LORDWORLD
LORDWORLD M.2 NVMe SSD 4 TB PCIe Gen 4.0 x4 2280 Graphene Heatsink
4 TB PCIe 4.0 x4 NVMe 2.0 drive with up to 7400 MB/s reads, 6500 MB/s writes, 2400 TBW endurance and an included graphene heatsink
- 4 TB capacity for large game libraries and media projects
- Sequential reads up to 7400 MB/s and writes up to 6500 MB/s via PCIe Gen 4.0 x4
- NVMe 2.0 protocol in compact 2280 form factor fits modern laptops and desktops
- TLC 3D NAND rated for 2400 TBW endurance under heavy workloads
- Graphene heatsink plus DRAM-less design reduces heat and power draw
LORDWORLD 4 TB NVMe 2.0 Drive
This LORDWORLD M.2 solid-state drive provides four terabytes of storage using the NVMe 2.0 protocol over a PCIe 4.0 x4 interface. Sequential reads reach up to 7400 MB/s and writes up to 6500 MB/s in the 2280 form factor.
Suits high-capacity PCIe 4.0 slots.
The drive suits desktops and laptops with an M.2 2280 slot wired for PCIe 4.0 x4 and NVMe 2.0. Buyers whose motherboards only support PCIe 3.0 or lack an M.2 NVMe slot should look at something else.
2400 TBW endurance from TLC 3D NAND
TLC 3D NAND flash backs a 2400 TBW endurance rating, while DRAM-less operation reduces heat and power draw. S.M.A.R.T. and TRIM support enables ongoing health monitoring and performance optimisation.
Highlights
- 4 TB capacity for large game libraries and media projects
- Sequential reads up to 7400 MB/s and writes up to 6500 MB/s via PCIe Gen 4.0 x4
- NVMe 2.0 protocol in compact 2280 form factor fits modern laptops and desktops
- TLC 3D NAND rated for 2400 TBW endurance under heavy workloads
- Graphene heatsink plus DRAM-less design reduces heat and power draw
Specifications
| Brand | LORDWORLD |
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Questions about this item
How long will the 2400 TBW endurance rating last before the TLC 3D NAND needs replacement?
The 2400 TBW rating means you can write 2400 terabytes before the TLC 3D NAND reaches its warranted endurance limit; typical consumer workloads rarely reach this level for many years.
Will the PCIe 4.0 x4 interface or the 7400 MB/s read speed throttle first during sustained heavy writes?
Sustained heavy writes will hit the 6500 MB/s write ceiling and controller thermal limits before the PCIe 4.0 x4 interface saturates, causing throttling to protect the DRAM-less design.
How hot does the graphene heatsink get and does the DRAM-less design keep power draw low during all-day operation?
The DRAM-less architecture minimises heat and power consumption, while the included graphene heatsink dissipates heat from the controller and TLC 3D NAND during continuous all-day workloads.
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