Intel
Intel 670p 2TB NVMe M.2 2280 internal SSD
A 2 TB NVMe M.2 2280 internal SSD delivering up to 3500 MB/s sequential read and 2700 MB/s sequential write over PCIe 3.0 x4
- 2 TB capacity stores large game libraries and media collections
- PCIe 3.0 x4 NVMe interface delivers up to 3500 MB/s sequential read speeds
- QLC 3D NAND technology enables up to 2700 MB/s sequential write performance
- M.2 2280 form factor fits modern desktops and laptops
- 670p series designed for everyday multitasking and gaming workloads
Capacity & Interface
This Intel 670p drive provides two terabytes of storage through a PCIe 3.0 x4 NVMe connection in the M.2 2280 form factor. It uses QLC 3D NAND to deliver sequential read speeds up to 3500 MB/s and write speeds up to 2700 MB/s. The design targets everyday workloads such as multitasking and gaming on desktops or laptops.
Who It Suits
The capacity and speed profile fits users who need a single large volume for operating system, applications and game libraries without managing multiple drives. Buyers who require sustained write performance for heavy content creation or professional workloads should evaluate drives with different NAND architectures.
Deciding Specification
The PCIe 3.0 x4 NVMe interface determines whether this drive can be installed and operate at its rated speeds. Verify that the host system provides an M.2 2280 key‑M slot wired for PCIe 3.0 x4 before purchase.
特長
- 2 TB capacity stores large game libraries and media collections
- PCIe 3.0 x4 NVMe interface delivers up to 3500 MB/s sequential read speeds
- QLC 3D NAND technology enables up to 2700 MB/s sequential write performance
- M.2 2280 form factor fits modern desktops and laptops
- 670p series designed for everyday multitasking and gaming workloads
仕様
この商品の仕様はまだ公開されていません。
この商品に関する質問
Does the 2280 form factor need a specific M.2 slot length on my motherboard?
The 2280 size requires an M.2 slot that accepts 80 mm modules. Most current desktop and laptop boards include a mounting standoff at that position.
What is the correct way to seat the PCIe 3.0 x4 drive in the M.2 slot?
Insert the drive at a shallow angle until the edge connector is fully seated, then press the opposite end down and secure it with the single retention screw.
How does the QLC NAND affect the drive's write endurance over time?
QLC stores four bits per cell, so sustained heavy writes wear the media faster than TLC. The controller manages wear levelling, but very write-intensive workloads will reduce usable life.
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