ASRock Industrial Launches 4X4 BOX 7000/D5 Series with AMD Ryzen 7000U-Series APUs to Unleash Power and Speed
ASRock Industrial announces the 4X4 BOX 7000/D5 Series Mini PCs powered by AMD Ryzen 7000U-Series APUs up to 8 Zen 3+ cores. Featuring maximum dual DDR5 4800 MHz memory up to 64 GB, the 4X4 BOX 7000/D5 Series bring about performance enhancement through unleashing higher standards of power, speed, and energy efficiency. Now poised with enriched IOs and expansions, the Series also provide quad-display outputs of up to 8K outstanding graphics with one HDMI 2.1, three DisplayPort 1.4a, and five USB ports, including two USB4 for versatile connectivity. Moreover, dual storages with one SATA 3.0, one M.2 Key M, plus dual LAN ports up to 2.5 Gigabit, Wi-Fi 6E, and Bluetooth 5.2 are supported for reliable communications. The unleashed features make this Series the leading choice for a wide range of top-notch applications such as gaming, entertainment, content creation, office productivity, business, and AIoT use cases.
Powered by AMD Ryzen 7 7735Uand Ryzen 5 7535U, ASRock Industrial presents the 4X4 BOX 7000/D5 Series selections: 4X4 BOX-7735U/D5 and 4X4 BOX-7535U/D5. Featuring up to 8 Zen 3+ cores and next-generation AMD Radeon Graphics, the Series guarantee optimal power, speed, and performance upgrades. The 4X4 BOX 7000/D5 Series showcase the very first dual-channel DDR5 4800 MHz SO-DIMM memory up to 64 GB with new features that unleash effortless multitasking abilities for higher performance, lower power consumption, and more robust data integrity for future computing.
Powered by AMD Ryzen 7 7735Uand Ryzen 5 7535U, ASRock Industrial presents the 4X4 BOX 7000/D5 Series selections: 4X4 BOX-7735U/D5 and 4X4 BOX-7535U/D5. Featuring up to 8 Zen 3+ cores and next-generation AMD Radeon Graphics, the Series guarantee optimal power, speed, and performance upgrades. The 4X4 BOX 7000/D5 Series showcase the very first dual-channel DDR5 4800 MHz SO-DIMM memory up to 64 GB with new features that unleash effortless multitasking abilities for higher performance, lower power consumption, and more robust data integrity for future computing.