Sampling circuit, equalization circuit, and system for single cell in series battery pack
US-2019317153-A1 · Oct 17, 2019 · US
US11539221B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11539221-B2 |
| Application number | US-202016895739-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 8, 2020 |
| Priority date | Jun 11, 2019 |
| Publication date | Dec 27, 2022 |
| Grant date | Dec 27, 2022 |
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A charge-discharge control circuit includes a first cell balancing circuit having a first switch; a second cell balancing circuit having a second switch; a first cell balance detection circuit having a third switch; a second cell balance detection circuit having a fourth switch; and a control circuit which outputs a control signal to turn on the first switch in a prescribed cycle according to the voltage of a first battery which is higher than or equal to a cell balance detection voltage, or outputs a control signal to turn on the second switch in the prescribed cycle according to the voltage of a second battery which is higher than or equal to the cell balance detection voltage, and outputs a control signal to turn off the third switch and the fourth switch in the prescribed cycle during output of the control signal.
Opening claim text (preview).
What is claimed is: 1. A charge-discharge control circuit configured to control charging and discharging of a plurality of batteries connected in series, comprising: a first input terminal to which a positive electrode of a first battery is connected through a first protective resistor; a second input terminal to which a negative electrode of the first battery and a positive electrode of a second battery are connected through a second protective resistor; a ground terminal to which a negative electrode of the second battery is connected; a first cell balancing circuit connected between the first input terminal and the second input terminal and having a first switch; a second cell balancing circuit connected between the second input terminal and the ground terminal and having a second switch; a first cell balance detection circuit connected between the first input terminal and the second input terminal and having a third switch; a second cell balance detection circuit connected between the second input terminal and the ground terminal and having a fourth switch; a control circuit configured to output a first control signal to turn on the first switch in a prescribed cycle according to a voltage of the first battery which is higher than or equal to a cell balance detection voltage, output a second control signal to turn on the second switch in the prescribed cycle according to a voltage of the second battery which is higher than or equal to the cell balance detection voltage, and output a third control signal to turn off the third switch and the fourth switch in the prescribed cycle while at least one of the first control signal turns on the first switch in the prescribed cycle or the second control signal turns on the second switch in the prescribed cycle; a first overcharge detection circuit connected between the first input terminal and the second input terminal and having a fifth switch; and a second overcharge detection circuit connected between the second input terminal and the ground terminal and having a sixth switch, wherein the control circuit is configured to output the third control signal to turn off the fifth switch and the sixth switch in the prescribed cycle while at least one of the first control signal turns on the first switch in the prescribed cycle or the second control signal turns on the second switch in the prescribed cycle. 2. A battery device comprising: a plurality of batteries and an FET connected in series between a first external terminal and a second external terminal; and the charge-discharge control circuit according to claim 1 which monitors the voltage of each of the plurality of batteries to control charging and discharging of the plurality of batteries by turning on/off the FET. 3. The charge-discharge control circuit of claim 1 , wherein the first cell balancing circuit comprises a first cell balancing resistor that is different from the first protective resistor and the second protective resistor, and wherein the second cell balancing circuit comprises a second cell balancing resistor that is different from the first protective resistor and the second protective resistor.
using battery or load disconnect circuits (H02J9/002 takes precedence) · CPC title
against overcharge · CPC title
including safety or protection arrangements · CPC title
for charge balancing, e.g. equalisation of charge between batteries · CPC title
Passive balancing, e.g. using resistors or parallel MOSFETs · CPC title
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