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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.
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.
Mutronics, Inc.
Digital Altimeter
Altimeter for Missile Application
Frazier Aviation Inc.
Maintenance, Repair & Overhaul | Frazier Aviation, Inc.
Military and Commercial
Panoptics Co., Ltd
Technical Service for the free space laser communication (Design / Assembling / Evaluation)
From precise control of various optical components(laser/detector/amplifier) & laser beam alignment(QD/FSM), a data rate of 10G can be achieved over distances of several thousand kilometers.
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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
General Atomics Aeronautical Systems, Inc.
Gambit Series
The future of airpower pairs large numbers of autonomous uncrewed aircraft with the most advanced crewed fighters of today and tomorrow. These AI-enabled uncrewed aircraft systems are designed for low-cost mass production but will pose a significant threat, forcing adversaries to commit valuable resources to combat them – creating gaps in enemy defenses for high-end multi-mission crewed fighters to exploit. Collaborative Combat Aircraft (CCA) will provide magazine depth and advanced battlespace surveillance, using low-observable features to evade detection while securely relaying findings to the front line. They can act on their own or in concert with the rest of the force.
General Atomics Aeronautical Systems, Inc. is advancing this new era of air superiority with a bold new semi-autonomous platform system that is reshaping the way the U.S. and allied forces secure the battlespace: Gambit Series.
Unlike other proposed collaborative platforms, Gambit offers multiple aircraft models, each configured for demanding missions. The series includes variants for intelligence, surveillance & reconnaissance (ISR), air-to-ground engagements, fighter training, stealthy combat reconnaissance, and carrier-based operations. Most importantly, they all have something in common.
General Atomics Aeronautical Systems, Inc. is advancing this new era of air superiority with a bold new semi-autonomous platform system that is reshaping the way the U.S. and allied forces secure the battlespace: Gambit Series.
Unlike other proposed collaborative platforms, Gambit offers multiple aircraft models, each configured for demanding missions. The series includes variants for intelligence, surveillance & reconnaissance (ISR), air-to-ground engagements, fighter training, stealthy combat reconnaissance, and carrier-based operations. Most importantly, they all have something in common.
PARTNERS LAB Co., LTD.
KF-21 Fighter Jet Model
This KF-21 fighter jet model is produced using advanced SLA (Stereolithography) additive manufacturing technology, providing both intricate detail and structural precision. Manufactured with industrial-grade ABS material, the model benefits from our fleet of six SLA machines, ensuring consistent quality and scalability for various production demands.
Our in-house post-processing team delivers a wide range of finishing options, including custom color applications tailored to client specifications.
Our company’s origins are rooted in expert prototype fabrication, and we have since evolved into a leader in additive manufacturing technologies. We support OEM production and prototype mock-up projects for diverse clients, building a reputation for technical excellence and collaborative development.
The KF-21 model highlights our capabilities in precision model making, turning innovative designs into high-quality finished products.
AeroMaster Corporation (AMC)
SHM System
Supports non-destructive inspection of aircraft composite skin structures and is composed of a piezoelectric layer sensor, data acquisition equipment, and damage analysis software.
Utilizes piezoelectric sensors to generate Lamb-wave and acquire signals, collecting data to accurately detect and assess composite damage. Visualizes inspection results on display such as damage location, size and index.
- POD Accuracy: 1 inch 90% or more
- POD Precision : Position error within 30 mm
- 64 channels / 230 path reference detection time within 10 minutes
- Sensor : Resonance resistance less than 400kΩ
- Sensor : MIL-STD-810G
- Sensor : RTCA DO-160 Section 23.0
- DAQ : x128 Piezoelectric sensor interface
ViscoTec Pumpen- u. Dosiertechnik GmbH
Mobile Mix-on-Demand System
The semi-automatic ViscoTec mix-on-demand station is already in successful use as a mobile system. For reliable mixing and dosing of two-component materials, in situ.
Two-component materials are commonly processed using premix cartridges, hardener rod cartridges or by mixing two components by hand. The disadvantages are obvious: The risk of human error, enormous material waste and high production costs offer every reason for taking the automated route.
With ViscoTec filling stations, epoxy resins, polysulfides and polyurethanes can be removed from larger containers and filled on-demand with the exact quantity required. The dosing is volumetric on a component or a filling container. A typical application is dosing in so-called inserts (thread inserts). The compact arrangement of the components on a mobile frame guarantees the operator maximum flexibility. The design as a stationary system has already been implemented several times.
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