Tag Archives: #oem

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Airbus Marks Strong November Performance with 84 Aircraft Deliveries

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Airbus has turned in a strong performance for November, with 84 aircraft deliveries made to 24 customers, and 30 further orders secured.

Airbus demonstrated remarkable resilience in November 2024, successfully delivering 84 aircraft to airlines across the global market. This achievement highlights the company’s ongoing dedication to meeting the aviation industry’s increasing demand for modern, fuel-efficient aircraft.

The month’s deliveries showed a diverse portfolio, featuring a mix of single-aisle and wide-body aircraft. The A320neo family and the A350 series dominated the delivery lineup for the month.

Moreover, the company continued to secure new orders, with a further 30 orders obtained from undisclosed customers.

Key Highlights from November 2024


Total Deliveries: 84 aircraft delivered to 24 customers. 

Notable Deliveries: A mix of single-aisle and wide-body aircraft, including popular models like the A320neo family and the A350.

Notable deliveries for November were Malaysia Airlines A330neo and Icelandair’s first A321LR. Two airlines – Emirates and Ethiopian – received their first A350 widebody aircraft.

Strong Order Book: Airbus continues to secure new orders, taking a further 30 aircraft orders from undisclosed buyers. This breaks down as: 10 A321neo, 15 A330-900 and 5 A350-900 aircraft.

Analyzing Airbus’ November Performance


Airbus’ strong November performance can be attributed to several factors:Robust Demand for Fuel-Efficient Aircraft: Airlines are increasingly seeking fuel-efficient aircraft to reduce operating costs and environmental impact. Airbus’ modern fleet, including the A320neo and A350 families, aligns well with this demand.  Effective Supply Chain Management: Despite ongoing global supply chain challenges, Airbus has demonstrated its ability to manage its supply chain effectively, ensuring timely deliveries.Strong Aftermarket Business: Airbus’ commitment to providing comprehensive aftermarket services, including maintenance, repair, and overhaul, contributes to its overall business performance.

Summary 


Despite persistent global supply chain challenges, Airbus has distinguished itself through exceptional supply chain management.

The company’s ability to ensure timely deliveries demonstrates its operational excellence and strategic planning. Additionally, Airbus’ comprehensive aftermarket services, including maintenance, repair, and overhaul support, have been instrumental in bolstering its overall business performance.

Looking forward, Airbus appears well-positioned to capitalize on the aviation industry’s continued recovery from the pandemic.

The manufacturers total 2024 deliveries to date now sits at 643 aircraft deliveries to 82 customers.


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Gulfstream G700 Heads to MEBAA Show with Cert in Hand

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Long-range business jet has accumulated 65 city-pair records

Gulfstream Aerospace will display its G700 flagship at the Middle East and North Africa Business Aviation Association’s upcoming MEBAA trade show, to be held December 10 to 12 in Dubai. While marking a return to the event, the G700 will arrive this time as a fully certified aircraft. Having achieved U.S. certification in late March, the aircraft also has received validation from nine other countries, as well as EASA.

“The G700 continues to exceed customer expectations since entering service in April,” said Scott Neal, senior v-p of worldwide sales for Gulfstream.

Gulfstream believes the aircraft is well suited for the Middle East market, which tends to favor larger, longer-range models. The Gulfstream fleet in the region’s market has topped 120 aircraft, representing 40% growth over the past decade. 

With a maximum range of 7,750 nm and maximum speed of Mach 0.935, the G700 is Gulfstream’s longest-range and fastest model currently on the market, having already racked up more than 65 city-pair speed records. Able to connect Dubai to New York, the G700 can accommodate up to five living areas, seat up to 19 passengers, and sleep up to 13.

The MEBAA display follows Gulfstream’s showing of the G700 earlier this month at the Bahrain International Airshow.


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Airshow China: Airbus signs A350 seating deal with Jiatai

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Seating manufacturer Jiatai Aircraft Equipment Co. and Airbus kicked off Airshow China by signing a cooperation deal on opening day.

The agreement covers Economy Class seats for the A350 New Production Standard (NPS) and will be offered in the airframer’s buyer furnished equipment catalogue.

This cooperation with Airbus is aimed at optimising the seating layout of the A350 enhanced cabin, enabling airlines to choose a cabin configuration with one additional seat per row (1 row of 10 pax of seats), thus significantly increasing the aircraft’s passenger capacity.

Jiatai is part of the AVIC group of companies, which includes Thompson Aero Seating, ACS UK and private jet equipment supplier FACC. It has a history of working with Airbus, having been awarded ‘Premium Supplier’ status in 2023 and 2024. Its seats currently fly on more than 100 airbus aircraft.


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Embraer to attend Airshow China 2024

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The aircraft manufacturers are attending Airshow 2024 in Zhuhai China from 12 – 14 November where it will host the second Embraer Supplier Day.

The Sao Paulo-based company will also use the Airshow to promote supplier cooperation and release the company’s latest market outlook.

Embraer has attended twelve prior airshows. This is the second time they have had their own stand.

Martyn Holmes, Chief Commercial Officer Embraer Commercial Aviation, said:

“We’re continually looking for ways to promote cooperation in China by offering aircraft that improve air service and connecting second and third tier cities to satisfy the ever-growing demand for air travel. The airshow is a great platform to meet with our customers, partners and stakeholders across the region.”

The company will also use the Airshow to announce a series of updates to its E-Class jets, most notably the implementation of the ET2S system, the world’s first fully automated takeoff system. It will also announce improvements to the fuel burn efficiency, range, and optimisation across all E-Class planes.

Embraer’s Continued Expansion into Asia

In more new good news for the manufacturer, the E190-E2 and the E195-E2 have both been cleared for operation by the Chinese Air Authority, the CAAC. The first flight of an E-Class jet was in 2001, with the E170.  The ‘E2’ class was lauched in 2016. With a longer fuselage, improved engines, and longer range, they were designed to compete with the Airbus A220 aircraft.

The agreement will allow Embraer to open a series of after-care and supply centres for customers in China, with Cirium announcing in a recent report that the country will be a regional leader in aircraft investment in the coming decades.

Embraer, and Brazil more generally, have a myriad of cultural and economic ties to China. With increased tension between East and West, the market is open for further investment in both directions.

Those attending Airshow China 2024 can register at Embraer’s stand at H4B1 in Hall 6, with the announcement taking place in room 216 at 10:00 (local time) on 14 November.


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October saw Airbus deliver 62 airliners to 37 customers

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Airbus continued its strong year of aircraft production with 62 airliners being delivered in October to 37 customers around the world.

Continuing the year long trend, Single-aisle airliners such as the A320neo and A220 families dominated deliveries accounting to 56 of the 62 deliveries.

The A321neo was the most popular airliner delivered with 32 of the type going to customers including Jet2, Delta Airlines and easyJet. The A320neo was next in line with 14 deliveries to customers such as Indigo, easyJet and Chine Eastern.

Proving popular in Asia, two A319neos went to China Southern and Tibetan Airlines.

The A220 family saw seven of the -300s go to Air France, Breeze and Delta Airlines amongst others while a sole -100 model went to ITA Airways by way of Air Lease Corp.

Widebody deliveries consisted of two A350s, a -900 for Lufthansa and a -1000 for Japan Airlines with three A330neos going to Corsair, Virgin Atlantic and Delta Airlines and a A330-200 for the Royal Saudi Air Force.


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Archer Aviation gets another big order for its futuristic air taxis

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The startup will bring its electric vertical takeoff and landing aircraft to Japan.

Archer Aviation, a leading electric flight company based in San Jose, California, is bringing its futuristic air taxis to Japan. The company will sell 100 of its Midnight battery-powered aircraft to Soracle, a joint venture between Japan Airlines and Sumitomo Corporation, in a deal valued approximately at $500 million.

Archer says that Soracle plans on deploying its aircraft — which look like a cross between a drone and a helicopter — “in cities where existing ground transportation is constrained by traffic or geographic barriers,” the company said. Still, Archer will need to achieve “certain milestones in advanced aircraft delivery” before Soracle approves pre-delivery payments.

The deal is the latest to buoy Archer’s prospects of launching commercial air taxi services in cities across the world, which is says it plans on doing in the years to come. Midnight is a four-seat aircraft plus one pilot, with a range of up to 100 miles (nearly 160km), though it’s designed for back-to-back flights of 20-50 miles with minimal charge time in between. It can travel at speeds of up to 150mph (241 km/h) on pure battery power. And using tilt rotors, Midnight is designed to take off and land vertically like a helicopter and then transition into forward flight like a plane. 

Archer says it will work with Soracle and the Japanese Civil Aviation Bureau to obtain the necessary permissions and certifications. Archer says it has already begun discussions and “intends to formally apply for concurrent type certificate validation from JCAB in the near future.” The company recently received a Part 135 air carrier certification from the US Federal Aviation Administration, which the company will need to operate an on-demand air taxi service. It is currently seeking a type certification for its Midnight air taxi, which means the aircraft meets all the FAA’s design and safety standards.

Archer came out of stealth in spring 2020 after having poached key talent from Wisk (formerly Kitty Hawk) and Airbus’ Vahana project. (Wisk later sued for alleged trade secret theft, which was finally settled late last year.) The company has a $1 billion order from United Airlines for its aircraft and a deal to mass-produce its eVTOL craft with global automaker Stellantis.

Alongside Archer, other electric vertical takeoff and landing (eVTOL) companies hope to eventually win full FAA approval. That got a boost just a few weeks ago, when the agency published highly anticipated final regulations for eVTOL vehicles that it says will chart the path for the “air travel of the future.” Archer praised the FAA for “providing clear direction on what is required for the safe operation of eVTOL aircraft in the U.S.”

Air taxis, sometimes misidentified by the mainstream media as “flying cars,” are essentially helicopters without the noisy, polluting gas motors (though they certainly have their own unique noise profile). In addition to Archer, companies like Joby Aviation, Volocopter, and Beta Technologies have claimed they are on the cusp of launching services that will eventually scale up nationwide. But others have floundered; German company Lilium recently said that two of its subsidiaries were insolvent and could cease operations.


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Airbus delivers first A350-1000 in Africa

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European OEM Airbus has delivered the first A350-1000 to Ethiopian Airlines, the first of the type for any African operator.

The Ethiopian flag carrier has four A350-1000s on order and took delivery of the first unit at a ceremony in Toulouse, France.

Ethiopian Airlines plans to use the long-haul airliner on routes from on its premium network to destinations including Washington DC, London, Paris and Frankfurt.

Ethiopian’s A350s are configured to seat 395 passengers and feature Airbus’ Airspace cabin as well as the latest HBCplus satcom connectivity solution, which offers seamless, high-speed gate-to-gate connectivity.

The Airbus A350 can also operate with up to 50% Sustainable Aviation Fuel (SAF) blend allowing Ethiopian Airlines to further work towards sustainable operations.

The Airbus A350 is powered by engines designed and built in the UK by Rolls-Royce and the wings are produced at Airbus’ wing manufacturing facility at Broughton, North Wales.

Top date, over 1,340 A350s have been ordered making it one of the most successful widebody airliners ever produced.


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AI Elicits a New Generation of Avionics and Pilot Training Tools

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Aircraft avionics and training systems are evolving with artificial intelligence

Artificial intelligence (AI) is disrupting every facet of the aviation industry, and the technology is poised to completely change the way aircraft fly. While pilotless passenger flights on self-flying, AI-powered airliners won’t become a reality anytime soon, AI technology is already creeping into airplane flight decks and transforming how pilots do their jobs—and how they learn to fly.

A handful of companies developing AI-driven flight control systems are already flying autonomous aircraft experimentally, but AI isn’t piloting any aircraft yet. Rather, autonomous airplanes being flown today by companies such as Xwing, Reliable Robotics, and Merlin rely on enhancements to existing autopilot technologies and remote-piloting capabilities. Using Cessna Grand Caravans as testbeds, those companies aim to convert existing legacy aircraft into autonomous aircraft under supplemental type certificates (STCs).

“Autonomy is not necessarily equal to artificial intelligence, or machine learning, or deep neural networks, or non-deterministic systems or anything like that. Autonomous machines can be perfectly deterministic,” explained Honeywell Aerospace’s Stephane Fymat at the Vertical Flight Society’s 10th biennial autonomous VTOL technical meeting. “That’s good, because it means that the certifiability of autonomous aircraft can be a more tractable problem, especially considering some of the deeper challenges that we’re addressing right now around the explainability of AI, trust of AI, the generalizability of AI.”

The Road to Self-piloting Airplanes

Air safety regulators such as the FAA and the European Union Aviation Safety Agency (EASA) currently have no set path to certification for aircraft that fly themselves with AI. However, that’s something both agencies are looking to change in the not-too-distant future. 

EASA and the FAA have both published their own AI “roadmaps” in which the agencies spell out similar approaches to certifying AI. In EASA’s AI roadmap, a “living document” last updated in 2023, the regulator said it expects fully autonomous AI aircraft to enter service in the 2035 to 2050 timeframe—yet it expects to certify its first AI avionics system as early as next year.

According to EASA’s roadmap, initial applications for AI in the cockpit will center around pilot assistance, helping to reduce pilot workload and improve safety. Over the next decade, progressively more automated solutions will enable reduced-crew or single-pilot operations—maintaining a human in the loop—and by 2050, AI could be flying aircraft without any human supervision.

The first AI-powered avionics system appears to be on track for EASA certification by the end of this year, according to Swiss AI start-up Daedalean, which is working on an STC for an AI-powered pilot assistance system called PilotEye.

Developed in partnership with U.S. avionics manufacturer Avidyne, PilotEye uses cameras, sensors, and AI software developed with machine-learning algorithms to provide pilots with complete situational awareness plus detect-and-avoid capabilities. The company refers to its computer vision technology as “situational intelligence” because it “encompasses situational awareness as well as the ability to anticipate and react to a threatening situation.”

PilotEye uses AI and neural networks to analyze images and data from various cameras and sensors to accurately perceive its surroundings. “You don’t need AI for decision-making; you need the AI part for seeing that it’s a runway and not a road and that it’s actually going the way you wanted to land on,” Daedalean founder and CEO Luuk van Dijk .

The AI-enabled computer vision software can accurately identify objects and obstacles to determine, for example, whether a camera has spotted “a cloud that’s not actually moving, or there’s an airplane that’s coming right at you,” he explained. “These are a couple of the harder problems.”

Avidyne intends to offer the PilotEye as a feature in the Quantum avionics suite it launched last year specifically for new advanced air mobility aircraft, such as eVTOL air taxis and hybrid-electric regional airplanes. Daedalean is also developing an AI flight planning system that integrates with an aircraft’s autopilot and enables autonomous navigation. This would ensure an aircraft can safely travel through designated corridors, such as eVTOL air taxis flying at low altitudes in urban areas.

“Things such as the ability to perceive or localize the aircraft in the world, the ability to interact perhaps with ATC using natural language (as much as we would all like it to go to data), the ability to help an aircraft plan complex courses of action on the fly in novel situations, and the ability to learn from the world also might make the system less brittle, and less expensive potentially to build or maintain,” Fymat explained.

Beyond Flight Controls

Although totally AI-piloted aircraft may not enter service for several decades, some AI technology is already flying on aircraft today—just not with the power to control the aircraft. So far, the focus of AI on aircraft has revolved around improving operational efficiencies.

For example, flight management systems use AI algorithms to optimize routes and reduce fuel burn. Generative AI can also help to automate routine tasks. For example, in October, Turkish low-cost carrier Pegasus Airlines introduced AI-generated pilot announcements that provide passengers with flight information in several languages, allowing pilots to stay focused on flying.

Earlier this year, Swedish company Web Manuals launched a new AI-powered search tool for pilots’ flight manuals. Called Amelia AI, the platform functions as a chatbot that pilots can use to quickly retrieve information from within their flight manuals, allowing them to make swift and well-informed decisions.

Web Manuals’ AI search function “makes navigating through large amounts of operational and company manuals much more manageable and time efficient, with data retrieval within seconds,” said the company’s chief technology officer, Richard Sandström.

Researchers are also experimenting with AI-driven face and voice recognition software that could potentially monitor pilots’ health and mental well-being. Blueskeye AI, a U.K.-based software company, uses facial recognition and voice analysis software “to look at medically and biophysically relevant behavior, so we can use it to help assess, diagnose, monitor, and treat medical conditions that actually change your expressive behavior,” such as fatigue, pain, and anxiety, Blueskeye AI founder and CEO Michel Valstar.

When it comes to AI, the aviation industry (along with the rest of the world) is only beginning to understand the wealth of possibilities the technology can offer. While AI is changing the way aircraft and pilots fly, it’s also changing just about every aspect of ground operations, ranging from flight booking platforms to supply chain management.

AI Improves Pilot Training

Flight schools already have initiatives underway to use AI technology to make pilot training more efficient, effective, and accessible. At the forefront of those efforts is CAE, a global company that manufactures flight simulators and other training devices for airlines and flight schools.

CAE is developing AI-driven tools that can provide personalized training experiences by analyzing a student pilot’s performance and tailoring training plans to every individual’s specific needs.

“For future learning ecosystems to be successful, training providers must find ways to smartly blend the incredible advances we’re seeing in education technology with the latest understanding in learning science,” said Regan Patrick, CAE’s chief learning officer. “It’s important for CAE to understand what cognitive, behavioral, and neuroscience tells us regarding how humans learn so we can carry that forward into our training systems designs.”

According to CAE, its patented adaptive learning technology makes training more efficient and cost-effective. It implements systematic and objective rule-based measures of performance and effectiveness, and it provides instructors and students with real-time feedback. With an integrated biometric suite, it allows instructors to gauge students’ stress, engagement, and cognitive workload.

“One of the biggest challenges we see is the need to adjust mindsets, specifically migrating from traditional instructor-based training approaches to more student-centric experiential learning,” Patrick said. 

CAE has also been using AI for years to enhance its flight simulators. According to the company, AI enables a broader range of realistic and dynamic environments and scenarios, including unanticipated events that could catch a pilot by surprise. 

In addition to AI and machine-learning capabilities, CAE and other flight training companies are integrating several other cutting-edge technologies into their training products, including virtual reality, mixed reality, and data analytics. CAE’s virtual-reality training hardware includes headsets and hand-tracking technology. According to CAE, combining those types of tools with artificial intelligence will further expand the horizons for extended reality training.

Another leader in AI-enhanced flight training solutions is FlightSafety International, which is also developing AI-powered adaptive learning capabilities. In 2019, FlightSafety and its partner IBM announced plans to introduce a platform called FlightSmart that uses AI to improve training processes.

“The product, through the collaboration with IBM, is utilizing advanced algorithms, machine learning, artificial intelligence—all of those cognitive technologies—to provide the objective evidence or objective evaluation of the student’s performance,” said Matt Littrell, FlightSafety product director of AI and adaptive learning.

FlightSafety is working to integrate FlightSmart with flight simulators as well as other training processes, including task training on avionics and operating flight management systems, the use of automation, standard operating procedures, crew resource management, and maintenance.

During simulator training, the AI software monitors more than 4,000 variables in real time, objectively evaluating a student’s performance in specific maneuvers. It also distinguishes between different flying styles, which FlightSafety’s team has classified as either shy, reactive, risk-taking, or aggressive. The technology is capable of picking up nuances that instructors may not be able to directly observe, like how much force a student pilot is applying to the stick controls, for example.

FlightSafety aims to make FlightSmart available for civilian pilot training next. Eventually, the technology could expand to help train other types of aviation professionals, including maintenance technicians and drone operators, according to FlightSafety. The technology could potentially transfer over to other industries, improving training processes for locomotive conductors, maritime operators, truck drivers, and even surgeons.


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Gulfstream Completes 100% SAF Emissions Tests

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The weeklong program compared emissions from several fuels

Gulfstream Aerospace has completed a ground-test program on its G700 using various fuels, including 100% sustainable aviation fuel (SAF). The goal of the test regimen was to understand the environmental characteristics of different fuels with a focus on unblended SAF without sulfur contaminants or aromatic compounds.

While the former contributes to environmental pollution, the latter is important in the functioning of legacy engines, making gaskets swell to prevent leaks. Modern aircraft and engine systems are designed to not require the presence of aromatic compounds in fuel, but their absence in 100% SAF is leading fuel producers to investigate the use of plant-based aromatic additives to ensure the fuel is suitable for the entire turbine aircraft spectrum.

The weeklong test program was conducted at the airframer’s Savannah, Georgia headquarters facility using SAF produced by World Energy and transported by World Fuel Services. Personnel measured the gaseous and particle emissions from the G700’s Rolls-Royce Pearl 700 engines using special instrumentation from the FAA, NASA, Aerodyne Research, and the Missouri University of Science and Technology.

Preliminary data showed minimal to no sulfur contamination and a decrease in non-CO2 greenhouse gas production, demonstrating the potential of 100% SAF for improving the air quality near airports and possibly lessening the formation of contrails.

“Gulfstream has a rich history of innovating for sustainable aviation dating back to 2004 with the first ISO certification for our Savannah facility,” said Mark Burns, the airframer’s president. “Our journey continues today as we work to enhance our understanding of fuel properties and their environmental characteristics to assess business aviation’s impact on the climate, chart the path forward in decreasing that impact, and lead the industry in driving its sustainable aviation goals.”


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Pilatus PC-12 Leads US Business Aviation In Flight Activity

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Pilatus Aircraft’s PC-12 was the most flown business aircraft in the U.S. last year.

Swiss manufacturer Pilatus Aircraft said its PC-12 has emerged as the most frequently flown business aircraft in the USA over the past year.

Dubbed the “World’s Greatest Single”, the PC-12 recorded 316,328 takeoffs, representing 8.8 percent of all business aviation departures in the U.S., as reported by aviation analytics specialist WingX Advance.

According to Pilatus, roughly 70 of the world’s global fleet of over 2,000 PC-12s are in the air at any given time. In 2023, the company manufactured 101 PC-12s from its Swiss manufacturing facility, with nearly half destined for U.S. customers. The global fleet has surpassed ten million flight hours across diverse missions, used for business travel, cargo, air ambulance services, and emergency response.

Pilatus says its latest variant—the PC-12 NGX builds on its predecessor and has proven itself as the most versatile and valued business aircraft in the world with strong residual values, low operating costs, and a proven safety track record.

Meanwhile, the aircraft manufacturer continues to expand its footprint in the United States. Earlier this year, Pilatus announced it will be developing a new sales and service center in Florida which is expected to be operational in mid-2026.