Autonomous energy infrastructure for drones

Keep drones flying.
Continuously.

Autonomous battery-swap stations that eliminate downtime. Land, swap, and take off in under a minute.

EXANTRO
Autonomous delivery drone
Swap complete · 60s

Autonomous Battery-Swapping Station

Scroll to dock
<0sSwap turnaround
0/7Autonomous operation
0+Extra battery cycles
The problem

Drones spend more time charging than flying.

Traditional charging takes 30–45 minutes per cycle. That means fleets sit idle, missions get delayed, and ROI drops. Manual battery swaps are error-prone and don't scale.

Our solution

Autonomous swap stations that keep fleets airborne.

Our station handles the full cycle — land, swap, takeoff — in under 60 seconds. No manual intervention. No downtime. Continuous operations, around the clock.

Downtime per cycle
Traditional charging30–45 min
Exantro swap<60s

Grounded time between missions, drawn to scale.

Product

Built to turn downtime into flight time

Hardware and software working together out of the box.

Sub-minute turnaround

Automated land, swap, and takeoff cycles that minimize every second of downtime.

60sFull cycle · median
LandSwapLaunch

Multi-drone ready

Support multiple drone models and fleet configurations with a modular design.

API + integrations

Connect to your existing fleet management tools, alerting, and security stack.

Ops visibility

Monitor uptime, swap events, and station health from a single dashboard.

Battery Management System

Internal BMS ensures optimal charging and health monitoring for up to 100 extra cycles.

Battery Management Service

We handle battery health monitoring and replacement so you focus on flying.

How it works

Three steps to continuous flight

01

Deploy

Install on-site where drones operate. Configure workflows and permissions in hours, not weeks.

02

Automate

Drones land, batteries are swapped, and flights resume — fully autonomous, no manual steps.

03

Operate

Monitor health, performance, and events from a unified dashboard with alerts and analytics.

Industries

Built for missions that demand continuity

From agriculture to emergency response — wherever drones fly, we keep them airborne.

Security & Surveillance

Security & Surveillance

Persistent aerial coverage with fewer manual interventions.

Industrial Inspection

Industrial Inspection

Keep inspection routes running with predictable availability.

Agriculture

Agriculture

Operate at the cadence your fields require, not your batteries.

Emergency Response

Emergency Response

Rapid redeployments when time and continuity matter most.

Logistics & Delivery

Logistics & Delivery

Support repeatable missions with consistent turnaround times.

Research & Mapping

Research & Mapping

Run longer data-collection sessions with zero overhead.

Company

Building the energy layer for autonomous flight.

Exantro builds autonomous battery-swap infrastructure so drones never have to stop for power. We started with a simple conviction: the bottleneck to scaling drone operations isn't the drone — it's the energy behind it. We're engineering the stations, batteries, and software that turn one-off flights into continuous, dependable service.

BengaluruEngineering & OperationsGlobal HeadquartersSingapore

Autonomy

Stations that run the full land-swap-launch cycle without a human in the loop.

Continuity

Fleets that stay airborne around the clock, mission after mission.

Safety

Hardware and software engineered for reliable, enterprise-grade operation.

Sustainability

Managed battery health that extends cycle life and reduces waste.

Team

Founders

Three engineers from NUS, now building the energy infrastructure for autonomous flight.

Portrait of Vaibhav

Vaibhav

Co-Founder

Co-founded Folo-Up, with startup experience across Southeast Asia and Europe. Previously led the NUS Mars Rover Team.

Portrait of Shyam

Shyam

Co-Founder

Has built and shipped systems at drone startups. Led autonomous navigation for the NUS Mars Rover Team.

Portrait of Saksham

Saksham

Co-Founder

Mechanical engineer specialising in robotics. Designed systems for AUVs and airplane engines, led mechanical design and manufacturing for the NUS Mars Rover Team.

We're hiring

Help us keep the world's drones in the air

We're a small, ambitious team building hard hardware and the software that runs it — across Singapore and Bengaluru. If autonomous systems and clean energy excite you, let's talk.

Introduce yourself

Areas we hire for

Robotics EngineeringEmbedded SystemsPower ElectronicsMechanical DesignControls & AutonomyOperations

Don't see your role? Reach out anyway — great people make their own seat.

FAQ

Common questions

How long does setup take?

Most pilots can be deployed within days once site constraints and workflows are confirmed. We guide installation and integration end-to-end.

Do you support multiple drone models?

Yes — compatibility is a core design goal. We confirm fit during onboarding and define the supported configuration for your pilot.

What about safety and security?

We design for secure operations with access controls, monitoring, and integration options that fit enterprise environments.

Can you integrate with our fleet software?

Yes. We offer API-first integration patterns to connect telemetry, alerts, and workflows into your existing tools.

Ready to eliminate
drone downtime?

Tell us about your fleet, mission profile, and deployment environment. We'll design a pilot plan tailored to your operations.

We respond within 24 hours.