Advantech USM-500-W5000000S Barebone System - Mini-tower
Intel Chip - 128 GB DDR4 SDRAM DDR4-2666/PC4-21333 Maximum RAM Support - 4 Total Memory Slots - Serial ATA Controller - Processor Support (Core i3, Core i5, Core i7, Xeon) - Ethernet - 2 USB 3.0 Port(s) - 1 x 500 W - 2 Year
SKU
Category
Barebone Systems
$1,495.13
Back-ordered
Special order — estimated OEM lead time 3–8 weeks. Order today and we expect to receive stock between Oct 5 and Nov 9, then process your delivery right after.
Genuine Advantech through authorized distribution — NDAA §889 screened before checkout. TAA verified on request.
SKU
Category
Barebone Systems
Country of origin
China
Country of origin is manufacturer-reported and can vary by production lot. Where TAA applies to your purchase, we verify the shipping unit's origin on request.
Overview
Professional Mini Tower/Standalone Medical Computer with Intel 8th Generation Processor
• Stylish and user friendly outlook for Hospital Environment
• Supports Intel® Xeon® 8th Gen Core i7/i5/i3 processor with Q370/C246
• Rich expansion for multi-purpose application
• Reliable platform for 24x7 operation for medical use
Warranty
Limited Warranty: 2 Year
Highlights
Barebone System is compact, stylish, space-efficient, and portable, ideal for daily office and home use
Windows 10 OS support provides a powerful platform to efficiently run routine applications without interruptions
Intel Core i3 processor provides responsive multitasking for seamless use of multiple applications
Serial ATA interface delivers fast data transfer and higher throughput, ensuring smooth performance for demanding workloads
Mini-tower form factor features a simple design with fewer materials for cost-effective and dependable use
Connect USB-enabled devices via 10 USB ports for seamless data sharing and reliable performance
Ethernet connectivity streamlines workflows by enabling resource sharing across workstations for improved efficiency
DDR4 SDRAM slot supports high-speed operation with low power use, delivering optimal performance and thermal efficiency