WO2015127671A1 - 电子烟充电座、电子烟盒及其使用方法 - Google Patents

电子烟充电座、电子烟盒及其使用方法 Download PDF

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Publication number
WO2015127671A1
WO2015127671A1 PCT/CN2014/072754 CN2014072754W WO2015127671A1 WO 2015127671 A1 WO2015127671 A1 WO 2015127671A1 CN 2014072754 W CN2014072754 W CN 2014072754W WO 2015127671 A1 WO2015127671 A1 WO 2015127671A1
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WO
WIPO (PCT)
Prior art keywords
electronic cigarette
pin
charging
positive electrode
trigger
Prior art date
Application number
PCT/CN2014/072754
Other languages
English (en)
French (fr)
Inventor
刘秋明
Original Assignee
吉瑞高新科技股份有限公司
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 吉瑞高新科技股份有限公司 filed Critical 吉瑞高新科技股份有限公司
Priority to CN201480075181.2A priority Critical patent/CN105992525B/zh
Priority to US15/122,166 priority patent/US9974332B2/en
Priority to PCT/CN2014/072754 priority patent/WO2015127671A1/zh
Publication of WO2015127671A1 publication Critical patent/WO2015127671A1/zh

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Classifications

    • 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
    • H02J7/0042Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries characterised by the mechanical construction
    • H02J7/0044Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries characterised by the mechanical construction specially adapted for holding portable devices containing batteries
    • 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
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D25/00Details of other kinds or types of rigid or semi-rigid containers
    • B65D25/02Internal fittings
    • B65D25/10Devices to locate articles in containers
    • B65D25/108Devices, e.g. plates, presenting apertures through which the articles project
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D43/00Lids or covers for rigid or semi-rigid containers
    • B65D43/14Non-removable lids or covers
    • B65D43/16Non-removable lids or covers hinged for upward or downward movement
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D85/00Containers, packaging elements or packages, specially adapted for particular articles or materials
    • B65D85/70Containers, packaging elements or packages, specially adapted for particular articles or materials for materials not otherwise provided for

Definitions

  • the invention relates to the field of daily electronic products, in particular to an electronic cigarette charging base, an electronic cigarette case having the same, and a method of using the electronic cigarette case.
  • non-rechargeable disposable electronic cigarettes As a safe and healthy alternative to tobacco, e-cigarettes are increasingly used in life.
  • the existing electronic cigarettes are generally divided into two categories: non-rechargeable disposable electronic cigarettes and rechargeable non-disposable electronic cigarettes.
  • the advantages of disposable electronic cigarettes are that they are used up and down, and the use is simple and convenient.
  • the advantage of non-disposable e-cigarettes is that they can be reused multiple times, which is less expensive than disposable e-cigarettes.
  • the non-disposable electronic cigarette is exhausted, it needs to be charged before it can be used again.
  • the electronic cigarette is connected to a fixed power source, such as a mains socket or a car battery, each time charging, it is obvious that the charging operation is troublesome, and it is inconvenient for the user to carry the electronic cigarette at any time, which is easy for the user to think about. When you want to smoke, you can't use e-cigarette immediately, reducing the user experience.
  • a fixed power source such as a mains socket or a car battery
  • an electronic cigarette case which is easy to carry and can be used for charging the electronic cigarette appears on the market.
  • the electronic cigarette case has a shape and size close to that of a conventional cigarette case, and is internally provided with a battery and a charging stand structure for establishing an electrical connection between the electronic cigarette and the battery.
  • the electronic cigarette When the electronic cigarette is stored inside the electronic cigarette case, it can be connected to the battery through the charging stand structure, so that the electronic cigarette is charged by the battery. In this way, as long as the user carries the electronic cigarette case with him, the electronic cigarette can be installed therein for continuous charging, and the electronic cigarette can be taken at any time.
  • an existing electronic cigarette case 100 with a charging function mainly includes a bottom box 110 , a cover 120 , a bracket 130 , a battery 140 , a circuit board 150 , and a charging stand 160 .
  • the bottom case 110 and the cover 120 are made of a hard material, and the two can be connected to each other in a relatively open and close manner to form a case for accommodating and protecting the electronic cigarette, and the appearance and size of the case can simulate the existing one.
  • the bracket 130 includes a main frame body 131 and a fixing piece 132.
  • the main frame body 131 is fixedly mounted inside the bottom case 110, and the fixing piece 132 is fixedly mounted at the opening of the bottom case 110 for collectively supporting the electronic storage.
  • the electronic cigarette in the cigarette case 100 and other components of the electronic cigarette case 100 prevent loosening.
  • the battery 140, the circuit board 150 and the charging stand 160 are both mounted in the bottom case 110 and further fixed by the main frame body 131, and the battery 140 is electrically connected to the charging stand 160 through the circuit board 150.
  • the battery rod of the electronic cigarette can be inserted into the charging base 160 and electrically connected to the charging base 160, so that the battery 140 can pass through the circuit board 150 and the charging stand 160.
  • the charging stand 160 includes a base 161 , a locking ring 162 , a positive elastic piece 163 , a negative elastic piece 164 , and a trigger elastic piece 165 .
  • the base 161 and the locking ring 162 are both fixed on the main frame body 131, and the positive elastic piece 163, the negative elastic piece 164 and the trigger elastic piece 165 are all embedded on the base 161.
  • the positive electrode elastic piece 163, the negative electrode elastic piece 164, and the trigger elastic piece 165 are all made of a conductive material such as metal, and each has a fixing portion and an elastic portion.
  • the fixing portions of the three are fixed and pressed on the circuit board 150 by screws, and the fixing portion of the positive electrode elastic piece 163 is connected to the positive electrode of the battery 140 through the circuit board 150, and the fixing portion of the triggering elastic piece 165 is connected to the battery 140 through the circuit board 150.
  • the elastic portions of the three members extend into the interior of the base 161, wherein the elastic portion of the positive electrode elastic piece 163 is disposed on one side of the central axis of the locking ring 162, and extends a certain length in a direction parallel to the central axis of the locking ring 162. .
  • the elastic portion of the negative elastic piece 164 is disposed at a position facing the ring hole of the locking ring 162, and the elastic portion of the trigger elastic piece 165 is substantially parallel to the elastic portion of the negative electrode elastic piece 164, and is at the bottom with respect to the elastic portion of the negative electrode elastic piece 164.
  • a common non-disposable electronic cigarette has a rechargeable battery rod, and the battery rod has a positive terminal and a negative terminal, and the positive terminal and the negative terminal can have various existing structural configurations.
  • the positive terminal 191a of the battery rod 191 is disposed on the side, and the negative terminal 191b is disposed at the end.
  • Such a terminal construction belongs to the prior art, and the specific structure and implementation method thereof need not be described here.
  • the battery rod 191 of the electronic cigarette 190 can be inserted into the locking ring 162.
  • the end of the battery rod 191 provided with the negative terminal 191b is abutted against the elastic portion of the negative elastic piece 164 through the locking ring 162, thereby establishing an electrical connection with the negative elastic piece 164.
  • the elastic portion of the negative elastic piece 164 is elastically deformed under the pressure of the battery rod 191, bent and abutted against the elastic portion of the triggering elastic piece 165, so that the negative electrode terminal 191b of the battery rod 191
  • An electrical connection is established between the negative electrode tab 164, the triggering elastic piece 165, and the circuit board 150 and the negative electrode of the battery 140.
  • the side surface of the battery rod 191 is in contact with the elastic portion of the positive electrode elastic piece 163, and the positive electrode terminal 191a is abutted against the elastic portion of the positive electrode elastic piece 163, and is connected to the positive electrode of the battery 140 through the positive electrode elastic piece 163 and the circuit board 150.
  • the battery 140 and the battery rod 191 of the electronic cigarette 190 constitute a charging circuit, and the battery 140 can be used to charge the electronic cigarette 190 under the control of the circuit board 150.
  • the battery rod 191 is fixed in the locking ring 162 by means of a conventional fixing method such as snapping, clamping, etc., so that the positive terminal 191a of the battery rod 191 and the positive electrode elastic piece 163 are kept in contact with each other, and the battery is
  • the negative electrode terminal 191b of the rod 191 maintains the state in which the negative elastic piece 164 is pressed against the trigger elastic piece 165, so that the electronic cigarette 190 can be continuously charged until the electronic cigarette 190 is taken out from the electronic cigarette case 100.
  • the above-mentioned conventional electronic cigarette case 100 generally has the following disadvantages: the positive electrode elastic piece 163, the negative electrode elastic piece 164, the trigger elastic piece 165 and the base 161 have a complicated card structure, which is difficult to manufacture and assemble; and the positive electrode elastic piece 163 and the negative electrode elastic piece 164 And the fixing portion of the triggering elastic piece 165 is fixed by screws and pressed on the circuit board 150, and is always subjected to the screwing pressure, and the fixing portions are generally inelastic, and are inelastic deformation easily after being used for a long time.
  • the inelastic deformation may cause a contact failure between the positive elastic piece 163 and the circuit board 150, between the triggering elastic piece 165 and the circuit board 150, or between the triggering elastic piece 165 and the negative electrode elastic piece 164, and affect the charging function of the electronic cigarette case 100.
  • the negative elastic piece 164 and the trigger elastic piece 165 may excessively bend under the pressure of the battery rod 191 to contact the positive elastic piece 163, which may The battery 140 is short-circuited, which not only fails to charge the electronic cigarette 190, but also causes serious damage to the internal electronic components of the electronic cigarette case 100.
  • an electronic cigarette charging stand capable of charging an electronic cigarette while avoiding contact failure and short circuit of the charging circuit, an electronic cigarette case having the electronic cigarette charging stand, and a method of using the electronic cigarette case.
  • the present invention provides an electronic cigarette charging base, the charging base includes a positive electrode and a negative electrode for electrically connecting the electronic cigarette to the positive electrode and the negative electrode of the battery, respectively, thereby forming a positive electrode and a negative elastic pin of the charging circuit.
  • the needle and the negative electrode pin are both in a column shape, and the positive electrode pin includes a first electrode that can elastically expand and contract along the axial direction of the positive electrode pin and abut on the electronic cigarette to be electrically connected to the electronic cigarette. a positive connecting end, a second positive connecting end movably connected to the first positive connecting end, and a first elastic mechanism respectively supporting the first positive connecting end and the second positive connecting end;
  • the negative elastic pin includes a first negative electrode connecting end which is elastically stretchable in the axial direction of the negative electrode pin and is electrically connected to the electronic cigarette and electrically connected to the electronic cigarette, and is connected to the first negative electrode.
  • the second negative connection end of the end movable connection and the second elastic mechanism respectively supported on the first negative connection end and the second negative connection end.
  • the electronic cigarette charging base further includes a base, the base is provided with an insertion slot for inserting the electronic cigarette, a bottom of the insertion slot is provided with a pin insertion hole, and the positive electrode pin and the negative electrode A pin is inserted into the pin socket and fixed to the base.
  • the electronic cigarette charging base further includes a sub-circuit board including a positive electrode pad electrically connected to a positive electrode of the battery and a negative electrode pad electrically connected to a negative electrode of the battery;
  • the second positive electrode connection end can be elastically stretched and contracted along the axial direction of the positive electrode pin, and is electrically connected to the positive electrode pad to be electrically connected to the positive electrode pad, and the second negative electrode connection end can be along The axial elastic expansion and contraction of the negative electrode pin is applied to the negative electrode pad to be electrically connected to the negative electrode pad.
  • the electronic cigarette charging base further comprises a charging control circuit for electrically connecting the electronic cigarette with a charging trigger circuit for starting the charging control circuit, thereby controlling the battery by using the charging trigger circuit a triggering pin for charging the electronic cigarette
  • the triggering pin is columnar, and includes an elastically elastically stretchable along the axial direction of the triggering pin and abutting on the electronic cigarette and the electronic cigarette a first trigger connection end of the connection, a second trigger connection end movably connected to the first trigger connection end, and a second end of the first trigger connection end and the second trigger connection end respectively Three elastic mechanisms.
  • the electronic cigarette charging base further includes a base, the base is provided with an insertion slot for inserting the electronic cigarette, a bottom of the insertion slot is provided with a pin insertion hole, and the positive electrode pin and the negative electrode A bullet pin and the trigger pin are inserted into the pin jack and fixed to the base.
  • the electronic cigarette charging base further includes a sub circuit board including a positive electrode pad electrically connected to a positive electrode of the battery, a negative electrode pad electrically connected to a negative electrode of the battery, and a trigger pad electrically connected to the charging trigger circuit;
  • the second positive connecting end may elastically expand and contract along an axial direction of the positive electrode pin, and abut on the positive electrode pad to be soldered to the positive electrode
  • the second negative electrode connection end is elastically stretchable along the axial direction of the negative electrode pin, and is electrically connected to the negative electrode pad to be electrically connected to the negative electrode pad
  • the second The triggering connection end is elastically stretchable along the axial direction of the triggering pin and is electrically connected to the charging trigger circuit against the trigger pad.
  • the present invention also provides an electronic cigarette case including a bottom case for accommodating electronic cigarette, the electronic cigarette case further comprising a battery for charging the electronic cigarette, and for using the electronic cigarette with the battery An electrically connected charging stand; the battery and the charging stand are fixedly received in the bottom case, and the charging stand includes a positive electrode and a negative electrode for electrically connecting the electronic cigarette to the battery, respectively.
  • the positive elastic pin and the negative elastic pin are both in a column shape
  • the positive elastic pin includes an elastically elastically stretchable along the axial direction of the positive elastic pin and abuts against a first positive terminal connected to the electronic cigarette and electrically connected to the electronic cigarette, a second positive connecting end movably connected to the first positive connecting end, and two ends respectively abutting on the first positive electrode a first elastic mechanism on the connecting end and the second positive connecting end
  • the negative elastic pin includes an elastic elastically stretchable along the axial direction of the negative elastic pin and abutting on the electronic cigarette and the electronic cigarette Connected first negative terminal, and Connecting a first end of said second negative electrode connected to the negative end of the movable connector, and both ends against the second resilient means supported on said first end and a second cathode connected to the negative terminal connection.
  • the electronic cigarette charging base further includes a base, the base is provided with an insertion slot for inserting the electronic cigarette, a bottom of the insertion slot is provided with a pin insertion hole, and the positive electrode pin and the negative electrode A pin is inserted into the pin socket and fixed to the base.
  • the electronic cigarette charging base further includes a sub-circuit board including a positive electrode pad electrically connected to a positive electrode of the battery and a negative electrode pad electrically connected to a negative electrode of the battery;
  • the second positive electrode connection end can be elastically stretched and contracted along the axial direction of the positive electrode pin and electrically connected to the positive electrode pad to be electrically connected to the positive electrode pad, and the second negative electrode connection end can be along The axial elastic expansion and contraction of the negative electrode pin is applied to the negative electrode pad to be electrically connected to the negative electrode pad.
  • the electronic cigarette charging base further comprises a charging control circuit for electrically connecting the electronic cigarette with a charging trigger circuit for starting the charging control circuit, thereby controlling the battery by using the charging trigger circuit a triggering pin for charging the electronic cigarette
  • the triggering pin is columnar, and includes an elastically elastically stretchable along the axial direction of the triggering pin and abutting on the electronic cigarette and the electronic cigarette a first trigger connection end of the connection, a second trigger connection end movably connected to the first trigger connection end, and a second end of the first trigger connection end and the second trigger connection end respectively Three elastic mechanisms.
  • the electronic cigarette charging base further includes a base, the base is provided with an insertion slot for inserting the electronic cigarette, a bottom of the insertion slot is provided with a pin insertion hole, and the positive electrode pin and the negative electrode A bullet pin and the trigger pin are inserted into the pin jack and fixed to the base.
  • the electronic cigarette charging base further includes a sub circuit board including a positive electrode pad electrically connected to a positive electrode of the battery, a negative electrode pad electrically connected to a negative electrode of the battery, and a trigger pad electrically connected to the charging trigger circuit;
  • the second positive connecting end may elastically expand and contract along an axial direction of the positive electrode pin, and abut on the positive electrode pad to be soldered to the positive electrode
  • the second negative electrode connection end is elastically stretchable along the axial direction of the negative electrode pin, and is electrically connected to the negative electrode pad to be electrically connected to the negative electrode pad
  • the second The triggering connection end is elastically stretchable along the axial direction of the triggering pin and is electrically connected to the charging trigger circuit against the trigger pad.
  • the electronic cigarette case further includes a main circuit board, the main circuit board is fixedly received in the bottom case and electrically connected to the battery and the sub circuit board, and the charging trigger circuit is disposed at The main circuit board controls the battery to start and stop charging the electronic cigarette by the charging trigger circuit.
  • the invention also provides a method of using an electronic cigarette case, the method comprising the following steps:
  • the other end of the positive electrode pin is electrically connected to the positive electrode of the built-in battery of the electronic cigarette case, and the other end of the negative electrode pin is electrically connected to the negative electrode of the built-in battery of the electronic cigarette case, thereby electrically connecting the battery rod of the electronic cigarette with the electronic cigarette
  • a charging circuit is established between the built-in batteries of the box;
  • the method further comprises the steps of:
  • the other end of the trigger terminal is electrically connected to the charging trigger circuit of the electronic cigarette case;
  • the charging trigger circuit is used to control the built-in battery of the electronic cigarette case to charge the battery rod of the electronic cigarette.
  • the electronic cigarette charging base provided by the present invention, the electronic cigarette case having the electronic cigarette charging base, and the using method of the electronic cigarette case have the following beneficial effects: in the present invention, a spring pin which can elastically expand and contract in the axial direction is used instead of the existing one.
  • the technical shrapnel establishes an electrical connection between the electronic cigarette and the electronic cigarette case, and the elastic pins need to be simply sleeved in the base of the charging stand, and do not require a complicated card structure, and the assembly method is better than the prior art.
  • the shrapnel is much simpler and helps to simplify the structure of the charging stand.
  • the inelastic portion of the elastic needle is not subjected to any pressing and clamping force, and does not cause inelastic deformation to affect normal use.
  • the plurality of elastic needles are arranged in parallel with each other, and only expand and contract in the axial direction during use, and the elastic needles do not contact each other at all, and the short circuit phenomenon can be completely prevented.
  • FIG. 1 is an exploded perspective view of an existing electronic cigarette case having a charging function.
  • FIG. 2 is a schematic diagram of the appearance of an electronic cigarette case with a charging function according to a first preferred embodiment of the present invention.
  • FIG. 3 is an exploded perspective view of the electronic cigarette case shown in FIG. 2.
  • Fig. 4 is a schematic view showing the assembly of a part of the charging stand of the electronic cigarette case shown in Fig. 2.
  • Fig. 5 is an exploded perspective view showing a part of the charging stand of the electronic cigarette case shown in Fig. 2.
  • Figure 6 is a cross-sectional view of the positive electrode cartridge of the electronic cigarette case shown in Figure 2 .
  • Fig. 7 is a schematic view showing the assembly of the holder, the charging stand and the main circuit board of the electronic cigarette case shown in Fig. 2.
  • FIG. 8 is an exploded perspective view showing a part of a charging stand of an electronic cigarette case having a charging function according to a second preferred embodiment of the present invention.
  • FIG. 9 is an exploded perspective view showing a part of a charging stand of an electronic cigarette case having a charging function according to a third preferred embodiment of the present invention.
  • FIG. 10 is an exploded perspective view showing a main circuit board and a sub-circuit board of an electronic cigarette case having a charging function according to a fourth preferred embodiment of the present invention.
  • the present invention provides an electronic cigarette case 200 having a charging function.
  • the electronic cigarette case 200 includes a bottom case 210 , a cover 220 , a bracket 230 , a battery 240 , a main circuit board 250 , and a charging stand 260 .
  • the bottom case 210 and the cover 220 are made of a hard material, and the two can be connected to each other in a relatively open and close manner to form a case for accommodating and protecting the electronic cigarette, and the appearance and size of the case can simulate the existing one. cigarette boxes.
  • the bracket 230 has a substantially rectangular frame shape and is fixedly mounted inside the bottom case 210 for stably supporting the electronic cigarette stored in the electronic cigarette case 200 and other components of the electronic cigarette case 200 to prevent looseness.
  • a plurality of receiving holes 231 are defined in the side of the bracket 230 adjacent to the opening of the bottom box 210 for inserting and fixing the electronic cigarette.
  • the bracket 230 is further provided with a rotating mechanism (not labeled).
  • the cover 220 is rotatably coupled to the bracket 230 by a rotating mechanism, and is assembled to the bottom case 210 in a relatively openable manner.
  • the structure of the rotating mechanism is prior art, and need not be described here.
  • the battery 240, the main circuit board 250 and the charging stand 260 are all mounted in the bottom case 210 and further fixed by the bracket 230, and the battery 240 is electrically connected to the charging stand 260 through the main circuit board 250.
  • the battery rod of the electronic cigarette can be inserted into the charging stand 260 and electrically connected to the charging stand 260, so that the battery 240 can charge the electronic cigarette through the circuit board 250 and the charging stand 260.
  • the charging stand 260 includes a fixing base 261, a locking ring 262, a positive electrode pin 263, a negative elastic pin 264, a trigger pin 265, and a sub circuit board 266.
  • the outer contour of the locking ring 262 is substantially rectangular parallelepiped, and a circular locking hole 262a is formed in the center for receiving and fixing the battery rod of the electronic cigarette.
  • the fixing base 261 has a substantially rectangular parallelepiped shape and is sized to coincide with the locking ring 262, and a surface of the fixing base 261 is partially recessed to form the insertion groove 261a.
  • the insertion groove 261a is circular, and its position is aligned with the locking hole 262a, and the diameter is also equal to the locking hole 262a. In other embodiments, the insertion groove 261a may have other shapes. Three insertion pins 261b are formed at equal intervals in the bottom of the insertion groove 261a.
  • the shape and size of the positive electrode pin 263, the negative electrode pin 264, and the trigger pin 265 are exactly the same.
  • the positive electrode pin 263 includes a cylindrical positive pin body 263a having a diameter equal to the diameter of the pin insertion hole 261b, and a first positive electrode is respectively disposed at both ends of the positive pin body 263a.
  • the connection end 263b and the second positive connection end 263c are respectively disposed at both ends of the positive pin body 263a.
  • the first positive electrode connection end 263b and the second positive electrode connection end 263c are both cylindrical, and the diameters are smaller than the diameter of the positive electrode pin body 263a, and are respectively mounted on the two ends of the positive electrode pin body 263a coaxially with the positive electrode pin body 263a. . Both the first positive electrode connection end 263b and the second positive electrode connection end 263c can elastically expand and contract along the axial direction of the positive electrode body 263a.
  • FIG. Fig. 6 is a cross-sectional view of the above positive electrode pin 263.
  • the positive pin body 263a is hollow with a first resilient mechanism 263e mounted therein.
  • the first elastic mechanism 263e is a columnar coil spring coaxially received in the positive electrode pin body 263a, and both ends are elastically abutted against the first positive electrode connection end 263b and the second positive electrode connection end 263c, respectively.
  • the first elastic mechanism 263e When the first positive electrode connection end 263b or the second positive electrode connection end 263c is pressed into the positive electrode pin body 263a, the first elastic mechanism 263e is elastically compressed along its own axial direction; when the pressing pressure is released, the first The elastic mechanism 263e rebounds to reset the first positive electrode connection end 263b and the second positive electrode connection end 263c.
  • the first positive electrode connection end 263b and the second positive electrode connection end 263c can elastically expand and contract along the axial direction of the positive electrode body 263a.
  • the first positive connecting end 263b and the second positive connecting end 263c are both made of a conductive material such as metal, and are electrically connected to each other.
  • the specific manner of the electrical connection may also be prior art, for example, using a conductive material.
  • the first elastic mechanism 263e is manufactured, a wire is attached inside the positive electrode pin body 263a, or an electric portion is provided in the positive electrode pin body 263a itself to electrically connect the first positive electrode connection end 263b and the second positive electrode connection end 263c.
  • a positive electrode assembly ring 263d protruding from the outer peripheral surface of the positive electrode pin body 263a is also formed.
  • the outer diameter of the positive electrode retaining ring 263d is larger than the diameter of the pin insertion hole 261b.
  • the negative electrode pin 264 includes a negative electrode pin body 264a, a first negative electrode connection end 264b, a second negative electrode connection end 264c, and a negative electrode assembly ring 264d.
  • the trigger pin 265 includes a trigger pin body 265a, a first trigger connection end 265b, a second trigger connection end 265c, and a trigger assembly ring 265d.
  • the components of the negative electrode pin 264 and the trigger pin 265 are respectively corresponding to the corresponding members of the positive electrode pin 263 (ie, the positive electrode pin body 263a, the first positive electrode connection end 263b, the second positive electrode connection end 263c, and the positive electrode assembly ring 263d). ) is exactly the same, so there is no need to repeat the explanation here.
  • the inside of the negative electrode body 264a further houses a second elastic mechanism (not shown) for allowing the first negative electrode connection end 264b and the second negative electrode connection end 264c to elastically expand and contract along the axial direction of the negative electrode body 264a.
  • the triggering pin body 265a further houses a third elastic mechanism (not shown) for allowing the first triggering connection end 265b and the second triggering connection end 254c to elastically expand and contract along the axial direction of the triggering pin body 265a.
  • the features of the second elastic mechanism and the third elastic mechanism are completely the same as those of the first elastic mechanism 263e, and therefore need not be described here, and need not be added.
  • the sub-board 266 is substantially rectangular in shape and corresponds in size to the locking ring 262 and the mount 261.
  • the sub-circuit board 266 includes an oppositely disposed resisting surface 266a and a soldering surface 266b, wherein the resisting surface 266a is formed with a positive electrode pad 266c corresponding to the three latch pins 261b and insulated from each other.
  • a negative electrode pad 266d and a trigger pad 266e and the soldering surface 266b is provided with a positive electrode pad 266f electrically connected to the positive electrode pad 266c, a negative electrode pad 266g electrically connected to the negative electrode pad 266d, and a trigger soldering
  • the disk 266e is electrically connected to the trigger pad 266h.
  • the positive electrode pad 266f, the negative electrode pad 266g, and the trigger pad 266h are each made of a conductive material such as metal and insulated from each other.
  • the main circuit board 250 is formed with a positive electrode access region 251, a negative electrode access region 252, and a trigger access region 253.
  • the positions of the positive electrode access region 251, the negative electrode access region 252, and the trigger access region 253 correspond to the positive electrode pad 266f, the negative electrode pad 266g, and the trigger pad 266h, respectively, and are insulated from each other.
  • the positive electrode access region 251 is electrically connected to the positive electrode of the battery 240 through the main circuit board 250
  • the negative electrode access region 252 is electrically connected to the negative electrode of the battery 240 through the main circuit board 250, and triggers the access region 253 and the main circuit board 250.
  • the existing charging trigger circuit (not shown) is electrically connected.
  • the charging trigger circuit is electrically connected to the positive and negative electrodes of the battery 240 for driving and preventing the battery 240 from charging the electronic cigarette inserted into the electronic cigarette case 200.
  • the charging trigger switch of the electronic cigarette case belongs to the prior art, so the detailed features thereof need not be described here.
  • the charging stand 260 is first assembled.
  • the specific method is to insert the positive electrode pin 263, the negative electrode pin 264 and the trigger pin 265 into the three pin insertion holes 261b of the fixing seat 261 from the other surface opposite to the surface on which the insertion groove 261a is opened, respectively. And pierced from the bottom of the insertion groove 261a.
  • the positive electrode card ring 263d, the negative electrode card ring 264d, and the trigger card ring 265d are all in contact with the fixing base 261, and are fixed to the fixing base 261 by means of existing means such as bonding or snapping.
  • the locking ring 262, the fixing base 261 and the sub-circuit board 266 are fixedly mounted on the bracket 230, and the locking ring 262, the fixing base 261 and the sub-circuit board 266 are supported by the bracket 230.
  • the support hole and the fixing groove 262a of the fixing ring 261 are coaxially aligned with one of the plurality of receiving holes 231 formed in the bracket 230.
  • the main circuit board 250 is mounted to the bracket 230, and the main circuit board 250 is further supported and fixed by the bracket 230.
  • the soldering surface 266a of the sub-circuit board 266 is disposed toward the main circuit board 250.
  • the positive electrode access region 251, the negative electrode access region 252, and the trigger access region 253 of the main circuit board 250 are respectively aligned with the positive electrode pads 266f of the sub-circuit board 266,
  • the negative electrode bonding zone 266g and the triggering bonding zone 266h, and the positive electrode access zone 251 and the positive electrode bonding zone 266f are welded together, and the negative electrode access zone 252 and the negative electrode bonding zone 266g are welded together to trigger the access zone 253 and the triggering bonding zone.
  • 266h are welded together to establish a mechanical and electrical connection between the corresponding access zone and the weld zone.
  • the bracket 230 is fixed inside the bottom case 210 of the electronic cigarette case 200 together with the main circuit board 250 and the charging stand 260 mounted thereon.
  • the locking ring 262 is installed at the opening of the bottom case 210, and the locking hole 262a faces the outside, and the battery rod for the electronic cigarette is inserted.
  • the fixing seat 261 is mounted at a position further inside the bottom case 210 with respect to the locking ring 262, and the insertion groove 261a and the locking hole 262a are aligned with each other.
  • the sub-board 266 is mounted on the inner side of the bottom case 210 with respect to the fixed seat 261.
  • the resisting surface 266a faces the fixing base 261, and the positive electrode pad 266c, the negative electrode pad 266d and the trigger welding provided on the resisting surface 266a.
  • the disc 266e is aligned with the three cartridge insertion holes 261b, respectively.
  • the electronic cigarette case 200 needs to be used in combination with an electronic cigarette corresponding to the model.
  • the electronic cigarette 290 corresponding to the model of the electronic cigarette case 200 has a battery rod 291 having the same diameter as the locking hole 262 and the insertion groove 261a.
  • the battery rod 291 has a positive terminal 291a, a negative terminal 291b and a trigger terminal 291c.
  • the positive terminal 291a, the negative terminal 291b, and the trigger terminal 291c are both disposed on the same end surface of the battery rod 291, and the positions correspond to the positions of the positive electrode pin 263, the negative elastic pin 264, and the trigger pin 265.
  • the positive terminal 291a and the negative terminal 291b are electrically connected to the positive and negative electrodes of the electronic cigarette power source (not shown) inside the battery rod 291, respectively, for charging the electronic cigarette power source; and the trigger terminal 291c is electrically connected to the battery rod 291.
  • An internal charging control circuit (not shown) is used to trigger the charging process of the battery rod 291.
  • the electronic cigarette case 200 When the electronic cigarette case 200 is used to store and charge the electronic cigarette 290, the electronic cigarette 290 is housed in the bottom case 210, and the battery rod 291 is first inserted into the bracket 230 coaxially with the locking hole 262a and the receiving groove 261a. An accommodating hole 231 is aligned, and the locking ring 262 is continuously inserted.
  • the battery rod 291 is provided with the positive terminal 291a, the negative terminal 291b and the end of the trigger terminal 291c passing through the locking ring 262 and inserted into the insertion groove 261a of the fixing base 261, so that the positive terminal 291a, the negative terminal 291b and the trigger terminal 291c are respectively resisted.
  • the first positive electrode connection end 263b of the positive electrode pin 263, the first negative electrode connection end 264b of the negative electrode pin 264, and the first trigger connection end 265b of the trigger pin 265 are disposed.
  • the first positive connection end 263b, the first negative connection end 264b, and the first trigger connection end 265b are axially retracted under the pressure of the battery rod 291, and under the action of its own elasticity They are closely abutted against the positive terminal 291a, the negative terminal 291b, and the trigger terminal 291c, respectively, to form a stable electrical connection.
  • the second positive electrode connection end 263c, the second negative electrode connection end 264c, and the second trigger connection end 265c are also axially retracted under the pressure of the battery rod 291, and are respectively closely pressed by the elasticity of the self.
  • a stable electrical connection is formed on the positive electrode pad 266c, the negative electrode pad 266d, and the trigger pad 266e.
  • the positive terminal 291a of the battery rod 291 is connected to the positive electrode access region 251 of the main circuit board 250 through the positive electrode pin 263, the positive electrode pad 266c, and the positive electrode pad 266f, and is connected to the positive electrode of the battery 240 through the main circuit board 250.
  • the negative terminal 291b of the battery rod 291 is connected to the negative electrode access region 252 of the main circuit board 250 via the negative electrode pin 264, the negative electrode pad 266d, and the negative electrode pad 266g, and is connected to the negative electrode of the battery 240 through the main circuit board 250.
  • the trigger terminal 291c of the battery rod 291 is connected to the trigger access area 253 of the main circuit board 250 via the trigger pin 265, the trigger pad 266e and the trigger pad 266h, and is connected to the main circuit board 250 through the trigger access area 253. Charging trigger circuit.
  • the battery rod 291 is fixed at the current position by the locking ring 262 and other existing fixing methods, the battery rod 291 and the battery 240 form a stable charging circuit, and the main circuit board 250 can be activated and closed by the charging trigger circuit.
  • the charging control circuit of the battery rod 291 thereby starts and stops the process of charging the battery rod 291 using the battery 240.
  • the charging method used in this embodiment belongs to the prior art, and need not be described here.
  • the positive electrode pin 263, the negative electrode pin 264 and the trigger pin 265 which can elastically expand and contract in the axial direction are used in place of the prior art shrapnel in the electronic cigarette 290 and the electronic cigarette case 200.
  • the electrical connection is established, and the elastic pins need to be simply sleeved in the fixing base 261 of the charging base 260, and the complicated fitting structure is not needed, and the assembling manner is much simpler than the prior art shingles, and It is advantageous to simplify the structure of the charging stand 260.
  • the inelastic portion of the elastic needle is not subjected to any pressing and clamping force, and does not cause inelastic deformation to affect normal use.
  • the plurality of elastic needles are arranged in parallel with each other, and only expand and contract in the axial direction during use, and the elastic needles do not contact each other at all, and the short circuit phenomenon can be completely prevented.
  • a second preferred embodiment of the present invention provides another electronic cigarette case having a charging function.
  • the electronic cigarette case provided in the second preferred embodiment differs from the electronic cigarette case 200 provided in the first preferred embodiment in that only the positive electrode pin 363, the negative electrode pin 364, and the trigger pin having different structural features are used.
  • the 365 and the sub-board 366 correspond to the positive pin 263, the negative pin 264, the trigger pin 265, and the sub-board 266 in the electronic cigarette case 200, respectively. Therefore, only the exploded view of the positive electrode pin 363, the negative elastic pin 364, the trigger pin 365, the sub circuit board 366 and the base 261 is shown in FIG. 5 to explain the technical solution of the second preferred embodiment.
  • the shape and size of the positive electrode pin 363, the negative electrode pin 364 and the trigger pin 365 are exactly the same.
  • the positive electrode pin 363 includes a cylindrical positive electrode body 363a having a diameter equal to the diameter of the pin insertion hole 261b of the base 261, and the two ends of the positive electrode body 363a are respectively provided with a first A positive electrode connection end 263b and a second positive electrode connection end 263c.
  • the first positive electrode connecting end 363b and the second positive electrode connecting end 363c are both cylindrical and have a diameter smaller than the diameter of the positive electrode pin body 363a, and are respectively mounted on the two ends of the positive electrode pin body 363a coaxially with the positive electrode pin body 363a. .
  • the first positive electrode connection end 363b is elastically expandable and contractible along the axial direction of the positive electrode body 363a.
  • the specific structure of the telescopic function may be prior art.
  • a columnar spring or other elastic structure may be disposed between the first positive connecting end 363b and the second positive connecting end 363c, which can be understood by those skilled in the art. There is no need to repeat the detailed features here.
  • the second positive electrode connection end 363c is relatively fixedly coupled to the positive electrode pin body 363a.
  • the first positive connecting end 363b and the second positive connecting end 363c are both made of a conductive material such as metal, and are electrically connected to each other.
  • the specific manner of the electrical connection may also be prior art, for example, installation.
  • the lead wire inside the positive electrode pin main body 363a or the positive electrode pin main body 363a itself may be connected to the first positive electrode connecting end 363b and the second positive electrode connecting end 363c.
  • a positive electrode assembly ring 363d protruding from the outer peripheral surface of the positive electrode pin body 363a is also formed.
  • the outer diameter of the positive electrode retaining ring 363d is larger than the diameter of the pin insertion hole 261b.
  • the negative electrode pin 364 includes a negative electrode pin body 364a, a first negative electrode connection end 364b, a second negative electrode connection end 364c, and a negative electrode assembly ring 364d.
  • the trigger pin 365 includes a trigger pin body 365a, a first trigger connection end 365b, a second trigger connection end 365c, and a trigger assembly ring 365d.
  • the components of the negative electrode pin 364 and the trigger pin 265 are respectively corresponding to the corresponding members of the positive electrode pin 363 (ie, the positive electrode pin body 363a, the first positive electrode connection end 363b, the second positive electrode connection end 363c, and the positive electrode assembly ring 363d). ) is exactly the same, so there is no need to repeat the explanation here.
  • the sub-board 366 is generally rectangular in shape and corresponds in size to the mount 261.
  • Three auxiliary pin welding holes 366a are formed on the sub-circuit board 366 at equal intervals.
  • the diameters of the three elastic pin welding holes 366a are opposite to the second positive connecting end 363c, the second negative connecting end 364c and the second trigger connecting end 365c. The diameter is the same.
  • the positive electrode pin 363, the negative electrode pin 364 and the trigger pin 365 are firstly disposed from the other surface of the fixing base 261 opposite to the surface on which the insertion groove 261a is opened.
  • Three pin insertion holes 261b respectively inserted into the holder 261 are inserted out from the bottom of the insertion groove 261a.
  • the positive electrode card ring 363d, the negative electrode card ring 364d, and the trigger card ring 365d are all in contact with the fixing base 361, and are fixed to the fixing base 261 by means of existing means such as bonding or snapping.
  • the second positive electrode connection end 363c, the second negative electrode connection end 364c and the second trigger connection end 365c are respectively inserted into the three elastic pin welding holes 366a of the sub circuit board 366, and are soldered and fixed in the elastic pin welding holes 366a.
  • the second positive connection end 363c, the second negative connection end 364c and the second trigger connection end 365c are respectively connected to the positive electrode access region 251 and the negative electrode of the main circuit board 250 from the side of the sub circuit board 366 facing away from the fixing base 261.
  • the access area 252 and the trigger access area 253 establish an electrical connection.
  • the specific electrical connection method may be prior art such as soldering, wire connection, or the like.
  • the features and assembly methods of the remaining components of the electronic cigarette case provided by the second preferred embodiment are completely the same as those of the first preferred embodiment described above, and need not be described herein.
  • the electronic cigarette case provided by the second preferred embodiment is also suitable for storing and charging the above-mentioned electronic cigarette 290.
  • the battery rod 291 can be provided with the positive terminal 291a, the negative terminal 291b and the trigger terminal 291c according to the same operation method as the first embodiment.
  • the end portion is inserted into the insertion groove 261a of the fixing base 261, and then the positive electrode terminal 291a, the negative electrode terminal 291b and the trigger terminal 291c are respectively abutted against the first positive electrode connection end 363b of the positive electrode pin 363 and the first negative electrode terminal end of the negative electrode pin 364.
  • the first positive electrode connection end 363b, the first negative electrode connection end 364b, and the first trigger connection end 365b are axially retracted under the pressure of the battery rod 291, respectively, and function in their own elasticity.
  • the lower portions are closely abutted against the positive electrode terminal 291a, the negative electrode terminal 291b, and the trigger terminal 291c, respectively, to form a stable electrical connection.
  • the positive terminal 291a of the battery rod 291 is connected to the positive electrode access region 251 of the main circuit board 250 through the positive electrode pin 263, and is connected to the positive electrode of the battery 240 through the main circuit board 250.
  • the negative terminal 291b of the battery rod 291 is connected to the negative electrode access region 252 of the main circuit board 250 via the negative electrode pin 264, and is connected to the negative electrode of the battery 240 through the main circuit board 250.
  • the trigger terminal 291c of the battery rod 291 is connected to the trigger access area 253 of the main circuit board 250 via the trigger pin 265, and is connected to the charge trigger circuit on the main circuit board 250 through the trigger access area 253.
  • the battery rod 291 is fixed at the current position by the locking ring 262 and other existing fixing methods, the battery rod 291 and the battery 240 form a stable charging circuit, and the main circuit board 250 can activate the battery rod through the charging trigger circuit.
  • the charging control circuit of 291, thereby initiating the charging process of the battery rod 291, charges the battery rod 291 using the battery 240.
  • the charging method used in this embodiment belongs to the prior art, and need not be described here.
  • a third preferred embodiment of the present invention provides another electronic cigarette case having a charging function.
  • the electronic cigarette case provided by the third preferred embodiment is different from the electronic cigarette case 200 provided by the first preferred embodiment in that only two elastic pins are used to replace the three elastic pins of the electronic cigarette case 200, and
  • the base 461 and the sub-board 466 of different configurations replace the base 261 and the sub-board 266 of the first preferred embodiment. Therefore, only the exploded view of the positive electrode pin 463, the negative electrode pin 464, the sub circuit board 466, and the base 461 is shown in FIG. 5 to explain the technical solution of the third preferred embodiment.
  • the shape and size of the positive electrode pin 463 and the negative electrode pin 464 are identical to those of the positive electrode pin 263 and the negative electrode pin 264 of the first preferred embodiment described above.
  • the positive electrode pin 463 includes a positive electrode pin body 463a, a first positive electrode connection end 463b, a second positive electrode connection end 463c, and a positive electrode assembly ring 463d.
  • the first positive electrode connecting end 463b, the second positive electrode connecting end 463c and the positive electrode mounting ring 463d are respectively corresponding to the corresponding components of the positive electrode pin 263 of the first preferred embodiment (ie, the positive electrode pin body 263a and the first positive electrode connecting end 263b).
  • the negative electrode pin 464 includes a negative electrode body 464a, a first negative connection end 464b, a second negative connection end 464c, and a negative assembly ring 464d.
  • the features of the negative electrode pin body 464a, the first negative electrode connecting end 464b, the second negative electrode connecting end 464c, and the negative electrode mounting ring 464d are respectively corresponding to the corresponding components of the negative electrode pin 264 of the first preferred embodiment (ie, the negative electrode pin body 264a).
  • the first negative electrode connection end 264b, the second negative electrode connection end 264c, and the negative electrode assembly ring 264d) are identical, and need not be described here.
  • the base 461 differs from the base 261 of the first preferred embodiment only in that the base 461 is provided with two spaced apart pin insertion holes 461b instead of three.
  • the diameter of the pin insertion holes 461b coincides with the diameters of the positive electrode pins 463 and the negative electrode pins 464.
  • the sub-board 466 differs from the sub-board 266 of the first preferred embodiment only in that the sub-board 466 is formed with only two pads on the abutting surface 466a of the base 461, that is, two positions and the base 461.
  • the pin jacks 261b respectively correspond to the positive electrode pads 466c and the negative electrode pads 466d which are insulated from each other; correspondingly, only the two soldering regions are provided on the soldering surface 466b of the sub-circuit board 466 facing away from the base 461 ( The figure is not shown, that is, a positive electrode pad electrically connected to the positive electrode pad 466c and a negative electrode pad electrically connected to the negative electrode pad 466d.
  • the positive electrode access region 251 and the negative electrode access region 252 of the main circuit board 250 are respectively aligned with the positive electrode bonding region and the negative electrode bonding region of the sub-circuit board 466, and the positive electrode access region 251 and the positive electrode bonding region are welded together.
  • the negative electrode access region 252 is soldered to the negative electrode bonding region to establish a mechanical connection and an electrical connection between the corresponding access region and the bonding region.
  • the trigger access area 253 of the main circuit board 250 is not used in this embodiment.
  • the component structure and assembly method of the other portions of this embodiment are the same as those of the electronic cigarette case 200 of the first embodiment described above.
  • the electronic cigarette case provided by the third preferred embodiment is also suitable for storing and charging the above-mentioned electronic cigarette 290.
  • the battery rod 291 can be provided with the positive terminal 291a, the negative terminal 291b and the trigger terminal 291c according to the same operation method as the first embodiment.
  • the end portion is inserted into the insertion groove 461a of the holder 461, and then operated in the same manner as the above-described first preferred embodiment, so that the positive electrode terminal 291a is connected to the positive electrode access region 251 of the main circuit board 250 through the positive electrode pin 463, and then The main circuit board 250 is connected to the positive electrode of the battery 240; the negative terminal 291b of the battery rod 291 is connected to the negative electrode access region 252 of the main circuit board 250 via the negative electrode pin 464, and is connected to the negative electrode of the battery 240 through the main circuit board 250.
  • the battery rod 291 is fixed at the current position by the locking ring 262 and other conventional fixing methods, and the battery rod 291 and the battery 240 form a stable charging circuit.
  • the battery rod 291 in this embodiment does not use the charge trigger circuit whose trigger terminal 291c is connected to the main circuit board 250, the battery 240 cannot be automatically controlled by the main circuit board 250 as in the first and second preferred embodiments described above.
  • the battery rod 291 is charged, but a dedicated charging trigger switch is additionally provided on the electronic cigarette case or the electronic cigarette 290 for starting the charging control circuit of the electronic cigarette, thereby charging the battery rod 291 using the battery 240.
  • the charging trigger switch is also a prior art, for example, it can be a manual charging control button, etc., and can be realized by those skilled in the art without any creative work, and is not an improvement of the present invention, and need not be described herein.
  • a fourth preferred embodiment of the present invention provides yet another electronic cigarette case having a charging function.
  • the electronic cigarette case provided in the fourth preferred embodiment is different from the electronic cigarette case 200 provided in the first preferred embodiment in that only the main circuit board 550 and the sub circuit board 560 having different structures are used instead of the first one.
  • the main circuit board 250 and the sub circuit board 266 of the preferred embodiment Therefore, only the exploded view of the main circuit board 550 and the sub-circuit board 560 is shown in FIG. 5 to explain the technical solution of the fourth preferred embodiment.
  • the main circuit board 550 differs from the main circuit board 250 of the first preferred embodiment only in that the main connector 551 is used instead of the positive access region 251, the negative access region 252, and the trigger access region 253 of the main circuit board 250.
  • the main connector 551 includes a connector body (not labeled) having a substantially rectangular parallelepiped shape.
  • the connector body is provided with a positive terminal 552, a negative terminal 553 and a trigger access terminal 554.
  • the positive terminal 552, the negative terminal 553 and the trigger access terminal 554 are both cylindrical, vertically connected to the same surface of the connector body, and insulated from each other.
  • the positive terminal 552 is electrically connected to the positive electrode of the battery 240 through the main circuit board 250
  • the negative terminal 553 is electrically connected to the negative electrode of the battery 240 through the main circuit board 250 to trigger the access terminal 554 and the main circuit board 250.
  • the charging trigger circuit is electrically connected.
  • the sub-board 560 differs from the sub-board 266 of the first preferred embodiment only in that the structure of the sub-board 560 facing away from the surface 560b of the base 261 is different from the structure on the soldering surface 266b of the sub-board 266.
  • a sub-connector 561 is formed on the surface 560b of the sub-board 560 facing away from the base 261.
  • the sub-connector 561 includes an outer frame (not labeled) having a substantially rectangular frame shape, and the outer frame is formed with a convex positive transfer end 562, a negative transfer end 563 and a trigger transfer end 564.
  • the terminal 562, the negative terminal 563 and the trigger adapter 564 are both cylindrical and insulated from each other.
  • the sub-board 560 is formed with a positive electrode pad, a negative electrode pad and a trigger pad on the surface 560a of the base 261.
  • the negative electrode pad 266d and the trigger pad 266e are identical, so there is no need to draw again in the figure.
  • the positive electrode pad, the negative electrode pad and the trigger pad formed on the surface 560a are electrically connected to the positive electrode transfer end 562, the negative electrode transfer end 563 and the trigger transfer end 564, respectively.
  • the positive terminal 562, the negative terminal 563 and the trigger adapter 564 are respectively connected to the positive terminal 552 and the negative terminal through prior art means (such as soldering, plugging, wire connection, etc.).
  • the electronic cigarette case provided in the fourth preferred embodiment is also suitable for storing and charging the electronic cigarette 290 described above.
  • the positive terminal 291a of the battery rod 291 can be connected to the positive electrode via the positive electrode pin 263 according to the same operation method as the first preferred embodiment.
  • the pad is connected to the positive electrode of the battery 240 through the positive electrode pad, the positive electrode adapter 562 and the positive electrode terminal 552; the negative terminal 291b of the battery rod 291 is connected to the negative electrode pad via the negative electrode pin 264, and then passes through the negative electrode pad.
  • the negative terminal 563 and the negative terminal 553 are connected to the negative pole of the battery 240; the trigger terminal 291c of the battery rod 291 is connected to the trigger pad via the trigger pin 265, and then the trigger pad, the trigger adapter 564 and the trigger Access terminal 554 is coupled to a charge trigger circuit on main circuit board 250.
  • the battery rod 291 is fixed at the current position by the locking ring 262 and other conventional fixing methods, and the battery rod 291 and the battery 240 form a stable charging circuit.
  • the battery 240 can be controlled to charge the battery rod 291 using the main circuit board 550 in the same manner as the first preferred embodiment described above.
  • the present invention also provides a method of using an electronic cigarette case having a charging function, which can be implemented by using the electronic cigarette case provided by any one of the above first to fourth embodiments. Specifically, the method includes the following steps:
  • the other end of the positive electrode pin is electrically connected to the positive electrode of the built-in battery of the electronic cigarette case, and the other end of the negative electrode pin is electrically connected to the negative electrode of the built-in battery of the electronic cigarette case, thereby electrically connecting the battery rod of the electronic cigarette with the electronic cigarette
  • a charging circuit is established between the built-in batteries of the box;
  • the method further comprises the steps of:
  • the other end of the trigger terminal is electrically connected to the charging trigger circuit of the electronic cigarette case;
  • the charging trigger circuit is used to control the built-in battery of the electronic cigarette case to charge the battery rod of the electronic cigarette.

Abstract

一种电子烟充电座、电子烟盒及其使用方法,该充电座(260)包括用于分别将电子烟电性连接到电池的正极与负极,从而构成充电回路的正极弹针(263)与负极弹针(264),正极弹针(263)与负极弹针(264)均为柱状。该弹针只需简单套设在充电座的底座中,装配方式简单,在弹针的使用过程中,弹针的非弹性部分不会产生非弹性形变而影响正常使用。多个弹针彼此平行设置,使用时仅在轴向上发生伸缩,可以防止产生短路现象。还包括具有该电子烟充电座的电子烟盒(200)以及该电子烟盒(200)的使用方法。

Description

电子烟充电座、电子烟盒及其使用方法 技术领域
本发明涉及日用电子产品领域,尤其涉及电子烟充电座、具有该电子烟充电座的电子烟盒、以及该电子烟盒的使用方法。
背景技术
电子烟作为安全、健康的烟草代替品,在生活中得到日益广泛的使用。现有的电子烟一般分为不可充电的一次性电子烟和可充电的非一次性电子烟两大类别。其中,一次性电子烟的优点是用完即弃,使用简单方便。而非一次性电子烟的优点是可以多次重复使用,相比于一次性电子烟成本更低。但是,非一次性电子烟电源耗尽时,需要经过充电才能再次使用。如果每次充电时都要将电子烟连接到地点固定的电源,例如市电插座或者汽车蓄电池上,则显然充电操作比较麻烦,且不方便让用户随时将电子烟随身携带,容易导致用户在想要吸烟时却无法立即使用电子烟,降低用户体验。
为了解决电子烟充电时操作复杂、携带不便的问题,目前市场上出现了便于携带的,且能够用于给电子烟充电的电子烟盒。这种电子烟盒的外形和尺寸接近普通的香烟盒,且内部安装有电池与用于将电子烟与电池建立电性连接的充电座结构。当电子烟存放在这种电子烟盒内部时,可以通过充电座结构与电池连接,从而由电池对电子烟进行充电。这样,用户只要随身携带着这种电子烟盒,就可以将电子烟装在里面持续充电,且随时都可以取用电子烟。
请参阅图1,一种现有的具有充电功能的电子烟盒100主要包括底盒110、盒盖120、支架130、电池140、电路板150及充电座160。底盒110与盒盖120用硬质材料制成,二者可相对开合地连接在一起,构成用于容纳及保护电子烟的盒体,且该盒体的外观和尺寸可以模拟现有的香烟盒。该支架130包括主架体131与固定片132,其中主架体131固定地安装在底盒110内部,固定片132固定地安装在底盒110的开口处,共同用于稳定地支撑存放在电子烟盒100内的电子烟以及电子烟盒100的其他部件,防止松动。电池140、电路板150及充电座160都安装在底盒110内并由主架体131进一步固定,且电池140通过电路板150与充电座160建立电性连接。当电子烟(图未示)存放在电子烟盒100内时,电子烟的电池杆可以插入充电座160并与充电座160电性连接,这样电池140即可通过电路板150及充电座160对电子烟充电。
具体而言,电子烟 的电池杆是通过以下所述的结构与电池140建立电性连接的。该充电座160包括底座161、锁紧环162、正极弹片163、负极弹片164及触发弹片165。底座161和锁紧环162都固定在主架体131上,正极弹片163、负极弹片164及触发弹片165均嵌设在底座161上。正极弹片163、负极弹片164及触发弹片165都采用导电材料例如金属制成,且均具有固定部与弹性部。三者的固定部都通过螺丝固定并压紧在电路板150上,且正极弹片163的固定部通过电路板150连接到电池140的正极,触发弹片165的固定部通过电路板150连接到电池140的负极。三者的弹性部都伸入底座161内部,其中正极弹片163的弹性部设置在锁紧环162的中轴线的一侧,且沿着与锁紧环的162的中轴线平行的方向延伸一定长度。负极弹片164的弹性部设置在正对锁紧环162的环孔的位置,触发弹片165的弹性部与负极弹片164的弹性部大致平行,且相对于负极弹片164的弹性部而言是处于底盒110的内侧。
常见的非一次性电子烟具有可充电的电池杆,电池杆具有正极端子与负极端子,该正极端子与负极端子可以有多种现有的结构配置方式。对于型号与该电子烟盒100对应的电子烟190来说,其电池杆191的正极端子191a设置在侧面,而负极端子191b设置在端部。这种端子构造属于现有技术,这里无需赘述其具体结构和实现方法。当使用该电子烟盒100给电子烟190充电时,可以将电子烟190的电池杆191插入锁紧环162。电池杆191设有负极端子191b的端部穿过锁紧环162抵顶在负极弹片164的弹性部上,从而与负极弹片164建立电性连接。随着电池杆191继续插入锁紧环162,负极弹片164的弹性部在电池杆191的压力下发生弹性形变,弯曲并抵顶在触发弹片165的弹性部上,使电池杆191的负极端子191b通过负极弹片164、触发弹片165及电路板150与电池140的负极建立电性连接。与此同时,电池杆191侧面与正极弹片163的弹性部接触,使正极端子191a抵持在正极弹片163的弹性部上,通过正极弹片163及电路板150与电池140的正极连接。这样,电池140与电子烟190的电池杆191即构成充电回路,可以在电路板150的控制下使用电池140向电子烟190充电。之后,再使用现有的固定方式例如卡扣、夹持等手段将电池杆191固定在锁紧环162内,使电池杆191的正极端子191a与正极弹片163维持着相互接触的状态,而电池杆191的负极端子191b维持着抵压负极弹片164而使其抵顶在触发弹片165上的状态,即可对电子烟190进行持续充电,直到电子烟190被从电子烟盒100中取出。
然而,上述的现有电子烟盒100通常存在以下缺点:正极弹片163、负极弹片164、触发弹片165和底座161的卡配结构较为复杂,不易制造及组装;而且由于正极弹片163、负极弹片164和触发弹片165的固定部都通过螺丝固定并压紧在电路板150上,一直受到螺丝旋紧的压力,而这些固定部一般是没有弹性的,在使用较长时间后容易发生非弹性的变形,这种非弹性变形可能在正极弹片163与电路板150之间、触发弹片165与电路板150之间、或者触发弹片165与负极弹片164之间造成接触不良,影响电子烟盒100的充电功能。另外,由于充电座160的底座161内部空间较为狭小,在插入电池杆191时,负极弹片164和触发弹片165有可能在电池杆191的压力下产生过度的弯曲以致接触到正极弹片163,这样会使得电池140被短路,不仅无法对电子烟190充电,而且对电子烟盒100的内部电子元件造成严重的损害。
发明内容
鉴于上述状况,有必要提供能够给电子烟充电,同时可以避免充电电路的接触不良和短路的电子烟充电座、具有该电子烟充电座的电子烟盒、以及该电子烟盒的使用方法。
本发明提供一种电子烟充电座,所述充电座包括用于分别将所述电子烟电性连接到电池的正极与负极,从而构成充电回路的正极弹针与负极弹针,所述正极弹针与所述负极弹针均为柱状,所述正极弹针包括可以沿所述正极弹针的轴向弹性伸缩并抵顶在所述电子烟上而与所述电子烟电性连接的第一正极连接端、与所述第一正极连接端活动连接的第二正极连接端、以及两端分别抵持在所述第一正极连接端与第二正极连接端上的第一弹性机构;
所述负极弹针包括可以沿所述负极弹针的轴向弹性伸缩并抵顶在所述电子烟上而与所述电子烟电性连接的第一负极连接端、与所述第一负极连接端活动连接的第二负极连接端、以及两端分别抵持在所述第一负极连接端与第二负极连接端上的第二弹性机构。
优选地,所述电子烟充电座还包括底座,所述底座开设有用于供所述电子烟插入的插入槽,所述插入槽底部开设有弹针插孔,所述正极弹针与所述负极弹针插入所述弹针插孔内并固定在所述底座上。
优选地,所述电子烟充电座还包括副电路板,所述副电路板包括与所述电池的正极电性连接的正极焊盘以及与所述电池的负极电性连接的负极焊盘;所述第二正极连接端可以沿所述正极弹针的轴向弹性伸缩,并抵顶在所述正极焊盘上而与所述正极焊盘电性连接,所述第二负极连接端可以沿所述负极弹针的轴向弹性伸缩,并抵顶在所述负极焊盘上而与所述负极焊盘电性连接。
优选地,所述电子烟充电座还包括用于将所述电子烟的充电控制电路与用于启动所述充电控制电路的充电触发电路电性连接,从而利用所述充电触发电路控制所述电池对所述电子烟充电的触发弹针,所述触发弹针为柱状,且包括可以沿所述触发弹针的轴向弹性伸缩并抵顶在所述电子烟上而与所述电子烟电性连接的第一触发连接端、与所述第一触发连接端活动连接的第二触发连接端、以及两端分别抵持在所述第一触发连接端与所述第二触发连接端上的第三弹性机构。
优选地,所述电子烟充电座还包括底座,所述底座开设有用于供所述电子烟插入的插入槽,所述插入槽底部开设有弹针插孔,所述正极弹针、所述负极弹针及所述触发弹针插入所述弹针插孔内并固定在所述底座上。
优选地,所述电子烟充电座还包括副电路板,所述副电路板包括与所述电池的正极电性连接的正极焊盘、与所述电池的负极电性连接的负极焊盘、以及与所述充电触发电路电性连接的触发焊盘;所述第二正极连接端可以沿所述正极弹针的轴向弹性伸缩,并抵顶在所述正极焊盘上而与所述正极焊盘电性连接,所述第二负极连接端可以沿所述负极弹针的轴向弹性伸缩,并抵顶在所述负极焊盘上而与所述负极焊盘电性连接,所述第二触发连接端可以沿所述触发弹针的轴向弹性伸缩,并抵顶在所述触发焊盘上而与所述充电触发电路电性连接。
本发明还提供一种电子烟盒,包括用于容纳电子烟的底盒,所述电子烟盒还包括用于给所述电子烟充电的电池,以及用于将所述电子烟与所述电池电性连接的充电座;所述电池与所述充电座均固定地容纳在所述底盒内,且所述充电座包括用于分别将所述电子烟电性连接到电池的正极与负极,从而构成充电回路的正极弹针与负极弹针,所述正极弹针与所述负极弹针均为柱状,所述正极弹针包括可以沿所述正极弹针的轴向弹性伸缩并抵顶在所述电子烟上而与所述电子烟电性连接的第一正极连接端、与所述第一正极连接端活动连接的第二正极连接端、以及两端分别抵持在所述第一正极连接端与第二正极连接端上的第一弹性机构;所述负极弹针包括可以沿所述负极弹针的轴向弹性伸缩并抵顶在所述电子烟上而与所述电子烟电性连接的第一负极连接端、与所述第一负极连接端活动连接的第二负极连接端、以及两端分别抵持在所述第一负极连接端与第二负极连接端上的第二弹性机构。
优选地,所述电子烟充电座还包括底座,所述底座开设有用于供所述电子烟插入的插入槽,所述插入槽底部开设有弹针插孔,所述正极弹针与所述负极弹针插入所述弹针插孔内并固定在所述底座上。
优选地,所述电子烟充电座还包括副电路板,所述副电路板包括与所述电池的正极电性连接的正极焊盘以及与所述电池的负极电性连接的负极焊盘;所述第二正极连接端可以沿所述正极弹针的轴向弹性伸缩并抵顶在所述正极焊盘上而与所述正极焊盘电性连接的,所述第二负极连接端可以沿所述负极弹针的轴向弹性伸缩,并抵顶在所述负极焊盘上而与所述负极焊盘电性连接。
优选地,所述电子烟充电座还包括用于将所述电子烟的充电控制电路与用于启动所述充电控制电路的充电触发电路电性连接,从而利用所述充电触发电路控制所述电池对所述电子烟充电的触发弹针,所述触发弹针为柱状,且包括可以沿所述触发弹针的轴向弹性伸缩并抵顶在所述电子烟上而与所述电子烟电性连接的第一触发连接端、与所述第一触发连接端活动连接的第二触发连接端、以及两端分别抵持在所述第一触发连接端与所述第二触发连接端上的第三弹性机构。
优选地,所述电子烟充电座还包括底座,所述底座开设有用于供所述电子烟插入的插入槽,所述插入槽底部开设有弹针插孔,所述正极弹针、所述负极弹针及所述触发弹针插入所述弹针插孔内并固定在所述底座上。
优选地,所述电子烟充电座还包括副电路板,所述副电路板包括与所述电池的正极电性连接的正极焊盘、与所述电池的负极电性连接的负极焊盘、以及与所述充电触发电路电性连接的触发焊盘;所述第二正极连接端可以沿所述正极弹针的轴向弹性伸缩,并抵顶在所述正极焊盘上而与所述正极焊盘电性连接,所述第二负极连接端可以沿所述负极弹针的轴向弹性伸缩,并抵顶在所述负极焊盘上而与所述负极焊盘电性连接,所述第二触发连接端可以沿所述触发弹针的轴向弹性伸缩,并抵顶在所述触发焊盘上而与所述充电触发电路电性连接。
优选地,所述电子烟盒还包括主电路板,所述主电路板固定地容纳在所述底盒内且与所述电池及所述副电路板电性连接,所述充电触发电路设置在所述主电路板上,所述主电路板通过所述充电触发电路控制所述电池开始及停止向所述电子烟充电。
本发明还提供一种电子烟盒的使用方法,该方法包括以下步骤:
在电子烟盒的充电座中设置至少一端可弹性伸缩的正极弹针与负极弹针;
将电子烟的电池杆插入所述充电座,把电池杆的正极端子抵顶在正极弹针可弹性伸缩的一端,电池杆的负极端子抵顶在负极弹针可弹性伸缩的一端,使得正极弹针可弹性伸缩的一端在弹性作用下紧密地抵顶在正极端子上,负极弹针可弹性伸缩的一端在弹性作用下紧密地抵顶在负极端子上;
将正极弹针的另一端与电子烟盒的内置电池的正极电性连接,将负极弹针的另一端与电子烟盒的内置电池的负极电性连接,从而在电子烟的电池杆与电子烟盒的内置电池之间建立充电回路;
使用电子烟盒的内置电池为电子烟的电池杆充电。
优选地,该方法还包括以下步骤:
在电子烟盒的充电座中设置至少一端可弹性伸缩的触发弹针;
将电子烟的电池杆插入所述充电座,把电池杆的触发端子抵顶在触发弹针可弹性伸缩的一端,使得触发弹针可弹性伸缩的一端在弹性作用下紧密地抵顶在触发端子上;
将触发端子的另一端与电子烟盒的充电触发电路建立电性连接;
在电子烟的电池杆与电子烟盒的内置电池之间建立充电回路之后,使用所述充电触发电路控制电子烟盒的内置电池向电子烟的电池杆充电。
本发明提供的电子烟充电座、具有该电子烟充电座的电子烟盒、以及该电子烟盒的使用方法具有以下有益效果:本发明中使用可沿轴向产生弹性伸缩的弹针代替现有技术的弹片在电子烟与电子烟盒之间建立电性连接,该等弹针只需简单地套设在充电座的底座中,不需要形状复杂的卡配结构,装配方式比现有技术的弹片简单得多,而且有利于简化充电座的结构。在弹针的使用过程中,弹针的非弹性部分不会受到任何压紧和夹持的作用力,不会产生非弹性的形变而影响正常使用。多个弹针彼此之间平行设置,使用时仅在轴向上发生伸缩,弹针之间完全不会相互接触,可以彻底地防止产生短路现象。
附图说明
图1是一种现有的具有充电功能的电子烟盒的分解示意图。
图2是本发明的第一较佳实施例提供的具有充电功能的电子烟盒的外观示意图。
图3是图2所示的电子烟盒的分解示意图。
图4是图2所示的电子烟盒的充电座的部分部件的装配示意图。
图5是图2所示的电子烟盒的充电座的部分部件的分解示意图。
图6是图2所示的电子烟盒的正极弹针的剖视图。
图7是图2所示的电子烟盒的支架、充电座及主电路板的装配示意图。
图8是本发明的第二较佳实施例提供的具有充电功能的电子烟盒的充电座的部分部件的分解示意图。
图9是本发明的第三较佳实施例提供的具有充电功能的电子烟盒的充电座的部分部件的分解示意图。
图10是本发明的第四较佳实施例提供的具有充电功能的电子烟盒的主电路板和副电路板的分解示意图。
具体实施方式
下面将结合附图及实施例对本发明作进一步的详细说明。
请参阅图2及图3,本发明提供一种具有充电功能的电子烟盒200,该电子烟盒200包括底盒210、盒盖220、支架230、电池240、主电路板250及充电座260。底盒210与盒盖220用硬质材料制成,二者可相对开合地连接在一起,构成用于容纳及保护电子烟的盒体,且该盒体的外观和尺寸可以模拟现有的香烟盒。该支架230的形状大致为矩形框体,固定地安装在底盒210内部,用于稳定地支撑存放在电子烟盒200内的电子烟以及电子烟盒200的其他部件,防止松动。本实施例中,该支架230邻近底盒210开口的侧面上开设有多个容置孔231,用于插入及固定电子烟。该支架230上还设置有转动机构(未标号),盒盖220是通过转动机构可转动连接到支架230上,进而可相对开合地与底盒210装配到一起。该转动机构的结构为现有技术,这里无需赘述。电池240、主电路板250及充电座260都安装在底盒210内并依靠支架230进一步固定,且电池240通过主电路板250与充电座260建立电性连接。当电子烟存放在电子烟盒200内时,电子烟的电池杆可以插入充电座260并与充电座260电性连接,这样电池240即可通过电路板250及充电座260对电子烟充电。
请一并参阅图4及图5,该电子烟盒200相对于现有技术最主要的改进在于充电座260的结构。具体地,该充电座260包括固定座261、锁紧环262、正极弹针263、负极弹针264、触发弹针265、以及副电路板266。其中该锁紧环262的外部轮廓大致为长方体,中央贯通开设有圆形的锁紧孔262a,用于容纳并固定电子烟的电池杆。该固定座261的形状大致为长方体,尺寸与锁紧环262一致,且该固定座261的一个表面部分地凹陷下去而形成插入槽261a。本实施例中该插入槽261a为圆形,其位置与锁紧孔262a相互对准,直径亦与锁紧孔262a相等。在其他实施例中,该插入槽261a也可以为其他形状。该插入槽261a底部等间距地开设有三个弹针插孔261b。
正极弹针263、负极弹针264及触发弹针265的形状及尺寸完全相同,这里以正极弹针263为例介绍三个弹针的具体构造。该正极弹针263包括圆柱形的正极弹针主体263a,该正极弹针主体263a的直径与上述弹针插孔261b的直径相同,且该正极弹针主体263a的两端分别设有第一正极连接端263b与第二正极连接端263c。该第一正极连接端263b与第二正极连接端263c均为圆柱形,直径均小于正极弹针主体263a的直径,且与正极弹针主体263a同轴地分别安装在正极弹针主体263a两端。该第一正极连接端263b与第二正极连接端263c均可沿着正极弹针主体263a的轴向弹性地伸缩。
具体而言,本实施例中,使第一正极连接端263b与第二正极连接端263c沿着正极弹针主体263a的轴向弹性伸缩的具体结构可以参阅图6。图6所示的是上述正极弹针263的剖视图。如图所示,正极弹针主体263a是中空的,其中安装有第一弹性机构263e。该第一弹性机构263e为柱状螺旋弹簧,同轴地容纳在正极弹针主体263a内,两端分别弹性地抵顶在第一正极连接端263b与第二正极连接端263c上。当第一正极连接端263b或第二正极连接端263c被向正极弹针主体263a内按压时,第一弹性机构263e即被沿着自身轴向弹性地压缩;当按压的压力解除后,第一弹性机构263e回弹,使第一正极连接端263b与第二正极连接端263c复位。这样,第一正极连接端263b与第二正极连接端263c即可沿着正极弹针主体263a的轴向弹性伸缩。第一正极连接端263b与第二正极连接端263c均采用导电材料例如金属制成,且彼此之间建立有电性连接,该电性连接的具体方式也可以是现有技术,例如使用导电材料制造该第一弹性机构263e、在正极弹针主体263a内部安装导线、或者在正极弹针主体263a本身设置电部分将第一正极连接端263b与第二正极连接端263c电性连接均可。正极弹针主体263a外周面上还形成有一圈凸出的正极装配环263d。该正极卡配环263d的外径大于弹针插孔261b的直径。
负极弹针264包括负极弹针主体264a、第一负极连接端264b、第二负极连接端264c及负极装配环264d。触发弹针265包括触发弹针主体265a、第一触发连接端265b、第二触发连接端265c及触发装配环265d。负极弹针264与触发弹针265的这些部件分别与正极弹针263中对应的部件(即上述的正极弹针主体263a、第一正极连接端263b、第二正极连接端263c及正极装配环263d)完全相同,因此这里无需重复说明。负极弹针主体264a内部还容纳有用于使第一负极连接端264b与第二负极连接端264c可以沿着负极弹针主体264a的轴向弹性伸缩的第二弹性机构(图未示)。触发弹针主体265a内部还容纳有用于使第一触发连接端265b与第二触发连接端254c可以沿着触发弹针主体265a的轴向弹性伸缩的第三弹性机构(图未示)。该第二弹性机构及第三弹性机构的特征与上述第一弹性机构263e完全相同,因此这里无需赘述,也不必再增加图示。
副电路板266形状大致为矩形平板,尺寸与锁紧环262及固定座261相对应。该副电路板266包括相对设置的抵持面266a与焊接面266b,其中抵持面266a上形成有位置与上述三个弹针插孔261b分别对应,且彼此之间相互绝缘的正极焊盘266c、负极焊盘266d及触发焊盘266e,而焊接面266b上设置有与正极焊盘266c电性连接的正极焊接区266f、与负极焊盘266d电性连接的负极焊接区266g、以及与触发焊盘266e电性连接的触发焊接区266h。该正极焊接区266f、负极焊接区266g、以及触发焊接区266h均采用导电材料例如金属制成,且彼此之间相互绝缘。
为了与充电座260的结构相配合,主电路板250上形成有正极接入区251、负极接入区252及触发接入区253。该正极接入区251、负极接入区252及触发接入区253的位置分别与正极焊接区266f、负极焊接区266g、以及触发焊接区266h相对应,且彼此之间相互绝缘。另外,正极接入区251通过主电路板250与电池240的正极电性连接,负极接入区252通过主电路板250与电池240的负极电性连接,触发接入区253与主电路板250上现有的充电触发电路(图未示)电性连接。该充电触发电路与电池240的正极及负极电性连接,用于驱动及阻止电池240向插入电子烟盒200的电子烟充电。电子烟盒的充电触发开关属于现有技术,因此这里无需赘述其详细特征。
请一并参阅图7,在组装该电子烟盒200时,首先组装充电座260。具体方法是将正极弹针263、负极弹针264及触发弹针265从固定座261的与开设有插入槽261a的表面相对的另一表面分别插入固定座261上的三个弹针插孔261b,并从插入槽261a的底部穿出。正极卡配环263d、负极卡配环264d及触发卡配环265d均与固定座261接触,并通过现有的手段例如粘接或卡合等方式固定在固定座261上。之后,将锁紧环262、固定座261及副电路板266均固定安装在支架230上,通过支架230对锁紧环262、固定座261及副电路板266 进行进一步的支持和固定,同时将锁紧环262的锁紧孔262a和固定座261的容置槽261a都同轴地对准支架230上开设的多个容置孔231中的一个。
组装好充电座260后,如图6进一步所示,将主电路板250安装到支架230上,利用支架230对主电路板250进行进一步的支持和固定。副电路板266的焊接面266a朝向主电路板250设置,主电路板250的正极接入区251、负极接入区252及触发接入区253分别对准副电路板266的正极焊接区266f、负极焊接区266g、以及触发焊接区266h,并将正极接入区251与正极焊接区266f焊接在一起,负极接入区252与负极焊接区266g焊接在一起,触发接入区253与触发焊接区266h焊接在一起,从而在对应的接入区和焊接区之间同时建立机械连接和电性连接。
接下来,将支架230连同装配在其上的主电路板250及充电座260一起固定在电子烟盒200的底盒210内部。其中锁紧环262安装在底盒210的开口处,锁紧孔262a朝向外侧,供电子烟的电池杆插入。固定座261安装在底盒210中相对于锁紧环262更靠内侧的位置,其插入槽261a与锁紧孔262a相互对准。副电路板266安装在底盒210中相对于固定座261更靠内侧的位置,其抵持面266a朝向固定座261,抵持面266a上设置的正极焊盘266c、负极焊盘266d及触发焊盘266e分别对准三个弹针插孔261b。之后,将电池240以及电子烟盒200中根据现有技术属于必需的其他一些部件(图未示)都安装到底盒210中。电池240的安装方法、以及其他现有部件的特征和安装方法都属于现有技术,这里无需赘述。最后,将盒盖220可开合地安装到底盒210上,即完成电子烟盒200的组装。
该电子烟盒200需要与型号对应的电子烟配合使用。本实施例中,与该电子烟盒200型号对应的电子烟290具有直径与锁紧孔262及插入槽261a相同的电池杆291,该电池杆291具有正极端子291a、负极端子291b与触发端子291c,该正极端子291a、负极端子291b与触发端子291c都设置在电池杆291的同一个端面上,且位置与正极弹针263、负极弹针264及触发弹针265的位置相互对应。其中正极端子291a与负极端子291b分别电性连接到电池杆291内部的电子烟电源(图未示)的正极与负极,用于给电子烟电源充电;而触发端子291c电性连接到电池杆291内部的充电控制电路(图未示),用于触发电池杆291的充电进程。上述的端子构造与电池杆291内部的对应电路结构都属于现有技术,本领域技术人员可以不付出任何创造性劳动而直接实现,因此这里不必赘述其详细特征。
当使用该电子烟盒200存放上述电子烟290并对其充电时,电子烟290容纳在底盒210内,其电池杆291先插入支架230上与锁紧孔262a和容置槽261a同轴地相对准的一个容置孔231,再继续插入锁紧环262。电池杆291设有正极端子291a、负极端子291b与触发端子291c的端部穿过锁紧环262并插入固定座261的插入槽261a,使正极端子291a、负极端子291b及触发端子291c分别抵持在正极弹针263的第一正极连接端263b、负极弹针264的第一负极连接端264b、以及触发弹针265的第一触发连接端265b上。随着电池杆291的继续插入,第一正极连接端263b、第一负极连接端264b、以及第一触发连接端265b在电池杆291的压力下轴向地回缩,并在自身弹性的作用下分别紧密地抵顶在正极端子291a、负极端子291b与触发端子291c上,形成稳定的电性连接。与此同时,第二正极连接端263c、第二负极连接端264c、以及第二触发连接端265c也在电池杆291的压力下轴向地回缩,并在自身弹性的作用下分别紧密地抵顶在正极焊盘266c、负极焊盘266d与触发焊盘266e上,形成稳定的电性连接。这样,电池杆291的正极端子291a通过正极弹针263、正极焊盘266c和正极焊接区266f连接到主电路板250的正极接入区251,再通过主电路板250连接到电池240的正极。电池杆291的负极端子291b经由负极弹针264、负极焊盘266d和负极焊接区266g连接到主电路板250的负极接入区252,再通过主电路板250连接到电池240的负极。电池杆291的触发端子291c经由触发弹针265、触发焊盘266e和触发焊接区266h连接到主电路板250的触发接入区253,再通过触发接入区253连接到主电路板250上的充电触发电路。此时,利用锁紧环262以及其他的现有固定方式将电池杆291固定在当前位置,电池杆291与电池240即形成稳定的充电回路,而主电路板250可以通过充电触发电路启动及关闭电池杆291的充电控制电路,从而启动及停止使用电池240对电池杆291充电的进程。本实施例中使用的充电方法属于现有技术,这里无需赘述。
在上述实施例提供的电子烟盒200中,使用可沿轴向产生弹性伸缩的正极弹针263、负极弹针264及触发弹针265代替现有技术的弹片在电子烟290与电子烟盒200之间建立电性连接,该等弹针只需简单地套设在充电座260的固定座261中,不需要形状复杂的卡配结构,装配方式比现有技术的弹片简单得多,而且有利于简化充电座260的结构。在弹针的使用过程中,弹针的非弹性部分不会受到任何压紧和夹持的作用力,不会产生非弹性的形变而影响正常使用。多个弹针彼此之间平行设置,使用时仅在轴向上发生伸缩,弹针之间完全不会相互接触,可以彻底地防止产生短路现象。
请参阅图8,本发明的第二较佳实施例提供了又一种具有充电功能的电子烟盒。该第二较佳实施例提供的电子烟盒与上述第一较佳实施例提供的电子烟盒200的区别,仅在于使用具有不同结构特征的正极弹针363、负极弹针364、触发弹针365及副电路板366对应地代替了上述电子烟盒200中的正极弹针263、负极弹针264、触发弹针265及副电路板266。因此,图5中仅示出正极弹针363、负极弹针364、触发弹针365、副电路板366与底座261的分解图即可说明该第二较佳实施例的技术方案。
正极弹针363、负极弹针364及触发弹针365的形状及尺寸完全相同,这里以正极弹针363为例介绍三个弹针的具体构造。该正极弹针363包括圆柱形的正极弹针主体363a,该正极弹针主体363a的直径与底座261的弹针插孔261b的直径相同,且该正极弹针主体363a的两端分别设有第一正极连接端263b与第二正极连接端263c。该第一正极连接端363b与第二正极连接端363c均为圆柱形,直径均小于正极弹针主体363a的直径,且与正极弹针主体363a同轴地分别安装在正极弹针主体363a两端。其中,第一正极连接端363b可沿着正极弹针主体363a的轴向弹性地伸缩。实现该伸缩功能的具体结构可以是现有技术,例如在该第一正极连接端363b与第二正极连接端363c之间设置柱状弹簧或其他弹性结构均可,本领域技术人员完全可以理解,因此这里无需赘述其详细特征。第二正极连接端363c与正极弹针主体363a相对固定地连接在一起。该第一正极连接端363b与第二正极连接端363c均采用导电材料例如金属制成,且彼此之间建立有电性连接,该电性连接的具体方式也可以是现有技术,例如使用安装在正极弹针主体363a内部的导线或者正极弹针主体363a本身将第一正极连接端363b与第二正极连接端363c连接均可。正极弹针主体363a外周面上还形成有一圈凸出的正极装配环363d。该正极卡配环363d的外径大于弹针插孔261b的直径。
负极弹针364包括负极弹针主体364a、第一负极连接端364b、第二负极连接端364c及负极装配环364d。触发弹针365包括触发弹针主体365a、第一触发连接端365b、第二触发连接端365c及触发装配环365d。负极弹针364与触发弹针265的这些部件分别与正极弹针363中对应的部件(即上述的正极弹针主体363a、第一正极连接端363b、第二正极连接端363c及正极装配环363d)完全相同,因此这里无需重复说明。
副电路板366的形状大致为矩形平板,尺寸与固定座261相对应。该副电路板366上等间距地开设有三个弹针焊孔366a,该三个弹针焊孔366a的直径与第二正极连接端363c、第二负极连接端364c及第二触发连接端365c的直径相同。
在组装该第二较佳实施例提供的电子烟盒时,首先将正极弹针363、负极弹针364及触发弹针365从固定座261的与开设有插入槽261a的表面相对的另一表面分别插入固定座261上的三个弹针插孔261b,并从插入槽261a的底部穿出。正极卡配环363d、负极卡配环364d及触发卡配环365d均与固定座361接触,并通过现有的手段例如粘接或卡合等方式固定在固定座261上。然后将第二正极连接端363c、第二负极连接端364c及第二触发连接端365c分别插入该副电路板366的三个弹针焊孔366a,并焊接固定在弹针焊孔366a内。之后,再从副电路板366背向固定座261的一面将第二正极连接端363c、第二负极连接端364c及第二触发连接端365c分别与主电路板250的正极接入区251、负极接入区252及触发接入区253建立电性连接,具体的电性连接方法可以是现有技术例如焊接、导线连接等。除了上述的区别特征之外,该第二较佳实施例提供的电子烟盒其余部件的特征和组装方法完全与上述第一较佳实施例相同,这里无需赘述。
该第二较佳实施例提供的电子烟盒也适用于存放上述的电子烟290并为其充电。当使用该第二较佳实施例提供的电子烟盒存放电子烟290时,可以依照与上述第一实施例相同的操作方法将电池杆291设有正极端子291a、负极端子291b与触发端子291c的端部插入固定座261的插入槽261a,然后使正极端子291a、负极端子291b及触发端子291c分别抵持在正极弹针363的第一正极连接端363b、负极弹针364的第一负极连接端364b、以及触发弹针365的第一触发连接端365b上。随着电池杆291的继续插入,第一正极连接端363b、第一负极连接端364b、以及第一触发连接端365b分别在电池杆291的压力下轴向地回缩,并在自身弹性的作用下分别紧密地抵顶在正极端子291a、负极端子291b与触发端子291c上,形成稳定的电性连接。此时,电池杆291的正极端子291a通过正极弹针263连接到主电路板250的正极接入区251,再通过主电路板250连接到电池240的正极。电池杆291的负极端子291b经由负极弹针264连接到主电路板250的负极接入区252,再通过主电路板250连接到电池240的负极。电池杆291的触发端子291c经由触发弹针265连接到主电路板250的触发接入区253,再通过触发接入区253连接到主电路板250上的充电触发电路。此时,利用锁紧环262以及其他的现有固定方式将电池杆291固定在当前位置,电池杆291与电池240即形成稳定的充电回路,而主电路板250可以通过充电触发电路启动电池杆291的充电控制电路,从而启动电池杆291的充电进程,使用电池240对电池杆291充电。本实施例中使用的充电方法属于现有技术,这里无需赘述。
请参阅图9,本发明的第三较佳实施例提供了又一种具有充电功能的电子烟盒。该第三较佳实施例提供的电子烟盒与上述第一较佳实施例提供的电子烟盒200的区别,仅在于用两根弹针代替了电子烟盒200的三根弹针,并采用具有不同结构的底座461与副电路板466代替了第一较佳实施例的底座261与副电路板266。因此,图5中仅示出正极弹针463、负极弹针464、副电路板466与底座461的分解图即可说明该第三较佳实施例的技术方案。
该正极弹针463及负极弹针464的形状和尺寸与上述第一较佳实施例的正极弹针263及负极弹针264完全相同。其中,该正极弹针463包括正极弹针主体463a、第一正极连接端463b、第二正极连接端463c及正极装配环463d。第一正极连接端463b、第二正极连接端463c及正极装配环463d的特征分别与第一较佳实施例的正极弹针263的对应部件(即正极弹针主体263a、第一正极连接端263b、第二正极连接端263c及正极装配环263d)完全相同,这里无需赘述。同样地,该负极弹针464包括负极弹针主体464a、第一负极连接端464b、第二负极连接端464c及负极装配环464d。该负极弹针主体464a、第一负极连接端464b、第二负极连接端464c及负极装配环464d的特征分别与第一较佳实施例的负极弹针264的对应部件(即负极弹针主体264a、第一负极连接端264b、第二负极连接端264c及负极装配环264d)完全相同,这里无需赘述。
底座461与第一较佳实施例的底座261的区别仅在于,底座461开设有两个间隔的弹针插孔461b,而不是三个。该等弹针插孔461b的直径与该正极弹针463及负极弹针464的直径一致。副电路板466与第一较佳实施例的副电路板266的区别仅在于,副电路板466朝向底座461的抵持面466a上仅形成有两个焊盘,即位置与底座461的两个弹针插孔261b分别对应,且彼此之间相互绝缘的正极焊盘466c与负极焊盘466d;对应地,副电路板466背向底座461的焊接面466b上也仅设置有两个焊接区(图未示),即与正极焊盘466c电性连接的正极焊接区以及与负极焊盘466d电性连接的负极焊接区。组装时,主电路板250的正极接入区251与负极接入区252分别对准副电路板466的正极焊接区与负极焊接区,并将正极接入区251与正极焊接区焊接在一起,负极接入区252与负极焊接区焊接在一起,从而在对应的接入区和焊接区之间同时建立机械连接和电性连接。主电路板250的触发接入区253在本实施例中则未被使用。本实施例其他部分的部件结构和组装方法均与上述第一实施例的电子烟盒200相同。
该第三较佳实施例提供的电子烟盒也适用于存放上述的电子烟290并为其充电。当使用该第三较佳实施例提供的电子烟盒存放电子烟290时,可以依照与上述第一实施例相同的操作方法将电池杆291设有正极端子291a、负极端子291b与触发端子291c的端部插入固定座461的插入槽461a,然后依照与上述第一较佳实施例相同的方法进行操作,使正极端子291a通过正极弹针463连接到主电路板250的正极接入区251,再通过主电路板250连接到电池240的正极;电池杆291的负极端子291b经由负极弹针464连接到主电路板250的负极接入区252,再通过主电路板250连接到电池240的负极。此时,利用锁紧环262以及其他的现有固定方式将电池杆291固定在当前位置,电池杆291与电池240即形成稳定的充电回路。由于本实施例中电池杆291没有利用其触发端子291c连接到主电路板250的充电触发电路,因此不能与上述的第一和第二较佳实施例一样,由主电路板250自动控制电池240对电池杆291进行充电,而是需要在电子烟盒或电子烟290上另外设置专用的充电触发开关,用来启动电子烟的充电控制电路,从而使用电池240对电池杆291进行充电。该充电触发开关也属于现有技术,例如可以是手动的充电控制按键等,本领域技术人员无需进行任何创造性劳动即可实现,不属于本发明的改进部分,在此无需赘述。
请参阅图10,本发明的第四较佳实施例提供了又一种具有充电功能的电子烟盒。该第四较佳实施例提供的电子烟盒与上述第一较佳实施例提供的电子烟盒200的区别,仅在于采用具有不同结构的主电路板550与副电路板560代替了第一较佳实施例的主电路板250与副电路板266。因此,图5中仅示出主电路板550与副电路板560的分解图即可说明该第四较佳实施例的技术方案。
该主电路板550与第一较佳实施例的主电路板250的区别仅在于使用主连接器551代替了主电路板250的正极接入区251、负极接入区252及触发接入区253。该主连接器551包括形状大致为长方体的连接器主体(未标号),该连接器主体上设置有正极接入端552、负极接入端553及触发接入端554。该正极接入端552、负极接入端553及触发接入端554均为圆柱形,垂直地连接在连接器主体的同一表面上,且相互之间彼此绝缘。正极接入端552通过主电路板250与电池240的正极电性连接,负极接入端553通过主电路板250与电池240的负极电性连接,触发接入端554与主电路板250上的充电触发电路电性连接。
该副电路板560与第一较佳实施例的副电路板266的区别仅在于该副电路板560背向底座261的表面560b上的结构与副电路板266的焊接面266b上的结构不同。该副电路板560背向底座261的表面560b上形成有副连接器561。该副连接器561包括形状大致为矩形框体的外框(未标号),该外框中形成有凸出的正极转接端562、负极转接端563及触发转接端564,该正极转接端562、负极转接端563及触发转接端564均为圆柱形且相互之间彼此绝缘。该副电路板560朝向底座261的表面560a上形成有正极焊盘、负极焊盘与触发焊盘,该正极焊盘、负极焊盘与触发焊盘与第一较佳实施例的正极焊盘266c、负极焊盘266d及触发焊盘266e完全相同,因此图中无需再次画出。该表面560a上形成的正极焊盘、负极焊盘与触发焊盘分别与该正极转接端562、负极转接端563及触发转接端564电性连接。组装时,该正极转接端562、负极转接端563及触发转接端564通过现有技术手段(例如焊接、插接、导线连接等等)分别连接到正极接入端552、负极接入端553及触发接入端554。
该第四较佳实施例提供的电子烟盒也适用于存放上述的电子烟290并为其充电。当使用该第四较佳实施例提供的电子烟盒存放电子烟290时,可以依照与上述第一较佳实施例相同的操作方法将电池杆291的正极端子291a经由正极弹针263连接到正极焊盘,再通过正极焊盘、正极转接端562与正极接入端552连接到电池240的正极;电池杆291的负极端子291b经由负极弹针264连接到负极焊盘,再通过负极焊盘、负极转接端563与负极接入端553连接到电池240的负极;电池杆291的触发端子291c经由触发弹针265连接到触发焊盘,再通过触发焊盘、触发转接端564与触发接入端554连接到主电路板250上的充电触发电路。此时,利用锁紧环262以及其他的现有固定方式将电池杆291固定在当前位置,电池杆291与电池240即形成稳定的充电回路。此时,即可按照与上述第一较佳实施例相同的方法,使用主电路板550控制电池240向电池杆291充电。
可以理解,该第二、第三及第四较佳实施例都同样采用了弹针结构,因此相对于现有技术也可以取得与上述第一较佳实施例相同的有益效果。
本发明还提供了一种具有充电功能的电子烟盒的使用方法,该方法可采用上述第一至第四实施例中任意一个所提供的电子烟盒来实现。具体地,该方法包括以下步骤:
在电子烟盒的充电座中设置至少一端可弹性伸缩的正极弹针与负极弹针;
将电子烟的电池杆插入所述充电座,把电池杆的正极端子抵顶在正极弹针可弹性伸缩的一端,电池杆的负极端子抵顶在负极弹针可弹性伸缩的一端,使得正极弹针可弹性伸缩的一端在弹性作用下紧密地抵顶在正极端子上,负极弹针可弹性伸缩的一端在弹性作用下紧密地抵顶在负极端子上;
将正极弹针的另一端与电子烟盒的内置电池的正极电性连接,将负极弹针的另一端与电子烟盒的内置电池的负极电性连接,从而在电子烟的电池杆与电子烟盒的内置电池之间建立充电回路;
使用电子烟盒的内置电池为电子烟的电池杆充电。
优选地,该方法还包括以下步骤:
在电子烟盒的充电座中设置至少一端可弹性伸缩的触发弹针;
将电子烟的电池杆插入所述充电座,把电池杆的触发端子抵顶在触发弹针可弹性伸缩的一端,使得触发弹针可弹性伸缩的一端在弹性作用下紧密地抵顶在触发端子上;
将触发端子的另一端与电子烟盒的充电触发电路建立电性连接;
在电子烟的电池杆与电子烟盒的内置电池之间建立充电回路之后,使用所述充电触发电路控制电子烟盒的内置电池向电子烟的电池杆充电。
以上所述仅是本发明的较佳实施例而已,并非对本发明作任何形式上的限制,虽然本发明已以较佳实施例揭露如上,然而并非用以限定本发明,任何熟悉本专业的技术人员,在不脱离本发明技术方案范围内,当可利用上述揭示的技术内容做出些许更动或修饰为等同变化的等效实施例,但凡是未脱离本发明技术方案内容,依据本发明的技术实质对以上实施例所作的任何简单修改、等同变化与修饰,均仍属于本发明技术方案的范围内。

Claims (15)

  1. 一种电子烟充电座,其特征在于:所述充电座包括用于分别将所述电子烟电性连接到电池的正极与负极,从而构成充电回路的正极弹针与负极弹针,所述正极弹针与所述负极弹针均为柱状,所述正极弹针包括可以沿所述正极弹针的轴向弹性伸缩并抵顶在所述电子烟上而与所述电子烟电性连接的第一正极连接端、与所述第一正极连接端活动连接的第二正极连接端、以及两端分别抵持在所述第一正极连接端与第二正极连接端上的第一弹性机构;
    所述负极弹针包括可以沿所述负极弹针的轴向弹性伸缩并抵顶在所述电子烟上而与所述电子烟电性连接的第一负极连接端、与所述第一负极连接端活动连接的第二负极连接端、以及两端分别抵持在所述第一负极连接端与第二负极连接端上的第二弹性机构。
  2. 如权利要求1所述的电子烟充电座,其特征在于:所述电子烟充电座还包括底座,所述底座开设有用于供所述电子烟插入的插入槽,所述插入槽底部开设有弹针插孔,所述正极弹针与所述负极弹针插入所述弹针插孔内并固定在所述底座上。
  3. 如权利要求1所述的电子烟充电座,其特征在于:所述电子烟充电座还包括副电路板,所述副电路板包括与所述电池的正极电性连接的正极焊盘以及与所述电池的负极电性连接的负极焊盘;所述第二正极连接端可以沿所述正极弹针的轴向弹性伸缩,并抵顶在所述正极焊盘上而与所述正极焊盘电性连接,所述第二负极连接端可以沿所述负极弹针的轴向弹性伸缩,并抵顶在所述负极焊盘上而与所述负极焊盘电性连接。
  4. 如权利要求1所述的电子烟充电座,其特征在于:所述电子烟充电座还包括用于将所述电子烟的充电控制电路与用于启动所述充电控制电路的充电触发电路电性连接,从而利用所述充电触发电路控制所述电池对所述电子烟充电的触发弹针,所述触发弹针为柱状,且包括可以沿所述触发弹针的轴向弹性伸缩并抵顶在所述电子烟上而与所述电子烟电性连接的第一触发连接端、与所述第一触发连接端活动连接的第二触发连接端、以及两端分别抵持在所述第一触发连接端与所述第二触发连接端上的第三弹性机构。
  5. 如权利要求4所述的电子烟充电座,其特征在于:所述电子烟充电座还包括底座,所述底座开设有用于供所述电子烟插入的插入槽,所述插入槽底部开设有弹针插孔,所述正极弹针、所述负极弹针及所述触发弹针插入所述弹针插孔内并固定在所述底座上。
  6. 如权利要求4所述的电子烟充电座,其特征在于:所述电子烟充电座还包括副电路板,所述副电路板包括与所述电池的正极电性连接的正极焊盘、与所述电池的负极电性连接的负极焊盘、以及与所述充电触发电路电性连接的触发焊盘;所述第二正极连接端可以沿所述正极弹针的轴向弹性伸缩,并抵顶在所述正极焊盘上而与所述正极焊盘电性连接,所述第二负极连接端可以沿所述负极弹针的轴向弹性伸缩,并抵顶在所述负极焊盘上而与所述负极焊盘电性连接,所述第二触发连接端可以沿所述触发弹针的轴向弹性伸缩,并抵顶在所述触发焊盘上而与所述充电触发电路电性连接。
  7. 一种电子烟盒,包括用于容纳电子烟的底盒,其特征在于:所述电子烟盒还包括用于给所述电子烟充电的电池,以及用于将所述电子烟与所述电池电性连接的充电座;所述电池与所述充电座均固定地容纳在所述底盒内,且所述充电座包括用于分别将所述电子烟电性连接到电池的正极与负极,从而构成充电回路的正极弹针与负极弹针,所述正极弹针与所述负极弹针均为柱状,所述正极弹针包括可以沿所述正极弹针的轴向弹性伸缩并抵顶在所述电子烟上而与所述电子烟电性连接的第一正极连接端、与所述第一正极连接端活动连接的第二正极连接端、以及两端分别抵持在所述第一正极连接端与第二正极连接端上的第一弹性机构;所述负极弹针包括可以沿所述负极弹针的轴向弹性伸缩并抵顶在所述电子烟上而与所述电子烟电性连接的第一负极连接端、与所述第一负极连接端活动连接的第二负极连接端、以及两端分别抵持在所述第一负极连接端与第二负极连接端上的第二弹性机构。
  8. 如权利要求7所述的电子烟盒,其特征在于:所述电子烟充电座还包括底座,所述底座开设有用于供所述电子烟插入的插入槽,所述插入槽底部开设有弹针插孔,所述正极弹针与所述负极弹针插入所述弹针插孔内并固定在所述底座上。
  9. 如权利要求7所述的电子烟盒,其特征在于:所述电子烟充电座还包括副电路板,所述副电路板包括与所述电池的正极电性连接的正极焊盘以及与所述电池的负极电性连接的负极焊盘;所述第二正极连接端可以沿所述正极弹针的轴向弹性伸缩并抵顶在所述正极焊盘上而与所述正极焊盘电性连接的,所述第二负极连接端可以沿所述负极弹针的轴向弹性伸缩,并抵顶在所述负极焊盘上而与所述负极焊盘电性连接。
  10. 如权利要求7所述的电子烟盒,其特征在于:所述电子烟充电座还包括用于将所述电子烟的充电控制电路与用于启动所述充电控制电路的充电触发电路电性连接,从而利用所述充电触发电路控制所述电池对所述电子烟充电的触发弹针,所述触发弹针为柱状,且包括可以沿所述触发弹针的轴向弹性伸缩并抵顶在所述电子烟上而与所述电子烟电性连接的第一触发连接端、与所述第一触发连接端活动连接的第二触发连接端、以及两端分别抵持在所述第一触发连接端与所述第二触发连接端上的第三弹性机构。
  11. 如权利要求10所述的电子烟盒,其特征在于:所述电子烟充电座还包括底座,所述底座开设有用于供所述电子烟插入的插入槽,所述插入槽底部开设有弹针插孔,所述正极弹针、所述负极弹针及所述触发弹针插入所述弹针插孔内并固定在所述底座上。
  12. 如权利要求10所述的电子烟盒,其特征在于:所述电子烟充电座还包括副电路板,所述副电路板包括与所述电池的正极电性连接的正极焊盘、与所述电池的负极电性连接的负极焊盘、以及与所述充电触发电路电性连接的触发焊盘;所述第二正极连接端可以沿所述正极弹针的轴向弹性伸缩,并抵顶在所述正极焊盘上而与所述正极焊盘电性连接,所述第二负极连接端可以沿所述负极弹针的轴向弹性伸缩,并抵顶在所述负极焊盘上而与所述负极焊盘电性连接,所述第二触发连接端可以沿所述触发弹针的轴向弹性伸缩,并抵顶在所述触发焊盘上而与所述充电触发电路电性连接。
  13. 如权利要求10所述的电子烟盒,其特征在于:所述电子烟盒还包括主电路板,所述主电路板固定地容纳在所述底盒内且与所述电池及所述副电路板电性连接,所述充电触发电路设置在所述主电路板上,所述主电路板通过所述充电触发电路控制所述电池开始及停止向所述电子烟充电。
  14. 一种电子烟盒的使用方法,其特征在于,该方法包括以下步骤:
    在电子烟盒的充电座中设置至少一端可弹性伸缩的正极弹针与负极弹针;
    将电子烟的电池杆插入所述充电座,把电池杆的正极端子抵顶在正极弹针可弹性伸缩的一端,电池杆的负极端子抵顶在负极弹针可弹性伸缩的一端,使得正极弹针可弹性伸缩的一端在弹性作用下紧密地抵顶在正极端子上,负极弹针可弹性伸缩的一端在弹性作用下紧密地抵顶在负极端子上;
    将正极弹针的另一端与电子烟盒的内置电池的正极电性连接,将负极弹针的另一端与电子烟盒的内置电池的负极电性连接,从而在电子烟的电池杆与电子烟盒的内置电池之间建立充电回路;
    使用电子烟盒的内置电池为电子烟的电池杆充电。
  15. 如权利要求14所述的方法,其特征在于,该方法还包括以下步骤:
    在电子烟盒的充电座中设置至少一端可弹性伸缩的触发弹针;
    将电子烟的电池杆插入所述充电座,把电池杆的触发端子抵顶在触发弹针可弹性伸缩的一端,使得触发弹针可弹性伸缩的一端在弹性作用下紧密地抵顶在触发端子上;
    将触发端子的另一端与电子烟盒的充电触发电路建立电性连接;
    在电子烟的电池杆与电子烟盒的内置电池之间建立充电回路之后,使用所述充电触发电路控制电子烟盒的内置电池向电子烟的电池杆充电。
PCT/CN2014/072754 2014-02-28 2014-02-28 电子烟充电座、电子烟盒及其使用方法 WO2015127671A1 (zh)

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