US Telecoms Giants Agree to Airlines' Call for Delay in 5G Deployment

3d printed objects representing 5G are put on a motherboard in this picture illustration taken April 24, 2020. REUTERS/Dado Ruvic /Illustration//File Photo
3d printed objects representing 5G are put on a motherboard in this picture illustration taken April 24, 2020. REUTERS/Dado Ruvic /Illustration//File Photo
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US Telecoms Giants Agree to Airlines' Call for Delay in 5G Deployment

3d printed objects representing 5G are put on a motherboard in this picture illustration taken April 24, 2020. REUTERS/Dado Ruvic /Illustration//File Photo
3d printed objects representing 5G are put on a motherboard in this picture illustration taken April 24, 2020. REUTERS/Dado Ruvic /Illustration//File Photo

US telecoms giants AT&T and Verizon on Monday agreed to postpone their deployment of 5G wireless service over concerns that it may interfere with flight safety equipment, AT&T and airline officials said.

AT&T confirmed the deal in a statement, noting that at the request of Transportation Secretary Pete Buttigieg, "we have voluntarily agreed to one additional two-week delay of our deployment of C-Band 5G services."

"We know aviation safety and 5G can coexist and we are confident further collaboration and technical assessment will allay any issues," the company said.

The move came a day after AT&T and Verizon rebuffed a request to delay their rollout of 5G technology, scheduled for Wednesday, prompting airlines to threaten legal action, AFP said.

According to representatives of the airline industry, a last-minute draft agreement was reached first with telephone operator AT&T and then with Verizon to put off the deployment of their new 5G frequency bands by fifteen days.

Aviation regulators have raised concerns that the new system might interfere with the devices planes use to measure altitude and the rollout, initially scheduled for December 5, had already been postponed once.

"Nobody has signed anything yet, but at this moment we will be holding in abeyance for this two weeks period as people are working frantically to come to an agreement," an airline industry official said.

During this two-week break, changes made to facilities at airports in particular will need to be reviewed by the air safety regulator, the FAA, to "deem those mitigation factors in that deployment in those airports to be safe for flying," the airline official said.

The 3.7-3.8 GHz frequency bands were awarded to AT&T and Verizon in February after a bid for tens of billions of dollars.

Faced with concerns about potential interference problems with devices measuring altitude in airplanes, the FAA had issued new directives limiting the use of these devices in certain situations.

US airlines have protested against the potential costs incurred, and called on the authorities to quickly find a solution.



Saudi KAUST Partners with Abdul Latif Jameel Motors, Toyota to Advance Zero-Carbon Fuel Cell Technologies

The collaboration aims to support the Kingdom's decarbonization efforts across the transportation sector and beyond, contributing to the national goal of achieving net-zero greenhouse gas (GHG) emissions by 2060. (SPA)
The collaboration aims to support the Kingdom's decarbonization efforts across the transportation sector and beyond, contributing to the national goal of achieving net-zero greenhouse gas (GHG) emissions by 2060. (SPA)
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Saudi KAUST Partners with Abdul Latif Jameel Motors, Toyota to Advance Zero-Carbon Fuel Cell Technologies

The collaboration aims to support the Kingdom's decarbonization efforts across the transportation sector and beyond, contributing to the national goal of achieving net-zero greenhouse gas (GHG) emissions by 2060. (SPA)
The collaboration aims to support the Kingdom's decarbonization efforts across the transportation sector and beyond, contributing to the national goal of achieving net-zero greenhouse gas (GHG) emissions by 2060. (SPA)

Saudi Arabia’s King Abdullah University of Science and Technology (KAUST), Abdul Latif Jameel Motors, and Toyota Motor Corporation (TMC) have embarked on a strategic partnership to advance hydrogen fuel cell research in Saudi Arabia.

The collaboration aims to support the Kingdom's decarbonization efforts across the transportation sector and beyond, contributing to the national goal of achieving net-zero greenhouse gas (GHG) emissions by 2060.

As a centerpiece of this partnership, KAUST has acquired Proton Electrolyte Membrane (PEM) fuel cell modules from TMC, establishing a state-of-the-art laboratory at KAUST under its Clean Energy Research Platform (CERP) dedicated to advancing this cutting-edge technology, reported the Saudi Press Agency on Tuesday.

The facility will be at the forefront of Saudi Arabia's efforts to lead in hydrogen innovation, particularly in tailoring fuel cells to the region's unique environmental conditions.

Professor Mani Sarathy, from KAUST's Physical Science and Engineering Division, said: “At KAUST, we are excited to collaborate with TMC and Abdul Latif Jameel Motors to drive the adoption of hydrogen fuel cell technology in Saudi Arabia, aligning with the Kingdom's Vision 2030 and net-zero goals for 2060.”

“Through our Clean Energy Research Platform (CERP), we are focused on advancing research that will optimize hydrogen fuel cells for the region's specific conditions, ensuring their efficiency and reliability. This partnership demonstrates our commitment to pioneering innovations that support sustainable solutions and contribute to a greener future for Saudi Arabia and beyond,” he said.

Sarathy and his team at CERP are currently leading research efforts to explore the performance, durability, and environmental integration of PEM fuel cells, supported technically and financially by TMC and Abdul Latif Jameel Motors.

The team is conducting a series of modeling and experimental studies to assess factors such as temperature sensitivity, humidity impact, and overall efficiency, with the goal of maximizing the environmental benefits of these fuel cells within the Kingdom's infrastructure.

Saudi Arabia, with its vast renewable energy resources, is well-positioned to produce both green hydrogen and blue hydrogen using Carbon Capture, Utilization, and Storage (CCUS) technology. With this in mind, the Kingdom aims to produce approximately 2.9 million tons of hydrogen by 2030, with competitive costs for both domestic use and export.