NVMe SSD

Bestoss M.2 2280 NVMe 2TB PCIe 4.0

2TB · NVMe · M.2

Current Price $299.99
All-Time Low $116.49 Sep 2025
All-Time High $325.99 May 2026
90-Day Average $290.39
💰 Price per GB: $0.146/GB · below the segment median, good value for NVMe SSD (median: $0.174/GB)
Price is elevated Current price is 3% above the 90-day average. Consider waiting.

Price Analysis

At $0.146/GB, it runs below the current NVMe SSD average of $0.174/GB.

Price History

Price history data licensed from Keepa. Prices update every few hours.

Price history table14 periods

Recorded low, average and high for every period with data.

Recorded price history for Bestoss M.2 2280 NVMe 2TB PCIe 4.0
PeriodLowAverageHighDays
Jul 2025$135.99$135.99$135.991
Sep 2025$116.49$122.74$129.994
Oct 2025$129.99$135.32$139.993
Nov 2025$139.99$144.99$149.992
Dec 2025$150.99$169.84$209.9910
Jan 2026$220.99$233.82$240.996
Feb 2026$238.99$256.76$278.9913
Mar 2026$285.99$290.99$298.996
Apr 2026$295.99$307.99$316.995
May 2026$260.99$296.54$325.994
Jun 2026$255.99$279.49$325.994
Jul 2026$279.99$284.45$284.9913
Aug 2026$284.99$291.67$295.9931
Sep 2026$295.99$299.37$299.9913

Price milestones

Dated events from this product's own tracked history.

First tracked
July 4, 2025
All-time low
$116.49 on September 8, 2025
All-time high
$325.99 on May 17, 2026
Biggest single-day drop
$70.00 (21%) on June 16, 2026
Longest stretch without a real move
26 days, July 7, 2026 to August 2, 2026

Compared with similar drives right now

Same capacity and specification, in stock, priced per gigabyte against this one.

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Retailer Price Availability
Amazon $299.99 In Stock View on Amazon →

Price may have changed on Amazon since our last check.

Last updated: September 13, 2026 Prices update every few hours. Affiliate links support MemRadar at no extra cost to you.

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Bestoss M.2 2280 NVMe SSD 2TB PCIe 4.0
$

Alerts are based on the Amazon price we track daily for this product.

Specifications

Type
NVMe
Capacity
2TB
Form Factor
M.2
Specs explained6 terms

Only the specifications this product actually carries.

NVMe
NVMe (Non-Volatile Memory Express) is the protocol modern SSDs use to talk to the system over PCIe, replacing the older AHCI protocol designed for spinning disks. NVMe drives, almost always in the M.2 form factor, are several times faster than SATA SSDs in sequential transfers and much faster at handling many simultaneous requests. NVMe has become the default for new builds, and its price per gigabyte now overlaps with SATA on many capacities.
M.2 2280
M.2 is the compact card form factor for SSDs that plugs directly into a motherboard slot, and 2280 describes the dimensions: 22mm wide and 80mm long, the most common size for desktops and laptops. Other lengths exist, notably 2230 for handhelds like the Steam Deck. An M.2 slot may carry NVMe, SATA, or both, and a drive must match what the slot supports.
PCIe generation (Gen3, Gen4, Gen5)
The PCIe generation of an NVMe drive sets its maximum bandwidth: roughly 3.5 GB/s for Gen3, 7 GB/s for Gen4, and 14 GB/s for Gen5 on four lanes. A drive runs at the lower of its own generation and the slot's. Gen4 covers gaming and general use with no perceptible difference for most people; Gen5 carries a price premium and runs hot enough to usually need a heatsink. Buying a generation beyond what the workload uses is a common way to overpay for storage.
DRAM cache and DRAM-less (HMB)
Some SSDs include a small DRAM chip to hold the map of where data lives, which keeps performance steady under heavy use. DRAM-less drives instead borrow a slice of system memory through Host Memory Buffer (HMB), which works well for everyday use and lowers the price. DRAM-less designs are common in budget NVMe drives and are usually fine as a boot or game drive; the difference shows up under sustained mixed workloads.
SLC cache
Most TLC and QLC SSDs reserve part of their flash to operate in a fast single-level (SLC) mode as a write cache. Writes are quick until that cache fills, after which speed drops to the drive's native rate, sometimes sharply on QLC drives. Advertised write speeds usually describe cache speed. The cache size and the speed after it fills matter for anyone regularly copying large files.
Sequential read and write speeds
The headline speeds on an SSD listing, such as 7,450 MB/s read, describe large sequential transfers under ideal conditions. They are the numbers that separate PCIe generations, and they are the least representative of everyday use, where small random reads dominate and most modern drives feel similar. Two drives with different headline speeds but the same generation and NAND type usually perform indistinguishably for gaming and desktop work.