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Boeing Deploys AI Tool to Automate Aircraft Part Validation Processes

Boeing introduces AI-driven OCR technology to streamline aircraft part inspection, reducing manual entry and saving over 17 hours per airplane.

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Boeing Deploys Photo-Driven AI to Streamline Aircraft Part Validation

Boeing has introduced a new artificial intelligence tool designed to automate the inspection and logging of aircraft parts, a move the manufacturer states has significantly reduced production time and improved data accuracy. Developed by engineers at the Boeing Korea Engineering & Technology Center (BKETC), the system utilizes Optical Character Recognition (OCR) to replace manual data entry during the assembly process.

According to the company, the new technology allows quality inspectors to validate components simply by photographing them. This innovation addresses a longstanding bottleneck in the manufacturing workflow, reportedly saving more than 17 hours of inspection time per airplane.

Eliminating the “Fat-Finger” Factor

Prior to the implementation of this AI solution, quality inspectors were required to manually input complex serial numbers into the Aircraft Readiness Log (ARL). This process was not only time-consuming but also susceptible to human error, often referred to in the industry as “fat-finger” typos.

Boeing data indicates that before the tool’s deployment, approximately 70% of part serial numbers on the 737 program had to be entered manually. The repetitive nature of typing long strings of alphanumeric characters created a high potential for inaccuracies, which could disrupt the “digital thread”, the continuous digital record of an aircraft’s components and history.

How the Technology Works

The new handheld tool leverages computer vision to streamline the validation process. The workflow, as described in Boeing’s report, involves three primary steps:

  • Capture: An inspector takes a photograph of the part’s identification tag.
  • Processing: The AI analyzes the image, reading the text and validating it against a “part information dictionary” to ensure the component matches engineering requirements.
  • Logging: Once validated, the system automatically populates the serial number and relevant data into the ARL, removing the need for manual typing.

To ensure the system could handle the variety of fonts, formats, and lighting conditions found on a factory floor, the development team undertook an extensive training process. Engineers captured over 2,250 images of various parts and manually labeled nearly 38,100 text boxes to train the machine learning model. Currently, the tool is capable of inspecting more than 1,400 different parts.

Development and Deployment

The project was a collaborative effort led by the Boeing Korea Engineering & Technology Center (BKETC) in partnership with the company’s central Artificial Intelligence team. The involvement of the Korea-based team highlights Boeing’s strategy of leveraging global engineering talent to solve specific production challenges.

“Quality inspectors identified the challenges in their current process and guided our design. Their insights guided us through the development journey and helped minimize disruption to existing workflows.”

, Wanbin Song, Boeing AI Team Lead at BKETC

The tool was first deployed in January 2024 at Boeing’s primary manufacturing sites in Renton and Everett, Washington, which produce the 737 and widebody jets respectively. Following its success in these facilities, Boeing plans to expand the technology to its South Carolina facility for 787 Dreamliner production. The team is also evaluating other areas of the production system where this OCR capability could further streamline documentation.

AirPro News Analysis

The deployment of this OCR tool represents a practical application of “Smart Factory” principles, moving beyond buzzwords to address tangible production inefficiencies. In aerospace manufacturing, the integrity of the “digital thread” is paramount; the physical aircraft must perfectly match its digital records for safety, maintenance, and regulatory compliance.

By automating the entry of serial numbers, Boeing is reducing the cognitive load on inspectors and closing a gap where human error frequently occurs. While a saving of 17 hours per aircraft may seem minor in the context of a multi-month build cycle, these incremental efficiency gains are critical as the manufacturer seeks to stabilize production rates and ensure rigorous quality control across its assembly lines.

Frequently Asked Questions

What is the primary benefit of the new AI tool?
The tool eliminates manual data entry errors and reduces inspection time by over 17 hours per aircraft.

Who developed the technology?
The tool was developed by the Boeing Korea Engineering & Technology Center (BKETC) and the Boeing AI team.

Where is the tool currently used?
It was deployed in Renton and Everett, Washington, in January 2024, with plans to expand to Boeing South Carolina.

Sources

  • This article is based on an official report from Boeing.

Photo Credit: Boeing

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MRO & Manufacturing

Pratt & Whitney Canada Invests $275M CAD in Longueuil Plant

Pratt & Whitney Canada commits $275M CAD to automate its Longueuil facility, backed by federal and Quebec government support.

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Pratt & Whitney Canada will inject $275 million CAD into its Longueuil manufacturing facility to integrate automated production lines and advanced digital processes, securing 650 jobs in the Quebec aerospace sector.

Announced on July 21, 2026, during the Farnborough International Airshow, the modernization project is backed by up to $34 million CAD from the Government of Canada, alongside support from the Quebec government. The investment targets the engine manufacturer’s global headquarters and largest manufacturing site, representing approximately $195.5 million USD in capital upgrades.

Upgrading industrial capacity for turbine production

The capital injection will fund the installation of modernized machinery and automated production lines at the Longueuil plant. Pratt & Whitney Canada, an RTX business, produces turbine engines for regional aircraft, business jets, general aviation, and rotorcraft platforms. By implementing advanced digital manufacturing processes, the company aims to increase production efficiency and precision to meet rising global demand for its propulsion systems.

In a press release detailing the investment, Pratt & Whitney Canada President Satheeshkumar Kumarasingam stated the upgrades will strengthen industrial capacity and enable the manufacturer to better support its customers.

“It also reinforces our longstanding role as a pillar of the Québec aerospace ecosystem and a major contributor to Canadian aviation,” Kumarasingam said.

Federal and provincial government support

The modernization effort is a joint public-private initiative. Innovation, Science and Economic Development Canada (ISED) is providing up to $34 million CAD through the federal Strategic Response Fund. The Ministère de l’Économie, de l’Innovation et de l’Énergie du Québec is also supporting the project, though specific provincial funding figures were not disclosed in the initial announcement.

The Longueuil facility currently employs nearly 4,500 people. According to the federal government, the financial engagement will directly maintain 650 jobs at the site. The announcement was coordinated with Mélanie Joly, Minister of Industry and Minister responsible for Canada Economic Development for Quebec Regions, highlighting the strategic importance of the aerospace sector to the regional economy.

AirPro News analysis

We view this $275 million CAD investment as a necessary step for Pratt & Whitney Canada to protect its manufacturing base against ongoing global supply chain pressures. By shifting toward automated production lines and digital processes, the engine manufacturer is positioning its legacy Longueuil facility to handle higher production rates with greater consistency. Announcing the capital upgrade at the Farnborough International Airshow serves a dual purpose: reassuring global airframers of the company’s capacity to deliver on engine backlogs while demonstrating the Canadian government’s willingness to subsidize critical aerospace infrastructure.

Sources: Pratt & Whitney Canada

Photo Credit: Pratt & Whitney Canada

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ExecuJet Belgium Earns EASA and FAA Approval for Falcon 6X

ExecuJet MRO Services Belgium secures EASA and FAA certification for Falcon 6X line and heavy maintenance plus AOG support.

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ExecuJet MRO Services Belgium has secured regulatory approval from the European Union Aviation Safety Agency (EASA) and the Federal Aviation Administration (FAA) to perform line and heavy maintenance on the Dassault Falcon 6X.

Announced in a company press release on July 13, 2026, the dual certification allows the Brussels-based facility to service the growing global fleet of the 5,500-nautical-mile range business jet. The approval also expands the company’s Dassault MRO GoTeam capabilities to include aircraft-on-ground (AOG) support for the Falcon 6X.

Expanding global support for the Falcon 6X

In addition to EASA and FAA certification, the Brussels facility received maintenance approvals from the Civil Aviation Authority of Bermuda, the Department of Civil Aviation of Aruba, and the Office of the Director of Civil Aviation in Guernsey. These combined authorizations enable ExecuJet Maintenance, Repair, and Overhaul (MRO) Services to support a wide registry of international operators.

Matthijs Hutsebaut, Regional Vice President for Europe at ExecuJet MRO Services, highlighted the operational impact of the new certifications.

“EASA and FAA are the world’s two most internationally recognised civil aviation regulators. This approval is significant as it means we are now internationally certified to do line and heavy maintenance on all in-production Falcon aircraft types,” Hutsebaut stated.

According to the company, there are currently more than 30 Dassault Falcon 6X aircraft operating worldwide. Hutsebaut noted that demand for maintenance and support services is scaling alongside the active fleet. He added that the combination of original equipment manufacturer (OEM) expertise and AOG capabilities positions the facility to provide comprehensive support to operators.

Broader network growth and recent milestones

The Falcon 6X approval in Belgium follows a series of recent capability expansions across the ExecuJet MRO Services global network, which operates as a wholly-owned subsidiary of Dassault Aviation.

On June 11, 2026, the Belgium facility completed an extensive heavy maintenance project on a Dassault Falcon 7X. That project included an engine change, avionics upgrades, and the installation of a Starlink satellite communications system.

The company is also expanding its heavy maintenance footprint in the Asia-Pacific region. On June 3, 2026, ExecuJet MRO Services Australasia announced the expansion of its Dassault Falcon 7X heavy maintenance capabilities at its Sydney facility, with C-checks scheduled to commence in October 2026.

AirPro News analysis

As new clean-sheet aircraft designs like the Dassault Falcon 6X enter service and build flight hours, the availability of certified maintenance infrastructure becomes a critical factor for operator dispatch reliability. By securing EASA and FAA approvals at a major European hub, Dassault Aviation is leveraging its wholly-owned ExecuJet MRO Services subsidiary to capture aftermarket revenue while ensuring its newest flagship operators have immediate access to heavy maintenance and AOG recovery. We expect to see similar capability rollouts across other ExecuJet MRO Services regional hubs as the Falcon 6X fleet matures and approaches its first major scheduled maintenance intervals.

Sources: ExecuJet MRO Services (July 13, 2026)

Photo Credit: ExecuJet MRO Services

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MRO & Manufacturing

Jet Access Maintenance Becomes Starlink Dealer Amid Price Hike

Jet Access Maintenance joins the Starlink dealer network as SpaceX raises aviation hardware costs 38% and doubles its top-tier monthly plan.

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Jet Access Maintenance has secured authorization as a Starlink dealer, expanding its in-flight connectivity upgrade offerings across three maintenance facilities on the same day SpaceX implemented a massive pricing restructure for its aviation internet service.

In a press release issued on July 7, 2026, the company confirmed it will now evaluate, acquire, install, and support Starlink Aviation solutions. The authorization allows Jet Access Maintenance to perform the upgrades at its Maintenance, Repair, and Overhaul (MRO) facilities in Indianapolis, Indiana; Nashville, Tennessee; and West Palm Beach, Florida.

Expanding MRO connectivity capabilities

The addition of Starlink hardware sales and activation support integrates into the company’s broader aircraft modernization initiatives. Installations will be completed by Federal Aviation Administration (FAA) certified technicians.

The MRO provider will handle ongoing maintenance, technical support, and integration with existing avionics systems for business aviation operators. Scott Dillon, President of Jet Access Maintenance, stated in the release that connectivity is an increasingly important part of the ownership and flight experience.

“By adding Starlink to our offering, we’re expanding the solutions available to our clients and helping them identify the connectivity platform that best supports their aircraft and mission requirements,” Dillon said.

SpaceX restructures Starlink Aviation pricing

The Jet Access Maintenance announcement coincides exactly with a major shift in Starlink’s business model. On July 7, 2026, SpaceX notified customers of a significant pricing restructure for its Starlink Business Aviation plans.

According to reporting by Aviation Week and Corporate Jet Investor, the top-tier Aviation Global Unlimited plan doubled in price from $10,000 to $20,000 per month. SpaceX also introduced a new mid-tier option, the Aviation Regional Unlimited plan, priced at $12,500 per month. This regional plan restricts unlimited data usage to a single continental region.

Hardware costs for business jets also saw a substantial increase. Holstein Aviation reported that the cost for Starlink Aviation hardware installation rose by approximately 38 percent, jumping from $145,000 to $200,000. Official Starlink Support documentation confirms these new rates take effect for existing customers on August 7, 2026.

AirPro News analysis

We note that the timing of this dealer authorization places Jet Access Maintenance in a unique position. The company is entering the Starlink dealer network just as the product undergoes its most significant pricing and tier-structure shift to date.

The 38 percent increase in hardware costs and the doubling of the global unlimited data plan alter the value proposition for mid-light jet operators. While Starlink remains a highly sought-after low-latency connectivity solution, the new $200,000 hardware baseline and $12,500 minimum monthly commitment will likely shift the primary upgrade market toward heavy jet and ultra-long-range aircraft operators. Jet Access Maintenance will need to navigate this new pricing reality as it pitches modernization initiatives to its existing client base.

Sources: Jet Access Maintenance, Aviation Week, Corporate Jet Investor, Starlink Support, Holstein Aviation

Photo Credit: Jet Access Maintenance

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