Abstract:
A method of operating an inverter including the steps of detecting the temperature of the at least one electrolytic capacitor; selecting at least one of a plurality of switching patterns based on the temperature of the at least one electrolytic capacitor; and generating a ripple current across the at least one electrolytic capacitor by operating the inverter from the at least one of the plurality of switching patterns for preheating of the at least one electrolytic capacitor.
Abstract:
A high voltage (HV) safety lock for HV components in a vehicle has an HV plug, including a safety bridge arranged in the HV plug and connected to a central vehicle control via an internal bus system within the vehicle or a simple switched signal via a decentral control and regulating unit of an HV component. The safety bridge is connected to an LV power supply configured with electric isolation from the HV system.
Abstract:
A high voltage (HV) safety lock for HV components in a vehicle has an HV plug, including a safety bridge arranged in the HV plug and connected to a central vehicle control via an internal bus system within the vehicle or a simple switched signal via a decentral control and regulating unit of an HV component. The safety bridge is connected to an LV power supply configured with electric isolation from the HV system.
Abstract:
A method of operating an inverter including the steps of detecting the temperature of the at least one electrolytic capacitor; selecting at least one of a plurality of switching patterns based on the temperature of the at least one electrolytic capacitor; and generating a ripple current across the at least one electrolytic capacitor by operating the inverter from the at least one of the plurality of switching patterns for preheating of the at least one electrolytic capacitor.