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Seoul ADEX 2025 Digital Directory
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Some of our latest content
Companies, Products, News, Events
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.
PARTNERS LAB Co., LTD.
Rocket nozzle with conformal cooling channels and isogrid ribbing
This rocket nozzle featuring conformal cooling channels and isogrid ribbing was manufactured using EOS Copper CuCP, a pure copper material optimized for additive manufacturing. The production required approximately 72 hours, taking advantage of the exceptional thermal and electrical conductivity of pure copper to meet demanding aerospace performance requirements.
As one of the few companies in Korea capable of performing metal additive manufacturing with pure copper, we provide advanced technical expertise and support OEM production as well as collaborative technology development projects with various industrial partners.
The showcased component was designed by nTopology and demonstrates the synergy of advanced design optimization with state-of-the-art copper additive manufacturing.
EO System
Prism Optic Weapon Sight
EDS is applied high-power LED light source to achieve fast target acquisition of shooter.
With an efficient LED light source, EDS guarantees more than 50,000 hrsof operation time (Continuous use).
EDS allows for better situation awareness and fast target engagement especially from non-standard shooting position.
EDS can be used for hunting/recreational purpose.
funzin
KWM : Kill Web Matching
Solution Overview
The AI-Based Command Decision Support System, "KWM," identifies battlefield targets and recommends optimal weapon system combinations. It supports end-to-end "Sensor-to-Shooter" execution for rapid, accurate, and efficient engagement and command decision-making.
Main Features
Identifies targets on the battlefield using integrated sensors and data
Recommends the most effective attack strategies for both reconnaissance and attack missions
Provides command decision support through real-time analysis and visualization
Suggests and allocates optimal target formations and strike assets
Supports on-site command and control with a user-friendly interface
Key Advantages
Enables quick, accurate, and efficient engagement of enemy targets
Automated recommendation of attack strategies and allocation of strike resources
Real-time synchronization between reconnaissance and attack kill webs
Direct connection from detection to strike (Sensor-to-Shooter capability)
Increases operational efficiency and decision-making accuracy in complex battlefield environments
Applied Cases
Successfully piloted in the Army Tiger Boost Project in 2024
Used for command decision-making and efficient allocation of attack resources in live military scenarios
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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.
방문 계획 수립
북마크 도구와 이벤트 플래너를 사용해 방문하고자 하는 기업과 관심 있는 제품을 검색하세요. 저장한 모든 항목을 조회할 수 있습니다
고급 검색
고급 검색 기능을 사용하여 상품, 인물, 기업의 위치를 빠르게 조회할 수 있습니다. 최첨단 기술을 통해 모든 참가사의 정보를 철저히 스캔하여 세밀하고 관련성 있는 정보를 제공합니다
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디렉터리를 사용해 전시회를 손쉽게 둘러보세요. 방문하고자 하는 기업의 위치와, 행사장 내 식당, 화장실, 출입구를 평면도에서 찾을 수 있습니다.
플랫폼 내 메시지
플랫폼 상의 전시 참가사와 관람객에게 직접 연락하여 미팅을 신청하거나 추가 정보를 요청하세요.
최신 콘텐츠
기업, 상품, 뉴스, 이벤트
SDT Space and Defence Technologies
ACMI Air Combat Maneuvering Instrumentation
The SDT F 16 Combat Training Pod is mounted on F-16 and similar air platforms in an external pod, and ensures efficiency in exercises and in the provision of air-to-air and air-to-ground tactics training to pilots.
SDT F - 16 Combat Training Pod features advanced air-to-air and air-to-ground combat training capabilities, such as real-time autonomous position generation, weapon simulation and real-time hit/miss notification, thanks to its long-range and high-speed RF data link and integrated processors.
The system has mission planning, live monitoring, debriefing and analysis/evaluation features. The SDT F 16 Combat Training Pod enables training in real flight conditions and in multi-threat/target environments. Its high-speed data link and modular design mean that the System is also a Live-Virtual-Constructive (LVC) training infrastructure.
SJPrecision
Special parts 스페셜 부품 류
SJP’s special parts are custom-designed and manufactured to meet unique requirements that standard components cannot fulfill.
With our advanced R&D capabilities and state-of-the-art CNC multi-tasking machines, we handle complex geometries, tight tolerances, and special materials with precision.
These parts are widely used in medical devices, semiconductor equipment, precision instruments, and aerospace & defense, where reliability and high accuracy are essential.
From rapid prototyping to full-scale production, we deliver end-to-end solutions that shorten development cycles and enhance product competitiveness.
nLIGHT Inc
C-UAS 30kW SBC HEL Source
C-UAS 30kW SBC HEL Source
Tescan Group a.s.
TESCAN Plasma FIB-SEM, SOLARIS X2
TESCAN SOLARIS X 2 extends FIB physical failure analysis capabilities to large-area applications, making deep cross-sectioning of advanced packaging devices, displays, MEMS, and optoelectronic devices more efficient.
Featuring the new generation Mistral™ Xe Plasma FIB column, SOLARIS X 2 offers increased maximum ion beam current and a sharper ion beam profile across the full range, with significantly reduced beam tails. This allows operators to use higher milling and polishing currents, achieving superior surface quality comparable to conventional Plasma FIB, but with greater speed and precision.
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