Concept Product CP166
Ultra-Compact 4 Bay E3.S SSD PCIe 5.0 Mobile Rack Module for Custom Rackmount Systems (2 x MCIO 8i SFF-TA-1016)
Product Page: https://global.icydock.com/product_470.html 
Any product suggestion or new idea will be highly appreciated!
• Ultra-compact, non-standard module size tailored for OEM and rackmount system integration
• Supports 4 x 7.5mm E3.S NVMe SSDs
• PCIe 5.0 x4 bandwidth up to 128Gbps per SSD (depending on SSD performance)
• 2 x MCIO 8i (SFF-TA-1016) host interfaces
• Front-access removable E3.S SSD tray design
• Supports hot-plug drive replacement
• Front-panel LED status indication
• Host-defined amber LED support
• Removable 40×40×20mm cooling fans in removable tool-less fan module
• Rugged full-metal construction
• Enterprise-focused EMI grounding design
• Supports scalable multi-module deployment in 1U and 2U rackmount platforms
• Designed for edge computing, embedded systems, AI infrastructure, and next-generation EDSFF storage platforms
• Concept product for future high-density PCIe Gen5 EDSFF storage development
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Ultra-Compact 4 Bay E3.S SSD PCIe 5.0 Mobile Rack Module for Custom Rackmount Systems (2 x MCIO 8i SFF-TA-1016)
Any product suggestion or new idea will be highly appreciated!
Key Features
• Ultra-compact, non-standard module size tailored for OEM and rackmount system integration
• Supports 4 x 7.5mm E3.S NVMe SSDs
• PCIe 5.0 x4 bandwidth up to 128Gbps per SSD (depending on SSD performance)
• 2 x MCIO 8i (SFF-TA-1016) host interfaces
• Front-access removable E3.S SSD tray design
• Supports hot-plug drive replacement
• Front-panel LED status indication
• Host-defined amber LED support
• Removable 40×40×20mm cooling fans in removable tool-less fan module
• Rugged full-metal construction
• Enterprise-focused EMI grounding design
• Supports scalable multi-module deployment in 1U and 2U rackmount platforms
• Designed for edge computing, embedded systems, AI infrastructure, and next-generation EDSFF storage platforms
• Concept product for future high-density PCIe Gen5 EDSFF storage development











