CN203597405U - Intelligent electronic cigarette with wireless Bluetooth low-power-consumption connecting communication function - Google Patents

Intelligent electronic cigarette with wireless Bluetooth low-power-consumption connecting communication function Download PDF

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CN203597405U
CN203597405U CN201320773203.5U CN201320773203U CN203597405U CN 203597405 U CN203597405 U CN 203597405U CN 201320773203 U CN201320773203 U CN 201320773203U CN 203597405 U CN203597405 U CN 203597405U
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capacitor
chip
resistance
module
ground connection
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胡朝群
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/70Reducing energy consumption in communication networks in wireless communication networks

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Abstract

An intelligent electronic cigarette with the wireless Bluetooth low-power-consumption connecting communication function outputs voltages through a boost-buck module so as to drive an atomizer to atomize tobacco tar. Meanwhile, a microcontroller transmits use state data (battery voltages, the number of smoking times and the like) of the electronic cigarette to a wireless Bluetooth communication module, and the wireless Bluetooth communication module transmits the use state data of the electronic cigarette to a display control device. The display control device displays the received state data of the electronic cigarette and can send control commands (setting of startup and shutdown, setting of the driving voltages of the atomizer and the like) to the wireless Bluetooth communication module. The microcontroller receives and executes the control commands. Therefore, the intelligent electronic cigarette can visually display the working state of the electronic cigarette, and meanwhile the work state of the electronic cigarette can be controlled through the display control device.

Description

There is the smart electronics cigarette of wireless blue tooth low-power consumption connecting communication function
Technical field
The utility model relates to electronic cigarette, particularly relate to a kind of can with the smart electronics cigarette with wireless blue tooth low-power consumption connecting communication function of external equipment communication.
Background technology
Existing electronic cigarette, referred to as function electronic cigarette, the demonstration with state of the parameters setting of electronic cigarette all needs complicated circuit and operation to go.Such as in order to realize the adjustable function of output voltage that drives electronic smoke atomizer, need to increase in electronic cigarette bottom an adjustable resistance and remove regulation output voltage or increase output voltage increase and reduce button and remove to increase or reduce output voltage.The shortcomings such as in order to show cell voltage, smoking port number etc., need to increase LCD display, increase like this electronic cigarette cost, and structure is also very complicated, use inconvenience, and intelligent degree is low.
Utility model content
Based on this, be necessary to provide a kind of can with the smart electronics cigarette based on wireless blue tooth low-power consumption connecting communication of external equipment communication.
There is a smart electronics cigarette for wireless blue tooth low-power consumption connecting communication function, comprise that the described display control apparatus of keyboard input module, display control apparatus and reception for tobacco control sends to electronic cigarette the wireless blue tooth communication module, microcontroller of data is set and for output voltage to drive the buck module of atomizer atomization tobacco tar;
Described microcontroller is connected with described wireless blue tooth communication module and described keyboard input module respectively, and it is mutual that described wireless blue tooth communication module and described display control apparatus carry out wireless data, and described buck module is connected with described microcontroller and atomizer;
Wherein, described display control apparatus is the panel computer of smart mobile phone, apple IOS system or the Android of the Google system of desktop computer, notebook computer, apple IOS system or the Android of Google system;
In the time that described microcontroller detects the push button signalling of described keyboard input module, buck module output voltage is to drive atomizer atomization tobacco tar described in described microprocessor control; Described microcontroller obtains electronic cigarette and uses status data and be transferred to described display control apparatus by described wireless blue tooth communication module, wherein, described electronic cigarette uses status data to comprise smoking port number, dump energy, output voltage and cell voltage, described display control apparatus shows that the electronic cigarette receiving uses status data, described display control apparatus is to described wireless blue tooth communication module sending controling instruction, and transfers to described microcontroller by described wireless blue tooth communication module; Wherein, described control instruction comprises that switching on and shutting down arrange that instruction, output atomizer voltage arrange instruction and smoking is overtime arranges instruction;
Described microcontroller is also for controlling the output voltage size of described buck module.
In an embodiment, also comprise the charging module being connected with described microcontroller therein; Described charging module is connected with outside+5V power supply by outside Micro USB charging inlet.
In an embodiment, described charging module comprises lithium cell charging chip SE9017, LED4, resistance R 17, resistance R 16 and capacitor C 5 therein;
The negative pole of described LED4 connects the CHGR end of described lithium cell charging chip SE9017, the positive pole of described LED4 connects described resistance R 17, the outside Micro USB of another termination charging inlet of described resistance R 17, the PROG of lithium cell charging chip SE9017 end described in one termination of described resistance R 16, other end ground connection, the BAT end input VBAT signal of described lithium cell charging chip SE9017, the outside Micro USB of the VCC termination charging inlet of described lithium cell charging chip SE9017, the outside Micro USB of described capacitor C 5 one terminations charging inlet, other end ground connection, the earth terminal ground connection of described lithium cell charging chip SE9017.
In an embodiment, also comprise the LED display module being connected with described microcontroller therein, described LED display module for sending condition indicative signal in the time that described keyboard input module sends push button signalling.
In an embodiment, described LED display module comprises LED1, LED2, LED3, resistance R 3, resistance R 2 and resistance R 8 therein;
The positive pole of described LED1, described LED2, described LED3 all meets input power VDD, and the negative pole of described LED1, described LED2, described LED3 is the corresponding output that all connects described microcontroller by current-limiting resistance R3, resistance R 2, resistance R 8 respectively.
In an embodiment, described microcontroller and described wireless blue tooth communication module comprise chip CC2540/CC2541, capacitor C 1, capacitor C 13, capacitor C 15, capacitor C 10, capacitor C 9, capacitor C 11, capacitor C 12, passive crystal oscillator X2, passive crystal oscillator X3, resistance R 6, resistance R 4, resistance R 10, capacitor C 22, capacitor C 23, capacitor C 24, capacitor C 25, capacitor C 26, inductance L 2, inductance L 3, inductance L 4, inductance L 5 and PCB microstrip antenna therein;
Described resistance R 6 is series between the P0_4 end of external interface and chip CC2540/CC2541, the P0_4 end of described resistance R 4 one chip termination CC2540/CC2541, another termination power vd D; The DVDD2 end of described capacitor C 1 one chip termination CC2540/CC2541, other end ground connection; Described capacitor C 13 1 termination DCOUPL ends, other end ground connection; The P2_3 end of described capacitor C 15 1 chip termination CC2540/CC2541, other end ground connection; The P2_4 end of described capacitor C 9 one chip termination CC2540/CC2541, other end ground connection; Described passive crystal oscillator X2 two ends connect respectively P2_3 end and the P2_4 end of chip CC2540/CC2541; The R_BIAS end of described resistance R 10 1 chip termination CC2540/CC2541, other end ground connection, described capacitor C 10 1 termination power vd D, other end ground connection; The XOSC_Q1 end of described capacitor C 11 1 chip termination CC2540/CC2541, other end ground connection; The XOSC_Q2 end of described capacitor C 12 1 chip termination CC2540/CC2541, other end ground connection; Described passive crystal oscillator X3 two inputs connect respectively XOSC_Q1 end and the XOSC_Q2 end of chip CC2540/CC2541, two output head groundings; DVADD1 end, AVDD1 end, AVDD2 end, AVDD3 end, AVDD4 end, AVDD5 end and the AVDD6 termination power VDD of described chip CC2540/CC2541; Described capacitor C 22, electric capacity 25, inductance L 4 and inductance L 5 are series between the RF_N end and PCB microstrip antenna of described chip CC2540/CC2541 successively; The RF_P of chip CC2540/CC2541 end described in described capacitor C 23 1 terminations, another termination inductance L 3, inductance L 4 described in another termination of described inductance L 3, the points of common connection of capacitor C 22 and described capacitor C 25 described in described inductance L 2 one terminations, other end ground connection, the points of common connection of capacitor C 23 and described inductance L 3 described in described capacitor C 24 1 terminations, other end ground connection; The RF_N of described capacitor C 22 and described capacitor C 23 and described chip CC2540/CC2541, RF_P connects; Described inductance L 5 is the transmitting terminal of described wireless blue tooth communication module with the points of common connection of PCB microstrip antenna, for transmitting to described display control apparatus and receiving display control apparatus and send to the control instruction of described wireless blue tooth communication module.
In an embodiment, described buck module comprises digital regulation resistance CAT5110, buck chip TPS63020, resistance R 1, resistance R 5, resistance R 7, resistance R 9, capacitor C 2, capacitor C 4, capacitor C 6, capacitor C 8 and inductance L 1 therein;
The vdd terminal of described digital regulation resistance CAT5110 meets power vd D, the U/D termination input U/D of described digital regulation resistance CAT5110, the earth terminal ground connection of described digital regulation resistance CAT5110, the CS end input signal CS of described digital regulation resistance CAT5110, the H end of described digital regulation resistance CAT5110 connects described resistance R 5 after being connected with W end, resistance R 6 described in another termination of described resistance R 5, another termination output VOUT of described resistance R 6, the FB of buck chip TPS63020 end described in the points of common connection solution of described resistance R 5 and described resistance R 6; Described resistance R 9, described capacitor C 6 and described capacitor C 8 are parallel between output VOUT and ground connection simultaneously; The VOUT1 end of described buck chip TPS63020 meets output VOUT after being connected with VOUT2 end, described resistance R 1 one termination output VOUT, the PG end of another termination buck chip TPS63020; The L1 of buck chip TPS63020 end described in described inductance L 1 one terminations, the L2 end of buck chip TPS63020 described in another termination; The VINA of buck chip TPS63020 end described in described capacitor C 2 one end, other end ground connection; The EN end input EN signal of described buck chip TPS63020, the VIN input VBAT signal of described buck chip TPS63020, GND end and the PGND of described buck chip TPS63020 hold equal ground connection; Described capacitor C 4 one end input VBAT signals, other end ground connection.
In an embodiment, also comprise the power module being connected with described microcontroller therein, described power module is used to described microcontroller that burning voltage is provided.
In an embodiment, described power module comprises low voltage difference voltage stabilizing chip XC6206, inductance L 6 and capacitor C 14 therein;
The input VIN input BAT signal of described chip XC6206, the output VOUT of described chip XC6206 connects inductance L 6, the other end out-put supply VDD of described inductance L 6, described capacitor C 14 1 termination out-put supply VDD, other end ground connection.
The above-mentioned smart electronics cigarette with wireless blue tooth low-power consumption connecting communication function drives atomizer atomization tobacco tar by buck module output voltage, needs the input module that pushes button simultaneously, and the tobacco tar of atomization is input in smoke pipe.User can bring into use electronic cigarette.Meanwhile, microcontroller starts to detect the electrical quantity that is entered electronic cigarette in smoke pipe and used status data, buck module by keyboard input module, and by the transfer of data detecting to wireless blue tooth communication module.Wireless blue tooth communication module uses status data to be transferred to display control apparatus the electronic cigarette of reception.Display control apparatus shows the electronic cigarette status data receiving and shows.And display control apparatus can be to wireless blue tooth communication module sending controling instruction, microcontroller is also carried out after receiving control instruction.Therefore, can show intuitively the duty of electronic cigarette, simultaneously by the duty of display control apparatus control electronic cigarette.
Accompanying drawing explanation
Fig. 1 is the module map of the smart electronics cigarette based on wireless connections;
Fig. 2 is the circuit theory diagrams of charging module;
Fig. 3 is the circuit theory diagrams of LED display module;
Fig. 4 is the circuit theory diagrams of microcontroller and wireless blue tooth communication module;
Fig. 5 is the circuit theory diagrams of buck module;
Fig. 6 is the circuit theory diagrams of power module.
The specific embodiment
The utility model is that one has and computer, smart mobile phone (apple IOS system and the Android of Google system), the smart machines such as panel computer (apple IOS system and the Android of Google system) are set up the smart electronics cigarette of wireless blue tooth low-power consumption connecting communication function, topmost energy and the computer of being characterized as of this electronic cigarette, between the smart machines such as smart mobile phone (apple IOS system and the Android of Google system), set up connecting communication (by wireless blue tooth low-power consumption) by wireless network, thereby energy and computer, smart mobile phone (apple IOS system and the Android of Google system), between the smart machines such as panel computer (apple IOS system and the Android of Google system), set up bidirectional data transfers, computer, smart mobile phone (apple IOS system and the Android of Google system), the smart machines such as panel computer (apple IOS system and the Android of Google system) receive after the data that can represent smart electronics cigarette status information that smart electronics cigarette sends over, by the status information of electronic cigarette, as on-off state, cell voltage, smoking port number etc., be presented at intuitively computer, on the graphical interfaces of the smart machines such as smart mobile phone (apple IOS system and the Android of Google system), computer, smart mobile phone (apple IOS system and the Android of Google system), the smart machines such as panel computer (apple IOS system and the Android of Google system) also can arrange intuitively the parameters of electronic cigarette on graphical interfaces, then the data that represent parameters setting are sent to smart electronics cigarette, smart electronics cigarette receives and arranges after data, complete relative set, such as the color setting of relay indicating light, output voltage arranges, the personal settings such as smoking time-out time arranges.This smart electronics cigarette also has the adjustable function of output voltage that drives heating wire, user can be according to different tobacco tar like this, regulate suitable caloric value, prevent the too high tobacco tar problem of burning causing of the too small amount of smoke deficiency causing of output voltage or output voltage.This smart electronics cigarette also has bottom USB5V charging inlet, does not need so the electronic cigarette special charger of extra 4.2V, just can charge to electronic cigarette with usb data line of the same needs of conventional portable electronic equipment, conveniently charges and carries.
As shown in Figure 1, be the module map of the smart electronics cigarette based on wireless blue tooth low-power consumption connecting communication.
There is a smart electronics cigarette for wireless blue tooth low-power consumption connecting communication function, comprise for keyboard input module 102, the display control apparatus 105 of tobacco control and receive that described display control apparatus 105 sends to electronic cigarette the wireless blue tooth communication module 103, microcontroller 101 of data is set and for output voltage to drive the buck module 104 of atomizer atomization tobacco tar.
Described microcontroller 101 is connected with described wireless blue tooth communication module 103 and described keyboard input module 102 respectively, it is mutual that described wireless blue tooth communication module 103 and described display control apparatus 105 carry out wireless data, and described buck module 104 is connected with described microcontroller 101 and atomizer.
Wherein, described display control apparatus 105 is the panel computer of smart mobile phone, apple IOS system or the Android of the Google system of desktop computer, notebook computer, apple IOS system or the Android of Google system.
In the time that described microcontroller 101 detects the push button signalling of described keyboard input module 102, described microcontroller 101 is controlled described buck module 104 output voltages to drive atomizer atomization tobacco tar; Described microcontroller 101 obtains electronic cigarette and uses status data and be transferred to described display control apparatus by described wireless blue tooth communication module, wherein, described electronic cigarette uses status data to comprise smoking port number, dump energy, output voltage and cell voltage, described display control apparatus 105 shows that the electronic cigarette receiving uses status data, described display control apparatus 105 is to described wireless blue tooth communication module 103 sending controling instructions, and transfers to described microcontroller 101 by described wireless blue tooth communication module 103.Wherein, described control instruction comprises that switching on and shutting down arrange that instruction, output atomizer voltage arrange instruction and smoking is overtime arranges instruction.
Described microcontroller 101 is also for controlling the output voltage size of described buck module 104.
The smart electronics cigarette with wireless blue tooth low-power consumption connecting communication function also comprises the charging module 106 being connected with described microcontroller 101; Described charging module 106 is connected with outside+5V power supply by outside Micro USB charging inlet.
Incorporated by reference to Fig. 2.
Charging module 106 comprises lithium cell charging chip SE9017, LED4, resistance R 17, resistance R 16 and capacitor C 5.
The negative pole of described LED4 connects the CHGR end of described lithium cell charging chip SE9017, the positive pole of described LED4 connects described resistance R 17, another termination external charging interface of described resistance R 17, the PROG of lithium cell charging chip SE9017 end described in one termination of described resistance R 16, other end ground connection, the BAT end input VBAT signal of described lithium cell charging chip SE9017, the VCC of described lithium cell charging chip SE9017 connects outside Micro USB charging inlet, described capacitor C 5 one termination external charging interfaces, other end ground connection, the earth terminal ground connection of described lithium cell charging chip SE9017.
The smart electronics cigarette with wireless blue tooth low-power consumption connecting communication function also comprises the LED display module being connected with described microcontroller, and described LED display module for sending condition indicative signal in the time that described keyboard input module 102 sends push button signalling.
Incorporated by reference to Fig. 3.
LED display module comprises LED1, LED2, LED3, resistance R 3, resistance R 2 and resistance R 8.
The positive pole of described LED1, described LED2, described LED3 all meets input power VDD, and the negative pole of described LED1, described LED2, described LED3 is the corresponding output that all connects described microcontroller by current-limiting resistance R3, resistance R 2, resistance R 8 respectively.
Incorporated by reference to Fig. 4.
Microcontroller 101 and wireless blue tooth communication module 103 comprise chip CC2540/CC2541, capacitor C 1, capacitor C 13, capacitor C 15, capacitor C 10, capacitor C 9, capacitor C 11, capacitor C 12, passive crystal oscillator X2, passive crystal oscillator X3, resistance R 6, resistance R 4 and resistance R 10, capacitor C 22, capacitor C 23, capacitor C 24, capacitor C 25, capacitor C 26, inductance L 2, inductance L 3, inductance L 4, inductance L 5 and PCB microstrip antenna.
Described resistance R 6 is series between the P0_4 end of external interface and chip CC2540/CC2541, the P0_4 end of described resistance R 4 one chip termination CC2540/CC2541, another termination power vd D; The DVDD2 end of described capacitor C 1 one chip termination CC2540/CC2541, other end ground connection; Described capacitor C 13 1 termination DCOUPL ends, other end ground connection; The P2_3 end of described capacitor C 15 1 chip termination CC2540/CC2541, other end ground connection; The P2_4 end of described capacitor C 9 one chip termination CC2540/CC2541, other end ground connection; Described passive crystal oscillator X2 two ends connect respectively P2_3 end and the P2_4 end of chip CC2540/CC2541; The R_BIAS end of described resistance R 10 1 chip termination CC2540/CC2541, other end ground connection, described capacitor C 10 1 termination power vd D, other end ground connection; The XOSC_Q1 end of described capacitor C 11 1 chip termination CC2540/CC2541, other end ground connection; The XOSC_Q2 end of described capacitor C 12 1 chip termination CC2540/CC2541, other end ground connection; Described passive crystal oscillator X3 two inputs connect respectively XOSC_Q1 end and the XOSC_Q2 end of chip CC2540/CC2541, two output head groundings; DVADD1 end, AVDD1 end, AVDD2 end, AVDD3 end, AVDD4 end, AVDD5 end and the AVDD6 termination power VDD of described chip CC2540/CC2541; Described capacitor C 22, electric capacity 25, inductance L 4 and inductance L 5 are series between the RF_N end and PCB microstrip antenna of described chip CC2540/CC2541 successively, realize 50 Ω impedance matchings.
The RF_P of chip CC2540/CC2541 end described in described capacitor C 23 1 terminations, another termination inductance L 3, inductance L 4 described in another termination of described inductance L 3, the points of common connection of capacitor C 22 and described capacitor C 25 described in described inductance L 2 one terminations, other end ground connection, the points of common connection of capacitor C 23 and described inductance L 3 described in described capacitor C 24 1 terminations, other end ground connection; The RF_N of described capacitor C 22 and described capacitor C 23 and described chip CC2540/CC2541, RF_P connects; Described inductance L 5 is the transmitting terminal of described wireless blue tooth communication module 103 with the points of common connection of PCB microstrip antenna, for send to the control instruction of described wireless blue tooth communication module 103 to described display control apparatus 105 wireless signal emissions and reception display control apparatus 105.
Incorporated by reference to Fig. 5.
Buck module 104 comprises digital regulation resistance CAT5110, buck chip TPS63020, resistance R 1, resistance R 5, resistance R 7, resistance R 9, capacitor C 2, capacitor C 4, capacitor C 6, capacitor C 8 and inductance L 1.
The vdd terminal of described digital regulation resistance CAT5110 meets power vd D, the U/D termination input U/D of described digital regulation resistance CAT5110, the earth terminal ground connection of described digital regulation resistance CAT5110, the CS end input signal CS of described digital regulation resistance CAT5110, the H end of described digital regulation resistance CAT5110 connects described resistance R 5 after being connected with W end, resistance R 6 described in another termination of described resistance R 5, another termination output VOUT of described resistance R 6, the FB of buck chip TPS63020 end described in the points of common connection solution of described resistance R 5 and described resistance R 6; Described resistance R 9, described capacitor C 6 and described capacitor C 8 are parallel between output VOUT and ground connection simultaneously; The VOUT1 end of described buck chip TPS63020 meets output VOUT after being connected with VOUT2 end, described resistance R 1 one termination output VOUT, the PG end of another termination buck chip TPS63020; The L1 of buck chip TPS63020 end described in described inductance L 1 one terminations, the L2 end of buck chip TPS63020 described in another termination; The VINA of buck chip TPS63020 end described in described capacitor C 2 one end, other end ground connection; The EN end input EN signal of described buck chip TPS63020, the VIN input VBAT signal of described buck chip TPS63020, GND end and the PGND of described buck chip TPS63020 hold equal ground connection; Described capacitor C 4 one end input VBAT signals, other end ground connection.
The smart electronics cigarette with wireless blue tooth low-power consumption connecting communication function also comprises the power module 107 being connected with described microcontroller 101, and described power module 107 is used to described microcontroller 101 that burning voltage is provided.
Incorporated by reference to Fig. 6.
Power module 107 comprises chip XC6206, inductance L 6 and capacitor C 14.
The input VIN input BAT signal of described chip XC6206, the output VOUT of described chip XC6206 connects inductance L 6, the other end out-put supply VDD of described inductance L 6, described capacitor C 14 1 termination out-put supply VDD, other end ground connection.
Based on above-mentioned all embodiment, the operation principle of smart electronics cigarette with wireless blue tooth low-power consumption connecting communication function is as follows:
After smoking button S1 presses, KEY is low level, activates CC2540 chip, and CC2540 chip detection just starts to carry out smoking after KEY is low level.First the P1_5 pin of CC2540 chip output high level, P1_5 is connected to the EN pin of TPS63020 chip.When the EN pin of TPS63020 chip is high, TSP63020 chip stepping functions starts to carry out, thereby the VOUT pin energy output voltage of TPS63020 chip drives electronic smoke atomizer atomization tobacco tar, the intrinsic standoff ratio of the slider of the clock signal control figure potentiometer CAT5110 that CC2540 chip is sent out certain by P1_2 and P1_3 simultaneously, change the output voltage feedback factor of TPS63020 chip, thereby make the VOUT pin output voltage size of the TPS63020 chip output voltage arranging that suits the requirements; CC2540 chip passes through P1_0, P1_1, and P1_7 foot control indicator lamp D1_red processed, D2_green, D3_blue, in the time that P1_0 is low level, D3_blue lamp is bright, and the rest may be inferred by analogy for it, thereby make the LED lamp of respective color bright.
The cell voltage VBAT of variation is converted to stable 3.3V voltage VDD by XC6206 chip, and VDD is to CC2540, and CAT5110 powers.
When MICRO USB access+5V voltage, SE9017 is to lithium cell charging, the CHR pin output low level of SE9017 in charging process, and charging indicator light D1 is bright, is full of rear CHGR pin output high level, and charging indicator light D1 goes out and represents to be full of electricity.
The above-mentioned smart electronics cigarette with wireless blue tooth low-power consumption connecting communication function drives atomizer atomization tobacco tar by buck module output voltage, needs the input module 102 that pushes button simultaneously, and the tobacco tar of atomization is input in smoke pipe.User can bring into use electronic cigarette.Meanwhile, microcontroller 101 starts to detect the electrical quantity that is entered electronic cigarette in smoke pipe and used status data, buck module 104 by keyboard input module 102, and by the transfer of data detecting to wireless blue tooth communication module 103.Wireless blue tooth communication module 103 uses status data to be transferred to display control apparatus 105 electronic cigarette of reception.Display control apparatus 105 shows the electronic cigarette status data receiving and shows.And display control apparatus 105 can be to wireless blue tooth communication module 103 sending controling instructions, microcontroller 101 is also carried out after receiving control instruction.Therefore, can show intuitively the duty of electronic cigarette, control the duty of electronic cigarette simultaneously by display control apparatus 105.
The above embodiment has only expressed several embodiment of the present utility model, and it describes comparatively concrete and detailed, but can not therefore be interpreted as the restriction to the utility model the scope of the claims.It should be pointed out that for the person of ordinary skill of the art, without departing from the concept of the premise utility, can also make some distortion and improvement, these all belong to protection domain of the present utility model.Therefore, the protection domain of the utility model patent should be as the criterion with claims.

Claims (9)

1. one kind has the smart electronics cigarette of wireless blue tooth low-power consumption connecting communication function, it is characterized in that, comprise for the keyboard input module of tobacco control, display control apparatus and with the wireless blue tooth communication module of display control apparatus connecting communication, microcontroller and for output voltage to drive the buck module of atomizer atomization tobacco tar;
Described microcontroller is connected with described wireless blue tooth communication module and described keyboard input module respectively, and it is mutual that described wireless blue tooth communication module and described display control apparatus carry out wireless data, and described buck module is connected with described microcontroller and atomizer;
Wherein, described display control apparatus is the panel computer of smart mobile phone, apple IOS system or the Android of the Google system of desktop computer, notebook computer, apple IOS system or the Android of Google system;
In the time that described microcontroller detects the push button signalling of described keyboard input module, buck module output voltage is to drive atomizer atomization tobacco tar described in described microprocessor control; Described microcontroller obtains electronic cigarette and uses status data and be transferred to described display control apparatus by described wireless blue tooth communication module, wherein, described electronic cigarette uses status data to comprise smoking port number, dump energy, output voltage and cell voltage, described display control apparatus shows that the electronic cigarette receiving uses status data, described display control apparatus is to described wireless blue tooth communication module sending controling instruction, and transfers to described microcontroller by described wireless blue tooth communication module; Wherein, described control instruction comprises that switching on and shutting down arrange that instruction, output atomizer voltage arrange instruction and smoking is overtime arranges instruction;
Described microcontroller is also for controlling the output voltage size of described buck module.
2. the smart electronics cigarette with wireless blue tooth low-power consumption connecting communication function according to claim 1, is characterized in that, also comprises the charging module being connected with described microcontroller; Described charging module is connected with outside+5V power supply by outside Micro USB charging inlet.
3. the smart electronics cigarette with wireless blue tooth low-power consumption connecting communication function according to claim 2, is characterized in that, described charging module comprises lithium cell charging chip SE9017, LED4, resistance R 17, resistance R 16 and capacitor C 5;
The negative pole of described LED4 connects the CHGR end of described lithium cell charging chip SE9017, the positive pole of described LED4 connects described resistance R 17, the outside Micro USB of another termination charging inlet of described resistance R 17, the PROG of lithium cell charging chip SE9017 end described in one termination of described resistance R 16, other end ground connection, the BAT end input VBAT signal of described lithium cell charging chip SE9017, the outside Micro USB of the VCC termination charging inlet of described lithium cell charging chip SE9017, the outside Micro USB of described capacitor C 5 one terminations charging inlet, other end ground connection, the earth terminal ground connection of described lithium cell charging chip SE9017.
4. the smart electronics cigarette with wireless blue tooth low-power consumption connecting communication function according to claim 1, it is characterized in that, also comprise the LED display module being connected with described microcontroller, described LED display module for sending condition indicative signal in the time that described keyboard input module sends push button signalling.
5. the smart electronics cigarette with wireless blue tooth low-power consumption connecting communication function according to claim 4, is characterized in that, described LED display module comprises LED1, LED2, LED3, resistance R 3, resistance R 2 and resistance R 8;
The positive pole of described LED1, described LED2, described LED3 all meets input power VDD, and the negative pole of described LED1, described LED2, described LED3 is the corresponding output that all connects described microcontroller by current-limiting resistance R3, resistance R 2, resistance R 8 respectively.
6. the smart electronics cigarette with wireless blue tooth low-power consumption connecting communication function according to claim 1, it is characterized in that, described microcontroller and described wireless blue tooth communication module comprise chip CC2540/CC2541, capacitor C 1, capacitor C 13, capacitor C 15, capacitor C 10, capacitor C 9, capacitor C 11, capacitor C 12, passive crystal oscillator X2, passive crystal oscillator X3, resistance R 6, resistance R 4, resistance R 10, capacitor C 22, capacitor C 23, capacitor C 24, capacitor C 25, capacitor C 26, inductance L 2, inductance L 3, inductance L 4, inductance L 5 and PCB microstrip antenna;
Described resistance R 6 is series between the P0_4 end of external interface and chip CC2540/CC2541, the P0_4 end of described resistance R 4 one chip termination CC2540/CC2541, another termination power vd D; The DVDD2 end of described capacitor C 1 one chip termination CC2540/CC2541, other end ground connection; Described capacitor C 13 1 termination DCOUPL ends, other end ground connection; The P2_3 end of described capacitor C 15 1 chip termination CC2540/CC2541, other end ground connection; The P2_4 end of described capacitor C 9 one chip termination CC2540/CC2541, other end ground connection; Described passive crystal oscillator X2 two ends connect respectively P2_3 end and the P2_4 end of chip CC2540/CC2541; The R_BIAS end of described resistance R 10 1 chip termination CC2540/CC2541, other end ground connection, described capacitor C 10 1 termination power vd D, other end ground connection; The XOSC_Q1 end of described capacitor C 11 1 chip termination CC2540/CC2541, other end ground connection; The XOSC_Q2 end of described capacitor C 12 1 chip termination CC2540/CC2541, other end ground connection; Described passive crystal oscillator X3 two inputs connect respectively XOSC_Q1 end and the XOSC_Q2 end of chip CC2540/CC2541, two output head groundings; DVADD1 end, AVDD1 end, AVDD2 end, AVDD3 end, AVDD4 end, AVDD5 end and the AVDD6 termination power VDD of described chip CC2540/CC2541; Described capacitor C 22, electric capacity 25, inductance L 4 and inductance L 5 are series between the RF_N end and PCB microstrip antenna of described chip CC2540/CC2541 successively; The RF_P of chip CC2540/CC2541 end described in described capacitor C 23 1 terminations, another termination inductance L 3, inductance L 4 described in another termination of described inductance L 3, the points of common connection of capacitor C 22 and described capacitor C 25 described in described inductance L 2 one terminations, other end ground connection, the points of common connection of capacitor C 23 and described inductance L 3 described in described capacitor C 24 1 terminations, other end ground connection; The RF_N of described capacitor C 22 and described capacitor C 23 and described chip CC2540/CC2541, RF_P connects; Described inductance L 5 is the transmitter and receiver of described wireless blue tooth communication module with the points of common connection of PCB microstrip antenna, for transmitting to described display control apparatus and receiving display control apparatus and send to the control instruction of described wireless blue tooth communication module.
7. the smart electronics cigarette with wireless blue tooth low-power consumption connecting communication function according to claim 1, it is characterized in that, described buck module comprises digital regulation resistance CAT5110, buck chip TPS63020, resistance R 1, resistance R 5, resistance R 7, resistance R 9, capacitor C 2, capacitor C 4, capacitor C 6, capacitor C 8 and inductance L 1;
The vdd terminal of described digital regulation resistance CAT5110 meets power vd D, the U/D termination input U/D of described digital regulation resistance CAT5110, the earth terminal ground connection of described digital regulation resistance CAT5110, the CS end input signal CS of described digital regulation resistance CAT5110, the H end of described digital regulation resistance CAT5110 connects described resistance R 5 after being connected with W end, resistance R 6 described in another termination of described resistance R 5, another termination output VOUT of described resistance R 6, the FB of buck chip TPS63020 end described in the points of common connection solution of described resistance R 5 and described resistance R 6; Described resistance R 9, described capacitor C 6 and described capacitor C 8 are parallel between output VOUT and ground connection simultaneously; The VOUT1 end of described buck chip TPS63020 meets output VOUT after being connected with VOUT2 end, described resistance R 1 one termination output VOUT, the PG end of another termination buck chip TPS63020; The L1 of buck chip TPS63020 end described in described inductance L 1 one terminations, the L2 end of buck chip TPS63020 described in another termination; The VINA of buck chip TPS63020 end described in described capacitor C 2 one end, other end ground connection; The EN end input EN signal of described buck chip TPS63020, the VIN input VBAT signal of described buck chip TPS63020, GND end and the PGND of described buck chip TPS63020 hold equal ground connection; Described capacitor C 4 one end input VBAT signals, other end ground connection.
8. the smart electronics cigarette with wireless blue tooth low-power consumption connecting communication function according to claim 1, is characterized in that, also comprises the power module being connected with described microcontroller, and described power module is used to described microcontroller that burning voltage is provided.
9. the smart electronics cigarette with wireless blue tooth low-power consumption connecting communication function according to claim 8, is characterized in that, described power module comprises low voltage difference voltage stabilizing chip XC6206, inductance L 6 and capacitor C 14;
The input VIN input BAT signal of described chip XC6206, the output VOUT of described chip XC6206 connects inductance L 6, the other end out-put supply VDD of described inductance L 6, described capacitor C 14 1 termination out-put supply VDD, other end ground connection.
CN201320773203.5U 2013-11-28 2013-11-28 Intelligent electronic cigarette with wireless Bluetooth low-power-consumption connecting communication function Expired - Fee Related CN203597405U (en)

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