Multi-terminal lead storage battery regeneration device and regeneration method
A regenerative device and lead battery technology, applied in secondary batteries, secondary battery testing, electrochemical generators, etc., to achieve the effects of shortening regeneration time, increasing business income, and improving regeneration levels
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Embodiment 1
[0072] The reverse constant current pulse charger 15 of the present invention is a 48V lead battery charger, which can process 48V lead batteries of 4 electric vehicles at one time, and the specific operation steps are as follows:
[0073] Step 1. Use a double-plug cable 21. The cross-sectional area is configured according to the Ah value of the lead battery. In this embodiment, it is 2.5mm2. Connect one end M of it to the jack G ( figure 2 , 42), the other end N is connected to the socket F’ ( figure 2 ,33-F');
[0074] Step two, such as figure 2 , the total circuit control switch 51 and the reverse constant current pulse charger 31 should be in the state of "off", and the selection switch 34 of the DC milliampere meter 32 and the DC ammeter 35 is turned to the DC ammeter 35 and connected;
[0075] Step 3, turn on the total circuit control switch 51, so that the lead battery is discharged through the resistance wire, and the DC ammeter displays the current reading, for e...
Embodiment 2
[0085] In this embodiment, its reverse constant current pulse chargers 15 are all 36V lead battery chargers, which can process 36V lead batteries of 4 electric vehicles at one time, and the specific operation method is the same as that of embodiment 1.
Embodiment 3
[0087] In this embodiment, its reverse constant current pulse chargers 15 are all 60V lead battery chargers, which can process the 60V lead batteries of 4 electric vehicles at one time, and the specific operation method is the same as that of embodiment 1.
[0088] The present invention has been described with four processing units in parallel. In fact, according to the principle of the present invention, several units and lead battery processing devices with different nominal voltages can be designed in parallel. Therefore, if only the number of units or the output voltage of the reverse constant current pulse charger 15 is changed, all should belong to the coverage of the present invention.
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