Description of GIGABYTE 2TB M.2 SSD GP-ASM2NE6200TTTD
PCIe Gen 4 dual-sided copper heat sink SSD Form factor (dimensions, mm): M.2 2280 Interface: PCI-Express 4.0x4, NVMe 1.3 Declared capacity: 2000 GB Sequential read speed: up to 5000 MB/s Sequential write speed: up to 4400 MB/s Wear Compensation & Over-Provision Technology Support for TRIM and S.M.A.R.T Full Size Copper Heat Sink Warranty: Limited 5 Year World''s First PCIe 4.0 x4 Controller World''s First Phison PS5016-E16 PCIe 4.0 x4 Bus Interface Controller (28nm photolithography process), has sufficient computing power to process ECC requests of high-speed 3D TLC NAND flash memory chips. Using the PCIe 4.0 interface, the controller operates 8 channels with respect to 32 MS NAND, and DDR4 DRAM memory is used for data caching. The device supports the NVMe 1.3 protocol, is capable of performing error correction using LDPC and RAID ECC, has technologies for reserving separate areas for the needs of the drive and wear leveling, in order to increase the reliability and durability of the product, as well as advanced AES-256 / TCG OPAL 2.0 and Pyrite encryption algorithms .
Fast, high-quality NAND Flash MS (Selective Sampling) TOSHIBA BiCS4 96-layer 3D TLC (800 Mtransactions/s) The circuitry and architecture have been optimized specifically for Toshiba BiCS4 NAND flash memory chips, the number of layers has been increased to 96 to achieve an increase in memory capacity per unit area. The 800 MT/s throughput of the AORUS NVMe Gen 4 SSD far exceeds the performance of PCIe 3.0 x4 devices and offers great potential for next-generation high-speed storage applications.
Extreme Disk PerformanceEquipped with a new high-speed PCIe 4.0 controller, the AORUS NVMe Gen 4 SSD delivers fast sequential read/write speeds of up to 5000MB/s and up to 4400MB/s, respectively (serial reads are up to 40% faster compared to PCIe 3.0 SSDs). Take your computing to the next level with the new disk subsystem, delivering consistent gameplay and high-quality rendering in graphics and media editing applications.
Full-Length Copper Heatsink for Extreme PCIe 4.0 SSD PerformanceThe full-length copper heatsink successfully dissipates heat to cool the front and rear key components (controller and NAND flash MC). The thermal conductivity of a pure copper heatsink is 69% higher than that of a heatsink made of aluminum and its alloys. Thus, for the AORUS NVMe Gen4 SSD,
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