A combined charger and power converter uses shared stages to manage voltage levels for electric vehicle power storage.
A battery management system uses multi-level encoding to modulate serial data streams over discrete signal levels.
A multi-point power system directs wireless energy beams to specific electronic devices using a smart antenna network.
A controller dynamically adjusts input voltage to optimize power conversion and battery charging efficiency.
Interchangeable charging cups on a unified base solve the complexity of managing multiple chargers for diverse battery-powered devices.
Portable lighting device integrates rechargeable battery and wireless communication circuitry to supply power to external devices.
A charging infrastructure unit uses a shared DC chopper controller to manage power distribution across multiple vehicle connections.
Segmenting the charger into a removable converter reduces vehicle weight and energy consumption while maintaining flexible AC to DC charging capability.
Segmenting cell groups with independent protection circuits prevents cascading overcurrent failures during parallel charging of large battery packs.
A wireless power receiver controller adjusts converted DC power levels based on real-time thermal measurements to maintain safe operating conditions.
A relaxation-aware charging algorithm adjusts current profiles to maximize charged capacity within user-defined time windows.