Electronic Fuses

Advanced fuzing systems for modern precision munitions – delivering reliability, accuracy, and mission-critical performance in diverse operational environments.

Drone Droppable Munitions

Compact, lightweight electronic fuses engineered for unmanned aerial vehicle delivery systems. Optimized for rapid deployment and precise target engagement from various altitudes and flight patterns. Weight: 85-120g Altitude Range: 50-3000m Accuracy: ±2m CEP

Proximity Fuses (VT-Series)

Radio frequency proximity detection for airburst functionality. Provides optimal fragmentation patterns and area denial capabilities. Adjustable standoff distances from 3-15 meters.

DRISHTI

Multi-domain surveillance & targeting payloads

  • Day/night thermal imaging with LWIR/MWIR sensor options
  • Real-time target tracking, geo-tagging & lock-on
  • Encrypted AES-256 video downlink
  • Modular integration for UAV, ground vehicle, and naval platforms
  • Stabilised gimbal — 3-axis precision stabilisation

AKASH-X

Multi-role unmanned aerial system platform

  • Fixed-wing VTOL hybrid — runway-independent operations
  • Mission endurance up to 6 hours at cruising altitude
  • Payload capacity up to 4 kg — modular payload bay
  • BVLOS capable with encrypted C2 datalink
  • Swarm-ready architecture with inter-UAV mesh networking

Impact Delay Fuses (ID-Series)

Programmable delay timing for penetration targets. Variable delay settings from 0.1-2.5 seconds post-impact. Hardened construction for concrete and fortified structures.

DRISHTI

Multi-domain surveillance & targeting payloads

  • Day/night thermal imaging with LWIR/MWIR sensor options
  • Real-time target tracking, geo-tagging & lock-on
  • Encrypted AES-256 video downlink
  • Modular integration for UAV, ground vehicle, and naval platforms
  • Stabilised gimbal — 3-axis precision stabilisation

AKASH-X

Multi-role unmanned aerial system platform

  • Fixed-wing VTOL hybrid — runway-independent operations
  • Mission endurance up to 6 hours at cruising altitude
  • Payload capacity up to 4 kg — modular payload bay
  • BVLOS capable with encrypted C2 datalink
  • Swarm-ready architecture with inter-UAV mesh networking

Smart Proximity Fuses (SP-Series)

Multi-sensor fusion combining radar, optical, and acoustic detection. AI-enhanced target discrimination reduces collateral damage. Adaptive engagement algorithms.

SIDDHI

Ruggedised embedded controllers & mission processors

  • MIL-STD-810 environmental hardening (shock, vibe, temp)
  • Secure boot, trusted execution environment & TPM 2.0
  • Real-time OS with DO-178C & IEC 61508 support
  • Wide operating temperature: −40°C to +85°C
  • Multi-core ARM / x86 variants with FPGA co-processing

Loitering Munitions

Extended-duration fusing systems for autonomous weapon platforms. Designed for persistent surveillance and time-critical target engagement with advanced target recognition capabilities.
Autonomous Target Recognition (ATR-Series)

AI-powered target identification and engagement. Multi-spectral imaging with thermal and optical sensors. Machine learning algorithms for threat classification and priority targeting.

Operator-in-the-loop control systems. Secure encrypted communication links. Manual override capability for abort/redirect commands. Real-time target confirmation protocols.

Configurable engagement profiles for various target types. Anti-personnel, anti-vehicle, and anti-structure modes. Dynamic fuze timing based on target analysis and engagement angle.

Loiter Time

45-120 min

Detection Range

2-8 km

Target Types

15+ Classes

Warhead Control Units

Precision release mechanisms and control systems for drone-deployed munitions. Integrated payload management with real-time monitoring and fail-safe protocols for secure munition deployment.
Electromagnetic Release Systems (ERS-Series)
Solenoid-actuated release mechanisms with instant deployment capability. Zero-vibration release for stable flight dynamics. Redundant activation circuits with manual override functionality.
Compressed air-driven ejection systems for rapid munition separation. Variable ejection velocity control. Suitable for multiple payload configurations and sequential release patterns.
GPS-coordinated release timing with wind compensation algorithms. Integrated with flight management systems for precision drop coordinates. Real-time ballistic calculation and trajectory optimization.

Release Time

<0.1s

Payload Capacity

1-12 Units

Accuracy CEP

±1.5m

Core Technologies

Power Management

Ultra-low power consumption with advanced battery management. Extended operational life through intelligent power cycling and sleep modes.

Secure Communication

Military-grade encryption for command links. Frequency-hopping spread spectrum technology for jam-resistant communications.

Precision Guidance

Military-grade encryption for command links. Frequency-hopping spread spectrum technology for jam-resistant communications.

Environmental Hardening

Ruggedized design for extreme conditions. Temperature range -40°C to +70°C, shock resistance up to 15,000g, EMI/EMC compliance.

AI Processing

Edge computing capabilities with neural network processors. Real-time image analysis and decision-making algorithms.

Modular Design

Configurable sensor packages and engagement profiles. Field-programmable parameters through secure interfaces.

Payload Integration

Universal mounting systems compatible with multiple drone platforms. Standardized electrical and mechanical interfaces for rapid deployment configuration.

Release Coordination

Synchronized multi-payload release sequencing. GPS-timed deployment with wind drift compensation and ballistic trajectory calculation algorithms.

Drone Platform Compatibility

Universal mounting and interface systems designed for seamless integration across multiple UAV platforms. Standardized protocols ensure rapid deployment and mission flexibility.

 

Platform Types

Fixed/Rotary Wing

Weight Class

5-500kg MTOW

Interface

MIL-STD-1760

Release Mechanism Features

Advanced control systems ensuring precise timing and safe separation. Multiple redundancy levels with comprehensive pre-flight testing and real-time status monitoring.

Safety Protocols

Multi-stage arming sequences with geographic and altitude constraints. Automatic abort systems for mission parameter violations. Encrypted command validation.

Real-time telemetry of release mechanism status. Pre-flight diagnostic checks and continuous system health monitoring. Alert systems for maintenance requirements.

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