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Seoul ADEX 2025 Digital Directory
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Honeywell Aerospace Technologies
T55 Turboshaft Engine
Features & Benefits: Drop-in enhancement for the T55-714A with very minor aircraft changes for deployment facility. Responsive to U.S. Army maintainer feedback, converting on lessons from current CH-47 engine. Upgrade Kit easily installed during overhaul.
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  
GnK Solution
RSA507A
Portable Real time USB signal analyzer, 9 kHz-7.5 GHz
Green Optics Co., Ltd.
High-power laser mirror fabrication technology
High-power laser weapons targeting objects at 0.5 ~ 4.0km distances require optical components with sub-nm wavefront error precision. Our Company has successfully developed aspherical polishing and high-power laser coating technologies for Ø300 ~ 550mm optical components through defense project experiences. measurement technology 1) Laser Induced Damage Threshold(LIDT) - The evaluation to confirm the durability of optical components is called LIDT (Laser-Induced Damage Threshold), which is defined as "the maximum amount of laser radiation incident on an optical component when the expected probability of damage is zero" (ISO 21254). In other words, it represents the maximum intensity or power of laser that an optical component can withstand, making it a critical requirement in laser weapon systems. - Our company has established LIDT measurement technology and in-house facilities developed in accordance with ISO 21254 standards. When compared with LIDT test results from domestic and international companies during laser weapon system development, we have demonstrated measurement technology and accuracy that meets or exceeds industry standards. While overseas companies require more than one month for verification processes, our company can immediately provide reliable data through our LIDT system. 2) Cavity Ring Down Spectroscopy(CRDS) - When the reflectivity is 99.997%, this may not present significant issues in low-power laser applications. However, in high-power laser components, even the 0.05% of light that passes through the optical mirror can cause problems in vulnerable parts of the system, including rear optical instruments, bonded lenses, and control cables. Therefore, measurement and evaluation methods for high-reflectivity optical mirrors are extremely important. - Currently, the transmittance and reflectance of optical components are generally measured using spectrophotometers, but measuring reflectance levels of 99.5% or higher is not possible with this method. CRDS (Cavity Ring-Down Spectroscopy) technology is required to achieve measurement resolution beyond that of spectrophotometers, and our company has established this system to measure the reflectance of various optical components. This is a critically important technology for responding to high-power laser weapon system development requirements.
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Seoul ADEX 2025 Digital Directory
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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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기업, 상품, 뉴스, 이벤트
RTX
Defense
As domains converge and connect, new threats and opportunities emerge. By giving our service members every advantage for operational success, we create a safer world. It is this mission that drives our relentless innovation in defense technology. With our integrated expertise and capabilities, Raytheon Technologies is uniquely positioned to give our customers the advantage in every moment.
Advanced Micro Devices, Inc
Defense-grade Adaptive SoC
AMD builds on its 30+ years of continuous focus and heritage in Aerospace and Defense, extending the XQ defense-grade portfolio with AMD Versal XQ Series SoCs. Versal adaptive SoCs combine adaptable processing of the programmable logic and acceleration engines with leading-edge memory and interfacing technologies to deliver customized, powerful heterogeneous acceleration for any application.
Intergravity Technologies
iGRVT-50 Orbital Transfer Vehicle
The iGRVT-50 is InterGravity Technologies’ next-generation green-propellant orbital transfer vehicle (OTV), purpose-built for the rideshare launch ecosystem. iGRVT-50 enables small payloads (up to 15–20 kg class) to be deployed or serviced in a wide range of orbits. Key Features - Payload Capacity : Up to ~20 kg class hosted payloads - Propulsion System : 20 N green bipropellant thrusters (C₂H₆/N₂O) - Delta-V Capability : > 450 m/s - Communications : UHF, S-band TM/TC, X-band downlink
BAE Systems
APKWS® laser-guidance kit

Filling the weapons gap and increasing platform firepower

The U.S. Government’s only program of record for 2.75”/70mm guided rockets, our APKWS guidance kit transforms unguided 2.75-inch (70 millimeter) rockets like the Hydra 70 Mk 66 and others into precision-guided munitions (PGMs). Qualified on numerous U.S. Department of War (DoW) platforms, APKWS laser guidance kits provide affordable surgical-strike capability to multiple rotary-wing and fixed-wing platforms, as well as unmanned aerial vehicles, static and mounted ground platforms, and maritime vessels.

The APKWS system bridges the gap between unguided rockets and larger anti-armor munitions with commonality across the U.S. military services – Navy, Marine Corps, Army, and Air Force. The APKWS system consistently delivers pinpoint accuracy for the highest lethality available against soft and lightly-armored targets at a lower cost than other systems.

Greater strike range with unmatched precision lethality

With the category’s highest combat-proven hit rate, APKWS guidance kit equipped rocket consistently hit their intended target with pinpoint accuracy while limiting collateral damage. The guidance section is designed to lock onto targets from over 6 kilometers away, supporting survivability and mission success by keeping your launch platform at a safe standoff distance from threats. The guidance kit’s Single Variant Block Upgrade optimized flight trajectory so the rocket can hit targets at a steeper angle of attack for enhanced lethality.

Innovative by design, the APKWS kit includes advanced Distributed Aperture Semi-Active Laser Seeker (DASALS) optics located on all four guidance wings, which are protected by wing-slot seals prior to firing, avoiding adjacent fire damage that can interfere with a nose mount seeker. Once the rocket is fired, the APKWS kit’s wings deploy and the optics lock on to designated targets, guiding the rocket to the target – delivering accurate strikes and minimizing collateral damage when and where it matters most.

  • Wing slot seals protect optics from adjacent firings, sand, and moisture prior to launch to ensure no damage or debris inhibit the seeker from locking onto targets
  • Optics lock on to moving or stationary targets in open or confined areas, supporting a wide variety of missions, and reducing any chance of a lost or uncontrolled rocket after launch
  • 40-degree instantaneous field of regard enables a broad capture area for the rocket to adjust mid-flight and stay on track to its target
     

Cost effective, easy to integrate, and more capable than ever

First put into production in 2008, the APKWS laser-guidance kit proved to be one of the most accurate, effective, and easy to implement systems in the world for converting unguided rockets into laser-guided rockets (LGR).  Today’s system has also proven itself capable in air-to-air targeting of unmanned aerial vehicles (UAVs) and low-flying cruise missiles – as part of a counter-unmanned aerial system (C-UAS) – as well as in ground-to-ground lethality fired from launchers mounted on vehicles and remote weapon stations.

Mission and platform flexibility, as well as its light weight and low cost of integration, makes our APKWS system one of the most highly capable and useful combat weapons available to every department of the U.S. DoW and to U.S. allies. In fact, since its introduction, over 100,000 APKWS units have been sold for service worldwide.

Production-ready for high demand

APKWS guidance kits are readily available. Demand from the U.S. military and international governments is high, and BAE Systems is well-positioned to support that demand. Our state-of-the-art factories in Hudson, New Hampshire and Austin, Texas continue to produce and deliver with available excess capacity, supported by our robust supply chain, advanced manufacturing capabilities, and recent investments of over $100 million in infrastructure improvements. We offer a manufacturing capacity of at least 25,000 units per year, and are continuing to expand production.

With most of our supply chain in the United States, our centralized approach, and focus on delivering zero defects, we are optimizing overall production and delivery efficiency, which shows in our:

  • Over 12 years in full-rate production
  • More than 100,000 units delivered to date
  • Proven ability to surge capacity, accelerating the delivery of over a thousand units ahead of schedule.
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