The GIGABYTE B650 GAMING X AX motherboard delivers exceptional performance and expandability for AMD Ryzen™ 7000 Series processors, supporting the AM5 LGA 1718 socket. Equipped with DDR5 memory support, it offers blazing-fast speeds for demanding applications, whether you're gaming, streaming, or content creating. This ATX motherboard is built for gamers and enthusiasts who seek cutting-edge technology and reliable performance. With PCIe 4.0 support, you’ll experience lightning-fast data transfer rates for GPUs and NVMe SSDs, ensuring smooth performance even in the most resource-intensive tasks. The inclusion of USB 3.2 Gen2x2 Type-C offers ultra-fast data transfer and better connectivity for modern peripherals, while PCIe 4.0 ensures your system is ready for next-gen expansion cards. The AMD Wi-Fi 6E technology provides superior wireless speeds and stability, offering seamless online experiences and improved network efficiency for gamers and power users. For wired networking, the Realtek 2.5GbE LAN ensures faster and more stable internet connections, ideal for gaming, streaming, and large file transfers. With ample storage options, M.2 slots, and support for the latest peripherals, the GIGABYTE B650 GAMING X AX motherboard is designed to provide a stable and high-performance foundation for your AMD-based PC build. Key Features: ✔ AM5 LGA 1718 Socket – Supports AMD Ryzen™ 7000 Series processors for top-tier performance ✔ DDR5 Memory Support – Next-gen memory for high-speed data processing and multitasking ✔ PCIe 4.0 – High-speed data transfer rates for GPUs and storage devices ✔ M.2 Slot – Supports NVMe SSDs for ultra-fast storage performance ✔ USB 3.2 Gen2x2 Type-C – Offers ultra-fast data transfer for modern devices ✔ AMD Wi-Fi 6E – Next-gen wireless connectivity for stable online gaming and streaming ✔ Realtek 2.5GbE LAN – Faster wired networking for reliable internet connectivity ✔ ATX Form Factor – Full-sized motherboard for optimal expansion and cooling options ✔ Enhanced Cooling – Designed for efficient heat dissipation during heavy loads