SVAT

Aerospace

SVAT eVTOL concept

SVAT

Aerospace

Aircraft zone — shot 1 · centred · frames

Pinaka 1

A New Era
Of Air Mobility.

eVTOL Platform

Emergency Response

Defence Operations

Scroll to orbit ↓

Aircraft zone — shot 2 · frames

Shot 02 — Capability

Compact.
Capable.
Mission-Ready.

150–220

km/h target speed

2 hrs

targeted endurance

120 kg

payload capacity

3 × 3 m

landing footprint

Target specifications; platform under development.

Aircraft zone — shot 3 · frames

Shot 03 — Deployment

Folds Into
A 4×4.

Designed to fold down to fit inside a 7-seater car or pickup, take off from a 3 m × 3 m clearing, and land on slopes of up to 40° — so it deploys where infrastructure doesn't exist.

Automated flight control — auto take-off & landing

360° LiDAR obstacle detection with auto-braking

Two variants — manned and unmanned cargo

Aircraft zone — shot 4 · frames

Shot 04 — Safety by Design

No single failure
takes it down.

All safety layers

8-motor distributed lift

Controlled flight designed to survive up to 4 motor failures

Ballistic parachute

~1.5 s deployment, auto kill-switch and SOS with location

Triple redundancy

3× flight controllers and sensor sets, 2× flight computers

Hybrid power backup

Dual detachable packs + hydrogen fuel cell emergency reserve

India

Designed and built for Indian terrain, climate & missions

#01

An Indian aerospace startup building eVTOL aircraft

Our first vehicle is being developed for emergency and public-service operations — medical emergencies, rescue missions, firefighting support, police operations, and armed-forces applications. Long term, we aim to become a major eVTOL manufacturer for civil, emergency, and defence applications.

"Safe, reliable, practical aircraft that reach locations quickly — when time is critical."

Compact. Capable.
Mission-Ready.

SVAT eVTOL design Hover to play

SVAT eVTOL — in development

#01 — Target Speed

150–220 km/h

Designed for rapid emergency response over congested or difficult terrain.

#02 — Flight Endurance

Up to 2 hrs

Targeted endurance from a hybrid battery + hydrogen fuel cell power system.

#03 — Payload

Up to 120 kg

Medical supplies, equipment, and critical cargo where roads can't reach.

#04 — Compact & Foldable

Fits a 4×4

Folds to fit inside a 7-seater car or pickup — deployable from anywhere.

#05 — Minimal Infrastructure

3 m × 3 m

Designed to take off and land from a small open area, on slopes up to 40°.

#06 — Obstacle Avoidance

360° LiDAR

Full-surround detection with auto-braking — ~2 m stopping distance at low speed.

#07 — Simple Operation

Automated

Automated flight control with auto take-off & landing — far easier than a helicopter.

#08 — Two Variants

Manned + UAV

A piloted version and an unmanned cargo version, sharing one platform.

Target specifications; platform under development.

#02 — The Differentiator

Safety
By Design

Multiple independent layers of safety, designed so no single failure results in loss of control.

Deep-dive: Redundancy Architecture

Smart BMS monitoring every cell — voltage, current, and temperature — with fault lockout.

Cycle-count lockout: packs are retired automatically before degradation becomes a risk.

Over-specified wiring and ESCs with deliberate safety margins above peak loads.

Failure-detection logic designed to isolate faults and reconfigure control in flight.

01

Distributed 8-Motor Propulsion

Designed to maintain controlled flight even if up to 4 motors fail.

02

Ballistic Parachute

Deploys in ~1.5 seconds on major failure — automatic kill-switch plus SOS alert with location data.

03

360° LiDAR + SLAM

Detects obstacles, automatically slows or stops, and can override unsafe pilot inputs.

04

Pilot Unresponsive Mode

The aircraft holds a stable hover and performs a controlled self-landing.

05

Triple / Dual Redundancy

3× flight controllers, 3× critical sensor sets, 2× flight computers, dual communication buses, dual Ethernet links.

06

Hybrid Power Backup

Dual detachable battery packs + hydrogen fuel cell emergency backup; smart BMS with fault lockout and a geofenced battery ejection system for thermal runaway.

Built for Public Safety

#03 — Applications

Medical Emergency

Rapid response when minutes decide outcomes.

Rescue Missions

Reaching people where vehicles and helicopters can't.

Firefighting Support

Equipment and overwatch for fire crews on the ground.

Police Operations

Support for policing and crowd-control operations.

Critical Logistics

Cargo delivery to remote and cut-off locations.

Advanced eVTOL Platforms for India's Armed Forces

#04 — Defence

Indian Army

Rapid delivery of medical supplies & equipment

Emergency evacuation

Personnel transport in difficult terrain

Logistics in mountainous & remote regions

Surveillance & reconnaissance support

Indian Navy

Ship-to-ship and ship-to-shore logistics

Medical evacuation

Coastal surveillance

Search-and-rescue

Supply delivery to remote islands

Indian Air Force

Rapid movement of essential supplies

Emergency response

Support for remote air bases

Personnel mobility

Surveillance support

We aim to work closely with the Armed Forces to build aircraft suited to India's terrain, climate, and defence needs.

Meet The Team

#05 — Team

Anubhav

Anubhav

India

Founder · Director · Product Development

Paikhomba

Paikhomba

India

Director, Research & Development

PG in Sociology

Annapriya

Annapriya

India

Research & Development

BTech Mechanical Engg.

Palak

Palak

India

Finance & Compliance

CA Finalist · BCom Grad

Akshat

Akshat

India

Branding & Marketing

Computer Science Engg.

Aakash

Aakash

Germany

Aerospace Engineer

BTech Aerospace Engg.

Ritvik

Ritvik

India

UX & Styling Designer

Masters in Transportation Design

The aircraft and its safety systems are part of an active design & development roadmap.

#06 — Status

Complete

Concept

Complete

Design & Systems Engineering

Current Focus

Prototype

Planned

Product Development

#07 — Investor Enquiries

Partner with us in building India's next-generation air mobility.

email us
+91 8448627126