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Not All 802.11ac AP’s are Created Equal: Demand the Full Story

It’s always interesting and often entertaining to observe how competitors promote their products and what they choose to focus on—and more importantly, what they choose not to focus on and what they hope people won’t ask questions about.

Consider yet again how a competitor chooses to position their “purpose built” AP vs. the Cisco Aironet 3700 802.11ac Access Point Series.

This competitor frequently (and somewhat obsessively) points out that its 802.11ac AP has dual “active” 800 MHz cores while the Cisco AP3700 has only one “active” 800 MHz core. This is not completely true since it completely overlooks the fact that the Cisco AP3700 also has a dedicated CPU core and DSP for each radio subsystem.

Furthermore, it also overlooks that the dual “active” cores in the competitor’s AP share 512 MB of DRAM. The single “active” core of the AP3700 has dedicated 512 MB of DRAM. Also each radio subsystem has a dedicated 128 MB DRAM (for 768 MB total DRAM in the AP3700).


Why is all of this important? Read More »

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Englewood Cliffs Public Schools System Rolls Out Converged Access

July 21, 2014 at 12:12 pm PST

Englewood Cliffs public schools system, based in Bergen County, New Jersey offers classes to children from K-8 grades. The school system consists of two schools, the North Cliff school serving grades from K-2 and the Upper school serving grades from 3-8. The school system utilizes cutting-edge technology to assist learning from the classrooms equipped with technology, the 1 to 1 computer tablet initiative to the 6th, 7th and 8th graders to upgrading to the best-in-class wired and wireless infrastructure needed to support the advanced technologies.


At a Glance:

Located in: Bergen County, New Jersey

Number of students: 478

Number of teachers: 39

Access-Points: Thirty three units of 3602i with the 802.11ac module and two units of 3602e

Switch and Controller: Ten units of 3850 Series switch, that offers 40 Gig of line-rate performance even with imix traffic. Wireless LAN controller functionality is run within the switch itself. The switches are deployed in stacks of two and the rest are single switches. The wireless controller functionality is operating on the main stack in each school MDF. Operating in the latest release IOS-XE 3.3.3 Read More »

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Is your Business ready for 802.11ac?

June 27, 2014 at 1:13 pm PST

This week we finished our biggest product announcement in recent memory.The various teams worked hard to bring out to our partners and customers products that delivered maximum quality, flexibility and value.

One of the products included was the new Cisco Small Business WAP371 Wireless Access Point. This Access Point is the first 802.11ac model in the portfolio representing a paradigm shift in the way you as a business owner can improve wireless performance for your business. This new model has a dual radio, includes a Gigabit Ethernet (GbE) Power-Over-Ethernet (PoE) LAN port and has the ever-popular Single Point Set-up capability. The WAP371 also features Captive Portal for guests, and like the rest of the wireless portfolio, offers simple set-up and deployment with an intuitive user interface and set-up wizards.


But this release raises the question regarding exactly why you should think about upgrading your small business wireless network.

Nasser Tarazi, Product Manager for the Cisco Small Business Wireless Access Points, talks about reasons why to take a look at the all-new WAP371.

“Right now is a good time for Small Businesses to consider upgrading their wireless networks from older 802.11 technologies to 802.11ac. First-off, 802.11ac is three times faster than it’s predecessor, 802.11n. The use of Multiple-Antenna, Multiple-in, Multiple-out technology (MIMO) reliably delivers this boost in performance providing for a much better user experience.”

Nasser goes on, “We expect over 70% of mobile devices will be 11ac-enabled by 2016. Like mentioned before, 11ac is three times faster than 11n, so from business-critical to social media applications, improved wireless high-speed performance will ensure your applications will run smoothly, reliably. Also, range is better, even for 11n enabled devices.”

“Security is on every business owner’s mind. 802.11ac is more secure than 11n. And in fact, 11ac is also more power efficient, which can result in a 30% improvement in battery life for your wireless devices such as mobile phones and tablets. Finally, 11ac provides for greatly improved client density, so high-client use cases such as schools, churches, and other organizations will greatly benefit from the upgrade to 11ac.”

Check out our FAQ and the WAP371 product page for more information.

Thanks for your time!

Marc and Nasser

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The Momentum of 802.11ac Moves into the Real World

Wireless is enabling change everywhere. According to Cisco’s VNI Global Forecast, wireless traffic will bypass wired traffic 40% by the year 2017. This is evident by the way many organizations are using Wi-Fi technology.  Take healthcare providers as an example: many hospitals today rely on Wi-Fi to provide seamless clinician roaming, improved efficiency and patient care--not to mention patients’ relatives and friends who expect to connect to guest Wi-Fi. And then there is education where we are seeing both universities and K-12 schools faced with more and more students coming onto campus carrying mobile devices with bandwidth intensive applications like video.

The explosion of high performance applications and the number of clients using them is a big reason why 802.11ac adoption is happening at a rapid pace. 802.11ac as a standard addresses the performance needs of applications while providing a robust network that handles a growing number of client devices. Cisco provides our customers with a unique solution to meet the high density requirements with a technology suite called Cisco High Density Experience (HDX). HDX helps Cisco customers prepare beyond 802.11ac and addresses the key aspects of any network that is challenged by the high density of large numbers of clients on the network and increasing performance demands of bandwidth intensive applications.  Deploying 802.11ac with Cisco’s HDX Technology will provide a relief from the bandwidth demands while also making the overall Wi-Fi network more efficient.

With this in mind, we are hosting a webinar on June 26th where we focus on 802.11ac Standard, Cisco’s 802.11ac solution including our HDX Technology and how it can be used in various networks. We have also invite Joe Christoffersen who is the Director of IT at Katy Independent School District in Katy, TX to provide his unique perspective on how Katy ISD is deploying 802.11ac, how it will affect the performance of his network and the benefits he expects from this technology.

The webinar is next Wednesday at 1:00PM PDT. Here is the registration link. If you miss it, we will have it available on demand here shortly after.

For more on Cisco’s 802.11ac, visit

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Summary: Renewable Energy Agency Deploys Scalable, Power-Resilient Network

With its fast-growing economy, India faces significant challenges in meeting the energy needs of its population and industry. And given the growth of the renewable energy sector, the Indian Renewable Energy Development Agency (IREDA) was established in 1987  to promote, develop, and extend financial assistance for projects involving renewable energy generation, energy efficiency, and conservation. IREDA recognized the need to optimize use of its resources and leverage technology advances to better serve its constituents.

To improve the efficiency of its increasingly complex operations, IREDA sought to replace its aging heterogeneous campus network infrastructure with a scalable, unified solution. Key requirements included superior reliability and security as well as energy efficiency to foster the agency’s values while providing cost savings. There was an immediate benefit in lowering network energy consumption and the network would be the tool to both help ensure the security of confidential information and provide high performance for applications such as video.

How did this renewable energy agency approach deploying a network that would be scalable and power resilient while optimizing network efficiency? Click to read the full blog


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