![]()
CT-AR701 ATX Industrial Motherboard w/ AMD AM5 platform combines Ryzen and EPYC processor scalability with dual 10GbE SFP+ connectivity and PCIe Gen 5 expansion
LOS ANGELES, CA, UNITED STATES, August 24, 2026 /EINPresswire.com/ — Premio Inc., a global provider of rugged edge and embedded computing solutions, today announced the launch of the CT-AR701 ATX Industrial Motherboard, a high-performance computing platform designed for automation engineers, OEM system builders and integrators. Built on the AMD B650 chipset and scalable AM5 platform, the CT-AR701 supports AMD EPYC™ 4005/4004 server-class processors and AMD Ryzen™ 9000 Series high-performance processors, delivering scalable multicore performance for edge AI, machine vision, data-intensive industrial workloads, and edge AI server infrastructure.
Built for compute-intensive industrial, edge and edge server workloads, the CT-AR701 brings scalable AMD performance to applications including on-premises AI and LLM systems, machine vision, industrial data processing, edge server infrastructure and custom OEM/ODM platforms. Built on the AMD AM5 platform, the CT-AR701 supports AMD EPYC™ 4005/4004 and Ryzen™ 9000 Series processors, scaling up to 16 cores and 32 threads, depending on processor configuration. This processing flexibility enables system builders to match compute performance to application requirements, with EPYC processor options suited for server-class and multi-workload deployments and Ryzen processors supporting high-performance edge and AI workloads.
For workloads requiring additional acceleration and high-volume data movement, the CT-AR701 combines PCIe Gen 5 expansion with dual 10GbE SFP+ networking. System integrators can add GPUs, AI accelerators, frame grabbers, networking cards and storage controllers, while high-bandwidth SFP+ connectivity helps reduce data bottlenecks between cameras, storage and edge compute systems. Integrated Premio remote management feature with in-band and out-of-band (OOB) capabilities further supports 24/7 operations by enabling system monitoring, updates, troubleshooting, recovery, and hardware-level control.
The platform also supports four DDR5 UDIMM slots with up to 192GB of memory and speeds up to 5600 MT/s, depending on processor and memory configuration. Multiple M.2 and SATA storage interfaces, dual independent 4K displays, high-speed USB connectivity, TPM 2.0 and a programmable watchdog timer provide the integration, security and reliability features required for continuously operating industrial and edge systems. Together, these capabilities provide a flexible foundation for machine vision, AI inference, networked storage and server-class edge infrastructure.
Key Features:
– Support AMD EPYC 4005/ 4004 & Ryzen™ 9000 Series Desktop Processors (Max 170W TDP)
– AMD B650 Chipset
– 4x DDR5 UDIMM, up to 5600 MT/s, Max. 192GB (Non-ECC)
– 2x Broadcom 10GbE LAN (SFP+), 2x GbE LAN
– Dual independent displays: DP, HDMI
– 2x M.2 M key 2280 NVMe, 1x M.2 E key 2230
– 2x PCIe x16 Gen 5, 1x PCIe x4 (Open End), 1x PCIe x4 (1x Lane)
– 4x Dual SATA 3.0
– 6x USB 3.2 Gen 2 (10Gbps), 2x USB 3.2 Gen 1 (5Gbps) (2x Internal), 4x USB 2.0-Ports (Internal)
The CT-AR701 expands Premio’s industrial motherboard portfolio with a configurable platform that scales from high-performance edge computing to server-class industrial infrastructure. Its combination of Ryzen and EPYC processor options, high-capacity memory, dual 10GbE networking and PCIe Gen 5 expansion provides OEM system builders and integrators with a common hardware foundation for on-premises AI and data edge systems, edge AI clusters, machine vision, industrial data processing and custom OEM/ODM platforms.
Learn more at premioinc.com
Dustin Seetoo
Premio Inc.
+1 626-839-3100
email us here
Visit us on social media:
LinkedIn
YouTube
Legal Disclaimer:
EIN Presswire provides this news content “as is” without warranty of any kind. We do not accept any responsibility or liability
for the accuracy, content, images, videos, licenses, completeness, legality, or reliability of the information contained in this
article. If you have any complaints or copyright issues related to this article, kindly contact the author above.
![]()
Media gallery

