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Pilatus PC-12 Pro & Garmin G3000 PRIME Redefine Avionics

Swiss-made PC-12 Pro becomes first aircraft certified with Garmin’s revolutionary G3000 PRIME flight deck, featuring multitouch controls and AI safety systems.

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A New Era in Avionics: Pilatus PC-12 Pro and Garmin G3000 PRIME

The aviation industry reached a milestone in March 2025 when the Pilatus PC-12 Pro became the first aircraft certified with Garmin’s G3000 PRIME integrated flight deck. This partnership between Swiss aircraft manufacturer Pilatus and avionics leader Garmin represents a quantum leap in cockpit technology, blending cutting-edge interface design with robust safety systems. For operators of this iconic single-engine turboprop, the upgrade transforms what was already a versatile workhorse into a technological flagship.

Twenty years after revolutionizing general aviation with the G1000 system, Garmin continues pushing boundaries. The G3000 PRIME builds on its predecessor’s touchscreen foundations while introducing military-grade processing power and intuitive crew coordination features. Pilatus’s decision to adopt this system early demonstrates confidence in its capabilities to meet evolving pilot expectations and regulatory requirements. As business aviation demands higher connectivity and automation, this certification sets a new benchmark for midsize turbine aircraft.

Redefining Cockpit Ergonomics

The G3000 PRIME’s most striking feature is its trio of 14-inch high-resolution touchscreens, providing 40% more display area than previous systems. These sunlight-readable panels use edge-to-edge glass with fingerprint-resistant coatings, maintaining clarity in all lighting conditions. Crucially, the system recognizes up to 10 simultaneous touch inputs, enabling both pilots to interact with the same display during critical phases of flight. This dual-control capability proved essential during certification testing, allowing shared management of navigation updates or emergency procedures without control conflicts.

Complementing the primary displays are two 7-inch secondary touchscreens that handle system controls and multifunction applications. Pilatus customized the interface layout to match the PC-12’s operational profile, prioritizing frequently used functions like pressurization management and weather radar. The optional cursor control device (CCD) provides tactile feedback for pilots preferring physical inputs during turbulence. According to Garmin’s flight test data, this hybrid control system reduced checklist completion times by 22% compared to legacy avionics.

“PRIME’s multitouch technology lets pilots rest their hands on the display while making precise inputs – like using a trackpad. It’s a game-changer for workload management,” noted Carl Wolf, Garmin’s VP of Aviation Programs.



Architecture and Performance Enhancements

Beneath its sleek interface, the G3000 PRIME packs substantial computing upgrades. Quad-core processors and quadrupled RAM (8GB) enable rapid map rendering and seamless split-screen operations. System connectivity now uses gigabit Ethernet, achieving data transfer speeds 100x faster than previous avionics generations. These improvements support real-time weather overlays, traffic alerts, and synthetic vision updates without lag – critical for the PC-12’s frequent operations into unimproved airstrips.

The open architecture allows seamless integration with the PC-12 Pro’s new automated systems. An auto-throttle linked to flight envelope protection maintains optimal power settings during climbs and descents, while smart cabin pressure scheduling adjusts based on GPS-derived terrain data. During certification flights, these features helped pilots reduce fuel burn by 6% on typical mission profiles while maintaining safety margins.

Safety Systems Raising the Bar

Garmin’s signature Autoland system takes center stage in the PRIME package, capable of automatically selecting and landing at the nearest suitable airport during emergencies. This complements existing safeguards like Emergency Descent Mode and Smart Glide, which provide step-by-step guidance during depressurization or engine failures. The system’s new Runway Occupancy Awareness feature uses ADS-B In data to alert pilots about conflicting traffic up to 15 seconds earlier than traditional TCAS.

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Automated checklists tied to the Crew Alerting System (CAS) represent another safety innovation. When the system detects abnormal parameters, it not only triggers warnings but also prioritizes relevant checklist items on the primary display. During simulated engine fire scenarios, this reduced pilot response times by 30% compared to manual checklist retrieval.

Industry Impact and Future Trends

The PC-12 Pro’s rapid certification by both FAA and EASA (completed within 11 months) signals regulatory confidence in PRIME’s design philosophy. With over 30,000 Garmin flight decks already in service, this implementation creates a template for other OEMs to follow. Industry analysts predict touchscreen interfaces with shared control capabilities will become standard in next-gen aircraft, particularly as more operators transition from steam gauge-equipped legacy fleets.

Looking ahead, Garmin plans to leverage PRIME’s connectivity features for over-the-air updates and predictive maintenance integrations. The system’s LTE/Wi-Fi capabilities already allow real-time uploads of flight plans and performance data, laying groundwork for AI-assisted flight optimization. As Pilatus prepares to deliver the first customer PC-12 Pros in Q3 2025, competitors in the single-engine turboprop market face renewed pressure to match this technological leap.

FAQ

When will G3000 PRIME-equipped PC-12 Pros enter service?
Deliveries are scheduled to begin in Q3 2025 following final certification approvals.

What makes the PRIME displays unique?
The 14-inch screens allow simultaneous multi-pilot input and feature stabilization technology for precise touch control during turbulence.

Does this system include emergency automation?
Yes, Garmin Autoland can execute complete emergency landings without pilot input if necessary.

Sources:
FLYING Magazine,
FlightGlobal,
Military Aerospace

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NBAA SDC2026 Highlights Schedulers’ Role in FAA SMS Compliance

SDC2026 focuses on integrating schedulers and dispatchers into business aviation safety ahead of the FAA’s May 2027 SMS mandate.

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This article summarizes reporting by NBAA’s Business Aviation Insider and jwolf@nbaa.org.

As the business aviation sector prepares for the upcoming NBAA Schedulers & Dispatchers Conference (SDC2026) in Cleveland, Ohio, from March 24 to 26, 2026, a significant cultural shift is taking center stage. Flight departments are increasingly recognizing that schedulers and dispatchers (S&Ds) are no longer strictly administrative personnel. Instead, they are vital components of a proactive safety culture, serving as the initial checkpoint for risk mitigation long before a pilot steps onto the tarmac.

According to reporting by NBAA’s Business Aviation Insider, this evolution is being heavily accelerated by looming regulatory deadlines. With the Federal Aviation Administration (FAA) mandating formalized Safety Management Systems (SMS) for a broader swath of operators, industry consultants and veteran schedulers are urging aviation directors to fully integrate their scheduling teams into safety protocols.

We are seeing a concerted industry push to dismantle the traditional silos between the front office and the flight line. By leveraging the unique, objective vantage point of S&Ds, flight departments can identify logistical friction, manage crew fatigue, and coordinate maintenance with a higher degree of precision and Safety.

The Regulatory Clock and Historical Gaps

The May 2027 FAA Mandate

To understand the urgency surrounding SDC2026, operators must look to recent regulatory changes. On April 26, 2024, the FAA published a final rule requiring all Part 135 operators, Part 91.147 air tour operators, and specific Part 21 certificate holders to implement a formalized SMS. According to FAA documentation, the strict deadline to submit a declaration of compliance is May 28, 2027.

Because SDC2026 takes place just 14 months prior to this critical deadline, SMS implementation is a primary focus for attendees. Operators are realizing that a compliant and effective SMS requires participation from every level of the organization, not just pilots and mechanics.

Overcoming Historical Silos

Historically, the integration of S&Ds into safety frameworks has been severely lacking. Research from Pepperdine University, previously presented at NBAA events, revealed that only about 5 percent of Part 91 schedulers and dispatchers served on their company’s safety committees. This historical gap highlights a missed opportunity in proactive hazard identification.

Industry experts cited by NBAA emphasize that leaving S&Ds out of the safety equation limits an operator’s ability to catch errors early. The current industry initiative aims to close this gap, transforming dispatchers from reactive logistical coordinators into proactive safety stakeholders.

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How Schedulers and Dispatchers Drive Safety

Proactive Risk Mitigation

Trained S&Ds contribute to SMS through rigorous pre-flight risk mitigation. According to NBAA’s Business Aviation Insider, dispatchers frequently utilize a company’s Flight Risk Assessment Tool (FRAT) to evaluate itineraries well in advance. They assess destination airport suitability, including aircraft weight limits and runway requirements, and can proactively adjust departure times to avoid hazardous temperature or density altitude conditions.

“Quite often, the first line of defense when a trip is in the planning stages, these non-flying aviation professionals must identify potential hazards…”

— Jo Damato, CAM, NBAA’s Director of Educational Development and Strategy, via NBAA

Maintenance and Fatigue Management

Beyond weather and routing, S&Ds play a crucial role in maintenance coordination and crew fatigue management. When unexpected maintenance arises, such as an overnight part replacement, schedulers work directly with the Director of Maintenance to ensure adequate, qualified personnel are available. This coordination ensures that critical work receives “two sets of eyes,” a fundamental SMS principle.

Furthermore, S&Ds manage safety-critical compliance daily. They monitor crew duty and rest times, ensuring strict adherence to Federal Aviation Regulations (FARs), which directly mitigates the risks associated with pilot fatigue.

“…sometimes the S&Ds can have a slightly more objective view of what took place and the timeline around the situation than those on-site.”

— Megan Knox, CAM, Senior Operations Manager at M&N Aviation, via NBAA

Integrating S&Ds into the Safety Culture

Universal Access and Training

Best-in-class flight departments are adopting new best practices to ensure S&Ds are fully equipped to participate in SMS. According to industry reports, companies are now providing every employee, including scheduling staff, with individual logins to their SMS software. This allows S&Ds to file objective incident reports and document operational hazards without relying on pilots to do so.

Additionally, operators like M&N Aviation are incorporating recurrent SMS training for S&Ds into their annual Emergency Response Plan drills. James Lara, Principal at Gray Stone Advisors, noted in the NBAA report that schedulers must be licensed and trained to perform risk mitigation.

“They must be considered an essential part of the flight operation’s safety culture.”

— James Lara, Principal at Gray Stone Advisors, via NBAA

Technological Advancements at SDC2026

To support this cultural shift, technological integration is a major theme at SDC2026. New mobile-first trip planning platforms, such as UAS International Trip Support’s GTMx, are being showcased to the industry. These platforms consolidate real-time trip status, weather data, NOTAMs, and scheduling systems into a single interface. By moving away from fragmented email chains, S&Ds can collaborate more effectively on workflows and identify safety hazards in real time.

AirPro News analysis

We observe that the looming 2027 FAA mandate is forcing a long-overdue modernization of business aviation workflows. The historical marginalization of schedulers and dispatchers as mere “office staff” has cost operators both financially and operationally. By investing in formal SMS training for S&Ds, flight departments are not just checking a regulatory box; they are generating a tangible return on investment. Catching logistical, weather, or maintenance issues during the planning phase prevents grounded flights, reduces AOG (Aircraft on Ground) expenses, and ultimately safeguards human life. The transition showcased at SDC2026 indicates that the industry is finally recognizing that safety begins at the dispatcher’s desk.

Frequently Asked Questions

What is the FAA SMS mandate deadline for Part 135 operators?

The FAA requires all Part 135 operators, Part 91.147 air tour operators, and certain Part 21 certificate holders to submit a declaration of SMS compliance by May 28, 2027.

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How do schedulers and dispatchers contribute to an SMS?

Schedulers and dispatchers act as the first line of defense by utilizing Flight Risk Assessment Tools (FRAT), managing crew fatigue and duty times, coordinating maintenance personnel, and filing objective hazard reports through company SMS software.

Why is SDC2026 significant for SMS implementation?

Taking place in March 2026, SDC2026 occurs just 14 months before the FAA’s SMS compliance deadline, making it a critical venue for operators to learn best practices for integrating their scheduling teams into their safety cultures.


Sources:

Photo Credit: NBAA

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Jacksonville Begins Otto Aerospace Facility for Phantom 3500 Jets

Jacksonville issues demolition permit for Otto Aerospace’s new manufacturing hub at Cecil Airport, supporting the Phantom 3500 jet production and job creation.

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This article summarizes reporting by the Jax Daily Record and supplementary industry research. As the original local reporting may be subject to a paywall, this article summarizes publicly available elements, public remarks, and economic data.

Jacksonville, Florida, has taken a concrete physical step toward becoming the new manufacturing hub for Otto Aerospace. On March 24, 2026, the city officially issued an interior demolition permit for a hangar at Cecil Airport, according to reporting by the Jax Daily Record. This development signals the start of a massive infrastructure project designed to bring next-generation aviation manufacturing to the Southeast.

The permit marks the beginning of a broader $430 million capital investment plan. Otto Aerospace, currently headquartered in Fort Worth, Texas, intends to relocate its corporate base to Florida to produce its highly anticipated Phantom 3500 business jet. The relocation was initially announced at the Paris Air Show in June 2025 by Florida Governor Ron DeSantis and Otto Aerospace CEO Paul Touw.

Backed by substantial state and local incentive packages, the project is expected to deliver a significant economic boost to the region. Current projections indicate the facility will create up to 1,200 high-paying jobs by 2040, fundamentally reshaping the local aerospace sector.

Demolition and Campus Expansion

Preparing Hangar 825

The initial phase of the project focuses on Hangar 825, located at 6105 Flightline Road at Cecil Airport. Originally constructed by the U.S. Navy for fleet operations, the structure will undergo extensive modifications. According to the Jax Daily Record, the recently issued permit covers 59,130 square feet of interior demolition.

The demolition work, valued at $500,000, is being executed by Balfour Beatty Construction LLC. This site preparation is necessary to facilitate initial company operations and lay the groundwork for the eventual assembly lines required for the Phantom 3500.

A Massive Long-Term Footprint

Beyond the initial hangar renovations, Otto Aerospace has outlined an ambitious long-term expansion strategy. Industry research indicates the company plans to develop a sprawling campus occupying between 80 and 100 acres at Cecil Airport. By January 1, 2032, the aerospace manufacturer aims to construct over 600,000 square feet of dedicated office and manufacturing space.

The Phantom 3500: Redefining Business Aviation

Aerodynamic Innovation and Sustainability

Founded in 2008 by Bill Otto as Otto Aviation, the company originally focused on the Celera 500L before rebranding in September 2025 to concentrate on the Phantom 3500. The new aircraft is marketed as a clean-sheet, twin-engine midsize business jet that prioritizes fuel efficiency and sustainability.

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The Phantom 3500 is designed to carry up to nine passengers with a cabin height of 6.5 feet. It boasts a projected range of 3,500 nautical miles and a cruising altitude of 51,000 feet. The jet’s unique “football-shaped” fuselage utilizes a carbon-fiber composite and full laminar flow design. According to company specifications, this aerodynamic approach reduces drag by 35 percent and cuts fuel consumption by more than 60 percent compared to traditional jets in its class. When utilizing Sustainable Aviation Fuel (SAF), carbon emissions could be reduced by up to 90 percent.

To further streamline the fuselage, the aircraft eliminates traditional porthole windows. Instead, it utilizes a system dubbed “Super Natural Vision.”

The jet features 72-inch high-definition digital displays that provide passengers with window-like views using exterior cameras.

Flight testing for the Phantom 3500 is scheduled to commence in the 2026 to 2027 timeframe, with FAA Part 23 certification and commercial entry into service targeted for 2030.

Market Validation and the Flexjet Order

The aircraft has already secured significant market validation. In September 2025, fractional ownership provider Flexjet became the launch customer, placing a firm order for 300 aircraft. While exact commercial terms remain undisclosed, industry estimates place the value of the Flexjet contract between $5 billion and $6 billion. Furthermore, Flexjet is slated to serve as an authorized service center for the new fleet.

Economic Incentives and Job Creation

State and Local Backing

To secure the $430 million capital investment, Florida state and local governments assembled a highly competitive incentive package. The State of Florida approved Corporate Income Tax Credits (CITC) and High Impact Performance Incentive (HIPI) grants.

At the local level, the Jacksonville Aviation Authority (JAA) approved a $34.9 million package in May 2025. This includes $22.5 million dedicated to site preparation and the extension of taxiway E-1, alongside $3.73 million in rent and maintenance abatements, and $1.5 million in rent credits for Hangar 825. Additionally, in June 2025, the Jacksonville City Council voted unanimously (18-0) to approve a $20 million incentive package via a 20-year, 75 percent Recapture Enhanced Value (REV) Grant.

In return, Otto Aerospace has committed to creating at least 400 jobs with an average salary of $90,000 by the end of 2031, with the potential to scale up to 1,200 employees by 2040.

AirPro News analysis

The arrival of Otto Aerospace represents a transformative moment for Cecil Airport and the broader Jacksonville aviation sector. Since taking ownership of the former U.S. Navy base in 1999, the JAA has invested $372 million into capital projects, steadily building the site’s infrastructure.

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We view this development as a critical anchor for the region’s aerospace ambitions. Cecil Airport is already home to Cecil Spaceport, where the JAA has invested $31 million and is actively seeking a federal re-entry license from the FAA to allow commercial spacecraft to land on its 12,500-foot runway. By combining next-generation, sustainable aviation manufacturing with commercial spaceflight capabilities, Jacksonville is uniquely positioning itself as a premier, multi-domain aerospace hub in the Southeastern United States. The successful execution of the Otto Aerospace campus will likely attract further tier-one and tier-two suppliers to the region.

Frequently Asked Questions

What is the Phantom 3500?

The Phantom 3500 is a midsize, twin-engine business jet developed by Otto Aerospace. It utilizes a unique aerodynamic design to significantly reduce fuel consumption and carbon emissions, and features digital displays instead of traditional passenger windows.

When will the new manufacturing facility open?

Site preparation and interior demolition began in March 2026. Otto Aerospace plans to construct over 600,000 square feet of manufacturing and office space at Cecil Airport by January 1, 2032.

How many jobs will the project create?

The company has committed to creating 400 jobs with an average salary of $90,000 by the end of 2031, with long-term projections estimating up to 1,200 local jobs by 2040.


Sources:
Jax Daily Record
Industry Research & Economic Data

Photo Credit: Otto Aerospace

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Bombardier Delivers First Global 8000 to NetJets Fleet

Bombardier delivers the first Global 8000 to NetJets, featuring Mach 0.95 speed, 8,000 nm range, and enhanced passenger comfort.

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This article is based on an official press release from Bombardier.

On March 26, 2026, Bombardier marked a major milestone in ultra-long-range business aviation by delivering its first Global 8000 aircraft to NetJets. According to the official company press release, NetJets serves as the fleet launch customer for this flagship jet, officially bringing the highly anticipated aircraft into large-scale fractional ownership operations.

The delivery initiates NetJets’ strategic plan to build a 24-strong fleet of the Global 8000, an aircraft celebrated for its industry-leading speed and exceptionally low cabin altitude. We note that this handover represents the culmination of a multi-year development and certification process, introducing what industry observers have dubbed a “Concorde successor” to the broader private aviation market.

Originally announced as the fleet launch customer in November 2022, NetJets placed a firm order for four aircraft, valued at $312 million at the time, and converted eight existing Bombardier orders to the new model. Furthermore, the press release indicates that the two companies are collaborating to upgrade NetJets’ current in-service fleet of Global 7500s to the new Global 8000 specifications. NetJets, a Berkshire Hathaway company, currently operates a diverse global fleet of over 850 aircraft.

Aircraft Specifications and Technological Edge

Breaking the Speed and Range Barriers

The Global 8000 is marketed heavily on its lack of compromises regarding speed and distance. According to Bombardier’s specifications, the aircraft features an industry-leading top speed of Mach 0.95 (approximately 627 mph), making it the fastest civil aircraft in production since the Concorde. During testing in 2021, a Global 8000 test vehicle intentionally broke the sound barrier, reaching Mach 1.015.

In addition to its speed, the aircraft boasts a range of 8,000 nautical miles, which translates to roughly 16.75 hours of non-stop flight. This operational range opens up ultra-long-haul city pairs for NetJets clients, such as Dubai to Houston, Singapore to Los Angeles, and London to Perth.

Cabin Experience and Operational Agility

Bombardier highlights passenger health and comfort as key differentiators for the Global 8000. The aircraft features the lowest cabin altitude in business aviation, maintaining an equivalent of 2,691 feet when cruising at 41,000 feet. This pressurization level is designed to significantly reduce physiological stress and jet lag on ultra-long-haul routes.

The cabin interior includes Bombardier’s proprietary Pũr Air system with advanced HEPA filtering, the Soleil circadian lighting system, and Nuage seating that features a zero-gravity position. Despite its size and range, Bombardier claims the aircraft’s advanced wing design, featuring leading-edge slats, provides the short-field takeoff and landing performance of a light jet. According to the manufacturer, this allows the Global 8000 to access up to 30% more airports (over 2,000 destinations) than its closest rival.

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The NetJets Partnership and Fleet Strategy

A Shared Vision of Excellence

The delivery ceremony at the Laurent Beaudoin Completion Centre underscored the long-standing relationship between the Canadian manufacturer and the fractional ownership giant. Executives from both companies emphasized the strategic importance of the Global 8000 to their respective portfolios.

“The Global 8000 is redefining the business aviation landscape with its unmatched performance, signature smooth ride and innovative design, and we are thrilled to be providing our longtime, valued partner NetJets with its first Global 8000 aircraft. With this landmark first delivery, NetJets’ clients will now be able to experience the revolutionary performance attributes and unmatched luxury the Global 8000 delivers – the most impressive business jet in the skies.”

— Éric Martel, President and CEO, Bombardier (via company press release)

“Our long-standing partnership with Bombardier has been built on a shared vision of excellence and innovation in business aviation. The Global 8000 is the ultimate expression of that partnership, and we are proud to be the first to bring this remarkable aircraft to our fleet. The range and features of the Global 8000 aircraft perfectly align with NetJets’ commitment to offering safety, service, and access at an extraordinary level and empowering Owners to do more and miss less.”

— Patrick Gallagher, President, NetJets Aviation (via company press release)

Certification Timeline and Market Context

The Road to Fleet Delivery

The March 26 handover to NetJets follows a rigorous certification timeline completed late last year. According to industry data, the Global 8000 received its Transport Canada (TC) Type Certification on November 5, 2025. This was followed by the first overall delivery to a private buyer, Canadian businessman Patrick Dovigi, operated by Chartright Air Group, on December 8, 2025. The aircraft subsequently received U.S. Federal Aviation Administration (FAA) certification on December 19, 2025, clearing the path for U.S. fleet operations like those of NetJets.

AirPro News analysis

The ultra-long-range business jet market is currently defined by a fierce duopoly between the Bombardier Global 8000 and the Gulfstream G800. When comparing the two flagship models, the Global 8000 holds slight but highly marketable advantages in several key metrics.

In terms of speed, the Global 8000 edges out the G800’s maximum operating speed of Mach 0.935 with its Mach 0.95 capability. However, the most significant differentiator lies in cabin size and layout. The Global 8000 features a cabin length of 54 feet 5 inches, compared to the G800’s 46 feet 10 inches. This extra length allows the Bombardier jet to be the only aircraft in its class offering four true living zones plus a dedicated, enclosed crew rest area. By contrast, G800 operators must sacrifice a passenger zone if a dedicated crew rest is required for long-haul flights. Furthermore, the Global 8000’s cabin altitude of 2,691 feet beats the Gulfstream G800’s 2,900 feet, providing a marginal but distinct advantage in passenger comfort on 16-hour flights.

Frequently Asked Questions

  • What is the top speed of the Bombardier Global 8000?
    The aircraft has a top operating speed of Mach 0.95 (approx. 627 mph).
  • What is the maximum range of the Global 8000?
    It can fly 8,000 nautical miles non-stop, equating to roughly 16.75 hours of flight time.
  • How many Global 8000s will NetJets operate?
    NetJets plans to build a fleet of 24 Global 8000 aircraft and is also upgrading its existing Global 7500 fleet to Global 8000 specifications.

Sources

Photo Credit: Bombardier

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