Radio Frequency Development & Tactical Air Borne System Engineering.
Our Aerospace R&D focuses on developing innovative technologies for defense, surveillance, and secure communications. We specialize in drone detection and neutralization, intruder detection, and Software Defined Radio (SDR) solutions, delivering intelligent systems that enhance situational awareness, improve operational efficiency, and support mission-critical aerospace, defense applications and homeland securities.
Composite structures are engineering components made by combining two or more different materials to achieve superior strength, lightweight performance, and durability. We develop and manufacture products such as rocket motor, weapon containers, canister launch tubes for aerospace and defense applications.
Our Electronics System Design & Manufacturing (ESDM) vertical spans design, development and manufacturing of highly reliable and precision mission-critical RF & Microwave, digital products for defense and aerospace applications on Build To Spec (BTS) and Build To Print (BTP) categories. Our product range include missile and Airborne Subsystem, EW systems and space systems. Our facility has state of the art inhouse Fabrication in a defense standard clean room, assembly, testing and bulk production.
Six areas of deep capability, each one developed in house and built to operate in real conditions, not just on paper.
Active/passive seeker electronics, radar front ends and supporting modules
Passive seekers, front-end receivers, filter banks and BIT units
Programmable frequency synthesizers and local oscillator modules
high-speed SoC FPGA and microcontroller-based hardware
control systems and power converters
Composite structures provide high strength-to-weight ratio, making them ideal for aerospace, automotive, and construction applications.
Highly calibrated atmospheric validation chambers built specifically to handle complex micro-die terminations, preventing micro-particle interruption during continuous bonding sequences.
Anechoic diagnostic testing loops that trap internal electromagnetic feedback to ensure perfect wave calibration across strategic bandwidth parameters.
High-reliability tactical production zones configuring components into field-ready modular architectures.
High-compute simulation systems running virtual aerodynamic calculations and processing complex thermodynamic physics to map hardware performance before physical manufacturing.
Thermal chambers with high ramp capability vibration and shock machines, and also bump machines.
Composite structures provide high strength-to-weight ratio, making them ideal for aerospace, automotive, and construction applications.