Product Overview – Long Cycle High Rate Drone Battery
PPCELL‘s 30Ah long cycle high rate drone battery (Model P‑75B5NO) is engineered for UAV applications demanding both high power output and extended service life. Leveraging advanced semi‑solid electrolyte architecture – a hybrid system that combines the safety of solid‑state with the high ionic conductivity of liquid electrolytes – this cell delivers an industry‑leading 280Wh/kg gravimetric energy density while supporting 5C continuous and 7C pulse discharge.
With a nominal voltage of 3.6V and 30Ah capacity, the P‑75B5NO provides 108Wh of total energy in a lightweight 391g package. The ultra‑thin 7.5mm profile enables compact battery pack designs for space‑constrained UAV platforms. Semi‑solid technology minimizes electrolyte usage, suppresses dendrite growth, and extends cycle life, delivering 1200 cycles at 80% depth of discharge. This cell is the ideal power solution for industrial inspection, mapping, surveying, and logistics drones where both power and longevity are critical.
Key Features – Long Cycle High Rate UAV Battery
280Wh/kg High Energy Density: Delivers 280Wh/kg gravimetric energy density – significantly higher than conventional LiPo batteries (180‑220 Wh/kg) – extending UAV flight time without adding weight.
High Rate Discharge (5C Continuous / 7C Pulse): 5C continuous discharge (150A) and 7C instantaneous pulse discharge (210A) – delivering the power needed for takeoff, rapid climbing, FPV racing, wind resistance, and emergency maneuvers.
Long Cycle Life (1200 Cycles): 1200 cycles at 80% depth of discharge ensures reliable performance over extended operational periods – 3‑4x longer than conventional LiPo batteries (300‑500 cycles).
Ultra‑Thin & Lightweight Design (7.5mm / 391g): Remarkably slim profile and lightweight design maximize payload capacity for sensors, cameras, and mission equipment.
Semi‑Solid Safety: Hybrid electrolyte architecture suppresses lithium dendrites and provides enhanced safety, significantly reducing leakage and thermal runaway risks.
Wide Operating Temperature Range: Supports charging from 0~45°C and discharging from -20~60°C for versatile mission scenarios.
Ultra‑Low Internal Resistance (≤1.5mΩ): Minimizes heat generation and power loss during high‑rate discharge, improving efficiency and safety.
Technical Specifications – 30Ah Long Cycle High Rate Drone Battery
| Parameter | Specification |
|---|---|
| Model | P‑75B5NO |
| Rated Voltage | 3.6 V |
| Capacity | 30 Ah |
| Total Energy | 108 Wh |
| Thickness | 7.5 mm (max) |
| Width | 115 mm (max) |
| Length | 230 mm (max) |
| Tab Width | 30 mm |
| Cell Weight | ≈ 391 g |
| Internal Resistance | ≤ 1.5 mΩ |
| Gravimetric Energy Density | 280 Wh/kg |
| Cycle Life | 1200 cycles |
| Operating Temperature (Charge) | 0 ~ 45°C |
| Operating Temperature (Discharge) | -20 ~ 60°C |
| Max Continuous Charge | 2C |
| Max Continuous Discharge | 5C |
| Max Pulse Discharge | 7C |
Why Choose PPCELL Long Cycle High Rate Drone Battery?
Extended Flight Time: 280Wh/kg energy density delivers significantly longer flight times compared to conventional LiPo batteries – critical for mapping, surveying, inspection, and search & rescue missions.
Exceptional Cycle Life: 1200 cycles at 80% DoD – 3‑4x longer than conventional LiPo batteries (300‑500 cycles) – dramatically reducing replacement frequency and total cost of ownership.
High Power Performance: 5C continuous and 7C pulse discharge for takeoff, climbing, FPV racing, wind resistance, and emergency maneuvers.
Ultra‑Slim Form Factor: At just 7.5mm, this is one of the thinnest 280Wh/kg high‑rate drone batteries available – preserving maximum payload capacity.
Semi‑Solid Safety: Enhanced stability and safety over conventional LiPo batteries – critical for reliable UAV operations.
Wide Operating Temperature: -20~60°C discharge range ensures reliable performance across diverse environments.
Proven Technology: PPCELL leverages 15+ years of battery manufacturing expertise, with rigorous quality control and global technical support.
Applications
Industrial Inspection: Power line inspection, pipeline monitoring, bridge surveying – extended flight time covers more assets per mission.
Aerial Mapping & Surveying: Long‑endurance flights enable larger area coverage in fewer sorties, reducing operational costs.
Logistics & Delivery: Extended range for cargo delivery drones, enabling longer delivery distances and heavier payloads.
Search & Rescue: Extended flight time for emergency response missions, covering larger search areas.
Agricultural Surveying: Longer flights for crop monitoring, reducing downtime between battery swaps.
Security & Surveillance: Extended loiter time for perimeter monitoring and reconnaissance missions.
FPV Racing & Freestyle: 5C/7C discharge capability delivers instant throttle response for competitive racing.
Comparison: Long Cycle High Rate vs. Conventional LiPo for Drones
| Parameter | Long Cycle High Rate (PPCELL P‑75B5NO) | Conventional LiPo |
|---|---|---|
| Energy Density | 280 Wh/kg | 180‑220 Wh/kg |
| Continuous Discharge | 5C | 5C‑10C |
| Cycle Life | 1200 cycles | 300‑500 cycles |
| Safety | Semi‑solid – enhanced stability | Liquid electrolyte – leakage/thermal runaway risk |
| Operating Temperature | -20 ~ 60°C | 0 ~ 45°C |
FAQ
Q1: What is the advantage of semi‑solid battery technology for high‑rate drone applications?
A: Semi‑solid batteries use a hybrid electrolyte architecture that minimizes liquid content while maintaining high ionic conductivity. This enables 280Wh/kg energy density with 5C continuous discharge capability and 1200‑cycle life – a combination rarely achieved by conventional LiPo batteries. Semi‑solid technology also suppresses dendrite growth, extending cycle life significantly.
Q2: What flight time can I expect with this 30Ah drone battery?
A: At 280Wh/kg and 108Wh total energy, this battery delivers significantly higher energy density than conventional LiPo batteries (180‑220 Wh/kg). For a typical industrial drone, this translates to extended flight times while maintaining the high discharge capability needed for demanding maneuvers. Actual flight time depends on drone weight, motors, and mission profile.
Q3: What is the discharge capability and why does it matter for drones?
A: The cell supports 5C continuous discharge (150A) and 7C instantaneous pulse discharge (210A) – delivering the power needed for takeoff, rapid climbing, wind resistance, FPV racing, and emergency maneuvers. This makes it ideal for both high‑performance racing drones and heavy‑lift industrial UAVs.
Q4: What is the expected cycle life?
A: The cell delivers 1200 cycles at 80% depth of discharge – 3‑4x longer than conventional high‑rate LiPo batteries (300‑500 cycles). This dramatically reduces replacement frequency and total cost of ownership for fleet operators.
Q5: What applications is this long cycle high rate drone battery suitable for?
A: The 280Wh/kg energy density, 5C/7C discharge capability, and 1200‑cycle life make this cell ideal for industrial inspection, aerial mapping, surveying, logistics, search & rescue, agricultural surveying, and FPV racing – any UAV mission requiring both high power output and extended operational life.
Q6: What is the operating temperature range?
A: The cell supports charging from 0~45°C and discharging from -20~60°C, making it suitable for a wide range of environmental conditions from cold‑weather operations to hot summer missions.


