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WO2015054961A1 - 触摸式控制电路、烟盒电路及触摸式电子烟盒控制方法 - Google Patents

触摸式控制电路、烟盒电路及触摸式电子烟盒控制方法 Download PDF

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Publication number
WO2015054961A1
WO2015054961A1 PCT/CN2013/090717 CN2013090717W WO2015054961A1 WO 2015054961 A1 WO2015054961 A1 WO 2015054961A1 CN 2013090717 W CN2013090717 W CN 2013090717W WO 2015054961 A1 WO2015054961 A1 WO 2015054961A1
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WIPO (PCT)
Prior art keywords
touch
module
battery
control
charging
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/CN2013/090717
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English (en)
French (fr)
Inventor
向智勇
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Kimree Hi-Tech Inc
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Kimree Hi-Tech Inc
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Filing date
Publication date
Application filed by Kimree Hi-Tech Inc filed Critical Kimree Hi-Tech Inc
Publication of WO2015054961A1 publication Critical patent/WO2015054961A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/041Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/90Arrangements or methods specially adapted for charging batteries thereof
    • A24F40/95Arrangements or methods specially adapted for charging batteries thereof structurally associated with cases
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J7/00Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries
    • H02J7/0029Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries with safety or protection devices or circuits
    • H02J7/00308Overvoltage protection
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J7/00Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries
    • H02J7/0029Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries with safety or protection devices or circuits
    • H02J7/0031Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries with safety or protection devices or circuits using battery or load disconnect circuits
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J7/00Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries
    • H02J7/0047Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries with monitoring or indicating devices or circuits
    • H02J7/0048Detection of remaining charge capacity or state of charge [SOC]
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J7/00Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries
    • H02J7/0029Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries with safety or protection devices or circuits
    • H02J7/00304Overcurrent protection

Definitions

  • the invention relates to the field of daily electronic products, in particular to a touch control circuit, a cigarette box circuit and a touch type electronic cigarette box control method.
  • the electronic cigarette case is mainly powered by the DC power port to the electronic cigarette case, and is controlled by the MCU control module in the cigarette case to charge the battery in the cigarette case or the electronic cigarette battery rod inserted into the cigarette case, or by the cigarette case battery.
  • the MCU control module in the cigarette case controls charging of the electronic cigarette battery rod inserted into the cigarette case.
  • the prior art electronic cigarette case has a single function and has homogenization problems, which cannot satisfactorily meet the needs of consumers. For example, it cannot indicate the specific battery power information, and a small number of the battery box with the power display function is in the power information.
  • the display aspect cannot be interactive, the user cannot control when the power is displayed and the control is not convenient, and the protection measures inside the electronic cigarette case are lacking.
  • the technical problem to be solved by the present invention is to provide a touch control circuit, a cigarette box circuit and a touch type electronic cigarette box control method for the defects of the prior art that the above functions are single and cannot be realized.
  • a touch control circuit for an electronic cigarette case including a battery for providing an internal power source, a battery for detecting the battery voltage and transmitting a battery voltage signal a voltage detecting module, a touch module for sensing a touch action and transmitting a touch detection signal, a display module corresponding to the touch module position, and for controlling the display module to display along the touch path after receiving the touch detection signal And a control module for indicating the identification information of the touch path, and calculating the battery power according to the battery voltage signal, thereby controlling the display module to display the battery power information;
  • the control module is respectively connected to the touch module, the display module, the battery and the battery voltage detecting module, and the battery voltage detecting module is further connected to the battery.
  • the touch module includes at least one touch button for sensing a touch action and a touch detection chip for transmitting the touch detection signal;
  • Each of the touch buttons is respectively connected to a corresponding touch input port of the touch detection chip, and an output port of the touch detection chip is connected to the control module.
  • the touch module and the display module are stacked on each other to form a touch display screen.
  • the model of the touch detection chip is TTP224,
  • the number pin of the touch detection chip is connected to the internal power source, and the number pin of the touch detection chip is also grounded via a capacitor.
  • the display module includes at least one light emitting diode.
  • An anode of each of the light emitting diodes is connected to the internal power source, and a cathode of each of the light emitting diodes is connected to the control module;
  • control module is configured to control the light emitting diode to sequentially turn on the light according to the direction of the touch path, and the light signal of the light emitting diode serves as an identifier indicating the touch path. information.
  • the battery voltage detecting module includes a first voltage dividing resistor and a second voltage dividing resistor
  • One end of the first voltage dividing resistor is connected to the positive pole of the battery, the other end of the first voltage dividing resistor is grounded through a second voltage dividing resistor, and the other end of the first voltage dividing resistor is further connected to the Control module.
  • the present invention also discloses a cigarette case circuit comprising the touch control circuit described above.
  • the cigarette case circuit further includes a second charging interface for connecting the battery rod, for adjusting the internal power source and outputting the device under the control of the control module a second charging interface, a boosting module for charging the battery rod, and a current detecting module for detecting a charging current of the battery rod during charging and transmitting a current signal to the control module;
  • the boosting module is respectively connected to the battery, the control module and the second charging interface, and the current detecting module is respectively connected to the second charging interface and the control module.
  • the cigarette case circuit further includes an overvoltage detecting module for detecting a charging voltage output by the boosting module to the battery rod and transmitting a charging voltage signal to the control module ;
  • the overvoltage detection module is coupled to the boost module and the control module, respectively.
  • the cigarette case circuit further includes a first charging interface for connecting an external power source and a charging management for the battery after the first charging port is connected to the external power source. And providing a battery charging management module of the internal power source.
  • the battery charging management module is respectively connected to the first charging interface, the battery, the boosting module, and the control module.
  • the invention also discloses a touch type electronic cigarette case control method, comprising the following steps: the touch module corresponding to the position of the display module sends a touch detection signal to the control module after detecting the touch action; the control module receives the touch detection After the signal is controlled, the display module displays the identification information for indicating the touch path along the touch path, and then controls the display module to display the battery power information.
  • the method specifically includes the following steps:
  • the battery provides internal power; if the first charging interface is connected to an external power supply, the battery charging management module performs charging management on the battery and provides internal power.
  • the battery voltage detecting module detects the battery voltage, and sends a battery voltage signal to the control module;
  • the touch module senses a touch action and sends a touch detection signal to the control module;
  • control module After receiving the touch detection signal, the control module first controls the display module to display an identifier for indicating the touch path along the touch path, and calculate the battery power according to the battery voltage signal;
  • the control module then controls the display module to display information about the battery power.
  • step S1 the method further includes:
  • the S2' and the boosting module adjust the internal power supply under the control of the control module, and output the same to the second charging interface to charge the battery rod;
  • the current detecting module detects the charging current of the battery rod during charging, and sends a current signal to the control module
  • the overvoltage detecting module detects the charging voltage outputted by the boosting module to the battery rod, and sends the charging voltage signal to the control module
  • control module controls the working state of the boosting module according to the current signal to adjust the charging current of the battery rod or controls the boosting module to stop when the battery rod is fully charged according to the current signal, and the control module further determines according to the charging voltage signal.
  • the charging module is controlled to adjust the output charging voltage when the charging voltage is overvoltage.
  • the control display module displays the identifier for indicating the touch path along the touch path, specifically: when the touch button sequentially senses the touch action, the control module controls the LED to follow The direction of the touch path sequentially turns on the illumination to display identification information for indicating the touch path.
  • the touch module and the display module are stacked on each other to form a touch display screen.
  • the touch control circuit, the cigarette box circuit and the touch type electronic cigarette case control method of the present invention have the following beneficial effects: the touch control circuit of the present invention adds a touch module, and the touch module can sense a touch action and send a touch detection signal to After receiving the touch detection signal, the control module controls the display module to display the identification information for indicating the touch path along the touch path, and then controls the display module to display the information of the battery power, and the control is more flexible, convenient, and more diverse, and enhanced.
  • the human-computer interaction of the operation greatly improves the user experience.
  • the cigarette box circuit of the present invention comprises the touch control circuit, and is further provided with an overvoltage detection module, a current detection module, a battery protection module and the like, and provides various overvoltage and overcurrent full charge protection measures inside the cigarette case.
  • FIG. 1 is a schematic structural view of a cigarette case circuit of the present invention
  • FIG. 2 is a schematic circuit diagram of a touch control circuit of the cigarette case circuit of FIG. 1;
  • FIG. 3 is a schematic diagram of a specific circuit of the boosting module, the second charging interface, the current detecting module, and the overvoltage detecting module of FIG. 1;
  • FIG. 4 is a schematic diagram of a specific circuit of the first charging interface and the battery charging management module of FIG. 1;
  • FIG. 5 is a schematic diagram of a specific circuit of the battery protection module of FIG. 1.
  • FIG. 5 is a schematic diagram of a specific circuit of the battery protection module of FIG. 1.
  • the cigarette case circuit includes a touch control circuit and other circuits.
  • the touch control circuit includes a control module 400, a touch module 500, a display module 600, a battery 200, and a battery voltage detecting module 910.
  • the other circuit includes a boosting module 700, a second charging interface 820, a current detecting module 930, an overvoltage detecting module 920, a battery protection module 300, a first charging interface 810, and a battery charging management module 100;
  • the control module 400 is connected to the touch module 500, the display module 600, the battery 200, the battery voltage detecting module 910, the battery charging management module 100, the boosting module 700, the current detecting module 930, and the overvoltage detecting module 920, respectively.
  • the battery voltage detecting module 910, the battery protection module 300, the battery charging management module 100, and the boosting module 700 are connected, and the boosting module 700 is further connected to the battery charging management module 100, the overvoltage detecting module 920, and the second charging interface 820.
  • the current detection module 930 is also connected to the second charging interface 820, the first charging interface 810 is connected to the battery charging management module 100;
  • the first charging interface 810 is used for connecting an external power source, and the second charging interface 820 is used for connecting a battery rod;
  • the battery 200 is used to provide an internal power supply for the entire cigarette case circuit; the battery protection module 300 is used for overcurrent protection of the battery 200; and the battery charging management module 100 is configured to perform the battery 200 when the first charging interface 810 is connected to an external power source. Charge management while providing internal power.
  • the battery voltage detecting module 910 is configured to detect the battery 200 voltage and send the battery voltage signal to the control module 400;
  • the touch module 500 is configured to sense a touch action and send a touch detection signal to the control module 400;
  • the boosting module 700 is configured to adjust an internal power source and output to the second charging interface 820 under the control of the control module 400 to charge the battery rod;
  • the current detecting module 930 is configured to detect a charging current of the battery rod during charging and send a current signal to the control module 400;
  • the overvoltage detection module 920 is configured to detect the charging voltage output by the boosting module 700 to the battery rod, and send the charging voltage signal to the control module 400;
  • the control module 400 is configured to, after receiving the touch detection signal, control the display module 600 to display the identification information for indicating the touch path along the touch path, calculate the battery power according to the battery voltage signal, and then control the display module 600 to display the battery power information.
  • the control module 400 is further configured to control the operating state of the boosting module 700 according to the current signal to adjust the charging current of the battery rod or to control the boosting module 700 to stop working when it is determined that the battery rod is fully charged according to the current signal.
  • the control module 400 is further configured to control the boost module 700 to adjust the output charging voltage when determining the charging voltage overvoltage according to the charging voltage signal.
  • FIG. 2 is a schematic circuit diagram of a touch control circuit of the cigarette case circuit of FIG. 1;
  • the anode of the battery 200 provides internal power to the entire circuit through the diode D2, and the potential at the cathode of the diode D2 is the internal power source, which is denoted as VDD.
  • Control module 400 includes a microprocessor U1.
  • the model of the microprocessor U1 is not fixed and can be a common control microprocessor on the market.
  • the model of the microprocessor U1 is preferably HT46R065.
  • the VDD pin of the microprocessor U1 is connected to the negative terminal of the diode D4, the anode of the diode D4 is directly connected to VDD, the VDD pin is also grounded through the capacitor C11, the AN3 pin is connected to the 2.5V electrical signal, and the VSS pin is grounded.
  • the battery voltage detecting module 910 includes a first voltage dividing resistor R7 and a second voltage dividing resistor R8;
  • One end of the first voltage dividing resistor R7 is connected to the positive pole of the battery 200, the other end of the first voltage dividing resistor R7 is grounded through the second voltage dividing resistor R8, and the other end of the first voltage dividing resistor R7 is also connected to the microprocessor U1. Pin 2. After the battery voltage is detected, the battery power is calculated according to the look-up table method.
  • the touch module 500 includes at least one touch button for sensing a touch action and a touch detection chip U4 that transmits a touch detection signal; the touch buttons are respectively connected to corresponding touch input ports of the touch detection chip U4, and the output port of the touch detection chip U4 is connected to Microprocessor U1.
  • the touch button is a capacitive sensor, which has the advantages of simple structure, low price, high sensitivity, strong overload capability, good dynamic response characteristics and strong adaptability to harsh conditions such as high temperature, radiation and strong vibration.
  • the touch buttons include K0, K1, K2, and K3, the touch detection chip U4 model is TTP224, the pin 5 of the touch detection chip U4 is connected to VDD, and the pin 5 of the touch detection chip U4 is also grounded via the capacitor C5.
  • the touch buttons K0, K1, K2, and K3 are respectively connected to the touch input ports of the corresponding touch detection chip U4 via the resistors R12, R13, R14, and R15: pins 1, 2, 3, and 4, and the corresponding output ports are respectively For pins 16, 15, 14, and 13, the pins of pins 14, 14, 15, and 16 of the touch detection chip U4 are respectively connected to the pins 18, 6, 8, and 7 of the microprocessor U1, and the microprocessor U1
  • the 18th, 6th, 8th, and 7th pins are also connected to VDD through resistors R27, R28, R29, and R30, respectively.
  • the 5th pin of the touch detection chip U4 is used to set the touch of the output port 13-16 pin output. The detection signal is high.
  • the display module 600 includes at least one light emitting diode, which in this embodiment includes LED1-LED5,
  • the anodes of the LEDs LED1-LED5 are connected to VDD, and the cathodes of the LEDs LED1-LED5 are sequentially connected to the pins 9-13 of the microprocessor U1 through resistors R21, R22, R23, R24, R25, respectively;
  • the microprocessor U1 controls the light-emitting diodes to sequentially turn on the light according to the direction of the touch operation, and the light signal of the light-emitting diode serves as the identification information indicating the touch path, thereby providing the user with an eye-catching prompt and a good user experience.
  • LED1 is used to indicate whether the battery 200 is valid.
  • the LED 1 flashes to remind, and vice versa, the LED 1 is always turned on; LED2-LED5 respectively correspond to the touch indications of the corresponding touch buttons K0-K3, of course, the number of light-emitting diodes is not limited to be equal to the number of touch buttons.
  • the position of the touch module 500 and the display module 600 are correspondingly set, that is, the position of the light emitting diode and the touch button are correspondingly set.
  • the touch button may be disposed on one side of the light emitting diode or may be placed in the light emitting diode.
  • the preferred touch module 500 and the display module 600 are stacked on each other, that is, each light emitting diode is located at the bottom of the corresponding touch button, and the corresponding number of preferred light emitting diodes is equal to the touch button.
  • the number of LEDs that is, each time a touch button is triggered, the LED located at the bottom of the touch button is illuminated.
  • K0, K1, K2, and K3 do not sense the touch action, and the pins 16, 15, 14, and 13 of the touch detection chip U4 output a low level to the corresponding pin of the microprocessor U1.
  • the microprocessor U1 judges that there is no touch action at this time, and the microprocessor U1 controls the pins 10-13 to output a high level, and the LED2-LED5 is all turned off; when the touch buttons K0, K1, K2, and K3 are sequentially rotated, then The pins 16, 15, 14, and 13 of the touch detection chip U4 sequentially output a high level to the pins 7, 8, 6, and 18 of the microprocessor U1, so that the microprocessor U1 controls the pins 10-13.
  • LED2-LED5 turn on the light display in turn.
  • the microprocessor U1 controls the corresponding number of LEDs to be turned on according to the battery power. For example, when the battery voltage corresponding to the battery voltage reaches 25%, the LED 2 is controlled to be lit, and the battery voltage corresponding to the battery voltage is reached. At 50%, the two LEDs LED2 and LED3 are controlled to be lit at the same time, and so on.
  • the invention realizes human-computer interaction of operation, and the manipulation is more flexible, convenient and more diverse.
  • FIG. 3 is a schematic diagram of a specific circuit of the boosting module, the second charging interface, the current detecting module, and the overvoltage detecting module of FIG. 1;
  • the overvoltage detecting module 920 includes a third voltage dividing resistor R13 and a fourth voltage dividing resistor R14; one end of the third voltage dividing resistor R13 is connected to the boosting module 700, and the other end of the third voltage dividing resistor R13 is passed through the fourth voltage dividing resistor. R14 is grounded, and the other end of the third voltage dividing resistor R13 is also connected to pin 3 of the microprocessor U1.
  • the second charging interface 820 includes a cigarette negative electrode OUT- connected to the negative pole of the battery rod and a positive electrode OUT+ connected to the positive pole of the battery rod;
  • the overcurrent detecting module 930 includes a current sampling resistor R3; and one end of the current sampling resistor R3 is connected to the negative pole of the cigarette case OUT - The other end of the current sampling resistor R3 is connected to pin 4 of the microprocessor U1.
  • the cigarette case circuit of the present invention further includes a MOS transistor Q3 for controlling whether the boosting module 700 operates.
  • the boosting module 700 includes an inductor L1, a first MOS transistor Q4, a diode D3, and a Zener diode Z1.
  • the drain of the first MOS transistor Q4 is connected to the source of the MOS transistor Q3 through the inductor L1 and the resistor R26, the drain of the MOS transistor Q3 is connected to VDD, and the gate of the MOS transistor Q3 is connected to the microprocessor U1 through the resistor R10. No.
  • the drain of the first MOS transistor Q4 is also connected to the anode of the diode D3, and the gate of the first MOS transistor Q4 is connected to the PWM pin of the microprocessor U1 and one end of the resistor R12 through the resistor R11, and the resistor R12 The other end is grounded, the source of the first MOS transistor Q4 is grounded, the cathode of the diode D3 is connected to the cathode of the Zener diode Z1 and the cathode of the cathode box OUT+, and the anode of the Zener diode Z1 is grounded.
  • the first MOS transistor Q4 is configured to receive a control signal of the microprocessor U1 through the gate, control its on-time, and then adjust the internal power supply.
  • the microprocessor U1 judges that the battery rod is fully charged at this time, and immediately controls the MOS tube Q3 to be turned off, and the boosting module 700 stops working. If the overvoltage detection module 920 detects that the charging voltage output by the boosting module 700 is too high, the microprocessor U1 controls to reduce the duty cycle of the PWM wave output to the gate of the first MOS transistor Q4.
  • the present invention also provides an overvoltage protection function for charging, an overcurrent protection function, and when the battery rod is fully charged, the charging is cut off in time to protect the battery rod.
  • FIG. 4 is a schematic diagram of a specific circuit of the first charging interface and the battery charging management module of FIG. 1;
  • the first charging interface 810 includes a USB interface P1
  • the battery charging management module 100 includes a fuse F1 for overcurrent protection, a charger control circuit chip U2, a model of the charger control circuit chip U2 is VA7204, and a BAT pin is connected to the battery 200.
  • the positive terminal, the BAT pin is also grounded through a capacitor C2.
  • the power terminal of the USB interface P1 is connected to the anode of the diode D1 and the end of the resistor R1 through the fuse F1, and the other end of the resistor R1 is connected to the VCC pin of the charger control circuit chip U2 through the resistor R31, and the cathode of the diode D1 is connected to the above
  • the negative terminal of the diode D2, that is, the internal power supply VDD described above, the ground terminal of the USB interface P1 is connected to the GND pin of the charger control circuit chip U2.
  • the battery charge management module 100 has both a charge management function and overvoltage protection.
  • FIG. 5 is a schematic diagram of a specific circuit of the battery protection module of FIG. 1;
  • the battery protection module 300 includes a protection control chip U3, a switch chip U5, a filter capacitor C9, a resistor R19, a resistor R20;
  • the protection control chip U3 is used to control the opening and closing of the switch chip U5 according to the detected current flowing through the switch chip U5 to control whether the battery 200 operates.
  • the model of the protection control chip U3 is S-8241.
  • the switch chip U5 includes an integrated N-MOS transistor and an on/off MOS transistor.
  • resistor R19 One end of the resistor R19 is connected to the positive pole of the battery, the other end is connected in series with the filter capacitor C9 and then connected to the negative pole of the battery.
  • the resistor R20 is connected to the VM pin of the protection control chip U3 and the S2 pin of the switch chip U5, and the resistor R20 is used to prevent the current from being reversed.
  • the protection control chip U3 is configured to control the opening and closing of the on/off MOS tube according to the detected current flowing through the integrated N-MOS tube, thereby controlling whether the battery operates.
  • the battery protection module 300 of the present invention provides the cigarette case.
  • the circuit protection function of the battery especially the protection function of the battery output, input over-current prevention, short-circuit prevention, etc.; at the same time, the protection control chip U3 also has the function protection against overcharging, overdischarging and the like of the battery.
  • the touch-type electronic cigarette case control method corresponding to the above-mentioned device of the present invention is briefly described below, including: the touch module 500 corresponding to the position of the display module 600 transmits a touch detection signal to the control module 400 after detecting the touch action; the control module After receiving the touch detection signal, the display module 600 controls the display module 600 to display the identification information for indicating the touch path along the touch path, and then controls the display module 600 to display the battery power information.
  • the battery 200 provides an internal power supply; if the first charging interface 810 is connected to an external power source, the battery charging management module 100 performs charging management on the battery 200 while providing internal power.
  • the battery voltage detection module 910 detects the battery 200 voltage, and sends a battery voltage signal to the control module 400;
  • the touch module 500 senses a touch action and sends a touch detection signal to the control module 400;
  • control module 400 After receiving the touch detection signal, the control module 400 first controls the display module 600 to display an identifier for indicating the touch path along the touch path, and calculate the battery power according to the battery voltage signal;
  • the control display module 600 displays the identifier for indicating the touch path along the touch path.
  • the control module 400 controls the LED to sequentially turn on the light according to the direction of the touch path to display for Indicates the identification information of the touch path.
  • the control module 400 then controls the display module 600 to display information about the battery power.
  • step S1 the method further includes:
  • the boosting module 700 adjusts the internal power supply under the control of the control module 400, and outputs the same to the second charging interface 820 to charge the battery rod;
  • the current detecting module 930 detects the charging current of the battery rod during charging, and sends a current signal to the control module 400.
  • the overvoltage detecting module 920 detects the charging voltage outputted by the boosting module 700 to the battery rod, and sends the charging voltage signal. To the control module 400;
  • the control module 400 controls the operating state of the boosting module 700 according to the current signal to adjust the charging current of the battery rod or controls the boosting module 700 to stop working when it is determined that the battery rod is fully charged according to the current signal, and the control module 400 is further charged according to the charging.
  • the voltage signal determines that the charging voltage is overvoltage
  • the boosting module 700 is controlled to adjust the output charging voltage.
  • the touch module 500 and the display module 600 are stacked on each other to form a touch display screen, that is, the touch module is replaced with the touch module 500 and the display module 600 in the above embodiment to form the embodiment.
  • the touch display screen is common knowledge and will not be described herein.
  • the identification information for indicating the touch path is displayed by the touch display screen, it is easier to display paths of various shapes or patterns, or the paths are formed by various pattern combinations, and thus the display path is more colorful. Greatly improved the user experience.

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  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Charge And Discharge Circuits For Batteries Or The Like (AREA)

Abstract

一种触摸式控制电路,包括电池(200)、用于检测电池(200)电压并发送电池电压信号的电池电压检测模块(910)、用于感应触摸动作并发送触摸检测信号的触摸模块(500)、显示模块(600)以及用于在接收到触摸检测信号后控制显示模块(600)沿触摸路径显示用于表示触摸路径的标识信息,并根据电池电压信号计算电池(200)电量,进而控制显示模块(600)显示电池电量信息的控制模块(400)。该触摸式控制电路使操控更加灵活便利且更加丰富多样,增强了操作的人机互动性。一种烟盒电路,包括该触摸式控制电路,且还设置有过压检测模块(920)、电流检测模块(930)、电池保护模块(300)等,该烟盒电路提供了烟盒内部的各种过压过流满充保护措施。还公开了一种用于触摸式电子烟盒控制方法。

Description

触摸式控制电路、烟盒电路及触摸式电子烟盒控制方法 技术领域
本发明涉及日用电子产品领域,尤其涉及一种触摸式控制电路、烟盒电路及触摸式电子烟盒控制方法 。
背景技术
现有技术中,电子烟盒主要是由直流电源端口向电子烟盒供电,经烟盒内MCU控制模块控制向烟盒内电池或插入烟盒的电子烟电池杆充电,或由烟盒电池经烟盒内MCU控制模块控制向插入烟盒的电子烟电池杆充电。
故现有技术电子烟盒功能单一,且存在同质化问题,不能很好满足消费者的需求,例如,不能指示出具体的电池的电量信息,少部分有电量显示功能的烟盒在电量信息的显示方面不能实现互动,使用者不能操控何时显示电量以及操控不便利,而且电子烟盒内部的保护措施缺乏等。
因此,现有技术存在缺陷,需要改进。
发明内容
本发明要解决的技术问题在于,针对现有技术的上述功能单一、不能实现互动的缺陷,提供一种触摸式控制电路、烟盒电路及触摸式电子烟盒控制方法。
本发明解决其技术问题所采用的技术方案是:构造一种触摸式控制电路,用于电子烟盒,包括用于提供内部电源的电池、用于检测所述电池电压并发送电池电压信号的电池电压检测模块、用于感应触摸动作并发送触摸检测信号的触摸模块、与所述触摸模块位置相对应的显示模块以及用于在接收到所述触摸检测信号后控制所述显示模块沿触摸路径显示用于表示触摸路径的标识信息,并根据所述电池电压信号计算电池电量,进而控制所述显示模块显示电池电量信息的控制模块;
所述控制模块分别连接至所述触摸模块、显示模块、电池以及电池电压检测模块,所述电池电压检测模块还连接至所述电池。
在本发明所述的触摸式控制电路中,所述触摸模块包括用于感应触摸动作的至少一个触摸按键和发送所述触摸检测信号的触摸检测芯片;
每一所述触摸按键分别连接至所述触摸检测芯片的对应的触摸输入端口,所述触摸检测芯片的输出端口连接至所述控制模块。
在本发明所述的触摸式控制电路中,所述触摸模块与所述显示模块相互叠置形成触摸显示屏。
在本发明所述的触摸式控制电路中,所述触摸检测芯片的型号为TTP224,
所述触摸检测芯片的号引脚连接至所述内部电源,所述触摸检测芯片的号引脚还经电容接地。
在本发明所述的触摸式控制电路中,所述显示模块包括至少一个发光二极管,
每个所述发光二极管的正极连接至所述内部电源,每个所述发光二极管的负极连接至所述控制模块;
在所述触摸按键依次感应到触摸动作时,所述控制模块用于控制所述发光二极管按照所述触摸路径的方向依次导通发光,所述发光二极管的光信号作为表示所述触摸路径的标识信息。
在本发明所述的触摸式控制电路中,所述电池电压检测模块包括第一分压电阻和第二分压电阻;
所述第一分压电阻的一端连接至所述电池的正极,所述第一分压电阻的另一端通过第二分压电阻接地,所述第一分压电阻的另一端还连接至所述控制模块。
本发明还公开了一种烟盒电路,其包括上述所述的触摸式控制电路。
在本发明所述的烟盒电路中,所述烟盒电路还包括用于连接电池杆的第二充电接口、用于在所述控制模块的控制下将所述内部电源进行调整后输出到所述第二充电接口以对所述电池杆进行充电的升压模块以及用于检测所述电池杆在充电过程中的充电电流并发送电流信号至所述控制模块的电流检测模块;
所述升压模块分别与所述电池、控制模块以及第二充电接口相连接,所述电流检测模块分别连接至所述第二充电接口和控制模块。
在本发明所述的烟盒电路中,所述烟盒电路还包括用于检测所述升压模块输出到所述电池杆的充电电压并发送充电电压信号至所述控制模块的过压检测模块;
所述过压检测模块分别连接至所述升压模块和所述控制模块。
在本发明所述的烟盒电路中,所述烟盒电路还包括用于连接外接电源的第一充电接口和用于在所述第一充电接口接入外接电源后对所述电池进行充电管理,同时提供所述内部电源的电池充电管理模块。
所述电池充电管理模块分别连接至所述第一充电接口、电池、升压模块以及控制模块。
本发明还公开了一种触摸式电子烟盒控制方法,包括如下步骤:与显示模块位置相对应的触摸模块在检测到触摸动作后,发送触摸检测信号给控制模块;控制模块在接收到触摸检测信号后控制所述显示模块沿触摸路径显示用于表示触摸路径的标识信息,再控制显示模块显示电池电量信息。
在本发明所述的触摸式电子烟盒控制方法中,具体包括如下步骤:
S1、电池提供内部电源;如果第一充电接口连接上外接电源,则电池充电管理模块对电池进行充电管理,同时提供内部电源。
S2、电池电压检测模块检测电池电压,并发送电池电压信号至控制模块;
S3、触摸模块感应触摸动作并发送触摸检测信号至控制模块;
S4、控制模块在接收到触摸检测信号后,首先控制显示模块沿触摸路径显示用于表示触摸路径的标识,同时根据电池电压信号计算电池电量;
S5、控制模块再控制显示模块显示电池电量的信息。
在本发明所述的触摸式电子烟盒控制方法中,步骤S1之后还包括:
S2’、升压模块在控制模块的控制下将内部电源进行调整后输出到第二充电接口以对电池杆进行充电;
S3’、电流检测模块检测电池杆在充电过程中的充电电流,并发送电流信号至控制模块,过压检测模块检测升压模块输出到电池杆的充电电压,并发送充电电压信号至控制模块;
S4’、控制模块根据电流信号控制升压模块的工作状态进而调节电池杆的充电电流或在根据电流信号判断出电池杆满充时控制升压模块停止工作,控制模块还根据充电电压信号判断出充电电压过压时控制升压模块调整输出的充电电压。
在本发明所述的触摸式电子烟盒控制方法中,所述控制显示模块沿触摸路径显示用于表示触摸路径的标识具体为:在触摸按键依次感应到触摸动作时,控制模块控制发光二极管按照触摸路径的方向依次导通发光以显示用于表示触摸路径的标识信息。
在本发明所述的触摸式电子烟盒控制方法中,所述触摸模块与显示模块相互叠置形成触摸显示屏。
实施本发明的触摸式控制电路、烟盒电路及触摸式电子烟盒控制方法,具有以下有益效果:本发明的触摸式控制电路增加了触摸模块,触摸模块可以感应触摸动作并发送触摸检测信号至控制模块;控制模块在接收到触摸检测信号后,控制显示模块沿触摸路径显示用于表示触摸路径的标识信息,紧接着控制显示模块显示电池电量的信息,操控更加灵活便利且更加丰富多样,增强了操作的人机互动性,极大地提高了用户体验。本发明的烟盒电路包括该触摸式控制电路,且还设置有过压检测模块、电流检测模块、电池保护模块等,提供了烟盒内部的各种过压过流满充保护措施。
附图说明
下面将结合附图及实施例对本发明作进一步说明,附图中:
图1是本发明烟盒电路的结构示意图;
图2是图1中 烟盒电路的触摸式控制电路的具体电路示意图;
图3是图1中升压模块、第二充电接口、电流检测模块和过压检测模块的具体电路示意图;
图4是图1中第一充电接口和电池充电管理模块的具体电路示意图;
图5是图1中电池保护模块的具体电路示意图。
具体实施方式
为了对本发明的技术特征、目的和效果有更加清楚的理解,现对照附图详细说明本发明的具体实施方式。
参考图1是本发明烟盒电路的结构示意图,烟盒电路包括触摸式控制电路以及其他电路,触摸式控制电路包括控制模块400、触摸模块500、显示模块600、电池200以及电池电压检测模块910,其他电路包括升压模块700、第二充电接口820、电流检测模块930、过压检测模块920、电池保护模块300、第一充电接口810以及电池充电管理模块100;
控制模块400分别与触摸模块500、显示模块600、电池200、电池电压检测模块910、电池充电管理模块100、升压模块700、电流检测模块930以及过压检测模块920相连接,电池200还与电池电压检测模块910、电池保护模块300、电池充电管理模块100以及升压模块700相连接,升压模块700还与电池充电管理模块100、过压检测模块920以及第二充电接口820相连接,电流检测模块930还连接至第二充电接口820,第一充电接口810连接至电池充电管理模块100;
第一充电接口810用于连接外接电源,第二充电接口820用于连接电池杆;
电池200用于提供整个烟盒电路的内部电源;电池保护模块300用于对电池200进行过流保护;电池充电管理模块100用于在第一充电接口810接入了外接电源时对电池200进行充电管理,同时提供内部电源。
电池电压检测模块910用于检测电池200电压并发送电池电压信号至控制模块400;
触摸模块500用于感应触摸动作并发送触摸检测信号至控制模块400;
升压模块700用于在控制模块400的控制下将内部电源进行调整后输出到第二充电接口820以对电池杆进行充电;
电流检测模块930用于检测电池杆在充电过程中的充电电流并发送电流信号至控制模块400;
过压检测模块920用于检测升压模块700输出到电池杆的充电电压,并发送充电电压信号至控制模块400;
控制模块400用于在接收到触摸检测信号后,控制显示模块600沿触摸路径显示用于表示触摸路径的标识信息,同时根据电池电压信号计算电池电量,再控制显示模块600显示电池电量信息。控制模块400还用于根据电流信号控制升压模块700的工作状态进而调节电池杆的充电电流或在根据电流信号判断出电池杆满充时控制升压模块700停止工作。控制模块400还用于在根据充电电压信号判断出充电电压过压时控制升压模块700调整输出的充电电压。
参考图2是图1中烟盒电路的触摸式控制电路的具体电路示意图;
结合图1,电池200的正极通过二极管D2后为整个电路提供内部电源,二极管D2的负极处的电位为内部电源,记为VDD。
控制模块400包括微处理器U1。微处理器U1的型号不定,可以为市面上的普通控制微处理器,本实施例中,微处理器U1的型号优选的HT46R065。微处理器U1的VDD引脚连接至二极管D4的负极,二极管D4的正极直接连接至VDD,VDD引脚还通过电容C11接地,AN3引脚连接至2.5V电信号,VSS引脚接地。
电池电压检测模块910包括第一分压电阻R7和第二分压电阻R8;
第一分压电阻R7的一端连接至电池200的正极,第一分压电阻R7的另一端通过第二分压电阻R8接地,第一分压电阻R7的另一端还连接至微处理器U1的2号引脚。检测到电池电压后,根据查表法,计算电池电量。
触摸模块500包括用于感应触摸动作的至少一个触摸按键和发送触摸检测信号的触摸检测芯片U4;触摸按键分别连接至触摸检测芯片U4的对应的触摸输入端口,触摸检测芯片U4的输出端口连接至微处理器U1。
优选的,触摸按键为电容传感器,其结构简单,价格便宜,灵敏度高,过载能力强,动态响应特性好和对高温、辐射、强振等恶劣条件的适应性强。本实施例中触摸按键包括K0、K1、K2和K3,触摸检测芯片U4型号为TTP224,触摸检测芯片U4的5号引脚连接至VDD,触摸检测芯片U4的5号引脚还经电容C5接地,触摸按键K0、K1、K2、K3分别经电阻R12、R13、R14、R15连接至对应的触摸检测芯片U4的触摸输入端口:1、2、3、4号引脚,其对应的输出端口分别为16、15、14、13号引脚,触摸检测芯片U4的13、14、15、16号引脚分别连接至微处理器U1的18、6、8、7号引脚,微处理器U1的18、6、8、7号引脚还分别通过电阻R27、R28、R29、R30连接至VDD,触摸检测芯片U4的5号引脚用于设定输出端口13-16号引脚输出的触摸检测信号为高电平。
显示模块600包括至少一个发光二极管,本实施例中包括LED1-LED5, 发光二极管LED1-LED5的正极连接至VDD,发光二极管LED1-LED5的负极分别通过电阻R21、R22、R23、R24、R25依次连接至微处理器U1的9-13号引脚;在触摸按键依次感应到触摸动作时,微处理器U1控制发光二极管按照触摸动作的方向依次导通发光,发光二极管的光信号作为表示触摸路径的标识信息,因而可给使用者以醒目的提示及良好的用户体验。其中LED1用于指示电池200是否有效,如果上述计算电池电量判断出电量过低则LED1闪烁提醒,反之,LED1一直导通发光; LED2- LED5分别对应相应的触摸按键K0-K3的触摸指示,当然发光二极管的数量并不限于等于触摸按键的数量。
具体应用到烟盒中时,触摸模块500与显示模块600的位置是对应设置的,即发光二极管与触摸按键的位置对应设置,例如触摸按键可以设置在发光二极管的一侧,也可置于发光二级光上或两者嵌套设置等,优选的触摸模块500与显示模块600相互叠置,即每个发光二极管位于对应的触摸按键的底部,对应的,优选的发光二极管的数量等于触摸按键的数量,即每触发一个触摸按键,位于该触摸按键底部的发光二极管即发光显示。
例如,在自然状态,K0、K1、K2、K3均没有感应到触摸动作,触摸检测芯片U4的16、15、14、13号引脚都输出低电平至对应的微处理器U1的引脚,微处理器U1判断此时没有触摸动作,微处理器U1控制10-13号引脚都输出高电平,LED2-LED5全部截止;当依次滑动触摸按键K0、K1、K2、K3后,则触摸检测芯片U4的16、15、14、13号引脚依次输出高电平至微处理器U1的7、8、6、18号引脚,于是,微处理器U1控制10-13号引脚对应的依次输出低电平,LED2-LED5依次导通发光显示。显示完毕,微处理器U1根据电池电量控制相应数量的LED导通,例如,当电池电压对应的电池电量达到25%时,则控制一个发光二级管LED2亮,当电池电压对应的电池电量达到50%时,则控制两个发光二级管LED2和LED3同时亮,以此类推。
本发明通过增设触摸模块500,实现了操作的人机互动,且操控更加灵活便利且更加丰富多样。
参考图3是图1中升压模块、第二充电接口、电流检测模块和过压检测模块的具体电路示意图;
过压检测模块920包括第三分压电阻R13和第四分压电阻R14;第三分压电阻R13的一端连接至升压模块700,第三分压电阻R13的另一端通过第四分压电阻R14接地,第三分压电阻R13的另一端还连接至微处理器U1的3号引脚。
第二充电接口820包括连接电池杆负极的烟盒负极OUT-和连接电池杆正极的烟盒正极OUT+;过电流检测模块930包括一电流采样电阻R3;电流采样电阻R3一端连接至烟盒负极OUT-,电流采样电阻R3的另一端连接至微处理器U1的4号引脚。
本发明的烟盒电路还包括用于控制升压模块700是否工作的MOS管Q3,升压模块700包括电感L1、第一MOS管Q4、二极管D3、稳压二极管Z1,
第一MOS管Q4的漏极通过电感L1和电阻R26连接至MOS管Q3的源极,MOS管Q3的漏极连接至VDD,MOS管Q3的栅极通过电阻R10连接至微处理器U1的14号引脚,第一MOS管Q4的漏极还连接至二极管D3的正极,第一MOS管Q4的栅极通过电阻R11连接至微处理器U1的PWM引脚和电阻R12的一端,电阻R12的另一端接地,第一MOS管Q4的源极接地,二极管D3的负极连接至稳压二极管Z1的负极和烟盒正极OUT+,稳压二极管Z1的正极接地。
第一MOS管Q4用于通过栅极接收微处理器U1的控制信号,控制其导通时间,进而对内部电源进行调整。
如果电池杆已经满充了,流入电流采样电阻R3的电流很小,微处理器U1判断此时电池杆已经满充了,立即控制MOS管Q3截止,升压模块700停止工作。如果过压检测模块920检测到升压模块700输出的充电电压过高,则微处理器U1控制减小输出到第一MOS管Q4栅极的PWM波的占空比。
因此,本发明还提供了充电的过压保护,过流保护功能,且在电池杆满充时,及时切断充电,保护电池杆。
参考图4是图1中第一充电接口和电池充电管理模块的具体电路示意图;
第一充电接口810包括USB接口P1,电池充电管理模块100包括用于过流保护的保险丝F1、充电器控制电路芯片U2,充电器控制电路芯片U2型号为VA7204,其BAT引脚连接至电池200的正极,BAT引脚还通过一电容C2接地。
USB接口P1的电源端通过保险丝F1连接至二极管D1的正极和电阻R1的一端,电阻R1的另一端通过电阻R31后连接至充电器控制电路芯片U2的VCC引脚,二极管D1的负极连接至上述二极管D2的负极,即上述内部电源VDD,USB接口P1的接地端连接至充电器控制电路芯片U2的GND引脚。
电池充电管理模块100既有充电管理功能,又提供了过压保护。
参考图5是图1中电池保护模块的具体电路示意图;
结合图1,电池保护模块300包括保护控制芯片U3、开关芯片U5、滤波电容C9、电阻R19、电阻R20;
保护控制芯片U3用于根据检测到的流过开关芯片U5的电流控制开关芯片U5的开断进而控制电池200是否工作。
保护控制芯片U3的型号为S-8241。开关芯片U5包括集成N-MOS管和开/关MOS管。
电阻R19一端连接至电池正极,另一端串联滤波电容C9后连接至电池的负极,电阻R20连接保护控制芯片U3的VM引脚和开关芯片U5的S2引脚,电阻R20用于防止电流反串。
保护控制芯片U3用于根据检测到的流过集成N-MOS管的电流而控制开/关MOS管的开和关,进而控制电池是否工作,如此,本发明的电池保护模块300提供了烟盒电池的电路保护功能,特别是电池的输出、输入时防过流、防短路等保护功能;同时保护控制芯片U3还具有防止电池过充电,过放电等功能保护。
下面简单阐述对应于本发明的上述装置的触摸式电子烟盒控制方法,包括:与显示模块600位置相对应的触摸模块500在检测到触摸动作后,发送触摸检测信号给控制模块400;控制模块400在接收到触摸检测信号后控制所述显示模块600沿触摸路径显示用于表示触摸路径的标识信息,再控制显示模块600显示电池电量信息。
其具体方法如下:
S1、电池200提供内部电源;如果第一充电接口810连接上外接电源,则电池充电管理模块100对电池200进行充电管理,同时提供内部电源。
S2、电池电压检测模块910检测电池200电压,并发送电池电压信号至控制模块400;
S3、触摸模块500感应触摸动作并发送触摸检测信号至控制模块400;
S4、控制模块400在接收到触摸检测信号后,首先控制显示模块600沿触摸路径显示用于表示触摸路径的标识,同时根据电池电压信号计算电池电量;
优选的,控制显示模块600沿触摸路径显示用于表示触摸路径的标识具体为:在触摸按键依次感应到触摸动作时,控制模块400控制发光二极管按照触摸路径的方向依次导通发光以显示用于表示触摸路径的标识信息。
S5、控制模块400再控制显示模块600显示电池电量的信息。
步骤S1之后还包括:
S2’、升压模块700在控制模块400的控制下将内部电源进行调整后输出到第二充电接口820以对电池杆进行充电;
S3’、电流检测模块930检测电池杆在充电过程中的充电电流,并发送电流信号至控制模块400,过压检测模块920检测升压模块700输出到电池杆的充电电压,并发送充电电压信号至控制模块400;
S4’、控制模块400根据电流信号控制升压模块700的工作状态进而调节电池杆的充电电流或在根据电流信号判断出电池杆满充时控制升压模块700停止工作,控制模块400还根据充电电压信号判断出充电电压过压时控制升压模块700调整输出的充电电压。
在其它实施例中,触摸模块500与显示模块600相互叠置形成触摸显示屏,即用触摸显示屏替换上述实施例中的所述触摸模块500与所述显示模块600便可形成本实施例,其中,所述触摸显示屏为公知常识,在此不再赘述。通过所述触摸显示屏显示用于表示所述触摸路径的标识信息时,更易于显示各种形状或图案的路径,或通过各种图案组合形成所述路径,因而所述显示路径更加丰富多彩,极大地提高了用户体验。
上面结合附图对本发明的实施例进行了描述,但是本发明并不局限于上述的具体实施方式,上述的具体实施方式仅仅是示意性的,而不是限制性的,本领域的普通技术人员在本发明的启示下,在不脱离本发明宗旨和权利要求所保护的范围情况下,还可做出很多形式,这些均属于本发明的保护之内。

Claims (15)

  1. 一种触摸式控制电路,用于电子烟盒,其特征在于,包括用于提供内部电源的电池(200)、用于检测所述电池(200)电压并发送电池电压信号的电池电压检测模块(910)、用于感应触摸动作并发送触摸检测信号的触摸模块(500)、与所述触摸模块(500)位置相对应的显示模块(600)以及用于在接收到所述触摸检测信号后控制所述显示模块(600)沿触摸路径显示用于表示触摸路径的标识信息,并根据所述电池电压信号计算电池电量,进而控制所述显示模块(600)显示电池电量信息的控制模块(400);
    所述控制模块(400)分别连接至所述触摸模块(500)、显示模块(600)、电池(200)以及电池电压检测模块(910),所述电池电压检测模块(910)还连接至所述电池(200)。
  2. 根据权利要求1所述的触摸式控制电路,其特征在于,所述触摸模块(500)包括用于感应触摸动作的至少一个触摸按键和发送所述触摸检测信号的触摸检测芯片(U4);
    每一所述触摸按键分别连接至所述触摸检测芯片(U4)的对应的触摸输入端口,所述触摸检测芯片(U4)的输出端口连接至所述控制模块(400)。
  3. 根据权利要求1所述的触摸式控制电路,其特征在于,所述触摸模块(500)与所述显示模块(600)相互叠置形成触摸显示屏。
  4. 根据权利要求2所述的触摸式控制电路,其特征在于,所述触摸检测芯片(U4)的型号为TTP224,
    所述触摸检测芯片(U4)的5号引脚连接至所述内部电源,所述触摸检测芯片(U4)的5号引脚还经电容(C5)接地。
  5. 根据权利要求2所述的触摸式控制电路,其特征在于,所述显示模块(600)包括至少一个发光二极管,
    每个所述发光二极管的正极连接至所述内部电源,每个所述发光二极管的负极连接至所述控制模块(400);
    在所述触摸按键依次感应到触摸动作时,所述控制模块(400)用于控制所述发光二极管按照所述触摸路径的方向依次导通发光,所述发光二极管的光信号作为表示所述触摸路径的标识信息。
  6. 根据权利要求1所述的触摸式控制电路,其特征在于,所述电池电压检测模块(910)包括第一分压电阻(R7)和第二分压电阻(R8);
    所述第一分压电阻(R7)的一端连接至所述电池(200)的正极,所述第一分压电阻(R7)的另一端通过第二分压电阻(R8)接地,所述第一分压电阻(R7)的另一端还连接至所述控制模块(400)。
  7. 一种烟盒电路,其特征在于,包括如权利要求1-6任一项所述的触摸式控制电路。
  8. 根据权利要求7所述的烟盒电路,其特征在于,所述烟盒电路还包括用于连接电池杆的第二充电接口(820)、用于在所述控制模块(400)的控制下将所述内部电源进行调整后输出到所述第二充电接口(820)以对所述电池杆进行充电的升压模块(700)以及用于检测所述电池杆在充电过程中的充电电流并发送电流信号至所述控制模块(400)的电流检测模块(930);
    所述升压模块(700)分别与所述电池(200)、控制模块(400)以及第二充电接口(820)相连接,所述电流检测模块(930)分别连接至所述第二充电接口(820)和控制模块(400)。
  9. 根据权利要求8所述的烟盒电路,其特征在于,所述烟盒电路还包括用于检测所述升压模块(700)输出到所述电池杆的充电电压并发送充电电压信号至所述控制模块(400)的过压检测模块(920);
    所述过压检测模块(920)分别连接至所述升压模块(700)和所述控制模块(400)。
  10. 根据权利要求8所述的烟盒电路,其特征在于,所述烟盒电路还包括用于连接外接电源的第一充电接口(810)和用于在所述第一充电接口(810)接入外接电源后对所述电池(200)进行充电管理,同时提供所述内部电源的电池充电管理模块(100);
    所述电池充电管理模块(100)分别连接至所述第一充电接口(810)、电池(200)、升压模块(700)以及控制模块(400)。
  11. 一种触摸式电子烟盒控制方法,其特征在于,包括如下步骤:与显示模块(600)位置相对应的触摸模块(500)在检测到触摸动作后,发送触摸检测信号给控制模块(400);控制模块(400)在接收到触摸检测信号后控制所述显示模块(600)沿触摸路径显示用于表示触摸路径的标识信息,再控制显示模块(600)显示电池电量信息。
  12. 根据权利要求11所述的触摸式电子烟盒控制方法,其特征在于,具体包括如下步骤:
    S1、电池(200)提供内部电源;如果第一充电接口(810)连接上外接电源,则电池充电管理模块(100)对电池(200)进行充电管理,同时提供内部电源;
    S2、电池电压检测模块(910)检测电池(200)电压,并发送电池电压信号至控制模块(400);
    S3、触摸模块(500)感应触摸动作并发送触摸检测信号至控制模块(400);
    S4、控制模块(400)在接收到触摸检测信号后,首先控制显示模块(600)沿触摸路径显示用于表示触摸路径的标识,同时根据电池电压信号计算电池电量;
    S5、控制模块(400)再控制显示模块(600)显示电池电量的信息。
  13. 根据权利要求12所述的触摸式电子烟盒控制方法,其特征在于,步骤S1之后还包括:
    S2’、升压模块(700)在控制模块(400)的控制下将内部电源进行调整后输出到第二充电接口(820)以对电池杆进行充电;
    S3’、电流检测模块(930)检测电池杆在充电过程中的充电电流,并发送电流信号至控制模块(400),过压检测模块(920)检测升压模块(700)输出到电池杆的充电电压,并发送充电电压信号至控制模块(400);
    S4’、控制模块(400)根据电流信号控制升压模块(700)的工作状态进而调节电池杆的充电电流或在根据电流信号判断出电池杆满充时控制升压模块(700)停止工作,控制模块(400)还根据充电电压信号判断出充电电压过压时控制升压模块(700)调整输出的充电电压。
  14. 根据权利要求11所述的触摸式电子烟盒控制方法,其特征在于,所述控制显示模块(600)沿触摸路径显示用于表示触摸路径的标识具体为:在触摸按键依次感应到触摸动作时,控制模块(400)控制发光二极管按照触摸路径的方向依次导通发光以显示用于表示触摸路径的标识信息。
  15. 根据权利要求11所述的触摸式电子烟盒控制方法,其特征在于,所述触摸模块(500)与显示模块(600)相互叠置形成触摸显示屏。
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