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Seoul ADEX 2025 Digital Directory
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Some of our latest content
Companies, Products, News, Events
Aeroforce Logistics, LLC
Quad Fire Starting System
In response to USAF IPSAFE contract and developed as part of the LSI’s MACK-5A solution for the modernization of the ACES II Ejection Seat Survival System, the QUAD FIRE™ is LSI’s newest innovative addition to its survival accessory line. This unique survival tool contains four fire starting devices: an arc lighter, a ferro rod and striker, a fresnel lense, and wind/waterproof matches, plus Pyro Putty™ Fireball Tinder.
COTS Technology
(COTS) VME-C7H SBC
- Form factor: 6U VME64x - Processor: Intel® E3-1505Lv6 2.2GHz 4 Cores and 8 Threads - Memory: 16,000MB DDR4 SDRAM w/ECC, (1) 73GB up NVMe SSD
Green Optics Co., Ltd.
ZnS Matetial
Green Optics possess proprietary CVD-based Zinc Sulfide (ZnS) production technology for defense and industrial multi-wavelength optical materials. We have core technological capabilities to manufacture high-quality ZnS products tailored to meet diverse customer requirements. ZnS Material Optical Performance and Processing ZnS materials produced through CVD processes provide high transmittance exceeding 70% in the SWIR wavelength range (8-12 μm). When these materials undergo additional Hot Isostatic Pressing (HIP) treatment, the crystal structure undergoes recrystallization, improving transmission characteristics to achieve over 70% transmittance in the visible (VIS) wavelength range of 0.45-0.8 μm. This process extends the application range of optical materials previously limited to SWIR and LWIR bands, delivering superior optical performance across multi-wavelength regions from VIS to LWIR. Material Specifications: - STD-ZnS (Standard ZnS Material): Manufactured via CVD process, exhibits transmittance exceeding 70% in LWIR wavelengths (8-12 μm) with high physical hardness (Knoop hardness: 210 kgf/mm²). - MS-ZnS (Multispectral ZnS): Converted from STD-ZnS through HIP processing, extends wavelength range into the visible spectrum. While crystal structure recrystallization during this process reduces hardness somewhat (approximately 150 kgf/mm²), it still meets MIL specifications. This dual-processing approach enables comprehensive wavelength coverage while maintaining military-grade durability standards.
Shield AI
Hivemind - Jets
THE FUTURE OF FIGHTER JETS

With a 99% win-rate in simulated F-16 dogfights versus active-duty Air Force and Navy fighter pilots, Hivemind is learning to execute a variety of missions from Beyond Visual Range strike to suppression of enemy air defense. The future of air dominance will be powered and flown by Hivemind.

It Starts With The F-16

Hivemind will deploy as a digital co-pilot on a U.S. Air Force F-16, with the goal of rapidly scaling across next-generation aircraft, F-22s, F-18s, and other fighter jets. Hivemind will make legacy fighters relevant for decades to come and will power the next generation of military aircraft.
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Seoul ADEX 2025 Digital Directory
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디렉터리 기능
전시회 도우미
In-depth Exhibitor Profiles
Each exhibitor can add as many products and services as they wish, with in-depth information and specifications. This allows buyers to find what they want easily.
Self Provisioning for Exhibitors
Each exhibitor has full control of their content - to edit their company profile, upload products and enter staff details.
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최신 콘텐츠
기업, 상품, 뉴스, 이벤트
K-PA Inc.
KX2-2046
The KX2-2046 is an X-band high-power MMIC amplifier fabricated on the GaN-on-SiC process. It operates from 8.0 – 10.5 GHz and typically provides 20W saturated output power with power-added efficiency of 46%. The KX2-2046 can support military and commercial radar systems. It is matched to 50Ω with integrated DC blocking capacitors on both RF input and output ports. The KX2-2046 is 100% DC and RF tested on-wafer. It is available in chip form. **Key Features** - Frequency Range: 8.0-11.5GHz - Small Signal Gain: 26dB - High Pout: 20W - High PAE: 46% - DC bias: Vd=28V @Idq=0.3A - Pulsed Vg: PW=100µs, DC=10% - Chip size: 2.95x1.66x0.1mm  
NeXber Co., Ltd.
NRU-230V-AWP/ NRU-240S-AWP
Powered by NVIDIA® Jetson AGX Orin™ SoM bundled with JetPack 5.1.1 Powered by NVIDIA® Jetson AGX Orin™ Industrial bundled with JetPack 6.0 Rugged -25°C to 70°C fanless operation (JAO32/ JAO64) - No throttling at 55°C with JAO64 MAXN Mode Rugged -40°C to 75°C fanless operation (JAOi) - No throttling at 50°C with JAOi MAXN Mode IP66 waterproof and dustproof Support 8x GMSL2 automotive cameras via FAKRA Z connectors (NRU-230V-AWP) 4x PoE+ GbE and 1x 10GBASE-T via M12 X-coded connectors 2x isolated CAN 2.0, 1x RS232, and 1x isolated RS485 via M12 A-coded connectors 1x system monitoring port by automotive-grade MCU 8V to 48V wide-range DC input with built-in ignition power control Compatible GMSL2 cameras with pre-built drivers
IQM Quantum Computers
IQM Resonance, Cloud service
Every feature designed with transparency and openness in mind. Access enterprise-grade quantum computing with the tools you need to innovate.
ILSUNG COMPOSITES
Carbon Fiber Composites (CF-SMC)
1. Integrated Production System Equipped with in-house CF-SMC compression molding equipment, we provide a complete one-stop solution—from sheet production to final composite molding—tailored to customer requirements. This ensures both exceptional quality and production efficiency. In line with ESG management, we also utilize our proprietary recycled carbon fiber technology to recycle CFRP waste generated during CF-SMC production. 2. Moldability & Productivity ILSUNG’s carbon fiber SMC technology offers superior moldability compared to conventional continuous CFRP and aluminum. With a rapid curing speed of about 1 minute per 1 mm thickness, it enables high-speed, mass production. Complex and precise geometries can be molded reliably, delivering strong competitiveness for both simple and highly engineered components. 3. Exceptional Lightweight Performance CF-SMC has a lower density than aluminum castings while maintaining high mechanical strength, delivering the optimal lightweight solution for industries where weight reduction is critical. 4. Balanced Performance This technology not only achieves lightweight properties but also ensures a well-balanced combination of mechanical strength, corrosion resistance, dimensional stability, and durability. It maintains stable performance under extreme environments and repeated loads, making it highly suitable for automotive, aerospace, and defense applications where reliability is critical. 5. Cost Competitiveness Compared to CFRP, it provides a lower-cost structure and high-speed molding capability, ensuring excellent price competitiveness. This significantly improves cost efficiency in industries that demand large-scale production—such as automotive, aerospace, and defense—and strengthens its growth potential within the composites market.
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