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Transcend TS1TMTE250S 1TB, M.2 2280, PCIe Gen4x4, NVMe, 3D TLC, with Dram(Graphene Heatsink)

โ‚นย 10,625.00 โ‚นย 10,625.00

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Transcend 1TB MTE250S NVMe PCIe Gen4x4 M.2 2280 SSD with DRAM & Graphene Heatsink (TS1TMTE250S)

Overview:

The Transcend MTE250S (TS1TMTE250S) is a high-performance 1TB M.2 NVMe SSD designed for laptops, desktops, and ultrabooks. Leveraging a PCIe Gen4x4 NVMe 1.4 interface, 3D TLC NAND flash, and dedicated DRAM cache, it delivers lightning-fast read/write speeds for gaming, content creation, and professional workloads. Its graphene heatsink ensures optimal thermal management, maintaining consistent performance under heavy workloads.

Key Features:

  • โšก PCIe Gen4x4 High-Speed Performance โ€“ Sequential read/write speeds up to 5,000 MB/s / 4,200 MB/s.

  • ๐Ÿ’พ 1TB Storage Capacity โ€“ Ideal for OS, applications, games, and multimedia libraries.

  • ๐Ÿ–ฅ๏ธ M.2 2280 Form Factor โ€“ Compact and versatile design for laptops, desktops, and workstations.

  • ๐Ÿงฉ 3D TLC NAND Flash with DRAM โ€“ Provides high durability, faster response times, and efficient multitasking.

  • โ„๏ธ Graphene Heatsink โ€“ Ensures stable performance by effectively dissipating heat.

  • ๐Ÿ›ก๏ธ Enhanced Reliability โ€“ Supports LDPC ECC, SLC caching, TRIM, S.M.A.R.T., and dynamic thermal throttling.

Technical Specifications:

  • Model: TS1TMTE250S

  • Capacity: 1TB

  • Form Factor: M.2 2280

  • Interface: PCIe Gen4 x4, NVMe 1.4

  • Flash Type: 3D TLC NAND

  • DRAM: Yes

  • Sequential Read: Up to 5,000 MB/s

  • Sequential Write: Up to 4,200 MB/s

  • TBW (Terabytes Written): ~600TB

  • Operating Temperature: 0ยฐC โ€“ 70ยฐC

  • Dimensions: 80 mm ร— 22 mm ร— 4 mm (with graphene heatsink)

  • Weight: 12g (approx.)

Package Includes:

  • 1 ร— Transcend MTE250S 1TB NVMe SSD with Graphene Heatsink

โœ… The Transcend MTE250S 1TB is a thermally optimized, high-speed SSD perfect for next-gen gaming, video editing, and professional workflows, combining PCIe Gen4 speed, DRAM cache, and graphene cooling for maximum reliability and performance.