GIGABYTE X870 AORUS ELITE WIFI7 Review

👤by Tim Harmer Comments 📅09-10-24
Technical Specifications

Socket:- AMD Socket AM5
CPU Support:- AMD Ryzen™ 9000/8000/7000 Series Processors
Chipset:- AMD X870
Form Factor:- ATX
Dimensions:- 30.5cm x 24.4cm

Memory:
- Support for up-to DDR5 8000(OC) / 5200 (JEDEC) MT/s memory modules
- 4 x DDR5 DIMM sockets supporting up to 256 GB (64 GB single DIMM capacity) of system memory
- Dual channel memory architecture
- Support for non-ECC Un-buffered DIMM 1Rx8/2Rx8/1Rx16 memory modules
- Support for AMD EXtended Profiles for Overclocking (AMD EXPO™) and Extreme Memory Profile (XMP) memory modules

Onboard Graphics:
Integrated Graphics Processor with AMD Radeon Graphics support+ASMedia USB4 Controller:
- 2 x USB4 USB Type-C ports, supporting USB4 and DisplayPort video outputs and a maximum resolution of 3840x2160@240 Hz (DP 1.4 & HDR)

Integrated Graphics Processor with AMD Radeon™ Graphics support:
- 1 x HDMI port, supporting a maximum resolution of 4096x2160@60 Hz
* Support for HDMI 2.1 version, HDCP 2.3, and HDR.
** Support native HDMI 2.1 TMDS compatible ports.

- 1 x front HDMI port, supporting a maximum resolution of 1920x1080@30 Hz

Audio:
- Realtek® ALC1220 CODEC
- High Definition Audio; 2/4/5.1/7.1-channel (software controlled)
- Support for S/PDIF Out

Networking
- Realtek® 2.5GbE LAN chip (2.5 Gbps/1 Gbps/100 Mbps)

Wireless Communication module

MediaTek Wi-Fi 7 MT7925 (PCB rev. 1.0):
- WIFI a, b, g, n, ac, ax, supporting 2.4/5/6 GHz carrier frequency bands
- BLUETOOTH 5.4
- Support for 802.11be (WiFi 7) 160MHz wireless standard


Realtek® Wi-Fi 7 RTL8922AE (PCB rev. 1.1):
- WIFI a, b, g, n, ac, ax, supporting 2.4/5/6 GHz carrier frequency bands
- BLUETOOTH 5.4
- Support for 802.11be (WiFi 7) 160MHz wireless standard

Expansion Slots
Off-CPU:
- 1 x PCI Express x16 slot (PCIEX16), integrated in the CPU:
- AMD Ryzen™ 9000/7000 Series Processors support PCIe 5.0 x16 mode

Chipset:
- 1 x PCI Express x16 slot, supporting PCIe 4.0 and running at x4 (PCIEX4)
- 1 x PCI Express x16 slot, supporting PCIe 3.0 and running at x2 (PCIEX2)

Storage Interface
- 1 x M.2 connector (M2A_CPU), integrated in the CPU, supporting Socket 3, M key, type 25110/22110/2580/2280 SSDs:
- 2 x M.2 connectors (M2B_CPU, M2C_CPU), integrated in the CPU, supporting Socket 3, M key, type 22110/2280 SSDs:
- 1 x M.2 connector (M2D_SB), integrated in the Chipset, supporting Socket 3, M key, type 22110/2280 PCIe 4.0 x4/x2 SSDs
- 4 x SATA 6Gb/s connectors RAID 0, RAID 1, RAID 5 (9000-series only), and RAID 10 support for NVMe SSD storage devices

USB:
- 2 x USB4 USB Type-C ports on the back panel
- 4 x USB 3.2 Gen 1 ports on the back panel
- 4 x USB 2.0/1.1 ports on the back panel
- 1 x USB Type-C port with USB 3.2 Gen 2x2 support, available through the internal USB header
- 2 x USB 3.2 Gen 2 Type-A ports (red) on the back panel
- 2 x USB 3.2 Gen 1 ports available through the internal USB header
- 4 x USB 2.0/1.1 ports available through the internal USB headers

Internal I/O Connectors:

- 1 x 24-pin ATX main power connector
- 2 x 8-pin ATX 12V power connectors
- 1 x CPU fan header
- 1 x CPU fan/water cooling pump header
- 4 x system fan headers
- 2 x system fan/water cooling pump headers
- 3 x addressable RGB Gen2 LED strip headers
- 1 x RGB LED strip header
- 4 x M.2 Socket 3 connectors
- 4 x SATA 6Gb/s connectors
- 1 x front panel header
- 1 x front panel audio header
- 1 x USB Type-C® header, with USB 3.2 Gen 2x2 support
- 1 x USB 3.2 Gen 1 header
- 2 x USB 2.0/1.1 headers
- 1 x noise detection header
- 1 x Trusted Platform Module header (For the GC-TPM2.0 SPI/GC-TPM2.0 SPI 2.0/GC-TPM2.0 SPI V2 module only)
- 1 x HDMI port (Note)
- 1 x power button
- 1 x reset button
- 2 x temperature sensor headers
- 1 x reset jumper
- 1 x Clear CMOS jumper

Back Panel Connectors

- 1 x Q-Flash Plus button
- 1 x HDMI port (Note)
- 2 x antenna connectors (2T2R)
- 2 x USB4® USB Type-C® ports (DisplayPort (Note))
- 2 x USB 3.2 Gen 2 Type-A ports (red)
- 4 x USB 3.2 Gen 1 ports
- 4 x USB 2.0/1.1 ports
- 1 x RJ-45 port
- 1 x optical S/PDIF Out connector
- 2 x audio jacks

I/O Controller
- iTE® I/O Controller Chip

H/W Monitoring
- Voltage detection
- Temperature detection
- Fan speed detection
- Water cooling flow rate detection
- Fan fail warning
- Fan speed control
- Noise detection

BIOS
- 1 x 256 Mbit flash

Unique Features
- Support for Q-Flash
- Support for Q-Flash Plus
- Support Smart Backup
- Bundled Software
- Norton® Internet Security (OEM version)
- LAN bandwidth management software


The GIGABYTE X870 AORUS ELITE utilises a PCIe lane sharing system similar to other 800-series motherboards to juggle lane access between GPU and NVMe storage devices:

The secondary and tertiary M.2 slots (labelled M2B_CPU and M2B_CPU) share PCIe lanes with the x16 slot. Populating either or both of these two M.2 slots limits the main PCIe slot (*and thus the GPU) to x8 operation.

AMD’s Ryzen 8000-series APUs offer significantly reduced PCIe support from the CPU. Ryzen 8000 Series-Phoenix 1 Processors are limited to PCIe 4.0 x8 mode; Ryzen 8000 Series-Phoenix 2 Processors support PCIe 4.0 x4 mode.

The PCIEX4 slot shares bandwidth with the M2D_SB connector. This slot becomes unavailable when a device is installed in the M2D_SB connector.


GIGABYTE 800-series motherboards support Q-FLASH BIOS updates as well as Q-FLASH PLUS, a means of updating the BIOS without CPU installed or when both main and backup BIOSes are partially corrupted. These are essential troubleshooting tools which will also prime you for future CPU updates should you fall behind BIOS revisions.

One addition to the X870 AORUS ELITE we haven’t seen elsewhere is the internal HDMI header that’s a variant of the Sensor-Panel Link seen on Intel 700-series motherboards. This display output supports 1920x1080 displays (1080p) at 30fps through HDMI rather than USB-C, and is intended for real-time sensor readouts. It requires a CPU with integrated graphics and is helped by 3rd party software that supports skins and overlays to discrete monitors.

Small 1080p30Hz panels cost around $40 and would also require supplementary power, likely via an internal USB header.



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