Training & Certification
CAE Delivers First Full-Flight Simulator for Eve Air Mobility Pilots
CAE will provide the first CAE 3000 Series full-flight simulator to train Eve Air Mobility eVTOL pilots, supporting certification and training before 2027 service.

CAE to Deliver First “Breakthrough” Simulator for Eve Air Mobility Pilots
At the Singapore Airshow on February 4, 2026, CAE announced a significant milestone in the electric vertical take-off and landing (eVTOL) sector. The training technology giant confirmed it will deliver the first CAE 3000 Series full-flight simulator (FFS) to Embraer-CAE Training Services (ECTS). This device is specifically designated to train the “first wave” of pilots for Eve Air Mobility, Embraer’s eVTOL subsidiary, ahead of the aircraft’s planned entry into service in 2027.
According to the company’s official statement, this delivery represents a critical step in establishing the infrastructure required to operate urban air mobility (UAM) networks safely. The simulator will be used not only for pilot training but also to support the certification of Eve’s aircraft, leveraging high-fidelity visuals to replicate complex urban environments.
Gaming-Grade Visuals for Urban Flight
The core of this announcement centers on the technological capabilities of the CAE 3000 Series simulator. CAE describes the device as a “breakthrough” due to its integration of the CAE Prodigy™ Visual System, which is powered by Epic Games’ Unreal Engine. While traditional flight simulators often prioritize high-altitude terrain rendering, this new system is optimized for the unique challenges of low-altitude urban flight.
In its press release, CAE highlighted the necessity of this visual fidelity for eVTOL operations:
“The system brings high-fidelity, gaming-grade graphics to professional aviation training, allowing for the ultra-realistic simulation of dense urban environments.”
The simulator is designed to render thousands of dynamic entities simultaneously, including pedestrians, ground traffic, and drones. This level of detail is essential for pilots who will be navigating congested city centers and landing on vertiports surrounded by skyscrapers. The system also features physics-based lighting to simulate realistic shadows and variable weather conditions in “urban canyons,” providing critical visual cues for vertical landings.
Strategic Timeline and The “First Wave”
The delivery of this simulator is timed to align with Eve Air Mobility’s commercial roadmap. With an entry-into-service target of 2027, the industry faces a tight schedule to qualify the initial cadre of aviators. Embraer-CAE Training Services (ECTS), a joint venture established in 2007 and expanded to include Eve in 2024, will operate the device.
According to data released by Eve Air Mobility, the company holds Letters of Intent (LOI) for approximately 2,900 aircraft. This substantial backlog suggests a future requirement for thousands of qualified pilots. The initial training phase will focus on test pilots, instructor pilots, and the launch operators responsible for the aircraft’s debut.
While the specific location for this first simulator unit was not disclosed in the announcement, ECTS currently operates major training hubs in São Paulo, Dallas, and London (Burgess Hill).
AirPro News Analysis: Solving the Pilot Bottleneck
We view this announcement as a pivotal moment for the eVTOL industry, shifting the focus from aircraft prototyping to operational readiness. One of the most significant hurdles facing the Advanced Air Mobility (AAM) sector is the potential shortage of qualified pilots. By deploying a Level D-capable full-flight simulator, the highest standard of realism in aviation, CAE and Eve are addressing this bottleneck directly.
Furthermore, the use of such high-fidelity simulation for certification purposes signals a mature approach to regulatory compliance. By validating the aircraft and training pilots in a virtual environment that can simulate “edge cases”, such as sudden wind gusts between buildings or rogue drones, the partners are likely aiming to build confidence with regulators like ANAC in Brazil and the FAA in the United States.
Sources
Sources: CAE Press Release
Photo Credit: CAE
Training & Certification
Textron Aviation Launches Kansas Youth Aviation Apprenticeship
Textron Aviation launched Kansas’ first state-registered aviation youth apprenticeship, offering paid training from age 16 in A&P, avionics, and engine buildup.

Textron Aviation has launched Kansas’ first state-registered aviation youth apprenticeship program, creating a paid, multi-year training pathway for high school students starting at age 16. The initiative aims to build a localized workforce pipeline for the aerospace manufacturer by integrating classroom education with hands-on technical experience.
Announced in a press release on September 30, 2026, the program operates in collaboration with the Kansas Office of Apprenticeships, WSU Tech, and Tri County Tech. The first cohorts of students began their training in the fall of 2026, entering specialized tracks designed to address the aviation industry’s growing demand for skilled maintenance and manufacturing professionals.
Program structure and educational partnerships
The youth apprenticeship initiative encompasses three distinct technical tracks distributed across two Kansas facilities. In Wichita, students can pursue Airframe & Powerplant (A&P) or Avionics disciplines through a partnership with WSU Tech. In Independence, Kansas, the program offers an Engine Buildup track in collaboration with Tri County Tech.
The curriculum was developed alongside several regional educational institutions to align high school graduation requirements with industry technical standards. Participating schools include Wichita Public Schools, Haysville Public Schools, Kapaun Mt. Carmel Catholic High School, and Dewey High School in neighboring Oklahoma.
Students entering the program engage in structured skill development that spans up to three years. Upon completion, participants earn a recognized credential through the Kansas Office of Apprenticeships, positioning them for immediate employment in the aerospace sector or further technical education.
Maggie Topping, Senior Vice President of Human Resources and Communications at Textron Aviation, stated that the program is designed to introduce students to the aerospace sector before they finalize their post-secondary plans.
“The youth apprenticeship program is about opening the door earlier for students who can see themselves building a future in aviation. By working with our education and workforce partners, we’re helping students gain meaningful experience, build confidence and develop the skills our industry needs for the future,” Topping said.
Expanding the aerospace workforce pipeline
The aviation manufacturing and maintenance sectors face a sustained demand for skilled labor. Aerospace original equipment manufacturers (OEMs) and maintenance, repair, and overhaul (MRO) providers are increasingly turning to apprenticeship models to secure a long-term workforce. By connecting education directly with industry requirements, companies can train workers on specific equipment and procedures while students are still completing their secondary education.
State officials view the integration of registered apprenticeships into high schools as a critical economic development tool. The Kansas Office of Registered Apprenticeship has supported the expansion of these programs across multiple industries, with aviation representing a major component of the state’s manufacturing base.
“We already are seeing positive results in other sectors when Kansas employers bring Registered Apprenticeship directly to high school students,” said Shonda Anderson, Director of the Kansas Office of Registered Apprenticeship. “Textron Aviation is leading the way in aviation and advanced manufacturing, giving young Kansans the opportunity to earn while they learn, and building the skills they need for high-wage, in-demand careers right here in Kansas. This is more than preparing students for the future – it’s connecting youth with great aviation careers right now.”
Educational partners also emphasized the dual benefits of the earn-and-learn model. Dr. Sheree Utash, President of WSU Tech, noted that the direct path into high-demand careers serves the interests of both the students and the broader regional economy, describing the initiative as a direct path into high-demand aviation careers.
Textron Aviation’s history of workforce investments
The launch of the youth apprenticeship program follows several years of targeted workforce development initiatives by Textron Aviation. The company, a subsidiary of Textron Inc., is a major aerospace manufacturer responsible for the Cessna, Beechcraft, and Pipistrel brands. Its product portfolio spans business jets, turboprops, light and high-performance pistons, as well as special mission and military trainer aircraft. According to the company, Textron Aviation has produced more than half of all general aviation aircraft worldwide and supports a customer base spread across more than 170 countries.
To support its production rates and global operations, Textron Aviation launched its first state-registered adult apprenticeship cohort in August 2023. That inaugural group included two paint apprentices and eight maintenance apprentices. The cohort completed their training and earned certificates of completion in August 2025.
The success of the initial adult program attracted state-level financial support. In late 2025, Kansas Governor Laura Kelly announced that Textron Aviation was one of 12 businesses selected to receive a portion of a $535,000 state grant. The funding was specifically allocated to expand registered apprenticeship programs across Kansas. Textron Aviation utilized the grant to grow its A&P apprenticeships in collaboration with WSU Tech, a development the company highlighted in May 2026.
The first cohorts of the new youth program are expected to complete their structured skill development by 2029. The initiative represents a structural shift in how aerospace manufacturers in the region recruit and train technical talent, moving the point of entry earlier in the educational timeline to secure the next generation of aviation professionals.
Photo Credit: Textron Aviation
Training & Certification
USAF T-7A Red Hawk Completes First LVC Training Flight
AETC links a live T-7A Red Hawk to ground simulators in its first Live-Virtual-Constructive flight at Joint Base San Antonio-Randolph.

The United States Air Force (USAF) Air Education and Training Command (AETC) has successfully executed its inaugural Live-Virtual-Constructive (LVC) flight, linking an airborne Boeing T-7A Red Hawk directly with ground-based simulators.
The September 16, 2026, milestone at Joint Base San Antonio-Randolph validates the digital architecture required to train future combat aviators. The integration allows live aircraft and synthetic environments to share a common operating picture in real time, eliminating the logistical expense of fielding physical adversary aircraft. The achievement was detailed in an AETC press release.
Fusing live flight with synthetic battlespaces
The operation involved instructor pilots from the 99th Flying Training Squadron (99th FTS), including unit commander Lt. Col. Michael Trott and operations officer Lt. Col. Phillip Bourquin, working alongside civilian simulator instructors from the 12th Training Squadron (12th TRS). The flight utilized a T-7A aircraft designated APT-4 and the T-7A Ground-Based Training System (GBTS).
The LVC technology enables ground-based simulators to communicate directly with airborne aircraft via secure, high-bandwidth tactical data links. This capability allows instructors to inject constructive threats, such as surface-to-air missile rings and electronic warfare jamming, directly into the cockpit displays of the live aircraft.
Robb Erickson, a retired Air Force colonel and the T-7A Civilian Simulator Instructor Lead for the 12th TRS, highlighted the operational shift.
“When APT-4 took flight, we weren’t just flying another training sortie. We established a live, bidirectional data link fusing an airborne aircraft directly into our simulators and synthetic battlespace,” Erickson stated.
The successful flight confirms the core digital architecture of the training system. Erickson noted that proving the aircraft and simulators can communicate and fight together in the same virtual sky keeps the program on track to deliver cutting-edge training. He added that the power of LVC lies in its density, complexity, and interconnectivity. By tethering simulators directly to the live aircraft in the airspace, student pilots can experience the realistic, sensor-saturated operational environment they will face in front-line fighters and other combat aircraft.
Ryan Sparkman, a retired Air Force lieutenant colonel and civilian simulator instructor with the 12th TRS, emphasized the contrast with previous training methods. According to Sparkman, the synthetic injection challenges aircrews with threat presentations and sensor-management puzzles that were impossible to replicate on legacy flying platforms.
The Boeing T-7A Red Hawk transition
The T-7A Red Hawk is an advanced pilot training system designed to replace the aging fleet of T-38 Talon trainers. The legacy T-38 has been in service for approximately 65 years, necessitating a modernization effort to prepare pilots for fifth- and sixth-generation fighters. The digitally designed T-7A features an open architecture digital fly-by-wire control system and modern avionics.
The USAF plans to acquire 351 T-7A jets to provide training for future fighter and bomber pilots. The Boeing Company delivered the first T-7A jet, designated APT-5, to the USAF on December 5, 2025. The aircraft was officially inducted into AETC service at Joint Base San Antonio-Randolph on January 12, 2026. The 12th Flying Training Wing, based at the installation, is currently preparing for the arrival of the full production fleet.
The September 16 flight builds on earlier connectivity tests conducted during the development phase. On September 24, 2025, Boeing software engineers in St. Louis successfully tested connectivity between a ground-based simulator and an in-flight T-7A flying 130 miles away.
Preparations for the broader rollout of the training system are advancing alongside the technical milestones. On September 28, 2026, Boeing announced that the first class of seven contract instructor pilots completed a 31-day T-7A Red Hawk simulator course at Joint Base San Antonio-Randolph. This completion establishes the foundational instructor base required to operate the new training system.
AirPro News analysis
The successful demonstration of LVC capabilities within the T-7A program represents a fundamental change in military flight training economics and security. By tethering simulators directly to live aircraft, the USAF can generate complex, sensor-saturated environments without the prohibitive cost of launching multiple adversary aircraft. This density and interconnectivity are critical for preparing student pilots for the operational realities of front-line combat aircraft.
Beyond cost savings, the LVC architecture addresses a growing operational security requirement. Training against advanced constructive threats in a secure, synthetic environment prevents adversaries from observing physical aircraft executing classified tactics or reacting to specific electronic warfare profiles in open airspace. As the USAF prepares to field its next generation of combat aircraft, the ability to simulate high-end threats digitally will be as critical as the aerodynamic performance of the trainer itself. We view the successful integration of the GBTS with live flight operations as a critical de-risking event for the broader T-7A procurement strategy.
Photo Credit: AETC – Courtesy Photo by Robert Erickson
Training & Certification
Boeing Invests $17M CAD in Saskatchewan Aviation Learning Centre
Boeing and SIIT open expanded SALC in Saskatoon, launching a new AME-E Avionics program for Indigenous learners.

On September 25, 2026, the Saskatchewan Indian Institute of Technologies (SIIT) and Boeing officially opened the expanded Saskatchewan Aviation Learning Centre (SALC) in Saskatoon, Saskatchewan, a facility designed to address Canada’s critical shortage of aircraft maintenance engineers.
According to a Boeing Canada press release, the manufacturers invested $17 million CAD into the project. The upgraded center features modern classrooms, a specialized avionics lab, and expanded hands-on training spaces to support SIIT’s new Aircraft Maintenance Engineer – Category E (AME-E) Avionics program. The expansion aims to broaden educational access for a student body that is over 95 percent Indigenous.
Fulfilling Industrial and Technological Benefits obligations
Boeing’s financial commitment to the SALC stems from the Government of Canada’s selection of the Boeing CP-8A Poseidon as its Multi-Mission Aircraft. The $17 million CAD investment fulfills specific obligations under Canada’s Industrial and Technological Benefits (ITB) program, which requires defense contractors to make investments in the Canadian economy equal to the value of their defense contracts.
Stephen Fuhr, Secretary of State for Defence Procurement, stated that the ITB program is delivering tangible results for Canadians. He noted that the new facility will create training opportunities in the aerospace sector and continue to grow the country’s aviation capabilities.
Boeing Canada President Al Meinzinger emphasized the long-term impact of the investment on the local workforce.
“We’re very proud of what our longstanding partnership with SIIT has achieved, particularly in expanding access to high-quality aerospace education here in Saskatchewan. This will help create meaningful opportunities for Indigenous learners and it’s exciting to know that students trained at the SALC will bring their talent and skills to the aerospace sector for years to come.”
Expanding Indigenous access to aerospace careers
SIIT was established in 1976 by Saskatchewan First Nations Chiefs and is celebrating its 50th anniversary as an educational institution in 2026. Boeing made its initial contribution to the establishment of the SALC in 2010. Following years of planning, officials held a formal groundbreaking ceremony for the expansion on April 4, 2025.
Riel Bellegarde, President & CEO of SIIT, highlighted the evolution of the partnership over the past 16 years.
“Today, as we celebrate our 50th anniversary as an institution we can reflect on how far that vision has come and what this expansion will make possible for Indigenous learners in aviation and aerospace. Together, we are creating more opportunities for the next generation of Indigenous learners to build their skills, pursue meaningful careers and help shape the future of aviation and aerospace in Canada.”
Provincial leaders also underscored the economic importance of the facility. Ken Cheveldayoff, Saskatchewan Minister of Advanced Education, described the expansion as an important investment that ensures students have access to high-quality, hands-on training close to home. Eric Schmalz, Saskatchewan Minister of Immigration and Career Training, added that private funding combined with provincial support for the aircraft maintenance engineer program represents a critical investment in the skilled trades.
AirPro News analysis
We note that Boeing’s $17 million CAD investment serves a highly effective dual purpose for the manufacturer. It satisfies mandatory offset requirements tied to the CP-8A Poseidon procurement while simultaneously building a localized pipeline of technical talent. As the Canadian aviation sector faces a sustained deficit of qualified maintenance personnel, targeted investments in specialized training facilities like the SALC are critical for long-term industry stability. The specific focus on avionics through the new AME-E program directly aligns with the increasing complexity of modern aircraft systems, ensuring graduates possess the exact skills currently demanded by operators and maintenance, repair, and overhaul (MRO) providers.
Sources: Boeing Canada, Saskatchewan Indian Institute of Technologies
Photo Credit: Saskatchewan Indian Institute of Technologies
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