High Energy Density Drone battery
When range anxiety becomes the invisible ceiling for industry advancement, true breakthroughs lie in the fundamental reconstruction of material systems. For every additional kilometer of drone operating radius, inspection efficiency increases by 20%, and an extra 30 seconds of golden light can be captured for aerial photography. Behind these gains lies one and the same “bottleneck”: the battery.
We’ve seen too many users forced to return home with battery warnings, their workflow interrupted by frequent battery swaps, or watching helplessly as their equipment “goes to sleep” in low temperatures.
Today, the Ppcell Energy P675H5 lithium-ion cell makes its official debut. It is not a patch to existing solutions, but a completely redefined energy platform purpose‑built for high‑performance drone applications.

Semi Solid State Battery Drone
The P675H5 high energy density lithium‑ion cell shatters the performance barriers of long‑endurance drones, driving core technological innovation to empower premium UAVs—dramatically extending flight time and unlocking a wider range of applications.
| Model | P675H5 |
| Material System | High‑Ni Ternary + Si‑Anode |
| Capacity | 29.5Ah |
| Dimensions | 10.6*75*175mm |
| Voltage | 3.7V |
| Weight | 303 g |
| Energy Density | 360 Wh/kg |
| Operating Voltage | 2.5~4.25V |
| Cycle Life | ≥500% |
| Max Charge Current | 1.0C (Continuous) |
| Max Discharge Current | 3.0C (Continuous) |
| Charge Temperature Range | -10~45°C |
| Discharge Temperature Range | -20~60°C |
| Application Areas | Drone |
30% longer flight endurance
Under the industry trends of lightweight drone airframes and stringent payload limits, the gravimetric and volumetric energy densities of battery cells have become core indicators of product competitiveness. The P675H5 adopts an advanced material system combining high‑nickel and silicon‑based anode, achieving energy densities of 350Wh/kg and 710Wh/L with a typical capacity of 29.5Ah. Within the same battery compartment and takeoff weight constraints, single‑flight endurance can be extended by over 30%. This truly enables one takeoff and landing to cover larger surveying areas, capture more golden‑hour shots, and complete ultra‑long‑distance inspections.
Hardcore cold start at -20°C,Ready to take off instantly
In high‑altitude operations, and cold storage scenarios, conventional batteries suffer a sharp performance drop below 0°C, often requiring preheating or power derating. The A675H5 breaks through the low‑temperature discharge bottleneck and redefines industry standards for cold conditions:
① At -20°C, discharging at 0.2C to 2.2V, capacity retention ≥70%;
② Below 0°C, the discharge cut‑off voltage is adaptively adjusted to 2.20V;
③ Low‑temperature charging strategy with tiered management: 0–5°C current limited to 0.1C, 6–15°C supports 0.2C.
No additional preheating needed – take off immediately, without missing critical farming seasons or interrupting key operational processes.
Confidently handle complex operating conditions
Real‑world drone operations are filled with dynamic conditions such as climbing, wind resistance, emergency maneuvering, and heavy‑lift takeoffs – all of which impose extremely high demands on the cell’s high‑current output and voltage stability. The A675H5 meets these challenges with robust specifications:
① Max continuous discharge current: 3.0C
② Max pulse discharge current: 5.0C (≤10 seconds)
③ AC internal resistance: ≤2.0mΩ (@1kHz, 25% SOC)
Inherent composure creates effortless flight. The low‑internal‑resistance design minimizes heat generation and energy loss, allowing abundant power to be converted more efficiently into lasting endurance.

Cycle life: 80% capacity retention after 500 cycles
As a core component, the battery should not become a frequently replaced consumable. Under conditions of 25±2°C, 0.5C charge/discharge, and with a fixture, the A675H5 maintains a capacity retention rate of ≥80% at the 500th cycle, supporting more than 500 deep charge‑discharge cycles.
Based on a flight time of 15 minutes per sortie and 20 sorties per day, a single cell can reliably serve for over four months. Longer lifespan effectively reduces battery amortization costs, making operational budgets more controllable.
All‑round safety protection for worry‑free flying
High energy density and high safety are not mutually exclusive; they stem from rigorous design and thorough validation. The P675H5 has passed 11 safety tests under GB 31241 and stringent enterprise standards, covering extreme scenarios such as external short circuit, overcharge, crush, and temperature cycling (-40°C ↔ 85°C, 5 cycles). During all tests, no fire or explosion occurred. The cell itself provides a high safety baseline, yet it must be used with a professional Battery Management System (BMS) – a dual safeguard that builds a reliable defense line for the flight platform.
Enabling full‑scenario deployment
PPCELL Energy P675H5 high energy density lithium‑ion cell, with its excellent overall performance, deeply covers a wide range of professional scenarios across multiple fields and significantly improves mission efficiency for all types of drones.
Industrial Inspection & Mapping-semi solid state battery drone
For long-distance, large‑coverage operations such as power line inspection, pipeline detection, and terrain mapping, the P675H5 effectively reduces takeoff and landing frequency, significantly increasing the daily operational coverage. In power line inspection, it extends the line mileage per flight. In terrain mapping, it enables faster and more accurate acquisition of topographic data, comprehensively improving industrial‑grade operational efficiency.
High‑End Aerial Cinematography-long endurance drone battery
Providing longer continuous shooting windows for film production and commercial aerial cinematography, allowing you to confidently capture golden‑hour light. Extended flight time eliminates frequent battery swaps, enabling photographers to finely adjust angles and fully track complex shots – delivering stable and reliable aerial power support for filmmaking and advertising creativity.
Security & Emergency Reconnaissance-semi solid state battery drone
Effectively extends airborne monitoring time over critical areas in security surveillance and emergency rescue scenarios. Capable of performing wide‑area, long‑duration search and reconnaissance at disaster sites such as earthquakes and fires, continuously transmitting real‑time on‑site information back to command centers. Provides critical data support for emergency command and rescue operations, improving response efficiency.
Precision Agriculture & Logistics-long endurance drone battery
Balancing the dual demands of heavy payload and long endurance, it is well‑suited for composite scenarios such as large‑field crop protection and material/sample transport. Agricultural drones can cover more farmland per flight, while logistics drones can achieve efficient long‑distance delivery. With stable endurance and reliable performance, it empowers the upgrade of smart agriculture and low‑altitude logistics.

Pick PPCELL Drone battery, Drive Beyond Borders.
In the past, the battery was just an “accessory” for drones.
Today, it defines the mission radius and serves as the leverage point for operational efficiency.
The P675H5 is not a routine iteration — it is the power heart delivered by PPCELL Energy for the era of high‑performance drones.
If you are planning your next‑generation drone platform or considering upgrading your existing battery solution,
please contact us to obtain the complete technical specification sheet and customized solutions.
Contact us today
Email : info@ppcell.com

