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Täby Air Maintenance Gains EASA Approval for Saab 2000 Cargo Conversion

Täby Air Maintenance AB receives EASA certification to convert Saab 2000 turboprops into freighters, expanding regional cargo options.

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This article is based on an official press release from Täby Air Maintenance AB (TAM).

TAM Secures EASA Approval for Saab 2000 Cargo Conversion

Täby Air Maintenance AB (TAM), a Swedish maintenance, repair, and overhaul (MRO) specialist, has officially announced the receipt of the European Union Aviation Safety Agency (EASA) Supplemental Type Certificate (STC) for its Saab 2000 cargo conversion program. This regulatory milestone allows the company to begin converting the high-speed regional turboprop into a dedicated freighter, expanding its portfolio beyond the widely utilized Saab 340 cargo program.

According to the company’s announcement, the conversion project was developed in close collaboration with launch customer Jetstream Aviation Capital. Based in Miami, Jetstream is the largest global owner of both Saab 340 and Saab 2000 aircraft. The partnership aims to introduce a freighter that bridges the operational gap between standard turboprops and regional jets, offering a unique combination of speed and efficiency.

With EASA approval secured, TAM has stated that an application for validation by the U.S. Federal Aviation Administration (FAA) has already been submitted. This step is critical for the launch customer to deploy the aircraft within the North American cargo feeder market.

Technical Specifications and Capabilities

The newly approved Saab 2000 freighter is designed to maximize internal volume while maintaining the aircraft’s signature performance characteristics. TAM’s engineering team has focused on creating a robust cargo environment suitable for high-frequency logistics operations.

Cargo Configuration and Payload

Data provided by TAM indicates that the converted aircraft offers a total cargo volume of 55.4 cubic meters (1,960 cubic feet). The conversion involves stripping the passenger cabin to install a Class E cargo compartment featuring six net-divided loading bays. A key structural upgrade is the installation of a strengthened carbon fiber floor equipped with an integrated roller ball loading system to facilitate rapid ground handling.

In terms of weight capacity, the aircraft boasts a maximum payload of 6,622 kg (14,600 lbs). However, for operators targeting the United States market, regulatory nuances apply. As noted in technical reports regarding US FAR Part 135 operations, the payload is effectively limited to approximately 3,402 kg (7,500 lbs) to comply with specific operational certificates.

Performance Metrics

The Saab 2000 is distinct in the turboprop market due to its speed. The freighter variant retains a cruise speed of approximately 370 knots (685 km/h). According to TAM, this represents a speed advantage of roughly 30% over the smaller Saab 340 freighter. This performance allows operators to decrease sector times and extend their operational range, making the aircraft suitable for time-critical logistics that require faster delivery than a standard ATR 72 but lower operating costs than a jet.

Market Positioning and Strategic Context

The introduction of the Saab 2000 freighter comes at a time of shifting dynamics in the regional Cargo-Aircraft sector. By leveraging the existing airframes, TAM and Jetstream Aviation Capital are targeting a specific niche often referred to as “thin” routes,logistics lanes with lower volumes that demand high speed.

Corporate Developments

This announcement follows significant corporate changes at TAM. In October 2025, the company was acquired by Lars Wingefors AB, a private investment firm, from its previous owner Erik Thun AB. The new ownership structure places TAM alongside Sola Air, a regional airline also owned by Lars Wingefors. In public statements, the new ownership has expressed a commitment to long-term vertical integration, combining MRO capabilities with leasing and airline operations.

“The Saab 2000 Cargo Conversion is designed to maximize volume and payload while retaining the aircraft’s signature high-speed performance.”

, TAM Press Release

AirPro News Analysis

We observe that while the Saab 2000 freighter offers impressive specs, it enters a naturally constrained market. Only 63 Saab 2000 airframes were originally produced, meaning this program will never reach the mass-market scale of the ATR 72 freighter conversions. However, scarcity can drive value. The “Concordino” of freighters, as the Saab 2000 is sometimes called, fills a vital role for express carriers who need to cover longer distances within tight overnight windows,missions where a standard turboprop is too slow, but a CRJ200 freighter burns too much fuel.

The involvement of Jetstream Aviation Capital is the linchpin of this program. As the primary holder of the fleet, their ability to place these converted assets with operators in North-America and Europe will determine the program’s commercial success. The pending FAA approval is the next major hurdle; without it, the largest potential market for these “high-speed turboprops” remains inaccessible.

Frequently Asked Questions

What is the maximum payload of the Saab 2000 freighter?
The aircraft has a maximum structural payload of 6,622 kg (14,600 lbs). However, US operators flying under FAR Part 135 are limited to approximately 3,402 kg (7,500 lbs).
How does the Saab 2000 compare to the Saab 340 freighter?
The Saab 2000 is significantly larger and faster, offering approximately 30% higher cruise speeds (~370 knots) and increased volume compared to the Saab 340.
Is the aircraft approved for flight in the United States?
Not yet. While EASA (European) approval has been granted, TAM has submitted an application for FAA validation, which is currently pending.

Sources

Photo Credit: TAM

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MRO & Manufacturing

TAP Air Portugal Trials AkzoNobel Lightweight Aircraft Basecoat

TAP Air Portugal and AkzoNobel completed A320 trials of Aerobase UPD, achieving a 24 kg weight reduction with fleet rollout planned.

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TAP Air Portugal (TP) and AkzoNobel Aerospace Coatings have concluded operational trials of a new lightweight aircraft basecoat, achieving a 24-kilogram weight reduction on an Airbus A320 and prompting a planned fleet-wide rollout.

Announced in a joint press release on July 28, 2026, the Aerobase UPD formulation eliminates a full paint cycle and reduces total basecoat film thickness by 36 percent compared to traditional two-coat applications. The technology targets incremental weight reductions to lower fuel consumption and carbon emissions across Commercial-Aircraft operations.

Technical enhancements and paint shop efficiency

The Aerobase UPD system utilizes a validated cross-coat application technique that achieves required hiding power and finish quality in a single basecoat cycle. This eliminates the need for a second full basecoat layer and its associated flash-off stages. The simplified process removes an entire paint cycle, increasing operational productivity for applicators.

According to AkzoNobel, the enhanced formulation delivers approximately 40 percent greater sag resistance than traditional two-layer systems. This improvement is designed to increase consistency and repeatability across varying paint shop conditions and applicator experience levels. The product is certified to AMS3095 standards for global mixed-fleet Maintenance, Repair, and Overhaul (MRO) operations and integrates with existing Aerobase activators and hardeners.

“By reducing total film build and simplifying the application process, Aerobase UPD helps operators lower aircraft weight, improve paint shop productivity and maintain the high-quality finish standards required across commercial aviation fleets,” said Aurore Bournazel, Segment Manager OEM, MRO & Airlines at AkzoNobel Aerospace Coatings.

Fleet-wide economic and environmental projections

Field testing on a TAP Air Portugal Airbus A320 confirmed a 24-kilogram weight reduction, nearing the maximum 26-kilogram reduction projected for the technology. Following the initial trial, the Airlines has recoated a second Airbus A320 and is developing rollout plans to extend the lightweight basecoat across its fleet.

Based on projected fleet-wide implementation, TAP Air Portugal estimates the lighter coating will save approximately 428.5 tonnes of fuel annually. This reduction translates to more than 500,000 euros in annual cost savings and an estimated decrease of 1,353 tonnes of carbon dioxide emissions.

“The results achieved through this collaboration with AkzoNobel Aerospace Coatings demonstrate how relatively small weight reductions, when applied consistently across aircraft fleets, could contribute to meaningful long-term fuel and emissions savings, while also supporting operational efficiency,” said João Carvalho, Structures Engineer at TAP Air Portugal.

AirPro News analysis

We view this development as a clear example of how airlines are targeting marginal gains to meet stringent decarbonization targets. While a 24-kilogram reduction on a narrowbody aircraft like the Airbus A320 represents a fraction of its maximum takeoff weight, the cumulative effect across thousands of flight cycles yields material financial and environmental benefits. For European carriers operating under the European Union Emissions Trading System (EU ETS), reducing fuel burn directly lowers compliance costs. The elimination of a full paint cycle also offers MRO providers a tangible reduction in aircraft downtime, which is a critical metric in current constrained maintenance environments.

Sources: TAP Air Portugal via Cision News

Photo Credit: AkzoNobel Aerospace Coatings

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Bell 525 Relentless Completes Cold Weather and Icing Tests

Bell Textron validates the Bell 525 Ice Protection System in Canada and Michigan as FAA certification testing advances.

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Bell Textron Inc. has concluded a series of extreme cold weather and icing evaluations for the Bell 525 Relentless in Canada and Michigan, validating the aircraft’s Ice Protection System and performance in austere environments.

Announced in a press release on July 28, 2026, the test campaigns are designed to demonstrate compliance with Federal Aviation Administration (FAA) certification regulations and prepare the helicopter for real-world operations. The environmental testing represents a planned capability expansion beyond the aircraft’s initial type certification.

Validating the Ice Protection System in extreme environments

The flight test team deployed to Yellowknife, Canada, and Marquette, Michigan, to subject the Bell 525 to extreme cold, snow, high altitude, and icing conditions. Yellowknife provided the team with reliable access to temperatures as low as minus 40 degrees, along with the clear flying days necessary for the evaluations.

During the deployments, engineers evaluated engine and system start-up sequences, warm-up behavior, and overall handling qualities in dense, cold air. Doug Hamelwright, 525 Deputy Chief Engineer, noted that the aircraft performed very well during these assessments and emphasized that FAA regulations require operators to validate aircraft performance in every condition the aircraft may encounter.

The campaigns also served to mature the helicopter‘s Ice Protection System (IPS). Test Pilot Pat Lindauer explained that the seasonal testing allowed the team to refine both hardware and software within the IPS control system to meet target performance and reliability metrics.

The U.S. Army Redstone Test Center provided critical support during the icing evaluations. Lindauer credited the center with supplying essential icing test expertise that guided the Bell team through the program safely.

Our focus was to demonstrate compliance with certification regulations and mature the aircraft for real-world customer use. Beyond initial type certification, we completed additional campaigns in extreme cold, snow, high altitude and icing to ensure the aircraft performs safely across its full designed operating envelope.

Test Pilot John Brodnicki stated in the release.

Progress toward FAA type certification

The environmental testing aligns with broader certification efforts for the Bell 525 program. According to reporting by Vertical Magazine, FAA pilots began test flights in the Relentless Advanced Systems Integration Lab (RASIL) in late July 2026.

The RASIL testing involves failure mode regression testing and final software evaluation. This phase is considered one of the final steps before the program moves into function and reliability testing.

Speaking at the Farnborough International Airshow in July 2026, Bell Senior Vice President of Strategic Pursuits Jeff Schloesser stated that the manufacturer has never been closer to achieving certification for the super-medium helicopter.

AirPro News analysis

We view the completion of these cold weather and icing campaigns as a strong indicator of Bell’s confidence in the 525’s maturity. By conducting post-certification capability expansion tests concurrently with the final stages of FAA lab testing, Bell is positioning the aircraft for immediate operational utility upon entry into service. The reliance on the U.S. Army Redstone Test Center also highlights the value of cross-sector collaboration in navigating complex icing certification requirements, which remain one of the most challenging hurdles for new rotorcraft programs.

Sources: Bell Newsroom

Photo Credit: Bell

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MRO & Manufacturing

SeAH Aerospace Signs Long-Term Aluminum Supply Deal With Airbus

SeAH A&D becomes first South Korean materials maker to supply Airbus, with deliveries of aluminum alloys planned for 2028.

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SeAH Aerospace & Defense (SeAH A&D) has secured a long-term agreement to supply high-strength aluminum alloy materials directly to Airbus, becoming the first South Korean materials manufacturer to achieve this status. The milestone contracts, formalized at the Farnborough International Airshow and announced on July 26, 2026, positions the company to provide critical materials for Airbus aircraft fuselages and wing structures.

According to a press release issued by SeAH A&D, the agreement breaks traditional industry conventions by being signed prior to the completion of product certification. This early commitment reflects a strategic move by Airbus to secure a stable procurement network amid ongoing global aerospace supply chain bottlenecks and high demand for commercial aircraft.

Production timeline and facility expansion

The South Korean manufacturer will begin the quality certification process for its high-strength aluminum alloys in the second half of 2026. Following the anticipated completion of this certification, SeAH A&D plans to launch full-scale mass production and commence supply deliveries to Airbus in 2028.

To support this new long-term agreement and growing global demand, SeAH A&D is expanding its manufacturing footprint. The company is scheduled to open a new production facility in Changnyeong, South Korea, in 2027.

Expanding global aerospace footprint

The global aviation aluminum alloy market has historically been dominated by European and United States companies. SeAH A&D has been rapidly increasing its market share in this sector, securing multiple international contracts over the past year to supply materials that meet strict aerospace specifications.

Prior to the Airbus agreement, SeAH A&D signed a long-term supply agreement with Boeing in December 2025. The company has also established supply relationships with Israel Aerospace Industries (IAI) and Embraer, diversifying its portfolio across major aerospace original equipment manufacturers (OEMs).

AirPro News analysis

We view Airbus’s decision to sign a long-term agreement before product certification is complete as a clear indicator of the severe material constraints currently facing aerospace OEMs. By locking in emerging suppliers like SeAH A&D early, Airbus is actively mitigating future production risks. This contract also highlights a broader industry trend of diversifying the aerospace supply chain beyond traditional Western material providers to meet the sustained high demand for new commercial aircraft.

Sources: SeAH Aerospace & Defense (via PR Newswire)

Photo Credit: SeAH Aerospace & Defense

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