| | | | | | NASA plans a 5G wireless network using Wi-Fi 6 mesh technology to support communications for future lunar exploration missions. |
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| Honeywell explores SATCOM, flight control, and navigation technologies for Enigma's Phoenix autonomous logistics aircraft. |
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| Venus Aerospace is advancing its rotating detonation rocket engine, a propulsion technology designed to improve efficiency for future hypersonic and space vehicles. |
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| | Sponsored | | The rapid growth of LEO constellations is changing how satellites are designed, built, and deployed. Explore the technologies, architectures, and component strategies that enable next-generation communications, navigation, Earth observation, and SAR platforms, while balancing performance, reliability, manufacturability, and cost. |
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| | | | Horizon Aircraft selected BETA Technologies' fly-by-wire flight control system for the Cavorite X7 as the hybrid-electric VTOL advances toward certification. |
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| | | | Airbus is demonstrating a computer-vision landing system that uses AI and onboard cameras to identify runways and support future flight operations. |
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| | | | WASHINGTON - The U.S. Space Force announced it has issued a $4.16 billion competitive Other Transaction Authority (OTA) agreement to SpaceX in Starbase, Texas, for the Space-Based... |
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| | | | DLR examines how AI can support pilots and air traffic controllers through decision-support tools designed for safe, human-centered flight operations. |
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| | | | The agency calls for industry teams to provide a detailed roadmap for a potential open-fan flight demonstration and optional risk-reduction activities. |
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| | | | Airbus will expand commercial aircraft research through 2030 after securing €3 billion in European Investment Bank funding for next-generation aerospace technologies. |
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| | | Built on the company's Type II Superlattice (T2SL) infrared technology, DRACO MW SL operates at 130 Kelvin and is designed to provide high image stability, sensitivity and extended operational life while supporting size, weight and power (SWaP) requirements for military imaging systems. |
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| | | Designed for standard pick-and-place assembly processes, the devices include integrated solder pads and tape-and-reel packaging to support PCB assembly and alignment between the optic and LED source without requiring additional mounting hardware or manual alignment. |
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| | | The enclosures feature front-to-rear airflow and support configurations based on OpenVPX, SOSA-aligned, VME, and custom architectures. |
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| | | The updated coupling ring design combines knurled surfaces with a hexagonal geometry, enabling the use of torque tools such as torque wrenches during assembly for the first time. |
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