WO2016119121A1 - 一种电子烟盒 - Google Patents

一种电子烟盒 Download PDF

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Publication number
WO2016119121A1
WO2016119121A1 PCT/CN2015/071626 CN2015071626W WO2016119121A1 WO 2016119121 A1 WO2016119121 A1 WO 2016119121A1 CN 2015071626 W CN2015071626 W CN 2015071626W WO 2016119121 A1 WO2016119121 A1 WO 2016119121A1
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WO
WIPO (PCT)
Prior art keywords
electronic cigarette
microprocessor
cigarette case
slot
atomizer
Prior art date
Application number
PCT/CN2015/071626
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English (en)
French (fr)
Inventor
刘秋明
Original Assignee
惠州市吉瑞科技有限公司
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by 惠州市吉瑞科技有限公司 filed Critical 惠州市吉瑞科技有限公司
Priority to CN201590001264.7U priority Critical patent/CN207151936U/zh
Priority to PCT/CN2015/071626 priority patent/WO2016119121A1/zh
Publication of WO2016119121A1 publication Critical patent/WO2016119121A1/zh

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    • 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
    • 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
    • A24F40/10Devices using liquid inhalable precursors

Definitions

  • the utility model relates to the field of electronic cigarettes, in particular to an electronic cigarette case capable of preventing leakage of smoke oil.
  • An electronic cigarette case for placing an electronic cigarette is provided in the prior art.
  • the electronic cigarette case of the prior art is provided with a cavity for placing the electronic cigarette and a cavity for placing the atomizer, which is made by the electronic cigarette case.
  • the user can carry the electronic cigarette and the plurality of atomizers with them, and the electronic cigarette case of the prior art can also charge the battery rod of the electronic cigarette, and the battery rod can provide the electronic cigarette when the user smokes the smoke by using the electronic cigarette. Ample power.
  • the electronic cigarette case provided in the prior art has the following disadvantages: 1. If the temperature outside the electronic cigarette case changes, the air pressure inside and outside the electronic cigarette case may be inconsistent, thereby causing the atomizer inside the electronic cigarette case. It is easy to leak smoke oil, and the leaked smoke oil easily pollutes the inside of the electronic cigarette case, and if the leaked smoke oil leaks into the inside of the battery rod, the battery rod is easily damaged, so that the electronic cigarette cannot work normally; 2. The atomization cannot be guaranteed.
  • the shelf life of the smoke oil stored inside the device makes the smoke oil stored in the electronic cigarette case easy to expire, which affects the taste and health of the user to smoke the electronic cigarette.
  • the utility model provides an electronic cigarette case
  • An electronic cigarette case comprising: a case body and a cover cover disposed on the opening of the case body, the case body is provided with a slot for receiving the atomizer and a semiconductor for adjusting the temperature in the slot Refrigerating sheet
  • the electronic cigarette case is further provided with a detecting unit for detecting whether the atomizer is inserted in the slot, the electronic cigarette case is further provided with a battery, and the detecting unit and the battery respectively a microprocessor electrically connected to the semiconductor refrigerating sheet, and electrically connected between the microprocessor and the semiconductor refrigerating sheet is provided with a switching circuit, and the microprocessor is configured to determine, by the detecting unit The atomizer is inserted into the slot, and the microprocessor controls the switch circuit to be closed to cause the battery to supply power to the semiconductor cooling sheet.
  • the box body is made of a metal material, and the box body and the slot are disposed between An insulating layer made of an insulating material, the semiconductor refrigerating sheet is disposed through a target area of the insulating layer, and the target area is located between the atomizer and the casing to make the semiconductor refrigerating sheet
  • the first side of the semiconductor refrigerating sheet is adjacent to the atomizer, and the second side of the semiconductor refrigerating sheet abuts against the casing, so that when the battery supplies power to the semiconductor refrigerating sheet, the One side is cooled, and the second side of the semiconductor refrigerating sheet is dissipated through the casing.
  • the detecting unit is a photoelectric sensor disposed in the slot, and the photoelectric sensor generates a first trigger signal when detecting that the atomizer is inserted in the slot, so that the The microprocessor controls the switch circuit to be closed according to the first trigger signal;
  • the detecting unit is a first button switch that is disposed on the box body, and the first button switch correspondingly generates the first trigger signal after detecting a pressing operation of the user, so that the microprocessor is configured according to the The first trigger signal controls the switch circuit to close.
  • the second button switch is further disposed at a port of the box near the cover, so that when the cover is disposed on the opening of the case, the second button switch is pressed.
  • the second button switch is configured to generate a second trigger signal when the cover is disposed on the opening of the case, so that the microprocessor is configured to perform the second trigger signal according to the first trigger signal and the second trigger signal.
  • the switch circuit is controlled to be closed.
  • a first temperature sensor and a second temperature sensor are further disposed inside the electronic cigarette case, and the first temperature sensor and the second temperature sensor are both electrically connected to the microprocessor;
  • the microprocessor is configured to acquire, by the first temperature sensor, a cooling temperature of the first side of the semiconductor refrigeration chip, so that the microprocessor determines whether the cooling temperature is within a first preset temperature range And if the cooling temperature is less than a minimum value of the first preset temperature range, the microprocessor controls the switch circuit to be disconnected, and the first preset temperature range is to prevent the inside of the atomizer
  • the microprocessor is further configured to acquire, by the second temperature sensor, a heat dissipation temperature of the second side of the semiconductor refrigeration chip, so that the microprocessor determines whether the heat dissipation temperature is at a second preset temperature a range, and if the heat dissipation temperature is greater than a maximum value of the second preset temperature range, the microprocessor controls the switch circuit to be disconnected, and the second preset temperature range is to prevent the case from being hot Temperature range.
  • the first preset temperature range is between 15 ° C and 25 ° C
  • the second preset temperature The range is between 25 ° C and 65 ° C.
  • the electronic cigarette case is further provided with a first signal amplifier and a second signal amplifier, and the first signal amplifier is electrically connected to the first temperature sensor and the microprocessor, respectively, the second a signal amplifier is electrically connected to the second temperature sensor and the microprocessor, respectively;
  • the first signal amplifier is configured to amplify a signal output by the first temperature sensor and input the signal to the microprocessor
  • the second signal amplifier is configured to amplify a signal output by the second temperature sensor and input the signal The microprocessor.
  • the switching circuit is a triode or a field effect transistor.
  • the display module is further provided with a display module near the port of the cover, and the display module is electrically connected to the microprocessor, so that the microprocessor is used to display the display module.
  • the microprocessor Determining, by the first temperature sensor, a cooling temperature of the first side of the semiconductor refrigerating sheet, the microprocessor is further configured to display, by the display module, the semiconductor refrigerating obtained by the second temperature sensor The heat dissipation temperature of the second side of the sheet.
  • the lid is rotatably hinged to the casing.
  • the slot includes a first sub-slot for inserting a fixed atomizer and a second sub-slot for inserting a fixed electronic cigarette;
  • the inside of the electronic cigarette case is further provided with a cavity for inserting a fixed battery rod;
  • the first sub-slot, the second sub-slot and the cavity are arranged side by side in the radial direction of the electronic cigarette case, and the first sub-slot is plural.
  • the cavity is provided with a charging electrode in an end of the cover, so that when the battery rod is inserted into the cavity, the charging electrode and the battery rod and the battery respectively Electrically connected to cause the battery to charge the battery rod.
  • the slot is provided with a clamping member made of an elastic material in an end portion away from the cover.
  • a USB interface is disposed at an end of the case away from the cover, and the USB interface is electrically connected to the microprocessor, and the microprocessor is further configured to connect to the USB interface.
  • the microprocessor charges the battery through the external power source.
  • the electronic cigarette case provided by the utility model is provided with a slot for accommodating the atomizer and a semiconductor refrigeration sheet for adjusting the temperature in the slot; the electronic cigarette case is further provided for detecting the slot Whether a detecting unit of the atomizer is inserted, a battery is further disposed inside the electronic cigarette case, and a microprocessor electrically connected to the detecting unit, the battery and the semiconductor cooling plate respectively, and And a switch circuit is further electrically connected between the microprocessor and the semiconductor refrigerating sheet, and the microprocessor is configured to: if it is determined by the detecting unit that the atomizer is inserted in the slot, A microprocessor controls the switch circuit to close such that the battery powers the semiconductor cooling fin.
  • the advantage of using the electronic cigarette case provided by the utility model is that, when the semiconductor refrigeration chip cools the atomizer during power-on, the electronic cigarette case is not formed inside or outside the slot when the external temperature changes.
  • the pressure difference is such that the smoke oil in the oil storage chamber of the atomizer does not leak due to the change of the air pressure inside and outside the electronic cigarette case, and the leakage of the oil smoke is prevented from damaging the battery rod, and the atomizer is stored.
  • the smoke oil can be effectively protected between 15-25 ° C, thus effectively guaranteeing the shelf life of the smoke oil, avoiding the user to pump the deteriorated smoke oil, thereby ensuring the taste and health of the user to smoke the smoke.
  • FIG. 1 is a front cross-sectional view showing a preferred embodiment of an electronic cigarette case provided by the present invention
  • FIG. 2 is a schematic view showing a circuit connection structure of a preferred embodiment of the temperature control circuit provided by the present invention
  • FIG. 3 is a front cross-sectional view showing another preferred embodiment of the electronic cigarette case provided by the present invention.
  • FIG. 4 is a side cross-sectional view showing a preferred embodiment of an electronic cigarette case provided by the present invention.
  • FIG. 5 is a schematic diagram showing a circuit connection structure of another preferred embodiment of the temperature control circuit provided by the present invention.
  • FIG. 6 is a front cross-sectional view showing another preferred embodiment of the electronic cigarette case provided by the present invention.
  • FIG. 7 is a schematic diagram showing a circuit connection structure of another preferred embodiment of the temperature control circuit provided by the present invention.
  • FIG. 8 is a schematic diagram showing a circuit connection structure of another preferred embodiment of the temperature control circuit provided by the present invention.
  • the embodiment provides an electronic cigarette case capable of effectively preventing leakage of smoke oil and ensuring the shelf life of the oil smoke;
  • the electronic cigarette case specifically includes:
  • the present embodiment is not limited to the specific shape of the casing 100, and may be a regular shape, such as a rectangular parallelepiped, a cube, etc.; the casing 100 shown in this embodiment may also have an irregular shape;
  • This embodiment is described by taking the case 100 as a rectangular parallelepiped as an example
  • the cover 101 is not limited to the cover 100.
  • the cover 101 can be hinged to the opening of the case, so that the cover 101 can be One end of the opening of the casing is freely rotated in the radial direction of the cigarette case, and when the cover 101 is completely rotated to completely cover the position on the opening of the casing, the cover 101 is covered.
  • the cover 101 and the casing 100 are detachably connected, and specifically may be a screw connection, a plug connection or a magnetic connection by a magnet or the like.
  • the casing 100 is internally provided with a slot 102 for receiving an atomizer
  • a slot 102 for receiving the atomizer is opened in the casing 100, and a notch of the slot 102 extends to the opening of the casing, so that when the cover 101 leaves the casing When the opening is in place, the user can insert the nebulizer through the slot of the slot 102.
  • the slot 102 shown in this embodiment can be used for directly inserting and fixing a single atomizer, and the slot 102 can also be used for inserting and fixing an electronic cigarette to which an atomizer has been installed;
  • the specific number of the slots 102 is not limited, and may be one or more, and is preferably used for convenience by the user.
  • the arrangement of the plurality of the slots 102 is not limited. As shown in FIG. 1 , in the embodiment, the slots 102 are arranged along the radial direction of the electronic cigarette case.
  • the box body 100 is provided with a plurality of sets of slots 102, and the axes of the slots 102 in each group are on the same straight line, and the slots 102 in the adjacent two groups are The axis is on two parallel lines.
  • a semiconductor refrigeration sheet 103 for adjusting the temperature in the socket
  • the semiconductor refrigeration sheet is also called a thermoelectric cooling sheet, which has high reliability and does not require a refrigerant, thereby effectively avoiding pollution caused by the refrigerant.
  • the working principle is that when the direct current passes through the semiconductor refrigeration sheet, one side of the semiconductor refrigeration sheet absorbs heat, and the other side emits heat, so that the purpose of cooling can be achieved.
  • the internal and external air pressure of the oil storage cavity for storing the smoke oil inside the atomizer inside the electronic cigarette case may correspondingly change, thereby causing the smoke stored in the smoke oil storage cavity.
  • the oil overflows under the action of air pressure, thereby causing oil leakage of the atomizer, which brings inconvenience to the user;
  • the semiconductor refrigerating sheet 103 is disposed inside the electronic cigarette case, so that when the external temperature changes, the electronic cigarette case does not form a pressure difference inside and outside the slot 102, thereby causing the nebulizer to store the oil.
  • the smoke oil in the cavity will not leak due to the change of the air pressure inside and outside the electronic cigarette case, and the leakage of the smoke oil will be prevented from damaging the battery rod.
  • the storage temperature of the general smoke oil is 15-25 ° C, and the ambient temperature of most of the time is higher than 25 ° C. If the ambient temperature is too high, the temperature inside the electronic cigarette case will naturally be affected, thereby affecting the shelf life of the smoke oil;
  • the semiconductor refrigerating sheet 103 is used to enable the semiconductor refrigerating sheet 103 to be cooled by the atomizer, so that the soot stored in the atomizer can be effectively protected between 15-25 ° C, thereby It effectively protects the shelf life of the smoke oil and prevents the user from pumping the deteriorated smoke oil, thus ensuring the taste and health of the user to smoke the smoke.
  • the specific arrangement position of the semiconductor refrigerating sheet 103 is not limited in this embodiment, as long as the semiconductor refrigerating sheet 103 located in the electronic cigarette case can effectively cool the atomizer.
  • FIG. 2 is a schematic diagram showing the circuit connection structure of the temperature control circuit provided by the present invention
  • the electronic cigarette case is further provided with a detecting unit 201 for detecting whether the atomizer is inserted in the slot 102;
  • the detecting unit 201 is not limited. When the atomizer is inserted into the slot 102, the detecting unit 201 can sense and correspondingly generate a trigger signal.
  • the electronic cigarette case is further provided with a battery 202 inside;
  • a microprocessor 203 electrically connected to the detecting unit 201, the battery 202, and the semiconductor refrigerating sheet 103, respectively;
  • the specific embodiment of the battery 202 and the microprocessor 203 in the electronic cigarette case is not limited as long as the detecting unit 201, the battery 202, and the semiconductor cooling fin 103 are electrically connected to the microprocessor 203.
  • switch circuit 204 is further electrically connected between the microprocessor 203 and the semiconductor refrigerating sheet 103, wherein the switch circuit 204 is a triode or a field effect transistor.
  • the microprocessor 203 is configured to control the switch circuit 204 to close if the atomizer is determined to be inserted into the slot 102 by the detecting unit 201, so that the The battery 202 supplies power to the semiconductor refrigerating sheet 103, and further causes the semiconductor refrigerating sheet 103 to cool the atomizer.
  • Embodiment 2 the specific structure of the electronic cigarette case is further described in detail in the embodiment: the specific structure of the electronic cigarette case is further described in detail below with reference to FIG. 3, wherein FIG. 3 shows Another front view of another preferred embodiment of the electronic cigarette case provided by the present invention
  • the case body 304 of the electronic cigarette case shown in this embodiment is made of a metal material
  • the slot shown in this embodiment includes a first sub-slot 301 for inserting a fixed atomizer and a second sub-slot 302 for inserting and fixing an electronic cigarette;
  • the embodiment is further provided with a cavity 303 for inserting a fixed battery rod;
  • the first sub-slot 301, the cavity 303 and the second sub-slot 302 are arranged side by side in the radial direction of the electronic cigarette case;
  • the first sub-slot 301 is plural.
  • the recess 303 is disposed away from the end of the cover with a charging electrode 308, so that when the battery rod is inserted into the cavity 303, the charging electrode 308 and the battery respectively The rod and the battery 307 are electrically connected such that the battery 307 charges the battery rod.
  • the first sub-slot 301 and the second sub-slot 302 are disposed away from the end of the cover with a clamping member made of an elastic material, so that the atomizer passes through the The clamping member is stably inserted into the first sub-slot 301 such that the electronic cigarette is stably inserted into the second sub-slot 302 through the clamping member.
  • thermal insulation layer 305 made of insulating material
  • the first sub-slot 301 is provided with a semiconductor refrigerating sheet 306 for dissipating heat for the atomizer
  • the second sub-slot 302 is provided with an atomizer for being mounted on the electronic cigarette.
  • the area in which the insulating layer 305 is hollowed out is a target area
  • the target area is located between the atomizer and the box body 304, the target area of the heat insulation layer 305 is corresponding to the atomizer, and the target area is greater than or equal to the atomization.
  • the semiconductor refrigerating sheet 306 is disposed through a target area of the insulating layer 305;
  • the above arrangement is adopted such that the first side of the semiconductor refrigerating sheet 306 passing through the target area is close to the atomizer 309, and the second side of the semiconductor refrigerating sheet 306 is worn.
  • the target area abuts the case 304, such that the battery 307 supplies power to the semiconductor refrigerating sheet 306, the first side of the semiconductor refrigerating sheet 306 is cooled, so that the atomizer The temperature of the 309 is lowered, and the second side of the semiconductor refrigerating sheet 306 is dissipated through the casing 304, thereby ensuring the smooth operation of the semiconductor refrigerating sheet 306.
  • the advantage of using the heat insulating layer 305 in the embodiment is that the first side cooling effect of the semiconductor refrigerating sheet 306 can be effectively ensured, and a pressure difference between the inside and the outside of the atomizer can be further avoided, thereby reducing The possibility of smoke oil leakage.
  • the case body 304 is made of a metal material, so that the heat dissipated when the semiconductor refrigerating sheet 306 is cooled can be heated in time to prevent heat from accumulating inside the electronic cigarette case.
  • This embodiment exemplifies how the semiconductor refrigerating sheet 306 is triggered in detail:
  • the first type the temperature control circuit of this type of trigger mode is shown in Figure 2;
  • the detecting unit 201 is a photoelectric sensor disposed in the slot;
  • the specific position of the photosensor disposed in the slot is not limited.
  • the photosensor can sense and correspondingly generate a first trigger signal. Just fine.
  • the photosensor generates a first trigger signal when detecting that the atomizer is inserted in the slot, so that the microprocessor 203 controls the switch circuit 204 to be closed according to the first trigger signal. Further, the first side surface of the semiconductor refrigerating sheet 103 is cooled, and the second side surface of the semiconductor refrigerating sheet 103 is dissipated through the casing.
  • the detecting unit 201 is a first button switch that is disposed on the box body;
  • the specific position of the first button switch on the box body is not limited, as long as it is convenient for the user to press and is electrically connected to the microprocessor 203.
  • the first button switch correspondingly generates the first trigger signal after detecting a pressing operation of the user, so that the microprocessor 203 controls the switch circuit 204 to be closed according to the first trigger signal, so that the The battery 202 supplies power to the semiconductor refrigerating sheet 103, and further cools the first side surface of the semiconductor refrigerating sheet 103, and the second side surface of the semiconductor refrigerating sheet 103 dissipates heat through the casing.
  • the third type the temperature control circuit of the trigger mode is shown in Figure 5, the front cross-sectional view of the electronic cigarette case of this type of setting is shown in Figure 6;
  • the box 601 is further disposed with a second button switch 603 near the port of the cover 602;
  • the cover 602 shown in FIG. 6 is hinged to the casing 601 via a rotating shaft 604, and when the cover 602 is capped on the opening of the casing 601, the rotating shaft 604 presses the When the second button switch 603 is rotated and the cover 602 is rotated away from the opening of the casing 601 in the radial direction of the electronic cigarette case, the rotating shaft 604 is disengaged from the second button switch 603.
  • the second button switch 603 when the cover 602 is capped on the opening of the casing 601, the second button switch 603 is pressed by the rotating shaft 604, and the circuit connection structure is shown in the figure. 5, the second button switch 603 is configured to generate a second trigger signal when the cover 602 is capped on the opening of the box 601;
  • the microprocessor 403 determines that the detecting unit 401 generates a first start signal (see the first trigger mode and the second trigger mode described above), and the microprocessor 403 determines the The second button switch 603 generates a second trigger signal, and the microprocessor 403 can control the switch circuit 404 to be closed according to the first trigger signal and the second trigger signal, so that the battery 402 is
  • the semiconductor refrigerating sheet 405 supplies power, thereby causing the first portion of the semiconductor refrigerating sheet 405 One side of the cooling, the second side of the semiconductor refrigerating sheet 405 is dissipated through the casing 601.
  • the detecting unit 401 senses that the atomizer is inserted in the slot, and when the cover 602 is capped on the opening of the box 601, the microprocessor 403 is controlled to close the switch circuit 404 to avoid unnecessary waste of energy caused by the operation of the semiconductor refrigerating sheet 405 when the cover 602 is opened;
  • the fourth type the temperature control circuit of this type of trigger mode is shown in Figure 7;
  • a first temperature sensor 701 and a second temperature sensor 702 are further disposed inside the electronic cigarette case, and the first temperature sensor 701 and the second temperature sensor 702 are electrically connected to the microprocessor 703;
  • the specific position of the first temperature sensor 701 is not limited in this embodiment, as long as the first temperature sensor 701 can detect the cooling temperature of the first side of the semiconductor refrigerating sheet 704;
  • the specific position of the second temperature sensor 702 is not limited in this embodiment, as long as the second temperature sensor 702 can detect the heat dissipation temperature of the second side of the semiconductor refrigerating sheet 704.
  • the microprocessor 703 is configured to acquire, by the first temperature sensor 701, a cooling temperature of the first side of the semiconductor refrigerating sheet 704, so that the microprocessor 703 passes the first temperature sensor 701. Determining whether the cooling temperature is within a first preset temperature range;
  • the first preset temperature range is a temperature range for preventing leakage of smoke oil in the atomizer
  • the microprocessor 703 determines that the cooling temperature is less than a minimum value of the first preset temperature range, the microprocessor 703 controls the switch circuit 705 to be turned off to prevent the cooling temperature from being too low.
  • the atomizer leaks oil due to a pressure difference.
  • the first preset temperature range is preferably between 15 ° C and 25 ° C, that is, the microprocessor 703 determines the semiconductor cooling sheet 704 by the first temperature sensor 701.
  • the microprocessor 703 causes the switch circuit 705 to be turned on, once the microprocessor 703 determines the first temperature sensor 701
  • the switching circuit 705 is controlled to be turned off.
  • the microprocessor 703 is further configured to acquire, by the second temperature sensor 702, a heat dissipation temperature of the second side of the semiconductor refrigerating sheet 704, so that the microprocessor 703 determines the heat dissipation temperature. Whether the degree is in the second preset temperature range;
  • the microprocessor 703 controls the switch circuit 705 to be turned off;
  • the second preset temperature range is a temperature range that prevents the case from being hot.
  • the second preset temperature range is preferably between 25 ° C and 65 ° C, that is, the microprocessor 703 determines the semiconductor cooling sheet 704 by the second temperature sensor 702.
  • the microprocessor 703 causes the switch circuit 705 to be turned on, once the microprocessor 703 determines the second temperature sensor 702
  • the switch circuit 705 is controlled to be disconnected to prevent the cigarette case from being hot.
  • the embodiment further provides a temperature control circuit as shown in FIG. 8.
  • a temperature control circuit as shown in FIG. 8.
  • the accuracy of the heat dissipation temperature and the detection of the cooling temperature can be improved;
  • the electronic cigarette case is further provided with a first signal amplifier 801 and a second signal amplifier 802, and the first signal amplifier 801 and the first temperature sensor 803 and the micro processing respectively.
  • the device 804 is electrically connected, and the second signal amplifier 802 is electrically connected to the second temperature sensor 805 and the microprocessor 804, respectively;
  • the first signal amplifier 801 is configured to amplify a signal output by the first temperature sensor 803 and input the signal to the microprocessor 804, thereby enabling the microprocessor 804 to more accurately determine the semiconductor refrigeration chip. a cooling temperature of the first side of the 805;
  • the second signal amplifier 802 is configured to amplify a signal output by the second temperature sensor 805 and input the signal to the microprocessor 804, thereby enabling the microprocessor 804 to more accurately determine the semiconductor refrigeration chip.
  • the box 601 is also provided with a display module 605 near the port of the cover 602;
  • the specific electrical connection structure is shown in FIG. 8.
  • the display module 605 is electrically connected to the microprocessor 804, so that the microprocessor 804 is configured to display the first temperature sensor 803 through the display module 605. Obtaining a cooling temperature of the first side of the semiconductor refrigerating sheet 806;
  • the microprocessor 804 is further configured to display the second temperature sensor by using the display module 605 805.
  • the heat dissipation temperature of the second side of the semiconductor refrigerating sheet 806 is obtained.
  • a USB interface 606 is disposed at an end of the case 601 away from the cover 602.
  • the electrical connection structure is shown in FIG. 8.
  • the USB interface 606 and the microprocessor 804 are electrically connected. connection;
  • the microprocessor 804 is further configured to: when the USB interface 606 is connected to an external power source, the microprocessor 804 charges the battery 402 through the external power source.
  • the end of the slot 607 away from the cover 602 is provided with a clamping member 608 made of an elastic material, so that the atomizer can be firmly inserted through the clamping member 608.
  • a clamping member 608 made of an elastic material, so that the atomizer can be firmly inserted through the clamping member 608.

Abstract

一种电子烟盒,其内部设置有用于收容雾化器(309)的插槽(102,301,302,607)及用于调节插槽(102,301,302,607)内温度的半导体制冷片(103,306,405,704,806);所述电子烟盒还设置有用于检测所述插槽(102,301,302,607)内是否插设有所述雾化器(309)的检测单元(201,401),所述电子烟盒内部还设置有电池(202,307,402),以及分别与所述检测单元(201,401)、所述电池(202,307,402)和所述半导体制冷片(103,306,405,704,806)电连接的微处理器(203,403,703,804),且所述微处理器(203,403,703,804)和所述半导体制冷片(103,306,405,704,806)之间还电连接设置有开关电路(204,404,705)。因所述半导体制冷片(103,306,405,704,806)在通电时对雾化器(309)进行制冷,则使得电子烟盒在外界温度变化时,不会在所述插槽(102,301,302,607)内外形成压差,从而使得雾化器(309)的烟油存储腔体内的烟油不会因为电子烟盒内外气压的变化而泄漏,而且避免用户抽吸到变质的烟油,从而保障了用户抽吸烟雾的口感以及健康。

Description

一种电子烟盒 技术领域
本实用新型涉及电子烟领域,尤其涉及的是一种能够防止烟油泄漏的电子烟盒。
背景技术
现有技术中提供了用于放置电子烟的电子烟盒,现有技术中的电子烟盒中设置有用于放置电子烟的凹腔以及用于放置雾化器的凹腔,通过电子烟盒使得用户能够随身携带电子烟以及多个雾化器,而且现有技术中的电子烟盒还能够为电子烟的电池杆进行充电,保障用户使用电子烟抽吸烟雾时,电池杆能够为电子烟提供充足的电量。
但是,现有技术中所提供的电子烟盒的缺点在于:1、若电子烟盒外的气温发生变化,那么电子烟盒内外的气压就会不一致,从而使得位于电子烟盒内部的雾化器容易泄漏烟油,而泄漏的烟油容易污染电子烟盒内部,而且泄漏的烟油若泄漏至电池杆内部,则非常容易损坏电池杆,从而使得电子烟无法正常工作;2、无法保障雾化器内部所存储的烟油的保质期,使得电子烟盒内存储的烟油容易过期,影响了用户抽吸电子烟的口感和健康。
实用新型内容
本实用新型提供了一种电子烟盒;
一种电子烟盒,其中,包括盒体以及盖设在所述盒体开口上的盒盖,所述盒体内部设置有用于收容雾化器的插槽及用于调节插槽内温度的半导体制冷片;
所述电子烟盒还设置有用于检测所述插槽内是否插设有所述雾化器的检测单元,所述电子烟盒内部还设置有电池,以及分别与所述检测单元、所述电池和所述半导体制冷片电连接的微处理器,且所述微处理器和所述半导体制冷片之间还电连接设置有开关电路,所述微处理器用于若通过所述检测单元确定所述雾化器插设在所述插槽内,则所述微处理器控制所述开关电路闭合,以使所述电池为所述半导体制冷片供电。
优选的,所述盒体由金属材质制成,且所述盒体和所述插槽之间设置有由 隔热材质制成的保温层,所述半导体制冷片穿设所述保温层的目标区域设置,所述目标区域位于所述雾化器和所述盒体之间,以使所述半导体制冷片的第一侧面靠近所述雾化器,所述半导体制冷片的第二侧面与所述盒体相抵接,使得所述电池为所述半导体制冷片供电时,所述半导体制冷片的所述第一侧面制冷,所述半导体制冷片的所述第二侧面通过所述盒体散热。
优选的,所述检测单元为设置在所述插槽内的光电传感器,所述光电传感器在检测到所述雾化器插设在所述插槽内时生成第一触发信号,以使所述微处理器根据所述第一触发信号控制所述开关电路闭合;
或,
所述检测单元为穿设于所述盒体的第一按键开关,所述第一按键开关在检测到用户的按压操作后对应生成所述第一触发信号,以使所述微处理器根据所述第一触发信号控制所述开关电路闭合。
优选的,所述盒体靠近所述盒盖的端口处还设置有第二按键开关,以使所述盒盖盖设在所述盒体开口上时,所述第二按键开关被按压,所述第二按键开关用于在所述盒盖盖设在所述盒体开口上时对应生成第二触发信号,以使所述微处理器根据所述第一触发信号和所述第二触发信号控制所述开关电路闭合。
优选的,所述电子烟盒内部还设置第一温度传感器和第二温度传感器,且所述第一温度传感器和所述第二温度传感器均与所述微处理器电连接;
所述微处理器用于通过所述第一温度传感器获取所述半导体制冷片的所述第一侧面的制冷温度,以使所述微处理器确定所述制冷温度是否位于第一预设温度范围内,且若所述制冷温度小于所述第一预设温度范围的最小值时,所述微处理器控制所述开关电路断开,所述第一预设温度范围为防止所述雾化器内烟油漏出的温度范围;
所述微处理器还用于通过所述第二温度传感器获取所述半导体制冷片的所述第二侧面的散热温度,以使所述微处理器确定所述散热温度是否位于第二预设温度范围,且若所述散热温度大于所述第二预设温度范围的最大值时,所述微处理器控制所述开关电路断开,所述第二预设温度范围为防止所述盒体烫手的温度范围。
优选的,所述第一预设温度范围为15℃至25℃之间,所述第二预设温度 范围为25℃至65℃之间。
优选的,所述电子烟盒内部还设置有第一信号放大器和第二信号放大器,且所述第一信号放大器分别和所述第一温度传感器和所述微处理器电连接,所述第二信号放大器分别和所述第二温度传感器和所述微处理器电连接;
所述第一信号放大器用于将所述第一温度传感器输出的信号放大后输入给所述微处理器,所述第二信号放大器用于将所述第二温度传感器输出的信号放大后输入给所述微处理器。
优选的,所述开关电路为三极管或场效应管。
优选的,所述盒体靠近所述盒盖的端口处还设置有显示模块,且所述显示模块与所述微处理器电连接,以使所述微处理器用于通过所述显示模块显示所述第一温度传感器获取到的所述半导体制冷片的所述第一侧面的制冷温度,所述微处理器还用于通过所述显示模块显示所述第二温度传感器获取到的所述半导体制冷片的所述第二侧面的散热温度。
优选的,所述盒盖可转动的铰接于所述盒体。
优选的,所述插槽包括,用于插设固定雾化器的第一子插槽以及用于插设固定电子烟的第二子插槽;
所述电子烟盒内部还设置有用于插设固定电池杆的凹腔;
所述第一子插槽、所述第二子插槽和所述凹腔沿所述电子烟盒的径向依次并列设置,且所述第一子插槽为多个。
优选的,所述凹腔远离所述盒盖的端部内设置有充电电极,以使所述电池杆插设在所述凹腔内时,所述充电电极分别与所述电池杆以及所述电池电连接,以使所述电池为所述电池杆充电。
优选的,所述插槽远离所述盒盖的端部内设置有由弹性材质制成的夹紧件。
优选的,穿设所述盒体远离所述盒盖的端部设置有USB接口,且所述USB接口与所述微处理器电连接,所述微处理器还用于若所述USB接口接有外电源,则所述微处理器通过所述外电源为所述电池充电。
本实用新型所提供的电子烟盒内部设置有用于收容雾化器的插槽及用于调节插槽内温度的半导体制冷片;所述电子烟盒还设置有用于检测所述插槽内 是否插设有所述雾化器的检测单元,所述电子烟盒内部还设置有电池,以及分别与所述检测单元、所述电池和所述半导体制冷片电连接的微处理器,且所述微处理器和所述半导体制冷片之间还电连接设置有开关电路,所述微处理器用于若通过所述检测单元确定所述雾化器插设在所述插槽内,则所述微处理器控制所述开关电路闭合,以使所述电池为所述半导体制冷片供电。采用本实用新型所提供的电子烟盒的优势在于,因所述半导体制冷片在通电时对雾化器进行制冷,则使得电子烟盒在外界温度变化时,不会在所述插槽内外形成压差,从而使得雾化器的烟油存储腔体内的烟油不会因为电子烟盒内外气压的变化而泄漏,避免了泄漏的烟油损害电池杆情况的发生,而且使得雾化器所存储的烟油能够有效的保障在15-25℃之间,从而有效的保障了烟油的保质期,避免用户抽吸到变质的烟油,从而的保障了用户抽吸烟雾的口感以及健康。
附图说明
图1所示为本实用新型所提供的电子烟盒的一种较佳实施例正面剖示图;
图2所示为本实用新型所提供的温度控制电路的一种较佳实施例电路连接结构示意图;
图3所示为本实用新型所提供的电子烟盒的另一种较佳实施例正面剖示图;
图4所示为本实用新型所提供的电子烟盒的一种较佳实施例侧面局部剖示图;
图5所示为本实用新型所提供的温度控制电路的另一种较佳实施例电路连接结构示意图;
图6所示为本实用新型所提供的电子烟盒的另一种较佳实施例正面剖示图;
图7所示为本实用新型所提供的温度控制电路的另一种较佳实施例电路连接结构示意图;
图8所示为本实用新型所提供的温度控制电路的另一种较佳实施例电路连接结构示意图。
具体实施方式
本实施例提供了一种能够有效的防止烟油泄漏而且能够保障烟油保质期的电子烟盒;
以下结合图1所示对本实施例所提供的电子烟盒的具体结构进行详细说明:
所述电子烟盒具体包括:
盒体100;
其中,本实施例对所述盒体100的具体形状不做限定,可为规则的形状,例如长方体,正方体等;本实施例所示的盒体100还可为非规则形状;
本实施例以所述盒体100为长方体为例进行说明;
盖设在所述盒体开口上的盒盖101;
本实施例对所述盒盖101具体是如何盖设在所述盒体100上的不做限定,例如所述盒盖101可铰接于所述盒体开口上,以使所述盒盖101以所述盒体开口的一端为中心沿所述烟盒的径向进行自由旋转,当所述盒盖101完全转动至完全覆盖所述盒体开口上的位置时,则所述盒盖101盖设在所述盒体开口上,还例如,所述盒盖101和所述盒体100可拆卸连接,具体可为螺纹连接,插拔连接或通过磁铁进行磁性连接等等。
所述盒体100内部设置有用于收容雾化器的插槽102;
即在所述盒体100内开设有用于收容雾化器的插槽102,且所述插槽102的槽口延伸至所述盒体开口,以使当所述盒盖101离开所述盒体开口上时,用户可通过所述插槽102的槽口将雾化器插入。
本实施例所示的插槽102可用于直接插设固定单个的雾化器,所述插槽102还可用于插设固定已安装有雾化器的电子烟;
本实施例对所述插槽102的具体数目不做限定,可为一个或多个,较佳的为便于用户使用,则本实施例以所述插槽102的数量为多个进行举例说明;
本实施例对多个所述插槽102之间的排布设置方式不做限定,如图1所示,本实施例以各所述插槽102沿所述电子烟盒的径向排布为例,不做限定,还例如,所述盒体100内设置有多组插槽102,每组内的各插槽102的轴心位于同一直线上,相邻两组内的各插槽102的轴心位于两条平行的直线上。
用于调节插槽内温度的半导体制冷片103;
其中,半导体制冷片也叫热电制冷片,其可靠性高,无需制冷剂,从而有效的避免了制冷剂所带来的污染。其工作原理是,当直流电通过半导体制冷片,则使得半导体制冷片的一侧吸收热量,另一侧放出热量,可以实现制冷的目的。
因电子烟盒在外界温度变化时,电子烟盒内的雾化器内部用于存储烟油的烟油存储腔体的内外气压会对应的产生变化,进而导致烟油存储腔体所存储的烟油在气压的作用下溢出,从而产生雾化器漏油现象,给用户带来不便;
而本实施例中在电子烟盒内部设置有半导体制冷片103,从而使得电子烟盒在外界温度变化时,不会在所述插槽102内外形成压差,从而使得雾化器的烟油存储腔体内的烟油不会因为电子烟盒内外气压的变化而泄漏,避免了泄漏的烟油损害电池杆情况的发生。
又因,一般烟油的保存温度为15-25℃,而大多时间的环境温度高于25℃,环境温度过高就会自然影响电子烟盒内的温度,从而影响烟油的保质期;
而本实施例中因采用所述半导体制冷片103,则使得半导体制冷片103能够为雾化器制冷,从而使得雾化器所存储的烟油能够有效的保障在15-25℃之间,从而有效的保障了烟油的保质期,避免用户抽吸到变质的烟油,从而的保障了用户抽吸烟雾的口感以及健康。
本实施例中对所述半导体制冷片103的具体设置位置不做限定,只要位于所述电子烟盒内的半导体制冷片103能够有效的为雾化器进行制冷即可。
以下结合图1和图2所示对所述电子烟盒进行详细说明,图2所示为本实用新型所提供的温度控制电路的电路连接结构示意图;
所述电子烟盒还设置有用于检测所述插槽102内是否插设有所述雾化器的检测单元201;
本实施例对所述检测单元201不做限定,只要雾化器插设在所述插槽102内时所述检测单元201能够感应并对应生成触发信号即可。
所述电子烟盒内部还设置有电池202;
以及分别与所述检测单元201、所述电池202和所述半导体制冷片103电连接的微处理器203;
本实施例对所述电池202和所述微处理器203在所述电子烟盒内部的具体 设置位置不做限定,只要所述检测单元201、所述电池202和所述半导体制冷片103与所述微处理器203电连接即可。
且所述微处理器203和所述半导体制冷片103之间还电连接设置有开关电路204,其中,所述开关电路204为三极管或场效应管。
所述微处理器203用于若通过所述检测单元201确定所述雾化器插设在所述插槽102内,则所述微处理器203控制所述开关电路204闭合,以使所述电池202为所述半导体制冷片103供电,进而使得所述半导体制冷片103为所述雾化器制冷。
实施例二,本实施例对所述电子烟盒的具体结构进行进一步的详细说明:以下结合图3所示对所述电子烟盒的具体结构进行进一步的详细说明,其中,图3所示为本实用新型所提供的电子烟盒的另一种较佳实施例正面剖示图;
为提升电子烟盒结构的稳定性以及易于散热,则本实施例所示的电子烟盒的所述盒体304由金属材质制成;
由图3所示,本实施例所示的所述插槽包括,用于插设固定雾化器的第一子插槽301以及用于插设固定电子烟的第二子插槽302;
较佳的,本实施例还设置有用于插设固定电池杆的凹腔303;
所述第一子插槽301、所述凹腔303和所述第二子插槽302沿所述电子烟盒的径向依次并列设置;
较佳的,为提升电子烟盒放置的雾化器的数量,则所述第一子插槽301为多个。
更佳的,所述凹腔303远离所述盒盖的端部内设置有充电电极308,以使所述电池杆插设在所述凹腔303内时,所述充电电极308分别与所述电池杆以及所述电池307电连接,以使所述电池307为所述电池杆充电。
更佳的,所述第一子插槽301和所述第二子插槽302远离所述盒盖的端部内设置有由弹性材质制成的夹紧件,以使所述雾化器通过所述夹紧件稳固的插设在所述第一子插槽301内,以使所述电子烟通过所述夹紧件稳固的插设在所述第二子插槽302内。
需明确的是,本实施例对所述插槽的具体设置方式为举例进行说明,不做限定。
进一步的,如图3所示,所述盒体304和所述插槽之间设置有由隔热材质制成的保温层305;
具体的,在所述第一子插槽301设置有用于为雾化器散热的半导体制冷片306,在所述第二子插槽302内设置有用于为已安装在电子烟上的雾化器散热的半导体制冷片306;
更具体的,所述保温层305镂空开设的区域为目标区域;
其中,所述目标区域位于所述雾化器和所述盒体304之间,所述保温层305的目标区域与所述雾化器对应设置,且所述目标区域大于或等于所述雾化器侧面的面积;
更具体的,所述半导体制冷片306穿设所述保温层305的目标区域设置;
如图4所示,采用上述设置方式,以使穿设在所述目标区域的所述半导体制冷片306的第一侧面靠近所述雾化器309,所述半导体制冷片306的第二侧面穿过所述目标区域与所述盒体304相抵接,使得所述电池307为所述半导体制冷片306供电时,所述半导体制冷片306的所述第一侧面制冷,以使所述雾化器309温度降低,所述半导体制冷片306的所述第二侧面通过所述盒体304散热,从而保证所述半导体制冷片306工作的顺利进行。
且本实施例采用所述保温层305的优势在于,能够有效的保障所述半导体制冷片306的所述第一侧面制冷效果,进一步的避免所述雾化器内外之间产生压差,从而降低了烟油泄漏的可能。
又因,本实施例中,所述盒体304为金属材质制成,则使得所述半导体制冷片306制冷时所散发的热量能够及时的撒热,避免热量在电子烟盒内部累积。
本实施例对具体如何触发所述半导体制冷片306的方式进行举例说明:
本实施例所示的触发所述半导体制冷片306工作的方式有三种:
第一种:本种触发方式的温度控制电路请见图2所示;
所述检测单元201为设置在所述插槽内的光电传感器;
本实施例对设置在所述插槽内的所述光电传感器具体位置不做限定,只要雾化器插设在所述插槽内时,所述光电传感器能够感应到并对应生成第一触发信号即可。
即所述光电传感器在检测到所述雾化器插设在所述插槽内时生成第一触发信号,以使所述微处理器203根据所述第一触发信号控制所述开关电路204闭合,进而使得所述半导体制冷片103的所述第一侧面制冷,所述半导体制冷片103的所述第二侧面通过所述盒体散热。
第二种;本种触发方式的温度控制电路请见图2所示;
所述检测单元201为穿设于所述盒体的第一按键开关;
本实施例对所述第一按键开关在所述盒体上具体的设置位置不做限定,只要便于用户按压且与微处理器203电连接即可。
所述第一按键开关在检测到用户的按压操作后对应生成所述第一触发信号,以使所述微处理器203根据所述第一触发信号控制所述开关电路204闭合,以使所述电池202为所述半导体制冷片103供电,进而使得所述半导体制冷片103的所述第一侧面制冷,所述半导体制冷片103的所述第二侧面通过所述盒体散热。
第三种:本种触发方式的温度控制电路请见图5所示,本种设置方式的电子烟盒的正面剖示图请见图6所示;
所述盒体601靠近所述盒盖602的端口处还设置有第二按键开关603;
具体的,图6所示的所述盒盖602通过转轴604铰接于所述盒体601上,且所述盒盖602盖设在所述盒体601开口上时,所述转轴604按压所述第二按键开关603,且所述盒盖602沿所述电子烟盒的径向转动离开所述盒体601开口上时,所述转轴604与所述第二按键开关603相脱离。
本实施例中,如图6所示,所述盒盖602盖设在所述盒体601开口上时,所述第二按键开关603被所述转轴604按压,其电路连接结构示意图请见图5所示,所述第二按键开关603用于在所述盒盖602盖设在所述盒体601开口上时对应生成第二触发信号;
本实施例中,若所述微处理器403确定所述检测单元401生成第一出发信号(详见上述第一种触发方式和第二种触发方式),且所述微处理器403确定所述第二按键开关603生成第二触发信号,则所述微处理器403即可根据所述第一触发信号和所述第二触发信号控制所述开关电路404闭合,以使所述电池402为所述半导体制冷片405供电,进而使得所述半导体制冷片405的所述第 一侧面制冷,所述半导体制冷片405的所述第二侧面通过所述盒体601散热。
即本实施例中,所述检测单元401感应到所述雾化器插设在所述插槽内,且所述盒盖602盖设在所述盒体601开口上时,所述微处理器403才控制所述开关电路404闭合,避免盒盖602打开时,所述半导体制冷片405工作所带来的不必要的能量的浪费;
第四种:本种触发方式的温度控制电路请见图7所示;
所述电子烟盒内部还设置第一温度传感器701和第二温度传感器702,且所述第一温度传感器701和所述第二温度传感器702均与所述微处理器703电连接;
本实施例对所述第一温度传感器701的具体设置位置不做限定,只要所述第一温度传感器701能够检测到所述半导体制冷片704的所述第一侧面的制冷温度即可;
本实施例对所述第二温度传感器702的具体设置位置不做限定,只要所述第二温度传感器702能够检测到所述半导体制冷片704的所述第二侧面的散热温度即可。
所述微处理器703用于通过所述第一温度传感器701获取所述半导体制冷片704的所述第一侧面的制冷温度,以使所述微处理器703通过所述第一温度传感器701即可确定所述制冷温度是否位于第一预设温度范围内;
所述第一预设温度范围为防止所述雾化器内烟油漏出的温度范围;
且若所述微处理器703确定所述制冷温度小于所述第一预设温度范围的最小值时,所述微处理器703控制所述开关电路705断开,以防止制冷温度过低使得所述雾化器因产生压差而漏油。
本实施例中,所述第一预设温度范围较佳的为15℃至25℃之间,即所述微处理器703通过所述第一温度传感器701确定所述半导体制冷片704的所述第一侧面的制冷温度在15℃至25℃之间时,则所述微处理器703使得所述开关电路705导通,一旦所述微处理器703通过所述第一温度传感器701确定所述半导体制冷片704的制冷温度小于15℃时,则控制所述开关电路705断开。
所述微处理器703还用于通过所述第二温度传感器702获取所述半导体制冷片704的所述第二侧面的散热温度,以使所述微处理器703确定所述散热温 度是否位于第二预设温度范围;
且若所述散热温度大于所述第二预设温度范围的最大值时,所述微处理器703控制所述开关电路705断开;
所述第二预设温度范围为防止所述盒体烫手的温度范围。
本实施例中,所述第二预设温度范围较佳的为25℃至65℃之间,即所述微处理器703通过所述第二温度传感器702确定所述半导体制冷片704的所述第二侧面的散热温度在25℃至65℃之间时,则所述微处理器703使得所述开关电路705导通,一旦所述微处理器703通过所述第二温度传感器702确定所述半导体制冷片704的散热温度大于25℃时,则控制所述开关电路705断开,防止烟盒烫手。
较佳的,本实施例还提供了如图8所示的温度控制电路,通过图8所示的温度控制电路,能够提升对散热温度和对制冷温度检测的精确性;
具体如图8所示,所述电子烟盒内部还设置有第一信号放大器801和第二信号放大器802,且所述第一信号放大器801分别和所述第一温度传感器803和所述微处理器804电连接,所述第二信号放大器802分别和所述第二温度传感器805和所述微处理器804电连接;
所述第一信号放大器801用于将所述第一温度传感器803输出的信号放大后输入给所述微处理器804,从而使得所述微处理器804能够更为精确的确定所述半导体制冷片805的所述第一侧面的制冷温度;
所述第二信号放大器802用于将所述第二温度传感器805输出的信号放大后输入给所述微处理器804,从而使得所述微处理器804能够更为精确的确定所述半导体制冷片805的所述第二侧面的散热温度。
本实施例对所述电子烟盒的较佳结构进行进一步的详细说明:
以图6所示为例,所述盒体601靠近所述盒盖602的端口处还设置有显示模块605;
具体电连接结构请见图8所示,所述显示模块605与所述微处理器804电连接,以使所述微处理器804用于通过所述显示模块605显示所述第一温度传感器803获取到的所述半导体制冷片806的所述第一侧面的制冷温度;
所述微处理器804还用于通过所述显示模块605显示所述第二温度传感器 805获取到的所述半导体制冷片806的所述第二侧面的散热温度。
较佳的,穿设所述盒体601远离所述盒盖602的端部设置有USB接口606,其电连接结构请见图8所示,所述USB接口606与所述微处理器804电连接;
所述微处理器804还用于若所述USB接口606接有外电源,则所述微处理器804通过所述外电源为所述电池402充电。
如图6所示,所述插槽607远离所述盒盖602的端部内设置有由弹性材质制成的夹紧件608,以使雾化器能够通过所述夹紧件608稳固的插设在所述插槽607内。
所属领域的技术人员可以清楚地了解到,为描述的方便和简洁,上述描述的系统,装置和单元的具体工作过程,可以参考前述方法实施例中的对应过程,在此不再赘述。
以上实施例仅用以说明本发明的技术方案,而非对其限制;尽管参照前述实施例对本发明进行了详细的说明,本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本发明各实施例技术方案的精神和范围。

Claims (14)

  1. 一种电子烟盒,其特征在于,包括盒体以及盖设在所述盒体开口上的盒盖,所述盒体内部设置有用于收容雾化器的插槽及用于调节插槽内温度的半导体制冷片;
    所述电子烟盒还设置有用于检测所述插槽内是否插设有所述雾化器的检测单元,所述电子烟盒内部还设置有电池,以及分别与所述检测单元、所述电池和所述半导体制冷片电连接的微处理器,且所述微处理器和所述半导体制冷片之间还电连接设置有开关电路,所述微处理器用于若通过所述检测单元确定所述雾化器插设在所述插槽内,则所述微处理器控制所述开关电路闭合,以使所述电池为所述半导体制冷片供电。
  2. 根据权利要求1所述的电子烟盒,其特征在于,所述盒体由金属材质制成,且所述盒体和所述插槽之间设置有由隔热材质制成的保温层,所述半导体制冷片穿设所述保温层的目标区域设置,所述目标区域位于所述雾化器和所述盒体之间,以使所述半导体制冷片的第一侧面靠近所述雾化器,所述半导体制冷片的第二侧面与所述盒体相抵接,使得所述电池为所述半导体制冷片供电时,所述半导体制冷片的所述第一侧面制冷,所述半导体制冷片的所述第二侧面通过所述盒体散热。
  3. 根据权利要求1所述的电子烟盒,其特征在于,所述检测单元为设置在所述插槽内的光电传感器,所述光电传感器在检测到所述雾化器插设在所述插槽内时生成第一触发信号,以使所述微处理器根据所述第一触发信号控制所述开关电路闭合;
    或,
    所述检测单元为穿设于所述盒体的第一按键开关,所述第一按键开关在检测到用户的按压操作后对应生成所述第一触发信号,以使所述微处理器根据所述第一触发信号控制所述开关电路闭合。
  4. 根据权利要求3所述的电子烟盒,其特征在于,所述盒体靠近所述盒盖的端口处还设置有第二按键开关,以使所述盒盖盖设在所述盒体开口上时,所述第二按键开关被按压,所述第二按键开关用于在所述盒盖盖设在所述盒体开口上时对应生成第二触发信号,以使所述微处理器根据所述第一触发信号和 所述第二触发信号控制所述开关电路闭合。
  5. 根据权利要求2所述的电子烟盒,其特征在于,所述电子烟盒内部还设置第一温度传感器和第二温度传感器,且所述第一温度传感器和所述第二温度传感器均与所述微处理器电连接;
    所述微处理器用于通过所述第一温度传感器获取所述半导体制冷片的所述第一侧面的制冷温度,以使所述微处理器确定所述制冷温度是否位于第一预设温度范围内,且若所述制冷温度小于所述第一预设温度范围的最小值时,所述微处理器控制所述开关电路断开,所述第一预设温度范围为防止所述雾化器内烟油漏出的温度范围;
    所述微处理器还用于通过所述第二温度传感器获取所述半导体制冷片的所述第二侧面的散热温度,以使所述微处理器确定所述散热温度是否位于第二预设温度范围,且若所述散热温度大于所述第二预设温度范围的最大值时,所述微处理器控制所述开关电路断开,所述第二预设温度范围为防止所述盒体烫手的温度范围。
  6. 根据权利要求5所述的电子烟盒,其特征在于,所述第一预设温度范围为15℃至25℃之间,所述第二预设温度范围为25℃至65℃之间。
  7. 根据权利要求5或6所述的电子烟盒,其特征在于,所述电子烟盒内部还设置有第一信号放大器和第二信号放大器,且所述第一信号放大器分别和所述第一温度传感器和所述微处理器电连接,所述第二信号放大器分别和所述第二温度传感器和所述微处理器电连接;
    所述第一信号放大器用于将所述第一温度传感器输出的信号放大后输入给所述微处理器,所述第二信号放大器用于将所述第二温度传感器输出的信号放大后输入给所述微处理器。
  8. 根据权利要求1所述的电子烟盒,其特征在于,所述开关电路为三极管或场效应管。
  9. 根据权利要求5所述的电子烟盒,其特征在于,所述盒体靠近所述盒盖的端口处还设置有显示模块,且所述显示模块与所述微处理器电连接,以使所述微处理器用于通过所述显示模块显示所述第一温度传感器获取到的所述半导体制冷片的所述第一侧面的制冷温度,所述微处理器还用于通过所述显示 模块显示所述第二温度传感器获取到的所述半导体制冷片的所述第二侧面的散热温度。
  10. 根据权利要求1所述的电子烟盒,其特征在于,所述盒盖可转动的铰接于所述盒体。
  11. 根据权利要求1所述的电子烟盒,其特征在于,所述插槽包括,用于插设固定雾化器的第一子插槽以及用于插设固定电子烟的第二子插槽;
    所述电子烟盒内部还设置有用于插设固定电池杆的凹腔;
    所述第一子插槽、所述第二子插槽和所述凹腔沿所述电子烟盒的径向依次并列设置,且所述第一子插槽为多个。
  12. 根据权利要求11所述的电子烟盒,其特征在于,所述凹腔远离所述盒盖的端部内设置有充电电极,以使所述电池杆插设在所述凹腔内时,所述充电电极分别与所述电池杆以及所述电池电连接,以使所述电池为所述电池杆充电。
  13. 根据权利要求1所述的电子烟盒,其特征在于,所述插槽远离所述盒盖的端部内设置有由弹性材质制成的夹紧件。
  14. 根据权利要求1所述的电子烟盒,其特征在于,穿设所述盒体远离所述盒盖的端部设置有USB接口,且所述USB接口与所述微处理器电连接,所述微处理器还用于若所述USB接口接有外电源,则所述微处理器通过所述外电源为所述电池充电。
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