Increase Performance, Extend Battery Lifespan, and Lower Costs with our BMS and Patented Algorithms
Are you ready to push the boundaries of battery performance? Wondering how to enhance your existing battery system or develop a breakthrough product that stands out in the market?
We invite you to collaborate with our world-class team of battery experts, hardware and software engineers and functional safety specialists to bring your vision to life.
By offering both Standard and Special testing services, PEM Motion ensures that your battery technologies are Looking for a BMS but unsure if you should buy off-the-shelf or build a custom solution? The best path depends on your project’s specific scope, complexity, and long-term goals. A custom BMS is specifically engineered for scenarios where you need to go beyond standard requirements – whether you’re leveraging novel battery cells, operating under extreme environmental conditions or space constraints, or aiming for an edge in a highly competitive market. By tailoring every aspect to your requirements, a custom BMS ensures you’re equipped to meet even the most demanding conditions.not only ready for today’s applications but also robust enough to meet the challenges of tomorrow.
From unusual operating conditions to pioneering battery cells, every detail is engineered to your exact specifications, giving you the control you need to succeed in challenging environments.
A custom BMS can evolve with your project. As you scale it’s simple to integrate additional features or modifications to meet changing requirements.
While upfront costs can be higher, a purpose-built BMS is a smart long-term investment. You’ll avoid costly retrofits and gain a solution designed to support your product’s full lifecycle.
Get every bit of power and efficiency from your battery pack. A custom BMS fine-tunes balancing, monitoring, and protective measures to the specific chemistry and usage of your cells.
Our advanced balancing and charging algorithm keeps each cell at its optimal state of charge by intervening within seconds during the normal charge cycle. By effectively treating every cell individually, it delivers higher performance, a longer lifespan, and a flexible approach that easily adapts to both passive and active balancing hardware.
Key Benefits
1. Longer Battery Lifespan: Differences in cell efficiency are addressed early on, slowing cell aging and preserving overall capacity.
2. Optimized Energy Performance: By leveling based on cell efficiency rather than just voltage, our approach maximizes usable capacity and enhances overall system output.
3. Daily Reliability: Ideal for EV or stationary storage systems that rarely pause, ensuring continuous readiness and minimal downtime.
4. Handles Large Cell Discrepancies: Provides the flexibility to use unsorted cells, achieving performance and longevity on par with sorted packs minus the added cost.
Every battery application comes with its own set of demands and challenges. To ensure your system meets the highest standards of reliability and safety, we follow a comprehensive V-model development cycle. This approach allows us to rigorously define requirements, design solutions, verify components, and validate the final product against your specific goals.
Throughout the process, we adhere to key industry standards such as ISO 26262 for automotive applications and IEC 61508 for functional safety, giving you confidence that your custom BMS will not only perform optimally but also meet the strictest regulatory requirements.
PEM Motion has partnered with various companies in the mobility industry to provide custom BMS solutions, and one of our recent success stories is our collaboration with Pave Motors. Our team designed a BMS specifically tailored for their next-generation bike-motorcycle hybrid, enabling a fun, functional, and fully connected riding experience. With the support of PEM Motion, Pave Motors was able to achieve a smooth integration of the BMS and battery, ensuring a high-quality and reliable product. At PEM Motion, we’re committed to revolutionizing the future of mobility with our innovative BMS solutions.
PEM Motion recently joined forces with a client to explore the next frontier in battery monitoring: a wireless BMS. By eliminating physical wiring between cells and the control unit, this concept drastically simplifies battery pack design and increases flexibility. However, implementing a wireless BMS introduces challenges like maintaining robust signal integrity and meeting stringent safety requirements. Our team guided the discovery phase of this concept culminating in a proof of concept and demonstrator that validated wireless communication for real-time battery monitoring. This collaboration highlights PEM Motion’s commitment to shaping the future of mobility through cutting-edge, reliable BMS solutions.
PEM Motion is driving innovation in sustainable energy storage through our work on Fluxlicon, a project that repurposes second-life batteries for stationary applications. By leveraging used EV batteries with remaining capacity, Fluxlicon enables cost-effective and scalable energy storage solutions that support municipal fast-charging infrastructure and renewable energy integration. Collaborating with leading research and industry partners, PEM Motion played a key role in system development, ensuring a safe, efficient, and modular storage design. This project highlights our commitment to circular economy solutions, proving that second-life batteries can power the energy transition and extend the lifecycle of critical resources.
Book a meeting for more detailed information.