Wi-Fi consolidation continues: Brocade buys Ruckus for $1.2 B

Screen Shot 2016-04-04 at 11.08.16 AMFollowing last year’s $3 billion purchase of Aruba Networks by Hewlett Packard, the Wi-Fi gear industry consolidation continued today with the announcement of Brocade buying Ruckus Wireless for $1.2 billion.

For the stadium-networking industry, the news may mean that Ruckus gear may find its way into more potential deals, thanks to the deeper pockets and integration possibilities brought to the table by Brocade, which competes in the back-end network gear market against companies like Cisco. Though it’s not known to have scored many stadium deals, Brocade is the back-end network supplier for Levi’s Stadium, which is a close-by neighbor to Brocade’s San Jose headquarters. It is also part of the network gear being used at the new Golden 1 Center in Sacramento, where Ruckus will provide the Wi-Fi gear, perhaps a deal where the purchase relationship got started.

Ruckus, which had come close but lost two high-profile Wi-Fi deals (for the San Jose Earthquakes’ new stadium, and for the Wi-Fi network at NRG Stadium in Houston), had said publicly that it did not participate in “pay for play” deals, where a gear manufacturer might provide discounts or payments for stadiums to use their equipment. Ruckus has won some other high-profile stadium deals recently, including at Angels Stadium in Anaheim.

Betting the Under (Part 2): Putting Wi-Fi antennas under seats is the hot new trend in stadium wireless networks

Under-seat Wi-Fi AP at Levi's Stadium. Photo: Paul Kapustka, MSR (click on any photo for a larger image)

Under-seat Wi-Fi AP at Levi’s Stadium. Photo: Paul Kapustka, MSR (click on any photo for a larger image)

Part 2 of this story picks up with the decision to put Wi-Fi APs under seats at Levi’s Stadium. If you missed it, here is the link to Part 1.

According to Chuck Lukaszewski, now vice president of wireless strategy and standards at Hewlett Packard Enterprise (formerly very high density architect in the CTO Office of Aruba Networks), Aruba had been testing under-seat AP designs since around 2010, “in one form or another.” There were some initial tests of under-seat AP deployments at Turner Field in Atlanta and at American Airlines Arena in Dallas, but nothing on the scale of AT&T Park’s 2013 deployment, or on the scale Aruba planned to have at Levi’s Stadium when it opened in 2014.

Some of the first under-seat Wi-Fi deployments in other arenas were actually deployed completely under the stands, Lukaszewski said, with signals shooting up through the concrete. Though he said “you could get reasonably good throughput through concrete,” especially for 2.4 GHz frequencies, installing antennas above the concrete was “considerably better,” Lukaszewski said.

Curiously, one of the biggest problems in stadium Wi-Fi deployment — especially for those heavy on overhead antenna use — is negotiating interference between antennas; sometimes, clients can “see” antennas and APs that are across the stadium, and will try to connect to those instead of the AP closest to them, a problem that leads to inefficient bandwidth use. Interference also means you can’t place APs too closely together, making it somewhat of an art to find ways to increase coverage without increasing interference.

Dan Williams, former VP of technology for the San Francisco 49ers, talking networking at Levi's Stadium. Photo: Paul Kapustka, MSR

Dan Williams, former VP of technology for the San Francisco 49ers, talking networking at Levi’s Stadium. Photo: Paul Kapustka, MSR

What Aruba found in its testing, Lukaszewski said, was that under-seat Wi-Fi AP deployments could be far more dense than overhead-centric designs, mainly because the human bodies in the seats would provide beneficial “blocking” of signals, allowing network designers to place APs more closely together, and to be able to re-use the same Wi-Fi channels in more antennas.

“If you can use human bodies to contain signals, you can have much smaller cells,” Lukaszewski said. Under-seat deployments, he said, “allows us to re-use the same channel less than 100 yards away.”

With more channels available for each AP, the difference in the metric Lukaszewski calls “megabytes per fan” can be “profound” for an under-seat design versus an overhead design, he said.

“We do see trends [in stadium network data] of under-seat being able to deliver well over 100 MB per fan per event, while overhead designs [deliver] significantly under 100 MB per fan per event,” said Lukaszewski.

Dan Williams, the former vice president of technology for the San Francisco 49ers, said he and Lukaszewski were in agreement that under-seat was the best method to deploy at Levi’s Stadium.

Kyle Field at Texas A&M. White spots in stands are under-seat AP locations. Photo: Paul Kapustka, MSR

Kyle Field at Texas A&M. White spots in stands are under-seat AP locations. Photo: Paul Kapustka, MSR

“I just did not believe in overhead,” said Williams, who said he brainstormed with Aruba’s Lukaszewski on the under-seat idea, which they both brought to the Wi-Fi design at Levi’s. By using under-seat APs, Williams said, the Levi’s Stadium design looked to provide “cones [of bandwidth] around the audience, immersing [fans] in a signal.”

After beating the previous year’s Super Bowl Wi-Fi total at its NFL regular-season opener in 2014, Levi’s Stadium’s Wi-Fi network more than passed its biggest test ever this year, carrying a record 10.1 terabytes of Wi-Fi data during Super Bowl 50. Those numbers are proof of Lukaszewski’s claim: “By far, under seat is better.”

New deployments trending to under-seat

Editor’s note: This excerpt is from our latest STADIUM TECH REPORT, our long-form PDF publication that combines in-depth stadium tech reports with news and analysis of the hottest topics in the world of stadium and large public venue tech deployments. Enjoy this PART 1 of our lead feature, or DOWNLOAD THE REPORT and read the whole story right now!

Even though under-seat deployments can be considerably more expensive, especially in a retrofit situation where deployment requires coring through concrete, many stadiums are now seeming to agree with another Lukaszewski claim, that “the return absolutely justifies the investment.”

At AT&T Stadium in Arlington, Texas, the Cowboys quicked followed their sister park’s lead and installed under-seat APs in force ahead of that venue’s hosting of the inaugural College Football Playoff championship game in January of 2015. John Winborn, chief information officer for the Dallas Cowboys Football Club, said the team worked with AT&T’s “Foundry” innovation centers to produce a smaller, sleeker under-seat AP enclosure that fit well with the stadium’s commitment to aesthetics.

Back on the baseball side, the Giants now have 1,628 Wi-Fi APs in their park, with the vast majority of them under-seat, in all three decks of seating. And the Giants’ main rival to the south, the Los Angeles Dodgers, also used under-seat APs in a recent Wi-Fi upgrade.

Close-up of conduit running to under-seat AP at Kyle Field. Photo: Paul Kapustka, MSR

Close-up of conduit running to under-seat AP at Kyle Field. Photo: Paul Kapustka, MSR

And if Levi’s Stadium led the way for under-seat Wi-Fi, the new mainly under-seat network at the refurbished Kyle Field at Texas A&M might be the QED on the debate, with ultra-fast network speeds and big data-consumption numbers (including 5.7 TB of Wi-Fi at a game versus Alabama) adding measureable momentum to the under-seat trend. Bill Anderson, CEO of Wi-Fi deployment strategy firm AmpThink, said he was an early disbeliever in under-seat Wi-Fi — until he saw the numbers.

“At first we mocked it, made fun of it,” said Anderson, whose firm has been called in to produce Wi-Fi network designs for several recent Super Bowls, as well as for the Kyle Field design. But when Aruba showed AmpThink the data from under-seat tests and deployments, “that was the ‘a-ha’ moment for us,” Anderson said.

Working with Aruba at Kyle Field, AmpThink was able to collect its own data, which convinced Anderson that under-seat was the way to go if you wanted dense, high-performing networks.

“The really important thing is to get APs closer to the people,” said Anderson. “That’s the future.”

Anderson said some doubters may remain, especially those who try to mix a small amount of under-seat APs with existing overhead deployments, a recipe for lowered success due to the potential interference issues. At Texas A&M, Anderson said AmpThink was able to build a design with far less interference and much greater density than an overhead solution, producing numbers that people have to pay attention to.

“We only know what we’ve observed, but we’re evangelistic supporters” of under-seat designs, Anderson said. “If someone says to you under-seat is hocus-pocus, they’re not looking at the data.”

Not for everyone, but more are trying under-seat

Though proponents of under-seat Wi-Fi all agree on its ability to deliver denser, faster networks, they all also agree that under-seat can be considerably more costly than overhead Wi-Fi, especially in a retrofit situation.

In addition to having to core through concrete seating areas to get conduit to the under-seat APs, the devices themselves need to be sealed, to guard them from weather, drink spills, and the power-washing equipment employed by most stadiums to clean seating areas.

Aruba’s Lukaszewski also noted that under-seat deployments generally use more linear feet of cabling to connect the APs than overhead, which also drives up the cost. Then since under-seat designs tend to use more APs, that also means a higher budget to cover a higher number of devices.

A row shot of the under-seat APs at AT&T Stadium. Photo: Dallas Cowboys

A row shot of the under-seat APs at AT&T Stadium. Photo: Dallas Cowboys

For some stadiums, the construction materials used prohibit the under-seat option from even being tried. At the Green Bay Packers’ legendary Lambeau Field, a late-1950s construction design that used lots of concrete and rebar — as well as part of the stadium’s bottom sitting directly in the ground — meant that under-seat Wi-Fi wasn’t an option, according to Wayne Wichlacz, director of information technology for the Packers.

Other stadiums, like the University of Nebraska’s Memorial Stadium, don’t have enough space between the stadium’s bleacher seats and the floor for under-seat APs to be safely installed. And many schools or teams simply don’t have big IT budgets like the $20-million-plus available to Texas A&M that allowed the Kyle Field design to seek the best result possible.

But many of the new stadiums under construction, as well as existing venues that are planning for new best-of-breed networks, have already committed to under-seat Wi-Fi designs, including the Sacramento Kings’ Golden 1 Center, where Ruckus Wireless will implement its first under-seat stadium Wi-Fi network.

Steve Martin, senior vice president and general manager at Ruckus, said the Golden 1 Center design, planned to be the most dense anywhere, will “primarily be underseat,” a choice he said “helps in a lot of ways.”

Foremost is the performance, something Martin said Ruckus has been testing at the Kings’ current home, the Sleep Train Arena. “It [under seat] does give you the isolation for frequency re-use,” he said.

The under-seat design also makes sense in Golden 1 Center since the stadium’s overall design is very open, with lots of glass walls and unobstructed views.

And under-seat deployment is even making inroads into the distributed antenna system (DAS) world, with Verizon Wireless implementing more than 50 under-seat DAS antennas at Levi’s Stadium prior to Super Bowl 50. Mainly installed to cover the bottom-of-the-bowl rows, the under-seat APs helped Verizon manage a record day for DAS traffic, with 7 TB reported on its in-stadium cellular network during the game.

“To get a quality signal, we had to go under seat,” said Brian Mecum, vice president, network, for Verizon Wireless, who said that in that area of the stadium, under seat was the only way to get a quality signal close to the subscriber’s phone. Verizon, he said, helped design the under-seat DAS antenna, and is looking to deploy it in other stadiums soon.

“It’s the first of more,” he said.

END PART 2… HERE IS THE LINK TO PART 1… TO READ THE WHOLE STORY NOW, DOWNLOAD OUR REPORT!

Niners: All (tech) systems go at Levi’s Stadium for Super Bowl 50

Levi's Stadium, ready for the Super Bowl. All stadium photos: Levi's Stadium (click on any photo for a larger image)

Levi’s Stadium, ready for the Super Bowl. All stadium photos: Levi’s Stadium (click on any photo for a larger image)

As far as the technology at Levi’s Stadium is concerned, it’s all systems go for Sunday’s Super Bowl 50, according to San Francisco 49ers chief operating officer Al Guido.

In a phone interview with Mobile Sports Report, Guido said the 2-year-old stadium’s vaunted technology underpinnings — especially the wireless connectivity for fans — is ready to go for the NFL’s biggest yearly event, after a second season spent mainly fine-tuning the different components.

“We couldn’t feel more confident, hosting the game,” said Guido, speaking specifically about the technology infrastructure at Levi’s Stadium. As he stated before the regular season began, the Niners didn’t do anything radical to the stadium’s Wi-Fi network, which uses gear from Aruba, an HP Enterprise company, to bring the main wireless bandwidth to fans.

And while the stadium’s distributed antenna system (DAS) got a complete replacement over the summer, the new capabilities including under-seat DAS antennas for Verizon Wireless should only lead to better reception than the year before. According to Guido, representatives from Aruba as well as from “all the carriers” will be on hand Super Sunday just in case anything needs close attention.

“Everybody’s going to be at a high tech [support] level” on game day, Guido said.

Drink delivery order page on Super Bowl stadium app, including the $13 Bud Light.

Drink delivery order page on Super Bowl stadium app, including the $13 Bud Light.

No food, but in-seat beverage delivery as part of stadium app

The Super Bowl 50 stadium app, designed for the NFL by the Niners’ in-house app development company VenueNext, will have some but not all of the features Niners fans have available during the regular season. The most obvious omission is the lack of food delivery to all seats, something that makes Levi’s Stadium stand apart from any other large public sporting venue. Instead, the stadium app will only allow fans to order beverages for in-seat delivery, with the option to order food, beverage and merchandise that can be claimed at “express pickup” concession windows.

According to Guido, the decision to only have beverage deliveries at Super Bowl 50 was one reached jointly by the NFL, the Niners and VenueNext, and the catering company for the stadium, Centerplate. Guido said that the potential “amount of education” for all the fans new to the stadium and new to the app led the league, the Niners and the caterers toward a path of greater simplicity, namely just having beverages available for in-seat delivery.

“It was a risk-reward decision about the amount of fan education needed,” Guido said. “There’s so much going on at a Super Bowl and so many people new to the stadium that it didn’t seem worth it to us to risk someone not getting an order delivered because of their error, or our error.” Guido added that with all the extra breaks in action for a Super Bowl, and additional concessions stands, “there’s enough time to get around” to get food.

View of the temporary media towers on the Dignity Health concourse

View of the temporary media towers on the Dignity Health concourse

Michelle McKenna-Doyle, senior vice president and chief information officer for the NFL, told Sports Business Journal that the league was also concerned about game-day delivery traffic patterns being disrupted by the new media towers that have been built for the game in the corner plaza areas of the stadium. “We were worried about having to keep up with demand … and we need to keep the aisles clear, which is important to the security team,” McKenna-Doyle said in a story by SBJ’s Don Muret.

The app will, however, include its normal live wayfinding capabilities, which should prove useful to new visitors to Levi’s Stadium since they can watch themselves walk through a map of the facility as a familiar moving blue dot. Like it does for Niners games, the app will also have instant replays from multiple camera angles available, as well as Super Bowl extras like a “celebrity cam” and the ability to watch Super Bowl commercials right after they are broadcast on TV.

Guido said the Levi’s Stadium app performed well all season, with an average of about “2,000 to 2,500” in-seat delivery orders per game. What was especially pleasing to the team was the number of fans who used the app’s ability to support digital ticketing, a feature that makes life somewhat simpler for fans but exponentially better for the team, which can gain valuable marketing insight from digital ticket-use statistics. According to Guido almost 35 percent of fans used digital ticketing during the past season.

Media towers save seats for fans

Niners fans watching Sunday’s game on TV might be surprised by the media towers, which Guido said were built in the Intel and Dignity Health concourse areas, which during regular-season games are simply open spaces. Guido said the decision to build temporary facilities for media means that the regular stadium seats will be saved for fans. At many other pro championship or playoff events, the overflow media are often housed in regular seating areas.

“The NFL made a great decision there” to put the media in the pavilions, Guido said.

If there is one thing that can’t really be controlled, it’s the traffic and transportation issues of bringing fans to the game. On Sunday fans coming to the game will confront Levi’s Stadium’s unique location in the middle of many Silicon Valley corporate headquarters buildings, which presents challenges that stadiums like AT&T Stadium in Dallas or the University of Phoenix Stadium in Glendale, Ariz. — which are surrounded by acres of stadium-controlled parking lots — simply don’t have. To help with Super Bowl traffic the planners are using multiple methods, including using Google employee buses as shuttles as well as signing Uber as a sponsor with its own dedicated pickup and dropoff lot. There is also light rail service which stops right outside the stadium, which intially in the past experienced lengthy delays especially after games, but has improved over time.

“Traffic and transportation is our largest concern,” Guido said.

Bring on the players and fans!

Bring on the players and fans!

New Report: Is Texas A&M’s $20 million, all-optical DAS and Wi-Fi the fastest stadium network out there?

One of the many maxed-out speed tests we took at Texas A&M's Kyle Field. All photos: Paul Kapustka, MSR (click on any photo for a larger image)

One of the many maxed-out speed tests we took at Texas A&M’s Kyle Field. All photos: Paul Kapustka, MSR (click on any photo for a larger image)

Is there a combined stadium Wi-Fi and DAS deployment that is as fast as the one found at Texas A&M’s Kyle Field? If so we haven’t seen or heard of it.

In fact, after reviewing loads of live network-performance data of Kyle Field’s new Wi-Fi and DAS in action, and after maxing out the top levels on our speed tests time after time during an informal walk-around on a game day, we’ve come to the conclusion that Kyle Field has itself a Spinal Tap of a wireless deployment. Meaning, that if other stadium networks stop at 10, this one goes to 11.

Movie references aside, quite simply, by the numbers Kyle Field’s wireless network performance is unequaled by any other large public venue’s we’ve tested in terms of raw speed and the ability to deliver bandwidth. With DAS and Wi-Fi speed measurements ranging between 40 Mbps and 60+ Mbps pretty much everywhere we roamed inside the 102,512-seat venue, it’s a safe bet to say that the school’s desire to “build the best network” in a stadium hit its goal as best as it could. And since the school spent “north of $20 million” on the network, perhaps it’s no surprise that it’s the fastest anywhere.

Our full profile of our in-depth visit to College Station to see this network in action can be found in our latest STADIUM TECH REPORT, our COLLEGE FOOTBALL ISSUE for 2015. You can download the report for free, right now! In addition to the Texas A&M profile you will find in-depth looks at wireless deployments at Kansas State, Ole Miss, Oklahoma and the venerable Rose Bowl — so download your copy today!

See the white dots? Those are under-seat Wi-Fi APs

See the white dots? Those are under-seat Wi-Fi APs

Audible to optical made the difference

Inside our latest 40+ page report you will get a full breakdown on how the Texas A&M network came to be — in an exclusive interview with Phillip Ray, Vice Chancellor for Business Affairs at The Texas A&M University System, you hear for the first time how much the Kyle Field network cost — “north of $20 million” — as well as how much the top two wireless carriers paid to be a part of it. Want to know? Then download the report!

And while the Kyle Field story is our lead article, that’s not all you’ll find in our latest in-depth exploration of stadium technology deployments. Reporter Terry Sweeney checks out the new DAS deployment blanketing Pasadena’s Rose Bowl, perhaps one of the toughest old-style stadium construction challenges to try to bring in wireless coverage. We also have profiles of Wi-Fi deployments at Kansas State and at Ole Miss, and a feature about covering RV parking lots with Wi-Fi at the University of Oklahoma. To top it all off we have some Wi-Fi cost/benefit analysis from yours truly, and a bonus photo feature by photographer Phil Harvey, who accompanied MSR for a recent visit to AT&T Stadium.

We’d like to take a quick moment to thank our sponsors, which for this issue include Mobilitie, Crown Castle, SOLiD, CommScope, Aruba (a Hewlett Packard Enterprise company), JMA Wireless, Corning, 5 Bars, Extreme Networks, and ExteNet Systems. Their generous sponsorship makes it possible for us to offer this content free of charge to our readers. We’d also like to thank you for your interest and continued support. Thanks for reading and enjoy the COLLEGE FOOTBALL ISSUE!

Kyle Field at kickoff.

Kyle Field at kickoff.

Aruba expands beacon management options, adds VenueNext as app development partner

An Aruba Sensor "in the wild" at the University of Oklahoma library, part of a test deployment of the new hardware. Photo: Aruba (click on any photo for a larger image)

An Aruba Sensor “in the wild” at the University of Oklahoma library, part of a test deployment of the new hardware. Photo: Aruba (click on any photo for a larger image)

Stadiums and other large public venues that use any type of Wi-Fi hardware will now be able to use Aruba’s beacon-based apps and beacon management systems, thanks to a new “beacon sensor” introduced by Aruba today.

Part of a wide-ranging announcement heralding “version 2.0” or Aruba’s “mobile engagement” platform, the new beacon sensor — a $195 plug-into-the-wall device that can monitor and manage up to 10 nearby beacons — enables networks using any vendor’s Wi-Fi gear to utilize Aruba’s proven beacon software systems, which include the ability to support wayfinding apps. Prior to today’s announcement, only Aruba-based Wi-Fi networks could closely integrate with the Aruba beacon-based apps, a factor that limited market potential for Aruba’s beacon efforts. The new beacon sensors, Aruba said, also allow for cloud-based management of beacon deployments, which could save huge amounts of time by eliminating the need to physically visit or monitor each beacon in a network.

With the ability now to reach out to non-Aruba Wi-Fi customers, the former Aruba Networks — now formally known as “Aruba, a Hewlett Packard enterprise company” — also expanded its app developer partner program to target several different vertical markets where beacons might find a welcome home, like health care and retail/office situations. VenueNext, the developer of the Levi’s Stadium app — perhaps the poster child deployment of Aruba’s beacon offerings — is now a formal partner with Aruba, which may help VenueNext in its goal of bringing Levi’s Stadium app features like wayfinding maps to other stadiums, including those without Aruba-based Wi-Fi networks.

Aruba beacon at Levi's Stadium. Photo: Paul Kapustka, MSR

Aruba beacon at Levi’s Stadium. Photo: Paul Kapustka, MSR

Bringing beacon management to other networks

Jeff Hardison, director of product marketing for mobile engagement at Aruba, said the beacon sensor came out of internal questioning about how Aruba could help make beacons more mainstream, “and more useful.”

The solution is a small box, not much bigger than a beacon, which has inside both Bluetooth Low Energy (BLE) and Wi-Fi radios, allowing it to connect both to nearby beacons via Bluetooth and to Wi-Fi access points — importantly, Wi-Fi access points from any vendor. The devices, available for ordering today for $195 each, plug into standard electrical outlets and can manage about 9 to 10 beacons each, Hardison said, depending on proximity.

For VenueNext, the sensor could help the company more easily bring its beacon-based app features to stadiums and venues that don’t have Aruba Wi-Fi networks like Levi’s Stadium. Earlier this year, VenueNext had said it would announce 30 new venues using its apps by the end of the year, but so far it has identified only three new customers, the Orlando Magic, the New York Yankees and the Dallas Cowboys. The Cowboys, in particular, have a Cisco Wi-Fi network in AT&T Stadium, so it remains to be seen if Aruba beacon sensors will be used there to integrate the wayfinding feature in the AT&T Stadium app.

Screenshot of wayfinding features in Levi's Stadium app. Photo: Aruba

Screenshot of wayfinding features in Levi’s Stadium app. Photo: Aruba

Along with the sensors, with Aruba’s new beacon and sensor management system administrators can also manage beacons remotely, cutting down the time needed to visit each beacon in person to check battery life, software updates or other settings. As beacon deployments start to climb into the thousands per network, such remote management could be a huge time-saver, Hardison said. The beacon management system can also be used with the sensors in non-Aruba Wi-Fi deployments, Aruba said.

On beyond stadiums to libraries, hospitals, airports and more

While the Levi’s Stadium app’s wayfinding feature — which allows San Francisco 49ers fans to follow themselves as a blue dot walking through a map of the venue — is perhaps the most well-known Aruba beacon app, the Meridian platform (obtained by Aruba in a 2013 purchase of indoor Wi-Fi location company Meridian) is also being used to manage beacons at the Orlando International Airport, and is being trialed at the University of Oklahoma’s libraries, according to Aruba.

New software partners in the Aruba mobile engagement stable include Robin, which has a meeting room booking application, and companies with apps to help with navigation in hospitals and schools. The Meridian/Aruba beacon system was also previously used in apps at the Nebraska Furniture Mart and the American Museum of Natural History.

Niners’ new network team loses its CTO

Kunal Malik, once a very public spokesperson for the new network being built at Levi’s Stadium, is no longer the chief technology officer for the San Francisco 49ers, according to team executives and Malik’s own LinkedIn profile.

Once the former director of IT at Facebook, Malik was seen as one of the masterminds behind the wireless network being put in at Levi’s Stadium in Santa Clara, which is scheduled to open later this year. In public speaking appearances as well as in a long article in Ars Technica last year, Malik talked often about the team’s desire to build the best stadium wireless network, and how the team was adamant about providing robust Wi-Fi services to every seat in the 68,500-seat stadium.

Now that job will be finished without Malik, whose LinkedIn profile leads off with the line “Former Chief Technology Officer, 49ers.” Malik did not respond to emails or phone messages inquiring about his departure, which apparently happened sometime last month.

Niners vice president for technology Dan Williams, who followed Malik over to the Niners from Facebook, confirmed via email that Malik was no longer the team’s CTO. When asked if Malik’s departure could threaten the network’s buildout, Williams said that Malik had been primarily concerned with the applications to be used at the stadium, while Williams was in charge of network deployment.

“Kunal leaving has little to no impact on the project,” Williams said in an email.