High-Discharge, High-Capacity and Smart Lithium Battery Solutions for Crop Spraying Drones, Agricultural UAVs and Precision Farming Equipment.
LithoTop develops customized drone batteries for agricultural spraying UAVs, supporting high payloads, powerful pump systems, rapid takeoff, stable flight and demanding outdoor operations.
Agricultural spraying drones are increasingly used for crop protection, pesticide application, fertilizer spraying, seed spreading and precision farming. Compared with conventional agricultural equipment, spraying drones can improve field coverage, reduce labor requirements and operate efficiently across farmland, orchards, hillsides and other complex terrain.
A spraying drone battery must support more than the propulsion system. It may also power pumps, valves, radar, cameras, flight controllers, communication modules and intelligent navigation systems. During loaded takeoff, climbing and hovering, the battery must deliver high current without excessive voltage sag, overheating or unstable output.
LithoTop provides customized lithium battery solutions for agricultural drone manufacturers, including high-discharge LiPo batteries, high energy density LiPo batteries, smart drone battery packs and advanced semi-solid-state battery solutions for OEM and ODM UAV projects.
LithoTop develops custom battery solutions for agricultural UAV platforms used in spraying, spreading, monitoring, mapping and other precision farming operations.

Battery chemistry and pack configuration should be selected according to payload, motor power, flight duration, current demand and charging strategy.
Providing complete application data helps LithoTop evaluate cell chemistry, configuration, current capability and mechanical structure more accurately.
| Parameter | Typical Customization Range |
|---|---|
| Nominal Voltage | 22.2V–88.8V |
| Battery Configuration | 6S–24S |
| Capacity | 8,000mAh–40,000mAh |
| Battery Chemistry | High-Rate LiPo / High-Energy LiPo / Semi-Solid |
| Continuous Discharge Rate | 10C–50C |
| Burst Discharge Rate | Up to 100C, subject to cell and pack design |
| Continuous Current | Customized according to the UAV load profile |
| Peak Current | Customized according to motor startup demand and duration |
| Protection | Smart BMS Optional |
| Communication | CAN / UART / SMBus Optional |
| Temperature Sensor | NTC Optional |
| Housing | Heat Shrink / Plastic / Metal / Custom |
| Connector | AS150 / QS8 / XT90-S / Custom |
| Charging | Standard Charging / Fast Charging Optional |
Send us your UAV voltage, load current, peak current, target flight time, battery dimensions and weight limit. LithoTop will evaluate a suitable battery configuration for your project.
Most agricultural spraying drones use high-discharge LiPo batteries because they provide strong current output, low weight and stable power during loaded takeoff, climbing, hovering and continuous field operation.
Battery capacity should be selected according to motor power, maximum takeoff weight, liquid or seed payload, target flight time, available battery compartment and maximum allowable battery weight.
The required discharge rate depends on the drone’s continuous current, peak current and peak-load duration. LithoTop recommends evaluating the actual motor and ESC load instead of selecting a battery based only on the labeled C-rate.
Yes. LithoTop can customize high-voltage agricultural drone batteries according to the UAV power system, required capacity, continuous current, peak current, battery dimensions and charging system.
Yes. Optional smart BMS functions include individual cell-voltage monitoring, current monitoring, temperature sensing, state-of-charge calculation, cycle counting, fault recording and CAN, UART or SMBus communication.
Yes. Fast-charging capability can be evaluated according to the battery chemistry, cell specification, capacity, thermal design, charger and required charging time.
Yes. LithoTop can customize sealed housings, water-resistant connectors, protective coatings, corrosion-resistant terminals and reinforced insulation according to the agricultural operating environment.
Voltage sag can be reduced through low-resistance battery cells, accurate voltage and internal-resistance matching, suitable parallel configurations, optimized conductors, correct wire gauges and properly rated high-current connectors.
Customers should provide the required voltage, capacity, continuous current, peak current and duration, target flight time, battery dimensions, maximum weight, connector model, cable length, charging method, operating temperature and communication requirements.
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