FAA approves Verizon & AT&T to deploy more 5G towers around airports

The Federal Aviation Administration has permitted Verizon and AT&T to turn on their C-band spectrum at additional airports.
5G C-Band rollout delayed by DOT

The dispute between the Federal Aviation Administration and Verizon and AT&T over ultra-fast 5G C-band deployment at airports potentially disrupting aircraft altimeters is drawing to a close. On Friday, the FAA announced a settlement agreement on new measures that will allow for even more 5G towers to operate safely around major airports. The agency stated that it had received “more accurate data” from the carriers.

FAA statement approving 5G towers around airports


FAA said in the statement, “It appreciates the strong communication and collaborative approach with wireless companies, which have provided more precise data about the exact location of wireless transmitters and supported the more thorough analysis of how 5G C-band signals interact with sensitive aircraft instruments.”

The Federal Aviation Administration utilized this information to establish that “safely and more precisely map the size and shape of areas surrounding airports where 5G signals are mitigated,” minimizing the areas where wireless carriers are delaying their antenna activations.

“This will allow the wireless carriers to safely turn on many more towers as they deploy 5G service in major markets across the United States,” it added. “The FAA continues to work with helicopter operators and others in the aviation community to ensure they can safely operate in areas of current and planned 5G deployment.”

CTIA welcomes the FAA decision for C-Band near airports

CTIA, an industry association, welcomed the news. Verizon and AT&T deferred their comments to CTIA. Nick Ludlum, SVP/chief communications officer at CTIA, said, “This is a positive development that highlights the considerable progress the wireless industry, aviation industry, FAA, and FCC are making to ensure robust 5G service and safe flights.”

FCC auctioned C-Band to Verizon and AT&T

Last year, the FCC authorized Verizon and AT&T to acquire a C-band spectrum in a public auction after determining that a 220-megahertz guard band was enough to safeguard aircraft altimeters. The C-Band bandwidth provides better reliability and speed. But, FCC was thrown under the bus when the FAA and airlines protested about C-band.

FAA & Airlines aircraft safety concerns

However, the FAA and airlines maintained that this was insufficient to ensure aircraft safety. AT&T and Verizon argued that the safety of their customers was not at risk, while the airlines, airports, and FAA had months to work through these issues and potential technical difficulties. They also agreed to various mitigation measures, including lowering the transmission power of all 5G towers and mothballing some towers around airports

Verizon & AT&T agreed to delay the C-Band launch multiple times

In November, AT&T and Verizon agreed to postpone their commercial C-band-based wireless services by a month to allow the FAA time to analyze any aviation safety concerns. The carriers subsequently delayed their operations again, pushing them back to January 19. However, neither airlines nor FAA was prepared for that either, claiming that the country’s commerce would “grind to a halt” if the C-band deployments were allowed to proceed as planned.”

Verizon & AT&T deploys C-Band with buffer zones in specific cases

Finally, on January 19, 2019, Verizon and AT&T launched their C-band. However, they delayed services around designated airports, providing up to 2 miles buffer zones in specific scenarios. 

On Thursday, the FAA released an Airworthiness Directive (AD) that amends the landing needs for Boeing 737 MAX aircraft at airports where 5G interference may occur. According to the agency, the collaboration between the FAA and wireless firms allowed it to clear 90% of the country’s commercial aircraft fleet, including the Boeing 737 MAX, for most low-visibility approaches in 5G deployment.

FCC Chairwoman, Jessica Rosenworcel’s statement

The FCC Chairwoman, Jessica Rosenworcel, released the following statement: “I am pleased to see that the FAA is starting to roll back some of the protections it requested for aviation technologies, based on sound science and engineering principles. There is more work to do, but continued collaboration, information sharing, and a recommitment to science will help confirm what we already know: that 5G deployment can safely co-exist with aviation technologies in the United States, just as it does in other countries around the world.”


Recent Content

Utilities are unlocking real-time intelligence and predictive maintenance by combining edge computing and AI with private LTE/5G networks. This blog explores how utilities process critical data locally to automate decisions, detect anomalies, optimize asset performance, and improve operational resilience—laying the foundation for the autonomous grid.
Utilities are implementing private LTE and 5G networks across diverse environments—from turbine halls and substations to national grid systems. This blog outlines the key deployment architectures (site-specific, regional, wide-area, and indoor) and spectrum strategies utilities are using to deliver secure, scalable, and purpose-built connectivity for modern energy operations.
The shift to private LTE and 5G in utilities is being driven by a convergence of urgent trends, from climate mandates and cyber threats to legacy infrastructure and labor shortages. This blog explores six key forces accelerating private network adoption and highlights why resilient, intelligent, and secure communications have become essential to utility transformation.
Private LTE and 5G networks are transforming how utilities operate by enabling a wide range of mission-critical and emerging applications. From AMI and substation automation to drone inspections and edge AI, this post outlines 12 strategic use cases that demonstrate why utilities are investing in private cellular infrastructure to improve safety, performance, and operational agility across the grid.
As the energy grid becomes more distributed and digital, utilities are investing in private LTE and 5G networks to future-proof their operations. These purpose-built networks support secure, real-time communications, improve operational visibility, and enable automation, delivering the connectivity backbone required for a modern, resilient grid.
Verizon Business and Nokia will deploy six private 5G networks across Thames Freeport’s major logistics sites, including the Port of Tilbury, London Gateway, and Ford Dagenham to create a high-performance digital infrastructure supporting real-time logistics, AI automation, and edge computing. With plans to generate 5,000 skilled jobs and power sustainable trade, this initiative positions Thames Freeport as a next-gen smart trade corridor.
Whitepaper
Explore the Private Network Edition of 5G Magazine, your guide to the latest in private 5G/LTE and CBRS networks. This edition spotlights 11 award categories including private 5G/LTE leader, neutral host leader, and rising startups. It features insights from industry leaders like Jason Wallin of John Deere and an analysis...
Whitepaper
Discover the potential of mobile networks in modern warfare through our extensive whitepaper. Dive into its strategic significance, understand its security risks, and gain insights on optimizing mobile networks in critical situations. An essential guide for defense planners and cybersecurity enthusiasts....

It seems we can't find what you're looking for.

Download Magazine

With Subscription

Subscribe To Our Newsletter

Scroll to Top