AirCheck G2 gets a v2

It’s no secret that I’m a fan of the Netscout AirCheck G2 and have been since before it’s release. I’m happy to see that today they announced the version 2 of the firmware for the AirCheck G2 which brings some pretty neat features to the product. The official page goes into greater detail on the updates, but the two I’m most impressed with are the new interferers page and the integration of iPerf testing for the unit.

The interference detection is a nice to have feature for those field teams that need an initial look at the non-Wi-Fi devices in the air around them. It’s leveraging the integrated WLAN radio for spectrum analysis so it’s not perfect, but it readily enough identified several of the more common interference devices around me (bluetooth and microwave ovens). In addition to identifying the interference, the ‘locate’ functionality that you’ve come to expect with the AirCheck also works with the source of interference. In my testing, I was able to demonstrate that moving away from an active microwave oven did indeed show a corresponding drop in detected signal strength. Let’s be fair, it’s not a fully blown FFT based Spectrum Analyzer, but in a pinch, and for common items, it’s far more insight than we’ve ever had in a a handheld tester.

Screenshot0001 Screenshot0004 Screenshot0007

The iPerf server is another interesting new feature – not only for the AirCheck side of the equation, but for the far side tester as well. The newly announced Test Accessory from Netscout is reminiscent of the LinkSprinter products – handheld, portable, battery or PoE powered, and cloud enabled tester.

IMG_9364

The Test Accessory

This integrates quite nicely with the v2 firmware with the new iPerf test option once you connect to your SSID. The nice bit is that this removes most all of the headache of doing iPerf testing – configuring the server and figuring out what it’s IP address is. You can plug the Test Accessory into your network anywhere and it will phone home to the Link-Live service. The AirCheck will query the service and automatically populate the testers IP address for your test. This makes a very simple to use throughput tester that’s easy to carry and accessible to everyone. If you don’t have a Test Accessory or if you’re comfortable with iPerf testing, you can also just use the AirCheck as a standard iPerf endpoint, so you’re covered either way you want to go here – with a stock, static internal iPerf tester or with a field accessible, cloud enabled tester that goes anywhere.

Screenshot0008Screenshot0009 Screenshot0010

These features take an already dead-useful testing tool and expand it’s role for the Wireless LAN deployer to go beyond just ‘is it up’ testing. With the ability to now detect a number of interferers and do actual throughput testing of a Wi-Fi network, the field implications are that your existing installation teams (or other G2 users) can more deeply validate the functionality of a network – and when things go wrong, have another level of insight that they previously did not have. I’m quite happy that Netscout is clearly investing in, not only the G2, but additional products that augment and expand it’s functionality. The G2 is an overbuilt hardware platform and it’s refreshing to see that Netscout is taking advantage of that extra horsepower. If you’re an AirCheck G2 user, you really need to go get the firmware update now. If you’re not an AirCheck G2 user, what are you waiting for?

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Hands on the Cisco 3504 WLC

Not only are WLCs not dead, they’re not even on life support. Continued investment into the WLC platform is a clear indicator that there are still several use cases for centralized data, control, and management plane functions. Cisco has a long heritage of building awesome Wireless LAN Controllers (WLCs) and the 3504 is the next in a long line of purpose built WLCs. If you’re familiar with the Cisco WLC portfolio, the 5520 and 8540 WLCs are basically UCS based appliances with hardware offloading cards added in. The 3504 returns to the heritage of a ‘from the ground up’ design of a purpose built desktop WLC solution and it’s aimed pretty squarely at the aging 2504 and 5508 platforms. As many people are moving forward with 802.11ac deployments, a look at your infrastructure controller may be warranted.

IMG_8526.JPG

Without going into the details that are readily available on the data-sheet, I’ll instead focus on one or two key items of the platform that I find the most compelling.

1) Feature parity. This WLC marks the first time the entry level boxes have feature parity with the larger WLCs. If you peruse any of the release notes, you’ll see a list of exceptions for various platforms especially on the low end. The 3504 was launched out of the gate expecting to support all of the features of the 5520 & 8540 making the differences between the three platforms strictly speeds, feeds, and capacity. This should be a comfort to those that regularly struggle with the feature gap in the Cisco WLC portfolio.

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2) Quiet operation. Let’s be honest, there are more than a few deployments where the equipment is sitting table top or on a cabinet out in the open somewhere. The 3504 supports ‘fan off’ operation at temperatures up to 86 F (30 C). For the overwhelming majority of situations, it’s difficult to get up to 86 degrees and maintain it with any level of comfort. This basically means that for most deployments, you’ll never hear a sound coming out of the WLC – even if it’s in your home lab.

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3) mGig support. Multigigabit (or NBASE-T) is becoming more and more prevalent on switching infrastructure and this marks the first time we can break the 1G link speed on the infrastructure side without having to deploy a full on 10G infrastructure. Those of you that read my posts regularly may recall that I’m a fan of being able to deploy solutions that break the 1G barrier on my existing copper runs. This was commonly APs but if you’ve been investing in the latest and greatest and ignoring the FUD about not needing mGig, this is another opportunity to leverage that investment.

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All of these coupled together mean that you can get a quite elegant solution for most any environment now that we’re able to breath some life into the low end of the Cisco WLC portfolio. The 3504 is a notable improvement on the hardware and scale of the 2504 but don’t let it’s ‘desktop friendliness’ fool you – if you’re a 5508 customer today, there are going to be tons of places where ‘stepping down’ into a 3504 makes really great sense. With the rack mount kit available for it, you could easily put two 3504s in HA/SSO mode in 1RU and have all of the same features as the 5508 with a bit less capacity. Regardless of your current deployment, you really should make sure you take a peek at the 3504 as you’re considering lifecycle management of your gear.

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Disclaimer: I was provided a 3504 from Cisco as part of an early field trial and formed my opinions on my own. This post is my original work and I composed it without an expectation from Cisco.

Portable power for APoS

Newer APs often come with some pretty hefty power requirements. Standards such as the 15.4W 802.3af specification are increasingly insufficient on APs that are more power hungry. Enter the 802.3at standard that can support all the way up to 30.0W! While runtime operation of these (over PoE switches) is a topic all of itself, the Wi-Fi professional has always had issues with doing AP on a Stick designs (site surveys, empirical measurements) – especially when your AP power requirements exceed some of the more tried and true solutions. I’ve hashed out several different solutions over the past year, and thought it was time to write them all down.

The staple of AP powering has been for a very long time the Ventev / TerraWave – MIMO Site Survey Battery Pack. On its own, it only supports the older 802.3af specification. This all in one solution is portable, but since it’s based on old lead-acid technologies, it tends to fall on the heavier side of the solutions. Venerable, heavy, doesn’t support newer APs, but everyone has them.

Old, heavy, not a lot of juice.

The Terrawave Site Survey Battery Pack!

Enter the Tycon Systems DC To DC Converter And POE Inserter. This bad boy becomes an integral part of most of the rest of our solutions – and it’s very important to understand that it comes in a variety of input voltages. You must mate it to the power solution you’re using.

Where have you been all my life?

The Tycon POE injector.

Using the Ventev MIMO Site Survey Battery pack, you can see from it’s data sheet that it supports an external 56V output. If you use the included 56V cable, cut the ends off and mate that with the Tycon that has 802.3at power output, you can retrofit existing site survey battery packs to support newer high power APs! Sadly, physics wins out at some point. Since you’re drawing more power, invariably your battery will not last as long. If you have an older unit, you may be having problems holding a charge or any other number of other issues, but if you’re in a bind, it’s a potential solution.

If you think this Tycon solution looks familiar, Scott Stapleton wrote about a similar solution in his blog. Using the injector that he stated (TP-DCDC-1248GD-HP, note the 10 to 15VDC input change), along with commonly available batteries such as the RAV power units, you can extend the run time of your APoS efforts by interchanging either larger capacity batteries or additional units. In my tests, I used two of the RAVPower 2300mAh batteries along with the Jacobs interconnect to complete the solution.

Shhh - don't tell him!

Image shamelessly stolen from Scott Stapleton.

Thanks to Keith Parsons for this next solution, which is a variation on Scott’s using a battery from Hardened Power Systems. The ReVolt G2 is a large capacity battery that uses 12V powerpole connectors that is *very* light (27 ounces) due to the LiFePO4 battery technology. This, mated with correct Tycon solution using the 12V powerpole connectors gives you a far more portable solution (one high capacity battery, one injector) that can last all day long!

High Capacity Battery, lightweight.

While these all address in varying ways different requirements, they’re all considered a touch on the bulky side and carrying around multiple pieces has always been a challenge for a road warrior that doesn’t want to lose or break bits and pieces. Enter the Ventev VenVolt solution that they were showing off at Cisco Live US 2017. While this isn’t shipping yet, they had a prototype to show off that looked awesome! Lightweight, all in one solution, all day battery on modern technology. Stated dimensions for the unit are 9 3/8″ x 4 3/4″ x 3″ according to Mike Parry. I for one can’t wait for a fully integrated solution to finish baking and come to market!

Musings on Multigigabit and APeX

Cisco Live is always a whirlwind of information and the 2017 US event was no exception! Between the Catalyst 9k launch, the focus on Software Defined Access, and Intuitive Networking, it’s easy to miss some of the nuance that was to be uncovered on the show floor. In the Enterprise Networking booth there was a hidden nugget that was focused on developers called APeX (short for Access Point Extensions). One part of this APeX program is the Extender Module Hardware Development Kit – EM-HDK for short (or just HDK for even shorter!) that plugs directly into the often-overlooked module port on the AP3800. The board itself is a neat springboard for developing on – it allows you to attach a Raspberry Pi, Arduino, XBee or other Small Board Computer directly to the AP. Of course, you wouldn’t deploy a production solution like this, but you would take the solution you’re working on, and compress it to a design that’s purpose built for the modular slot that’s part of the AP3800.

Or HDK for short.

The APeX EM-HDK

The thing that struck me though is that while the HDK is neat – and if you have any SBC experience at all, a very interesting platform, the hidden secret of the HDK is that it also sports two Gigabit Ethernet connections supporting PoE out. It is worth noting that if your host AP had a single 1 Gigabit link, and you put two additional 1 Gigabit links on the back side of it, you can safely assume you have an automatic bottleneck. This is the genesis of my epiphany – those that were shortsighted enough to make claims that 802.11ac wave 2 doesn’t justify uplink speeds beyond 1 Gigabit, clearly did not take into account that 2x 802.11ac wave 2 radios moves you a lot closer to that 1 Gigabit bottleneck, and when you want to pass an additional 2x 1 Gigabit Ethernet interfaces on the same link as your 2x 802.11ac wave 2 radios, your use case for Multigigabit becomes pretty clear.

HDK with Raspberry Pi attached to an AP3802i.

Remember folks, your wired infrastructure is expected to last much longer than your typical switches will. As you start seeing very obvious use cases for breaking the 1 Gigabit uplink requirement, make sure you’re considering the cost savings of investing in multi gig technology today – especially if you can get it for a nominal uptick in price.

Multigigabit!

Multigigabit interfaces, left. 10G, right.

Go here for more information on Cisco’s mgig (or NBASE-T) and here for information on the APeX program over at Devnet.

Cisco Wave2 site survey how-to

So, you have a shiny new Cisco 802.11ac wave 2 Access Point and you went to go grab the autonomous code for it to do an APoS survey – but then realized there isn’t autonomous code for the 2802 or 3802 (or any other wave 2) Cisco AP, huh? You may have noticed that there is a new product called Mobility Express. You can use this ‘controller on an AP’. Here is a guide I co-authored for doing just this.

-Sam

Summary:

Cisco 802.11ac Wave 2 APs do not run IOS like previous platforms. This presents a challenge when trying to perform an AP on a Stick site survey with only a battery pack. The standalone mode for these Access Points is achieved using Mobility Express – or the function to use the integrated WLC on the Access Point to control the radio functionality in a standalone fashion.

Prerequisites:

  • 8.3MR1 code supporting Mobility Express for your Access Point
  • Local power source for your Access Point (AIR-PWR-C or site survey battery with sufficient power)
  • Operational Standalone or Virtual Wireless Lan Controller running 8.2MR2 or 8.3 for configuring the Access Point mode and moving the images
  • TFTP server
  • 802.11ac Wave 2 Access Point (Please note, the 1810 platform is not supported at the time of this writing)
  • A serial console cable to watch/configure your AP

Process:

Step 1) Join your Access Point to your local WLC as you would during a normal deployment.

For the 2800/3800 platforms, you must be running a minimum of 8.2MR2 or 8.3 for step 1. For 1830/1850, there is no similar requirement aside from running a release that supports those platforms. Please note that this is not the above referenced ME image version which will be used in step 2.

Step 2) Convert the Access Point to Mobility Express mode using the correct image.

This is accomplished by going to the console of the AP and logging in, then enabling, then using the ap-type command to convert the AP over to Mobility Express and download the new image from your TFTP server. To get the correct AP image file, you will need to decompress the image bundle and use the correct image for your AP platform. For example:

  • 1830/1850 you should use ap1g4
  • 2800/3800 you should use ap3g3

Note: You can also use the platform specific ME image from CCO if you have that available. If you’re using a Universal SKU AP, you should wait for it to regulatory prime before trying to convert the image to make sure you don’t incur a reboot mid-code change.

Once your AP goes down for a reboot, disconnect the LAN cable and ensure its powered by local power or your survey battery pack:

Step 3) Wait for your Access Point to boot completely.

At this point your Access Point will do several things. It will boot and you will see about 2 minutes of the following messages:

Once these timeout, the Access Point will boot the Mobility Express WLC automatically:

Step 4) Configure the WLC using the following values:

Would you like to terminate autoinstall? [yes]: yes
Enter Administrative User Name (24 characters max): admin
Enter Administrative Password (3 to 24 characters): Cisco123
Re-enter Administrative Password : Cisco123
System Name [Cisco_11:aa:1a] (31 characters max): ME_WLC
Enter Country Code list (enter ‘help’ for a list of countries) [US]: US
Configure a NTP server now? [YES][no]: no
Configure the system time now? [YES][no]: yes
Enter the date in MM/DD/YY format: <date>
Enter the time in HH:MM:SS format: <time>
Enter timezone location index (enter ‘help’ for a list of timezones): 7
Management Interface IP Address: 192.168.1.2
Management Interface Netmask: 255.255.255.0
Management Interface Default Router: 192.168.1.1
Create Management DHCP Scope? [yes][NO]: yes
DHCP Network : 192.168.1.0
DHCP Netmask : 255.255.255.0
Router IP: 192.168.1.1
Start DHCP IP address: 192.168.1.10
Stop DHCP IP address: 192.168.1.200
DomainName : me.local
DNS Server : [OPENDNS][user DNS] OPENDNS
Create Employee Network? [YES][no]: yes
Employee Network Name (SSID)?: survey_ME
NOTE, USE YOUR INITIALS INSTEAD OF ‘ME’ TO DIFFERENTIATE YOUR SSID
Employee VLAN Identifier? [MGMT][1-4095]: MGMT
Employee Network Security? [PSK][enterprise]: PSK
Employee PSK Passphrase (8-38 characters)?: <temp key>
Re-enter Employee PSK Passphrase: <temp key>
Create Guest Network? [yes][NO]: no
Enable RF Parameter Optimization? [YES][no]: no
Configuration correct? If yes, system will save it and reset. [yes][NO]: yes

It is highly recommended to use the values above. Once the Access Point reboots continue on.

Step 5) Clean up the AP

Some of the defaults are not completely friendly. We’ll clean those up now. Discover the name of the Access Point using ‘show ap summary’ and rename it to something more friendly like ‘ap’. It should be noted that renaming your Access Point to ‘ap’ will make configurations easier and in line with the examples below, but if you’re part of a larger team and require unique Access Point names, this is where you would set them, making note to use your defined Access Point name instead of the shortened name ‘ap’ as described in the rest of this document.

Next we want to disable the PSK security on the WLAN for easier association and testing and enable Aironet Extensions to include the AP name in beacons. This step is optional, but recommended. You must first disable the WLAN, the disable the PSK, then re-enable the WLAN:

(Cisco Controller) >config wlan disable 1
(Cisco Controller) >config wlan security wpa disable 1
(Cisco Controller) >config wlan ccx aironetIeSupport enable 1
(Cisco Controller) >config wlan enable 1
(Cisco Controller) >save config
Are you sure you want to save? (y/n) y

Once you’ve made these changes, perform a ‘save config’ as shown on the WLC to ensure the changes aren’t overwritten.

Step 6) Configure your radios for site survey specifics including channel and TX power.

To set these values, you must admin disable the radio, make the change, then re-enable it. Remember, these are the same commands you’d use on a production, bare-metal WLC and are not new. Here are a few examples:

To change the 2.4GHz radio to channel 6:
(Cisco Controller) >config 802.11b disable ap
(Cisco Controller) >config 802.11b channel ap ap 6
(Cisco Controller) >config 802.11b enable ap

To change the 2.4GHz radio to power level 3:
(Cisco Controller) >config 802.11b disable ap
(Cisco Controller) >config 802.11b txPower ap ap 3
(Cisco Controller) >config 802.11b enable ap

To change the 5GHz radio to channel 44:
(Cisco Controller) >config 802.11a disable ap
(Cisco Controller) >config 802.11a channel ap ap 44
(Cisco Controller) >config 802.11a enable ap

To change the 5GHz radio to power level 5:
(Cisco Controller) >config 802.11a disable ap
(Cisco Controller) >config 802.11a txpower ap ap 5
(Cisco Controller) >config 802.11a enable ap

To change the 5GHz radio width to 40MHz:
(Cisco Controller) >config 802.11a disable ap
(Cisco Controller) >config 802.11a chan_width ap 40
(Cisco Controller) >config 802.11a enable ap

Of course, you can couple all of these commands together to reduce the number of times you’re disabling your radio if you’re doing an initial configuration. Here is an example of setting the radios both to power level 2 and the 2.4GHz radio to channel 11, and the 5GHz channel to 100@40MHz all in one script:

(Cisco Controller) >config 802.11b disable ap
(Cisco Controller) >config 802.11a disable ap
(Cisco Controller) >config 802.11b channel ap ap 11
(Cisco Controller) >config 802.11b txPower ap ap 2
(Cisco Controller) >config 802.11a channel ap ap 100
(Cisco Controller) >config 802.11a txpower ap ap 2
(Cisco Controller) >config 802.11a chan_width ap 40
(Cisco Controller) >config 802.11b enable ap
(Cisco Controller) >config 802.11a enable ap

To see the channel of the Access Point currently configured, use the ‘show ap channel ap’ command:

To see the power level of the Access Point currently configured, use the ‘show ap config slot 0 ap’ (for 2.4GHz) or ‘show ap config slot 1 ap’ (for 5GHz’ command and look for the following data:

Alternatively, use the grep command to just pick out the data you’re interested in:

Step 7) Alternative management via the WLC GUI

If you’ve followed this guide up till now, you can also access the management interface of the WLC by using your PC and joining your open survey SSID. Then open a web browser and navigate to https://192.168.1.2/ .

Step 8) Putting it all back the way you found it

To convert the AP back to capwap mode and undo this configuration, you must goto the AP console using ‘apciscoshell’ and perform the ‘ap-type’ command again:

Addendum:

Dual role radio notes:

The AP2800 and AP3800 both include the ability to change the slot 0 radios personality from 2.4GHz to 5GHz. This presents some unique configuration considerations as follows:

To convert the XOR radio from the default 2.4GHz to 5GHz and change its channel to 40 @ 40MHz wide use:
(Cisco Controller) >config 802.11-abgn disable ap
(Cisco Controller) >config 802.11-abgn role ap manual client-serving
(Cisco Controller) >config 802.11-abgn band ap ap 5GHz
(Cisco Controller) >config 802.11-abgn channel ap ap 40
(Cisco Controller) >config 802.11-abgn chan_width ap 40
(Cisco Controller) >config 802.11-abgn enable ap

The following should be noted for this configuration:

When you convert the XOR radio into 5GHz mode, you must use a channel that is 100MHz apart from the slot 1 radio in the Access Point. When you configure the XOR radio into 5GHz mode on an ‘e’ model of AP, you must have an external antenna plugged into the DART connector or this configuration will fail. When you configure the XOR radio into 5GHz mode on an ‘i’ model of AP, the tx power will be fixed and not modifiable (by design) to its lowest possible value to retain micro-cell integrity.

To change the XOR radio from a configured 5GHz to 2.4GHz and change its channel to 6 use:

(Cisco Controller) >config 802.11-abgn disable ap
(Cisco Controller) >config 802.11-abgn band ap ap 2.4GHz
(Cisco Controller) >config 802.11-abgn channel ap ap 6
(Cisco Controller) >config 802.11-abgn enable ap

Here’s the thing about deleting your FaceBook account

When you finally reach the breaking point, you’re sick of all of the infighting and bickering, all of the people requiring that you look at things from their perspective, but refuse to see it from yours. When you have an opinion about politics that’s a bit too middle of the road for your left or right friends. When your family, your extended family, and/or your friends of your family engage in the kind of ‘behind the keyboard’ backstabbing, opinion tossing, open slandering of people that you care about – all because there are no repercussions – all under the guise of ‘I know someone better than you do’. When you’ve finally had enough and you go to delete your FaceBook account, you want to tell people. You want to educate them that the mire they’re drowning in, contributing to, addicted to – the social infighting, the ‘I’m better than you and here’s why’. Unfortunately when you compose a lengthy, well worded thought out op-ed piece on why you’ve finally given up on all of them, then delete your account – that post goes along with it. For those that actually reach the breaking point, then follow through with their account deletion, there is a narrow window of time between you saying goodbye to the world and that post being deleted for no one else to ever see. Fortunately for me, I have a blog and other social media accounts that for some reason have stayed clear of the close and personal infighting that’s the impetus for this post. I’ll be cross posting this blog post here (on sc-wifi.com) since it is technology related by way of it’s social media commentary – which has an odd tie to the technology I’m passionate about.

When my childhood friend decided today to make very public a private conversation with my older brother, people did what people do – decided to make assumptions about my brother’s intentions and decided they were going to turn into social commentators. Sadly, my friend did nothing to assuage the beratement that ensued, even encouraging it with comments about how recent holiday visits had been ‘awkward’. Couple that with his mother (and my mothers ‘best friend’) participating in the debasing spectacle assuming my brother was looking for ‘glee’.

Needless to say, it’s been far too long since I’ve made a stand. I’ve kept my political affiliation to myself (there is one person in the world that *knows* who I voted for, and I sleep next to her every night). You, dear reader, can make all the assumptions you want around who I support and why I support but I was raised that your political decisions are yours and yours alone. I try to keep a level head around the extreme on either side of the fence, trying to understand both perspectives, but the shameful display that occurred today, only has a single silver lining. That my sister in law had a chance to stand up for her husband. I’m ashamed to not have taken a stand before (I missed the last go ‘round) but it’s time to rectify that now. Clearly the longtime bond between our families has turned out to be just a sham.

Now, I’m getting ready to bring my second child into this world. I’ll protect them and my firstborn from the bullshit faux friends and infighting that’s ultimately the cancer that will cripple us all. You will not know about my child. You will not know if they’re boy or girl. You will not see pictures of them unless you text me (or I text you). This is not a challenge to repost, like, or otherwise solicit a response from you. It is merely a good bye. Your infighting has broken me. I’m done and it’s time I take a page out of my younger’s brothers book and say goodbye to FaceBook for good. In the narrow window between me posting this and deleting my account, if you happen to read it – please know – when you challenge my family, they will always wins out over you. It’s up to you how you support whom but when you call into question the goodness of a public servant – then expect that person to come rescue your ass when your house is burning down around you, you should know that despite the fact that you were an asshole to him, he’ll still help you.

All about DART

Yes, I’m writing a blog post on a connector. Just a connector. If you’re like me, you can appreciate the little things in life. This is one of those times that something little snuck past me and it wasn’t until now that I’m starting to fully appreciate it’s impact and importance. When Cisco launched their 2800/3800 APs, dual 5GHz was certainly at the top of the list of the most talked about features (see #MFD session here!). This came with some caveats (as all new features do) and using a separate set of antennas for the second 5GHz radio was the biggest. This is handled on the internal antenna models with an in-built extra set of antennas, but on the external antenna models, this presented a bit of a challenge. In the wide world of antenna connectors, in the Wi-Fi space, we commonly deal with RP-SMA, RP-TNC, and N-type connectors depending on your vendor and the deployment type. In the Cisco world, that’s RP-TNC for indoor APs. With a single, 4 element antenna today, that’s four connectors (or four, single element antennas). With two antennas, that drives the number of antenna connectors up to a whopping 8 cables you’re looking to have coming out of your AP! 8 cables, 8 connectors, it gets messy quick. Enter the DART connector:

All covered up!

All covered up!

DART revealed!

Inconspicuously located on the side of the AP, behind a little door, the new DART connector reveals itself in a complex looking array of pins and connectors in a tight external facing form factor. Here’s the interesting part though, this isn’t a new connector! In fact, it’s been shipping to the public for a little bit now in the form of the Cisco Hyperlocation module and antenna!

Hyperlocation with DART

Hyperlocation with DART

DART on Hyperlocation Exposed!

DART on Hyperlocation Exposed!

So, that’s all great and all, but what’s really *in* the DART connector? DART stands for Digital Analog Radio Termination and it does all of those wonderful things. Firstly, the analog antenna connectors that we use (so we don’t have 8 RP-TNC ports on our AP) are the 4 larger pins across the bottom of the connector.

Look at all those pins!

Look at all those pins!

When we use the DART to RP-TNC pig tail for backwards compatibility with shipping antennas, these are the connectors that map directly to the 4 RP-TNC connectors. In short, these are the 4 analog ports that carry the actual analog signal through the connector.

DART to RP-TNC Cable!

DART to RP-TNC Cable!

Fully assembled!

Fully assembled!

For existing RP-TNC based antennas

For existing RP-TNC based antennas

On the cable end!

On the cable end!

Which leave us with the extra 16 pins. Those are the ‘Digital’ piece of the DART connector and can be used for a variety of uses. Initially, this is used to identify the type of cable that is attached to the DART connector. For example, in the Hyperlocation module, this shows up on the AP details:

Circular Antenna

Circular Antenna

For the DART to RP-TNC connector, this is in the form of a simple resistor that maps two of the pins back to each other:

DART disassembled

DART disassembled

It’s easy to see that there’s quite a bit of left over functionality that could be used in a connector of this type. Today if we use very high gain antennas we have to have multiple models of APs (see the 3602p and 3702p). If we could identify the gain of the antenna by way of an automated mechanism, we could have the AP auto adjust itself to not exceed EIRP. Another potential use case is DART native versions of our existing antennas in a simple to use connector. Imagine not having to screw on connectors anymore! With a quick-connect antenna mechanism that auto-IDs the antenna capabilities to the AP, this could certainly be the new connector of choice for external antennas in the future!

With DART connector on edge.

With DART connector on edge.

Note the DART connector on the left.

Note the DART connector on the left.