Capabilities
In-house Capability from design to prototype
Electronic fuze design
Safety and arming mechanisms, interrupted explosive train logic and multi-mode detonation design.
Embedded firmware
MAVLink and UART interfaces, ESAF logic, G-sensor algorithms and controller firmware supervision.
PCB design
Altium and KiCad based multilayer, EMI-conscious, defence-grade PCB architecture.
CAD & mechanics
Fuze bodies, adapters, collars and munition fitment design using production-oriented geometry.
System integration
UAV–munition interfaces, mission logic, control links, arming conditions and fail-safe behaviour.
Standards mindset
Design approach references MIL-STD-431, MIL-STD-1316, MIL-STD-810, STANAG-4187, MIL-STD-461, MIL-STD-331 and JSG 0102.
Electronic Fuze & Control Architecture
Definition and design of electronic architectures for fuzes and warhead control units, optimised for high-G launch conditions, timing accuracy, and operational safety.
High-G & Harsh-Environment Electronics
Engineering of electronic designs capable of withstanding extreme acceleration, shock, vibration, temperature variation, and electromagnetic exposure typical of UAV-borne munitions and future artillery or rocket applications.
Sensing, Logic & Safe-and-Arm Integration
Integration of electronic sensing, environmental validation, and safe-and-arm logic to ensure controlled arming sequences and positive isolation until defined conditions are met.
Mission-Configurable Functionality
Support for programmable and configurable fuze modes, enabling a single hardware platform to support multiple mission profiles without mechanical modification.
Rapid Development & Program Support
Structured development workflows supporting concept definition, prototyping, trials, and transition toward qualification and series production in coordination with customers and partners
Engineered Quality. Disciplined Safety. Reliable Performance
In defence electronics, reliability is fundamental. At Divyastra Dynamics Pvt. Ltd. (DDPL), quality and safety are addressed at the design and system-integration level.
Our electronic fuze and control system designs align with recognised defence safety and test principles, including MIL-STD-1316 (fuze safety) and MIL-STD-331 (environmental and performance testing), applied as appropriate to specific program requirements. DDPL works with qualified partners to support validation, testing, and integration, ensuring controlled arming, predictable behaviour, and disciplined configuration control across development programs.
Electronic Safe & Arm Devices (ESAD)
- Multiple independent safety interlocks (setback, spin/flight time, environmental checks).
- Robust isolation of the detonator/initiator until all arming conditions are met.
- Compact form factors suitable for mortar, artillery, rocket and UAV warheads.
Industrialisation & Manufacturing
- High‑reliability PCB design and layout for extreme shock, vibration and temperature.
- Component selection, supply‑chain control and obsolescence management.
- Automated assembly, testing and calibration tailored to defence QA standards.
- Full documentation and traceability for qualification and long‑term support.
Engineering workflow