Product Description: -
GIGABYTE H410M H V2 10th Gen Micro ATX Motherboard
The GIGABYTE H410M H V2 10th & Gen Micro
ATX Motherboard is made for Intel 10th and Generation processors. The GIGABYTE
H410M H V2 Gen Motherboard has two DIMM RAM slots available which can support
Bus Speeds of up to 2933MHz. The motherboard supports HDMI and D-Sub graphical
output ports and can display two displays at once. The GIGABYTE motherboard
also comes with 8-Channel HD Audio with High-Quality Audio Capacitors which
provide crystal clear sound all around. The mother also provides you with NVMe
PCIe Gen3 x4 2280 M.2 Connector, Intel GbE LAN with cFosSpeed Internet
Accelerator Software, and more.
CONNECTIVITY
Intel GbE LAN features cFosSpeed, a network
traffic management application that helps to improve network latency and
maintain low ping times to deliver better responsiveness in crowded LAN
environments.
NVMe PCIe Gen3 x4 2280 M.2 Connector
GIGABYTE Motherboards are focused on delivering
M.2 technology to enthusiasts who want to maximize their system's potential.
COOLING
With Smart Fan, 5 users can ensure that their
gaming PC can maintain its performance while staying cool. Smart Fan 5 allows
users to interchange their fan headers to reflect different thermal sensors at
different locations on the motherboard. Not only that, with Smart Fan, 5 more
hybrid fan headers that support both PWM and Voltage mode fans have been
introduced to make the motherboard more liquid cooling friendly. Achieve fan
silence. With Fan Stop, map any fan to stop completely when temperatures drop
below a specified threshold. Which fan stops, based on readings from which
sensor, and at what temperature, all of it can be customized to your liking.
AUDIO
GIGABYTE motherboards use high-end audio
capacitors. These high-quality capacitors help deliver high-resolution and
high-fidelity audio to provide the most realistic sound effects for gamers.
GIGABYTE motherboards feature an audio noise guard that essentially separates
the board's sensitive analog audio components from potential noise pollution at
the PCB level.