Product Overview – High Rate UAV Battery with Sustained Power Delivery
PPCell‘s 30Ah high rate UAV battery (Model P‑B088J9) is engineered for applications demanding sustained high power delivery – 7C continuous discharge and 10C instantaneous pulse discharge. Built on a 3.8V high voltage platform with 292Wh/kg energy density, this cell delivers exceptional power‑to‑weight ratio for heavy‑lift UAVs, high‑power tools, and two‑wheel swap battery systems. Leveraging advanced high‑rate electrode design and low‑impedance architecture, the P‑B088J9 achieves ultra‑low internal resistance of ≤2 mΩ, minimizing joule heating and maximizing energy conversion efficiency even under sustained high‑current loads.
With a nominal voltage of 3.8V and 30Ah capacity, the P‑B088J9 provides substantial energy (114Wh) in an ultra‑lightweight 385g package – delivering outstanding power density for demanding applications. The high voltage 3.8V platform provides a higher operating voltage than standard 3.6V/3.7V cells, reducing current draw for the same power output and minimizing energy losses. This high‑rate cell is purpose‑built for heavy‑lift drones requiring both sustained power for extended flight and instantaneous burst power for takeoff and maneuvering, as well as power tools and two‑wheelers requiring reliable high‑current output.
Key Features – High Rate UAV Battery
High Discharge Capability (7C Continuous / 10C Pulse): 7C continuous (210A) and 10C instantaneous pulse (300A) discharge – delivering sustained power for heavy‑lift UAV operations, power tool heavy loads, and two‑wheel vehicle acceleration.
3.8V High Voltage Platform: Higher operating voltage than standard 3.6V/3.7V cells – reduces current draw for the same power output, minimizes energy losses, and improves overall system efficiency.
High Capacity (30Ah / 114Wh): Substantial energy capacity for extended high‑power operations – ideal for heavy‑lift drones requiring both power and endurance.
High Energy Density (292Wh/kg): Industry‑leading energy density for a high‑rate cell – extends operating time without sacrificing power delivery.
Ultra‑Low Internal Resistance (≤2 mΩ): Superior low‑impedance architecture minimizes joule heating during high‑current draws, maximizes energy conversion efficiency, and enhances safety.
Ultra‑Lightweight Design (385g): Remarkably light for a 30Ah high‑rate cell – maximizes payload capacity for heavy‑lift drones and enables portable power tool designs.
Extended Cycle Life (500 cycles): 500 cycles at 80% depth of discharge under high‑rate conditions – reliable performance over extended operational periods.
Wide Operating Temperature Range: Supports charging from 0~45°C and discharging from -20~60°C for versatile operating conditions.
Technical Specifications – 30Ah High Rate UAV Battery
| Parameter | Specification |
|---|---|
| Model | P‑B088J9 |
| Rated Voltage | 3.8 V |
| Capacity | 30 Ah |
| Total Energy | 114 Wh |
| Thickness | 11.0 mm (max) |
| Width | 88 mm (max) |
| Length | 189 mm (max) |
| Tab Width | 25 mm |
| Cell Weight | ≈ 385 g |
| Internal Resistance | ≤ 2 mΩ |
| Gravimetric Energy Density | 292 Wh/kg |
| Cycle Life | 500 cycles |
| Operating Temperature (Charge) | 0 ~ 45°C |
| Operating Temperature (Discharge) | -20 ~ 60°C |
| Maximum Continuous Charge | 2C |
| Maximum Continuous Discharge | 7C |
| Maximum Instantaneous Discharge | 10C |
Why Choose PPCell High Rate UAV Battery?
Sustained 7C / 10C Discharge Capability: Delivers both sustained power for extended operations and instantaneous burst power for takeoff and maneuvering – ideal for heavy‑lift drones and high‑power applications.
30Ah High Capacity with 114Wh Energy: Substantial energy for extended high‑power operations – reduces battery swap frequency and increases operational efficiency.
3.8V High Voltage Platform: Higher operating voltage than standard cells – improves system efficiency and reduces energy losses.
Ultra‑Low ≤2 mΩ Internal Resistance: Superior low‑impedance design minimizes heating and maximizes power delivery efficiency.
Ultra‑Light 385g Design: Remarkably light for a 30Ah high‑rate cell – maximizes payload capacity for heavy‑lift drones.
292Wh/kg High Energy Density: Industry‑leading energy density for a high‑rate cell – extends operating time without sacrificing power delivery.
Versatile Applications: Optimized for heavy‑lift drones, power tools, and two‑wheel swap battery systems – a single cell platform for multiple high‑rate applications.
Proven Technology: PPCell leverages 15+ years of battery manufacturing expertise, with rigorous quality control and global technical support.
Applications
Heavy‑Lift Drones: Industrial UAVs carrying heavy payloads – agricultural sprayers, cargo delivery drones, and large‑scale survey platforms requiring sustained power for extended flight operations.
Power Tools: High‑power cordless tools – chainsaws, angle grinders, hammer drills, and other heavy‑duty equipment requiring sustained high‑current output.
Two‑Wheel Swap Battery Systems: Electric scooters, e‑bikes, and motorcycles requiring high discharge rates for acceleration, hill climbing, and sustained high‑speed operation.
Industrial Inspection: Infrastructure inspection drones requiring both power for wind resistance and endurance for extended missions.
Emergency Response Equipment: Portable power systems and rescue tools requiring instant high‑power delivery and reliable performance.
Robotics & Automation: High‑performance robots and automated systems requiring sustained power output for extended operation cycles.
Comparison: High Rate UAV Battery vs. Standard LiPo
| Parameter | High Rate (PPCell P‑B088J9) | Standard LiPo |
|---|---|---|
| Continuous Discharge | 7C (210A) | 5C‑10C |
| Pulse Discharge | 10C (300A) | 10C‑15C |
| Internal Resistance | ≤2 mΩ | ~5‑10 mΩ |
| Voltage Platform | 3.8V HV | 3.6‑3.7V |
| Energy Density | 292 Wh/kg | 180‑220 Wh/kg |
| Capacity | 30Ah | 30Ah |
| Weight (30Ah equivalent) | 385 g | ~450‑550 g |
| Cycle Life | 500 cycles | 300‑500 cycles |
Comparison: PPCell High Rate Battery Series
| Parameter | P‑B088J9 | P‑6375H5 |
|---|---|---|
| Capacity | 30 Ah | 10 Ah |
| Voltage | 3.8V HV | 3.85V HV |
| Energy Density | 292 Wh/kg | 235 Wh/kg |
| Weight | 385 g | 164 g |
| Thickness | 11.0 mm | 6.3 mm |
| Continuous Discharge | 7C | 15C |
| Pulse Discharge | 10C | 25C |
| Cycle Life | 500 cycles | 300 cycles |
| Best For | Heavy‑lift drones requiring sustained power + endurance | Extreme power density / ultra‑thin applications |
FAQ
Q1: What makes this battery different from standard UAV batteries?
A: The P‑B088J9 delivers sustained 7C continuous and 10C pulse discharge – providing both the sustained power needed for extended heavy‑lift operations and instantaneous burst power for takeoff and maneuvering. The 3.8V high voltage platform, ultra‑low ≤2 mΩ internal resistance, and 292Wh/kg energy density ensure maximum power output with minimal heating.
Q2: What is the typical flight time for heavy‑lift drones using this battery?
A: With 30Ah capacity (114Wh) and 292Wh/kg energy density, flight time depends on drone weight and motor efficiency. For typical heavy‑lift agricultural or cargo drones, this cell provides substantially extended flight times compared to conventional 180‑220Wh/kg batteries – enabling longer missions with fewer battery swaps.
Q3: Why is the 3.8V high voltage platform important?
A: The 3.8V nominal voltage is higher than standard 3.6V/3.7V cells. This means less current is required to deliver the same power output (P = V × I), reducing energy losses, minimizing heating, and improving overall system efficiency – particularly beneficial for high‑power applications.
Q4: What is the cycle life of this battery?
A: The cell delivers 500 cycles at 80% depth of discharge under high‑rate conditions. This is typical for high‑rate cells where extreme discharge capability is balanced with cycle life. For applications requiring longer cycle life with moderate discharge rates, consider our long endurance series with 1000‑1200 cycles.
Q5: Is this battery suitable for two‑wheel swap battery applications?
A: Yes. The 7C continuous / 10C pulse discharge capability, 30Ah high capacity, and 3.8V high voltage platform make this cell ideal for two‑wheel swap battery systems – electric scooters, e‑bikes, and motorcycles requiring high power for acceleration, hill climbing, and sustained high‑speed operation.
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 outdoor operations to hot summer usage.
Q7: Is this battery compatible with existing drone/power tool systems?
A: Yes. The 3.8V nominal voltage is compatible with most high‑voltage drone, power tool, and swap battery systems. Custom battery pack configurations (capacity, voltage, size, connectors, and BMS options) are available upon request. The 25mm wide tab ensures secure, low‑resistance connections for high‑current applications.
Q8: What is the significance of ultra‑low internal resistance (≤2 mΩ)?
A: Ultra‑low internal resistance minimizes energy loss as heat during high‑current discharge, improves overall energy conversion efficiency, keeps the battery cooler during extreme loads, and enhances safety. For high‑rate applications with 7C continuous discharge, low internal resistance is essential to prevent overheating and ensure reliable performance.
Q9: Can this battery be used for power tool applications?
A: Yes. The 7C continuous discharge capability and ultra‑low internal resistance make this cell ideal for high‑power cordless tools – chainsaws, angle grinders, hammer drills, and other heavy‑duty equipment requiring sustained high‑current output and reliable performance.
Q10: How does this battery compare to the P‑6375H5 high rate model?
A: The P‑B088J9 offers three times the capacity (30Ah vs. 10Ah) with higher energy density (292Wh/kg vs. 235Wh/kg) and extended cycle life (500 cycles vs. 300 cycles), while providing 7C/10C discharge (compared to 15C/25C for the P‑6375H5). The P‑B088J9 is optimized for heavy‑lift applications requiring sustained power and extended runtime, while the P‑6375H5 is optimized for extreme power density and ultra‑thin applications.


