM23AB
A6-9550[67]Jul 27, 20173.84.0256:16:4
4 CU
800409.6AD9550AGABBOXAD9550AGM23AB
A8-9600[68]Sep 5, 2016[2]43.13.42×1 MBR7384:24:6
6 CU
900691.2AD9600AGABBOXAD9600AGM44AB
Pro A8-9600[69]Oct 3, 2016AD960BAGM44AB
A10-9700E[70]Sep 5, 20163.03.5847650.435AD9700AHABBOXAD9700AHM44AB
Pro A10-9700E[71]Oct 3, 2016AD970BAHM44AB
A10-9700[72]Sep 5, 20163.53.81029790.265AD9700AGABBOXAD9700AGM44AB
Pro A10-9700[73]Oct 3, 2016AD970BAGM44AB
A12-9800E[74]Sep 5, 20163.13.8512:32:8[75]
8 CU
900921.635AD9800AHABBOXAD9800AUM44AB
Pro A12-9800E[76]Oct 3, 2016AD980BAHM44AB
A12-9800[77]Sep 5, 20163.84.211081134.565AD9800AUABBOXAD9800AUM44AB
Pro A12-9800[78]Oct 3, 2016AD980BAUM44AB
  1. ^With cooler if available.
  2. ^AMD in its technical documentation uses KB, which it defines as Kilobyte and as equal to 1024 bytes, and MB, which it defines as Megabyte and as equal to 1024 KB.[29]
  3. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

"Raven Ridge" (2018)

[edit]
Main article:Ryzen

Common features ofZen basedRaven Ridge desktop APUs:

ModelCPUGPUTDPRelease
date
Release
price
Cores
(threads)
Clock rate (GHz)L3 cache
(total)
ModelConfig[i]Clock
(MHz)
Processing
power
(GFLOPS)[ii]
BaseBoost
Athlon 200GE2 (4)3.24 MBVega 3192:12:4
3 CU
100038435 WSep 6, 2018US $55[79]
Athlon Pro 200GEOEM
Athlon 220GE3.4Dec 21, 2018US $65[80]
Athlon 240GE3.5US $75[80]
Athlon 300GE3.41100424.4Jul 7, 2019OEM
Athlon Pro 300GESep 30, 2019
Athlon 320GE3.5Jul 7, 2019
Athlon 3000GNov 19, 2019US $49[81]
Athlon Silver 3050GE3.4Jul 21, 2020OEM
Ryzen 3 Pro 2100GE[82]3.210003842019
Ryzen 3 2200GE4 (4)3.6Vega 8512:32:16
8 CU
11001126Apr 19, 2018
Ryzen 3 Pro 2200GEMay 10, 2018
Ryzen 3 2200G3.53.765 WFeb 12, 2018US $99[83]
Ryzen 3 Pro 2200GMay 10, 2018OEM
Ryzen 5 2400GE4 (8)3.23.8RX Vega 11704:44:16
11 CU
1250176035 WApr 19, 2018
Ryzen 5 Pro 2400GEVega 11May 10, 2018
Ryzen 5 2400G3.63.9RX Vega 1165 WFeb 12, 2018US $169[83]
Ryzen 5 Pro 2400GVega 11May 10, 2018OEM
  1. ^Unified shaders :Texture mapping units :Render output units andCompute units (CU)
  2. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

"Picasso" (2019)

[edit]
Main article:Ryzen

Common features ofZen+ based desktop APUs:

ModelCPUGPUTDPRelease
date
Release
price
Cores
(threads)
Clock rate (GHz)L3 cache
(total)
Model[i]Config[ii]Clock
(MHz)
Processing
power
(GFLOPS)[iii]
BaseBoost
Athlon Pro 300GE2 (4)3.44 MBVega 3192:12:4
3 CU
1100424.435 WSep 30, 2019OEM
Athlon Silver Pro 3125GERadeon
Graphics
Jul 21, 2020
Athlon Gold 3150GE4 (4)3.33.8
Athlon Gold Pro 3150GE
Athlon Gold 3150G3.53.965 W
Athlon Gold Pro 3150G
Ryzen 3 3200GE3.33.8Vega 8512:32:16
8 CU
12001228.835 WJul 7, 2019
Ryzen 3 Pro 3200GESep 30, 2019
Ryzen 3 3200G3.64.01250128065 WJul 7, 2019US $99[87]
Ryzen 3 Pro 3200GSep 30, 2019OEM
Ryzen 5 Pro 3350GE3.33.9Radeon
Graphics
640:40:16
10 CU
1200153635 WJul 21, 2020
Ryzen 5 Pro 3350G4 (8)3.64.013001830.465 W
Ryzen 5 3400GE3.3Vega 11704:44:16
11 CU
35 WJul 7, 2019
Ryzen 5 Pro 3400GESep 30, 2019
Ryzen 5 3400G3.74.2RX Vega 1114001971.265 WJul 7, 2019US $149[87]
Ryzen 5 Pro 3400GVega 11Sep 30, 2019OEM
  1. ^Starting with 2020 releases,AMD stopped referring to integrated graphics as "Vega", therefore allVega basediGPUs are branded asAMD Radeon Graphics (insteadRadeon Vega 3 orRadeon Vega 10).[84][85][86]
  2. ^Unified shaders :Texture mapping units :Render output units andCompute units (CU)
  3. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

"Renoir" (2020)

[edit]
Main article:Ryzen

Common features of Ryzen 4000 desktop APUs:

  • Socket:AM4.
  • All the CPUs supportDDR4-3200 indual-channel mode.
  • L1cache: 64 KB (32 KB data + 32 KB instruction) per core.
  • L2 cache: 512 KB per core.
  • All the CPUs support 24PCIe 3.0 lanes. 4 of the lanes are reserved as link to the chipset.
  • Includes integratedGCN 5th generation GPU.
  • Fabrication process:TSMC7FF.
Branding and modelCPUGPUTDPRelease
date
Release
price
Cores
(threads)
Clock rate (GHz)L3 cache
(total)
Core
Config[i]
ModelClock
(GHz)
Config[ii]Processing
power[iii]
(GFLOPS)
BaseBoost
Ryzen 74700G[a]8 (16)3.64.48 MB2 × 4Radeon
Graphics[b]
2.1512:32:16
8 CU
2150.465 WJul 21, 2020OEM
4700GE[a]3.14.32.0204835 W
Ryzen 54600G[a][88]6 (12)3.74.22 × 31.9448:28:14
7 CU
1702.465 WJul 21, 2020
(OEM) /
Apr 4, 2022
(retail)
OEM /
US $154
4600GE[a]3.335 WJul 21, 2020OEM
Ryzen 34300G[a]4 (8)3.84.04 MB1 × 41.7384:24:12
6 CU
1305.665 W
4300GE[a]3.535 W
  1. ^Core complexes (CCXs) × cores per CCX
  2. ^Unified shaders :Texture mapping units :Render output units andCompute units (CU)
  3. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.
  1. ^abcdefModel also available as PRO version as 4350GE,[89] 4350G,[90] 4650GE,[91] 4650G,[92] 4750GE,[93] 4750G,[94] released on July 21, 2020 for OEM only. Refresh models 4355GE, 4355G, 4655GE, 4655G released November 11, 2022.[95]
  2. ^All of the iGPUs are branded asAMD Radeon Graphics.

"Cezanne" (2021)

[edit]
Main article:Ryzen

Common features of Ryzen 5000 desktop APUs:

  • Socket:AM4.
  • All the CPUs supportDDR4-3200 indual-channel mode.
  • L1cache: 64 KB (32 KB data + 32 KB instruction) per core.
  • L2 cache: 512 KB per core.
  • All the CPUs support 24PCIe 3.0 lanes. 4 of the lanes are reserved as link to the chipset.
  • Includes integratedGCN 5th generation GPU.
  • Fabrication process:TSMC7FF.
Branding and modelCPUGPU[a]Thermal
solution
TDPRelease
date
MSRP
Cores
(threads)
Clock rate (GHz)L3 cache
(total)
Core
config[i]
Clock
(MHz)
Config[ii]Processing
power[iii]
(GFLOPS)
BaseBoost
Ryzen 75705G8 (16)3.84.616 MB1 × 82000512:32:8
8 CU
204865 W
5700G[b]Wraith StealthApr 13, 2021 (OEM),
Aug 5, 2021 (retail)
US $359
5705GE3.235 W
5700GE[b]Wraith StealthApr 13, 2021OEM
Ryzen 55600GT6 (12)3.61 × 61900448:28:8
7 CU
1702.465 WJan 31, 2024[96]US $140
5605G3.94.4
5600G[b]Wraith StealthApr 13, 2021 (OEM),
Aug 5, 2021 (retail)
US $259
5605GE3.435 W
5600GE[b]Wraith StealthApr 13, 2021OEM
5500GT3.665 WJan 31, 2024[96]US $125
Ryzen 35305G4 (8)4.04.28 MB1 × 41700384:24:8
6 CU
1305.6
5300G[b]OEMApr 13, 2021OEM
5305GE3.635 W
5300GE[b]OEMApr 13, 2021OEM
  1. ^Core Complexes (CCX) × cores per CCX
  2. ^Unified shaders :texture mapping units :render output units andcompute units (CU)
  3. ^Single precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.
  1. ^All of the iGPUs are branded asAMD Radeon Graphics.
  2. ^abcdefModel also available as PRO version as 5350GE,[97] 5350G,[98] 5650GE,[99] 5650G,[100] 5750GE,[101] 5750G,[102] released June 1, 2021. Refresh models 5355GE, 5355G, 5655GE, 5655G, 5755GE, 5755G released September 5, 2024.[103]

Non APU or Radeon Graphics branded

[edit]

"Raphael" (2022)

[edit]
Main article:Ryzen

Common features of Ryzen 7000 desktop CPUs:

  • Socket:AM5.
  • All the CPUs supportDDR5-5200 indual-channel mode.
  • L1cache: 64 KB (32 KB data + 32 KB instruction) per core.
  • L2 cache: 1 MB per core.
  • All the CPUs support 28PCIe 5.0 lanes. 4 of the lanes are reserved as link to the chipset.
  • Includes integratedRDNA 2 GPU on theI/O die with 2 CUs and clock speeds of 400 MHz (base), 2.2 GHz (boost).[i] Models with "F" suffixes are without iGPUs.
  • Fabrication process:TSMCN5FinFET (N6 FinFET for the I/O die).
Branding and modelCores
(threads)
Clock rate (GHz)L3 cache
(total)
Thermal
solution
ChipletsCore
config[ii]
TDPRelease
date
MSRP
BaseBoost
Ryzen 97950X3D16 (32)4.25.7128 MB[iii]2 ×CCD
1 ×
I/OD
2 × 8120 WFeb 28, 2023US $699
7950X4.564 MB170 WSep 27, 2022
7900X3D12 (24)4.45.6128 MB[iii]2 × 6120 WFeb 28, 2023US $599
7900X4.764 MB170 WSep 27, 2022US $549
79003.75.4Wraith Prism, None[iv]65 WJan 10, 2023US $429[107]
PRO 7945Wraith Spire,Wraith Stealth[iv]Jun 13, 2023OEM
Ryzen 77800X3D8 (16)4.25.096 MB1 ×CCD
1 ×
I/OD
1 × 8120 WApr 6, 2023US $449
7700X4.55.432 MB105 WSep 27, 2022US $399
77003.85.3Wraith Prism, None[iv]65 WJan 10, 2023US $329[107]
PRO 7745Wraith Spire,Wraith Stealth[iv]Jun 13, 2023OEM
Ryzen 57600X3D[108][109]6 (12)4.14.796 MB1 × 6Aug 31, 2024[v]US $299
7600X4.75.332 MB105 WSep 27, 2022
76003.85.1Wraith Stealth65 WJan 10, 2023US $229[107]
PRO 7645Wraith Spire,Wraith Stealth[iv]Jun 13, 2023OEM

7500X3D

4.04.596 MBNov 12, 2025OEM
7500F3.75.032 MBWraith StealthJul 22, 2023US $179[110]
7400F[vi]4.7Jan 9, 2025China-focused[vii][113]
7400[114]3.34.316 MBSep 16, 2025TBA
  1. ^Self identifies as "AMD Radeon Graphics". SeeRDNA 2 § Integrated graphics processors (iGPs).
  2. ^Core Complexes (CCX) × cores per CCX
  3. ^abOnly one of the two CCXes has additional 64 MB 3D V-Cache.[104] Only the CCX without 3D V-Cache will be able to reach the maximum boost clocks. The CCX with 3D V-Cache will clock lower.[105]
  4. ^abcdeOn August 1, 2025, AMD downgraded or ceased including coolers on select models, as a result of its discontinuation of theWraith Prism and Wraith Spire.[106]
  5. ^Release date for US, where it is only sold though MicroCenter.[108] In Europe it is only available in Germany, and only through MindFactory, which released it on September 5, 2024.[109]
  6. ^The 7400F usesthermal paste between the silicon and the integratedheat spreader, whereas all other 7000 series models use solderedthermal interface material instead.[111]
  7. ^MSRP is unknown. The 7400F launched in China for CNY 849 (including VAT), which at the time was equivalent to US$115.90; excluding VAT, that would equate to about US$100.[112]

"Phoenix" (2024)

[edit]

Common features of Ryzen 8000G desktop APUs:

  • Socket:AM5.
  • All the CPUs supportDDR5-5200 RAM indual-channel mode in 2x1R and 2x2R configuration, but only DDR5-3600 for 4x1R and 4x2R.
  • L1cache: 64 KB (32 KB data + 32 KB instruction) per core.
  • L2 cache: 1 MB per core.
  • Models withZen 4c cores (codenamedPhoenix 2) support 14PCIe 4.0 lanes, while models without them support 20 lanes. 4 of the lanes are reserved as link to the chipset.
  • Includes integratedRDNA 3 GPU.
  • Includes XDNA AI Engine (Ryzen AI) on models without Zen 4c cores.
  • Fabrication process:TSMC4 nm FinFET.
Branding
and model
CPUGPUNPUThermal
solution
TDPRelease
date
MSRP
Cores (threads)Clock rate (GHz)L3 cache
(total)
Core
config[a]
ModelCore
config[b][c]
Clock
(GHz)
TotalZen 4Zen 4cBaseBoost
Ryzen 78700G[d]8 (16)8 (16)4.25.116 MB1 × 8780M12 CUs
768:48:24:12
2.9Ryzen AI
Up to 16 TOPS
Wraith Spire (before Aug 1, 2025)
Wraith Stealth (since Aug 1, 2025)[115]
65 WJan 31, 2024[116]US $329
PRO 8700GE3.62.735 WApr 16, 2024[citation needed]US $299
Ryzen 58600G[d]6 (12)6 (12)4.35.01 × 6760M8 CUs
512:32:16:8
2.8Wraith Stealth65 WJan 31, 2024[116]US $229
PRO 8600GE3.92.635 WApr 16, 2024[citation needed]??
8500G[d]2 (4)4 (8)4.1 / 3.2[e]5.0 / 3.7[f]2 + 4740M4 CUs
256:16:8:4
2.8NoWraith Stealth65 WJan 31, 2024US $179
8500GE[d]3.9 / 3.1[e]35 WApr 16, 2024[citation needed]??
Ryzen 38300G[d]4 (8)1 (2)3 (6)4.0 / 3.2[e]4.9 / 3.6[f]8 MB1 + 32.6Wraith Stealth65 WJan 2024 (OEM) /
Q1 2024 (retail)
OEM /
TBA
8300GE[d]35 WApr 16, 2024[citation needed]??
  1. ^Core Complexes (CCX) × cores per CCX, or Zen 4 + Zen 4c cores
  2. ^Unified shaders :Texture mapping units :Render output units :Ray accelerators :AI accelerators andCompute units (CU)
  3. ^GPUs based onRDNA 3 have dual-issuestream processors so that up to two shader instructions can be executed perclock cycle under certainparallelism conditions.
  4. ^abcdefModel also available as PRO version as 8300G[117], 8300GE[118], 8500G[119], 8500GE[120], 8600G[121], 8700G[122].
  5. ^abcZen 4 cores' base frequency / Zen 4c cores' base frequency
  6. ^abZen 4 cores' boost frequency / Zen 4c cores' boost frequency

Server APUs

[edit]

Opteron X2100-series "Kyoto" (2013) & "Steppe Eagle" (2016)

[edit]
ModelReleasedFabStep.CPUGPUDDR3
memory
support
TDP
(W)
Part numberRelease
price
(USD)
Cores
(threads)
Clock
(GHz)
Cache[a]ModelConfigClock
(MHz)
Processing
power
(GFLOPS)[b]
L1L2
X1150[123]May 29, 2013[124]28 nm4 (4)2.032 KB inst.
32 KB data

per core
2 MB16009–17OX1150IPJ44HM$64
X21501.9R3 (HD 8400)128:8:4
2 CU
266–60028.911–22OX2150IAJ44HM$99
X2170Sep 1, 20162.4R5655–800153.6186611–25OX2170IXJ44JB
  1. ^AMD in its technical documentation uses KB, which it defines as Kilobyte and as equal to 1024 bytes, and MB, which it defines as Megabyte and as equal to 1024 KB.[29]
  2. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

Opteron X3000-series "Toronto" (2017)

[edit]
ModelReleasedFabStep.CPUGPUDDR4
memory
support
TDP
(W)
Part numberRelease
price
(USD)
[Modules/FPUs]
Cores/threads
Clock rate (GHz)Cache[a]ModelConfigClock
(MHz)
Processing
power
(GFLOPS)[b]
BaseBoostL1L2
X3216[126][127]June 201728 nm01h[1]21.63.096 KB inst.
per module

32 KB data
per core
1 MBR5256:16:4
4 CU
800409.6160012–15OX3216AAY23KAOEM for HP
X3418[126][128][2]41.83.22 MBR6384:24:6
6 CU
614.4240012–35OX3418AAY43KA
X3421[126][129]June 20172.13.4R7512:32:8
8 CU
819.2OX3421AAY43KA
  1. ^AMD in its technical documentation uses KB, which it defines as Kilobyte and as equal to 1024 bytes, and MB, which it defines as Megabyte and as equal to 1024 KB.[29]
  2. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

Mobile processors with 3D graphics

[edit]

APU or Radeon Graphics branded

[edit]

Sabine: "Llano" (2011)

[edit]
  • Fabrication 32 nm onGlobalFoundriesSOI process
  • SocketFS1
  • UpgradedStars (AMD 10h architecture) codenamedHusky CPU cores (K10.5) with no L3 cache, and withRedwood-class integrated graphics on die
  • L1 Cache: 64 KB Data per core and 64 KB Instructions per core(BeaverCreek for the dual-core variants andWinterPark for the quad-core variants)
  • IntegratedPCIe 2.0 controller
  • GPU:TeraScale 2
  • Select models support Turbo Core technology for faster CPU operation when the thermal specification permits
  • Support for 1.35 VDDR3L-1333 memory, in addition to regular 1.5 V DDR3 memory specified
  • 2.5 GT/s UMI
  • MMX,Enhanced 3DNow!,SSE,SSE2,SSE3,SSE4a,ABM,NX bit,AMD64,AMD-V
  • PowerNow!
ModelReleasedFabStep.CPUGPUDDR3

Memory
support

TDP

(W)

Part number
Cores
(threads)
Clock

(GHz)

Turbo

(GHz)

Cache[a]ModelConfigClock

(MHz)

GFLOPS[b]
L1L2L3
E2-3000M2011

6/14

32 nmB02 (2)1.82.464 KB inst.
64 KB data

per core
2× 512KBHD 6380G160:8:4400128133335EM3000DDX22GX
A4-3300M2011

6/14

1.92.52× 1MBHD 6480G240:12:4444213.135AM3300DDX23GX
A4-3305MDecember 7, 20112× 512KB160:8:4593189.7AM3305DDX22GX
A4-3310MX2011

6/14

2.12× 1MB240:12:4444213.145AM3310HLX23GX
A4-3320MDecember 7, 20112.02.635AM3320DDX23GX
A4-3330MX2.245AM3330HLX23GX
A4-3330MX2.32× 512KB160:8:4593189.7AM3330HLX23HX
A6-3400M2011

6/14

4 (4)1.42.34× 1MBHD 6520G320:16:840025635AM3400DDX43GX
A6-3410MX1.6160045AM3410HLX43GX
A6-3420MDecember 7, 20111.52.4133335AM3420DDX43GX
A6-3430MX1.7160045AM3430HLX43GX
A8-3500M2011

6/14

1.52.4HD 6620G400:20:8444355.2133335AM3500DDX43GX
A8-3510MX1.82.5160045AM3510HLX43GX
A8-3520MDecember 7, 20111.6133335AM3520DDX43GX
A8-3530MX2011

6/14

1.92.6160045AM3530HLX43GX
A8-3550MXDecember 7, 20112.02.7AM3550HLX43GX
  1. ^AMD in its technical documentation uses KB, which it defines as Kilobyte and as equal to 1024 bytes, and MB, which it defines as Megabyte and as equal to 1024 KB.[29]
  2. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

Comal: "Trinity" (2012)

[edit]
An AMD A10-4600M APU
Model numberReleasedFabStep.SocketCPUGPUDDR3

Memory
support

TDP

(W)

Part number
[Modules/FPUs]

Cores/threads

Clock

(GHz)

Turbo

(GHz)

Cache[a]ModelConfig[note 1]Clock

(MHz)

Turbo

(MHz)

GFLOPS[b]
L1L2

(MB)

A4-4355MSeptember 27, 201232 nmTN-A1FP2[1]21.92.464 KB inst.
per module

16 KB data
per core
1HD 7400G192:12:4
3 CU
327424125.5133317AM4355SHE23HJ
A6-4455MMay 15, 20122.12.82HD 7500G256:16:8
4 CU
167.4AM4455SHE24HJ
A8-4555MSeptember 27, 2012[2]41.62.4

2MB

HD 7600G384:24:8
6 CU
320245.719AM4555SHE44HJ
A8-4557M[130]Mar

2013

1.92.8HD 7000256:16:8
4 CU
497655254.4(L)160035AM4557DFE44HJ
A10-4655MMay 15, 20122.02.8HD 7620G384:24:8
6 CU
360496276.4133325AM4655SIE44HJ
A10-4657M[130]Mar

2013

2.33.2HD 7000497686381.6(L)160035AM4657DFE44HJ
A4-4300MMay 15, 2012FS1r2[1]22.53.01HD 7420G128:8:4
2 CU
480655122.81600AM4300DEC23HJ
A6-4400M2.73.2HD 7520G192:12:4
3 CU
496685190.4AM4400DEC23HJ
A8-4500M[2]41.92.8

2MB

HD 7640G256:16:8
4 CU
253.9AM4500DEC44HJ
A10-4600M2.33.2HD 7660G384:24:8
6 CU
380.9AM4600DEC44HJ
  1. ^AMD in its technical documentation uses KB, which it defines as Kilobyte and as equal to 1024 bytes, and MB, which it defines as Megabyte and as equal to 1024 KB.[29]
  2. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.
  1. ^Unified shader processors (USPs):Texture mapping units (TMUs):Render output units (ROPs). 1 CU (Compute Unit) = 64 USPs: 4 TMUs : 1 ROPs

"Richland" (2013)

[edit]
Model numberReleasedFabStep.SocketCPUGPUDDR3

Memory
support

TDP

(W)

Part number
[Modules/FPUs]

Cores/threads

Clock

(GHz)

Turbo

(GHz)

Cache[a]ModelConfig[note 1]Clock

(MHz)

Turbo

(MHz)

GFLOPS[b]
L1L2

(MB)

A4-5145M2013/532 nmRL-A1FP2[1]22.02.664 KB inst.
per module

16 KB data
per core
1HD 8310G128:8:4
2 CU
424554108.5(L)133317AM5145SIE44HL
A6-5345M2.22.8HD 8410G192:12:4
3 CU
450600172.8AM5345SIE44HL
A8-5545M[2]41.72.74HD 8510G384:28:8
6 CU
554345.619AM5545SIE44HL
A10-5745M2.12.9HD 8610G533626409.325AM5745SIE44HL
A4-5150M2013 Q1FS1r2[1]22.73.31HD 8350G128:8:4
2 CU
533720136.4160035AM5150DEC23HL
A6-5350M2.93.5HD 8450G192:12:4
3 CU
204.6AM5350DEC23HL
A6-5357M2013/5FP2(L)1600AM5357DFE23HL
A8-5550M2013 Q1FS1r2[2]42.13.14HD 8550G256:16:8
4 CU
515263.61600AM5550DEC44HL
A8-5557M2013/5FP2554283.6(L)1600AM5557DFE44HL
A10-5750M2013 Q1FS1r22.53.5HD 8650G384:24:8
6 CU
533409.31866AM5750DEC44HL
A10-5757M2013/5FP2600460.8(L)1600AM5757DFE44HL
  1. ^AMD in its technical documentation uses KB, which it defines as Kilobyte and as equal to 1024 bytes, and MB, which it defines as Megabyte and as equal to 1024 KB.[29]
  2. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.
  1. ^Unified shader processors (USPs):Texture mapping units (TMUs):Render output units (ROPs). 1 CU (Compute Unit) = 64 USPs: 4 TMUs : 1 ROPs

"Kaveri" (2014)

[edit]
Model numberReleasedFabCPUGPUDDR3

Memory
support

TDP

(W)

Part number
[Modules/FPUs]

Cores/threads

Clock

(GHz)

Turbo

(GHz)

Cache[a]ModelConfigClock

(MHz)

Turbo

(MHz)

GFLOPS[b]
L1L2

(MB)

A6-7000June 201428 nm[1]22.23.096 KB inst.
per module

16 KB data
per core
1R4192:12:3
3 CU
494533189.6133317AM7000ECH23JA
A6 PRO - 7050B533204.61600AM705BECH23JA
A8-7100[2]41.83.02× 2 MBR5256:16:4
4 CU
450514230.4160020AM7100ECH44JA
A8 PRO - 7150B1.93.2553283.1AM715BECH44JA
A10-7300R6384:24:8
6 CU
464533356.3AM7300ECH44JA
A10 PRO - 7350B2.13.3533424.7AM735BECH44JA
FX-7500R7498553382.4FM7500ECH44JA
A8-7200P2.43.3R5256:16:4
4 CU
553626283.1186635AM740PDGH44JA
A10-7400P2.53.4R6384:24:8
6 CU
576654442.3AM740PDGH44JA
FX-7600P2.73.6R7512:32:8
8 CU
600686614.42133FM760PDGH44JA
  1. ^AMD in its technical documentation uses KB, which it defines as Kilobyte and as equal to 1024 bytes, and MB, which it defines as Megabyte and as equal to 1024 KB.[29]
  2. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

"Carrizo" (2015)

[edit]
Model numberReleasedFabCPUGPUDDR

Memory
support

TDP

(W)

Part number
[Modules/FPUs]

Cores/threads

Clock

(GHz)

Turbo

(GHz)

Cache[a]ModelConfigClock

(MHz)

GFLOPS[b]
L1L2

(MB)

A6-8500PJune 201528 nm[1]21.63.096 KB inst.
per module

32 KB data
per core
1R5256:16:4
4 CU
800409.63)160012-

35

AM850PAAY23KA
PRO A6-8500BAM850BAAY23KA
PRO A6-8530BQ3 20162.33.24)1866AM853BADY23AB
A8-8600PJune 2015[2]41.63.0

1MB

R6384:24:8
6 CU
720552.93)2133AM860PAAY43KA
PRO A8-8600BAM860BAAY43KA
A10-8700P1.83.2800614.4AM870PAAY43KA
PRO A10-8700BAM870BAAY43KA
PRO A10-8730BQ3 20162.43.3R5720552.94)1866AM873BADY44AB
A10-8780PDecember 20152.03.3R8512:32:8
8 CU
3)?AM878PAIY43KA
FX-8800PJune 20152.13.4R7800819.24)2133FM880PAAY43KA
PRO A12-8800BFM880BAAY43KA
PRO A12-8830BQ3 20162.53.4384:24:8
6 CU
758582.14)1866AM883BADY44AB
  1. ^AMD in its technical documentation uses KB, which it defines as Kilobyte and as equal to 1024 bytes, and MB, which it defines as Megabyte and as equal to 1024 KB.[29]
  2. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

"Bristol Ridge" (2016)

[edit]
Model numberReleasedFabCPUGPUDDR4

Memory
support

TDP

(W)

Part number
[Modules/FPUs]

Cores/threads

Clock

(GHz)

Turbo

(GHz)

Cache[a]ModelConfigClock

(MHz)

GFLOPS[b]
L1L2

(MB)

Pro A6-9500BOctober 24, 201628 nm[1]22.33.296 KB inst.
per module

32 KB data
per core
1R5256:16:4
4 CU
800409.6186612-

15

Pro A8-9600BOctober 24, 2016[2]42.43.32× 1 MBR5384:24:6
6 CU
720552.9186612–

15

A10-9600PJune 2016AM960PADY44AB
A10-9620P[135]2017 (OEM)2.53.4758582.1
Pro A10-9700BOctober 24, 2016R7
A12-9700PJune 2016AM970PADY44AB
Pro A8-9630BOctober 24, 20162.63.3R5800614.4240025–

45

A10-9630PJune 2016AM963PAEY44AB
Pro A10-9730BOctober 24, 20162.83.5R7900691.2
A12-9730PJune 2016AM973PAEY44AB
Pro A12-9800BOctober 24, 20162.73.6R7512:32:8
8 CU
758776.1186612–

15

[1]FX-9800P
A12-9720P[136][137]
June 2016
2017 (OEM)
FM980PADY44AB
?
Pro A12-9830BOctober 24, 20163.03.7900921.6240025–

45

FX-9830PJune 2016FM983PAEY44AB
  1. ^AMD in its technical documentation uses KB, which it defines as Kilobyte and as equal to 1024 bytes, and MB, which it defines as Megabyte and as equal to 1024 KB.[29]
  2. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

"Raven Ridge" (2017)

[edit]
Main article:Ryzen
ModelRelease
date
FabCPUGPUSocketPCIe
lanes
Memory
support
TDP
Cores
(threads)
Clock rate (GHz)CacheModelConfig[i]Clock
(MHz)
Processing
power
(GFLOPS)[ii]
BaseBoostL1L2L3
Athlon Pro 200U2019GloFo
14LP
2 (4)2.33.264 KB inst.
32 KB data
per core
512 KB
per core
4 MBRadeon Vega 3192:12:4
3 CU
1000384FP512 (8+4)DDR4-2400
dual-channel
12–25 W
Athlon 300UJan 6, 20192.43.3
Ryzen 3 2200UJan 8, 20182.53.41100422.4
Ryzen 3 3200UJan 6, 20192.63.51200460.8
Ryzen 3 2300UJan 8, 20184 (4)2.03.4Radeon Vega 6384:24:8
6 CU
1100844.8
Ryzen 3 Pro 2300UMay 15, 2018
Ryzen 5 2500UOct 26, 20174 (8)3.6Radeon Vega 8512:32:16
8 CU
1126.4
Ryzen 5 Pro 2500UMay 15, 2018
Ryzen 5 2600HSep 10, 20183.2DDR4-3200
dual-channel
35–54 W
Ryzen 7 2700UOct 26, 20172.23.8Radeon RX Vega 10640:40:16
10 CU
13001664DDR4-2400
dual-channel
12–25 W
Ryzen 7 Pro 2700UMay 15, 2018Radeon Vega 10
Ryzen 7 2800HSep 10, 20183.3Radeon RX Vega 11704:44:16
11 CU
1830.4DDR4-3200
dual-channel
35–54 W
  1. ^Unified shaders :Texture mapping units :Render output units andCompute units (CU)
  2. ^Single precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

"Picasso" (2019)

[edit]
Main article:Ryzen

Common features of Ryzen 3000 notebook APUs:

Branding and ModelCPUGPUTDPRelease
date
Cores
(threads)
Clock rate (GHz)L3 cache
(total)
Core
config[i]
ModelClock
(GHz)
Config[ii]Processing
power
(GFLOPS)[iii]
BaseBoost
Ryzen 73780U[138]4 (8)2.34.04 MB1 × 4RX Vega 111.4704:44:16
11 CU
1971.215 WOct 2019
3750H[139]RX Vega 10640:40:16
10 CU[140]
1792.035 WJan 6, 2019
3700C[141]15 WSep 22, 2020
3700U[a][142]Jan 6, 2019
Ryzen 53580U[143]2.13.7Vega 91.3576:36:16
9 CU
1497.6Oct 2019
3550H[144]Vega 81.2512:32:16
8 CU[145]
1228.835 WJan 6, 2019
3500C[146]15 WSep 22, 2020
3500U[a][147]Jan 6, 2019
3450U[148]3.5Jun 2020
Ryzen 33350U[149]4 (4)Vega 6384:24:8
6 CU[150]
921.6Jan 6, 2019
3300U[a][151]
  1. ^Core Complexes (CCX) × cores per CCX
  2. ^Unified Shaders :Texture Mapping Units :Render Output Units andCompute Units (CU)
  3. ^Single precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.
  1. ^abcModel also available as PRO version[152][153][154], released April 8, 2019.

"Renoir" (2020)

[edit]
Main article:Ryzen
U
[edit]
Branding and modelCPUGPUTDPRelease
date
Cores
(threads)
Clock rate (GHz)L3 cache
(total)
Core
config[i]
ModelClock
(MHz)
Config[ii]Processing
power
(GFLOPS)[iii]
BaseBoost
Ryzen 74980U8 (16)2.04.48 MB2 × 4Radeon
Graphics[a]
1950512:32:8
8 CU
1996.815 WApr 13, 2021
4800U1.84.217501792Mar 16, 2020
Pro 4750U1.74.11600448:28:8
7 CU
1433.6May 7, 2020
4700U8 (8)2.0Mar 16, 2020
Ryzen 54680U6 (12)2.14.02 × 315001344Apr 13, 2021
Pro 4650U384:24:8
6 CU
1152May 7, 2020
4600UMar 16, 2020
4500U6 (6)2.3
Ryzen 3Pro 4450U4 (8)2.53.74 MB1 × 41400320:20:8
5 CU
896May 7, 2020
4300U4 (4)2.7Mar 16, 2020
  1. ^All of the iGPUs are branded asAMD Radeon Graphics.
  1. ^Core Complexes (CCX) × cores per CCX
  2. ^Unified shaders :texture mapping units :render output units andcompute units (CU)
  3. ^Single precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.
H
[edit]
Branding and modelCPUGPUTDPRelease
date
Cores
(threads)
Clock rate (GHz)L3 cache
(total)
Core
config[i]
ModelClock
(MHz)
Config[ii]Processing
power
(GFLOPS)[iii]
BaseBoost
Ryzen 94900H8 (16)3.34.48 MB2 × 4Radeon
Graphics[a]
1750512:32:8
8 CU
179245 WMar 16, 2020
4900HS3.04.335 W
Ryzen 74800H2.94.21600448:28:8
7 CU
1433.645 W
4800HS
Ryzen 54600H6 (12)3.04.02 × 31500384:24:8
6 CU
1152
4600HS[159][160][161]35 W
  1. ^All of the iGPUs are branded asAMD Radeon Graphics.
  1. ^Core Complexes (CCX) × cores per CCX
  2. ^Unified shaders :texture mapping units :render output units andcompute units (CU)
  3. ^Single precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

"Lucienne" (2021)

[edit]
Main article:Ryzen
  • Fabrication 7 nm by TSMC
  • Socket FP6
  • Die size: 156 mm2
  • 9.8 billion transistors on one single 7 nm monolithic die[citation needed]
  • Up to eightZen 2 CPU cores
  • Fifth generationGCN-based GPU (7 nm Vega)

Common features of Ryzen 5000 notebook APUs:

Branding and ModelCPUGPUTDPRelease
date
Cores
(threads)
Clock rate (GHz)L3 cache
(total)
Core
config[i]
ModelClock
(GHz)
Config[ii]Processing
power
(GFLOPS)[iii]
BaseBoost
Ryzen 75700U8 (16)1.84.38 MB2 × 4Radeon
Graphics
[a]
1.9512:32:8
8 CU
1945.610–25 WJan 12, 2021
Ryzen 55500U[162]6 (12)2.14.02 × 31.8448:28:8
7 CU
1612.8
Ryzen 35300U4 (8)2.63.84 MB1 × 41.5384:24:8
6 CU
1152
  1. ^Core Complexes (CCX) × cores per CCX
  2. ^Unified shaders :texture mapping units :render output units andcompute units (CU)
  3. ^Single precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.
  1. ^All of the iGPUs are branded asAMD Radeon Graphics.

"Cezanne" (2021)

[edit]
Main article:Ryzen
  • Fabrication 7 nm by TSMC
  • Socket FP6
  • Die size: 180 mm2
  • Up to eightZen 3 CPU cores
  • L1cache: 64 KB (32 KB data + 32 KB instruction) per core.
  • L2 cache: 512 KB per core.
  • Fifth generationGCN-based GPU
  • Memory support:DDR4-3200 orLPDDR4-4266 indual-channel mode.
  • All the CPUs support 16PCIe 3.0 lanes.
U
[edit]
Branding and modelCPUGPUTDPRelease
date
Cores
(Threads)
Clock rate (GHz)L3 cache
(total)
Core
config[i]
ModelClock
(GHz)
Config[ii]Processing
power
(GFLOPS)[iii]
BaseBoost
Ryzen 75800U[note 1][163]8 (16)1.94.416 MB1 × 8Radeon
Graphics[a]
2.0512:32:8
8CUs
204810–25 WJan 12, 2021
Ryzen 55600U[note 1][164]6 (12)2.34.21 × 61.8448:28:8
7CUs
1612.8
5560U[165]4.08 MB1.6384:24:8
6CUs
1228.8
Ryzen 35400U[note 1][166][167]4 (8)2.74.11 × 4
  1. ^All of the iGPUs are branded asAMD Radeon Graphics.
  1. ^Core Complexes (CCX) × cores per CCX
  2. ^Unified shaders :texture mapping units :render output units andcompute units (CU)
  3. ^Single precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.
  • ^abcdModel also available as Pro version as 5450U,[168] 5650U,[169] 5850U,[170] released on March 16, 2021.
  • H
    [edit]
    Branding and modelCPUGPUTDPRelease
    date
    Cores
    (Threads)
    Clock rate (GHz)L3 cache
    (total)
    Core
    config[i]
    ModelClock
    (GHz)
    Config[ii]Processing
    power
    (GFLOPS)[iii]
    BaseBoost
    Ryzen 95980HX[171]8 (16)3.34.816 MB1 × 8Radeon
    Graphics[a]
    2.1512:32:8
    8CUs
    2150.435–54 WJan 12, 2021
    5980HS[172]3.035 W
    5900HX[173]3.34.635–54 W
    5900HS[174]3.035 W
    Ryzen 75800H[175][176]3.24.42.0204835–54 W
    5800HS[177]2.835 W
    Ryzen 55600H[178][179]6 (12)3.34.21 × 61.8448:28:8
    7CUs
    1612.835–54 W
    5600HS[180]3.035 W
    1. ^All of the iGPUs are branded asAMD Radeon Graphics.
    1. ^Core Complexes (CCX) × cores per CCX
    2. ^Unified shaders :texture mapping units :render output units andcompute units (CU)
    3. ^Single precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

    "Barceló" (2022)

    [edit]
    Main article:Ryzen
    • Fabrication 7 nm by TSMC
    • Socket FP6
    • Die size: 180 mm2
    • Up to eightZen 3 CPU cores
    • L1cache: 64 KB (32 KB data + 32 KB instruction) per core.
    • L2 cache: 512 KB per core.
    • Fifth generationGCN-based GPU
    • Memory support:DDR4-3200 orLPDDR4-4266 indual-channel mode.
    • All the CPUs support 16PCIe 3.0 lanes.
    Branding and modelCPUGPUTDPRelease
    date
    Cores
    (Threads)
    Clock rate (GHz)L3 cache
    (total)
    Core
    config[i]
    ModelClock
    (GHz)
    Config[ii]Processing
    power
    (GFLOPS)[iii]
    BaseBoost
    Ryzen 75825U[note 1][note 2][181]8 (16)2.04.516 MB1 × 8Radeon
    Graphics[a]
    2.0512:32:8
    8CUs
    204815 WJan 4, 2022
    Ryzen 55625U[note 1][note 2][182]6 (12)2.34.31 × 61.8448:28:8
    7CUs
    1612.8
    Ryzen 35425U[183]4 (8)2.74.18 MB1 × 41.6384:24:6
    6CUs
    ?Jan 30, 2022
    Ryzen 35125C[184]2 (4)3.01 × 2?192:12:8
    3 CU
    ?May 5, 2022
    1. ^All of the iGPUs are branded asAMD Radeon Graphics.
    1. ^Core Complexes (CCX) × cores per CCX
    2. ^Unified shaders :texture mapping units :render output units andcompute units (CU)
    3. ^Single precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.
    1. ^abcModel also available as Pro version as 5475U,[185] 5675U,[186] 5875U,[187] released on April 19, 2022.
    2. ^abcModel also available as Chromebook optimized version as 5425C,[188] 5625C,[189] 5825C,[190] released on May 5, 2022.

    "Rembrandt" (2022)

    [edit]
    Main article:Ryzen

    Common features of Ryzen 6000 notebook APUs:

    • Socket: FP7, FP7r2.
    • All the CPUs supportDDR5-4800 orLPDDR5-6400 indual-channel mode.
    • L1cache: 64 KB (32 KB data + 32 KB instruction) per core.
    • L2 cache: 512 KB per core.
    • All the CPUs support 16PCIe 4.0 lanes.
    • Native USB 4 (40Gbps) Ports: 2
    • Native USB 3.2 Gen 2 (10Gbps) Ports: 2
    • Includes integratedRDNA 2 GPU.
    • Fabrication process:TSMCN6 FinFET.
    Branding and modelCPUGPUTDPRelease
    date
    Cores
    (threads)
    Clock (GHz)L3 cache
    (total)
    Core
    config[i]
    ModelClock
    (GHz)
    Config[ii]Processing
    power
    (GFLOPS)[iii]
    BaseBoost
    Ryzen 96980HX8 (16)3.35.016 MB1 × 8680M2.4768:48:8
    12 CUs
    3686.445 WJan 4, 2022
    [191]
    6980HS35 W
    6900HX[a]4.945 W
    6900HS[a]35 W
    Ryzen 76800H[a]3.24.72.23379.245 W
    6800HS[a]35 W
    6800U[a]2.715–28 W
    Ryzen 56600H[a]6 (12)3.34.51 × 6660M1.9384:24:8
    6 CUs
    1459.245 W
    6600HS[a]35 W
    6600U[a]2.915–28 W
    1. ^Core Complexes (CCX) × cores per CCX
    2. ^Unified shaders :texture mapping units :render output units andcompute units (CU)
    3. ^Single precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.
    1. ^abcdefghModel also available as PRO version (6650U[192], 6650H[193], 6650HS[194], 6850U[195], 6850H[196], 6850HS[197], 6950H[198], 6950HS[199]), released on April 19, 2022.

    "Phoenix" (2023)

    [edit]
    Main article:Ryzen

    "Dragon Range" (2023)

    [edit]
    Main article:Ryzen

    Ultra-mobile APUs

    [edit]

    Brazos: "Desna", "Ontario", "Zacate" (2011)

    [edit]
    ModelReleasedFabStep.CPUGPUDDR3

    Memory
    support

    TDP

    (W)

    Part number
    Cores
    (threads)
    Clock

    (GHz)

    Turbo

    (GHz)

    Cache[a]ModelConfigClock

    (MHz)

    Turbo

    (MHz)

    GFLOPS[b]
    L1L2
    Z-01June 1, 201140 nmB02 (2)1.032KB inst.
    32KB data

    per core
    2× 512KBHD 625080:8:427644.110665.9XMZ01AFVB22GV
    C-30January 4, 20111 (1)1.2512KB9CMC30AFPB12GT
    C-502 (2)1.02× 512KBCMC50AFPB22GT
    C-60August 22, 2011C01.33HD 6290400CMC60AFPB22GV
    E-240January 4, 2011B01 (1)1.5512KBHD 631050080106618EME240GBB12GT
    E-300August 22, 20112 (2)1.3

    512KB

    48878EME300GBB22GV
    E-350January 4, 20111.649278.7EME350GBB22GT
    E-450August 22, 2011B0
    C0
    1.65HD 632050860081.21333EME450GBB22GV
    1. ^AMD in its technical documentation uses KB, which it defines as Kilobyte and as equal to 1024 bytes, and MB, which it defines as Megabyte and as equal to 1024 KB.[29]
    2. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

    Brazos 2.0: "Ontario", "Zacate" (2012)

    [edit]
    ModelReleasedFabStep.CPUGPUDDR3

    Memory
    support

    TDP

    (W)

    Part number
    Cores
    (threads)
    Clock

    (GHz)

    Turbo

    (GHz)

    Cache[a]ModelConfigClock

    (MHz)

    Turbo

    (MHz)

    GFLOPS[b]
    L1L2L3
    C-70September 15, 201240 nmC02 (2)1.01.3332 KB inst.
    32 KB data

    per core
    2× 512KBHD 729080:8:427640044.110669CMC70AFPB22GV
    E1-1200June 6, 2012C01.4HD 731050080106618EM1200GBB22GV
    E1-1500January 7, 20131.4852984.6
    E2-1800June 6, 20121.7HD 734052368083.61333EM1800GBB22GV
    E2-2000January 7, 20131.7553870086
    1. ^AMD in its technical documentation uses KB, which it defines as Kilobyte and as equal to 1024 bytes, and MB, which it defines as Megabyte and as equal to 1024 KB.[29]
    2. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

    Brazos-T: "Hondo" (2012)

    [edit]
    ModelReleasedFabStep.CPUGPUDDR3
    Memory
    support
    TDP (W)Part number
    Cores
    (threads)
    Clock (GHz)Cache[a]ModelConfigClock (MHz)GFLOPS[b]
    L1L2
    Z-60October 9, 201240 nmC02 (2)1.032KB inst.
    32KB data

    per core
    2× 512 KBHD 625080:8:427644.110664.5XMZ60AFVB22GV
    1. ^AMD in its technical documentation uses KB, which it defines as "kilobyte" and as equal to 1024 B (i.e., 1KiB), and MB, which it defines as "megabyte" and as equal to 1024 KB (1 MiB).[29]
    2. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

    "Kabini", "Temash" (2013)

    [edit]

    Temash, Elite Mobility APU

    [edit]
    ModelReleasedFabStep.CPUGPUDDR3L

    Memory
    support

    TDP

    (W)

    Part number
    Cores
    (threads)
    Clock

    (GHz)

    Turbo

    (GHz)

    Cache[a]ModelConfigClock

    (MHz)

    Turbo

    (MHz)

    L1L2

    (MB)

    A4-1200May 23, 201328 nmKB-A12 (2)1.032 KB inst.
    32 KB data

    per core
    1HD 8180128:8:4
    2 CU
    22510664AT1200IFJ23HM
    A4-1250HD 821030013338AT1250IDJ23HM
    A4-13504 (4)21066AT1350IDJ44HM
    A6-14501.4HD 8250400AT1450IDJ44HM
    1. ^AMD in its technical documentation uses KB, which it defines as Kilobyte and as equal to 1024 bytes, and MB, which it defines as Megabyte and as equal to 1024 KB.[29]

    Kabini, Mainstream APU

    [edit]
    ModelReleasedFabStep.CPUGPUDDR3L

    Memory
    support

    TDP

    (W)

    Part number
    Cores
    (threads)
    Clock

    (GHz)

    Cache[a]ModelConfigClock

    (MHz)

    L1L2

    (MB)

    L3
    E1-2100May 201328 nmKB-A12 (2)1.032KB inst.
    32KB data

    per core
    1HD 8210128:8:4
    2 CU
    30013339EM2100ICJ23HM
    E1-2200Feb 20141.05EM2200ICJ23HM
    E1-2500May 20131.4HD 824040015EM2500IBJ23HM
    E2-30001.65HD 82804501600EM3000IBJ23HM
    E2-3800Feb 201441.32EM3800IBJ44HM
    A4-5000May 20131.5HD 8330497AM5000IBJ44HM
    A4-5100Feb 20141.55AM5100IBJ44HM
    A6-5200May 20132.0HD 840060025AM5200IAJ44HM
    A4 Pro-3340BNov 20142.2HD 8240400AM334BIAJ44HM
    1. ^AMD in its technical documentation uses KB, which it defines as Kilobyte and as equal to 1024 bytes, and MB, which it defines as Megabyte and as equal to 1024 KB.[29]

    "Beema", "Mullins" (2014)

    [edit]

    Mullins, Tablet/2-in-1 APU

    [edit]
    ModelReleasedFabStep.CPUGPUDDR3L

    Memory
    support

    TDP

    (W)

    Part number
    Cores
    (threads)
    Clock

    (GHz)

    Turbo

    (GHz)

    Cache[a]ModelConfigClock

    (MHz)

    Turbo

    (MHz)

    L1L2

    (MB)

    L3
    E1 Micro-6200TQ2 201428 nmML-A12 (2)1.01.432 KB inst.
    32 KB data

    per core
    1R2128:8:4
    2 CU
    30060010663.95EM620TIWJ23JB
    A4 Micro-6400T4 (4)1.62R335068613334.5AM640TIVJ44JB
    A10 Micro-6700T1.22.2R6500AM670TIVJ44JB
    1. ^AMD in its technical documentation uses KB, which it defines as Kilobyte and as equal to 1024 bytes, and MB, which it defines as Megabyte and as equal to 1024 KB.[29]

    Beema, Notebook APU

    [edit]
    ModelReleasedFabStep.CPUGPUDDR3 Memory supportTDP (W)Part number
    Cores(threads)[FPUs]Clock (GHz)Turbo (GHz)Cache[a]ModelConfigClock (MHz)Turbo (MHz)
    L1L2 (MB)L3
    E1-6010Q2 201428 nmML-A12 (2)1.3532 KB inst. 32 KB data per core1R2128:8:4
    2 CU
    300600(L)133310EM6010IUJ23JB
    E1-6015[201]Q2 20151.4
    E2-6110Q2 20144 (4)1.52(L)160015EM6110ITJ44JB
    A4-62101.8R3350686AM6210ITJ44JB
    A4-6250J[202]2.025
    A6-63101.82.4R4300800(L)186615AM6310ITJ44JB
    A8-64102.0R5AM6410ITJ44JB
    1. ^AMD in its technical documentation uses KB, which it defines as Kilobyte and as equal to 1024 bytes, and MB, which it defines as Megabyte and as equal to 1024 KB.[29]

    "Carrizo-L" (2015)

    [edit]
    ModelReleasedFabStep.CPUGPUDDR3
    Memory
    support
    TDP

    (W)

    Part number
    Cores
    (threads)
    [FPUs]
    Clock

    (GHz)

    Turbo

    (GHz)

    Cache[a]ModelConfigClockTurbo

    (MHz)

    L1L2

    (MB)

    E1-7010May 201528 nmML-A121.532 KB inst.
    32 KB data

    per core
    1R2128:8:4
    2 CU
    400(L)133310EM7010IUJ23JB
    EM7010JCY23JB
    EM7010JCY23JBD
    E2-711041.82R2600(L)160012–25EM7110ITJ44JB
    EM7110JBY44JB
    EM7110JBY44JBD
    A4-72102.2R3686AM7210ITJ44JB
    AM7210JBY44JBD
    A6-73102.02.4R4800(L)1866AM7310ITJ44JB
    AM7310JBY44JB
    AM7310JBY44JBD
    A8-74102.22.5R584715AM7410JBY44JB
    A4 PRO-3350BMay 20162.02.4R48001600AM335BITJ44JB
    1. ^AMD in its technical documentation uses KB, which it defines as Kilobyte and as equal to 1024 bytes, and MB, which it defines as Megabyte and as equal to 1024 KB.[29]

    "Stoney Ridge" (2016)

    [edit]
    Model numberReleasedFabCPUGPUDDR4

    Memory
    support

    TDP

    (W)

    Part number
    [Modules/FPUs]

    Cores/threads

    Clock

    (GHz)

    Turbo

    (GHz)

    Cache[a]ModelConfigClock

    (MHz)

    GFLOPS[b]
    L1L2

    (MB)

    E2-9000eNovember 201628 nm[1]21.52.096 KB inst.
    per module

    32 KB data
    per core
    1R2128:8:4
    2 CU
    600153.618666EM900EANN23AC
    E2-9000June 20161.82.210EM9000AKN23AC
    E2-90102.02.210–15EM9010AVY23AC
    A4-9120Q2 20172.22.5R3655167.6213310–15AM9120AYN23AC
    A4-9125Q2 20182.32.6686175.6AM9125AYN23AC
    A4-9120CJanuary 6, 20191.62.4R4192:12:8
    3 CU
    600230.418666AM912CANN23AC
    A6-9200eNovember 20161.82.72133AM920EANN23AC
    A6-92002.02.810AM9200AKN23AC
    A6-9210June 20162.42.810–15AM9210AVY23AC
    A6-9220Q2 20172.52.9655251.510–15AM9220AYN23AC
    A6-9225Q2 20182.63.0686263.4AM9225AYN23AC
    A6-9220CJanuary 6, 20191.82.7R5720276.418666AM922CANN23AC
    A9-9400November 20162.43.2800307.2213310AM9400AKN23AC
    A9-9410June 20162.93.510–25AM9410AFY23AC
    A9-9420Q2 20173.03.6847325.2AM9420AYN23AC
    A9-9425Q2 20183.13.7900345.6AM9425AYN23AC
    A9-9430[204]Q2 20173.23.5847325.2240025AD9430AJN23AC
    Pro A4-4350BQ1 20182.52.9655251.5213315
    Pro A4-5350BQ1 20203.03.6847325.2
    Pro A6-7350BQ1 2018
    Pro A6-8350BQ1 20203.13.7900345.6
    1. ^AMD in its technical documentation uses KB, which it defines as Kilobyte and as equal to 1024 bytes, and MB, which it defines as Megabyte and as equal to 1024 KB.[29]
    2. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

    "Dalí" (2020)

    [edit]
    ModelRelease
    date
    FabCPUGPUSocketPCIe
    lanes
    Memory
    support
    TDPPart number
    Cores
    (threads)
    Clock rate (GHz)CacheModelConfig[a]Clock
    (GHz)
    Processing
    power
    (GFLOPS)[b]
    BaseBoostL1L2L3
    AMD 3020eJan 6, 202014 nm2 (2)1.22.664 KB inst.
    32 KB data
    per core
    512 KB
    per core
    4 MBRadeon
    Graphics
    (Vega)
    192:12:4
    3 CU
    1.0384FP512 (8+4)DDR4-2400
    dual-channel
    6 WYM3020C7T2OFG
    Athlon PRO 3045BQ1 20212.33.2128:8:4
    2 CU
    1.1281.615 WYM3045C4T2OFG
    Athlon Silver 3050UJan 6, 2020YM3050C4T2OFG
    Athlon Silver 3050CSep 22, 2020YM305CC4T2OFG
    Athlon Silver 3050eJan 6, 20202 (4)1.42.8192:12:4
    3 CU[205]
    1.03846 WYM3050C7T2OFG
    Athlon PRO 3145BQ1 20212.43.315 WYM3145C4T2OFG
    Athlon Gold 3150UJan 6, 2020YM3150C4T2OFG
    Athlon Gold 3150CSep 22, 2020YM315CC4T2OFG
    Ryzen 3 3250UJan 6, 20202.63.51.2460.8YM3250C4T2OFG
    Ryzen 3 3250CSep 22, 2020YM325CC4T2OFG
    1. ^Unified shaders :Texture mapping units :Render output units andCompute units (CU)
    2. ^Single precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

    "Pollock" (2020)

    [edit]
    ModelRelease
    date
    FabCPUGPUSocketPCIe
    lanes
    Memory
    support
    TDPPart number
    Cores
    (threads)
    Clock rate (GHz)CacheModelConfig[a]Clock
    (GHz)
    Processing
    power
    (GFLOPS)[b]
    BaseBoostL1L2L3
    AMD 3015eJul 6, 202014 nm2 (4)1.22.364 KB inst.
    32 KB data
    per core
    512 KB
    per core
    4 MBRadeon
    Graphics
    (Vega)
    192:12:4
    3 CU
    0.6230.4FT512 (8+4)DDR4-1600
    single-channel
    6 WAM3015BRP2OFJ
    AMD 3015CeApr 29, 2021AM301CBRP2OFJ
    1. ^Unified shaders :Texture mapping units :Render output units andCompute units (CU)
    2. ^Single precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

    "Mendocino" (2022)

    [edit]
    Main article:Ryzen

    Common features:

    • Socket: FT6
    • All the CPUs supportLPDDR5-5500 indual-channel mode.
    • L1cache: 64 KB (32 KB data + 32 KB instruction) per core.
    • L2 cache: 512 KB per core.
    • All the CPUs support 4PCIe 3.0 lanes.
    • Includes integratedRDNA2 GPU.
    • Fabrication process:TSMC6 nm FinFET.
    Branding and ModelCPUGPUTDPRelease
    date
    Cores
    (threads)
    Clock rate (GHz)L3 cache
    (total)
    Core
    config[i]
    ModelClock
    BaseBoost
    Athlon Gold7220U[a][206]2 (4)2.43.74 MB1 x 2610M
    2 CU
    1900 MHz8–15 WSep 20, 2022[207]
    Athlon Silver7120U[a][208]2 (2)3.52 MB
    1. ^Core Complexes (CCX) × cores per CCX
    1. ^abModel also available as Chromebook optimized version as 7220C[209] and 7120C[210] released on May 23, 2023


    Embedded APUs

    [edit]
    Further information:Embedded system

    G-Series

    [edit]

    Brazos: "Ontario" and "Zacate" (2011)

    [edit]
    ModelReleasedFabStep.CPUGPUDDR3

    Memory
    support

    TDP

    (W)

    Part number
    Cores
    (threads)
    Clock

    (GHz)

    Cache[a]ModelConfigClock

    (MHz)

    Processing
    power
    (GFLOPS)[b]
    L1L2
    G-Series T24LMarch 1, 2011
    May 23, 2011
    40 nmB01 (1)0.8
    1.0
    32 KB inst.
    32 KB data

    per core
    512 KB10665GET24LFPB12GTE
    GET24LFQB12GVE
    G-Series T30LMarch 1, 2011
    May 23, 2011
    1.418GET30LGBB12GTE
    GET30LGBB12GVE
    G-Series T48LMarch 1, 2011
    May 23, 2011
    2 (2)2 × 512 KBGET48LGBB22GTE
    GET48LGBB22GVE
    G-Series T16RJune 25, 2012B01 (1)0.615512 KBHD 625080:8:427644.1(L)10664.5GET16RFWB12GVE
    G-Series T40RMay 23, 20111.028044.810665.5GET40RFQB12GVE
    G-Series T40E2 (2)2 × 512 KB6.4GET40EFQB22GVE
    G-Series T40NJanuary 19, 2011
    May 23, 2011
    HD 6250
    HD 6290
    9GET40NFPB22GTE
    GET40NFPB22GVE
    G-Series T40RMay 23, 20111 (1)512 KBHD 62505.5GET40RFSB12GVE
    G-Series T44RJanuary 19, 2011
    May 23, 2011
    1.29GET44RFPB12GTE
    GET44RFPB12GVE
    G-Series T48EJune 25, 20122 (2)1.42 × 512 KB18GET48EGBB22GVE
    G-Series T48NJanuary 19, 2011
    May 23, 2011
    HD 6310500
    520
    80
    83.2
    GET48NGBB22GTE
    GET48NGBB22GVE
    G-Series T52RJanuary 19, 2011
    May 23, 2011
    1 (1)1.5512 KB500801066
    1333
    GET52RGBB12GTE
    GET52RGBB12GVE
    G-Series T56EJune 25, 20122 (2)1.652 × 512 KBHD 6250275441333GET56EGBB22GVE
    G-Series T56NJanuary 19, 2011
    May 23, 2011
    1.6
    1.65
    HD 6310
    HD 6320
    500801066
    1333
    GET56NGBB22GTE
    GET56NGBB22GVE
    1. ^AMD in its technical documentation uses KB, which it defines as Kilobyte and as equal to 1024 bytes, and MB, which it defines as Megabyte and as equal to 1024 KB.[29]
    2. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

    "Kabini" (2013,SoC)

    [edit]
    ModelReleasedFabStep.CPUGPUDDR3

    Memory
    support

    TDP

    (W)

    Junction temperature (°C)Part number
    Cores
    (threads)
    Clock

    (GHz)

    Cache[a]ModelConfigClock

    (MHz)

    Processing
    power
    (GFLOPS)[b]
    L1L2

    (MB)

    GX-210UAUnknown28 nmB02 (2)1.032 KB inst.
    32 KB data

    per core
    113338.50-90GE210UIGJ23HM
    GX-210JAJuly 30, 2013HD 8180E128:8:4
    2 CU
    22557.610666GE210JIHJ23HM
    GX-209HAUnknownHD 8400E600153.69-40-105GE209HISJ23HM
    GX-210HAJune 1, 2013HD 8210E30076.813330-90GE210HICJ23HM
    GX-217GA1.65HD 8280E450115.2160015GE217GIBJ23HM
    GX-411GAUnknown4 (4)1.12HD 8210E30076.81066-40-105GE411GIRJ44HM
    GX-415GAJune 1, 20131.5HD 8330E50012816000-90GE415GIBJ44HM
    GX-416RA1.6GE416RIBJ44HM
    GX-420CA2.0HD 8400E128:8:4
    2 CU
    600153.625GE420CIAJ44HM
    1. ^AMD in its technical documentation uses KB, which it defines as Kilobyte and as equal to 1024 bytes, and MB, which it defines as Megabyte and as equal to 1024 KB.[29]
    2. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

    "Steppe Eagle" (2014,SoC)

    [edit]
    ModelReleasedFabStep.CPUGPUDDR3

    Memory
    support

    TDP

    (W)

    Junction temperature (°C)Part number
    Cores
    (threads)
    [FPUs]
    Clock

    (GHz)

    Cache[a]ModelConfigClock

    (MHz)

    Processing
    power
    (GFLOPS)[b]
    L1L2

    (MB)

    GX-210JCJune 4, 201428 nmML-A12 (2) [1]1.032 KB inst.
    32 KB data

    per core
    1R1E128:8:4
    2 CU
    26768.316006-40-105GE210JIZJ23JB
    GX-212JC1.2R2E30076.813330-90GE212JIYJ23JB
    GX-216HC1.6R4E106610-40-105GE216HHBJ23JB
    GX-222GC2.2R5E655167.61600150-90GE222GITJ23JB
    GX-412HC4 (4) [2]1.22R3E30076.813337GE412HIYJ44JB
    GX-424CC2.4R5E497127.2186625GE424CIXJ44JB
    1. ^AMD in its technical documentation uses KB, which it defines as Kilobyte and as equal to 1024 bytes, and MB, which it defines as Megabyte and as equal to 1024 KB.[29]
    2. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

    "Crowned Eagle" (2014,SoC)

    [edit]
    ModelReleasedFabCPUGPUDDR3

    Memory
    support

    TDP

    (W)

    Junction

    temperature

    (°C)

    Part number
    Cores
    (threads)
    [FPUs]
    Clock

    (GHz)

    Cache[a]
    L1L2

    (MB)

    GX-224PCJune 4, 201428 nm2 (2) [1]2.432 KB inst.
    32 KB data

    per core
    11866250-90GE224PIXJ23JB
    GX-410VC4 (4) [2]1.0210667-40-105GE410VIZJ44JB
    GX-412TC1.2160060-90GE412TIYJ44JB
    GX-420MC2.017.5GE420MIXJ44JB
    1. ^AMD in its technical documentation uses KB, which it defines as Kilobyte and as equal to 1024 bytes, and MB, which it defines as Megabyte and as equal to 1024 KB.[29]

    LX-Family (2016,SoC)

    [edit]
    • Fabrication 28 nm
    • SocketFT3b (769-BGA)
    • 2Puma x86 cores with 1MB shared L2 cache
    • L1 Cache: 32 KB Data per core and 32 KB Instructions per core
    • MMX,SSE,SSE2,SSE3,SSSE3,SSE4a,SSE4.1,SSE4.2,AVX,F16C, CLMUL,AES, MOVBE (Move Big-Endian instruction), XSAVE/XSAVEOPT,ABM,BMI1,AMD-V support
    • GPU microarchitecture:Graphics Core Next (GCN) (1CU) with support for DirectX 11.2
    • Single channel 64-bit DDR3 memory withECC
    • Integrated Controller Hub supports: PCIe® 2.0 4×1, 2 USB3 + 4 USB2 ports, 2 SATA 2.0/3.0 ports
    ModelReleasedFabStep.CPUGPUDDR3

    Memory
    support

    TDP

    (W)

    Part number
    Cores
    (threads)
    [FPUs]
    Clock

    (GHz)

    Cache[a]ModelConfigClock

    (MHz)

    Processing
    power
    (GFLOPS)[b]
    L1L2

    (MB)

    GX-208JLFebruary 23, 201628 nmML-A120.832 KB inst.
    32 KB data

    per core
    1R1E64:4:1
    1 CU
    26734.113336GE208JIVJ23JB
    GX-210HL20171.010667GE208HIZJ23JB
    GX-210JLFebruary 23, 201613336GE210JIVJ23JB
    GX-210KL20174.5GE210KIVJ23JB
    GX-215GLFebruary 23, 20161.549763.6160015GE215GITJ23JB
    GX-218GL1.8GE218GITJ23JB
    1. ^AMD in its technical documentation uses KB, which it defines as Kilobyte and as equal to 1024 bytes, and MB, which it defines as Megabyte and as equal to 1024 KB.[29]
    2. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

    I-Family: "Brown Falcon" (2016,SoC)

    [edit]
    ModelReleasedFabCPUGPUMemory
    support
    TDP

    (W)

    Part number
    [Modules/FPUs]
    Cores/threads
    Clock

    (GHz)

    Turbo

    (GHz)

    Cache[a]ModelConfig[note 1]Clock

    (MHz)

    Processing
    power
    (GFLOPS)[b]
    L1L2

    (MB)

    GX-217GIFebruary 23, 201628 nm[1] 21.72.096 KB inst.
    per module

    32 KB data
    per core
    1R6E256:16:4
    4 CU
    758388DDR3/DDR4-160015GE217GAAY23KA
    GX-420GI[214]2016[2] 42.02.22R6E


    R7E
    256:16:4
    4 CU

    384:24:4
    6 CU
    758


    626
    388


    480.7
    DDR4-186616.1GE420GAAY43KA
    1. ^AMD in its technical documentation uses KB, which it defines as Kilobyte and as equal to 1024 bytes, and MB, which it defines as Megabyte and as equal to 1024 KB.[29]
    2. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

    J-Family: "Prairie Falcon" (2016,SoC)

    [edit]
    ModelReleasedFabCPUGPUMemory
    support
    TDP

    (W)

    Junction temperature (°C)Part number
    [Modules/FPUs]
    Cores/threads
    Clock

    (GHz)

    Turbo

    (GHz)

    Cache[a]ModelConfig[note 1]Clock

    (MHz)

    TurboProcessing
    power
    (GFLOPS)[b]
    L1L2

    (MB)

    GX-212JJ201828 nm[1] 21.21.696 KB inst.
    per module

    32 KB data
    per core
    1R1E64:4:1
    1 CU
    60076.8DDR3-1333
    DDR4-1600
    6–

    10

    0-90GE212JAWY23AC
    GX-215JJ20171.52.0R2E128:8:2
    2 CU
    153.6DDR3-1600
    DDR4-1866
    GE215JAWY23AC
    GX-220IJ20182.02.210–

    15

    GE220IAVY23AC
    GX-224IJ20172.42.8R4E192:12:3
    3 CU
    230.4DDR3-1866
    DDR4-2133
    GE224IAVY23AC
    1. ^AMD in its technical documentation uses KB, which it defines as Kilobyte and as equal to 1024 bytes, and MB, which it defines as Megabyte and as equal to 1024 KB.[29]
    2. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

    R-Series

    [edit]

    Comal: "Trinity" (2012)

    [edit]
    ModelReleasedFabStep.CPUGPUDDR3

    Memory
    support

    TDP

    (W)

    Part number
    [Modules/FPUs]
    Cores/threads
    Clock

    (GHz)

    Turbo

    (GHz)

    Cache[a]ModelConfig[note 1]Clock

    (MHz)

    Turbo

    (MHz)

    Processing
    power
    (GFLOPS)[b]
    L1L2

    (MB)

    R-252FMay 21, 201232 nmB0[1] 21.92.464 KB inst.
    per module

    16 KB data
    per core
    1HD 7400G192:12:4
    3 CU
    333417127.8133317RE252FSHE23HJE
    R-260H2.12.62?HD 7500G256:16:8
    4 CU
    327424167.4RE260HSHE24HJE
    R-268D2.53.01HD 7420G192:12:4
    3 CU
    470640180.4160035RE268DDEC23HJE
    R-272F2.73.2HD 7520G497686190.8RE272FDEC23HJE
    R-452L[2] 41.62.42 × 2 MBHD 7600G256:16:8
    4 CU
    327424167.419RE452LSHE44HJE
    R-460H1.92.8HD 7640G497655254.435RE460HDEC44HJE
    R-460L2.0HD 7620G384:24:8
    6 CU
    360497276.4133325RE460LSIE44HJE
    R-464L2.33.2HD 7660G497686381.6160035RE464LDEC44HJE
    1. ^AMD in its technical documentation uses KB, which it defines as Kilobyte and as equal to 1024 bytes, and MB, which it defines as Megabyte and as equal to 1024 KB.[29]
    2. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

    "Bald Eagle" (2014)

    [edit]
    ModelReleasedFabCPUGPUDDR3

    Memory
    support

    TDP

    (W)

    Junction temperature (°C)Part number
    [Modules/FPUs]
    Cores/threads
    Clock

    (GHz)

    Turbo

    (GHz)

    Cache[a]ModelConfig[note 1]Clock

    (MHz)

    Turbo

    (MHz)

    Processing
    power
    (GFLOPS)[b]
    L1L2

    (MB)

    RX-219NBMay 20, 201428 nm[1] 22.23.096 KB inst.
    per module

    16 KB data
    per core
    1160015-

    17

    0-100RE219NECH23JA
    RX-225FBR4192:12:4
    3 CU
    464533178.1RE225FECH23JA
    RX-425BB[2] 42.53.44R6384:24:8
    6 CU
    576654442.3186630-

    35

    RE425BDGH44JA
    RX-427BB2.73.6R7512:32:8
    8 CU
    600686614.4213330-

    35

    RE427BDGH44JA
    RX-427NBRE427NDGH44JA
    1. ^AMD in its technical documentation uses KB, which it defines as Kilobyte and as equal to 1024 bytes, and MB, which it defines as Megabyte and as equal to 1024 KB.[29]
    2. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

    "Merlin Falcon" (2015,SoC)

    [edit]
    ModelReleasedFabSteppingCPUGPUMemory
    support
    TDP

    (W)

    Junction temperature (°C)Part number
    [Modules/FPUs]
    Cores/threads
    Clock

    (GHz)

    Turbo

    (GHz)

    Cache[a]ModelConfig[note 1]Clock

    (GHz)

    TurboProcessing
    power
    (GFLOPS)[b]
    L1L2

    (MB)

    L3
    RX-216TDOctober 21, 201528 nm[1] 21.63.096 KB inst.
    per module

    32 KB data
    per core
    1DDR3/DDR4-160012-

    15

    0-90RE216TAAY23KA
    RX-216GDR5256:?:?
    4 CU
    0.8409.6RE216GAAY23KA
    RX-416GD[2] 42.42R6384:?:?
    6 CU
    0.72552.915-40-105RE416GATY43KA
    RX-418GDOctober 21, 20151.83.2384:?:?
    6 CU
    0.8614.4DDR3-2133
    DDR4-2400
    12-

    35

    0-90RE418GAAY43KA
    RX-421BD2.13.4R7512:?:?
    8 CU
    819.2RE421BAAY43KA
    RX-421NDRE421NAAY43KA
    1. ^AMD in its technical documentation uses KB, which it defines as Kilobyte and as equal to 1024 bytes, and MB, which it defines as Megabyte and as equal to 1024 KB.[29]
    2. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

    1000-Series

    [edit]

    V1000-Family: "Great Horned Owl" (2018,SoC)

    [edit]
    ModelRelease
    date
    FabCPUGPUMemory
    support
    TDPJunction
    temp.
    range

    (°C)
    Cores
    (threads)
    Clock rate (GHz)CacheModelConfig[i]Clock
    (GHz)
    Processing
    power
    (GFLOPS)[ii]
    BaseBoostL1L2L3
    V1202BFebruary 2018GloFo
    14LP
    2 (4)2.33.264 KBinst.
    32 KB data
    per core
    512 KB
    per core
    4 MBVega 3192:12:16
    3 CU
    1.0384DDR4-2400
    dual-channel
    12–25 W0–105
    V1404IDecember 20184 (8)2.03.6Vega 8512:32:16
    8 CU
    1.11126.4-40–105
    V1500B2.20–105
    V1605BFebruary 20182.03.6Vega 8512:32:16
    8 CU
    1.11126.4
    V1756B3.25DDR4-3200
    dual-channel
    35–54 W
    V1780BDecember 20183.35
    V1807BFebruary 20183.8Vega 11704:44:16
    11 CU
    1.31830.4
    1. ^Unified Shaders :Texture Mapping Units :Render Output Units andCompute Units (CU)
    2. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

    R1000-Family: "Banded Kestrel" (2019,SoC)

    [edit]
    ModelRelease
    date
    FabCPUGPUMemory
    support
    TDP
    Cores
    (threads)
    Clock rate (GHz)CacheModelConfig[i]Clock
    (GHz)
    Processing
    power
    (GFLOPS)[ii]
    BaseBoostL1L2L3
    R1102GFebruary 25, 2020GloFo
    14LP
    2 (2)1.22.664 KB inst.
    32 KB data
    per core
    512 KB
    per core
    4 MBVega 3192:12:4
    3 CU
    1.0384DDR4-2400
    single-channel
    6 W
    R1305G2 (4)1.52.8DDR4-2400
    dual-channel
    8-10 W
    R1505GApril 16, 20192.43.312–25 W
    R1606G2.63.51.2460.8
    1. ^Unified Shaders :Texture Mapping Units :Render Output Units andCompute Units (CU)
    2. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

    2000-Series

    [edit]

    V2000-Family: "Grey Hawk" (2020,SoC)

    [edit]
    ModelRelease
    date
    FabCPUGPUSocketPCIe
    support
    Memory
    support
    TDP
    Cores
    (threads)
    Clock rate (GHz)CacheArchi-
    tecture
    Config[i]Clock
    (GHz)
    Processing
    power[ii]
    (GFLOPS)
    BaseBoostL1L2L3
    V2516[218]Nov 10, 2020[219]TSMC
    7FF
    6 (12)2.13.9532 KBinst.
    32 KBdata
    per core
    512 KB
    per core
    8 MBGCN 5384:24:8
    6 CU
    1.51152FP620
    (8+4+4+4)
    PCIe 3.0
    DDR4-3200
    dual-channel

    LPDDR4X-4266
    quad-channel
    10–25 W
    V2546[218]3.03.9535–54 W
    V2A46[218]Jan 4, 2023[220]3.2448:28:8
    7 CU
    1.61433.6
    V2718[218]Nov 10, 20208 (16)1.74.1510–25 W
    V2748[218]2.94.2535–54 W
    1. ^Unified Shaders :Texture Mapping Units :Render Output Units andCompute Units (CU)
    2. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

    R2000-Family: "River Hawk" (2022,SoC)

    [edit]
    ModelRelease
    date
    FabCPUGPUSocketPCIe
    support
    Memory
    support
    TDP
    Cores
    (threads)
    Clock rate (GHz)CacheArchi-
    tecture
    Config[i]Clock
    (GHz)
    Processing
    power[ii]
    (GFLOPS)
    BaseBoostL1L2L3
    R2312[221]June 7, 2022[222]GloFo
    12LP
    2 (4)2.73.564 KBinst.
    32 KBdata
    per core
    512 KB
    per core
    4 MBGCN 5192:12:4
    3 CU
    1.2460.8FP58 lanes
    Gen 3
    DDR4-2400
    dual-channelECC
    10–25 W
    R2314[221]4 (4)2.1384:24:8
    6 CU
    921.616 lanes
    Gen 3
    DDR4-2666
    dual-channel ECC
    10–35 W
    1. ^Unified Shaders :Texture Mapping Units :Render Output Units andCompute Units (CU)
    2. ^Single-precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.

    Custom APUs

    [edit]

    As of May 1, 2013, AMD opened the doors of their "semi-custom" business unit.[223] Since these chips are custom-made for specific customer needs, they vary widely from both consumer-grade APUs and even the other custom-built ones. Some notable examples of semi-custom chips that have come from this sector include the chips from thePlayStation 4 andXbox One.[224] So far the size of the integrated GPU in these semi-custom APUs exceed by far the GPU size in the consumer-grade APUs.

    Chip
    (device)
    Release dateFabDie area (mm2)CPUGPUMemoryStorageAPI supportSpecial features
    Archi-
    tecture
    CoresClock (GHz)L2 cacheArchi-
    tecture
    Core config[a]Clock (MHz)GFLOPS[b]Pixel fillrate (GP/s)[c]Texture fillrate (GT/s)[d]OtherSizeBus type & widthBand-
    width (GB/s)
    AudioOther
    Liverpool
    (PS4)
    Nov 201328 nm348Jaguar8 cores1.62× 2 MBGCN 21152:72:32
    18 CU
    800184325.657.68ACEs8 GBGDDR5
    256-bit
    1763DBD/DVD
    1× 2.5"SATA hard drive
    Easily replaceable hard drive
    USB 3.0
    OpenGL 4.2,GNM, GNMX and PSSLDolby Atmos (BD)
    S/PDIF
    PS VR
    PS4 additional modules
    HDR10 (except discs)[e]
    CEC
    OptionalIR sensor
    Durango
    (Xbox One)
    Nov 20133631.75768:48:16
    12 CU
    853131013.640.92 ACEs32 MBESRAM[f]2043DBD/DVD/CD
    1× 2.5" SATA hard drive
    USB 3.0
    Direct3D 11.2 and 12Fully Dolby Atmos,DTS:X, and Windows Sonic
    S/PDIF
    Xbox One additional modules
    FreeSync (1)
    HDMI 1.4 through
    IR sensor and IR out port
    Kensington lock
    8 GBDDR3
    256-bit
    68
    Edmonton
    (Xbox One S)[225]
    Jun 201616 nm240914140414.643.92 ACEs32 MBESRAM2194KBD/3DBD/DVD/CD[g]
    1× 2.5" SATA hard drive
    USB 3.0
    Fully Dolby Atmos, DTS:X, and Windows Sonic
    S/PDIF
    Xbox One S additional modules
    Fully HDR10
    Dolby Vision (streaming)
    FreeSync (1&2)
    HDMI 1.4 through
    IR sensor and IR out port
    Kensington lock
    8 GBDDR3
    256-bit
    68
    (PS4 Slim)Sep 20162081.61152:72:32
    18 CU
    800184325.657.68 ACEs8 GBGDDR5
    256-bit
    1763DBD/DVD
    1× 2.5" SATA hard drive
    Easily replaceable hard drive
    USB 3.0
    OpenGL 4.2,GNM, GNMX and PSSLDolby Atmos (BD)PS VR
    PS4 Slim additional modules
    HDR10 (except discs)
    CEC
    OptionalIR sensor
    Neo
    (PS4 Pro)[226][227][228]
    Nov 20163252.13GCN 4
    (Polaris)[229]
    2304:144:32
    36 CU
    911419858.3131.24 ACEs and 2 HWS
    Double-rate FP16[h]
    checkerboard rendering
    8 GB[230]GDDR5
    256-bit
    2183DBD/DVD
    1× 2.5" SATA hard drive
    Easily replaceable hard drive
    USB 3.0
    OpenGL 4.2 (4.5),GNM, GNMX and PSSLDolby Atmos (BD)
    S/PDIF
    PS VR
    PS4 Pro additional modules
    HDR10 (except discs)
    Up to4K@60 Hz
    CEC
    OptionalIR sensor
    1 GBDDR3[i]?
    Scorpio
    (Xbox One X)[231][232][233]
    Nov 2017359Customized
    Jaguar
    2.32560:160:32
    40 CU
    1172600137.5187.54 ACEs and 2 HWS12 GBGDDR5
    384-bit
    3264KBD/3DBD/DVD/CD
    1× 2.5" SATA hard drive
    USB 3.0
    Direct3D 11.2 and 12Fully Dolby Atmos, DTS:X, and Windows Sonic
    S/PDIF
    Xbox One X additional modules
    Fully HDR10
    Dolby Vision (streaming)
    FreeSync (1&2)
    Up to 4K@60 Hz
    HDMI 1.4b through
    IR sensor and IR out port
    Fenghuang
    (Subor Z+)[234][235][236]
    cancelled[237]14 nm[238]397Zen4 cores
    8 threads
    3.0GCN 51536:96:32
    24 CU
    1300399441.6124.8Double-rate FP168 GBGDDR5
    256-bit
    1541× 2.5" SATASSD
    1× 2.5" SATA hard drive
    Easily replaceable drives
    USB 3.0
    Vulkan 1.1, Direct3D 12.1S/PDIFSubor Z Plus additional modules
    Windows 10 Enterprise LTSC
    Oberon
    (PS5)[239]
    Nov 20207 nm308Zen 28 cores
    16 threads
    3.5 (variable)4 MBRDNA 22304:144:64
    36 CU
    2233 (variable)10290 (variable)142.9321.6Double-rate FP16
    Real-timeray tracing
    Primitive shaders
    Custom3D audio blocks
    16 GBGDDR6
    256-bit
    4484KBD/DVD
    Custom 5.5 GB/sPCIe 4.0 x4NVMe SSD
    PCIe 4.0M.2 slot
    Easily replaceable M.2 SSD
    USB (except PS5 games)
    Vulkan 1.2PS5 TEMPEST 3D AudioTechPS VR
    DedicatedDMA controller andI/O coprocessors
    Customcoherency engines andcache scrubbers
    Customdecompression block
    HDR
    Up to 4K@120 Hz
    Up to8K@30 Hz
    Anaconda
    (Xbox Series X)
    Nov 20203603.6
    (3.8 w/o SMT)
    3328:208:64
    52 CU
    182512147116.8379.6Double-rate FP16
    Real-time ray tracing
    Mesh shaders
    Variable rate shading
    ANN acceleration
    10 GBGDDR6
    320-bit
    5604KBD/DVD
    Custom 2.4 GB/s NVMe SSD
    Custom expansion card
    USB 3.1 (except XSX games)
    DirectX 12 UltimateCustom spatial audio block
    MS Project Acoustics
    Fully Dolby Atmos, DTS:X, and Windows Sonic
    Custom decompression block
    HDR
    VRR
    Up to 4K@120 Hz
    Up to 8K@30 Hz
    CEC
    6 GBGDDR6
    192-bit[j]
    336
    Lockhart
    (Xbox Series S)
    1973.4
    (3.6 w/o SMT)
    1280:80:32
    20 CU
    1565400650.1125.28 GBGDDR6
    128-bit
    224Custom 2.4 GB/s NVMe SSD
    Custom expansion card
    USB 3.1 (except XSX games)
    2 GBGDDR6
    32-bit
    56
    Van Gogh
    "Aerith"
    (Steam Deck)[240]
    Dec 20211634 cores
    8 threads
    2.4-3.52 MB512:32:16
    8 CU
    1000-16001000-160016-25.632-51.2Double-rate FP16
    Real-time ray tracing
    Variable rate shading
    16 GBLPDDR5
    128-bit
    8864 GBeMMC (PCIe Gen 2 × 1)
    256 GB NVMe SSD (PCIe Gen 3 × 4)
    512 GB NVMe SSD (PCIe Gen 3 × 4)
    microSD card slot
    DirectX 9-12 Ultimate, OpenGL 4.6, Vulkan 1.2
    Van Gogh
    "Sephiroth" (Steam Deck OLED)
    Nov 20236 nm131102256 GB NVMe SSD (PCIe Gen 3 × 4)
    512 GB NVMe SSD (PCIe Gen 3 × 4)
    1 TB NVMe SSD (PCIe Gen 3 × 4)
    microSD card slot
    Viola
    (PS5 Pro)
    Nov 20244 nm2608 cores
    16 threads
    3.85
    (variable)
    4 MBRDNA 33840:240:120
    60 CU
    2180
    (variable)
    16742
    (variable)
    261.6523.2Double-rate FP16
    Real-time ray tracing
    Primitive shaders
    Custom 3D audio blocks
    Hardware-accelerated upscaling
    16 GBGDDR6
    256-bit
    5764KBD/DVD
    2 TB NVMe SSD (PCIe Gen 4 × 4)
    PCIe 4.0 M.2 slot
    USB
    Vulkan 1.2PS5 TEMPEST 3D AudioTechPS VR
    Dedicated DMA controller and I/O coprocessors
    Custom coherency engines and cache scrubbers
    Custom decompression block
    HDR
    Up to 4K@120 Hz
    Up to 8K@60 Hz
    2 GBDDR5?
    1. ^Unified shaders :Texture mapping units :Render output units
    2. ^Precision performance is calculated from the base (or boost) core clock speed based on aFMA operation.
    3. ^Pixel fillrate is calculated as the number ofROPs multiplied by the base (or boost) core clock speed.
    4. ^Texture fillrate is calculated as the number ofTMUs multiplied by the base (or boost) core clock speed.
    5. ^UHD BD is the only video disc format supporting HDR.
    6. ^Cache
    7. ^"Digital" version does not have an optical drive.
    8. ^Feature preview of Rapid Packed Math, introduced inGCN 5.
    9. ^Swap
    10. ^A plain 320-bit 20 GB version could be made by just replacing four 1 GB GDDR6 chips by 2 GB ones.

    See also

    [edit]

    Notes

    [edit]
    1. ^abcdeUnified shader processors (USPs):Texture mapping units (TMUs):Render output units (ROPs). 1 CU (Compute Unit) = 64 USPs: 4 TMUs : 1 ROPs

    References

    [edit]
    1. ^"AMD Announces the 7th Generation APU: Excavator mk2 in Bristol Ridge and Stoney Ridge for Notebooks". May 31, 2016. RetrievedJanuary 3, 2020.
    2. ^"AMD Mobile "Carrizo" Family of APUs Designed to Deliver Significant Leap in Performance, Energy Efficiency in 2015" (Press release). November 20, 2014. RetrievedFebruary 16, 2015.
    3. ^"The Mobile CPU Comparison Guide Rev. 13.0 Page 5 : AMD Mobile CPU Full List". TechARP.com. RetrievedDecember 13, 2017.
    4. ^ab"AMD VEGA10 and VEGA11 GPUs spotted in OpenCL driver". VideoCardz.com. RetrievedJune 6, 2017.
    5. ^Cutress, Ian (February 1, 2018)."Zen Cores and Vega: Ryzen APUs for AM4 – AMD Tech Day at CES: 2018 Roadmap Revealed, with Ryzen APUs, Zen+ on 12nm, Vega on 7nm". Anandtech. RetrievedFebruary 7, 2018.
    6. ^Larabel, Michael (November 17, 2017)."Radeon VCN Encode Support Lands in Mesa 17.4 Git". Phoronix. RetrievedNovember 20, 2017.
    7. ^ab"AMD Ryzen 5000G 'Cezanne' APU Gets First High-Res Die Shots, 10.7 Billion Transistors In A 180mm2 Package".wccftech. August 12, 2021. RetrievedAugust 25, 2021.
    8. ^Tony Chen; Jason Greaves,"AMD's Graphics Core Next (GCN) Architecture"(PDF),AMD, retrievedAugust 13, 2016
    9. ^"A technical look at AMD's Kaveri architecture". Semi Accurate. RetrievedJuly 6, 2014.
    10. ^"How do I connect three or More Monitors to an AMD Radeon™ HD 5000, HD 6000, and HD 7000 Series Graphics Card?". AMD. RetrievedDecember 8, 2014.
    11. ^Airlie, David (November 26, 2009)."DisplayPort supported by KMS driver mainlined into Linux kernel 2.6.33". RetrievedJanuary 16, 2016.
    12. ^"Radeon feature matrix".freedesktop.org. RetrievedJanuary 10, 2016.
    13. ^Deucher, Alexander (September 16, 2015)."XDC2015: AMDGPU"(PDF). RetrievedJanuary 16, 2016.
    14. ^abMichel Dänzer (November 17, 2016)."[ANNOUNCE] xf86-video-amdgpu 1.2.0".lists.x.org.
    15. ^"Conformant Products - The Khronos Group Inc". The Khronos Group. RetrievedJune 6, 2019.
    16. ^"Conformant Products - The Khronos Group Inc". The Khronos Group. RetrievedJune 6, 2019.
    17. ^"GPU-Tech.org - Catalyst 11.10 WHQL - First official Battlefield 3 driver for Radeon cards".GPU-Tech.org. October 31, 2011.
    18. ^"AMD Radeon Software Crimson Edition Beta".AMD. RetrievedApril 20, 2018.
    19. ^"Mesamatrix".mesamatrix.net. RetrievedApril 20, 2018.
    20. ^"RadeonFeature".X.Org Foundation. RetrievedApril 20, 2018.
    21. ^"Conformant Products".Khronos Group. RetrievedDecember 2, 2024.
    22. ^"radv: add Vulkan 1.4 support".Mesa. RetrievedDecember 2, 2024.
    23. ^Wallossek, Igor; Woligroski, Don (December 21, 2011)."Graphics Core Next: The Southern Islands Architecture". Tom's Hardware. RetrievedJuly 26, 2013.
    24. ^Broekhuijsen, Niels (February 20, 2013)."AMD Clarifies 2013 Radeon Plans". Tom's Hardware. RetrievedJuly 26, 2013.
    25. ^"Radeon Vega Frontier Edition". AMD. December 30, 2022. Archived fromthe original on June 27, 2017. RetrievedJuly 30, 2017.
    26. ^"AMD launches A-Series and the first 32nm Athlon II X4 CPUs".Archived from the original on May 3, 2012. RetrievedNovember 10, 2013.
    27. ^Theo Valich (May 28, 2012)."AMD Comes Clean on Transistor Numbers With FX, Fusion Processors". RetrievedAugust 23, 2013.
    28. ^Anand Lal Shimpi (September 27, 2012)."AMD A10-5800K & A8-5600K Review: Trinity on the Desktop, Part 1". Archived fromthe original on August 13, 2013. RetrievedAugust 23, 2013.
    29. ^abcdefghijklmnopqrstuvwxyzaaabacadaeafagah"Processor Programming Reference (PPR) for AMD Family 17h Model 01h, Revision B1 Processors"(PDF).AMD Technical Documentation. AMD Developer Central: Advanced Micro Devices, Inc. April 15, 2017. p. 25.Archived(PDF) from the original on October 24, 2019. RetrievedNovember 1, 2019.
    30. ^"Trinity Improvements Include Updated Piledriver Cores and VLIW4 GPUs". May 4, 2012.Archived from the original on November 10, 2013. RetrievedNovember 10, 2013.
    31. ^abc"AMD detonates Trinity: Behold Bulldozer's second coming - ExtremeTech". RetrievedOctober 7, 2017.
    32. ^"AMD Trinity On The Desktop: A10, A8, And A6 Get Benchmarked!—Trinity: Coming Soon To A Desktop Near You". RetrievedNovember 10, 2013.
    33. ^"AMD Trinity for Desktops. Part 1: Graphics Core". X-bit labs. September 27, 2012. Archived fromthe original on October 11, 2012.
    34. ^"Review: AMD A10-5800K Dual Graphics evaluation—CPU". October 4, 2012.Archived from the original on November 10, 2013. RetrievedNovember 10, 2013.
    35. ^"The AMD A8-3850 Review: Llano on the Desktop". Archived fromthe original on November 10, 2013. RetrievedNovember 10, 2013.
    36. ^"Product Search Results—Bottom Line Telecommunications". Bottom Line Telecommunications Corporation.Archived from the original on September 19, 2019. RetrievedNovember 10, 2013.
    37. ^ab"AMD Sempron CPU".Archived from the original on March 10, 2015. RetrievedMarch 2, 2015.
    38. ^Альберт Шаповалов (September 10, 2014)."Обзор и тестирование процессора AMD Athlon X2 340".Ru.gecid.com/ (in Russian).Archived from the original on September 14, 2016. RetrievedSeptember 12, 2016.
    39. ^Hassan Mujtaba."AMD A10-6800K and A10-6700 "Richland" APU Review".Wccftech.Archived from the original on March 20, 2020. RetrievedMarch 20, 2020.
    40. ^abc"AMD Athlon Processors".Archived from the original on March 7, 2015. RetrievedMarch 2, 2015.
    41. ^btarunr (March 23, 2014)."AMD FX-670K CPU Shows Up in the Wild".TechPowerUp.Archived from the original on April 4, 2016. RetrievedMarch 23, 2016.
    42. ^Anton Shilov (May 30, 2013)."AMD's Next-Gen "Kaveri" APUs Will Require New Mainboards". Archived fromthe original on June 7, 2013. RetrievedDecember 17, 2014.
    43. ^"AMD Godavari core".www.cpu-world.com.Archived from the original on September 16, 2018. RetrievedSeptember 16, 2018.
    44. ^Joel Hruska."AMD Kaveri A10-7850K and A8-7600 review: Was it worth the wait for the first true heterogeneous chip?".ExtremeTech.Archived from the original on March 20, 2020. RetrievedMarch 20, 2020.
    45. ^abHassan Mujtaba (July 4, 2013)."AMD Kaveri APU Architecture Detailed".Archived from the original on August 7, 2022. RetrievedMarch 15, 2015.
    46. ^ab"A technical look at AMD's Kaveri architecture".SemiAccurate. January 15, 2014.Archived from the original on December 10, 2021. RetrievedJune 25, 2014.
    47. ^abc"AMD to add ARM processors to boost chip security". June 14, 2012.Archived from the original on September 3, 2013. RetrievedSeptember 3, 2013.
    48. ^abc"AMD and ARM Fusion redefine beyond x86". Archived fromthe original on November 5, 2013. RetrievedNovember 10, 2013.
    49. ^ab"Carrizo presentation, page 12 - Carrizo is the 1st ARM Trustzone capable performance APU"(PDF). RetrievedJanuary 13, 2020.
    50. ^"AMD A10-7850K Graphics Performance". February 14, 2014.Archived from the original on April 5, 2014. RetrievedApril 2, 2014.
    51. ^"AMD A8-7600 Kaveri APU review - The Embedded GPU - HSA & hUMA". January 14, 2014. Archived fromthe original on August 7, 2022. RetrievedJune 25, 2014.
    52. ^Gennadiy Shvets (October 18, 2014)."HP offers desktop PCs with AMD FX-770K Kaveri processor".OFweek. Archived fromthe original on May 13, 2018. RetrievedMarch 23, 2016.
    53. ^"ASRock - FM2+ CPU Support List".asrock.com.Archived from the original on October 20, 2020. RetrievedOctober 18, 2020.
    54. ^电脑维修技术网."AMD APU A8-7500 CPU怎么样?".pc811.com.Archived from the original on October 19, 2020. RetrievedOctober 18, 2020.
    55. ^Hassan Mujtaba (August 26, 2015)."AMD Details Carrizo APUs Energy Efficient Design at Hot Chips 2015 – 28nm Bulk High Density Design With 3.1 Billion Transistors, 250mm2 Die".Wccftech.Archived from the original on March 20, 2020. RetrievedMarch 20, 2020.
    56. ^"AMD quietly launches new Carrizo APU: A8-7680 processor". October 26, 2018.Archived from the original on May 7, 2023. RetrievedJune 29, 2019.
    57. ^Cutress, Ian (October 28, 2018)."Day of the Dead: AMD Releases new Carrizo FM2+ APU, the A8-7680". Archived fromthe original on June 29, 2019. RetrievedJune 29, 2019.
    58. ^Cutress, Ian (September 23, 2016)."AMD 7th Gen Bristol Ridge and AM4 Analysis".Anandtech.com. Archived fromthe original on November 20, 2016. RetrievedSeptember 23, 2016.
    59. ^"7th Gen AMD Athlon™ X4 940".AMD.Archived from the original on May 5, 2022. RetrievedJune 14, 2022.
    60. ^"7th Gen AMD Athlon™ X4 940".AMD.
    61. ^"7th Gen AMD Athlon™ X4 940".AMD.
    62. ^"AMD A6-Series A6-9400 - AD9400AGM23AB / AD9400AGABBOX".CPU-World.Archived from the original on June 9, 2022. RetrievedJune 14, 2022.
    63. ^"7th Gen A6-9500E APU".AMD.Archived from the original on May 5, 2022. RetrievedJune 14, 2022.
    64. ^"7th Gen AMD PRO A6-9500E APU".AMD.Archived from the original on May 5, 2022. RetrievedJune 14, 2022.
    65. ^"7th Gen A6-9500 APU".AMD.Archived from the original on May 5, 2022. RetrievedJune 14, 2022.
    66. ^"7th Gen AMD PRO A6-9500 APU".AMD.Archived from the original on May 5, 2022. RetrievedJune 14, 2022.
    67. ^"7th Gen A6-9550 APU".AMD.
    68. ^"7th Gen A8-9600 APU".AMD.Archived from the original on May 5, 2022. RetrievedJune 14, 2022.
    69. ^"7th Gen AMD PRO A8-9600 APU".AMD.Archived from the original on May 5, 2022. RetrievedJune 14, 2022.
    70. ^"7th Gen A10-9700E APU".AMD.Archived from the original on May 5, 2022. RetrievedJune 14, 2022.
    71. ^"7th Gen AMD PRO A10-9700E APU".AMD.Archived from the original on August 22, 2024. RetrievedJune 14, 2022.
    72. ^"7th Gen A10-9700 APU".AMD.Archived from the original on May 5, 2022. RetrievedJune 14, 2022.
    73. ^"7th Gen AMD PRO A10-9700 APU".AMD.Archived from the original on May 5, 2022. RetrievedJune 14, 2022.
    74. ^"7th Gen A12-9800E APU".AMD.Archived from the original on May 5, 2022. RetrievedJune 14, 2022.
    75. ^Sang-ho, Lee (September 19, 2016)."AMD Final Heavy Equipment X Carrier ZEN Bristol Ridge A12-9800 platform change". BodNara Korea.Archived from the original on May 17, 2017. RetrievedNovember 12, 2016.
    76. ^"7th Gen AMD PRO A12-9800E APU".AMD.Archived from the original on August 22, 2024. RetrievedJune 14, 2022.
    77. ^"7th Gen A12-9800 APU".AMD.
    78. ^"7th Gen AMD PRO A12-9800 APU".AMD.Archived from the original on August 22, 2024. RetrievedJune 14, 2022.
    79. ^Cutress, Ian (September 6, 2018)."AMD Announces New $55 Low-Power Processor: Athlon 200GE".AnandTech. RetrievedNovember 14, 2023.
    80. ^abShilov, Anton (December 21, 2018)."AMD Athlon 220GE and Athlon 240GE with Radeon Vega Graphics Launched".AnandTech. RetrievedNovember 14, 2023.
    81. ^Armasu, Lucian (November 19, 2019)."AMD's Unlocked Athlon 3000G APU Starts Shipping at $49".Tom's Hardware. RetrievedNovember 14, 2023.
    82. ^"HP Desktop Pro A G2 Specifications".HP Customer Support. RetrievedDecember 23, 2022.
    83. ^abSchiesser, Tim (January 8, 2018)."AMD's 2nd-gen Ryzen is coming in April, desktop Ryzen APUs arrive February 12". TechSpot. RetrievedJune 10, 2019.
    84. ^"AMD Athlon Desktop Processors with Radeon Graphics".AMD. Archived fromthe original on July 29, 2020. RetrievedNovember 16, 2023.
    85. ^"AMD Athlon PRO Desktop Processor".AMD. Archived fromthe original on July 29, 2020. RetrievedNovember 16, 2023.
    86. ^"AMD Ryzen PRO Desktop Processor".AMD. Archived fromthe original on July 29, 2020. RetrievedNovember 16, 2023.
    87. ^abCutress, Dr.Ian (June 10, 2019)."AMD Ryzen 3000 APUs: Up to Vega 11, More MHz, Under $150, Coming July 7th".AnandTech. RetrievedNovember 16, 2023.
    88. ^"AMD Spring 2022 Ryzen Desktop Processor Update Includes Six New Models Besides 5800X3D".TechPowerUp. March 16, 2022. RetrievedMarch 8, 2024.
    89. ^"AMD Ryzen 3 PRO 4350GE".AMD. RetrievedOctober 18, 2022.
    90. ^"AMD Ryzen 3 PRO 4350G".AMD. RetrievedOctober 18, 2022.
    91. ^"AMD Ryzen 3 PRO 4650GE".AMD. RetrievedOctober 18, 2022.
    92. ^"AMD Ryzen 3 PRO 4650G".AMD. RetrievedOctober 18, 2022.
    93. ^"AMD Ryzen 3 PRO 4750GE".AMD. RetrievedOctober 18, 2022.
    94. ^"AMD Ryzen 3 PRO 4750G".AMD. RetrievedOctober 18, 2022.
    95. ^"AMD Ryzen 4000 Series Desktop Processors with AMD Radeon Graphics Set to Deliver Breakthrough Performance for Commercial and Consumer Desktop PCs".AMD. July 21, 2020. RetrievedOctober 18, 2022.
    96. ^abWallossek, Igor (January 8, 2024)."CES: And it goes on - even more Ryzen 5000 CPUs for the AM4 socket".igor´sLAB. RetrievedJanuary 9, 2024.
    97. ^"AMD Ryzen 3 PRO 5350GE".AMD.
    98. ^"AMD Ryzen 3 PRO 5350G".AMD.
    99. ^"AMD Ryzen 5 PRO 5650GE".AMD.
    100. ^"AMD Ryzen 5 PRO 5650G".AMD.
    101. ^"AMD Ryzen 7 PRO 5750GE".AMD.
    102. ^"AMD Ryzen 7 PRO 5750G".AMD.
    103. ^btarunr (June 1, 2021)."AMD Announces Ryzen 5000G and PRO 5000G Desktop Processors".TechPowerUp.
    104. ^btarunr (January 4, 2023)."AMD Confirms Ryzen 9 7950X3D and 7900X3D Feature 3DV Cache on Only One of the Two Chiplets".TechPowerUp. RetrievedJanuary 5, 2023.
    105. ^AMD Provides More Ryzen 9 7950X3D Details.PC World. January 5, 2023. Event occurs at 6:00 – via YouTube.
    106. ^WhyCry (August 28, 2025)."AMD Wraith Prism and Spire CPU coolers discontinued for select Ryzen CPUs".VideoCardz.com. RetrievedAugust 30, 2025.
    107. ^abc"AMD Extends its Leadership with the Introduction of its Broadest Portfolio of High-Performance PC Products for Mobile and Desktop".AMD (Press release). January 4, 2023. RetrievedJanuary 5, 2023.
    108. ^abbtarunr (August 30, 2024)."AMD Ryzen 5 7600X3D Launched in the US as a MicroCenter-exclusive for $300, Part of a Bundle".TechPowerUp. RetrievedSeptember 6, 2024.
    109. ^abShilov, Anton (September 5, 2024)."AMD's Ryzen 5 7600X3D is no longer exclusive to the U.S. — the latest 3D V-Cache chip is now available in Germany for €329".Tom's Hardware. RetrievedSeptember 6, 2024.
    110. ^WhyCry (July 23, 2023)."AMD Ryzen 5 7500F reviews are out, CPU to launch globally at $179".VideoCardz.com. RetrievedJuly 23, 2023.
    111. ^btarunr (February 5, 2025)."AMD Ryzen 5 7400F De-Lid Reveals Thermal Paste Instead of STIM".TechPowerUp. RetrievedAugust 31, 2025.
    112. ^Morales, Jowi (January 18, 2025)."AMD Ryzen 5 7400F sells for $115 in China — US availability and pricing remains a mystery".Tom's Hardware. RetrievedAugust 31, 2025.
    113. ^WhyCry (January 18, 2025)."Just-released AMD Ryzen 5 7400F 6-core CPU only costs $116 in China".VideoCardz.com. RetrievedAugust 31, 2025.
    114. ^AMD launches four new Ryzen CPUs, including cut-down Zen 4 and Zen 3 models — most only available in global markets
    115. ^"AMD Wraith Prism and Spire CPU coolers discontinued for select Ryzen CPUs".VideoCardz.com. August 28, 2025. RetrievedAugust 30, 2025.
    116. ^abBonshor, Gavin (January 8, 2024)."AMD Unveils Ryzen 8000G Series Processors: Zen 4 APUs For Desktop with Ryzen AI".AnandTech. RetrievedJanuary 9, 2024.
    117. ^"AMD Ryzen 5 PRO 8300G".AMD.
    118. ^"AMD Ryzen 5 PRO 8300GE".AMD.
    119. ^"AMD Ryzen 5 PRO 8500G".AMD.
    120. ^"AMD Ryzen 5 PRO 8500GE".AMD.
    121. ^"AMD Ryzen 5 PRO 8600G".AMD.
    122. ^"AMD Ryzen 7 PRO 8700G".AMD.
    123. ^"AMD Opteron X1150 - OX1150IPJ44HM".CPUWorld.Archived from the original on November 13, 2023. RetrievedNovember 13, 2023.
    124. ^"AMD Launches the AMD Opteron X-Series Family: the Industry's Highest Performance Small Core x86 Server Processors".AMD (Press release). May 29, 2013.Archived from the original on August 22, 2024. RetrievedNovember 13, 2023.
    125. ^Kennedy, Patrick (June 5, 2017)."New HPE ProLiant MicroServer Gen10 Powered by AMD Opteron X3000 APUs".Archived from the original on July 9, 2017. RetrievedJune 5, 2017.
    126. ^abcd"Opteron Family".AMD. Archived fromthe original on May 20, 2017. RetrievedJune 5, 2017.
    127. ^"AMD Opteron X3216 - OX3216AAY23KA".CPUWorld. RetrievedNovember 13, 2023.
    128. ^"AMD Opteron X3418 - OX3418AAY43KA".CPUWorld.Archived from the original on November 13, 2023. RetrievedNovember 13, 2023.
    129. ^"AMD Opteron X3421 - OX3421AAY43KA".CPUWorld.Archived from the original on November 13, 2023. RetrievedNovember 13, 2023.
    130. ^ab"AMD lists A8-4557M and A10-4657M mobile APUs".www.cpu-world.com.Archived from the original on September 17, 2018. RetrievedSeptember 17, 2018.
    131. ^"AMD intros 35W Richland mobile APUs". March 12, 2013.Archived from the original on March 14, 2013. RetrievedNovember 10, 2013.
    132. ^Poeter, Damon. (March 12, 2013)AMD Bakes New Interface Capabilities Into Richland APUs | News & OpinionArchived July 12, 2017, at theWayback Machine
    133. ^"AMD Kaveri APU with SteamrollerB Core Features 20% CPU and 30% GPU Performance Uplift over Richland – Platform Details Unveiled | TechNationNews.com". Archived fromthe original on December 3, 2013. RetrievedNovember 26, 2013.
    134. ^abCutress, Ian (June 1, 2016)."AMD Announces 7th Generation APU".Anandtech.com. Archived fromthe original on June 2, 2016. RetrievedJune 1, 2016.
    135. ^"AMD A10-9620P SoC - Benchmarks and Specs".Notebookcheck.net.Archived from the original on August 25, 2017. RetrievedJuly 20, 2018.
    136. ^"AMD A12-9720P SoC - Benchmarks and Specs".Notebookcheck.net.Archived from the original on August 25, 2017. RetrievedJuly 20, 2018.
    137. ^"HP Pavilion 17 - HP® Official Store".Store.hp.com.Archived from the original on October 2, 2017. RetrievedJuly 20, 2018.
    138. ^"AMD Ryzen 7 3780U Microsoft Surface® Edition".
    139. ^"AMD Ryzen 7 3750H Mobile Processor with Radeon RX Vega 10 Graphics".
    140. ^"AMD Radeon RX Vega 10 Mobile Specs | TechPowerUp GPU Database". Techpowerup.com.
    141. ^"AMD Ryzen 7 3700C".
    142. ^"AMD Ryzen 7 3700U Mobile Processor with Radeon RX Vega 10 Graphics".
    143. ^"AMD Ryzen 5 3580U Microsoft Surface® Edition".
    144. ^"AMD Ryzen 5 3550H Mobile Processor with Radeon Vega 8 Graphics". RetrievedJanuary 8, 2018.
    145. ^"AMD Radeon Vega 8 Specs | TechPowerUp GPU Database". Techpowerup.com.
    146. ^"AMD Ryzen 5 3500C".
    147. ^"AMD Ryzen 5 3500U Mobile Processor with Radeon Vega 8 Graphics".
    148. ^"AMD Ryzen 5 3450U Processor".
    149. ^"AMD Ryzen 3 3350U".AMD.
    150. ^"AMD Radeon Vega 6 Mobile Specs | TechPowerUp GPU Database". Techpowerup.com.
    151. ^"AMD Ryzen 3 3300U Mobile Processor with Radeon Vega 6 Graphics". RetrievedJanuary 6, 2019.
    152. ^"AMD Ryzen 3 PRO 3300U Mobile Processor with Radeon Vega 6 Graphics".
    153. ^"AMD Ryzen 5 PRO 3500U Mobile Processor with Radeon Vega 8 Graphics".
    154. ^"AMD Ryzen 7 PRO 3700U Mobile Processor with Radeon Vega 10 Graphics".
    155. ^Cutress, Ian (January 6, 2020)."AMD Ryzen 4000 Mobile APUs: 7nm, 8-core on both 15W and 45W, Coming Q1".anandtech.com.AnandTech. Archived fromthe original on January 7, 2020. RetrievedJanuary 7, 2020.
    156. ^Alcorn, Paul (January 7, 2020)."AMD Launches Threadripper 3990X and Ryzen 4000 'Renoir' APUs".tomshardware.com. Tom's Hardware.Archived from the original on January 7, 2020. RetrievedJanuary 7, 2020.
    157. ^Gartenberg, Chaim (January 6, 2020)."AMD's 7nm Ryzen 4000 CPUs are here to take on Intel's 10nm Ice Lake laptop chips".theverge.com.The Verge.Archived from the original on January 6, 2020. RetrievedJanuary 7, 2020.
    158. ^"AMD "Renoir" die Shot Pictured". March 16, 2020.Archived from the original on December 9, 2020. RetrievedJune 25, 2021.
    159. ^"AMD Ryzen 5 4600HS".AMD. RetrievedNovember 10, 2023.[permanent dead link]
    160. ^"AMD Ryzen 5 4600HS Mobile processor".CPUWorld. RetrievedNovember 10, 2023.
    161. ^"AMD Ryzen 7 4600HS Laptop Processor".Notebookcheck. RetrievedNovember 10, 2023.
    162. ^"AMD Ryzen 5 5500U Specs".TechPowerUp. RetrievedSeptember 17, 2021.
    163. ^"AMD Ryzen 7 5800U".AMD.
    164. ^"AMD Ryzen 5 5600U".AMD.
    165. ^"AMD Ryzen 5 5560U".AMD.
    166. ^"AMD Ryzen 3 5400U".AMD.
    167. ^"AMD Ryzen 3 5400U Mobile processor - 100-000000288".CPU-World. RetrievedSeptember 17, 2021.
    168. ^"AMD Ryzen 3 PRO 5450U".AMD.
    169. ^"AMD Ryzen 5 PRO 5650U".AMD.
    170. ^"AMD Ryzen 7 PRO 5850U".AMD.
    171. ^"AMD Ryzen 9 5980HX".AMD.
    172. ^"AMD Ryzen 9 5980HS".AMD.
    173. ^"AMD Ryzen 9 5900HX".AMD.
    174. ^"AMD Ryzen 9 5900HS".AMD.
    175. ^"AMD Ryzen 7 5800H".AMD.
    176. ^"AMD Ryzen 7 5800H Specs".TechPowerUp. RetrievedSeptember 17, 2021.
    177. ^"AMD Ryzen 7 5800HS".AMD.
    178. ^"AMD Ryzen 5 5600H".AMD.
    179. ^"AMD Ryzen 5 5600H Mobile processor - 100-000000296".CPU-World. RetrievedSeptember 17, 2021.
    180. ^"AMD Ryzen 5 5600HS".AMD.
    181. ^"AMD Ryzen 7 5825U".AMD.
    182. ^"AMD Ryzen 5 5625U".AMD.
    183. ^"AMD Ryzen 5 5425U".AMD.
    184. ^"AMD Ryzen 3 5125C".AMD.
    185. ^"AMD Ryzen 3 PRO 5475U".AMD.
    186. ^"AMD Ryzen 5 PRO 5675U".AMD.
    187. ^"AMD Ryzen 7 PRO 5875U".AMD.
    188. ^"AMD Ryzen 3 5425C".AMD.
    189. ^"AMD Ryzen 5 5625C".AMD.
    190. ^"AMD Ryzen 7 5825C".AMD.
    191. ^"AMD Unveils New Ryzen Mobile Processors Uniting "Zen 3+" core with AMD RDNA 2 Graphics in Powerhouse Design".AMD.
    192. ^"AMD Ryzen 5 PRO 6650U".AMD.
    193. ^"AMD Ryzen 5 PRO 6650H".AMD.
    194. ^"AMD Ryzen 5 PRO 6650HS".AMD.
    195. ^"AMD Ryzen 7 PRO 6850U".AMD.
    196. ^"AMD Ryzen 7 PRO 6850H".AMD.
    197. ^"AMD Ryzen 7 PRO 6850HS".AMD.
    198. ^"AMD Ryzen 9 PRO 6950H".AMD.
    199. ^"AMD Ryzen 9 PRO 6950HS".AMD.
    200. ^abcShimpi, Anand Lal."Previewing AMD's Brazos, Part 1: More Details on Zacate/Ontario and Fusion".Anandtech.com. Archived fromthe original on June 23, 2015. RetrievedJuly 20, 2018.
    201. ^"Archived copy". Archived fromthe original on May 27, 2015. RetrievedMay 26, 2015.{{cite web}}: CS1 maint: archived copy as title (link)
    202. ^"HP ProDesk 405 G2 Microtower-PC".Archived from the original on February 24, 2015. RetrievedFebruary 24, 2015.
    203. ^Cutress, Ian."AMD's Carrizo-L APUs Unveiled: 12-25W Quad Core Puma+".Anandtech.com. Archived fromthe original on June 23, 2015. RetrievedJuly 20, 2018.
    204. ^"HP Pavilion Desktops - HP® Official Store".Store.hp.com.Archived from the original on March 10, 2018. RetrievedJuly 20, 2018.
    205. ^"AMD Radeon Vega 3 Mobile Specs".TechPowerUp. RetrievedApril 25, 2023.
    206. ^"AMD Athlon™ Gold 7220U".AMD.
    207. ^"AMD Ryzen 7020 Series Processors for Mobile Bring High-End Performance and Long Battery Life to Everyday Users". September 20, 2022. RetrievedSeptember 21, 2022.
    208. ^"AMD Athlon™ Silver 7120U".AMD.
    209. ^"AMD Athlon Gold 7220C".AMD.
    210. ^"AMD Athlon Silver 7120C".AMD.
    211. ^"Welcome to AMD - Processors - Graphics and Technology - AMD".Amd.com.Archived from the original on December 2, 2013. RetrievedJuly 20, 2018.
    212. ^"Embedded Products - High Performance GPU - AMD".Amd.com.Archived from the original on January 2, 2018. RetrievedJuly 20, 2018.
    213. ^Family Product BriefArchived July 18, 2017, at theWayback Machine amd.com
    214. ^"AMD G-Series GX-420GI - GE420GAAY43KA". Cpu-world.com. July 6, 2022.Archived from the original on September 7, 2018. RetrievedAugust 22, 2022.
    215. ^J Family Product BriefArchived July 18, 2017, at theWayback Machine amd.com
    216. ^'nd Generation R Series Product BriefArchived August 30, 2017, at theWayback Machine amd.com
    217. ^Merlin Falcon Product BriefArchived September 9, 2017, at theWayback Machine amd.com
    218. ^abcde"Product Brief: AMD Ryzen Embedded V2000 Processor Family"(PDF).AMD.
    219. ^"AMD Unveils AMD Ryzen Embedded V2000 Processors with Enhanced Performance and Power Efficiency".AMD.
    220. ^"AMD Ryzen Embedded V2A46".TechPowerUp.
    221. ^ab"Product Brief: AMD Ryzen Embedded R2000 Series"(PDF).AMD.
    222. ^Bonshor, Gavin (June 22, 2022)."AMD Updates Ryzen Embedded Series, R2000 Series With up to Four Cores and Eight Threads".www.anandtech.com. RetrievedAugust 18, 2024.
    223. ^"AMD Establishes Semi-Custom Business Unit to Create Tailored Products with Customer-Specific IP". Archived fromthe original on October 1, 2013. RetrievedNovember 10, 2013.
    224. ^"Three for three: How AMD won the war for the heart of next-gen consoles".Polygon. June 15, 2013.Archived from the original on November 8, 2013. RetrievedNovember 10, 2013.
    225. ^MACHKOVECH, SAM (August 2, 2016)."Microsoft hid performance boosts for old games in Xbox One S, told no one". Ars Technica. RetrievedAugust 2, 2016.
    226. ^Walton, Mark (August 10, 2016)."PS4 Neo: Sony confirms PlayStation event for September 7". Ars Technica. RetrievedAugust 10, 2016.
    227. ^Walton, Mark (April 19, 2016)."Sony PS4K is codenamed NEO, features upgraded CPU, GPU, RAM—report". Ars Technica. RetrievedAugust 10, 2016.
    228. ^Smith, Ryan (September 8, 2016)."Analyzing Sony's Playstation 4 Pro Hardware Reveal: What Lies Beneath". Anandtech. RetrievedSeptember 8, 2016.
    229. ^Freedman, Andrew (November 3, 2017)."Xbox One X vs. PlayStation 4 Pro: Which Powerhouse Should You Get?". Tom's Guide. RetrievedNovember 3, 2017.
    230. ^"PS4 Pro's additional RAM frees up memory for game developers".Polygon. RetrievedNovember 23, 2018.
    231. ^Smith, Ryan (June 11, 2017)."Microsoft's Project Scorpio Gets a Launch Date: Xbox One X, $499, November 7th".AnandTech. RetrievedMay 24, 2024.
    232. ^Walton, Mark (April 6, 2017)."Xbox One Project Scorpio specs: 12GB GDDR5, 6 teraflops, native 4K at 60FPS".Ars Technica. RetrievedMay 24, 2024.
    233. ^Cutress, Ian (August 21, 2017)."Hot Chips: Microsoft Xbox One X Scoprio Engine Live Blog". Anandtech. RetrievedAugust 21, 2017.
    234. ^Cutress, Ian (August 3, 2018)."AMD Creates Quad Core Zen SoC with 24 Vega CUs for Chinese Consoles". Anandtech.
    235. ^Cutress, Ian (August 6, 2018)."More Details About the ZhongShan Subor Z+ Console, with Custom AMD Ryzen SoC". Anandtech.
    236. ^Leadbetter, Richard (September 15, 2018)."Hands-on with the Subor Z-Plus: AMD tech tested in new Chinese console". RetrievedOctober 28, 2018.
    237. ^Judd, Will (May 16, 2019)."The Subor Z+ console team has disbanded - but it's not game over yet". Gamer Network.
    238. ^Leadbetter, Leadbetter (September 15, 2018).Hands-On: Subor Z Plus Chinese PC/Console Hybrid - Ryzen+Vega AMD Analysis!. Eurogamer. Event occurs at 2 minutes 2 seconds. RetrievedOctober 28, 2018.
    239. ^Smith, Ryan (April 16, 2019)."Sony Teases Next-Gen PlayStation: Custom AMD Chip with Zen 2 CPU & Navi GPU, SSD Too". Anandtech.
    240. ^"Tech Specs".steamdeck.com. RetrievedJuly 18, 2021.

    External links

    [edit]
    Lists
    Microarchitectures
    IA-32 (32-bit)
    x86-64 desktop
    x86-64 low-power
    ARM64
    Current products
    x86-64 (64-bit)
    Discontinued
    Early x86 (16-bit)
    IA-32 (32-bit)
    x86-64 (64-bit)
    Other
    Italics indicates an upcoming architecture.
    AMD sockets and chipsets
    Desktop sockets
    Mobile sockets
    Server sockets
    Combined sockets
    ATI chipsets
    AMD chipsets
    Combined means that the given socket is supported by all platforms, including desktop, mobile, and server.
    AMD graphics
    Fixed pipeline
    Vertex and fragment shaders
    Unified shaders
    TeraScale
    Unified shaders &memory
    GCN
    RDNA
    Current technologies and software
    Audio/video acceleration
    GPU technologies
    Software
    Current
    Obsolete
    Other brands and products
    Workstations
    &supercomputers
    Current
    Obsolete
    Consoles
    &handheld PCs
    Retrieved from "https://en.wikipedia.org/w/index.php?title=List_of_AMD_processors_with_3D_graphics&oldid=1318614083"
    Categories:
    Hidden categories:

    [8]ページ先頭

    ©2009-2025 Movatter.jp