Modular chargers manage voltage thresholds to maintain power availability when devices are removed, reducing total battery weight.
A charging apparatus detects power levels from multiple sources and directs energy to a circuit based on threshold comparisons.
Partial and saturation recharging cycles reduce generator operating time and extend battery lifespan in hybrid power systems.
A wireless charging device uses multiple operating modes to transmit electrical energy contactlessly to rechargeable battery units.
A dual battery charging system uses a control component to manage a switch device for connecting or disconnecting a smaller capacity battery during the charging process.
A charging apparatus uses a control chip and detection circuits to manage output power dynamically.
A mobile terminal controller manages power and data transmission through a cable interface between connected devices.
A discharge blocking circuit uses a solid-state data terminal to decouple control signals from voltage-sensitive thermistor terminals.
A battery charging method segments State of Charge levels to set optimal charge C-rates for each section.
A battery cell monitoring device connects in parallel to a fuse via separate contacts to maintain electrical communication with the electrode.
A battery management unit controller limits rechargeable battery voltage during storage and shipping states.
A charge control circuit manages a boost DC-DC converter to step up input voltage for charging two-cell lithium-ion batteries.
A charging path switch circuit dynamically routes signals between a power source and an external device through selective connection.
A charging device switches signal cables to detect self-loops between inbound and outbound interfaces.
A charging device adjusts parameters using efficiency characteristic fields to optimize energy transfer.
A protection circuit uses a heater control unit to melt temperature fuses by applying voltage from a charging source.
A wireless power transmitter uses receiver sensor data to direct constructive interference for energy delivery.
Charging electronics limit voltage to keep rechargeable batteries at 5% to 30% capacity without overcharging.