
Out of Stock
ASUS TUF Gaming 1000W Gold White PSU | ATX 3.0, 80 Plus Gold
ASUS
MPN: TUF-GAMING-1000G-WHITE
$209.99
Free shipping on orders over $500
Authorized Dealer — Full manufacturer warranty
Key Features
- 1,000 W total output
- 80 Plus Gold efficiency rating
- White exterior finish
- ATX power supply form factor
- Designed for high-load desktop systems
- TUF Gaming series durability focus
- Deliver stable system power with 1,000 W output for high-demand builds
- Reduce wasted energy with 80 Plus Gold efficiency
Hold peak system demand with a PSU designed for sustained output, efficient operation, and long-term reliability. The ASUS TUF Gaming 1000W Gold White Edition delivers 1,000 W of power in a clean white chassis, making it a strong fit for performance builds that need headroom for high-end graphics cards, multi-drive storage, and overclocked processors.
This unit is positioned for builders who want more than basic wattage. Gold-level efficiency helps reduce wasted energy and heat, while the TUF platform is aimed at durability under continuous load. That matters in systems that run long render sessions, heavy gaming, or always-on workstation tasks where power stability directly affects uptime and component health.
The white finish also gives integrators and enthusiasts a cleaner visual match for light-themed cases and custom cable layouts. For premium builds, the value is in the margin: extra capacity, better efficiency, and a design intended to stay consistent under pressure. If you are specifying a PSU for a system that cannot afford weak power delivery, this model is built to justify the upgrade.
Ideal For
- High-end gaming desktops with flagship GPUs
- Creator workstations running long render or encode sessions
- White-themed custom PC builds
- Performance systems requiring power headroom for upgrades
Why This Product
- 1Higher wattage headroom than 750 W class units
- 2Gold efficiency for lower waste and heat
- 3White finish for premium light-themed builds
- 4Built for sustained load rather than entry-level systems



