CN208127932U - Charge-discharge control circuit and battery management system - Google Patents

Charge-discharge control circuit and battery management system Download PDF

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Publication number
CN208127932U
CN208127932U CN201820585333.9U CN201820585333U CN208127932U CN 208127932 U CN208127932 U CN 208127932U CN 201820585333 U CN201820585333 U CN 201820585333U CN 208127932 U CN208127932 U CN 208127932U
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unit
control
charging
connect
discharge
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CN201820585333.9U
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陈安平
胡孟贤
高宏军
王晓闽
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Changsha Youli Electric Drive System Co Ltd
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Changsha Youli Electric Drive System Co Ltd
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Abstract

A kind of charge-discharge control circuit, including:Charging current limiter unit, charging control unit and control of discharge unit, and obtain battery pack temperature and export the main control unit of control signal based on the battery pack temperature;First output end of the main control unit is connect with the control terminal of the charging current limiter unit, the second output terminal of the main control unit is connect with the charging control unit, the third output end of the main control unit is connect with the control of discharge unit, the input terminal of the control of discharge unit is connect by current divider with B- electrode, output end is connect with the input terminal of the input terminal of the charging current limiter unit, the charging control unit, and the output end of the charging current limiter unit, the output end of the charging control unit are connect with P- electrode.A kind of battery management system, including battery detection circuit as described above are also provided.The scheme of the present embodiment is versatile, and can further reduce the cost.

Description

Charge-discharge control circuit and battery management system
Technical field
This application involves electronic technology fields, more particularly to a kind of charge-discharge control circuit and a kind of battery management system System.
Background technique
Lithium ion battery cannot be made due to the influence of its physical characteristic at low temperature (such as 5 DEG C (degree Celsius) below) It is charged with high current, if carrying out service life and active volume that large current charge will substantially reduce battery.For this purpose, mesh Preceding battery management system uses two schemes:First is that being heated by heating sheet, increase temperature, then charge;Second is that with filling Electric appliance communication, exports low current at low temperatures, and temperature starts large current charge after restoring normal again.Both schemes are both needed to The auxiliary for relying on external equipment not only increases cost, while also reducing the versatility of product.
Apply for content
Based on this, the embodiment of the present application is designed to provide a kind of charge-discharge control circuit and a kind of battery management system System, to improve versatility.
A kind of charge-discharge control circuit, including:Charging current limiter unit, charging control unit and control of discharge unit, and It obtains battery pack temperature and exports the main control unit of control signal based on the battery pack temperature;
First output end of the main control unit is connect with the control terminal of the charging current limiter unit, the main control unit Second output terminal is connect with the charging control unit, and the third output end of the main control unit and the control of discharge unit connect It connects, the input terminal of the control of discharge unit is connect by current divider with B- electrode, output end and the charging current limiter unit The input terminal connection of input terminal, the charging control unit, the output end of the charging current limiter unit, the charging control unit Output end connect with P- electrode.
In one embodiment, which further includes:Detect the temperature detecting unit of battery pack temperature, institute Stating temperature detecting unit includes:First hygrosensor, second temperature detector, third hygrosensor and the 4th temperature sensing Device;First hygrosensor, second temperature detector, third hygrosensor and the 4th hygrosensor are respectively placed in The surface of predetermined single battery core in battery pack.
In one embodiment, which further includes:Identification charger access state is detecting charging The charging recognition unit of output charger access signal when device accesses, the output end and the master control list of the charging recognition unit The second input terminal connection of member.
In one embodiment, which further includes:The external charger accessed of identification, output charger Voltage signal, and the control based on the main control unit shields the charger when the charger does not meet charging requirement Charging voltage detection unit, the charging voltage detection unit are connect with the main control unit.
In one embodiment, charging current limiter unit includes:Switch control module, control device, switching device and storage Can device, the first output end of the input terminal of switch control module and main control unit connects, the output end of switch control module with The input terminal of control device connects, and the output end of control device and the control terminal of switching device connect, and energy storage device, which is connected to, to be put Between the output end of electric control unit and the first end of switching device, the second end of the switching device connects P- electrode.
In one embodiment, charging control unit includes:The drive module that charges and charging unit, the charging drive mould The input terminal of block is connect with the second output terminal of the main control unit, and the output end of the charging drive module and the charging fill The control terminal connection set, the input terminal of the charging unit are connect with the output end of the control of discharge unit, the charging dress The output end set is connect with the P- electrode.
In one embodiment, control of discharge unit includes:Drive module of discharging and electric discharge device, the electric discharge drive mould The input terminal of block is connect with the third output end of the main control unit, and the output end of the electric discharge drive module and the electric discharge fill The control terminal connection set, the input terminal of the electric discharge device are connect with the B- electrode, the output end of the electric discharge device and institute State the connection of P- electrode.
In one embodiment, which further includes:Current sampling unit, the current sampling unit First sampling end is connect with the control of discharge unit, and the second sampling end connection battery pack of the current sampling unit is born Pole.
In one embodiment, main control unit includes main control module, crystal oscillator module and reseting module, the main control module with The crystal oscillator module is connected with the reseting module.
A kind of battery management system, including battery pack and battery detection circuit as described above.
Based on the scheme of embodiment as described above, main control unit can obtain battery pack temperature and based on the battery pack temperature Degree output control signal, so as to control the work of charging current limiter unit, charging control unit and control of discharge unit accordingly State carries out effective current limliting processing so as to be accordingly based on the temperature of the battery pack monitored, without external equipment It helps, it is not only versatile, and can further reduce the cost.
Detailed description of the invention
Fig. 1 is the principle schematic diagram of the charge-discharge control circuit of one embodiment;
Fig. 2 is the principle schematic diagram of the charge-discharge control circuit of another embodiment;
Fig. 3 is the electrical block diagram of the charging recognition unit in one embodiment;
Fig. 4 is the electrical block diagram of the charging current limiter unit in one embodiment;
Fig. 5 is the electrical block diagram of the charging drive module in one embodiment;
Fig. 6 is the electrical block diagram of the charging unit in one embodiment;
Fig. 7 is the electrical block diagram of the electric discharge drive module in one embodiment;
Fig. 8 is the electrical block diagram of the electric discharge device and sample circuit in one embodiment;
Fig. 9 is the electrical block diagram of the main control unit in one embodiment.
Specific embodiment
It is with reference to the accompanying drawings and embodiments, right in order to which the objects, technical solutions and advantages of the application are more clearly understood The application is further elaborated.It should be appreciated that specific embodiment described herein is only used to explain the application, and It is not used in restriction the application.
Fig. 1 shows the structural schematic diagram of the charge-discharge control circuit in one embodiment comprising charging current limiter unit 13, charging control unit 14 and control of discharge unit 15, and obtain battery pack temperature and exported based on the battery pack temperature Control the main control unit 11 of signal.
First output end GPIO7 of main control unit 11 is connect with the control terminal of charging current limiter unit 13, main control unit 11 Second output terminal GPIO8 is connect with the control terminal of charging control unit 14, the third output end GPIO9 of main control unit 11 and electric discharge The control terminal of control unit 15 connects, and the input terminal of control of discharge unit 15 is connect with battery cathode (B- electrode), output end and The input terminal connection of the input terminal, charging control unit 14 of charging current limiter unit 13, the output end of charging current limiter unit 13, charging The output end of control unit 14 is connect with discharge end cathode (P- electrode).
Based on the scheme of embodiment as described above, main control unit can obtain battery pack temperature and based on the battery pack temperature Degree output control signal, so as to control the work of charging current limiter unit, charging control unit and control of discharge unit accordingly State carries out effective current limliting processing so as to be accordingly based on the temperature of the battery pack monitored, without external equipment It helps, it is not only versatile, and can further reduce the cost.
Wherein, as shown in Figure 1, the charge-discharge control circuit in the embodiment can also include the temperature of detection battery pack temperature Spend detection unit 10.In one specific example, which may include:First hygrosensor, second temperature Detector, third hygrosensor and the 4th hygrosensor;First hygrosensor, second temperature detector, third Hygrosensor and the 4th hygrosensor are respectively placed in the surface of the predetermined single battery core in battery pack.It is appreciated that In other embodiments, which also be may not need included in the charge-discharge control circuit, as long as main control unit 11 can obtain battery pack temperature.
Refering to what is shown in Fig. 1, the charge-discharge control circuit in one embodiment can also include:Identify that charger accesses shape State, when detecting charger access, output charger accesses the charging recognition unit 11 of signal, and charge the defeated of recognition unit 11 Outlet is connect with the second input terminal of main control unit 11.
Refering to what is shown in Fig. 3, in one embodiment, charging recognition unit 11 includes:Optocoupler ISO9, anode is with optocoupler ISO9's The diode Df2 of first end connection, the other end of diode Df2 are connect with P- electrode, and the second end of anode and optocoupler ISO9 connects The other end of the diode Zf1 connect, the resistor assembly connecting with the cathode of diode Zf1, resistor assembly are connect with P+ electrode, with The resistance Rf7 and resistance Rf8 of the 4th end connection of optocoupler IOS9, the capacitor Cf2 being connect with the other end of resistance Rf7, resistance Rf7 The other end and the input terminal of main control unit connect, the other end of resistance Rf8 accesses power supply, the other end ground connection of capacitor Cf2.
Wherein, above-mentioned resistor assembly includes the resistance Rf5 and resistance Rf6 being serially connected.The other end and the P+ electricity of resistance Rf5 Pole connection, the other end of resistance Rf6 are connect with the cathode of diode Zf1.
Based on the charging recognition unit 11, after external charger insertion, and voltage is greater than corresponding voltage threshold (such as 43V is determined by zener diode Zf1) when, the circuit P+ to P- conducting, so that 3 feet of optocoupler ISO9 and the conducting of 4 feet, GPIO6 become At low level;If P+ to P- loop cutoff, 3 feet and 4 feet of optocoupler ISO9 are not turned on without external charger, GPIO6 is high electricity It is flat.
Refering to what is shown in Fig. 2, in one embodiment, above-mentioned charging current limiter unit 13 includes:Switch control module 131, control Device 132, switching device 133 and energy storage device 134 processed.Wherein, the input terminal of switch control module 131 and main control unit 11 The first output end GPIO7 connection, the output end of switch control module 131 connect with the input terminal of control device 132, control dress It sets 132 output end to connect with the control terminal of switching device 133, energy storage device 134 is connected to the output of control of discharge unit 15 Between end and the first end of switching device 133, the second end of switching device 133 connects discharge end cathode (P- electrode).
Wherein, in specific implementation, in a specific example, above-mentioned control device 132 may include PWM controller, Switching device 133 may include switch mosfet, and energy storage device 134 may include energy storage inductor.
Refering to what is shown in Fig. 4, in one embodiment, switch control module 131 includes:Resistance Rx9, resistance Rx4, resistance Rx2, capacitor Cx8, capacitor Cx1, optocoupler OP1, diode Dx2 and triode Q1.
Wherein, the first output end GPIO7 connection of one end of resistance Rx9 and main control unit, the other end and electricity of resistance Rx9 Hold one end of Cx8, first end (pin 1) connection of optocoupler OP1, the other end ground connection of capacitor Cx8, the second end of optocoupler OP1 (is drawn Foot 2) ground connection, the third end (pin 3) of optocoupler OP1 connects P- electrode, the 4th end (pin 4) of optocoupler OP1 and bearing for diode Dx2 The anode of pole connection, diode Dx2 is connect with one end of resistance Rx4, the other end of resistance Rx4 and one end, three poles of resistance Rx2 The base stage of pipe Q1 connects, and the other end of resistance Rx2, the emitter of triode Q1 access power supply, one end of capacitor Cx1 and P- electrode Connection, the collector of triode Q1, the other end of capacitor Cx1 connect after be the switch control module output end.
When it is high level that main control unit, which sets GPIO7, optocoupler OP1 conducting, Rx2, Rx4, Dx4 forming circuit, thus Rx2 two There is pressure drop at end, and Q1 is connected, and P12V2 power supply may be output to chip Ux1, the Ux1 start-up operation of control device 132.Main control unit When to set GPIO7 be low level, optocoupler OP1 cut-off, the circuit Rx2, Rx4, Dx2 is disconnected, and the both ends Rx2 are not turned on without pressure drop, Q1, P12V2 power supply can not be exported not to work to the chip Ux1 of control device 132, Ux1.
With reference to Fig. 4, in one embodiment, control device 132 includes:Control chip Ux1, resistance Rx26, resistance Rx27, electricity Hinder Rx20, resistance Rx18, resistance Rx12, resistance Rx14, resistance Rx15, resistance Rx21, resistance Rx22, resistance Rx17, resistance Rx24, resistance Rx30, capacitor Cx45, capacitor Cx18, capacitor Cx1, capacitor Cx9, capacitor Cx10, capacitor Cx13, capacitor Cx19, electricity Hold Cx20, capacitor Cx21, capacitor Cx22, diode Dx5, diode Dx7 and triode Vx8.Wherein, control chip Ux1 Chip can be controlled for wide pulse modulation, form the present embodiment of specific chip is not specifically limited, such as TL494 (EG7500 chip).
Wherein, capacitor Cx13 is connected between the first pin (1IN+ pin) and P- cathode of control chip Ux1, capacitor After Cx1 connects with resistance Rx20, be connected to control chip Ux1 second pin (1IN- pin) and third pin (FB pin) it Between, resistance Rx18 is connected between the second pin and third pin of control chip Ux1, resistance Rx14 and resistance Rx15 series connection Afterwards, it is connected between the second pin and the 14th pin (REF pin) of control chip Ux1, capacitor Cx9 is connected to control chip Between the second pin and P- electrode of Ux1, resistance Rx12 is connected between the second pin and P- electrode of control chip Ux1, electricity Hold Cx10 to be connected between the 14th pin and P- electrode of control chip Ux1, capacitor Cx18 is connected to the of control chip Ux1 Between four pins (DTC pin) and the 5th pin (CT pin), resistance Rx27 is connected to the 4th pin and the of control chip Ux1 Between six pins (RT pin), resistance Rx26 is connected to the 4th pin and the 7th pin (grounding pin GND) of control chip Ux1 Between, capacitor Cx45 is connected between the 4th pin and the 8th pin (C1 pin) of control chip Ux1, control chip Ux1's 4th pin is also connect with P- electrode, after the 9th pin (E1 pin) of control chip Ux1 connects with the tenth pin (E2 pin), It is connect with the base stage of one end of resistance Rx30, the anode of diode Dx5, the cathode of diode Dx7 and triode Vx8, two poles The cathode of pipe Dx5 is connect with one end of the emitter of triode Vx8, resistance Rx24, the other end, the diode Dx7 of resistance Rx30 Anode and the collector of triode Vx8 connect with P- electrode, the first output of the other end and control device of resistance Rx24 Port connection, control chip Ux1 the 8th pin, control chip Ux1 the 11st pin, control chip Ux1 12 pins, The input port of one end of capacitor Cx19, one end of capacitor Cx20 and control device connects, the other end, the capacitor of capacitor Cx19 The other end of Cx20 connect with the 13rd pin of control chip Ux1, and capacitor Cx21, which is connected to, controls the 13rd drawing for chip Ux1 Between foot and the 14th pin, capacitor Cx22 is connected between the 13rd pin and the 14th pin of control chip Ux1, resistance Rx21 is connected between the 14th pin and the 15th pin of control chip Ux1, and resistance Rx22 is connected to control chip Ux1's Between 13rd pin and the 16th pin, one end of resistance Rx17 and the first pin and capacitor Cx13 of control chip Ux1 Between connect, the second output terminal mouth of the other end of resistance Rx17 and control device connects.
Refering to what is shown in Fig. 4, the switching device 133 in one embodiment includes:Metal-oxide-semiconductor Qx3, resistance Rx23, resistance Rx31, And capacitor Cx17, metal-oxide-semiconductor Qx3 grid, one end of resistance Rx23 and one end of capacitor Cx17 and switching device first Input port connection, the source electrode of metal-oxide-semiconductor Qx3, the other end of resistance Rx23, the other end of capacitor Cx17 and resistance Rx31 The connection of second input port of one end and switching device, the other end of resistance Rx31 connect with P- electrode, the switching device it is defeated Exit port is connect with the drain electrode of metal-oxide-semiconductor Qx3.
Refering to what is shown in Fig. 4, the energy storage device 134 in one embodiment includes:Capacitor Cx15, capacitor Cx14 and capacitor Ex4, resistance Rx16, inductance Tx1, one end of input port and capacitor Cx15 that energy storage device 134 is connect with switching device, inductance One end of Tx1 connects, and the other end of capacitor Cx15 is connect with one end of resistance Rx16, the other end and power end of resistance Rx16, One end connection of one end of capacitor Cx14, capacitor Ex4, the other end of inductance Tx1, the other end of capacitor Cx14, capacitor Ex4 it is another The output port of one end connection energy storage device.
With reference to shown in 4, the charging current limiter unit in the embodiment further includes unshowned peripheral circuit in above-mentioned example, should Peripheral circuit includes:Diode Dx4, diode Dx8, capacitor Ex2, capacitor Cx11, the anode of diode Dx4, diode Dx8 Anode is connect with one end of the output port of switching device, one end of capacitor Cx15, inductance Tx1, the cathode of diode Dx4, two The cathode of pole pipe Dx8, one end of capacitor Cx11, capacitor Ex2 one end connect with power end, the other end, the capacitor of capacitor Cx11 The other end of Ex2 is connect with PG-.
When work, the pole Gate of the metal-oxide-semiconductor Qx3 of switching device 133 receives the pwm pulse that control module is sent, and works as pulse When for high level, Qx3 conducting exports energy and gives inductance Tx1, inductive energy storage;When pulse is low level, Qx3 ends, and noenergy is defeated Out, inductance Tx1 releases energy.In the pwm pulse of certain frequency, the energy of output is able to maintain stabilization.
Refering to what is shown in Fig. 2, in one embodiment, charging control unit 14 includes:The drive module 141 that charges and charging unit 142, the input terminal of charging drive module 141 is connect with the second output terminal GPIO8 of main control unit 11, and charge drive module 141 Output end connect with the control terminal of charging unit 142, the output end of the input terminal of charging unit 142 and control of discharge unit 15 Even, the output end of charging unit 142 is connect with P- electrode.
Refering to what is shown in Fig. 5, the charging drive module 141 in one embodiment includes:Resistance R71, resistance R70, resistance R69, resistance R40, resistance R50, resistance R41, resistance R51, triode V7, triode V1, triode V14, diode V4, two poles Pipe V6, diode D3, diode D4 and capacitor Cp17.
Wherein, the second output terminal GPIO8 connection of one end of resistance R71 and main control unit, the other end and electricity of resistance R71 Hinder one end of R70 and the base stage connection of triode V7, the other end ground connection of resistance R70, the collector and resistance of triode V7 One end of R69 connects, the emitter ground connection of triode V7, the other end of resistance R69 and one end of resistance R40 and triode V1 Base stage connection, the other end of resistance R40 connect with the cathode of the emitter of triode V1 and diode V4, triode V1's Collector is connect with one end of diode V6, and the cathode of diode V6 is connect with one end of resistance R50, the other end of resistance R50 It is connect with the base stage of one end of resistance R41, the cathode of diode D4, the anode of diode D3 and triode V14, diode D3 Cathode connect with one end of the emitter of triode V14 and resistance R51, the anode of the other end of resistance R41, diode D4 And the collector of triode V14 is connect with P- electrode, the other end of resistance R51 connects the output end of the charging driving circuit, Anode, the capacitor Cp17 of diode V4 accesses power supply.
When work, main control unit set GPIO8 be high level when, triode V7, V1 conducting, thus VCC12V pass through V4, V1 Source electrode and drain electrode, V6, R50, D3 export to CHG1, CHG1 driving charging MOSFET conducting;When main control unit exports low level, CHG1=0V, charging MOSFET are disconnected.
Refering to what is shown in Fig. 6, the charging unit in one embodiment includes several metal-oxide-semiconductors parallel with one another, shown in Fig. 6 In, it is to be illustrated by taking 6 metal-oxide-semiconductors in parallel as an example, it will be understood by those skilled in the art that the example is only a kind of illustrative Illustrate, need in conjunction with actual techniques, the number of metal-oxide-semiconductor in parallel can be other numbers.
In shown in Fig. 6, which includes:Diode V2, resistance R31, resistance R49, resistance R57, resistance R58, Resistance R59, resistance R60, resistance R61, metal-oxide-semiconductor Q4, metal-oxide-semiconductor Q6, metal-oxide-semiconductor Q9, metal-oxide-semiconductor Q11, metal-oxide-semiconductor Q13, metal-oxide-semiconductor Q16, with And it is connected in capacitor C72 and capacitor C43 between input terminal and output end in parallel.
Wherein, one end of resistance R31, the cathode of diode V2, one end of resistance R49, one end of resistance R57, resistance R58 One end, one end of resistance R59, one end of resistance R60, resistance R61 one end connect with the control terminal of the charging unit, resistance The other end of R49 is connect with the grid of metal-oxide-semiconductor Q4, and the other end of resistance R57 is connect with the grid of metal-oxide-semiconductor Q6, and resistance R58's is another One end is connect with the grid of metal-oxide-semiconductor Q9, and the other end of resistance R59 is connect with the grid of metal-oxide-semiconductor Q11, the other end of resistance R60 with The grid of metal-oxide-semiconductor Q13 connects, and the other end of resistance R61 is connect with the grid of metal-oxide-semiconductor Q16.
The other end of resistance R31, the anode of diode V2, the source electrode of metal-oxide-semiconductor Q4, the source electrode of metal-oxide-semiconductor Q6, metal-oxide-semiconductor Q9 Source electrode, the source electrode of metal-oxide-semiconductor Q11, the source electrode of metal-oxide-semiconductor Q13, metal-oxide-semiconductor Q16 source electrode connect with P- electrode, the drain electrode of metal-oxide-semiconductor Q4, It the drain electrode of metal-oxide-semiconductor Q6, the drain electrode of metal-oxide-semiconductor Q9, the drain electrode of metal-oxide-semiconductor Q11, the drain electrode of metal-oxide-semiconductor Q13, the drain electrode of metal-oxide-semiconductor Q16 and fills The output end of electric installation connects.
Refering to what is shown in Fig. 2, the control of discharge unit 15 in one embodiment includes:Drive module 151 of discharging and electric discharge dress Set 152, wherein the input terminal of electric discharge drive module 151 is connect with the third output end GPIO9 of main control unit 11, electric discharge driving The output end of module 151 is connect with the control terminal of electric discharge device 152, and the input terminal of electric discharge device 152 is connect with B- electrode, electric discharge The output end of device 152 is connect with P- electrode.
Refering to what is shown in Fig. 7, the electric discharge drive module 151 in one embodiment includes:Resistance R44, resistance R45, resistance R80, resistance R27, resistance R42, resistance R43, diode V4, triode V22, triode V9, triode V15, triode V21, And capacitor Cp17.
One end of resistance R44 and the third output end GPIO9 connection of main control unit, the other end and resistance R45 of resistance R44 One end and triode V22 base stage connection, the other end ground connection of resistance R45, the collector of triode V22 and triode V9 Base stage, resistance R80 one end connection, one end of the other end of resistance R80 and resistance R27, resistance R42 one end and two poles The cathode of pipe V4 connects, collector and the other end of resistance R27, the base stage and triode V21 of triode V15 of triode V9 Base stage connection, the other end of resistance R42 connect with the collector of triode V15, emitter, the triode V21 of triode V15 Emitter connect with resistance R43, the collector of triode V21, the emitter of triode V22, triode V9 emitter connect Ground, the anode of diode V4, one end of capacitor Cp17 access power supply, the other end ground connection of capacitor Cp17.
Refering to what is shown in Fig. 8, the electric discharge device in one embodiment includes several metal-oxide-semiconductors parallel with one another, shown in Fig. 8 In, it is to be illustrated by taking 6 metal-oxide-semiconductors in parallel as an example, it will be understood by those skilled in the art that the example is only a kind of illustrative Illustrate, need in conjunction with actual techniques, the number of metal-oxide-semiconductor in parallel can be other numbers.
As shown in figure 8, in this example, electric discharge device 152 includes:Resistance R38, resistance R31, resistance R56, resistance R74, Resistance R55, resistance R73, resistance R76, diode V3, metal-oxide-semiconductor Q3, metal-oxide-semiconductor Q5, metal-oxide-semiconductor Q8, metal-oxide-semiconductor Q10, metal-oxide-semiconductor Q12, Metal-oxide-semiconductor Q14, at least one diode being connected in parallel between input terminal and output end and capacitor C51 and capacitor C52.
One end of resistance R38, the cathode of diode V3, one end of resistance R31, one end of resistance R56, resistance R74 one End, one end of resistance R55, one end of resistance R73, one end of resistance R76 are connect with the control terminal of the electric discharge device, resistance R31 The other end connect with the grid of metal-oxide-semiconductor Q3, the other end of resistance R56 is connect with the grid of metal-oxide-semiconductor Q5, and resistance R74's is another End connect with the grid of metal-oxide-semiconductor Q8, the other end of resistance R55 is connect with the grid of metal-oxide-semiconductor Q10, the other end of resistance R73 and The grid of metal-oxide-semiconductor Q12 connects, and the other end of resistance R76 is connect with the grid of metal-oxide-semiconductor Q14.
The other end of resistance R38, the anode of diode V3, the source electrode of metal-oxide-semiconductor Q3, the source electrode of metal-oxide-semiconductor Q5, metal-oxide-semiconductor Q8 The input terminal connection of source electrode, the source electrode of metal-oxide-semiconductor Q10, the source electrode of metal-oxide-semiconductor Q12, the source electrode of metal-oxide-semiconductor Q14 and electric discharge device, metal-oxide-semiconductor The drain electrode of Q3, the drain electrode of metal-oxide-semiconductor Q5, the drain electrode of metal-oxide-semiconductor Q8, the drain electrode of metal-oxide-semiconductor Q10, the drain electrode of metal-oxide-semiconductor Q12, metal-oxide-semiconductor Q14 Drain electrode is connect with the output end of electric discharge device.
Refering to what is shown in Fig. 2, the charge-discharge control circuit in one embodiment can also include:The external charging accessed of identification Device, output charger voltage signal and the control based on the main control unit screen when the charger does not meet charging requirement Covert states the charging voltage detection unit 17 of charger, and charging voltage detection unit 17 is connect with main control unit 11.
Battery management system currently on the market, total voltage (the load end electricity after protection MOSFET or relay Pressure) it can not acquire, it is therefore desirable to end product, such as controller or charger go to monitor, and efficiency substantially reduces.And load end Efficiency not only can be improved by the acquisition of BMS (BATTERY MANAGEMENT SYSTEM, battery management system) system itself in voltage, The safety coefficient of BMS system can also be improved.It, can be before carrying out charge and discharge outside first judgement by charging voltage detection unit 17 Whether environment is safe, if safety that the charge and discharge that main circuit progress next step is connected is electrically operated.
With reference to Fig. 2, charging detection device in one embodiment further includes current sampling unit 16, the current sample list First sampling end of member 16 is connect with control of discharge unit 15, and the second sampling end connection battery pack of current sampling unit is born Pole.Refering to what is shown in Fig. 8, the sample circuit 16 in one embodiment includes:The resistance JR1 being connect with AGND, it is another with resistance JR1 First current divider RS1 of one end and AGND1 connection, the second current divider RS2, third current divider RS3, the 4th current divider RS4, Five current divider RS5, the other end of the first current divider RS1, the other end of the second current divider RS2, third current divider RS3 it is another End, the other end of the 4th current divider RS4, the 5th current divider RS5 the other end with the output end of sample circuit and short circuit examine Slowdown monitoring circuit connection.
The electrical block diagram of main control unit in one example as figure 9, as shown in figure 9, the main control unit 11 wrap Include main control module 1101, crystal oscillator module 1102 and reseting module 1103, main control module 1101 and crystal oscillator module 1102 and reset mould Block 1103 connects.Those skilled in the art the main control unit or can realize in other way.
Based on the scheme of the embodiment of the present application as described above, one embodiment of the application also provides a kind of battery management System, the battery management system include charging detection device involved in any one above-mentioned embodiment.
It can recognize illegal charging by designing individual charging current limiter module based on the scheme of embodiment as described above Device protects battery pack, can also realize and start 2A current limliting module protection battery core at low temperatures and high temperatures, uses under normal circumstances Large current charge shortens under charging time, abnormal conditions or disconnects after fully charged the functions such as charging.It is being provided with temperature detection In the case where unit, start 2A current limliting module protection battery core under low temperature and high temperature.
With reference to example shown in Fig. 2, in the scheme of the embodiment of the present application, charging recognition unit may recognize that charger connects Enter state, after charger access, charging recognition unit generates charger access signal (such as low level) to main control unit GPIO6, main control unit carry out corresponding actions after receiving.
As shown in Figure 1, Figure 2, at one only in example, charging current limiter unit realizes low temperature (such as T<5 DEG C) or it is high Temperature (such as T>55 DEG C) charge function.For example, main control unit is in battery pack temperature low temperature (such as 5 DEG C) or high temperature (such as T>55 DEG C), main control unit controls starting control function block by GPIO7, starting and stopping for charging current limiter unit is realized, when master control list After member sends start command, starting control function block starts PWM controller, the PWM controller issue the pwm pulse that sets to Switch mosfet, under the action of pwm pulse, energy storage inductor holding circuit 2A low current charge.
Charging control unit is made of MOS driving and MOS group, and MOS driving receives starting and stopping for main control unit GPIO8 Signal, after receiving enabling signal, MOS driving function block drives the conducting of MOS group, and realization charges normal function, receives and stop After stop signal, MOS driving function block stops working, and MOS group disconnects, charge cutoff.
Control of discharge unit is made of MOS driving and MOS group, and MOS driving receives starting and stopping for main control unit GPIO9 Signal, after receiving enabling signal, MOS driving function block drives the conducting of MOS group, realizes discharging function, receives stopping letter After number, MOS driving function block stops working, and MOS group disconnects, electric discharge cut-off.
As shown in Figure 1, Figure 2, at one only in example, charging current limiter unit realizes low temperature (such as T<5 DEG C) or it is high Temperature (such as T>55 DEG C) charge function.For example, main control unit can be in battery pack temperature low temperature (such as 5 DEG C) or high temperature (such as T>55 DEG C), charging current limiter unit, control of discharge unit are opened, and when battery pack temperature is between low temperature and high temperature, opens charging Control unit and control of discharge unit.In the case where charging unfinished, the above process is repeated, until charging complete is (such as Battery voltage is greater than predetermined voltage threshold or charging is identified as it is invalid), main control unit control again disconnect charging current limiter unit, Charging control unit and control of discharge unit.
Each technical characteristic of embodiment described above can be combined arbitrarily, for simplicity of description, not to above-mentioned reality It applies all possible combination of each technical characteristic in example to be all described, as long as however, the combination of these technical characteristics is not deposited In contradiction, all should be considered as described in this specification.
The several embodiments of the application above described embodiment only expresses, the description thereof is more specific and detailed, but simultaneously The limitation to claim therefore cannot be interpreted as.It should be pointed out that coming for those of ordinary skill in the art It says, without departing from the concept of this application, various modifications and improvements can be made, these belong to the protection of the application Range.Therefore, the scope of protection shall be subject to the appended claims for the application patent.

Claims (10)

1. a kind of charge-discharge control circuit, which is characterized in that including:Charging current limiter unit, charging control unit and control of discharge Unit, and obtain battery pack temperature and export the main control unit of control signal based on the battery pack temperature;
First output end of the main control unit is connect with the control terminal of the charging current limiter unit, and the second of the main control unit Output end is connect with the control terminal of the charging control unit, the third output end of the main control unit and the control of discharge list The control terminal connection of member, the input terminal of the control of discharge unit are connect by current divider with B- electrode, and output end is filled with described The input terminal connection of the input terminal of electric current limiting unit, the charging control unit, it is the output end of the charging current limiter unit, described The output end of charging control unit is connect with P- electrode.
2. charge-discharge control circuit according to claim 1, which is characterized in that further include:Detect the temperature of battery pack temperature Detection unit is spent, the temperature detecting unit includes:First hygrosensor, second temperature detector, third hygrosensor With the 4th hygrosensor;First hygrosensor, second temperature detector, third hygrosensor and the 4th temperature are visited Survey the surface that device is respectively placed in the predetermined single battery core in battery pack.
3. charge-discharge control circuit according to claim 1, which is characterized in that further include:Identification charger access state, The charging recognition unit of output charger access signal when detecting charger access, the output end of the charging recognition unit It is connect with the second input terminal of the main control unit.
4. charge-discharge control circuit according to claim 1, which is characterized in that further include:The external charging accessed of identification Device, output charger voltage signal and the control based on the main control unit screen when the charger does not meet charging requirement Covert states the charging voltage detection unit of charger, and the charging voltage detection unit is connect with the main control unit.
5. charge-discharge control circuit according to any one of claims 1 to 4, which is characterized in that charging current limiter unit packet It includes:Switch control module, control device, switching device and energy storage device, the input terminal and main control unit of switch control module The connection of the first output end, the input terminal of the output end of switch control module and control device connects, the output end of control device Connect with the control terminal of switching device, energy storage device be connected to control of discharge unit output end and switching device first end it Between, the second end of the switching device connects P- electrode.
6. charge-discharge control circuit according to any one of claims 1 to 4, which is characterized in that the charge control list Member includes:Charge drive module and charging unit, and the second of the input terminal of the charging drive module and the main control unit is defeated Outlet connection, it is described charging drive module output end connect with the control terminal of the charging unit, the charging unit it is defeated Enter end to connect with the output end of the control of discharge unit, the output end of the charging unit is connect with the P- electrode.
7. charge-discharge control circuit according to any one of claims 1 to 4, which is characterized in that the control of discharge list Member includes:The third of drive module of discharging and electric discharge device, the input terminal and the main control unit of the electric discharge drive module is defeated Outlet connection, it is described electric discharge drive module output end connect with the control terminal of the electric discharge device, the electric discharge device it is defeated Enter end to connect with the B- electrode, the output end of the electric discharge device is connect with the P- electrode.
8. charge-discharge control circuit according to any one of claims 1 to 4, which is characterized in that further include current sample Unit, the first sampling end of the current sampling unit are connect with the control of discharge unit, and the of the current sampling unit The cathode of two sampling ends connection battery pack.
9. charge-discharge control circuit according to any one of claims 1 to 4, which is characterized in that the main control unit packet Main control module, crystal oscillator module and reseting module are included, the main control module is connect with the crystal oscillator module and the reseting module.
10. a kind of battery management system, which is characterized in that including charge and discharge control electricity as described in any one of claim 1 to 9 Road.
CN201820585333.9U 2018-04-23 2018-04-23 Charge-discharge control circuit and battery management system Active CN208127932U (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108336800A (en) * 2018-04-23 2018-07-27 长沙优力电驱动系统有限公司 Charge-discharge control circuit and battery management system
CN110146824A (en) * 2019-06-03 2019-08-20 长沙优力电驱动系统有限公司 Battery core charge and discharge information detector
CN110994727A (en) * 2019-12-17 2020-04-10 东莞莱玛电子科技有限公司 Battery management circuit and method thereof
EP4156444A4 (en) * 2020-06-23 2023-12-06 Dongguan Poweramp Technology Limited Charger detection circuit and method, and electrochemical device

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108336800A (en) * 2018-04-23 2018-07-27 长沙优力电驱动系统有限公司 Charge-discharge control circuit and battery management system
CN108336800B (en) * 2018-04-23 2024-04-09 长沙优力电驱动系统有限公司 Charge-discharge control circuit and battery management system
CN110146824A (en) * 2019-06-03 2019-08-20 长沙优力电驱动系统有限公司 Battery core charge and discharge information detector
CN110994727A (en) * 2019-12-17 2020-04-10 东莞莱玛电子科技有限公司 Battery management circuit and method thereof
EP4156444A4 (en) * 2020-06-23 2023-12-06 Dongguan Poweramp Technology Limited Charger detection circuit and method, and electrochemical device

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