Battery Management Systems (BMS) play a critical role in modern electrification solutions. Many companies rely on commercially available BMS to manage their battery modules or electrification systems. These systems are often integrated with battery packs or sourced separately, but they do not always meet the precise requirements of a given application. When off-the-shelf solutions fall short, extensive customization may be required. In cases where modifications still fail to deliver optimal performance, developing a proprietary BMS may be necessary. However, this is a time-intensive and costly endeavor, requiring deep expertise in electronics, software, and compliance with strict industry regulations.
To bridge this gap, Nobleo offers an innovative BMS platform that accelerates development while maintaining flexibility and scalability. Our solution provides a robust foundation, allowing companies to integrate domain-specific functionalities tailored to their needs. With a stable electronic platform and modular architecture, businesses can focus on their technological roadmap without the complexities of developing a BMS from scratch.
Beyond standard functionalities, Nobleo’s BMS is designed for compliance with stringent safety standards, including SIL (1500V) and ASIL (800V) regulations. Built on the NXP chip family, the system ensures functional safety, seamless integration, and suitability for electrification, automotive, and energy storage system (ESS) applications.
Nobleo’s BMS platform provides a scalable and customizable solution that meets the evolving needs of electrification. It offers:
– A stable BMS foundation for a broad range of applications
– Accelerated BMS development and reduced time to market
– Lower risks and cost-effective implementation
– Scalable architecture to support future expansion
– Advanced diagnostics and improved State of Health (SoX) calculations
– Full compliance with SIL and ASIL standards
– Customization as a Service (CaaS) for tailored solutions
– The ability to integrate customer-specific logic and algorithms
– Simplified pathways to higher-volume production
Nobleo’s expertise spans multiple technical domains essential for developing and integrating high-performance BMS solutions:
– Embedded software – Development of safety-critical software for real-time battery monitoring
– Electronics design – Reliable hardware architecture for efficient power management
– Functional safety – Compliance with automotive and energy industry standards
– Cloud integration – Secure connectivity for remote diagnostics and Over-the-Air (OTA) updates
– Model-based development – Simulation-driven design for rapid prototyping and testing
– Advanced battery analytics – State-of-Health (SoH), State-of-Charge (SoC), and early fault detection algorithms
Nobleo’s Battery Management Systems platform is designed to support a wide range of battery applications, including:
– Electric vehicles (EVs) – Ensuring optimal performance and longevity of high-voltage battery packs
– Energy storage systems (ESS) – Efficient power management for grid and off-grid storage solutions
– Industrial automation – Reliable battery monitoring for robotics and automated machinery
– Aerospace and marine – Safety-critical power systems for high-endurance applications
– Heavy-duty transport – Electrification of trucks, buses, and construction equipment
Our BMS technology is tailored for various industries that demand advanced battery management solutions:
– Automotive – Supporting the shift towards electric mobility
– Renewable energy – Enabling efficient energy storage and management
– Industrial automation – Powering smart factories and automated systems
– Aerospace and defense – Providing mission-critical power solutions
– Maritime and heavy machinery – Supporting electrification in demanding environments
By leveraging Nobleo’s BMS platform, companies can accelerate their electrification journey while maintaining safety, reliability, and performance. Our flexible approach ensures that businesses remain ahead of regulatory requirements and technological advancements, securing a future-proof battery management strategy.