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Seoul ADEX 2025 Digital Directory
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EMCORE
SUPER TAC IMU - Super-Tactical (TAC) Inertial Measurement Unit (IMU
The new Super-TAC IMU integrates three fiber optic gyros that exceed tactical grade performance with three high-accuracy Micro-Electro-Mechanical Systems (MEMS) accelerometers and state-of-the-art support electronics in a single small, lightweight package. This solution addresses the need for superior inertial performance in a tactical- grade package, critical for operation in GPS denied and contested environments.
The Super-TAC IMU measures change in velocity and angle, utilizing a configurable variable synchronous data link control (SDLC) digital serial bus. The Super-TAC is configured to offer customers the best value solution when designing new systems as well as provide the flexibility to upgrade existing platforms.
The Super-TAC IMU employs state-of-the-art optics with fewer components, providing significant performance and reliability improvements across standard military environments.
Background
Emcore, located in Budd Lake, NJ has been designing, developing and producing inertial components, sensors and navigation systems for Space, Ground, and Avionic applications for over 35 years. Emcore has been developing Fiber Optic Gyros (FOGs) since the early 1990s, producing and delivering IMU products with performance ranging from tactical to strategic grade
PERFORMANCE
GYRO PERFORMANCE
Bias Stability < 0.05 °/hr. (1σ)
Angle Random Walk ( ARW) ≤ 0.01 °/√hr. (1σ)
Scale Factor Repeatability ≤ 100 ppm (1σ)
Scale Factor Linearity ≤ 50 ppm (1σ)
Angular Rate Range 1,000 °/sec
Acceleration Range 100,000 °/sec2
ACCELEROMETER PERFORMANCE
Range ± 25 g
Bias Variation ≤ 50 μg (1σ)
Scale Factor Stability ≤ 300 ppm (1σ)
SYSTEM PERFORMANCE
Bandwidth (adjustable) 800 Hz (gyros)
150 Hz (accelerometers)
MTBF >25,000 hr.
Integrated Procurement Technologies
AH-1 Cobra
J Labs
W-band frequency synthesizer
Product Information
Frequency signal generator for high-performance, high-precision target detection
High-frequency resolution design and frequency conversion function using DDS method
main performance
Frequency: L-Band ~ X-Band
Pulse Mode, Low spurious
Output Level: -10~+15dBm Range
Spurious: -55dBc min
Harmonic: -50dBc min
Phase Noise: High Performance
Frequency Sensibility: 50ppm max
Port isolation: 70dBc Min
Applicable fields
High-precision targeting guided weapon tower system and radar system can be applied
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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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
Drive System Design Ltd
Open Platform Inverter
Inverter platform developed by entirely by Drive System Design with a focus on versatility and flexibility, resulting in a powerful and highly versatile hardware and electronics base platform, which can operate:
- From 200 to 800V and beyond,
- At a Continuous Output of 450A rms
- Delivering an output Power up to 300kW and
- A PWM frequency from 20 to 30kHz
PBS GROUP
PBS TP100
The engine is suitable for MALE AUVs. Available in pusher and tractor configurations.
Digital interface for control and monitoring.
Stable operation at high altitudes and high temperatures.
Ability to run at cold temperatures below -30°C without preheating.
March Electronics
M55302, M28748 Retangular connectors
Continental connectors are manufactured with highest quality materials. Our contacts are machined to close tolerances as opposed to stamped and formed styles. All molding compounds are glass reinforced, flame retardant and able to withstand severe environmental and mechanical requirements. Military connector families conform to the highest Defense Supply center (DSCC) standards, which require qualification testing and continued periodic requalification under the surveillance of government representatives to maintain our Company Qualified Product Listing (QPL)
Sangdo Electronics co.,Ltd
Fibre Channel D-Sub
The Fibre Channel D-sub connector series features a multi-finger ground spring fixed around the shell provides a multi-point contact engagement that affords superior EMI shielding. The end result is extremely low contact resistance when measured from the contact outer body to the connector flange. The Fibre Channel D-Sub series also delivers superior performance ensuring minimal RF noise and high durability up to 1,000 mating cycles, while meeting and surpassing all requirements of MIL-STD-202 for shock and vibration.
Offered with 150 Ohm quadrax contacts, the connectors are available with 2, 4, 6 or 8 way insert arrangements. Additionally, D-Sub connectors feature ease of assembly, and a robust and comprehensive training package. To ensure that the correct high speed connectors are mated to address specific wiring requirements and keying functions, a keyed jack post option has been incorporated into the design. The six-positioned post allows for 36 possible keying combinations assuring that the correct Fibre Channel D-Sub plug is mated to the correct high speed receptacle. Non-keyed jack post versions are available as well. Fibre Channel D-Sub connectors feature size 3 quadrax contacts which are 30% larger than the size 9 configuration utilized in the 100 Ohm quadrax, ensuring a matched impedance signal throughout the contact mated pair at 150 Ohm differential impedance. These features ensure that Smiths Interconnect's Fibre Channel D-Sub connectors deliver the critical edge customers require.
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