In the professional drone industry, the battery is not just a power source. It is a mission-critical component that affects flight time, payload capacity, safety, reliability, and the overall success of the UAV platform. For many drone manufacturers and integrators, an off-the-shelf battery is simply not enough. They need a custom lithium polymer soft pack battery with the right voltage, capacity, dimensions, discharge performance, communication protocol, and integrated battery management system.
This case study tells the story of how our team worked with Brazilian client Valdiney Silva to develop a custom UAV battery: JHA972170-15000mAh-25S-95V (3.8V per cell) BMS. Over a period of three months, our sales team, BMS software engineers, lithium soft pack structure engineers, and electronics engineers held multiple online technical meetings with the client. The result was two fully qualified samples that have now entered installation and flight testing. The client is expected to place a bulk order in the first quarter of next year.
For industry professionals looking for a reliable custom UAV battery partner, this project demonstrates what is possible when engineering, communication, and customer focus come together.
Valdiney Silva is a professional in the Brazilian UAV market. Brazil has a fast-growing drone ecosystem, with applications ranging from agriculture and surveying to inspection, mapping, logistics, and security. In these environments, drone operators need batteries that can deliver high voltage, high energy density, stable performance, and advanced safety protection.
The initial request was clear but demanding. The client needed a custom soft pack battery for a UAV platform with the following core requirements:
Model: JHA972170-15000mAh-25S-95V BMS
Nominal voltage: 95V
Cell configuration: 25S
Nominal cell voltage: 3.8V per cell
Capacity: 15,000mAh
Battery type: Lithium polymer soft pack
BMS: Integrated battery management system
Application: UAV / drone platform
Expected order: Bulk order in Q1 of next year after sample validation
At first glance, the numbers are straightforward. But in reality, a 25S 95V 15,000mAh UAV battery is a complex engineering project. The battery must balance high voltage, high capacity, weight, mechanical strength, thermal behavior, and BMS intelligence. It must also fit the drone’s physical envelope and communicate reliably with the UAV’s power system.
The client needed more than a supplier. He needed a partner who could understand the application, propose engineering solutions, and deliver qualified samples quickly.
Custom battery projects rarely succeed without deep communication. From the beginning, we treated this project as a collaborative engineering effort. Our team organized a series of online meetings with Valdiney Silva. Each meeting included the right specialists:
Sales team: To manage requirements, timelines, documentation, and commercial communication.
BMS software engineer: To define protection logic, communication, SOC/SOH estimation, and firmware behavior.
Lithium soft pack structure engineer: To design the cell stacking, insulation, compression, and mechanical layout.
Electronics engineer: To review voltage sampling, current sensing, balancing, connectors, and system integration.
Over three months, we discussed and refined every critical parameter:
Voltage and configuration: 25S nominal 95V, with charge and discharge cut-off thresholds defined for safe operation.
Capacity and energy: 15,000mAh, approximately 1,425Wh of nominal energy.
Discharge profile: Continuous and peak current requirements based on the UAV’s take-off, climb, cruise, and landing phases.
BMS functions: Overcharge, over-discharge, overcurrent, short-circuit, temperature protection, cell balancing, and fault reporting.
Communication: The BMS communication requirements were reviewed so the battery could integrate with the UAV’s control and monitoring system.
Mechanical design: Dimensions, mounting points, connector type, cable routing, and vibration resistance.
Safety and reliability: Insulation, thermal management, flame-retardant materials, and structural protection.
Testing and validation: Sample testing plan, installation checks, and flight-testing support.
This phase was not just about exchanging specifications. It was about identifying risks early and designing them out before prototyping. For a high-voltage UAV battery, a small misunderstanding can become a major safety or performance issue. That is why we involved software, structure, and electronics engineers from day one.
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Once the requirements were locked, our engineering team moved into design and prototyping. The battery model JHA972170-15000mAh-25S-95V BMS was developed as a high-voltage lithium polymer soft pack solution with an integrated smart BMS.
The battery uses lithium polymer pouch cells with a nominal voltage of 3.8V per cell. The pack is configured as 25S, giving a nominal voltage of 95V. With a capacity of 15,000mAh, the pack delivers approximately 1,425Wh of energy. This is a substantial amount of energy for a UAV platform, and it requires careful cell matching, busbar design, and thermal consideration.
For UAV applications, energy density and weight are always in tension. Our soft pack structure engineer worked to maximize energy density while maintaining mechanical integrity and safety. Cells were matched for capacity, internal resistance, and voltage to ensure stable performance across the entire 25S string.
Lithium polymer soft pack batteries are popular in drone applications because they offer high energy density and flexible form factors. However, they also require robust mechanical design. For this project, our structure engineer focused on:
Secure cell stacking and compression
Electrical insulation between cells and modules
Flame-retardant materials where required
Vibration and shock absorption for flight conditions
Protection of tabs, busbars, and sense wires
Connector strain relief and cable routing
Mounting features for the UAV airframe
The goal was to create a pack that could survive real-world drone operation: take-off vibration, rapid load changes, landing impacts, and temperature variations.
The integrated BMS is the brain of the battery. For a 25S pack, the BMS must monitor 25 cell voltages, pack current, and multiple temperature points. It must also balance the cells and protect the pack from unsafe conditions.
Key BMS functions included:
Overcharge protection
Over-discharge protection
Overcurrent protection
Short-circuit protection
Cell voltage monitoring
Temperature monitoring
Passive or active balancing
State of Charge estimation
State of Health monitoring
Fault logging and reporting
Communication with the UAV system
Because the battery is used in a drone, the BMS also needed to be reliable, lightweight, and resistant to vibration. Our electronics engineer reviewed the PCB layout, current sensing, isolation, and connector strategy to ensure long-term stability.
Hardware alone is not enough. The BMS software engineer developed and tuned the firmware to match the client’s UAV requirements. This included:
Voltage and current calibration
SOC algorithm tuning
Protection threshold configuration
Temperature compensation
Fault detection and recovery logic
Communication protocol implementation
Data logging for testing and diagnostics
During the three-month development period, the BMS firmware was repeatedly tested and adjusted. This is one of the reasons the final samples were fully qualified: the software was not treated as an afterthought. It was developed alongside the hardware and structure.
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Custom battery development is an iterative process. After the initial design review, our team produced prototypes and ran a series of internal tests. The samples were inspected for:
Dimensions and fit
Weight distribution
Cell voltage consistency
Internal resistance
BMS communication
Balancing performance
Charge and discharge behavior
Temperature rise under load
Mechanical integrity
Any deviation from the specification was reviewed by the cross-functional team. Because the client was involved in regular online meetings, feedback loops were fast. This reduced misunderstanding and kept the project on schedule.
After three months of engineering, testing, and refinement, we delivered two fully qualified samples to Valdiney Silva. These were not simply “working prototypes.” They were built to the final specification and passed our internal qualification criteria.
For the client, this was a critical milestone. It meant the battery was ready for installation and real-world testing in the UAV.
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After receiving the two samples, Valdiney Silva began installation and testing on his UAV platform. This stage is where laboratory performance meets real flight conditions. A battery can perform well on a test bench but still face challenges in the air: vibration, rapid current spikes, temperature changes, and complex power demands.
The initial feedback has been positive. The battery has been installed and tested, and the samples have demonstrated the required voltage, capacity, and BMS behavior. The integrated BMS has provided stable monitoring and protection, and the soft pack structure has shown good mechanical stability.
For a high-voltage 25S UAV battery, this is exactly what we want to see. The client is now evaluating the samples for final validation. Based on the current progress, he expects to place a bulk order in the first quarter of next year.
This case study is not just about one battery. It shows what a true custom battery partner can do for UAV manufacturers, integrators, and professional drone operators.
A 25S 95V battery is not a beginner-level project. It requires experience in cell matching, insulation, BMS design, and safety. Our team has the engineering depth to handle high-voltage soft pack batteries.
Many battery suppliers can assemble cells, but not all can develop an integrated BMS with custom firmware. We have in-house BMS software and hardware engineering, which means we can tailor protection logic, communication, and monitoring to the specific UAV application.
Soft pack batteries offer excellent energy density, but they need careful structural design. Our structure engineers understand how to build a pack that is light, strong, and safe.
International custom projects depend on communication. Our sales team, engineers, and client worked together through online meetings for three months. This regular interaction helped avoid costly mistakes and kept the project moving.
We support clients from prototype to mass production. Whether you need one sample or a full production run, we can scale the process while maintaining quality.
| Parameter | Specification |
|---|---|
| Model | JHA972170-15000mAh-25S-95V BMS |
| Battery type | Lithium polymer soft pack |
| Configuration | 25S |
| Nominal cell voltage | 3.8V |
| Nominal pack voltage | 95V |
| Capacity | 15,000mAh |
| Energy | Approx. 1,425Wh |
| BMS | Integrated smart BMS |
| Protection | Overcharge, over-discharge, overcurrent, short circuit, temperature |
| Balancing | Cell balancing supported |
| Communication | Customized to UAV requirements |
| Application | Professional UAV / drone platform |
| Client | Valdiney Silva, Brazil |
| Project duration | 3 months to qualified samples |
| Next step | Expected bulk order in Q1 next year |
Although the final bulk order is still ahead, the client’s feedback during the sample phase has been encouraging. The project required close collaboration between Brazil and our engineering team, and the online technical meetings played a major role in aligning expectations.
For Valdiney Silva, the key benefits were:
A battery designed specifically for his UAV platform
An integrated BMS with the required protection and communication
A soft pack structure built for real flight conditions
Two qualified samples for installation and testing
A clear path to bulk production in the coming quarter
For our team, this project reinforces why we focus on custom engineering rather than simply selling standard battery packs.
The next milestone is mass production. With two qualified samples already in the client’s hands and installation testing underway, the project is moving toward a bulk order in the first quarter of next year.
When that order is placed, our team will transition from prototype validation to production planning. This includes:
Material preparation
Cell matching and sorting
BMS production and firmware flashing
Soft pack assembly
Quality control and testing
Packaging and shipping to Brazil
After-sales technical support
For UAV battery buyers, this is the full cycle: concept, design, prototype, validation, and mass production. It is a cycle we are prepared to repeat for other clients around the world.
If you are developing a professional drone, UAV, or high-voltage battery application, the right battery partner can save you months of trial and error. Whether you need a 25S 95V 15,000mAh soft pack battery, a custom BMS, or a complete power solution, our team can help.
We support:
Custom voltage and capacity
Lithium polymer soft pack design
Integrated BMS hardware and firmware
High-voltage and high-current applications
Communication protocol customization
Mechanical and thermal design
Sample testing and bulk production
Export packaging and international shipping
The project with Valdiney Silva in Brazil is just one example of what we can achieve together. If you have a UAV battery requirement, contact us today. Let’s turn your specification into a qualified sample and then into a reliable production battery.