Training & Certification
Cirrus SR Series G7+ Gains EASA and UK CAA Certification for Europe
Cirrus Aircraft’s SR Series G7+ receives EASA and UK CAA type certification, introducing Safe Return™ Emergency Autoland to European piston aircraft.

This article is based on an official press release from Cirrus Aircraft.
Cirrus SR Series G7+ Secures EASA and UK CAA Certification, Bringing Autonomous Landing to Europe
Cirrus Aircraft has officially received type certification from both the European Union Aviation Safety Agency (EASA) and the UK Civil Aviation Authority (CAA) for its SR Series G7+ aircraft. Announced on December 9, 2025, this regulatory milestone clears the way for immediate deliveries of the manufacturer’s latest single-engine piston models, the SR20, SR22, and SR22T, to customers across Europe and the United Kingdom.
The certification marks a significant technological shift for the European general Commercial-Aircraft market. The “G7+” designation distinguishes this model from the standard G7 introduced earlier in 2024. While the G7 focused on a flight deck redesign, the G7+ introduces the Safe Return™ Emergency Autoland system as standard equipment. According to the company’s announcement, this makes the SR Series G7+ the first single-engine piston aircraft in the European market to feature a certified autonomous landing system capable of taking control during pilot incapacitation.
The “Plus” Distinction: Safety and Autonomy
The primary differentiator for the newly certified G7+ is the integration of the Safe Return™ system, powered by Garmin Autoland technology. Previously available only on the jet-powered Vision Jet, this technology has now been standardized for the piston fleet. In the event of an emergency, such as pilot hypoxia or a cardiac event, a passenger can activate the system via a button on the cabin ceiling.
Once engaged, the system performs a complex sequence of autonomous actions without human intervention:
- Stabilization: The aircraft levels its wings and assesses environmental factors, including weather and terrain.
- Communication: It broadcasts a distress message to Air Traffic Control (ATC) on emergency frequencies.
- Navigation and Landing: The system identifies the nearest suitable airport, navigates to the runway, lands the aircraft, brakes to a complete stop, and shuts down the engine.
In addition to the Autoland capability, the G7+ certification includes other automated enhancements designed to reduce pilot workload. These include “Smart Pitot Heat,” which automatically engages based on outside air temperature to prevent icing, and Cirrus IQ™ Pro, a connectivity suite that facilitates real-time health monitoring and automatic database updates.
“We are pleased to receive EASA and UK CAA approval for the SR Series G7+ with Safe Return™ Emergency Autoland… European owners enjoy premium innovation, safety and quality with the SR Series G7+.”
, Zean Nielsen, CEO of Cirrus Aircraft
Strategic Expansion in the European Market
The dual certification from EASA and the UK CAA is a critical component of Cirrus Aircraft’s growth Strategy in the region. According to data referenced in reports by Flight Global, Europe currently represents the company’s second-largest market, accounting for approximately 11% of global deliveries. Cirrus has stated a strategic objective to increase this market share to between 20% and 30%.
By securing approval for the G7+, Cirrus aims to leverage the region’s focus on safety features. The complex airspace and variable weather conditions in Europe often drive buyers toward aircraft with advanced Avionics and redundancy. The immediate availability of the G7+ allows Cirrus to fulfill existing Orders and target new buyers looking for the specific safety net provided by the Autoland system.
AirPro News Analysis: A Competitive Moat
The certification of the G7+ establishes a significant competitive advantage for Cirrus in the high-performance piston sector. While competitors like Diamond Aircraft (based in Austria) and Piper Aircraft (USA) offer strong alternatives in the single-engine piston category, Cirrus is currently the only Manufacturers offering a certified autonomous landing system in this class within the European market.
We observe that this move effectively blurs the line between high-end piston aircraft and entry-level turbines. By migrating “Vision Jet” technology down to the SR Series, Cirrus is likely attempting to upsell owner-pilots who might otherwise consider moving to a competitor’s turboprop for perceived safety gains. Furthermore, achieving simultaneous certification from both EASA and the UK CAA demonstrates a successful navigation of the post-Brexit regulatory landscape, ensuring that the G7+ faces no friction in accessing the continent’s two most vital general aviation jurisdictions.
Timeline of the G7 Evolution
The rollout of the G7 platform has been rapid. The initial SR Series G7, featuring the new touchscreen flight deck and improved ergonomics, was launched in January 2024. The “Plus” variant, adding the Autoland capability, was introduced to the US market in May 2025. With the December 2025 certification, the European market has now caught up to the North American standard, unifying the product line globally.
Deliveries to European and UK customers are expected to commence immediately.
Sources
Photo Credit: Cirrus
Training & Certification
Coptersafety to Open Oslo Helicopter Training Center in 2028
Coptersafety announces a new Level D simulator facility near Oslo Gardermoen Airport, opening in 2028 to expand Nordic training capacity.

Coptersafety will construct a new purpose-built helicopters pilot training center in Oslo, Norway, expanding its Nordic footprint to meet rising global demand for specialized rotorcraft instruction.
In a press release issued on June 24, 2026, the company announced that the new facility is scheduled to open in 2028. Located near Oslo Gardermoen Airport (OSL), the center will provide additional capacity as Coptersafety projects its existing Helsinki headquarters will reach maximum simulator utilization within two years.
Addressing capacity constraints
The decision to build a second Nordic location stems directly from increased training volume across the European aviation sector. Coptersafety Chief Executive Officer Hannu Marjoniemi stated that the impending capacity limit at the Helsinki facility necessitated the infrastructure investment.
“We are extremely happy to be taking our first step in expanding our global footprint with additional training opportunities for pilots worldwide. Our Helsinki headquarters and training center will be at maximum simulator capacity in the next two years, yet the need for pilot training in Europe and globally is only increasing,” Marjoniemi said. “Coptersafety’s new facility in Oslo will provide operators a choice in location, alongside our Helsinki headquarters and training center, and new simulator aircraft platforms.”
The Oslo site is designed to operate in tandem with the Helsinki headquarters, allowing the company to distribute its training load while offering operators geographic flexibility.
Equipment and operational focus
The Oslo center will focus heavily on specialized mission profiles, including Helicopter Emergency Medical Services (HEMS), Search and Rescue (SAR), and offshore energy operations. To support these sectors, the facility will house Level D full flight simulators configured for the Airbus H135 and Airbus H145.
The expansion aligns with a broader industry shift toward simulator-based training for high-risk rotorcraft missions. Utilizing full flight simulators allows specialized crews to practice complex emergency procedures while reducing the flight hours and associated risks of live aircraft training. Recent industry developments reflect this trend, with organizations like Poland’s medical air rescue service recently expanding their own simulator capabilities for HEMS crews.
AirPro News analysis
We view the selection of Oslo as a strategic positioning move for Coptersafety. Norway serves as a major hub for North Sea offshore helicopter operations and maintains robust SAR and HEMS networks across challenging terrain. By placing Level D simulators for the Airbus H135 and H145 directly in this market, the company can capture regional operators who previously had to dispatch crews to Finland or other European training centers. This proximity reduces operator travel costs and crew downtime, making the Oslo facility a highly competitive option for Scandinavian and North Sea rotorcraft operators.
Sources: Coptersafety
Photo Credit: Coptersafety
Training & Certification
U.S. Air Force Accepts First 8 Boeing T-7A Training Simulators
The Air Force accepted eight T-7A Ground Based Training System devices on June 12, 2026, initiating aircrew training at Joint Base San Antonio-Randolph.

The U.S. Air Force officially accepted the first eight Boeing T-7A Ground Based Training System devices at Joint Base San Antonio-Randolph in Texas on June 12, 2026, clearing the way for initial maintenance and aircrew training.
According to a June 24 press release from the Air Force Life Cycle Management Center (AFLCMC), the formal transfer of the simulators to the Air Education and Training Command (AETC) marks a critical step for the T-7A Red Hawk Advanced Pilot Training program. The T-7 architecture is the first combined aircraft and simulator system designed from its inception with Embedded Training and Integrated Live, Virtual, and Constructive (I-LVC) capabilities.
A defining feature of the system is its “one-push” software architecture. The simulators utilize the exact same operational flight Software as the physical aircraft. This design allows student pilots to interact with identical pilot-vehicle interfaces on the ground before they transition to live flight.
Transitioning to operational training
The initial eight Ground Based Training System (GBTS) units and their associated support equipment began arriving at Joint Base San Antonio-Randolph in October 2025. Following months of setup and testing, the official acceptance triggers the next phase of the program’s deployment.
“The official transfer of the devices to AETC leads into the start of Type 1 Maintenance and Aircrew Training,” said Michael Casey, Training Systems Branch Chief for the T-7 Red Hawk Division at AFLCMC. “This training is the next step in preparations to support Initial Operational Test & Evaluation and the eventual start of advanced pilot training.”
The Air Force plans to acquire a total of 46 GBTS units. Deliveries for the remaining 38 devices are scheduled between 2027 and 2035. These units will be distributed to other pilot training installations, including Columbus, Laughlin, Vance, and Sheppard Air Force Bases.
Production approval and strategic focus
The simulator acceptance follows a major programmatic hurdle cleared earlier in the year. On April 23, 2026, the T-7A Red Hawk program received Milestone C approval, authorizing low-rate initial production (LRIP). Following this approval, the Air Force awarded Boeing a $219 million Contracts covering the first 14 aircraft, along with spares and support equipment, according to reporting by Defense News.
While the Air Force program advances, Boeing has opted to limit the T-7A’s immediate expansion into other military branches. On the same day the Air Force accepted the simulators, Boeing confirmed it would not submit the T-7A for the U.S. Navy’s Undergraduate Jet Training System (UJTS) competition, which seeks a replacement for the T-45 Goshawk. Breaking Defense reported that a Boeing spokesperson cited the Navy’s specific engine qualification requirements for the F404 powerplant. Meeting those requirements would necessitate a long-cycle development effort, which Boeing determined would hamper the ability to quickly reach initial operational capability for the Navy.
AirPro News analysis
We view the “one-push” software architecture as the most consequential element of the T-7A training system. Historically, military flight training programs have struggled with configuration disparities between physical aircraft and ground-based simulators. When an aircraft receives a block upgrade, simulators often lag behind, forcing instructors to teach workarounds for software discrepancies. By utilizing identical operational flight software across both domains, the T-7A program eliminates this training friction.
Additionally, Boeing’s decision to withdraw from the Navy UJTS competition suggests a strategic prioritization. By avoiding a complex, parallel development track for a navalized engine variant, the Manufacturers can focus its engineering resources entirely on executing the Air Force LRIP contract and resolving any remaining technical hurdles in the baseline T-7A program.
Photo Credit: Air Force Life Cycle Management Center
Training & Certification
FAA Breaks Ground on $8.3M AAM Testing Facility in Oklahoma City
The FAA and DOT broke ground on the V-PAR facility in Oklahoma City to support Advanced Air Mobility research and NAS integration.

The U.S. Department of Transportation (DOT) and the Federal Aviation Administration (FAA) broke ground on an $8.3 million testing and training facility in Oklahoma City on June 25, 2026, dedicated to integrating Advanced Air Mobility (AAM) aircraft into the National Airspace System.
Located at the Mike Monroney Aeronautical Center, the Vertical Take-Off and Landing Procedures and Analysis Range (V-PAR) will provide a controlled environment for regulators and industry partners to evaluate electric and hybrid vertical takeoff and landing (eVTOL) designs. According to an FAA press release, the facility is designed to address the specific technical and operational challenges associated with the emerging AAM sector.
Facility capabilities and research focus
The physical footprint of the V-PAR site will include a dedicated vertiport, a covered hangar, and a small control-center building. These assets will support a range of testing and training activities required to establish Safety standards for new aircraft configurations.
Planned research at the Oklahoma City site will focus on aerodynamic and operational phenomena unique to VTOL aircraft. The FAA stated that studies will examine wake separation, downwash and outwash effects, radiofrequency interference, and standard vertiport operations.
Regulatory perspective and integration
The development of the V-PAR facility aligns with broader federal efforts to prepare the National Airspace System for commercial AAM operations. Regulators are currently working to adapt existing aviation safety frameworks to accommodate novel electric and hybrid Propulsion systems.
“The V-PAR is a critical step in helping the FAA better understand how to integrate advanced air mobility aircraft safely into the National Airspace System,” Department of Transportation Deputy Secretary Steven Bradbury said in the release. He noted that the site will strengthen the agency’s ability to conduct research and train personnel.
FAA Deputy Administrator Chris Rocheleau emphasized the necessity of maintaining established safety margins as new technologies enter the market.
“As advanced air mobility technologies continue to evolve, the FAA must ensure they meet the same high safety standards expected throughout the National Airspace System. The V-PAR will help us gather the data and operational insights needed to support their safe integration into the nation’s airspace,” Rocheleau said.
AirPro News analysis
The $8.3 million investment in the V-PAR facility indicates a tangible shift from theoretical rulemaking to practical, data-driven testing for the AAM sector. By establishing a dedicated physical space for evaluating downwash, outwash, and vertiport operations, we see the FAA positioning itself to generate the empirical data necessary for final Certification standards. This facility will likely become a central hub for original equipment OEMs seeking to validate their operational models alongside federal regulators.
Sources: Federal Aviation Administration
Photo Credit: Federal Aviation Administration
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