Volteek provides a modular battery‑control platform that delivers intelligent safety circuits, high‑precision SoC/SoH/SoP estimation, and active cell‑balancing for battery packs up to 1200 V across multiple chemistries. The system offers real‑time isolation‑resistance monitoring, remote telemetry, OTA firmware updates, and standardized APIs to enable OEMs and integrators to quickly integrate and manage high‑performance packs for mobility, industrial, and grid‑scale applications.
Funding
Funding not disclosed
Founders
Product
Problem
High‑performance electric systems require battery packs that operate safely at voltages up to 1200 V and across a wide range of chemistries, yet many existing battery‑management solutions are monolithic, lack precise state‑of‑charge monitoring, and provide limited remote diagnostics, leading to reduced reliability and higher lifecycle costs.
Solution
Volteek delivers a modular battery‑control platform that integrates intelligent safety circuits, high‑accuracy state‑of‑charge (SoC), state‑of‑health (SoH) and state‑of‑power (SoP) estimation, and active cell‑balancing. The architecture consists of interchangeable building blocks that can be configured for any voltage level up to 1200 V and for diverse cell chemistries, enabling rapid adaptation to mobility, industrial, and grid‑scale applications. Real‑time isolation‑resistance measurement and contactor monitoring enforce safety, while predictive‑maintenance analytics flag degradation before failure. Remote management tools and a user‑friendly GUI allow operators to monitor performance, adjust parameters, and deploy firmware updates without onsite intervention. OEMs can integrate the system through standardized APIs and receive design‑support services to accelerate time‑to‑market.
Target Audience
Primary customers are OEMs and system integrators developing battery packs for electric racecars, motorcycles, public‑transport and mining vehicles, construction and agricultural machinery, warehouse robots, as well as providers of grid‑connected storage, backup power, and off‑grid energy solutions.
Features
- Intelligent safety circuit with continuous isolation‑resistance sensing and contactor control/monitoring
- High‑precision SoC, SoH, and SoP algorithms delivering predictive‑maintenance insights
- Active cell‑balancing module that dynamically redistributes energy to extend cycle life and improve energy density
- Modular hardware architecture supporting up to 1200 V and a broad spectrum of cell chemistries (Li‑ion, Li‑FePO₄, etc.)
- Remote management suite with cloud‑enabled telemetry, over‑the‑air firmware updates, and a configurable web GUI
- Auto‑detection and configuration of cell strings, reducing integration effort
- Sampling frequency up to 2 kHz for high‑resolution voltage and current measurement
- OEM design‑support package including integration APIs, mechanical layout assistance, and custom firmware development