Ubiquiti Networks AP-5AC-90-HD-US Data Networking
Frequently Asked Questions
What are the key wireless specifications of the Ubiquiti Networks AP-5AC-90-HD-US?
The AP-5AC-90-HD-US delivers dual-band performance with 800 Mbps on 2.4 GHz and 1733 Mbps on 5 GHz, both using 4x4 MU-MIMO technology for simultaneous multi-user connectivity. This high-density access point is designed for enterprise environments requiring maximum wireless performance and complex operations like guest control and advanced filtering.
Is the Ubiquiti AP-5AC-90-HD-US compatible with Power over Ethernet (PoE)?
Yes, the AP-5AC-90-HD-US is fully compatible with 802.3at PoE+ power delivery. Single-pack units include a PoE adapter, while five-packs do not; we recommend powering multiple UniFi APs with a UniFi PoE Switch (sold separately) for simplified deployment.
What mounting options are available for the AP-5AC-90-HD-US?
The AP-5AC-90-HD-US supports both ceiling and wall mounting with all accessories included. Its sleek design integrates seamlessly into any environment and is compatible with existing UAP-AC-PRO mounts.
Does the AP-5AC-90-HD-US have multiple Ethernet ports?
Yes, the AP-5AC-90-HD-US features dual Gigabit Ethernet ports, with a secondary port available for bridging, providing flexible network connectivity options for high-density deployments.
What makes the AP-5AC-90-HD-US suitable for high-density wireless environments?
The AP-5AC-90-HD-US is engineered for high-density deployments with superior processing power capable of handling complex operations including guest control, traffic filtering, and resource-intensive tasks that may slow down lesser-equipped access points. Its dual 4x4 MU-MIMO radios enable simultaneous multi-user performance across both 2.4 GHz and 5 GHz bands.
Does the AP-5AC-90-HD-US support wireless uplink capabilities?
Yes, the AP-5AC-90-HD-US supports wireless uplink functionality, allowing it to extend network coverage and integrate into mesh network topologies. It is also DFS certified for regulatory compliance in restricted frequency environments.