Defence engineering experts

Mission critical products delivered

Technology transfers obtained

Strategic electronics, unmanned systems, missile and technologies, ATE, EMS

Defence standards - DO254, DO260, DO178, MIL - STD

Certifications - CEMILAC

Missile Launchers – MRO

Objective

  • Depot Level Maintenance for a range of missile systems and subsystems, ensuring mission readiness, lifecycle extension, and self-reliant sustainment capability within India.

Approach

  • Established a dedicated, fully equipped Centre for Depot Level Maintenance.
  • Center delivers Electrical, mechanical, hydraulic, and pneumatic testing of missile launchers.
  • Specialized maintenance of high‑pressure bottles, including validation at up to 1000 bar using custom‑engineered test rigs.

Outcome

  • Enhanced operational availability of critical missile assets, Lifecycle cost reduction, Scalability to future needs.

Integrated Avionics Display Computer

Objective

  • End‑to‑end system engineering of Display Driving Unit used in aircraft cockpits.

Approach

  • Conduction‑cooled display driving architecture
  • Custom board + backplane design
  • Drives all cockpit displays
  • ARINC 404A standard enclosure
  • DO‑160G compliant

Outcome

  • Qualified, flight‑ready display control system designed to meet rigorous aviation standards with enhanced reliability.

New Generation DRFM platform

Objective

  • Custom Digital RF Memory platform with high‑performance signal‑processing architecture.

Approach

  • Platform for RADAR Target Simulation & ECM
  • Modular architecture with 3 sub‑systems
  • Instantaneous IF bandwidth up to 1 GHz
  • Dual‑channel high‑speed ADC/DAC
  • High‑performance VLSI & SoC based signal processing

Outcome

  • Accelerated Mission‑System Development, Scalable Platform for Future ECM Upgrades

Integrated Telemetry System

Objective

  • Compact, Integrated airborne telemetry system

Approach

  • Real‑time flight parameter analysis
  • Flexible & Scalable multi‑channel acquisition
  • PCM encoder + S‑band transmitter in compact form factor
  • AES128/256 encryption support
  • Qualified to MIL‑STD 461E, MIL‑810G, MIL‑704C

Outcome

  • Secure, High‑Integrity Telemetry Transmission, Scalable Platform, Accelerated Certification and Deployment

SONAR PROCESSING SYSTEM

Objective

  • Rugged, data acquisition and processing front‑end for SONAR applications.

Approach

  • Multi‑channel real‑time acquisition
  • Hardware, Drivers/BSP & FPGA design
  • Rugged naval‑grade construction
  • Air‑cooled architecture
  • MIL‑STD 461E & JSS 55555 compliant

Outcome

  • Scalable Platform, Improved Underwater Situational Awareness and Flexible Deployment Across Naval Platforms

Advanced X-band Surveillance RADAR for Autonomous Underwater Vehicles

Objective

  • Compact, rugged X‑band RADAR for diver detection and coastal surveillance on autonomous underwater vehicles.

Approach

  • Portable real‑time acquisition & tracking system
  • X‑band cylindrical slotted waveguide antenna
  • High‑pressure‑rated radome
  • Compact exciter & quad‑channel receiver
  • Conduction‑cooled architecture
  • MIL‑STD 461E & JSS 55555 compliant

Outcome

  • Enhanced Maritime Domain Awareness, Reduced Integration & Deployment Time, Scalable Platform

Radar Controller And Processing Unit

Objective

  • High‑performance radar signal processing system LRUs for mission‑critical radar operations.

Approach

  • VPX radar signal processor
  • VME radar controller & data processor
  • Custom hybrid backplane
  • Multi‑node dual‑core processing
  • Liquid‑cooled LRUs (Signal Processor, Data Processor, Wideband Recorder, PDCU)
  • MIL‑STD‑461F & MIL‑STD‑810F compliant

Outcome

  • Enhanced Radar Processing Performance, Scalable, Multi‑Node Architecture, Improved Mission Readiness & Operational Availability

Drones

  • Variants: Rapid Action Armed Drone, Rugged Heavy Payload Drone, Tethered Aerial ISR Drone, Long Endurance Surveillance Drone
  • Payload Capacity Up to 55 kgs
  • Altitude up to 20,000 feet AMSL
  • Range up to 20km
  • Manual & autonomous modes
  • Modular weaponization kit for various classes of payloads
  • Single/multi-rack ejector with configurable drop sequences
  • Constant health monitoring of munition in flight
  • Time delay in detonation after release to protect Drone

Autonomous Ground Vehicle

Objective

  • Rugged autonomous vehicle for 24×7 perimeter surveillance, first‑response missions, and convoy leading.

Approach

  • Rugged Autonomous all‑terrain mobility
  • Patrolling of vital installations with seamless Video Surveillance capability
  • Customized electric drive‑by‑wire platform
  • Multi Sensor Suite: LIDAR, RADAR, Ultrasonic, Stereo/Thermal/IR/Color Camera and Ambient light
  • Battery Management and monitoring software
  • Support custom map, tiles and route planning
  • AI implementation for friend / foe detection

Outcome

  • Deployed in Indian Defence Lab
  • Highly Customizable, Mission‑Adaptive Platform

ATE

Case Study

  • Indigenization / Re-engineering / Obsolescence management for Missile Test Bench.

Test Benches Supplied for different applications

  • Generic Test Bench, Acceptance Test Bench, Environmental Test Bench
  • Vibration Test Bench, SRU Test Bench, Defect Investigation Unit
  • Specific ILM Benches, Mission Computer Test Bench, Auto Pilot Test Bench
  • Radar Processing Unit Test Bench, Missile Test Bench

Test Program Set

  • Head Level Display (HLD), Lateral Display (LD – MFD 54), Head Down Display (HDD – MFD 55)), Function Selection Display Unit (FSDU), Repeater Display (RD86)Switching Unit (VSU)
  • Control Display Unit (CDU), High Band Jammer – Left Sup. Unit (HBJ-LSU), IFF – Interrogator, IFF – Transponder, Missile Sub Systems

Counter UAV Hard Kill Solution

Features

  • Hard kill solution able to detect, identify, track and neutralize fixed or agile targets
  • Extended range: from one to several kilometres
  • Progressive effect: from optical jamming to neutralisation or destruction
  • Low logistics: no ammunition and zero firing cost
  • Extremely stealthy: invisible and silent
  • Architecture modularity, Shot precision, Day & night capability, Immune to jamming
  • Solution compatible with any C2 (Command and Control) process or a BMS (Battle Management System) Accurate, Immediate, Continuous fire

Six-Axis Full Motion Simulator for DO-228

Objective

  • Design, manufacture, installation, commissioning and warranty support of 6-axis Full Motion Full Mission Simulator for DO-228 aircraft.

Approach

  • Cockpit Items, Data Pack Generation, Procurement and Manufacture of Sub Systems.
  • Airport Visuals, System Integration, Acceptance Testing.
  • Documentation and Interactive Electronic Technical Manual
  • Installation, Training, Warranty and Maintenance.

Mobile Command And Control Vehicle

Objective

  • Design and integration of  MCCV for Commissionerate of Police

Approach

  • Tactical solution for incident management
  • Custom made, robust vehicle
  • Outfitted with specialized surveillance, communication & monitoring equipment
  • Provides seamless 360 surveillance and monitoring
  • Efficient connectivity with Police Head Quarters & Police Control Rooms
  • Real-time situational awareness enabling rapid decision making

C - UAV: AI-based Detection & Jamming systems

Objective

  • RF‑based detection and jamming solutions designed to neutralize mini and micro drones within a 5 km radius. Available in man‑portable and vehicle‑mounted variants with omni or sector antenna options for full 360° or focused 90° coverage. Ideal for border protection and critical infrastructure security.

Key Highlights

  • RF / Laser‑based detection & jamming
  • Upto 5 km neutralization range
  • Man‑portable & vehicle‑mounted variants
  • 360° omni or 90° sector coverage
  • ISM & wideband spectrum jamming
  • Effective against COTS & custom drones

Outcome

  • Deployed in Indian Border
  • Comprehensive Coverage for High‑Risk Zones, Flexible Deployment Across Operational Scenarios, Effective Countermeasure