Method and device for supplying energy to a low-voltage load
A method and a device for supplying energy to a low-voltage load using an electronic power supply device. The method involves: a) setting the power supply device to be able to provide an output current to the low-voltage load up to a specified peak current value upon demand; b) monitoring the output current (I L ) provided to the low-voltage load by the electronic power supply device to detect an increase of I L over a threshold (I N ) which is lower than the peak current value, c) if an increase of I L to an increased output current value higher than I N is detected, detecting the increased I L value and ascertaining an output current pulse duration (t Pulse ) based on the increased current value; d) providing I L at the level of the increased current value for the duration of the ascertained t Pulse ; and e) providing the I L at the level of I N after t Pulse has expired.
1. A method for supplying energy to a low-voltage load using an electronic power supply device, the method comprising:
setting up the electronic power supply device so as to provide an output current to the low-voltage load up to a specified peak current value;
providing the output current to the low-voltage load;
monitoring the output current provided to the low-voltage load in order to detect an increase in the output current above a threshold which is lower than the specified peak current value;
if an increase in the output current to an increased output current value higher than the threshold is detected, ascertaining an output current pulse duration based on the increased output current value;
providing the output current to the low-voltage load at a level of the increased output current value for the output current pulse duration; and
after expiration of the output current pulse duration, providing the output current to the low-voltage load at a level of the threshold.
2. The method of claim 1 , further comprising:
after expiration of the output current pulse duration, setting a delivery of the output current at the level of the threshold for a duration of a predefined recovery time; and
after expiration of the duration of the predefined recovery time, resetting the electronic power supply device so as to deliver the output current to the low-voltage load up to the specified peak current value.
3. The method of claim 2 , further comprising:
determining the predefined recovery time in relation to the increased output current value.
4. The method of claim 1 , further comprising:
providing a protective device configured to protect the low-voltage load; and
setting the peak current value sufficiently high to ensure secure tripping of the protective device.
5. The method of claim 1 , wherein the longer the output current pulse duration is, the lower the increased output current value is.
6. The method of claim 1 , further comprising, if the output current becomes equal to or lower than the threshold prior to expiration of the output current pulse duration:
setting up the electronic power supply device to provide the output current up to the level of the threshold.
7. An electronic power supply device for supplying energy to a low-voltage load by delivery of a DC output voltage and an output current up to a peak current value, the electronic power supply device comprising:
a detector which, in response to an increase in the output current above a predefined threshold, detects the increased output current, determines an output current pulse duration in relation to the increased output current, delivers the increased output current for a duration of the output current pulse duration, and, upon expiration of the output current pulse duration, delivers the output current at a level of the predefined threshold,
wherein the electronic power supply device is configured as an electronic switched-mode power supply,
wherein the electronic switched-mode power supply includes, incorporated therein, a DC voltage converter including an adjustable energy transmission ratio and a current measuring device configured to monitor the output current, and a setting apparatus configured to set an energy transmission ratio in relation to the output current, and
wherein the DC voltage converter includes a half-bridge LLC resonant converter.
8. The electronic power supply device of claim 7 , wherein the setting apparatus is further configured to influence a working frequency of the half-bridge LLC resonant converter.