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Cessna Citation M2 Gen2 with Garmin Autothrottles Validated by EASA and ANAC

Textron Aviation’s Cessna Citation M2 Gen2 with Garmin autothrottles receives EASA and ANAC approvals, following FAA certification, enabling operations in Europe and Brazil.

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This article is based on an official press release from Textron Aviation.

Textron Aviation has secured key international validations for its Cessna Citation M2 Gen2 equipped with Garmin autothrottles. The EASA (EASA) and Brazil’s National Civil Aviation Agency (ANAC) have officially validated the Technology, clearing the way for customer deliveries and operations in two of the world’s major aviation markets.

According to a company press release issued on May 28, 2026, this regulatory milestone follows the initial Federal Aviation Administration (FAA) certification achieved in late 2025. The integration of Garmin autothrottles is designed to significantly reduce pilot workload, particularly for those flying single-pilot operations in busy terminal areas.

As one of the most delivered light-entry jets globally, the M2 Gen2’s expansion into European and Brazilian airspaces marks a strategic step for Textron Aviation. The manufacturer aims to enhance safety and accessibility for owner-operators navigating complex, high-traffic environments.

Expanding Global Reach and Enhancing Safety

The Role of Garmin Autothrottles

The newly validated Garmin autothrottle system automates the management of engine thrust to maintain target speeds throughout various phases of flight. As detailed in the official announcement, this automation is highly beneficial during high-demand periods such as climbs, descents, and approaches.

By ensuring smoother and more predictable flight profiles, the technology allows pilots to focus heavily on situational awareness and critical decision-making. Textron Aviation emphasizes that this is a crucial upgrade for single-pilot operations. In the official press release, Lannie O’Bannion, Senior Vice President of Sales & Marketing at Textron Aviation, highlighted the customer benefits:

“For our customers, these validations unlock access to technology that helps simplify flying in some of the world’s most complex operating environments. The Citation M2 Gen2 with Garmin autothrottles delivers an intuitive cockpit experience, helping pilots manage workload with greater confidence.”

Technical Specifications and Regulatory Milestones

Aircraft Capabilities

To understand the impact of these validations, it is helpful to review the core capabilities of the Cessna Citation M2 Gen2. The Aircraft is designed and certified for single-pilot operation and is powered by two Williams FJ44-1AP-21 engines. It features the advanced Garmin G3000 avionics suite, which now seamlessly integrates the autothrottle functionality.

According to the manufacturer’s published specifications, the light jet boasts a maximum cruise speed of 404 knots and a maximum range of 1,550 nautical miles. It can climb to 41,000 feet in just 24 minutes and is capable of operating on runways as short as 3,210 feet, accommodating up to seven passengers.

Certification Expertise

Securing dual validations from EASA and ANAC highlights the manufacturer’s regulatory proficiency and commitment to international safety standards. Chris Hearne, Senior Vice President of Engineering & Programs at Textron Aviation, stated in the release:

“Earning ANAC and EASA validation for the Citation M2 Gen2 with Garmin autothrottles reinforces Textron Aviation’s proven ability to certify advanced aircraft efficiently across global regulatory authorities. This achievement reflects our deep certification expertise and our continued commitment to delivering pilot-focused innovation that meets the highest international safety standards.”

Looking Ahead to the Gen3

AirPro News analysis

We view the rapid international validation of the M2 Gen2’s autothrottles as a clear indicator of the aviation industry’s broader push toward cockpit automation in the light jet segment. By standardizing features that were historically reserved for mid-size and large-cabin business jets, Manufacturers are actively lowering the barrier to entry for owner-operators and enhancing overall airspace safety.

Furthermore, while Textron Aviation is currently expanding the global footprint of the Gen2, the company is already preparing for the next evolution of the airframe. Industry data and company statements confirm that the Cessna Citation M2 Gen3 remains in active development, with an expected entry into service in 2027. This continuous iteration suggests that Textron is highly focused on maintaining its competitive edge in the entry-level jet market by consistently integrating the latest Avionics advancements.

Frequently Asked Questions

What is an autothrottle system?

An autothrottle system is similar to cruise control for an airplane’s engines. It automatically manages engine thrust to maintain a specific target speed, which helps reduce the pilot’s manual workload during busy phases of flight like takeoff, approach, and landing.

When did the Cessna Citation M2 Gen2 receive FAA certification for autothrottles?

The aircraft achieved Federal Aviation Administration (FAA) certification for the integration of Garmin autothrottles in late 2025, prior to receiving EASA and ANAC validations in May 2026.

How many passengers can the Citation M2 Gen2 carry?

According to Textron Aviation specifications, the Citation M2 Gen2 has a seating capacity for up to seven passengers.

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Photo Credit: Textron Aviation

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Business Aviation

Gulfstream G500 and G600 Fleet Reaches 400th Delivery

Gulfstream delivers its 400th combined G500 and G600 aircraft to an Asia-Pacific customer, marking 519,000+ fleet flight hours.

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Gulfstream Aerospace Corp. has handed over the 400th aircraft from its combined G500 and G600 fleet to a customer in the Asia-Pacific region, a milestone that highlights ongoing global demand for the manufacturer’s large-cabin business jets. The aircraft was outfitted at Gulfstream’s facility in St. Louis, Missouri, prior to delivery.

In a press release issued on July 20, 2026, the Savannah, Georgia-based company confirmed the delivery and detailed the operational maturity of the two aircraft types. The milestone arrives 20 months after Gulfstream announced the 300th delivery of the G500 and G600 in November 2024.

Operational maturity and speed records

Since entering service, the combined G500 and G600 fleet has accumulated more than 519,000 flight hours and surpassed 200,000 total landings. The aircraft feature the Gulfstream Symmetry Flight Deck and the Gulfstream Cabin Experience, which the company credits with driving continued customer interest.

The G500 and G600 program has established a significant track record for speed, achieving over 190 city-pair speed records. Gulfstream aircraft hold 815 city-pair speed records overall. Both the G500 and G600 have a maximum operating speed of Mach 0.925.

The manufacturer highlighted a recent record-setting flight by a G600 to illustrate the fleet’s capabilities. The aircraft flew from Sapporo, Japan, to Savannah, Georgia, covering a distance of 5,835 nautical miles (10,806 kilometers). The flight was completed in 11 hours and 38 minutes at an average cruise speed of Mach 0.88.

“Reaching 400 deliveries is a testament to the confidence customers around the world continue to place in Gulfstream and in the G500 and G600,” said Mark Burns, president of Gulfstream Aerospace Corp. “Together, these aircraft have fueled sustained demand for our next-generation fleet and play a pivotal role in Gulfstream’s vision to offer an aircraft for every mission.”

Regulatory approvals expand operational scope

The 400th delivery follows a series of regulatory developments for the G500 and G600 earlier in 2026. On January 12, 202
Photo Credit: Gulfstream

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Business Aviation

Pilatus PC-24 Adds Gogo Galileo LEO Broadband Connectivity

Pilatus Aircraft offers Gogo Galileo LEO internet on the PC-24 with FAA and EASA certification for new builds and retrofits.

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Pilatus Aircraft has introduced Gogo Galileo high-speed internet as a factory-installed option for the Pilatus PC-24, bringing low-latency broadband connectivity to the light jet platform.

In a press release issued on July 1, 2026, the manufacturers confirmed the integration utilizes the Eutelsat OneWeb Low Earth Orbit (LEO) satellite network to provide global coverage capable of supporting video conferencing, media streaming, and cloud-based services. The system has received certification from both the Federal Aviation Administration (FAA) and the European Union Aviation Safety Agency (EASA), making it available for new production aircraft as well as retrofits for the in-service fleet.

Lufthansa Technik entertainment integration and cabin upgrades

Alongside the connectivity upgrade, Pilatus detailed a new integrated cabin management and entertainment system developed in partnership with Lufthansa Technik. The system features a 10-inch touchscreen display that allows passengers to control cabin functions and access media directly from their seats.

The audio experience has also been upgraded as part of the new package. The configuration includes four cabin loudspeakers paired with a subwoofer. To maximize cabin comfort and flexibility, Pilatus introduced a side-facing divan option measuring nearly 2 meters in length, expanding the seating and resting configurations available to PC-24 operators.

Expanding LEO connectivity across the Pilatus fleet

The PC-24 announcement follows recent connectivity advancements for the manufacturer’s turboprop line. On June 16, 2026, SD Government and Pro Star Aviation secured an FAA Supplemental Type Certificate (STC) for the installation of the Gogo Galileo HDX system on the Pilatus PC-12.

This earlier approval marked the first LEO satellite connectivity option for the single-engine PC-12. The sequential rollout indicates a broader push to equip the Pilatus product line with modern, high-speed satellite internet capabilities regardless of aircraft class.

AirPro News analysis

We view the integration of LEO satellite networks like Eutelsat OneWeb into light jets and turboprops as a critical shift in business aviation expectations. Historically, high-speed, low-latency internet was restricted to midsize and large-cabin business jets due to the size, weight, and power requirements of traditional geostationary satellite antennas. The smaller form factor of Gogo Galileo hardware allows manufacturers like Pilatus to offer heavy-jet connectivity standards on platforms like the PC-24 and PC-12 without compromising payload or aerodynamic efficiency. As LEO networks mature, factory-installed broadband is rapidly transitioning from a premium upgrade to a baseline requirement for new business aircraft.

Sources: Pilatus Aircraft

Photo Credit: Pilatus Aircraft

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Business Aviation

Hybrid-Electric Propulsion for Long-Range Business Jets

NBAA-highlighted research shows hybrid-electric systems could cut emissions on large-cabin bizjets, with certification gaps remaining.

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This article summarizes reporting by the National Business Aviation Association.

A peer-reviewed study highlighted by the National Business Aviation Association (NBAA) in its July/August 2026 publication indicates that parallel hybrid-electric propulsion systems could deliver substantial emissions reductions for large-cabin business jets in the near term. The research challenges the prevailing industry assumption that Electric-Aviation technologies are strictly limited to short-range or light aircraft applications.

Authored by Piper Aircraft structural design engineer Ambar Sarup, the paper explores the engineering hurdles of integrating hybrid-electric propulsion (HEP) into long-range platforms. Sarup began the research at the University of Illinois in 2022 by modeling HEP applications for a Gulfstream GV, later expanding the scope to provide a generic framework for the business aviation sector.

Bridging the energy density gap

The primary technical barrier to electrified long-range flight remains the stark difference in energy density between traditional aviation fuel and current battery technology. According to Dr. Jeff Belt, an aircraft battery consultant with Electrochem Technologies LLC, Jet A fuel provides approximately 12,000 watt-hours per kilogram (Wh/kg). The most advanced battery cells currently available offer between 300 and 400 Wh/kg.

Belt noted that battery technology alone cannot currently impact long-distance flight. While Bloomberg data cited by Belt projects a 3 percent to 5 percent annual increase in battery specific energy, the performance gap necessitates a hybrid approach.

Sarup advocates for a parallel system where a conventional turbofan engine and electric motors assist one another. Because the turbofan handles the majority of the thrust requirements, the necessary electric components remain relatively small. The research models a 3,400-nautical-mile flight, such as a route from New York to London. If just 5 percent of the propulsion energy comes from a hybrid-electric system, the aircraft would save 1,900 pounds of fuel and eliminate 6,000 pounds of carbon emissions.

Ground operations and emerging market entrants

Beyond in-flight propulsion assistance, alternative operational concepts offer immediate efficiency gains. Belt proposed utilizing battery power exclusively for ground operations and taxiing. The aircraft would then recharge the batteries during flight and use electric power again after landing. This method requires only small electric motors and batteries that weigh slightly more than the fuel they replace.

The broader industry is already advancing similar concepts. France-based Beyond Aero completed a preliminary design review for a Hydrogen-electric business jet targeting an 800-nautical-mile range with a capacity of six to eight passengers. Concurrently, Boeing-backed startup Evio is developing a regional airliner that utilizes a hybrid-electric propulsion system from Pratt & Whitney Canada.

Navigating Certification frameworks

Hardware development is only part of the challenge. Both Sarup and Belt emphasized the critical need for established certification pathways from the Federal Aviation Administration (FAA) and the European Union Aviation Safety Agency (EASA).

The FAA issued harmonization document AC-21.17-4, which clarifies the regulatory status of electric aircraft components. While Technical Standard Orders (TSOs) exist for various electrical parts, the agency has not established a TSO specifically for propulsion batteries. Consequently, Manufacturers must certify these batteries as an integrated part of the aircraft rather than as standalone components.

Despite these regulatory and technical hurdles, Sarup remains optimistic about the scalability of the technology.

“I think the biggest misconception is that hybrid-electric propulsion is limited to smaller, shorter-range aircraft. That’s not true. We can get the range. We can get the speed. And we can get the performance to meet the needs of tomorrow’s long-range business aircraft,” Sarup stated.

AirPro News analysis

We view the transition toward parallel hybrid-electric systems as the most pragmatic stepping stone for business aviation sustainability. While fully electric long-haul flight remains constrained by the physics of battery energy density, utilizing electric motors to supplement turbofans during peak thrust demands or ground operations offers a realistic path to lower emissions. The lack of a dedicated FAA TSO for propulsion batteries will likely force original equipment manufacturers into complex, aircraft-level certification programs. This regulatory reality may dictate the pace of hybrid-electric adoption more than the underlying technology itself.

Sources: National Business Aviation Association

Photo Credit: Pratt & Whitney

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