WO2019114597A1 - 电子烟及电子烟激活系统 - Google Patents
电子烟及电子烟激活系统 Download PDFInfo
- Publication number
- WO2019114597A1 WO2019114597A1 PCT/CN2018/119500 CN2018119500W WO2019114597A1 WO 2019114597 A1 WO2019114597 A1 WO 2019114597A1 CN 2018119500 W CN2018119500 W CN 2018119500W WO 2019114597 A1 WO2019114597 A1 WO 2019114597A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- nfc
- electronic cigarette
- main circuit
- mobile device
- circuit
- Prior art date
Links
- 239000003571 electronic cigarette Substances 0.000 title claims abstract description 96
- 230000004913 activation Effects 0.000 title claims abstract description 34
- 238000003860 storage Methods 0.000 claims abstract description 65
- 238000012795 verification Methods 0.000 claims abstract description 45
- 238000000034 method Methods 0.000 claims description 9
- 230000008569 process Effects 0.000 claims description 3
- 238000005530 etching Methods 0.000 claims description 2
- 239000000463 material Substances 0.000 claims description 2
- 238000007639 printing Methods 0.000 claims description 2
- 230000004044 response Effects 0.000 claims description 2
- 238000004804 winding Methods 0.000 claims description 2
- 229910000859 α-Fe Inorganic materials 0.000 claims description 2
- 238000010586 diagram Methods 0.000 description 8
- 230000005540 biological transmission Effects 0.000 description 4
- 235000019504 cigarettes Nutrition 0.000 description 2
- 230000006870 function Effects 0.000 description 2
- 239000000779 smoke Substances 0.000 description 2
- 238000000889 atomisation Methods 0.000 description 1
- 238000012790 confirmation Methods 0.000 description 1
- 230000008094 contradictory effect Effects 0.000 description 1
- 238000013500 data storage Methods 0.000 description 1
- 238000011161 development Methods 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 230000003862 health status Effects 0.000 description 1
- 230000001939 inductive effect Effects 0.000 description 1
- 238000004519 manufacturing process Methods 0.000 description 1
- 238000002360 preparation method Methods 0.000 description 1
- 238000012545 processing Methods 0.000 description 1
- 230000009466 transformation Effects 0.000 description 1
Classifications
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- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F40/00—Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
- A24F40/65—Devices with integrated communication means, e.g. wireless communication means
-
- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F40/00—Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
- A24F40/50—Control or monitoring
- A24F40/53—Monitoring, e.g. fault detection
-
- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06K—GRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
- G06K17/00—Methods or arrangements for effecting co-operative working between equipments covered by two or more of main groups G06K1/00 - G06K15/00, e.g. automatic card files incorporating conveying and reading operations
-
- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06Q—INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
- G06Q30/00—Commerce
- G06Q30/018—Certifying business or products
- G06Q30/0185—Product, service or business identity fraud
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B5/00—Near-field transmission systems, e.g. inductive or capacitive transmission systems
- H04B5/20—Near-field transmission systems, e.g. inductive or capacitive transmission systems characterised by the transmission technique; characterised by the transmission medium
- H04B5/24—Inductive coupling
- H04B5/26—Inductive coupling using coils
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B5/00—Near-field transmission systems, e.g. inductive or capacitive transmission systems
- H04B5/40—Near-field transmission systems, e.g. inductive or capacitive transmission systems characterised by components specially adapted for near-field transmission
- H04B5/48—Transceivers
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B5/00—Near-field transmission systems, e.g. inductive or capacitive transmission systems
- H04B5/70—Near-field transmission systems, e.g. inductive or capacitive transmission systems specially adapted for specific purposes
Definitions
- the present application relates to the field of electronic cigarettes, and in particular to an electronic cigarette and electronic cigarette activation system.
- E-cigarette is an electronic product that imitates traditional cigarettes. It has the advantages of tiny appearance, strong smoke output and taste. It produces steam by means of atomization. Compared with traditional cigarettes, electronic cigarettes are healthier and have a broader market prospect. With the rapid development of the electronic cigarette industry, some enterprises use illegal means to manufacture and sell counterfeit and shoddy electronic cigarettes, disrupting the market and damaging the rights and interests of the people.
- the main purpose of the present application is to provide an electronic cigarette and electronic cigarette activation system, which aims to solve the existing technical problems of not being able to effectively identify counterfeit and shoddy products.
- an electronic cigarette including a main circuit and an NFC circuit connected to each other, the NFC circuit including an NFC antenna and an NFC memory module connected to each other;
- the NFC storage module is configured to store an anti-counterfeit identifier
- the NFC antenna is configured to extract the anti-counterfeit identifier from the NFC storage module when the mobile device is sensed to be within a preset range, and send the anti-counterfeit identifier to the mobile device to enable the mobile
- the device verifies the anti-counterfeiting identifier and feeds back the verification result
- the NFC antenna is further configured to receive a verification result fed back by the mobile device, and send the verification result to the main circuit;
- the main circuit is configured to set the current state to a locked state when the verification result is that the verification is unsuccessful.
- the NFC circuit further includes an encryption and decryption chip, and the encryption and decryption chip is disposed between the NFC antenna and the NFC storage module.
- the NFC antenna is further configured to acquire a key sent by the mobile device when sensing that the mobile device is within a preset range, and the encryption and decryption chip uses the key pair to perform the anti-counterfeiting
- the identification is encrypted and the encrypted anti-counterfeit identification is sent to the mobile device.
- the NFC circuit further includes an NFC main control chip;
- the encryption/decryption chip is configured to acquire model information of the NFC main control chip, encrypt model information of the NFC main control chip by using the key, and save the encrypted NFC encryption information in the NFC.
- the storage module simultaneously transmits the NFC encrypted information to the main circuit.
- the main circuit further includes a main chip
- the main circuit is further configured to receive NFC encryption information sent by the NFC circuit, acquire model information of the main chip, encrypt model information of the main chip by using the key, and generate the encryption
- the main circuit encryption information is stored locally, and the main circuit encryption information is sent to the NFC storage module for storage.
- the main circuit is further configured to acquire, in real time, main circuit encryption information and NFC encryption information in the NFC storage module;
- the current state is set to a locked state
- the current state is set to the locked state.
- the NFC antenna is further configured to acquire user usage parameter information sent by the main circuit, and send the user usage parameter information to the mobile device.
- the NFC antenna is further configured to acquire user usage parameter information sent by the main circuit, encrypt the user usage parameter information by using the key, and use the encrypted user usage parameter information in the pre-preparation Send to the mobile device within the range.
- the NFC circuit is further configured to receive configuration information of the mobile device within a preset range, and send the configuration information to the main circuit.
- the present application also proposes an electronic cigarette activation system including a mobile device and an electronic cigarette as described above.
- the NFC circuit in this embodiment is provided with an NFC antenna and an NFC storage module.
- the NFC storage module stores an anti-counterfeit identifier
- the NFC antenna can send the anti-counterfeit identifier to the mobile when sensing that the mobile device is within a preset range.
- the device is configured to enable the mobile device to verify the anti-counterfeit identifier, and the main circuit sets the current state to a locked state when the verification result is that the verification is unsuccessful, because the uniqueness of the anti-counterfeit identifier stored in the NFC storage module is It can avoid the sale of counterfeit and shoddy products as genuine products by lawless elements, so as to avoid the danger of counterfeit and shoddy products posing to users.
- FIG. 1 is a circuit configuration diagram of an embodiment of an electronic cigarette of the present application
- FIG. 2 is a circuit structural diagram of another embodiment of the electronic cigarette of the present application.
- FIG. 3 is a schematic flow chart of an electronic cigarette user activation description of the present application.
- FIG. 4 is a circuit structural diagram of still another embodiment of the electronic cigarette of the present application.
- FIG. 5 is a schematic structural view of an electronic cigarette activation system of the present application.
- Label name Label name 100 e-cigarette 50 Encryption chip 10 The main circuit 60 NFC master chip 20 NFC circuit 70 main chip 30 NFC antenna 200 Electronic cigarette activation system 40 NFC storage module
- the directional indication is only set to explain in a certain posture (as shown in the figure).
- the electronic cigarette includes a main circuit 10 and an NFC circuit 20 connected to each other, and the NFC circuit 20 includes an NFC antenna 30 and an NFC storage module 40 connected to each other. ;
- the main circuit 10 is connected to the NFC circuit 20 through a data bus, and the NFC antenna 30 is electrically connected to the NFC memory module 40.
- the NFC circuit 20 further includes an NFC chip, and the NFC chip passes through the The data bus receives data of the main circuit 10.
- the NFC storage module 40 is configured to store an anti-counterfeit identifier
- NFC chip will be allocated to each electronic cigarette, and the ID number corresponding to the NFC chip will be input into a database for storage, and the user is using the product.
- the NFC chip must be activated before it can be used, and the same NFC chip can only be activated once. When activated, the system will prompt the user that the current ID number has been used and cannot be activated, thus preventing counterfeit and shoddy products from entering the market.
- the NFC antenna 30 of the electronic cigarette receives the anti-counterfeit identifier sent by the mobile device, and stores the anti-counterfeit identifier in the NFC storage module 40, so that the electronic cigarette can be used by the anti-counterfeiting identifier. Verifying that, when the electronic cigarette is activated, the NFC antenna 30 transmits the anti-counterfeit identifier stored in the NFC storage module 40 to the mobile device, and the mobile device acquires the obtained anti-counterfeiting identifier and the entered in the system database. The anti-counterfeiting logo is matched. After the matching is successful, it indicates that the currently used electronic cigarette is a genuine product.
- the mobile device matches the obtained anti-counterfeiting identifier with the entered anti-counterfeiting identifier in the system database, after the matching is unsuccessful, it indicates that the currently used electronic cigarette is a counterfeit product, in this case,
- the mobile device sends feedback information to the NFC antenna 30, which sends the feedback message to the main circuit 10 via an NFC chip.
- the main circuit 10 After receiving the feedback information sent by the NFC antenna 30, the main circuit 10 performs corresponding processing according to the feedback information. For example, after receiving the verification pass message, the main circuit 10 may present the current electronic cigarette. The state is set to an active state, and after the main circuit 10 receives the message of verification failure, the current state of the electronic cigarette can be set to the locked state.
- the mobile device may be a mobile phone, a tablet, and a personal computer with an NFC function, and may be other mobile devices that can achieve the same function, which is not limited in this embodiment.
- the NFC antenna 30 is configured to extract the anti-counterfeit identifier from the NFC storage module 40 when the mobile device is sensed to be within a preset range, and send the anti-counterfeit identifier to the mobile device to enable the The mobile device verifies the anti-counterfeiting identifier and feeds back the verification result;
- the NFC antenna 30 may be composed of a circuit coil made by a winding or printing or etching process and a ferrite material having anti-interference capability, and the NFC chip and the NFC memory module 40 are connected by wires.
- the NFC chip can be configured to encrypt and decrypt data transmitted and received by the NFC antenna 30, and the NFC storage module 40 can be configured to store data transmitted and received by the NFC antenna 30.
- the anti-counterfeit identifier in the NFC storage module 40 is sent to the mobile device by the generated electrical signal, so that the mobile device can be The anti-counterfeit identification is verified, and the verification result is fed back.
- the NFC antenna 30 is further configured to receive a verification result fed back by the mobile device, and send the verification result to the main circuit 10;
- the main circuit 10 is configured to set the current state to a locked state when the verification result is that the verification is unsuccessful.
- the main circuit 10 is further configured to set the current state to an active state when the verification result is that the verification is successful.
- the activation state is that the electronic cigarette is in a working state, for example, the smoke amount setting and the use time setting may be performed on the electronic cigarette
- the locking state is that the electronic cigarette is in an unusable state or has Functional limitations, time limits, etc. cannot be in a normal working state.
- the NFC circuit 20 in this embodiment is provided with an NFC antenna 30 and an NFC storage module 40.
- the NFC storage module 40 stores an anti-counterfeit identifier.
- the NFC antenna 30 can detect the anti-counterfeit identifier when the mobile device is within a preset range. Sending to the mobile device, so that the mobile device verifies the anti-counterfeit identifier, and the main circuit 10 sets the current state to a locked state when the verification result is that the verification is unsuccessful, because the NFC storage module 40 stores
- the uniqueness of the anti-counterfeiting logo can prevent the counterfeit products from selling fake and shoddy products as genuine products on the market, thus avoiding the safety hazards of counterfeit and shoddy products.
- the NFC circuit 20 further includes an encryption and decryption chip 50.
- the encryption and decryption chip 50 is disposed between the NFC antenna 30 and the NFC storage module 40. .
- the NFC circuit 20 has an NFC storage module 40, an NFC antenna 30, and an encryption and decryption chip 50.
- the NFC antenna 30 decrypts by the encryption/decryption chip 50, and finally sends the received data to the electronic cigarette main circuit 10, and the electronic cigarette main circuit 10 performs identity verification based on the data.
- the electronic cigarette main circuit 10 transmits the data content required by the user to the encryption/decryption chip 50 through the data bus in a high speed state, and the encryption/decryption chip 50 encrypts the data to be transmitted, and then sends out through the NFC antenna 30.
- the key and identity information at the time of NFC encryption and decryption are stored in the NFC storage module 40.
- the NFC antenna 30 is further configured to acquire a key sent by the mobile device when the mobile device is in a preset range, and the encryption/decryption chip 50 performs the anti-counterfeiting identifier by using the key. Encrypted and sent the encrypted anti-counterfeit identification to the mobile device.
- the NFC storage module 40 stores a key
- the encryption/decryption chip 50 encrypts and decrypts the data of the external mobile device received by the NFC antenna 30 through the key, thereby ensuring the security of data transmission.
- the encryption/decryption chip 50 encrypts and encrypts the data received on the one hand by the NFC antenna 30, and on the other hand, the encryption/decryption chip 50 is assigned a globally unique chip ID, thereby ensuring the electronic cigarette. Guaranteed to be unique when performing verification.
- the electronic cigarette uses a globally unique NFC chip, and the activation verification of the electronic cigarette can be verified by the activation code of the chip, as shown in the schematic diagram of the electronic cigarette user activation description as described in FIG. 3 .
- the system prompts the user to activate the product.
- the first method is that the user can input the multi-digit activation code displayed on the electronic cigarette on the activation registration page, and the second method directly uses the NFC. Mode activation. If it is a counterfeit product, the activation will not be successful, and the authenticity can only be activated once. Therefore, the user can purchase genuine electronic cigarette products.
- the electronic cigarette further includes a battery, and the battery is connected to the main circuit 10 and the NFC circuit 20 to supply power to the main circuit 10 and the NFC circuit 20.
- the NFC circuit 20 is installed on the electronic cigarette.
- the NFC circuit 20 includes an NFC antenna 30 and the NFC storage module 40.
- the user can activate the mobile device through the website.
- the code is verified, and the mobile device application (Application, APP) can be used for online verification, and the mobile device's APP is opened to the product activation interface, and the mobile device is brought close to the preset range of the electronic cigarette, that is, close to the electronic cigarette.
- the sensing area is activated by the sensing area.
- the NFC circuit 20 further includes an encryption and decryption chip 50.
- the encryption and decryption chip 50 is disposed between the NFC antenna 30 and the NFC storage module 40, and the NFC antenna 30 is inductive. Obtaining a key sent by the mobile device when the mobile device is within a preset range, the encryption/decryption chip 50 encrypts the anti-counterfeit identifier by using the key, and sends the encrypted anti-counterfeit identifier to the The mobile device ensures the security of data transmission.
- the NFC circuit 20 further includes an NFC main control chip 60;
- the encryption/decryption chip 50 is configured to acquire the model information of the NFC main control chip 60, encrypt the model information of the NFC main control chip 60 by using the key, and save the encrypted NFC encryption information in the
- the NFC storage module 40 simultaneously transmits the NFC encrypted information to the main circuit 10.
- a master control chip is allocated in the encryption/decryption chip 50, and the chip model information of the master control chip is obtained, and the chip model information is encrypted according to the chip model, and the encrypted chip is obtained.
- the model information is stored in the NFC storage module 40, thereby ensuring the security of data storage and being difficult to be changed.
- the main circuit 10 further includes a main chip 70;
- the main circuit 10 is further configured to receive the NFC encryption information sent by the NFC circuit 20, acquire the model information of the main chip 70, and encrypt the model information of the main chip 70 by using the key, and The encrypted information of the main circuit 10 generated after the encryption is saved locally, and the encrypted information of the main circuit 10 is sent to the NFC storage module 40 for storage.
- the main circuit 10 can also acquire the model information of the main chip 70, encrypt the model information by using a serial number, and send the encrypted model information to the NFC storage module 40 for storage. It is ensured that the main circuit 10 and the NFC circuit 20 have the same verification data.
- the main circuit 10 is further configured to acquire the main circuit 10 encryption information and the NFC encryption information in the NFC storage module 40 in real time;
- the current state is set to a locked state
- the current state is set to the locked state.
- the main circuit 10 Since the same encrypted message is stored in both the main circuit 10 and the NFC circuit 20, thereby ensuring that the message is not serially changed, and the main circuit 10 can be connected to the NFC circuit 20 via the bus, the state of the NFC circuit 20 can be monitored in real time. In a case where the data in the NFC storage module 40 does not coincide with the data in the main circuit 10, the main circuit 10 can set the current state to a locked state, so that the data in the electronic cigarette is changed in series. To ensure that the electronic cigarette will not be used.
- the mobile device sends the generated identity data to the electronic cigarette main circuit 10 through the NFC, and after the electronic cigarette main circuit 10 verifies the completion data, the key configuration of the NFC circuit 20 is started, and the electronic cigarette main chip chip string is started. No. encryption, NFC chip ID number encryption and other operations. After the operation is completed, the encrypted data is stored in the electronic cigarette main circuit 10 and the NFC storage module 40. The electronic cigarette main circuit 10 monitors the NFC chip in real time. If the data of the NFC circuit 20 is found to be mismatched, the electronic cigarette will be locked and the user cannot use it, thereby preventing the illegal elements from stealing user data.
- the NFC antenna 30 is further configured to acquire user usage parameter information sent by the main circuit 10, and send the user usage parameter information to the mobile device.
- the NFC main circuit 10 can acquire usage data of the user, and send the usage data of the user to the NFC circuit 20 through a data bus, and the NFC circuit 20 encrypts the received user data by using a key.
- the data is transmitted to the mobile device through the NFC antenna 30, thereby ensuring the security of data transmission.
- the NFC main circuit 10 can record usage data of the user, such as the usage time of the user in the most recent month, so that the user's usage time can be used, and the user's usage time can be processed, so that The user's health status is handled.
- the NFC antenna 30 is further configured to acquire user usage parameter information sent by the main circuit 10, encrypt the user usage parameter information by using the key, and use the encrypted user usage parameter information in a preset range. Sent to the mobile device.
- the NFC circuit 20 is further configured to receive configuration information of the mobile device within a preset range, and send the configuration information to the main circuit 10.
- the configuration information may be that the mobile device sends configuration information to the NFC antenna 30 through NFC, and the NFC antenna 30 sends the configuration information to the main circuit 10, so that the main circuit is 10, according to the configuration information, the current state is set correspondingly, for example, the user sets the e-cigar usage time by the mobile device to one hour per day, and the mobile device sends the one-hour configuration time to the NFC antenna 30 through the NFC,
- the NFC antenna 30 transmits the configuration information to the main circuit 10, so that the main circuit 10 manages the current state according to the 1-hour configuration time, and can calculate the daily usage time of the user during the use time. After more than one hour, the current usage status is locked, so that the user can be configured according to the needs of the user to improve the user experience.
- the encryption/decryption chip 50 is disposed between the NFC antenna 30 and the NFC storage module 40, and decrypts and encrypts data received and transmitted by the NFC antenna 30 and data in the NFC storage module 40. To ensure the security of data transmission.
- the present application also proposes an electronic cigarette activation system comprising a mobile device and an electronic cigarette as described above.
- FIG. 5 A schematic diagram of the structure of the electronic cigarette activation system shown in FIG. 5, the electronic cigarette activation system 200 includes a mobile device 300 and an electronic cigarette 100 as described above.
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Abstract
一种电子烟(100)及电子烟激活系统(200),电子烟(100)包括相互连接的主电路(10)与NFC电路(20),NFC电路(20)包括相互连接的NFC天线(30)和NFC存储模块(40);NFC存储模块(40),设置为存储防伪标识;NFC天线(30),设置为在感应到移动设备在预设范围内时,从NFC存储模块(40)中提取防伪标识,并将防伪标识发送至移动设备,以使移动设备对防伪标识进行验证,并反馈验证结果;NFC天线(30),还设置为接收移动设备反馈的验证结果,并将验证结果发送至主电路(10);主电路(10),设置为在验证结果为验证不成功时,将当前状态设置为锁定状态。该电子烟(100)及电子烟激活系统(200)能有效的识别假冒伪劣产品。
Description
技术领域
本申请涉及电子烟领域,尤其涉及一种电子烟及电子烟激活系统。
背景技术
电子烟是一种模仿传统卷烟的电子产品,它具有精美的外观、强大出烟量、口味可选等优势。它是通过雾化方式生产蒸汽,相对传统卷烟,电子烟更健康,市场前景更广阔。随着电子烟行业快速发展,有的企业使用不法手段制造和销售假冒伪劣电子烟,扰乱市场,损害群众权益。
目前,市面上不法商家企业假冒制造的高仿品,出现不开机、烧机、无法充电、起火等多项严重威胁用户生命安全问题,这些高仿品从外观上无法检验和区分,现有防伪手段,有二维码验证,外观标签验证,或是验证码确认等,但这些方式已经无法制止不法商家。
发明内容
本申请的主要目的在于提供一种电子烟及电子烟激活系统,旨在解决现有的无法有效的识别假冒伪劣产品技术问题。
为实现上述目的,本申请提供一种电子烟,所述电子烟包括相互连接的主电路与NFC电路,所述NFC电路包括相互连接的NFC天线和NFC存储模块;
所述NFC存储模块,设置为存储防伪标识;
所述NFC天线,设置为在感应到移动设备在预设范围内时,从所述NFC存储模块中提取所述防伪标识,并将所述防伪标识发送至所述移动设备,以使所述移动设备对所述防伪标识进行验证,并反馈验证结果;
所述NFC天线,还设置为接收所述移动设备反馈的验证结果,并将所述验证结果发送至所述主电路;
所述主电路,设置为在所述验证结果为验证不成功时,将当前状态设置为锁定状态。
可选地,所述NFC电路还包括加解密芯片,所述加解密芯片设于所述NFC天线和NFC存储模块之间。
可选地,所述NFC天线,还设置为在感应到所述移动设备在预设范围内时,获取所述移动设备发送的密钥,所述加解密芯片通过所述密钥对所述防伪标识进行加密,并将加密后的防伪标识发送至所述移动设备。
可选地,所述NFC电路还包括NFC主控芯片;
所述加解密芯片,设置为获取所述NFC主控芯片的型号信息,将所述NFC主控芯片的型号信息通过所述密钥进行加密,并将加密后的NFC加密信息保存在所述NFC存储模块,同时将所述NFC加密信息发送至所述主电路。
可选地,所述主电路还包括主芯片;
所述主电路,还设置为接收所述NFC电路发送的NFC加密信息,并获取所述主芯片的型号信息,将所述主芯片的型号信息通过所述密钥进行加密,并将加密后生成的主电路加密信息保存在本地,同时将所述主电路加密信息发送至所述NFC存储模块进行保存。
可选地,所述主电路,还设置为实时获取所述NFC存储模块中的主电路加密信息与NFC加密信息;
在本地保存的所述主电路加密信息与NFC存储模块中的主电路加密信息匹配不成功时,将当前状态设置为锁定状态;
在本地保存的所述NFC加密信息与NFC存储模块中的NFC加密信息匹配不成功时,将当前状态设置为锁定状态。
可选地,所述NFC天线,还设置为获取所述主电路发送的用户使用参数信息,并将所述用户使用参数信息发送至所述移动设备。
可选地,所述NFC天线,还设置为获取所述主电路发送的用户使用参数信息,通过所述密钥对所述用户使用参数信息进行加密,并将加密后的用户使用参数信息在预设范围内发送至所述移动设备。
可选地,所述NFC电路,还设置为在预设范围内接收所述移动设备的配置信息,并将所述配置信息发送至所述主电路。
此外,为实现上述目的,本申请还提出一种电子烟激活系统,所述电子烟激活系统包括移动设备以及如上所述的电子烟。
本实施例中的NFC电路设置有NFC天线和NFC存储模块,NFC存储模块中存有防伪标识,NFC天线可在感应到移动设备在预设范围内时,将所述防伪标识发送至所述移动设备,以使所述移动设备对所述防伪标识进行验证,主电路在所述验证结果为验证不成功时,将当前状态设置为锁定状态,由于NFC存储模块中存储的防伪标识的唯一性,能够避免由于不法分子将假冒伪劣产品当作正版商品在市面上进行销售,从而避免假冒伪劣产品对使用者造成安全危险。
附图说明
为了更清楚地说明本申请实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图示出的结构获得其他的附图。
图1是本申请电子烟一实施例的电路结构图;
图2是本申请电子烟另一实施例的电路结构图;
图3是本申请电子烟用户激活说明的流程示意图;
图4是本申请电子烟再一实施例的电路结构图;
图5是本申请电子烟激活系统的结构示意图。
附图标号说明:
标号 | 名称 | 标号 | 名称 |
100 | 电子烟 | 50 | 加解密芯片 |
10 | 主电路 | 60 | NFC主控芯片 |
20 | NFC电路 | 70 | 主芯片 |
30 | NFC天线 | 200 | 电子烟激活系统 |
40 | NFC存储模块 |
本申请目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请的一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
需要说明,若本申请实施例中有涉及方向性指示(诸如上、下、左、右、前、后……),则该方向性指示仅设置为解释在某一特定姿态(如附图所示)下各部件之间的相对位置关系、运动情况等,如果该特定姿态发生改变时,则该方向性指示也相应地随之改变。
另外,若本申请实施例中有涉及“第一”、“第二”等的描述,则该“第一”、“第二”等的描述仅设置为描述目的,而不能理解为指示或暗示其相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括至少一个该特征。另外,各个实施例之间的技术方案可以相互结合,但是必须是以本领域普通技术人员能够实现为基础,当技术方案的结合出现相互矛盾或无法实现时应当认为这种技术方案的结合不存在,也不在本申请要求的保护范围之内。
参照图1,提出本申请电子烟一实施例的电路结构图,所述电子烟包括相互连接的主电路10与NFC电路20,所述NFC电路20包括相互连接的NFC天线30和NFC存储模块40;
在具体实现中,所述主电路10通过数据总线连接所述NFC电路20,所述NFC天线30电连接所述NFC存储模块40,其中,所述NFC电路20还包括NFC芯片,NFC芯片通过所述数据总线接收所述主电路10的数据。
所述NFC存储模块40,设置为存储防伪标识;
需要说明的是,在所述电子烟出厂之后,将对每个电子烟分配全球唯一的NFC芯片,并将所述NFC芯片对应的为的ID号输入至数据库中进行保存,用户在使用产品时,必须将所述NFC芯片进行激活才可使用,并且同一个NFC芯片只能激活一次,再激活时系统会提示用户,当前的ID号已经被使用,无法激活,从而防止假冒伪劣产品进入市场。
在具体实现中,所述电子烟的NFC天线30接收到移动设备发送的防伪标识,并将所述防伪标识存储在所述NFC存储模块40中,从而可通过所述防伪标识对所述电子烟进行验证,在电子烟进行激活时,所述NFC天线30将所述NFC存储模块40中存储防伪标识发送至所述移动设备,所述移动设备将获取到的防伪标识与系统数据库中的录入的防伪标识进行匹配,在匹配成功之后,表明当前使用的电子烟为正版产品。
可以理解的是,在所述移动设备将获取到的防伪标识与系统数据库中的录入的防伪标识进行匹配,在匹配不成功之后,表明当前使用的电子烟为假冒产品,在这种情况下,移动设备将反馈信息发送至所述NFC天线30,所述NFC天线30通过NFC芯片将所述反馈消息发送至所述主电路10。
所述主电路10在接收到所述NFC天线30发送的反馈信息之后,根据所述反馈信息进行相应的处理,例如,所述主电路10接收到验证通过的消息之后,可将电子烟的当前状态设置为激活状态,在所述主电路10接收到验证失败的消息之后,可将电子烟的当前状态设置为锁定状态。
需要说明的是,所述移动设备可为具有NFC功能的手机、平板以及个人电脑,还可为其他可是实现相同功能的移动设备,本实施例对此不作限制。
所述NFC天线30,设置为在感应到移动设备在预设范围内时,从所述NFC存储模块40中提取所述防伪标识,并将所述防伪标识发送至所述移动设备,以使所述移动设备对所述防伪标识进行验证,并反馈验证结果;
在具体实现中,所述NFC天线30可为采用绕线或印刷或蚀刻工艺制作的电路线圈与抗干扰能力的铁氧材料组成,通过导线连接所述NFC芯片与所述NFC存储模块40,所述NFC芯片可设置为对所述NFC天线30发送和接收的数据进行加解密,所述NFC存储模块40可设置为对NFC天线30发送和接收的数据进行存储。
所述NFC天线30通过电路线圈在预设范围内接收到移动设备的响应信息时,通过产生的电信号将NFC存储模块40中的防伪标识发送至所述移动设备,以使所述移动设备可对所述防伪标识进行验证,并将验证结果进行反馈。
所述NFC天线30,还设置为接收所述移动设备反馈的验证结果,并将所述验证结果发送至所述主电路10;
所述主电路10,设置为在所述验证结果为验证不成功时,将当前状态设置为锁定状态。
所述主电路10,还设置为在所述验证结果为验证成功时,将当前状态设置为激活状态。
需要说明的是,所述激活状态为电子烟处于可正常工作的状态,例如可对电子烟进行烟量大小设置以及使用时间设置等,所述锁定状态为是电子烟处于不可以使用状态或者有功能限制、时间限制等无法处于正常工作的状态。
本实施例中的NFC电路20设置有NFC天线30和NFC存储模块40,NFC存储模块40中存有防伪标识,NFC天线30可在感应到移动设备在预设范围内时,将所述防伪标识发送至所述移动设备,以使所述移动设备对所述防伪标识进行验证,主电路10在所述验证结果为验证不成功时,将当前状态设置为锁定状态,由于NFC存储模块40中存储的防伪标识的唯一性,能够避免由于不法分子将假冒伪劣产品当作正版商品在市面上进行销售,从而避免假冒伪劣产品对使用者造成安全危险。
参照图2,提出本申请电子烟另一实施例的电路结构图,所述NFC电路20还包括加解密芯片50,所述加解密芯片50设于所述NFC天线30和NFC存储模块40之间。
在具体实现中,NFC电路20模块有NFC存储模块40、NFC天线30以及加解密芯片50。NFC天线30接收到信号后,通过加解密芯片50解密,最后将接收到的数据发给电子烟主电路10,电子烟主电路10根据数据进行身份验证。验证通过后,电子烟主电路10将在高速状态下,将用户需要的数据内容通过数据总线传输到加解密芯片50,加解密芯片50再对需要发送的数据进行加密,然后通过NFC天线30发出给移动设备。NFC加密和解密时的密钥和身份信息存储在NFC存储模块40。
所述NFC天线30,还设置为在感应到所述移动设备在预设范围内时,获取所述移动设备发送的密钥,所述加解密芯片50通过所述密钥对所述防伪标识进行加密,并将加密后的防伪标识发送至所述移动设备。
需要说明的是,在所述NFC存储模块40存储有密钥,加解密芯片50通过所述密钥对NFC天线30接收的外部移动设备的数据进行加密解密,从而保证数据传输的安全性。
所述加解密芯片50一方面在接收到NFC天线30接收和发送的数据,对所述数据进行加解密,另一方面所述加解密芯片50分配有全球唯一的芯片ID,从而保证电子烟的在进行验证时保证具有唯一性。
在具体实现中,所述电子烟使用全球唯一的NFC芯片,通过所述芯片的激活码可实现隧电子烟的激活验证,如图3所述的电子烟用户激活说明的流程示意图。用户购买到电子烟后,需要注册激活才能使用。用户对电子烟安装电池后,系统提示用户激活本产品,激活方式有多种方法,第一种方法是用户可在激活注册页面输入电子烟上显示的多位激活码,第二种直接使用NFC方式激活。如果是假冒伪劣产品,将无法成功进行激活操作,且正品也只能激活一次。从而可以保证用户购买到正品电子烟产品。
需要说明的是,所述电子烟还包括电池,电池连接所述主电路10以及NFC电路20,为所述主电路10以及NFC电路20进行供电。
可以理解的是,在电子烟上安装NFC电路20,所述NFC电路20包括NFC天线30与所述NFC存储模块40,在用户需要对电子烟进行激活时,用户可在移动设备通过网站通过激活码进行验证,还可通过移动设备应用程序(Application,APP)进行在线验证,将移动设备的APP打开到至产品激活界面,并将移动设备靠近电子烟的预设范围内,即靠近电子烟的感应区,通过在感应区中完成激活。
在本实施例提供的技术方案中,所述NFC电路20还包括加解密芯片50,所述加解密芯片50设于所述NFC天线30和NFC存储模块40之间,所述NFC天线30在感应到所述移动设备在预设范围内时,获取所述移动设备发送的密钥,所述加解密芯片50通过所述密钥对所述防伪标识进行加密,并将加密后的防伪标识发送至所述移动设备,从而保证数据传输的安全性。
参照图4,提出本申请电子烟100再一实施例的电路结构图,所述NFC电路20还包括NFC主控芯片60;
所述加解密芯片50,设置为获取所述NFC主控芯片60的型号信息,将所述NFC主控芯片60的型号信息通过所述密钥进行加密,并将加密后的NFC加密信息保存在所述NFC存储模块40,同时将所述NFC加密信息发送至所述主电路10。
需要说明的是,在所述加解密芯片50中分配有主控芯片,通过获取所述主控芯片的芯片型号,根据所述芯片型号对所述芯片型号信息进行加密,并将加密后的芯片型号信息保存在NFC存储模块40,从而保证数据存储的安全性,以及不易被串改。
所述主电路10还包括主芯片70;
所述主电路10,还设置为接收所述NFC电路20发送的NFC加密信息,并获取所述主芯片70的型号信息,将所述主芯片70的型号信息通过所述密钥进行加密,并将加密后生成的主电路10加密信息保存在本地,同时将所述主电路10加密信息发送至所述NFC存储模块40进行保存。
在具体实现中,所述主电路10也可获取到主芯片70的型号信息,并将所述型号信息通过串号进行加密,将加密后的型号信息发送至NFC存储模块40中进行保存,从而保证在主电路10以及NFC电路20具有相同的验证数据。
所述主电路10,还设置为实时获取所述NFC存储模块40中的主电路10加密信息与NFC加密信息;
在本地保存的所述主电路10加密信息与NFC存储模块40中的主电路10加密信息匹配不成功时,将当前状态设置为锁定状态;
在本地保存的所述NFC加密信息与NFC存储模块40中的NFC加密信息匹配不成功时,将当前状态设置为锁定状态。
由于在主电路10以及NFC电路20中均保存有相同的加密消息,从而保证消息不会被串改,并且主电路10可通过总线连接的NFC电路20,从而实时监控NFC电路20的状态,在所述NFC存储模块40中的数据与所述主电路10中的数据不一致的情况下,所述主电路10可将当前状态设为锁定状态,从而在电子烟中的数据被串改的情况下,保证电子烟不会被进行使用。
在本实施例中,移动设备通过NFC将生成的身份数据,发送给到电子烟主电路10,电子烟主电路10验证完成数据后,开始对NFC电路20进行密钥配置、电子烟主体芯片串号加密、NFC芯片ID号加密等操作。操作完成后,将加密的数据存储在电子烟主电路10和NFC存储模块40中。电子烟主电路10会实时监控NFC芯片,如发现NFC电路20数据不匹配,将锁定电子烟,用户无法使用,从而防止不法分子盗取用户数据。
所述NFC天线30,还设置为获取所述主电路10发送的用户使用参数信息,并将所述用户使用参数信息发送至所述移动设备。
需要说明的是,所述NFC主电路10可获取用户的使用数据,并将所述用户的使用数据通过数据总线发送至所述NFC电路20,NFC电路20将接收的用户数据通过密钥进行加密通过NFC天线30发送至所述移动设备,从而保证数据传输的安全性。
可以理解的是,所述NFC主电路10可记录用户的使用数据,例如用户在最近一个月时间内的使用时间,从而可通过用户的使用时间,并对用户的使用时间进行处理,从而可对用户的健康状况进行处理。
所述NFC天线30,还设置为获取所述主电路10发送的用户使用参数信息,通过所述密钥对所述用户使用参数信息进行加密,并将加密后的用户使用参数信息在预设范围内发送至所述移动设备。
所述NFC电路20,还设置为在预设范围内接收所述移动设备的配置信息,并将所述配置信息发送至所述主电路10。
需要说明的是,所述配置信息可为移动设备通过NFC将配置信息发送至所述NFC天线30,所述NFC天线30将所述配置信息发送至所述主电路10,从而可是所述主电路10根据所述配置信息对当前状态进行相应的设置,例如用户通过移动设备设置电子烟的使用时间为每天1小时,移动设备通过NFC将1小时的配置时间发送至所述NFC天线30,所述NFC天线30将所述配置信息发送至所述主电路10,从而可是所述主电路10根据所述1小时的配置时间对当前状态进行管理,可计算用户的每天使用时间,在所述使用时间超过1小时后,对当前的使用状态进行锁定,从而可根据用户的需求进行相应的配置,提高用户体验。
在本实施例中,所述加解密芯片50设于所述NFC天线30和NFC存储模块40之间,并对所述NFC天线30接收和发送的数据以及NFC存储模块40中的数据进行解密加密,从而保证数据传输的安全性。
此外,本申请还提出一种电子烟激活系统,所述电子烟激活系统包括移动设备以及如上文所述的电子烟。
如图5所示的电子烟激活系统的结构示意图,所述电子烟激活系统200包括移动设备300以及如上文所述的电子烟100。
以上仅为本申请的可选实施例,并非因此限制本申请的专利范围,凡是利用本申请说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本申请的专利保护范围内。
Claims (20)
- 一种电子烟,其中,所述电子烟包括相互连接的主电路与NFC电路,所述NFC电路包括相互连接的NFC天线和NFC存储模块;所述NFC存储模块,设置为存储防伪标识;所述NFC天线,设置为在感应到移动设备在预设范围内时,从所述NFC存储模块中提取所述防伪标识,并将所述防伪标识发送至所述移动设备,以使所述移动设备对所述防伪标识进行验证,并反馈验证结果;所述NFC天线,还设置为接收所述移动设备反馈的验证结果,并将所述验证结果发送至所述主电路;以及所述主电路,设置为在所述验证结果为验证不成功时,将当前状态设置为锁定状态。
- 如权利要求1所述的电子烟,其中,所述NFC电路还包括加解密芯片,所述加解密芯片设于所述NFC天线和NFC存储模块之间。
- 如权利要求2所述的电子烟,其中,所述NFC天线,还设置为在感应到所述移动设备在预设范围内时,获取所述移动设备发送的密钥,所述加解密芯片通过所述密钥对所述防伪标识进行加密,并将加密后的防伪标识发送至所述移动设备。
- 如权利要求3所述的电子烟,其中,所述NFC电路还包括NFC主控芯片;所述加解密芯片,设置为获取所述NFC主控芯片的型号信息,将所述NFC主控芯片的型号信息通过所述密钥进行加密,并将加密后的NFC加密信息保存在所述NFC存储模块,同时将所述NFC加密信息发送至所述主电路。
- 如权利要求4所述的电子烟,其中,所述主电路还包括主芯片;所述主电路,还设置为接收所述NFC电路发送的NFC加密信息,并获取所述主芯片的型号信息,将所述主芯片的型号信息通过所述密钥进行加密,并将加密后生成的主电路加密信息保存在本地,同时将所述主电路加密信息发送至所述NFC存储模块进行保存。
- 如权利要求5所述的电子烟,其中,所述主电路,还设置为实时获取所述NFC存储模块中的主电路加密信息与NFC加密信息,在本地保存的所述主电路加密信息与NFC存储模块中的主电路加密信息匹配不成功时,将当前状态设置为锁定状态,同时在本地保存的所述NFC加密信息与NFC存储模块中的NFC加密信息匹配不成功时,将当前状态设置为锁定状态。
- 如权利要求1所述的电子烟,其中,所述NFC天线,还设置为获取所述主电路发送的用户使用参数信息,并将所述用户使用参数信息发送至所述移动设备。
- 如权利要求7所述的电子烟,其中,所述NFC天线,还设置为获取所述主电路发送的用户使用参数信息,通过所述密钥对所述用户使用参数信息进行加密,并将加密后的用户使用参数信息在预设范围内发送至所述移动设备。
- 如权利要求1所述的电子烟,其中,所述NFC电路,还设置为在预设范围内接收所述移动设备的配置信息,并将所述配置信息发送至所述主电路。
- 一种电子烟激活系统,其中,所述电子烟激活系统包括移动设备以及电子烟,所述电子烟包括相互连接的主电路与NFC电路,所述NFC电路包括相互连接的NFC天线和NFC存储模块;所述NFC存储模块,设置为存储防伪标识;所述NFC天线,设置为在感应到移动设备在预设范围内时,从所述NFC存储模块中提取所述防伪标识,并将所述防伪标识发送至所述移动设备,以使所述移动设备对所述防伪标识进行验证,并反馈验证结果;以及所述NFC天线,还设置为接收所述移动设备反馈的验证结果,并将所述验证结果发送至所述主电路;以及所述主电路,设置为在所述验证结果为验证不成功时,将当前状态设置为锁定状态。
- 如权利要求10所述的电子烟激活系统,其中,所述NFC电路还包括加解密芯片,所述加解密芯片设于所述NFC天线和NFC存储模块之间。
- 如权利要求11所述的电子烟激活系统,其中,所述NFC存储模块存储有密钥,加解密芯片通过所述密钥对NFC天线30接收的外部移动设备的数据进行加密解密。
- 如权利要求10所述的电子烟激活系统,其中,所述主电路通过数据总线连接所述NFC电路,所述NFC天线电连接所述NFC存储模块,其中,所述NFC电路还包括NFC芯片,NFC芯片通过所述数据总线接收所述主电路的数据。
- 如权利要求10所述的电子烟激活系统,其中,所述电子烟的NFC天线接收到移动设备发送的防伪标识,并将所述防伪标识存储在所述NFC存储模块中。
- 如权利要求10所述的电子烟激活系统,其中,所述主电路,还设置为在所述验证结果为验证成功时,将当前状态设置为激活状态。
- 如权利要求10所述的电子烟激活系统,其中,所述NFC天线采用绕线或印刷或蚀刻工艺制作的电路线圈与抗干扰能力的铁氧材料组成,通过导线连接所述NFC芯片与所述NFC存储模块。
- 如权利要求10所述的电子烟激活系统,其中,所述NFC芯片设置为对所述NFC天线发送和接收的数据进行加解密。
- 如权利要求10所述的电子烟激活系统,其中,所述NFC存储模块可设置为对NFC天线发送和接收的数据进行存储。
- 如权利要求10所述的电子烟激活系统,其中,所述NFC天线通过电路线圈在预设范围内接收到移动设备的响应信息时,通过产生的电信号将NFC存储模块中的防伪标识发送至所述移动设备,以使所述移动设备可对所述防伪标识进行验证,并将验证结果进行反馈。
- 如权利要求10所述的电子烟激活系统,其中,所述电子烟还包括电池,电池连接所述主电路以及NFC电路,为所述主电路以及NFC电路进行供电。
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