'amd 라이젠'에 해당되는 글 4건

  1. 2021.02.16 AMD 젠3, 라이젠 5950X, 5900X, 5600X 성능 확인 by 랩터 인터내셔널
  2. 2018.04.21 AMD 라이젠 7 2700X 공식 리뷰 : 라이젠을 재정의 by 랩터 인터내셔널
  3. 2017.03.03 AMD 라이젠 1800X, 1700X, 1700 성능 벤치마크(게임 성능 제외) by 랩터 인터내셔널
  4. 2017.01.05 AMD, 라이젠 대응 X370 칩셋 탑재 메인보드 공개 by 랩터 인터내셔널

 

AMD 신형 젠3 아키텍처, 라이젠 5950X, 5900X, 5600X 성능 테스트

 

 

- AMD 라이젠 9 5950X는 16코어 32스레드, 베이스 클럭 3.4, L3 캐시 64MB, TDP 105W, 799달러

- AMD 라이젠 9 5900X는 12코어 24스레드, 베이스 클럭 3.7, L3 캐시 64MB, TDP 105W, 549달러

- AMD 라이젠 7 5800X는 8코어 16스레드, 베이스 클럭 3.8, L3 캐시 32MB, TDP 105W, 449달러

- AMD 라이젠 5 5600X는 6코어 12스레드, 베이스 클럭 3.7, L3 캐시 32MB, TDP 65W, 299달러

 

 

AMD 라이젠 9 5950X의 CPU-Z 스펙

 

 

 

2020년 4분기 인텔 VS AMD CPU 라인업 비교. 라이젠 5950X는 인텔 10980XE를, 라이젠 5900X는 인텔 10900K를, 라이젠 5800X는 10850K와 10700K를, 라이젠 5600X는 10600K를 상대한다.

 

[ 테스트 시스템 ]

 

AnandTech Example
Processors
Motherboard DRAM PSU SSD
AMD
Zen 3 CPU Ryzen 9 5950X MSI X570
Godlike
(1.B3T13)
Corsair RGB
Dominator Pro
32 GB
DDR4-3200
OCZ Gold
1250W
Crucial
MX500
2 TB
Ryzen 9 5900X
Ryzen 7 5800X
Ryzen 5 5600X
Zen 2 CPU Ryzen 9 3950X GIGABYTE
X570 Aorus I
Pro (F30a)
ADATA
32 GB
DDR4-3200
Corsair
AX860i
Crucial
MX500
2 TB
Ryzen 9 3900X
Ryzen 7 3800XT
Ryzen 7 3700X
Ryzen 5 3600
Zen+ CPU Ryzen 7 2700X GIGABYTE
X570 Aorus I
Pro (F30a)
ADATA
32 GB
DDR4-3200
Corsair
AX860i
Crucial
MX500
2 TB
Intel
Comet Lake
CPU
Core i9-10900K ASRock Z490
PG Velocia
Corsair RGB
Dominator Pro
32 GB
DDR4-2933
OCZ Gold
1250 W
Crucial
MX500
2 TB
Core i9-10850K
Core i7-10700K
Core i5-10600K

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Legacy Tests

 

 

 

 

 

 

 

 

 

 

 

 

 

출처 - https://www.anandtech.com/

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Posted by 랩터 인터내셔널



AMD Ryzen 7 2700X
AMD Ryzen 7 1800X
AMD Ryzen 7 2700
AMD Ryzen 5 1600X
AMD Ryzen 5 2600X
AMD Ryzen 5 2600
Intel Core i7-8700K
Intel Core i7-8700
Intel Core i5-8600K
Intel Core i5-8400
MSRP
$329
$349
$299
$219
$229
$199
$359
$303
$257
$182
Cores/Threads
8/16
8/16
8/16
6/12
6/12
6/12
6/12
6/12
6/6
6/6
TDP
105W
95W
65W
95W
95W
65W
95W
65W
95W
65W
Base Freq. (GHz)
3.7
3.6
3.2
3.6
3.6
3.4
3.7
3.2
3.6
2.8
Precision Boost Freq. (GHz)
4.3
4.1
4.14.0
4.2
3.9
4.7
4.6
4.3
4.0
Cache (L3)
16MB
16MB
16MB
16MB
16MB
16MB
12MB
12MB
9MB
9MB
Unlocked Multiplier
Yes
Yes
Yes
Yes
Yes
Yes
Yes
No
Yes
No
Cooler
105W Wraith Prism (LED)
-
95W Wraith Spire (LED)-
95W Wraith Spire
65W Wraith Stealth
-
Intel
-
Intel


새롭게 등장한 라이젠 7 2700X는 기존 라이젠 1800X 대비 베이스 클럭이 100MHz, 부스트 클럭이 200MHz 상승하고 있습니다. 그에 따라 TDP 또한 10와트 증가한 105와트를 나타내며 캐시 성능 개선을 제외하면 나머지 스펙은 동일합니다.






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Test Systems

Test System & Configuration
Hardware

Germany

AMD Socket AM4 (400-Series)

AMD Ryzen 7 2700X
MSI X470 Gaming M7 AC
2x 8GB G.Skill FlareX DDR4-3200 @ DDR4-2933, DDR4-3466

Intel LGA 1151 (Z370):
Intel Core i5-8600K, i5-8600K, Core i5-8400
MSI Z370 Gaming Pro Carbon AC
2x 8GB Corsair Vengeance DDR4-3200 @ 2666

AMD Socket AM4 Workstation (300-Series)
AMD Ryzen 5 1500X, Ryzen 5 1600X, Ryzen 5 1400
MSI X370 Tomahawk
4x 8GB G.Skill TridentZ DDR4-3200 @ 2667 and 3200

Intel LGA 1151 (Z270)
Intel Core i7-7700K
MSI Z270 Gaming 7
2x 8GB Corsair Vengeance DDR4-3200 @ 2400 and 3200

All Systems
GeForce GTX 1080 Founders Edition (Gaming)
Nvidia Quadro P6000 (Workstation)

1x 1TB Toshiba OCZ RD400 (M.2, System)
2x 960GB Toshiba OCZ TR150 (Storage, Images)
be quiet! Dark Power Pro 11, 850W Power Supply
Windows 10 Pro (Creators Update)

U.S.

AMD Socket AM4 (400-Series)
AMD Ryzen 7 2700X
MSI X470 Gaming M7 AC
2x 8GB G.Skill FlareX DDR4-3200 @ DDR4-2933, DDR4-3466

Intel LGA 1151 (Z370):
Intel Core i7-8700K, i5-8600K, Core i5-8400
MSI Z370 Gaming Pro Carbon AC
2x 8GB G.Skill FlareX DDR4-3200 @ DDR4-2400, DDR4-2667, DDR4-3466

AMD Socket AM4 (300-Series)
AMD Ryzen 7 1800X, 1700X, 1700, Ryzen 5 1600X
MSI X370 Xpower Gaming Titanium
2x 8GB G.Skill FlareX DDR4-3200 @ DDR4-2667, DDR4-3200

Intel LGA 1151 (Z270)
Intel Core i7-7700K
MSI Z270 Gaming M7
2x 8GB G.Skill FlareX DDR4-3200 @ DDR4-2400

Intel LGA 2066

Intel Core i7-7820X
MSI X299 Gaming Pro Carbon AC
4x 8GB G.Skill FlareX DDR4-3200 @ DDR4-2666

All
EVGA GeForce GTX 1080 FE
1TB Samsung PM863
SilverStone ST1500-TI, 1500W
Windows 10 Creators Update Version 1703
Cooling
Germany
Alphacool Eiszeit 2000 Chiller
Alphacool Eisblock XPX
Thermal Grizzly Kryonaut (For Cooler Switch)

U.S.
Corsair H115i
Monitor
Eizo EV3237-BK
PC Case
Lian Li PC-T70 with Extension Kit and Mods
Configurations: Open Benchtable, Closed Case
Power Consumption Measurement
Contact-free DC Measurement at PCIe Slot (Using a Riser Card)
Contact-free DC Measurement at External Auxiliary Power Supply Cable
Direct Voltage Measurement at Power Supply
2x Rohde & Schwarz HMO 3054, 500 MHz Digital Multi-Channel Oscilloscope with Storage Function
4x Rohde & Schwarz HZO50 Current Probe (1mA - 30A, 100 kHz, DC)
4x Rohde & Schwarz HZ355 (10:1 Probes, 500 MHz)
1x Rohde & Schwarz HMC 8012 Digital Multimeter with Storage Function
Thermal Measurement
1x Optris PI640 80 Hz Infrared Camera + PI Connect
Real-Time Infrared Monitoring and Recording
Acoustic Measurement
NTI Audio M2211 (with Calibration File, Low Cut at 50Hz)
Steinberg UR12 (with Phantom Power for Microphones)
Creative X7, Smaart v.7
Custom-Made Proprietary Measurement Chamber, 3.5 x 1.8 x 2.2m (L x D x H)
Perpendicular to Center of Noise Source(s), Measurement Distance of 50cm
Noise Level in dB(A) (Slow), Real-time Frequency Analyzer (RTA)
Graphical Frequency Spectrum of Noise



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전력 소모



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가격대비 게이밍 효율


01


02


AMD's Ryzen 7 2700X is another big step forward for AMD. The improved boost algorithms add to Ryzen's performance advantage in heavily-threaded applications, while the increased frequency and reduced memory latency provide a boost to a wide range of workloads. AMD delivered on the pricing front, too, and the bundled LED cooler and storage tiering software adds to the value.


AMD의 Ryzen 7 2700X는 AMD의 또 하나의 큰 진보입니다. 향상 된 부스트 알고리즘은 높은 빈도의 스레드 응용 프로그램에서 Ryzen의 성능 이점을 추가하고, 주파수 증가 및 메모리 대기 시간 감소는 광 범위한 작업 로드를 향상시킵니다. AMD는 가격 책정에서도 앞장서 왔으며 번들로 제공되는 LED 쿨러 및 스토리지 계층화 소프트웨어가 그 가치를 더욱 높여줍니다.


출처 - https://www.tomshardware.com

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Posted by 랩터 인터내셔널


AMD Ryzen SKUs
 Cores/
Threads
Base/
Turbo
L3TDPCostLaunch Date
Ryzen 7 1800X8/163.6/4.016 MB95 W$4993/2/2017
Ryzen 7 1700X8/163.4/3.816 MB95 W$3993/2/2017
Ryzen 7 17008/163.0/3.716 MB65 W$3293/2/2017


AMD가 마침내 신형 프로세서 "라이젠" 공식 발표

먼저 출시된 모델은 라이젠 7 시리즈 1800X, 1700X, 1700 3가지 모델로 각각 8코어 16스레드, 16MB의 L3 캐시 탑재

동작 클럭은 1800X가 베이스 3.6 - 터보 4.0, 1700X가 베이스 3.4 - 터보 3.8, 1700이 베이스 3.0 - 터보 3.7

TDP는 1800X / 1700X 95와트, 1700 모델이 65와트


Comparison: Ryzen 7 1800X vs Core i7-6900K
AMD
Ryzen 7 1800X
FeaturesIntel
Core i7-6900K
8 / 16Cores/Threads8 / 16
3.6 / 4.0 GHzBase/Turbo3.2 / 3.7GHz
16PCIe 3.0 Lanes40
16 MBL3 Cache20 MB
95 WTDP140 W
$499Price (MSRP)$1049



인텔의 8코어 16스레드 6900K와 라이젠 1800X 스펙비교

베이스 - 터보 클럭은 6900K가 3.2 / 3.7, 라이젠 1800X는 3.6 / 4.0

PCIE 3.0 레인수는 6900K가 40레인, 1800X가 16레인

L3 캐시는 6900K가 20MB, 1800X가 16MB

가격은 1800X가 499달러, 6900K 1049달러


Comparison: Ryzen 7 1700 vs Core i7-7700K
AMD
Ryzen 7 1700
FeaturesIntel
Core i7-7700K
8 / 16Cores/Threads4 / 8
3.0 / 3.7 GHzBase/Turbo4.2 / 4.5 GHz
16PCIe 3.0 Lanes16
16 MBL3 Cache8MB
65 WTDP91 W
$329Price (MSRP)$350



라이젠 1700과 카비레이크 7700K 스펙비교

1700은 8코어 16스레드, 7700K는 4코어 8스레드

1700 클럭은 베이스 3.0 - 터보 3.7, 7700K 클럭은 베이스 4.2 - 터보 4.5

PCIE 레인수는 두 모델 모두 16레인

L3캐시는 1700이 16MB, 7700K가 8MB

TDP는 1700이 65와트, 7700K가 91와트

가격은 1700이 329달러, 7700K가 350달러



CPU uArch Comparison
 AMDIntel
 Zen
8C/16T
2017
Bulldozer
4M / 8T
2010
Skylake
Kaby Lake
4C / 8T
2015/7
Broadwell
8C / 16T
2014
L1-I Size64KB/core64KB/module32KB/core32KB/core
L1-I Assoc4-way2-way8-way8-way
L1-D Size32KB/core16KB/thread32KB/core32KB/core
L1-D Assoc8-way4-way8-way8-way
L2 Size512KB/core1MB/thread256KB/core256KB/core
L2 Assoc8-way16-way4-way8-way
L3 Size2MB/core1MB/thread>2MB/cire1.5-3MB/core
L3 Assoc16-way64-way16-way16/20-way
L3 TypeVictimVictimWrite-backWrite-back
L0 ITLB Entry8---
L0 ITLB Assoc?---
L1 ITLB Entry6472128128
L1 ITLB Assoc?Full8-way4-way
L2 ITLB Entry51251215361536
L2 ITLB Assoc?4-way12-way4-way
L1 DTLB Entry64326464
L1 DTLB Assoc?Full4-way4-way
L2 DTLB Entry15361024--
L2 DTLB Assoc?8-way--
Decode4 uops/cycle4 Mops/cycle5 uops/cycle4 uops/cycle
uOp Cache Size2048-15361536
uOp Cache Assoc?-8-way8-way
uOp Queue Size?-12864
Dispatch / cycle6 uops/cycle4 Mops/cycle6 uops/cycle4 uops/cycle
INT Registers168160180168
FP Registers16096168168
Retire Queue192128224192
Retire Rate8/cycle4/cycle8/cycle4/cycle
Load Queue72407272
Store Queue44245642
ALU4244
AGU222+22+2
FMAC2x128-bit2x128-bit
2x MMX 128-bit
2x256-bit2x256-bit




AM4 CPU




AM4 소켓




AMD 신형 레이스 쿨러


[ 테스트 시스템 ]

AMD Ryzen 7 1800X (8C/16T, 3.6-4.0 GHz, 95W, $499)

AMD Ryzen 7 1700X (8C/16T, , 95W, $399)AMD Ryzen 7 1700 (8C/16T, 3.0-3.7 GHz, 65W, $329)ASUS Crosshair VI Hero MotherboardCorsair Vengeance 2x8GB DDR4-3000 C16 running at DDR4-2400 C15Crucial MX200 1TB SSDRosewill SilentNight 500W Platinum PSUASUS GTX 950 Ti (95W)MSI GTX 1080 Gaming 8GBWindows 10 Pro


PDF Opening

First up is a self-penned test using a monstrous PDF we once received in advance of attending an event. While the PDF was only a single page, it had so many high-quality layers embedded it was taking north of 15 seconds to open and to gain control on the mid-range notebook I was using at the time. This put it as a great candidate for our 'let's open an obnoxious PDF' test. Here we use Adobe Reader DC, and disable all the update functionality within. The benchmark sets the screen to 1080p, opens the PDF to in fit-to-screen mode, and measures the time from sending the command to open the PDF until it is fully displayed and the user can take control of the software again. The test is repeated ten times, and the average time taken. Results are in milliseconds.

System: PDF Opening with Adobe Reader DC

FCAT Processing

One of the more interesting workloads that has crossed our desks in recent quarters is FCAT - the tool we use to measure stuttering in gaming due to dropped or runt frames. The FCAT process requires enabling a color-based overlay onto a game, recording the gameplay, and then parsing the video file through the analysis software. The software is mostly single-threaded, however because the video is basically in a raw format, the file size is large and requires moving a lot of data around. For our test, we take a 90-second clip of the Rise of the Tomb Raider benchmark running on a GTX 980 Ti at 1440p, which comes in around 21 GB, and measure the time it takes to process through the visual analysis tool. 

System: FCAT Processing ROTR 1440p GTX1080 Data

3D Particle Movement v2.1 

This is the latest version of the self-penned 3DPM benchmark. The goal of 3DPM is to simulate semi-optimized scientific algorithms taken directly from my doctorate thesis. Version 2.1 improves over 2.0 by passing the main particle structs by reference rather than by value, and decreasing the amount of double->float->double recasts the compiler was adding in. It affords a ~25% speed-up over v2.0, which means new data. 

System: 3D Particle Movement v2.1

DigiCortex 1.16

Despite being a couple of years old, the DigiCortex software is a pet project for the visualization of neuron and synapse activity in the brain. The software comes with a variety of benchmark modes, and we take the small benchmark which runs a 32k neuron/1.8B synapse simulation. The results on the output are given as a fraction of whether the system can simulate in real-time, so anything above a value of one is suitable for real-time work. The benchmark offers a 'no firing synapse' mode, which in essence detects DRAM and bus speed, however we take the firing mode which adds CPU work with every firing.

System: DigiCortex 1.16 (32k Neuron, 1.8B Synapse)

Agisoft Photoscan 1.0

Photoscan stays in our benchmark suite from the previous version, however now we are running on Windows 10 so features such as Speed Shift on the latest processors come into play. The concept of Photoscan is translating many 2D images into a 3D model - so the more detailed the images, and the more you have, the better the model. The algorithm has four stages, some single threaded and some multi-threaded, along with some cache/memory dependency in there as well. For some of the more variable threaded workload, features such as Speed Shift and XFR will be able to take advantage of CPU stalls or downtime, giving sizeable speedups on newer microarchitectures.

System: Agisoft Photoscan 1.0 Stage 1

System: Agisoft Photoscan 1.0 Stage 2

System: Agisoft Photoscan 1.0 Stage 3

System: Agisoft Photoscan 1.0 Stage 4

System: Agisoft Photoscan 1.0 Total Time


Corona 1.3

Corona is a standalone package designed to assist software like 3ds Max and Maya with photorealism via ray tracing. It's simple - shoot rays, get pixels. OK, it's more complicated than that, but the benchmark renders a fixed scene six times and offers results in terms of time and rays per second. The official benchmark tables list user submitted results in terms of time, however I feel rays per second is a better metric (in general, scores where higher is better seem to be easier to explain anyway). Corona likes to pile on the threads, so the results end up being very staggered based on thread count.

Rendering: Corona Photorealism

Blender 2.78

For a render that has been around for what seems like ages, Blender is still a highly popular tool. We managed to wrap up a standard workload into the February 5 nightly build of Blender and measure the time it takes to render the first frame of the scene. Being one of the bigger open source tools out there, it means both AMD and Intel work actively to help improve the codebase, for better or for worse on their own/each other's microarchitecture.

Rendering: Blender 2.78

LuxMark

As a synthetic, LuxMark might come across as somewhat arbitrary as a renderer, given that it's mainly used to test GPUs, but it does offer both an OpenCL and a standard C++ mode. In this instance, aside from seeing the comparison in each coding mode for cores and IPC, we also get to see the difference in performance moving from a C++ based code-stack to an OpenCL one with a CPU as the main host. 

Rendering: LuxMark CPU C++Rendering: LuxMark CPU OpenCL

POV-Ray 3.7

Another regular benchmark in most suites, POV-Ray is another ray-tracer but has been around for many years. It just so happens that during the run up to AMD's Ryzen launch, the code base started to get active again with developers making changes to the code and pushing out updates. Our version and benchmarking started just before that was happening, but given time we will see where the POV-Ray code ends up and adjust in due course.

Rendering: POV-Ray 3.7

Cinebench R15

The latest version of CineBench has also become one of those 'used everywhere' benchmarks, particularly as an indicator of single thread performance. High IPC and high frequency gives performance in ST, whereas having good scaling and many cores is where the MT test wins out. 

Rendering: CineBench 15 SingleThreaded

Rendering: CineBench 15 MultiThreaded


Web: SunSpider on Chrome 56

Web: Mozilla Kraken 1.1 on Chrome 56

Web: Google Octane 2.0 on Chrome 56

Web: WebXPRT 13 on Chrome 56

Web: WebXPRT 15 on Chrome 56

 


Benchmarking Performance: CPU Encoding Tests

Encoding: 7-Zip

Encoding: WinRAR 5.40

Encoding: AES

Encoding: Handbrake H264 (LQ)

Encoding: Handbrake H264 (HQ)

Encoding: Handbrake HEVC (4K)

 

Benchmarking Performance: CPU Office Tests

Office: PCMark8 Home (non-OpenCL)

Office: PCMark8 Work (non-OpenCL)

Sysmark is developed by Bapco, a consortium of industry CPU companies. AMD left Bapco in the last two years, due to differences of opinion on how the benchmarking suites were angled towards Intel processors and had optimizations to show bigger differences than what AMD felt was present. The following benchmarks are provided as data, but the conflict of opinion between the two companies on the validity of the benchmark is provided as context for the following numbers.

SYSmark 2014 - Office Productivity

SYSmark 2014 - Media Creation

SYSmark 2014 - Data and Financial Analysis

SYSmark 2014 - Overall

 

Benchmarking Performance: CPU Legacy Tests

Legacy: 3DPM v1 Single Threaded

Legacy: 3DPM v1 MultiThreaded

Legacy: x264 3.0 Pass 1

Legacy: x264 3.0 Pass 2

Legacy: CineBench 10 Single Threaded

Legacy: CineBench 10 MultiThreaded

Legacy: CineBench 11.5 Single Threaded

Legacy: CineBench 11.5 MultiThreaded


출처 - http://www.anandtech.com


리뷰어 결론 - AMD 라이젠 CPU는 전통적인 uArch를 탑재하고 있으며 특히 지난 세대의 AMD와 비교할때 성능이 뛰어납니다. AMD가 싱글스레드와 멀티스레드에서 인텔의 HEDT와 동등하거나 그 이상인 벤치마크 결과도 많이 볼 수 있습니다. 그러나 AMD가 여전히 브로드웰 대비 10 - 20% 뒤떨어져있는 경우도 있습니다. 이러한 엣지 케이스는 예측하기 어렵고 최적화되지 않은 코드에서 비롯 될 수 있습니다. 인텔의 거대한 R&D 강점 중 하나는 프리페치, 메모리 알고리즘 및 광범위한 테스트를 통해 이러한 엣지 케이스를 처리 할 수 ​​있다는 것입니다.


성능 대비 가격은 여전히 ​​AMD의 강점 중 하나입니다. 499달러의 1800X가 1049달러의 i7-6900K와 비슷하거나 앞서는 수많은 테스트에서 가격 대비 성능이 2배로 변환됩니다. 우리는 라이젠 테스트를 위해 2부 - CPU 및 IPC 분석, 새로운 게임 및 그래픽 카드를 사용하는 DX12의 GPU 테스트를 계획하고 있습니다.


요약 - AMD 라이젠은 게임을 제외한 여러 연산 프로그램에서는 인텔의 최상위 모델과 비슷하거나 일부 앞서는 성능도 보이며 높은 가격 대비 성능을 어필. 어낸드텍은 벤치마크 2부로 게이밍 성능 벤치마크를 업데이트 할 예정

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미국 AMD는 1월 4일(현지 시간) CES 2017에서 차기 CPU "라이젠"에 대응한 2종류의 칩셋, Socket AM4 메인보드, 그리고 탑재 PC를 공개했다. 출하는 2017년 1분기부터로 알려졌다.


Ryzen에 대응하는 칩셋으로 새로 X370과 X300의 2가지를 발표했다. X370은 상위 모델로 최신 기능과 각종 I/O을 도입하고 오버클럭과 듀얼 그래픽을 지원한다. X300은 Mini-ITX 같은 소형 폼 팩터용 제품이다.


두 모델 모두 듀얼 채널 DDR4 메모리, NVMe, M.2 SATA 드라이브, USB 3.1 및 PCI Express 3.0 대응이 포함되어 있으며 USB 비디오 카드, 다른 인터페이스를 위한 PCI Express 레인을 갖추고 있다.


한편 CES 2017에서 전시될 예정인 AM4 메인보드는 16가지 모델이며 ASRock, ASUS, BIOSTAR, GIGABYTE, MSI에서 발매된다. AMD 홈페이지에는 ASRock, BIOSTAR, GIGABYTE, MSI의 제품을 확인할 수 있다.


또 CPU 쿨러도 15가지의 탑 메이커와 개발을 협업했으며 녹투아는 "NH-D15"와 "NH-U12S"라는 2가지 모델을 제공한다. AMD 라이젠 탑재 PC는 미국과 한국, 러시아 등에서 출하될 예정.


출처 - http://pc.watch.impress.co.jp/docs/news/event/1037726.html

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