
Capture power requirements by drone use case
Each application route gives procurement and engineering teams a focused path to explain payload, mission profile, current draw, connector, BMS, certificate, and timeline needs.
Turn drone use cases into engineering context
Application pages make inquiry routing more precise by collecting the battery questions that change configuration, testing, documentation, and quote scope.
Start from the mission your fleet flies
Spraying, patrol, mapping, heavy lift, emergency, and security missions each change the pack conversation. Open the scenario closest to your platform to frame the requirement discussion.
Agriculture UAV Power
Battery requirement framing for crop protection, seeding, and field service drones where payload, duty cycle, and environmental exposure shape pack selection.
Share airframe model, payload, mission time, target voltage, current profile, connector, charger, quantity, and document requirements.
Open application brief
Inspection and Mapping UAV Power
Power planning for inspection, survey, and mapping UAVs where stable endurance, pack weight, telemetry, and documentation can affect fleet deployment.
Share sensor payload, route profile, endurance target, voltage, weight limit, charging workflow, and required documentation.
Open application brief
Delivery and Emergency UAV Power
Battery inquiry context for delivery, emergency response, and time-sensitive UAV missions where route profile, reliability, and controlled documentation matter.
Share route distance, payload range, reserve policy, target voltage, current peaks, pack handling, quantity, and project timeline.
Open application brief
Heavy-Lift UAV Power
Requirement intake for heavy-lift UAV platforms where discharge profile, thermal review, mechanical envelope, and harness design drive pack architecture.
Share motor data, payload, takeoff and hover current, pack envelope, harness requirements, BMS scope, quantity, and timeline.
Open application brief
Where Soarlid packs fly, film, and ride
Semi-solid-state packs from the same platform families also power missions beyond industrial UAV fleets — from water rescue drops to eVTOL programs and marine propulsion. Each build below pairs the scenario with the pack configuration behind it.

Water Rescue Drone
Lifebuoy delivery and shoreline rescue missions pair a heavy-lift airframe with a 14S 150,000mAh semi-solid-state pack, where reserve margin and repeat sorties drive the requirement discussion.
SLD4 14S1P · 150,000mAh · 49V · 3C · 400Wh/kg

Cinelifter & Aerial Cinematography
Cinema-grade lift platforms balance burst discharge for aggressive maneuvers against flight time per set-up, framed here around a 7S 33,000mAh pack with 7C continuous discharge.
SLD4 7S1P · 33,000mAh · 25.9V · 7C · 400Wh/kg

eVTOL & Urban Air Mobility
Passenger-class and cargo eVTOL programs review energy density, thermal behavior, and certification documentation around high-capacity 14S packs at 400Wh/kg.
SLD4 14S1P · 150,000mAh · 49V · 3C · 400Wh/kg

Electric Surfboard & Marine
Marine propulsion platforms need sustained high-current discharge and sealed pack handling; this jetboard build runs an 8S 66,000mAh pack rated for 10C continuous output.
SLD8P 8S1P · 66,000mAh · 31.6V · 10C · 300Wh/kg
Inquiry path
Discuss your drone platform
Application inquiries should include airframe, payload, target endurance, voltage, peak current, connector, operating environment, and documentation requirements.
Attach context such as airframe, target voltage, payload, current profile, connector, volume, certificate needs, and project timeline when available.





