Defense & Military
US Lawmakers Request Pentagon Review of Safran’s China Ventures
US lawmakers ask the Pentagon to review Safran’s Chinese joint ventures over national security concerns linked to military ties and defense roles.

This article summarizes reporting by Reuters.
U.S. lawmakers are intensifying their scrutiny of Western aerospace companies operating in China. On March 20, 2026, Representative John Moolenaar, Chair of the House Select Committee on China, formally asked the Pentagon to review the Chinese joint ventures of French aerospace manufacturers Safran, according to reporting by Reuters.
The request, detailed in a letter sent to Secretary of Defense Pete Hegseth on March 19, 2026, highlights growing concerns over Safran’s commercial relationships with Chinese state-owned aerospace entities. Lawmakers fear these ties could inadvertently bolster the military capabilities of the Chinese Communist Party (CCP).
Safran is a significant U.S. defense contractor, deeply embedded in the military supply chain. This development underscores the increasing friction between globalized commercial aerospace markets and tightening U.S. national security mandates, forcing defense contractors to navigate an increasingly complex geopolitical landscape.
The Core Concerns and Specific Ventures
Scrutinizing Ties with AVIC
The primary focus of the congressional inquiry centers on Safran’s collaboration with subsidiaries of the Aviation Industry Corporation of China (AVIC). AVIC is a massive state-owned conglomerate responsible for producing fighter jets for the People’s Liberation Army (PLA). According to the provided research report, U.S. lawmakers view any collaboration with AVIC subsidiaries as a potential national security risk due to China’s “Military-Civil Fusion” strategy, which mandates the sharing of commercial technological advancements with the military.
Specifically, the letter from Rep. Moolenaar points to a 2012 joint venture between Safran and the Shanghai Aircraft Manufacturing Corporation (SAM). This partnership was established to manufacture electrical wiring connection systems for China’s C919 commercial-aircraft passenger jet.
Moolenaar warned in his letter that while Safran’s operations in China appear commercial, collaborating with AVIC subsidiaries could directly support organizations that enhance the CCP’s military modernization.
“We are concerned about Western aerospace companies supporting PRC (People’s Republic of China) military capabilities,” Moolenaar stated in the letter to the Pentagon.
Safran’s U.S. Defense Footprint
A Deeply Embedded Contractor
The urgency of the House panel’s request is amplified by Safran’s extensive involvement in U.S. defense programs. The company has operated in the United States for nearly 50 years, employing thousands of workers across multiple states.
According to the details outlined in the letter to the Pentagon, Safran provides critical technology and maintenance for the U.S. military. This includes developing quantum-sensing technology, supplying landing systems for various military-aircraft, and maintaining engines for the U.S. Army’s UH-72A Lakota helicopters.
Because of this deep integration, lawmakers are demanding greater transparency and alignment with U.S. security interests. Moolenaar emphasized that Western companies doing business with the U.S. government are expected to act in good faith to dismantle relationships that could undermine national security.
A Broader Congressional Probe
Expanding the Scope Beyond Safran
The scrutiny of Safran is not an isolated incident but part of a broader, months-long investigation by the House Select Committee on China into Western aerospace firms. In December 2025, Moolenaar sent a similar letter to the Pentagon raising alarms about European aerospace giant Airbus and its connections to Chinese entities, including the Xi’an Aircraft Industry Group (XAC).
The Department of Defense has also been actively working to remove Chinese influence from its supply chains. In July 2025, Defense Secretary Hegseth initiated a comprehensive review to eliminate the use of China-based engineers by vendors working on Department of Defense cloud and IT systems, citing a heightened digital threat environment.
Safran has previously faced regulatory challenges regarding its operations in China. In December 2022, the company agreed to a $17.2 million settlement with the U.S. government over a bribery case involving its subsidiary, Monogram Systems, which violated the Foreign Corrupt Practices Act in relation to train lavatory contracts.
AirPro News analysis
At AirPro News, we observe that this latest congressional inquiry signals a definitive shift in how the U.S. government treats dual-use aerospace technology. The era of compartmentalizing commercial joint ventures in China from U.S. defense contracting appears to be closing.
Western aerospace manufacturers are increasingly caught in a geopolitical tug-of-war. The lucrative nature of the Chinese commercial aviation market, exemplified by projects like the C919, is now in direct conflict with the stringent security requirements of the Pentagon. Companies like Safran and Airbus may soon be forced to make difficult strategic choices between maintaining access to Chinese commercial partnerships and preserving their status as trusted U.S. defense suppliers.
Frequently Asked Questions
What is the main concern regarding Safran’s operations in China?
U.S. lawmakers are concerned that Safran’s commercial joint ventures with Chinese state-owned aerospace companies, particularly AVIC subsidiaries, could inadvertently support the modernization of China’s military through the country’s Military-Civil Fusion strategy.
What specific joint venture was mentioned in the letter?
The letter highlighted a 2012 joint venture between Safran and the Shanghai Aircraft Manufacturing Corporation (SAM) to produce electrical wiring systems for the C919 passenger jet.
How involved is Safran in U.S. defense?
Safran is a major U.S. defense contractor, providing quantum-sensing technology, landing systems, and engine maintenance for military aircraft like the UH-72A Lakota helicopter.
Sources: Reuters
Photo Credit: Safran
Defense & Military
Lockheed Martin Completes NGI Second-Stage Motor Burst Test
Lockheed Martin passed a burst test for the NGI second-stage motor case, keeping the program on track for a 2030 fielding date.

Lockheed Martin successfully completed a critical burst test of the second-stage motor case for the Next Generation Interceptor (NGI) in Huntsville, Alabama, on August 4, 2026, keeping the missile defense program on schedule for a late 2026 design review.
The test validates the composite structure’s strength-to-weight ratio and its ability to withstand extreme launch environments. According to a press release issued by Lockheed Martin, the milestone advances the NGI program toward its Critical Design Review (CDR) and maintains the target fielding date of 2030.
Validating the NGI motor architecture
During the burst test, engineers filled the motor case with a carbon-fiber reinforced water vessel and inflated it beyond expected launch pressures. The structure successfully withstood the required induced loads before failure, confirming the design parameters.
The successful destruction test provides physical validation of the digital models used to design the second-stage motor case, ensuring the component can survive the aerodynamic and internal pressure stresses of an interceptor launch.
“This successful burst test is a significant milestone on the path to CDR and brings us closer to fielding NGI by 2030,” said Christopher Jewell, Vice President of Lockheed Martin NGI. “It proves our advanced motor architecture can withstand the harsh conditions of flight and still perform with the precision required to help protect the nation.”
Production infrastructure and program timeline
The NGI is a critical component of the Ground-Based Midcourse Defense (GMD) architecture, designed to protect the United States against long-range ballistic missile threats. The U.S. Missile Defense Agency (MDA) selected Lockheed Martin as the prime contractor for the NGI in April 2024, transitioning the program from technology development to product development.
To support the manufacturing phase, Lockheed Martin opened a dedicated NGI assembly facility in Courtland, Alabama, in June 2026. The facility utilizes a digital-centric foundation to accelerate fabrication and validation processes, which the company credits with keeping the testing schedule on track.
AirPro News Market-Analysis
We view the successful burst test as a strong indicator of program stability ahead of the upcoming CDR. Transitioning from digital models to physical destructive Test-Flights often reveals structural vulnerabilities, but clearing this hurdle suggests the digital engineering tools utilized at the Courtland facility are yielding accurate real-world predictions. Meeting the 2030 fielding deadline remains an ambitious target for the MDA, making strict adherence to the 2026 testing schedule critical for Lockheed Martin.
Sources: Lockheed Martin
Photo Credit: Lockheed Martin
Defense & Military
Lockheed Martin Integrated Missile Defense Architecture 2026
Lockheed Martin details its multi-domain missile defense framework backed by a $35B THAAD contract and new Alabama assembly facility.

Lockheed Martin is restructuring its integrated missile defense architecture to prioritize “speed-to-decision,” focusing on interoperable systems that consolidate multi-domain data into a single operational picture. In a strategic feature published on August 7, 2026, the defense contractor outlined its approach to connecting sensors, command and control networks, and interceptors at scale to counter evolving global threats.
“The mission is no longer connecting platforms. It is accelerating decisions,” the company stated in the release. “Lockheed Martin is engineering the infrastructure that enables both.”
Consolidating the intercept chain
The company’s updated framework relies on eliminating fragmented systems and delayed coordination, which it identifies as critical vulnerabilities in modern warfare. By integrating disparate assets, Lockheed Martin aims to provide military operators with instant threat identification and faster intercept capabilities.
The architecture spans space, air, and ground domains. According to the company, the intercept chain begins when overhead persistent infrared (OPIR) satellites detect a missile launch. This data is rapidly transmitted across the network, while F-35 Lightning II Military-Aircraft contribute tracking and targeting information. The Command and Control, Battle Management, and Communications (C2BMC) system then distributes a unified operational picture to ground-based effectors, specifically the Terminal High Altitude Area Defense (THAAD) system and the Next-Generation Interceptor (NGI), to complete the engagement.
“Our approach is interoperable by design, consolidating data from all domains into one unified operational picture, from threat detection through intercept,” the company noted.
Operationalizing systems at scale
Lockheed Martin emphasized that the current defense challenge is no longer inventing conceptual frameworks but rather operationalizing these systems at scale. This strategic messaging aligns with recent major Investments in the company’s production capacity and infrastructure.
On June 24, 2026, the U.S. Department of Defense awarded Lockheed Martin a $35 billion undefinitized Contracts action. The seven-year agreement is designed to quadruple the production rate of THAAD interceptors.
Earlier in June 2026, the Manufacturers expanded its physical footprint to support the NGI program. The company opened a new 88,000-square-foot Missile Assembly Building, designated MAB-5, at its facility in Courtland, Alabama. These industrial expansions are intended to support the high-volume Manufacturing required by the integrated defense architecture.
AirPro News analysis
We view Lockheed Martin’s messaging as a direct reflection of the U.S. Department of Defense’s broader push toward Joint All-Domain Command and Control (JADC2). The defense industry has spent the last decade developing individual sensors and interceptors. The current phase requires fusing these disparate platforms into a cohesive, data-centric network that operates faster than adversary capabilities.
The emphasis on “speed-to-decision” highlights a shift in procurement priorities. Hardware performance remains critical, but the Software and communication links that bind OPIR satellites, F-35s, and THAAD batteries are now the primary focus of prime contractors. The $35 billion THAAD contract and the new Courtland assembly facility demonstrate that the U.S. government is actively funding the industrial base required to move these integrated concepts from testing environments to scaled, operational deployment.
Sources: Lockheed Martin
Photo Credit: Lockheed Martin
Defense & Military
Lockheed Martin Demos AI Sonar System on MH-60R at RIMPAC 2026
Lockheed Martin’s SensorMAX completed AI model retraining in under 5 minutes aboard U.S. Navy MH-60R helicopters at RIMPAC 2026.

On August 5, 2026, Lockheed Martin announced the successful demonstration of an artificial intelligence-powered sonar system aboard U.S. Navy MH-60R helicopters, enabling in-flight acoustic model retraining in under five minutes. The demonstration, conducted alongside software developer FUSE Inc., took place off the coast of Hawaii during the RIMPAC 2026 maritime exercise.
According to a press release issued by Lockheed Martin, the SensorMAX system doubles the capacity of legacy sonobuoy monitoring by allowing aircrews to manage up to eight simultaneous surveillance feeds. The technology accelerates the U.S. Navy’s push toward crewed-uncrewed teaming in antisubmarine warfare (ASW) by utilizing over-the-air (OTA) transmissions to update machine learning models while the aircraft remains on mission.
Advancing airborne antisubmarine warfare
The demonstration occurred during the multinational RIMPAC 2026 exercise, which concluded on July 31, 2026, after five weeks of operations involving 30 nations. Integrating the technology onto the MH-60R provided a realistic operational environment to test the rapid deployment of artificial intelligence and machine learning (AI/ML) capabilities in a tactical setting.
“Today’s battlespace requires the defense industry to accelerate capability delivery and seamlessly integrate commercial technology; at RIMPAC 2026 our mission-focused engineers demonstrated exactly how we are meeting that challenge,” said Devon Rodgers, Vice President and General Manager of Undersea Mission Systems at Lockheed Martin.
Rodgers noted that the company is utilizing internal resources to mature these capabilities, stating that the goal is to blend commercial innovation with engineering expertise to equip the Navy for future engagements.
Underlying technology and rapid retraining
The SensorMAX system is built on Lockheed Martin’s Spectral Foundation Model (SFM). This architecture processes spectral energy data in a manner similar to how large language models (LLMs) process text, allowing the system to identify and classify acoustic signatures in complex underwater environments.
A critical component of the Hawaii demonstration was the system’s ability to adapt to new acoustic data rapidly. Lockheed Martin reported that the AI model could be retrained and pushed back to the MH-60R aircrew via OTA updates in under five minutes per iteration. This rapid cycle time reduces the cognitive load on sensor operators while expanding the surveillance footprint of a single aircraft.
AirPro News analysis
The successful integration of SensorMAX onto the MH-60R highlights a critical shift in airborne ASW doctrine. Historically, acoustic data analysis relied heavily on post-mission processing or static onboard libraries that could not be updated mid-flight. By demonstrating a five-minute OTA retraining cycle, we see a clear pathway toward dynamic, real-time threat characterization. This capability will be essential as the U.S. Navy expands its reliance on distributed sensor networks and uncrewed surface and subsurface vessels, which require rapid data synthesis to maintain acoustic superiority in contested maritime domains.
Sources: Lockheed Martin
Photo Credit: Lockheed Martin
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