The N3200 switch series offers power-efficient & resilient 1 Gb E & 1/2.5/5/10 Gb E Multigigabit range of switching solution for advanced Layer 3 distribution for offices & campus networks. The series has high-performance capabilities & wire-speed performance utilizing a non-blocking architecture to easily handle unexpected traffic loads. Use dual internal hot-swappable 80PLUS Platinum certified power supplies for high availability & power efficiency. Modernize campus network architectures Modernize campus network architectures with a power-efficient & resilient 1/2.5/5/10 Gb E switching solution with dense options of 802.3at (30W) or 802.3bt (60W/90W) Po E solutions to deliver clean power to wide range network devices such as wireless access points (APs), Voice-over-IP (Vo IP) handsets, video conferencing systems, security cameras, LED luminaires & many more. Achieve high availability & full bandwidth utilization with Multi-chassis Link Aggregation (MLAG). N3200 series switches support MLAG to create active/active loop-free redundancy without spanning tree. Server rooms can deliver reliable server & storage connectivity with features to help save time & avoid configuration errors. N3200 supports VRF-lite, allowing it to be partitioned into multiple virtual routers with isolated control & data planes on the same physical switch. Leverage familiar tools & practices All N-Series switches include Dell EMC Networking OS6, designed for easier deployment, greater interoperability & a lower learning curve for network administrators. OS6 common command line interface (CLI) & graphic user interface (GUI) are intuitive, so skilled network administrators can get productive quickly. N3200 switches also support the Open Network Install Environment (ONIE), enabling installation of alternate network operating systems. Deploy with complete confidence at any scale Scale easily with built-in rear stacking ports. Switch stacks of up to 624 1/2.5/5/10 Gb E/25 Gb E ports can be managed from a single screen using the highly available stacking architecture for high-density aggregation with seamless redundant availability.