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Lee Air Acquires Advent Aircraft Systems Expanding Braking Tech in Wichita

Lee Air acquires Advent Aircraft Systems, relocating manufacturing to Wichita and adding eABS™ and ePBS™ braking systems for aviation and UAS markets.

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This article is based on an official press release from Advent Aircraft Systems and Lee Air, Inc.

Lee Air, Inc. Acquires Advent Aircraft Systems, Consolidating Braking Tech in Wichita

Wichita-based aerospace manufacturers Lee Air, Inc. has officially acquired the assets of Advent Aircraft Systems, Inc., a move that transfers significant anti-skid braking technology and manufacturing operations to the “Air Capital of the World.” The acquisition, which closed on December 31, 2025, was announced on January 8, 2026.

According to the company’s announcement, all manufacturing and engineering operations previously based in Tulsa, Oklahoma, will relocate to Lee Air’s 85,000-square-foot facility in Wichita, Kansas. The acquisition marks a strategic expansion for Lee Air, adding proprietary braking solutions for both general aviation and the rapidly growing Uncrewed Aircraft Systems (UAS) market to its portfolio.

Strategic Expansion of Capabilities

Lee Air, Inc., a family-owned firm founded in 1981, is well-established in the engineering and manufacturing of aircraft systems. By acquiring Advent, the company integrates a specialized product line that includes the eABS™ (anti-skid braking system) and ePBS™ (electric power braking system).

In a press statement regarding the acquisition, Bennie Lee, President of Lee Air, emphasized the synergy between the two companies:

“The Lee Air team is enthusiastic about the addition of the Advent products to our established line of aircraft systems and components. We look forward to offering our existing and new customers this additional capability for their manned and uncrewed aircraft.”

Ken Goldsmith, President of Advent Aircraft Systems, noted that the deal provides the necessary infrastructure to scale production:

“The transaction with Lee Air is intended to help Advent’s aircraft braking systems and components realize their full market potential and confidently meet increased production rates in the coming years.”

Technology Focus: Safety and UAS Integration

The acquisition centers on two primary technologies developed by Advent. The most prominent is the eABS™, a GPS/digital anti-skid system designed for turbine aircraft up to 20,000 lbs. Maximum Takeoff Weight (MTOW).

Unlike traditional hydraulic systems that require complex power boosters, the eABS is compatible with manual braking systems. It is currently certified for platforms including the Beechcraft King Air (B200/B300), Pilatus PC-12, Eclipse 500/550, and Textron T-6 Texan II. Key benefits cited in product documentation include:

  • Runway Performance: Potential reduction in landing distances and Takeoff Field Length (TOFL) by up to 10%.
  • Safety: Prevention of tire flat-spotting and improved directional control on contaminated runways (ice, snow, water).
  • Feedback: Haptic pedal feedback for pilots during anti-skid operation.

Additionally, the deal positions Lee Air to capture market share in the defense and unmanned sectors through the Advent ePBS™. This “brake-by-wire” solution is designed specifically for UAS and all-electric aircraft, sectors where demand for lightweight, digitally controlled braking systems is projected to rise.

AirPro News Analysis

This acquisition reflects a broader trend of supply chain consolidation within the general aviation sector. By absorbing Advent’s specialized technology, Lee Air moves beyond component manufacturing into proprietary safety systems, capturing high-value aftermarket revenue through retrofits.

Furthermore, the relocation of operations from Tulsa to Wichita reinforces the latter’s status as a central hub for aerospace engineering. Proximity to major OEMs like Textron Aviation, which manufactures the King Air and T-6 Texan II platforms that utilize Advent’s brakes, likely offers Lee Air logistical advantages and closer collaboration opportunities for future certification.

Frequently Asked Questions

Who is the acquiring company?
Lee Air, Inc., a Wichita-based engineering and manufacturing firm founded in 1981. It is distinct from “Lee Aerospace,” another aviation company in the region.

What happens to Advent’s Tulsa operations?
Advent’s manufacturing and engineering operations are being relocated to Lee Air’s facility in Wichita, Kansas.

Does this affect existing Advent customers?
The press release indicates that the acquisition is intended to meet increased production rates and support existing customers with the same product lines, now backed by Lee Air’s manufacturing infrastructure.

Sources

Photo Credit: Advent Aircraft Systems – Montage

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MRO & Manufacturing

AAE Opens 1900sqm MRO Facility at Albury Airport Australia

Australian Aerospace Engineering opens a new MRO facility in Albury, NSW, supporting UH-60M Black Hawk sustainment for the Australian Army.

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Australian Aerospace Engineering (AAE) officially opened a new 1,900-square-meter Maintenance, Repair, and Overhaul (MRO) facility adjacent to Albury Airport (ABX) in New South Wales on August 25, 2026. The purpose-built site consolidates the company’s aerospace maintenance and manufacturing capabilities to support domestic aviation and defense operations.

In a press release issued on August 25, AAE detailed that the new infrastructure expands its capacity to perform complex aerospace work domestically. The opening coincides with an expanded Partnerships announcement from Lockheed Martin Australia, integrating the Albury facility into the sustainment network for the Australian Army’s UH-60M Black Hawk Helicopters fleet.

Facility capabilities and defense integration

The new site brings together multiple specialized services under one roof. These include aircraft maintenance, component overhaul, non-destructive testing (NDT), machining, manufacturing, spare-parts storage, and specialist surface treatment. The facility features a semi-downdraft heated spray booth and an adjoining helipad designed specifically to support maintenance operations for medium to large helicopter platforms.

The infrastructure investment directly supports AAE’s growing role in the Australian defense supply chain. On the same day as the facility opening, Lockheed Martin Australia confirmed the site will support the sustainment of the Australian Army’s UH-60M Black Hawk fleet. AAE also lists Sikorsky Australia, Pilatus Australia, and BAE Systems among its defense and aerospace partners.

Regional economic impact and company growth

The Albury facility marks a significant expansion for AAE, which has operated for more than 20 years. The company has grown its workforce from an initial three-person family business to a current team of 14 employees.

Justin Clancy MP, Member for Albury, officiated the opening ceremony. He noted that the facility provides a foundation for ongoing growth, including the addition of new engineering and technical roles in the coming years.

“The opening of AAE’s new facility is a fantastic outcome for Albury, creating opportunities for highly skilled local jobs and demonstrating what regional Australian businesses can achieve in advanced aerospace and Defence Industries,” Clancy said.

AAE Chief Executive Officer Adam Johnston stated that the new site gives the company the space and resources required to take on more complex work. Prior to the formal opening, the Governor of New South Wales, Margaret Beazley, conducted an official tour of the newly constructed facility on February 18, 2026.

AirPro News analysis

We view the expansion of regional MRO capabilities in Australia as a critical step in building sovereign defense industrial capacity. By locating specialized services like NDT and component overhaul outside major metropolitan hubs, companies like AAE reduce supply chain bottlenecks for critical platforms like the UH-60M Black Hawk. The integration of a dedicated helipad and specialized spray booth indicates a clear strategic focus on rotary-wing sustainment, positioning the Albury site as a specialized node in the broader Lockheed Martin and Sikorsky Australia support network.

Sources: Australian Aerospace Engineering

Photo Credit: Australian Aerospace Engineering

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MRO & Manufacturing

Lion Group Opens Batam Aero Engine MRO Facility in Indonesia

Lion Group launched Batam Aero Engine on Aug 19, 2026, offering engine and APU MRO services to serve Southeast Asian operators.

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Lion Group has officially commenced operations at its new Batam Aero Engine maintenance, repair, and overhaul (MRO) facility in Indonesia, aiming to capture a larger share of the Asian engine maintenance market and reduce domestic reliance on foreign service providers.

The facility, which opened on August 19, 2026, provides both on-wing and off-wing maintenance for jet engines, turboprop engines, and Auxiliary Power Units (APUs). The Launch was detailed in a press release issued by Lion Group on August 21, 2026, highlighting the company’s push to localize critical aviation supply chains.

Technical capabilities and infrastructure

Batam Aero Engine enters the market with specialized diagnostic and repair capabilities designed to service a variety of powerplants. According to the Lion Group press release, the facility is equipped to perform complex procedures including Low Pressure Turbine (LPT) module replacements.

The maintenance center also features advanced borescope inspection equipment. Certified personnel will utilize IPLEX NX, IPLEX GX/GT, and Mentor Flex systems to conduct internal engine diagnostics. These capabilities allow technicians to assess engine health and identify potential defects without requiring full engine teardowns, thereby reducing maintenance turnaround times for operators.

Strategic expansion in the Asian MRO market

The inauguration event in Batam drew key figures from both the company and Indonesian regulatory bodies, including Lion Group Founder Rusdi Kirana and Batam Mayor Dr. Amsakar Achmad. The strategic placement of the facility in Batam leverages existing industrial infrastructure and proximity to regional trade routes to attract maintenance contracts from across Southeast Asia-Pacific.

Lion Group President Director Captain Daniel Putut Kuncoro Adi emphasized the dual focus of the new enterprise.

“We hope this facility can serve domestic needs as well as friendly countries and further strengthen Indonesia’s aviation industry,” Adi stated, according to reporting by Aviation Business News.

Indonesian regulators also view the facility as a step toward greater self-sufficiency in the aviation sector. Sokhib Al Rokhman, Director of Airworthiness and Aircraft Operations at Indonesia’s Directorate General of Civil Aviation (DGCA), highlighted the broader national strategy during the launch.

“We want to strengthen aviation independence by making Batam Aero Engine an MRO hub that is efficient, responsive, and competitive in the Asian market,” Rokhman said, as reported by ePlaneAI.

AirPro News analysis

The establishment of Batam Aero Engine represents a calculated vertical integration Strategy by Lion Group. By bringing engine and APU maintenance in-house, the operator can better control maintenance costs and mitigate Supply-Chain bottlenecks that have constrained the global MRO sector in recent years. Furthermore, positioning the facility in Batam allows Indonesia to compete directly with established MRO hubs in neighboring Singapore and Malaysia. If the facility can secure third-party contracts as intended, it will mark a significant maturation of Indonesia’s domestic aviation technical capabilities and workforce.

Sources: Lion Air Public Relations

Photo Credit: Batam Aero Engine

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MRO & Manufacturing

2026 GA Parts Survey: Supply Chain Pressures on Aging Fleet

TBX survey finds 66% of GA maintenance pros expect parts availability to worsen as the piston fleet averages 53 years old.

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General aviation maintenance professionals are spending more time hunting for parts and technical data than managing costs, as supply chain friction threatens the operational viability of an aging piston aircraft fleet.

In a press release issued on August 23, 2026, TBX, operating as Airworthy.com, published the findings of its 2026 General Aviation Parts Survey. The accompanying summary report, titled “The Great Parts Squeeze,” details the mounting pressures on maintenance shops tasked with servicing a certified general aviation (GA) piston fleet that now averages 53 years of age.

Supply chain friction and industry sentiment

The survey data indicates widespread pessimism regarding the near-term outlook for component availability. According to the report, 66% of surveyed industry professionals expect the aviation parts supply environment to worsen in the near future. Dissatisfaction is prevalent across multiple metrics, with 72% of respondents reporting frustration with parts pricing and 59% expressing dissatisfaction with current lead times.

Despite the high concern over pricing, the report highlights that the sheer time required to source components and access Illustrated Parts Catalogs (IPCs) has become the primary operational bottleneck for maintenance providers.

“Maintenance shops are spending too much time searching for parts, finding part numbers, waiting on backorders, and sourcing alternatives,” said Jon McLaughlin, CEO of TBX.

McLaughlin added that this administrative burden includes the time spent explaining limited options, or the complete lack thereof, to customers waiting for their aircraft to return to service.

Strategies for an aging piston fleet

With the average certified GA piston aircraft now over half a century old, the industry faces compounding challenges in keeping legacy airframes airworthy. The TBX report suggests that maintaining this fleet will require broader acceptance and availability of alternative components, including Parts Manufacturer Approval (PMA) items and serviceable used parts, alongside traditional Original Equipment Manufacturer (OEMs) supplies.

“As the GA fleet continues to age, improving parts availability, expanding access to technical data, and giving maintainers more options will be critical to keeping these aircraft flying,” McLaughlin stated in the release.

The company intends for the survey data to serve as a baseline for manufacturers and suppliers to address these bottlenecks. McLaughlin noted that the friction points identified by maintenance professionals require a coordinated response, stating that the issue cannot be solved by any single segment of the industry alone.

AirPro News analysis

The findings in the TBX report quantify a reality we hear frequently from general aviation maintenance providers. As the legacy piston fleet ages past the 50-year mark, the original supply-chains that supported these aircraft have often consolidated, pivoted to turbine markets, or ceased operations entirely. The high dissatisfaction with lead times points to a structural gap in the market. While PMA manufacturers have stepped in to produce high-demand replacement parts, the long tail of low-volume, specialized components remains a significant vulnerability for GA operators. If supply chain friction continues to outpace solutions, we may see an increase in aircraft grounded not for lack of funds, but for lack of basic hardware and approved technical data.

Sources: TBX via PR Newswire

Photo Credit: Stock Image

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