Built for every industry that demands precision.
Seven sectors, each with its own qualification standards, documentation burden and failure consequences. We calibrate the deliverable to the destination industry — a drawing pack for a defence programme is not the same document as one for a high-volume automotive stamping, and we treat them differently from the first review onward.
Aerospace & Defence
Flight control systems, guidance kits, actuator systems, telemetry modules, space-grade components, UAV structures and missile systems. Proven track record with HAL, DRDO, ISRO, the Indian Army and the Indian Navy.
The most unforgiving environment we work in: qualification loads, vibration spectra, thermal cycling and material traceability are fixed before geometry is drawn, and every deviation is documented. We design cockpit control hardware, guidance mechanisms and space-grade actuation assemblies, then prove them through FEA, shock and vibration analysis and a full inspection plan tied to the drawing.
- Flight control assemblies — column, paddle and throttle quadrant hardware
- Precision guidance kits and course-correction fuze mechanisms
- Space-grade linear actuators for cryogenic flow control
- Shock, vibration and thermal-cycling qualification analysis
- Material certification and full traceability documentation
- ◢Precision Guidance Kit (DRDO)
- ◢Course Correction Fuze (Indian Army)
- ◢HAL Tejas LCA — CCA / RPA / TQA flight control hardware
- ◢Chandrayaan TFCV linear actuator (ISRO / VSSC)
- ◢FOTC Cable Launch & Recovery (Indian Navy / Mahindra Defence)
ASME Y14.5 · aerospace fatigue & vibration qualification · NDA-controlled data handling
Automotive & Mobility
Structural components, powertrain enclosures, suspension geometry, EV battery housings, lightweighting analysis, NVH optimisation and DFM for high-volume production.
Automotive engineering is won on grams, rupees and cycle time. We combine topology optimisation with fatigue-validated FEA to strip mass out of brackets and housings without losing stiffness, then re-check every feature against high-volume stamping, casting and machining economics so the saving survives contact with the production line.
- EV battery enclosure design, sealing and crash-load analysis
- Topology-optimised structural brackets and mounts
- Suspension geometry and fatigue-life qualification
- NVH analysis for powertrain and driveline mountings
- DFM for high-volume stamping, casting and machining
- ◢EV battery enclosure topology optimisation
- ◢Suspension arm fatigue qualification
- ◢Stamping tool design
- ◢NVH optimisation for powertrain brackets
High-volume DFM · fatigue qualification · IATF-aligned documentation practice
Healthcare & Medical Devices
FDA/CE-compliant medical device enclosures, surgical instrument design, diagnostic equipment housings, implant-adjacent structural components and clean-room compatible manufacturing drawings.
Medical work is a documentation discipline as much as an engineering one. Material selection is driven by biocompatibility and sterilisation method, geometry is driven by cleanability, and every design decision is traceable back to a requirement — so the device file survives audit as cleanly as the part survives autoclaving.
- Diagnostic and imaging equipment enclosure design
- Surgical instrument and jig design for repeatable sterilisation
- Biocompatible material selection and finish specification
- Design history documentation aligned to ISO 13485 practice
- Clean-room compatible manufacturing and assembly drawings
- ◢Diagnostic device enclosure DFM
- ◢Surgical jig design
- ◢Disposable component cost reduction
- ◢Implant-adjacent structural simulation
ISO 13485-aligned documentation · FDA / CE design-control practice · biocompatible materials
Industrial Manufacturing
Special purpose machines, hydraulic and pneumatic systems, automation fixtures, testing rigs, production line tooling, tube bending machines, corrugated sheet-making machinery and custom industrial equipment.
This is the sector where we design and build the machine itself. An SPM engagement starts with your cycle-time and quality target, works back through the mechanism, actuation circuit, guarding and control interlocks, and ends with a commissioned machine, an operator SOP and a maintenance schedule your team can actually follow.
- Special Purpose Machine concept, design and build
- Hydraulic and pneumatic circuit design and component sizing
- Workholding fixtures, poka-yoke and automation cells
- Test rigs for Tier-1 component qualification
- Guarding, interlocks and operator-safety engineering
- ◢Special Purpose Machine (SPM) design & build
- ◢Hydraulic vices · tube-bending machines · corrugated-sheet machines
- ◢Test rigs for Tier-1 component qualification
- ◢Assembly-line optimisation
Machine-guarding practice · cycle-time and OEE targets · maintainability by design
Energy & Power
Structural engineering for renewable energy structures, generator enclosures, valve actuator systems, flow control components, pump assemblies and energy infrastructure components requiring precision fabrication.
Energy hardware runs continuously, outdoors, under pressure and temperature. We size structures for fatigue over decades rather than cycles, run CFD on flow paths to recover efficiency, and specify coatings, sealing and fabrication tolerances that survive the duty cycle instead of just the factory acceptance test.
- Valve actuator and flow-control mechanism design
- Pump and heat-exchanger CFD optimisation
- Pressure vessel analysis and re-rating
- Renewable structure fatigue and wind-load analysis
- Heavy fabrication drawings and weld specification
- ◢Wind turbine yaw assembly
- ◢Pressure vessel re-rating
- ◢Heat exchanger CFD optimisation
Pressure-equipment analysis practice · long-life fatigue design · weld and coating specification
Safety & Industrial Protection
Fall protection systems, davit arm cranes for confined spaces, lifeline systems, rescue equipment structural design, safety equipment testing rigs and confined-space access equipment.
Equipment that holds a human life carries a different design margin and a different evidence burden. Structures are analysed against the certifying standard's test loads, then we design and build the dynamic test rigs that physically prove compliance — so the certification file rests on measured data, not only on analysis.
- Davit arm cranes for confined-space access and rescue
- Horizontal and vertical lifeline system engineering
- Fall-arrest anchor and structure qualification
- Dynamic drop-test rig design and build
- Industrial guarding and edge-protection design
- ◢Fallprotec davit arm cranes
- ◢Karam fall-arrest systems
- ◢Industrial guarding to EN 13374
EN 795 · EN 362 · EN 355 · EN 13374 · applicable IS standards
Heavy Machinery & OEM
Large structural component design, OEM supplier engineering support, heavy lifting equipment design, custom fabrication drawings and end-to-end engineering for capital equipment manufacturers.
Capital equipment fails at welds, wear surfaces and load paths nobody analysed. We take on the large weldments and lifting structures OEMs would rather not tie their own engineers to — full structural and fatigue analysis, wear-resistant material and tooling selection, and fabrication drawing sets detailed enough for a heavy shop to build without interpretation.
- Large weldment and chassis structural analysis
- Crane jib, boom and lifting-structure fatigue review
- Wear-resistant tooling and liner engineering
- Heavy fabrication drawing sets and weld maps
- Dedicated engineering support for OEM programmes
- ◢Mining equipment structural analysis
- ◢Heavy-machinery wear-resistant tooling
- ◢Crane jib fatigue review
Weldment fatigue analysis · lifting-equipment design factors · heavy fabrication tolerancing
Sector questions, answered.
Standards, cross-sector transfer and what changes when a programme moves from one industry to another.
Ask the engineering desk →01Which industries do you serve?+
Aerospace and defence, automotive and mobility, healthcare and medical devices, industrial manufacturing, energy and power, safety and industrial protection, and heavy machinery and OEM programmes — seven sectors, each with its own qualification standards and documentation expectations.
02How do you adapt to sector-specific standards?+
Deliverables are calibrated to the destination industry: ASME Y14.5 GD&T throughout; aerospace fatigue, shock and vibration qualification; EN 795, EN 362, EN 355 and EN 13374 for fall protection and guarding; ISO 13485-aligned documentation practice for medical devices; and IS/ASTM material certification where the customer specifies it.
03My sector is not listed — can you still help?+
Almost always. The workflow that qualifies a satellite actuator qualifies a pump housing. Send the requirement and we will tell you honestly within 24 hours whether we are the right team for it.
04Do you support export and international programmes?+
Yes. We work with overseas OEMs and their Indian supply chains, deliver drawings in ISO or ASME projection as required, and support vendor qualification for export-bound components.
Ask your own question.
An engineer answers by email — usually within one working day.
Not sure where your project fits?
We regularly translate methods across sectors — aerospace rigour applied to industrial equipment, or AI optimisation applied to structural safety systems.
