With a capacity of up to 24TB in a standard 3.5-inch HDD with CMR, the MG11 Series enables cloud-scale infrastructures to build higher storage densities. The MG11 series features a 3.5-inch helium-sealed design with up to 10 hard drives, leveraging Toshiba's FC-MAMR technology to achieve 2.4 TB per hard drive. The MG11 series is designed to meet growing data storage needs. It offers a high workload rating of 550 TB at 7200 rpm. Designed for 24/7 quality and enterprise reliability, the MG11 series has an MTTF of 2.5 million hours. Hard drive type EAN 4260557513637 Manufacturer no. MG11SCA16TE MG11 series Model name MG11ACA14TE Design 3.5 inches Capacity 16TB Internal interface SAS Interface 1x SAS 1200 Power connector 15-pin power connector Recording technology CMR (Conventional Magnetic Recording) Data transfer rate reading 281 MB/s Speed 7,200 rpm Sector size 4 KB with emulation (512e) Cache 1,024 MB Operating volume 32 dB(A) Volume at rest 20 dB(A) Power consumption operation 7.9 W Power consumption resting 4.16 W MTBF 2,500,000 hours Feature 24/7 continuous operation, 10-plate helium design, Toshiba Flux Control Microwave Assisted Magnetic Recording (FC-MAMR) Dimensions Width: 101.85mm x Height: 26.1mm x Depth/Length: 147mm Weight 730 grams
• Thunderbolt and DisplayPort 1.4 allow to connect two 4k monitors or one 8k monitor • Equipped with hot-swappable IronWolf Pro enterprise-class drives for ultimate reliability • Easily configure RAID 0/1 optimal system performance and dataredundancy
The Seagate® Cheetah® 15K.7 is the highest performing, highest capacity 3.5-inch mission critical hard drive with best-in-class reliability for Tier 1 storage environments. This industry-leading enterprise drive reduces storage costs per GB while increasing capacity per watt. Drive power consumption is dynamically optimized at all levels of activity with Seagate’s exclusive PowerTrim™ technology.
SATA III|256 MB|7200 rpm|3.5". IronWolf™ Pro is designed for commercial and enterprise NAS. Delivering Tough, Ready and Scalable 24x7 performance in multibay, multi-user environments