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Socket FM2+ supports AMD FM2+/FM2 A-series APU
GIGABYTE Ultra Durable™ Technology
Dedicated audio hardware zone with Audio Noise Guard design
HDMI 1.4, D-sub ports for multi-display support
Native USB 3.0 and SATA3 ports with RAID support
GIGABYTE UEFI BIOS
GIGABYTE On/Off Charge™ for USB devices
Solid capacitors for APU VRM design
+ Separation on the PCB layer protects the board's sensitive analog audio components.
+ Separate analog and digital ground to protect against Electromagnetic Interference (EMI).
GIGABYTE Ultra Durable™ debuts on GIGABYTE motherboards, with a range of features and component choices that provide record-breaking performance, cool and efficient operation and extended motherboard lifespan.
GIGABYTE uses Solid Caps (Capacitors) for CPU VRM and Low RDS(on) MOSFETs which are rated to work at higher temperatures to provide a longer lifespan.
Humidity can play havoc on a motherboard's circuitry.GIGABYTE's new Glass Fabric PCB design helps protect against electrical shorts due to humidity by reducing the gaps in spacing between PCB filaments.
The Gigabyte GA-F2A68HM-H motherboard is a budget-friendly option engineered to provide a solid foundation for AMD platforms. Designed to support FM2+/FM2 A-series APUs, this motherboard is packed with cutting-edge features and innovative technology. The inclusion of GIGABYTE’s Ultra Durable™ Technology ensures enhanced performance and extended longevity, making it a reliable choice for any user.
Socket FM2+ Support: - The motherboard features an FM2+ socket that ensures compatibility with AMD FM2+/FM2 A-series APUs. It supports both ‘Richland’ and ‘Kaveri’ processors, offering versatility and a wide range of processing capabilities.
GIGABYTE Ultra Durable™ Technology: - At the heart of the GA-F2A68HM-H is GIGABYTE’s Ultra Durable™ Technology, which provides numerous proprietary features aimed at improving the motherboard’s life span and performance. Solid capacitors for the APU VRM design and low RDS(on) MOSFETs ensure the system stays efficient even at higher temperatures.
Glass Fabric PCB Design: - Traditional PCBs are susceptible to electrical shorts caused by humidity. GIGABYTE’s Glass Fabric PCB design mitigates this risk by employing a denser weaving pattern, thereby reducing the gaps in spacing between PCB filaments and enhancing overall durability.
Audio Noise Guard: - Dedicated audio hardware zone, complemented by Audio Noise Guard design, separates the motherboard's sensitive analog audio components from electromagnetic interference, ensuring high-quality audio performance that is free from distortion and noise.
Dedicated Audio Hardware: - High-definition audio output is supported by a dedicated audio hardware zone. This area is partitioned on the PCB layer to protect sensitive audio components from noise pollution, maintaining high fidelity in sound.
Multi-Display Support: - The GA-F2A68HM-H comes with HDMI 1.4 and D-sub ports that enable multi-display setups. HDMI 1.4 supports 4K content, providing superior video quality and an immersive multimedia experience.
USB 3.0 Ports: - Featuring native USB 3.0 ports, the GA-F2A68HM-H offers rapid data transfer rates up to 5Gbps, significantly reducing the time it takes to transfer large files and enhancing overall responsiveness in data-intensive applications.
SATA3 with RAID Support: - The motherboard includes native SATA3 ports that support RAID configurations. This includes RAID 0, RAID 1, RAID 5, and RAID 10, offering versatility and improved data protection through various redundancy setups.
On/Off Charge™ Technology: - GIGABYTE’s unique On/Off Charge™ technology allows users to charge their USB devices even when the PC is turned off. This technology delivers fast and power-efficient charging for smartphones and tablets.
GIGABYTE UEFI BIOS: - It comes equipped with GIGABYTE’s UEFI BIOS, offering a user-friendly graphical interface that simplifies system customization and configuration. It also supports high-capacity storage and rapid boot times, providing a seamless user experience.
Solid Capacitors for APU VRM: - The use of solid capacitors in the APU VRM ensures prolonged life span and stability, capable of functioning under high temperatures, thereby providing more efficient power delivery during heavy workloads.