Delivering up to three times more coverage versus competition for tablets, smartphones, & high- performance laptops, the industry’s only 4x 4 MIMO, three-spatial-stream access point delivers mission- critical reliability. Current solutions struggle to scale to meet demands on the wireless networks from the influx of diverse mobile devices & mobile applications. The Cisco Aironet 3600 Series sustains reliable connections at higher speeds further from the access point than competing solutions, resulting in up to three times more availability of 450 Mbps rates, & optimizing the performance of more mobile devices. Cisco Aironet 3600 Series is an innovative, modular platform that offers unparalleled investment protection with future module expansion to support incoming 802.11ac clients with 1.3 Gbps rates, or offer comprehensive security & spectrum monitoring & control. Cisco Aironet 3600 Series
Includes:: Cisco Client Link 2.0 to boost performance & range for clients &
Includes:: Cisco Clean Air spectrum intelligence for a self-healing, self-optimizing network. Features 802.11n with 4x 4 multiple-input multiple-output (MIMO) technology with three spatial streams, which sustains 450-Mbps rates over a greater range for more capacity & reliability than competing access points. Cisco Client Link 2.0 technology to improve downlink performance to all mobile devices including one-, two-, & three-spatial-stream devices on 802.11n while improving battery life on mobile devices such as smartphones & tablets. Cisco Clean Air technology, which provides proactive, high-speed spectrum intelligence to combat performance problems due to wireless interference. Modular architecture design, enabling flexible add-on options in the form of a Wireless Security Module, an IEEE 802.11ac Module, or the Cisco Universal Small Cell 5310 Module that is tightly integrated with the Cisco Aironet 3600 Series Access Point platform, & is completely field-upgradable. MIMO equalization optimized uplink performance & reliability by minimizing the impact of signal fade.