Form Factor:20 Slot Rackmount
Dimensions (WxHxD):178 x 44.45 x 444 mm
Weight:6.4 kg
Operating Temperature:-10°C to 60°C
Storage Temperature:-20°C to 70°C
Humidity Range:5% to 95% non-condensing
Processor Compatibility:Intel Xeon, Core i3/i5/i7
Memory Capacity:Up to 32 GB DDR4
Expansion Slots:20 PCI/PCI-E slots
Power Supply:120W ATX
I/O Connectivity:USB 3.0, HDMI, VGA, Ethernet
Cooling System:Active Fan Cooling
The Advantech IPC-623 is meticulously designed to withstand harsh industrial environments, offering unparalleled reliability and performance. Its modular architecture allows for easy customization and expansion to suit diverse application needs. With support for the latest Intel processors, this chassis ensures optimal computational power for demanding tasks such as real-time data processing and complex control algorithms.
Equipped with up to 8 DDR4 DIMM slots, it provides ample memory capacity for running sophisticated software applications. The inclusion of up to four 2.5″ hard drives or solid-state drives ensures robust storage solutions, capable of handling large datasets efficiently.
The extensive range of expansion ports supports versatile connectivity options, including USB 3.0 and 2.0, SATA, and PCI Express, facilitating seamless integration with various peripherals and subsystems. This makes it an ideal choice for applications requiring high-speed data transfer and flexible hardware configurations.
Operated within a temperature range from -20°C to +60°C, the IPC-623 is designed to function reliably in a wide variety of industrial settings, from cold workshops to hot manufacturing floors. Its compact yet robust design minimizes space requirements while maximizing efficiency, making it suitable for both small-scale installations and large, complex systems.
For those seeking a powerful, adaptable, and reliable computing platform in the realm of industrial automation, the Advantech IPC-623 20-Slot Rackmount Chassis stands as an exceptional choice. It delivers the performance, flexibility, and durability necessary to drive innovation and efficiency in today’s advanced manufacturing environments.
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