ADATA To Develop DDR5 Memory Modules With Up To 64 GB Capacities & 8400 MHz Speeds For Intel’s 12th Gen Alder Lake Platform

Jan 7, 2021 at 04:28pm EST

ADATA has been on the frontlines of developing DDR5 memory for the next generation of Intel processors. They have now enlisted the help of MSI and Gigabyte to ensure that their memory is of the best possible quality and can reach the 8400 MT/s data transfer rate on Intel's next-generation Alder Lake platform.

ADATA Says DDR5 Memory Is The Future & A 8400 MT/s Data Transfer Rate Is Quite Promising For The First Generation

Many expect the standard for the first iteration of DDR5 to be somewhere in between 4800 and 5200, but ADATA looks to be striving to reach speeds of up to 8400 MHz on the first go and make it the future standard. The promise of DDR5 looks great because it offers a massive performance increase over DDR4 with an increase in data transfer rates. It also provides better efficiency which is to be expected with technological advancements.

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Enlisting the help of MSI and Gigabyte, ADATA says they are testing its DDR5-8400 on the "latest Intel platforms". This would most likely be Intel's upcoming Alder Lake processors using motherboards provided by MSI and Gigabyte. The Alder Lake processors are rumored to have eight high-performance Golden Cove cores and eight energy-efficient Grace Mont cores.

The microarchitecture that DDR5 will first be available is thought to be Golden Cove with further IPC gains coming with the Willow Cove and Cypress Cove microarchitectures. These modules will improve CPU performance by having a higher peak bandwidth with greater efficiency.

Intel Mainstream CPU Generations Comparison:

Intel CPU FamilyProcessor ProcessProcessor ArchitectureGraphics ArchitectureProcessors Cores/Threads (Max)PlatformMemory SupportPCIe SupportLaunch
Alder Lake (12th Gen)Intel 7Golden Cove (P-Core)
Gracemont (E-Core)
HD 700 Series16/24LGA 1700/1800DDR5 / DDR4PCIe Gen 5.02021
Raptor Lake (13th Gen)Intel 7Raptor Cove (P-Core)
Gracemont (E-Core)
HD 700 Series24/32LGA 1700/1800DDR5 / DDR4PCIe Gen 5.02022
Raptor Lake Refresh (14th Gen)Intel 7Raptor Cove (P-Core)
Gracemont (E-Core)
HD 700 Series24/32LGA 1700/1800DDR5 / DDR4PCIe Gen 5.02023
Meteor LakeIntel 4Redwood Cove (P-Core)
Crestmont (E-Core)
Xe1 (Alchemist)22/28LGA 1851DDR5PCIe Gen 5.02024
Arrow LakeTSMC N3BLion Cove (P-Core)
Skymont (E-Core)
Xe1 (Alchemist)24/24LGA 1851DDR5PCIe Gen 5.02024
Arrow Lake RefreshTSMC N3BLion Cove (P-Core)
Skymont (E-Core)
Xe1 (Alchemist)24/24LGA 1851DDR5PCIe Gen 5.02026
Lunar LakeTSMC N3BLion Cove (P-Core)
Skymont (E-Core)
Xe2 (Battlemage)8/8Mobile OnlyLPDDR5XPCIe Gen 5.02024
Panther LakeIntel 18ACougar Cove (P-Core)
Darkmont (E-Core)
Xe3 (Battlemage)16/16Mobile OnlyLPDDR5/LPDDR5XPCIe Gen 5.02025
Nova LakeIntel 18ACoyote Cove (P-Core)
Arctic Wolf (E-Core)
Xe3 (Battlemage)
Xe3P (Celestial)
52/52LGA 1954DDR5PCIe Gen 5.02026
Razor LakeIntel 18A?Griffin Cove (P-Core)
Golden Eagle (E-Core)
TBATBALGA 1954DDR5PCIe Gen 5.0?2027
Titan LakeTBACopper Shark (Unified)
Golden Eagle (E-Core)
TBATBAMobile OnlyLPDDR6?PCIe Gen 5.0?2028

Although people may just see faster memory with DDR5, there a plethora of benefits and features that come along with this platform to enable high data rates. This includes improved training modes, on-die termination, and two independent 32/40-bit I/O channels (non-ECC/ECC) per module. More features include long-term I/O scalability and on-die single error correction (SEC) ECC, DFE (decision feedback equalizer) to eliminate reflective noise at high frequencies. The ram module will also be operating at just 1.1V which would ensure higher power efficiency while offering much better bandwidth and latencies than DDR4.

With DDR5 on the horizon, being able to reach DDR5-8400 with the first generation is quite promising for the future of DDR5. Micron estimated that DDR5 would be 35% more efficient than DDR4 at the same I/O speeds, but that may be an underestimation at this point. A lot has still not been answered about DDR5, but that will be clarified further along with the development of this new memory.

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