True Custom Computer Builder specializing in Assembly of Gaming Computers, Laptops, Workstations, Servers
ASUS Radeon™ RX 6700 XT DUAL-RX6700XT-O12G. 2x Fans. 2x Fun. Delivering the latest AMD RDNA™ 2 architecture experience in its purest form, the ASUS Dual Radeon™ RX 6700 XT melds performance and simplicity like no other. Leveraging advanced cooling technologies derived from flagship graphics cards, the Dual opts for substance over style, the perfect choice for a well-balanced build. Buckle up and engage cutting-edge gaming prowess.
Graphic Engine | AMD Radeon RX 6700 XT |
Bus Standard | PCI Express 4.0 |
OpenGL | OpenGL®4.6 |
Video Memory | 12GB GDDR6 |
Engine Clock |
OC mode : up to 2622 MHz (Boost Clock)/up to 2494 MHz (Game Clock) Gaming mode : up to 2620 MHz (Boost Clock)/up to 2474 MHz (Game Clock) |
Stream Processors | 2560 |
Memory Speed | 16 Gbps |
Memory Interface | 192-bit |
Resolution | Digital Max Resolution 7680 x 4320 |
Interface |
Yes x 1 (Native HDMI 2.1) Yes x 3 (Native DisplayPort 1.4a) HDCP Support Yes (2.3) |
Maximum Display Support | 4 |
NVlink/ Crossfire Support | Yes |
Accessories |
1 x Collection Card 1 x Speedsetup Manual |
Software | ASUS GPU Tweak II & Drivers: please download all software from the support site. |
Dimensions |
295 x 139 x 55 mm 11.61 x 5.47 x 2.17 inches |
Recommended PSU | 650W |
Power Connectors | 1 x 6-pin, 1 x 8-pin |
Slot | 2.7 Slot |
Note |
* Our wattage recommendation is based on a fully overclocked GPU and CPU system configuration. For a more tailored suggestion, please use the “Choose By Wattage” feature on our PSU product page:
https://rog.asus.com/event/PSU/ASUS-Power-Supply-Units/index.html * Crossfire Support - Yes for DirecX® 12 and Vulkan® * ‘Game Clock’ is the expected GPU clock when running typical gaming applications, set to typical TGP (Total Graphics Power). Actual individual game clock results may vary. * ‘Boost Clock’ is the maximum frequency achievable on the GPU running a bursty workload. Boost clock achievability, frequency, and sustainability will vary based on several factors, including but not limited to: thermal conditions and variation in applications and workloads. |