Tag: Performance benchmarks

  • Acer’s 4TB GM7 PCIe 4.0 SSD drops to $470 for Prime Day — 2TB and 4TB models are both on sale for up to 23% off

    The quest for blazing-fast storage has become an increasingly expensive game. Solid-state drives, once a luxury, are now grappling with soaring prices, making savvy shopping essential for anyone building or upgrading a high-performance PC. Yet, amidst the market turmoil, hidden gems are emerging—and one contender demanding attention right now is the Acer Predator GM7.

    During recent Prime Day sales, this powerhouse drive offers an incredible opportunity. The 4TB model, which has been highly sought after, is currently priced at $469.99, representing a substantial discount of 23% off its original MSRP of $609.

    While the listed price looks incredibly appealing, it’s important to understand the wider context. This specific drive has actually traded hands for well over $700 throughout much of the year, underscoring the intense competition and scarcity plaguing the current storage market. This deal positions the GM7 at pre-shortage pricing—a welcome respite amid the ongoing supply crisis.

    Beyond the attractive cost, the performance metrics prove that this drive still delivers serious speed. Operating on the PCIe 4.0 standard, the GM7 manages sequential read speeds up to 7,400 MB/s and write speeds up to 6500 MB/s. While it may not offer the absolute bleeding edge of every new technology, these speeds are more than sufficient for almost any demanding application.

    In head-to-head testing against industry rivals like the WD Black SN850X and Samsung 980 Pro, the GM7 proves itself highly capable. It successfully rivals those top-tier drives in various performance benchmarks, demonstrating strong endurance with a formidable 1,300 TBW rating.

    Furthermore, when evaluating real-world tasks, the efficiency of the drive shines. While other models might edge out the GM7 in microscopic file transfers, the Predator GM7 maintains superior performance and excellent efficiency during intensive