WO2016155179A1 - 一种蓝牙智能卡芯片、蓝牙智能卡及其蓝牙连接激活方法 - Google Patents

一种蓝牙智能卡芯片、蓝牙智能卡及其蓝牙连接激活方法 Download PDF

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WO2016155179A1
WO2016155179A1 PCT/CN2015/086159 CN2015086159W WO2016155179A1 WO 2016155179 A1 WO2016155179 A1 WO 2016155179A1 CN 2015086159 W CN2015086159 W CN 2015086159W WO 2016155179 A1 WO2016155179 A1 WO 2016155179A1
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bluetooth
smart card
module
mobile terminal
nfc antenna
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PCT/CN2015/086159
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English (en)
French (fr)
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谢正华
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苏州海博智能系统有限公司
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Publication of WO2016155179A1 publication Critical patent/WO2016155179A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K19/00Record carriers for use with machines and with at least a part designed to carry digital markings
    • G06K19/06Record carriers for use with machines and with at least a part designed to carry digital markings characterised by the kind of the digital marking, e.g. shape, nature, code
    • G06K19/067Record carriers with conductive marks, printed circuits or semiconductor circuit elements, e.g. credit or identity cards also with resonating or responding marks without active components
    • G06K19/07Record carriers with conductive marks, printed circuits or semiconductor circuit elements, e.g. credit or identity cards also with resonating or responding marks without active components with integrated circuit chips
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/70Reducing energy consumption in communication networks in wireless communication networks

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  • the invention relates to the field of smart cards, in particular to a Bluetooth smart card chip, a Bluetooth smart card and a Bluetooth connection activation method thereof.
  • the existing Bluetooth smart card (or smart card with Bluetooth connection function), because of the limitation of the card size by the ISO7810 standard, the size and capacity of all the batteries are limited, and the Bluetooth smart card and the mobile terminal cannot be connected at all times. status.
  • the smart card needs to remain in the heartbeat standby or work standby state, so that the power consumption of the line is very large at the level of uA and mA, and the standby time of the smart card. .
  • an existing method for saving energy is to implement a Bluetooth connection between a Bluetooth smart card and a mobile terminal by means of mechanical button wake-up, such as physical buttons (pots, switches, etc.) or similar physical buttons (multi-axis) Gyro, etc.), when the connection is required, press the mechanical button, and when the connection is required, press the mechanical button.
  • mechanical button wake-up such as physical buttons (pots, switches, etc.) or similar physical buttons (multi-axis) Gyro, etc.
  • the present invention is directed to the above problems in the prior art, and proposes a Bluetooth smart card chip, a Bluetooth smart card and a Bluetooth connection activation method thereof.
  • the present invention provides a Bluetooth smart card chip, comprising: a smart card module, a Bluetooth module, and an NFC antenna (near field communication antenna), wherein the smart card module is respectively connected to the Bluetooth module and the NFC antenna;
  • the smart card module is configured to monitor a distance between the Bluetooth smart card chip and a mobile terminal with an NFC antenna, and monitor a distance between the mobile terminal with the NFC antenna and the Bluetooth smart card chip in a near field communication distance
  • the Bluetooth module is activated to enable the Bluetooth connection; otherwise, the Bluetooth module is driven to turn off the Bluetooth connection.
  • the NFC antenna of the present invention is not only used in non-contact scenarios of conventional cards, such as card payment, but also as a detecting component for starting the Bluetooth module.
  • the induced current of the NFC antenna in the card changes.
  • the smart card module detects the change of the induced current, it is confirmed that the Bluetooth connection function needs to be turned on, and the Bluetooth module is powered to perform the Bluetooth pairing connection.
  • the near field communication distance is 0 to 10 cm, and only needs to close the mobile terminal within a range of 10 cm of the Bluetooth smart card, so that the operation of turning on the bluetooth module can be completed, and the Bluetooth smart card does not need to be pulled out, which is convenient and quick.
  • the smart card module is further configured to perform identity authentication on the mobile terminal and the Bluetooth smart card; and when the distance between the mobile terminal with the NFC antenna and the Bluetooth smart card chip is monitored in the near field Within the communication distance, and when the result of identity authentication of the mobile terminal and the Bluetooth smart card is passed, the Bluetooth module is activated to enable the Bluetooth connection; otherwise, the Bluetooth module is driven to close the Bluetooth connection. After adding the user identity authentication function, it can prevent others from stealing the Bluetooth smart card.
  • the smart card module performs identity authentication on the mobile terminal and the Bluetooth smart card, specifically, determining whether the identifier of the mobile terminal and the identifier of the Bluetooth smart card chip are bound together .
  • the personal mobile terminal and the personal Bluetooth smart card are bound, only the mobile terminal and the Bluetooth smart card that are bound to each other can realize the Bluetooth pairing connection by being close to each other, thereby preventing others from stealing the Bluetooth smart card in this way.
  • NFC makes a paired connection.
  • the invention also provides a Bluetooth smart card, comprising a card body, wherein the card body is provided with the above-mentioned Bluetooth smart card chip.
  • the invention also provides a Bluetooth connection activation method for a Bluetooth smart card, which comprises the following steps:
  • the step S61 is specifically: monitoring an induced current of the NFC antenna of the Bluetooth smart card;
  • the distance between the mobile terminal with the NFC antenna and the Bluetooth smart card is further detected in the near field communication distance: the induced current of the NFC antenna of the Bluetooth smart card is monitored to exceed a preset threshold.
  • the method further includes:
  • S81 Bind the identifier of the mobile terminal with the NFC antenna to the identifier of the Bluetooth smart card with the NFC antenna.
  • the step S61 and the step S62 further include:
  • step S91 Perform authentication on the identifier of the mobile terminal and the identifier of the Bluetooth smart card, and determine whether the identifiers of the two are bound. If yes, go to step S62.
  • the method further includes:
  • the step S101 is specifically: when the sensing current of the NFC antenna of the Bluetooth smart card is detected to be less than a preset threshold, the Bluetooth module driving the Bluetooth smart card turns off the Bluetooth connection.
  • the Bluetooth module that drives the Bluetooth smart card turns off the Bluetooth connection after the Bluetooth module that activates the Bluetooth smart card activates the Bluetooth connection for a duration exceeding a preset time threshold.
  • the present invention has the following advantages:
  • the Bluetooth smart card chip, the Bluetooth smart card and the Bluetooth connection activation method provided by the invention the NFC loop is passive, and does not need to be separately powered; the NFC antenna loop is used to detect the mobile terminal, and then the Bluetooth connection function is started.
  • the Bluetooth smart card can be in a deep sleep state with a power consumption of nA for a long time, saving the power consumption of the Bluetooth smart card and having a long standby time;
  • FIG. 1 is a schematic structural diagram of a Bluetooth smart card chip according to the present invention.
  • FIG. 3 is a flowchart of a Bluetooth connection activation method according to Embodiment 4 of the present invention.
  • FIG. 4 is a flow chart of a Bluetooth connection activation method in accordance with a preferred embodiment of the present invention.
  • Embodiment 1 Bluetooth smart card chip
  • FIG. 1 is a schematic structural diagram of a Bluetooth smart card chip according to the present invention, which includes: a smart card module 1, a Bluetooth module 2, and an NFC antenna 3.
  • the smart card module 1 is respectively connected to the Bluetooth module 2 and the NFC antenna 3 for monitoring the NFC antenna. 3 sense current changes and power to the Bluetooth module 2.
  • the Bluetooth module 2 When a mobile terminal with an NFC antenna (such as a smart phone, a smart wristband, etc.) approaches the smart card chip, when the near field communication distance is 0 to 10 cm, the induced current of the NFC antenna 3 changes, and the smart card module 1 monitors the NFC antenna.
  • the Bluetooth module 2 When the induced current of 3 changes, the Bluetooth module 2 is activated, and the Bluetooth connection function is enabled to enable the mobile terminal to implement Bluetooth pairing connection with the Bluetooth smart card; otherwise, the Bluetooth module 2 is driven to turn off the Bluetooth connection, so that the Bluetooth module 2 is in a deep sleep state, and the power consumption is only nA. level.
  • Embodiment 2 Bluetooth smart card
  • This embodiment describes in detail the Bluetooth smart card of the present invention, which includes a card body on which the Bluetooth smart card chip described in Embodiment 1 is disposed.
  • the ID of the Bluetooth smart card in this embodiment is bound to the ID of the mobile terminal by means of software authentication, and the identity verification is performed when the card is swiped, and it is determined whether the mobile terminal is bound to the mobile terminal, and only the mobile terminal bound thereto can pass the brush.
  • the NFC antenna of the Bluetooth smart card is paired and connected to prevent others from stealing the brush, and the payment environment is safe and reliable.
  • the ID of the Bluetooth smart card may be the ID of the Bluetooth smart card device, or the ID of the NFC antenna on the Bluetooth smart card; and the ID of the mobile terminal may specifically be the ID of the mobile terminal device, or may be the mobile terminal. The ID of the NFC antenna on it.
  • the Bluetooth module When the Bluetooth smart card of this embodiment is not in use, the Bluetooth module is in a power-off state, which saves power consumption and has a long standby time; when it is needed, the mobile terminal only needs to be close to the Bluetooth smart card, and does not need to be pulled out. , users only need to move with a smart phone or smart bracelet
  • the mobile terminal can be close to the storage location of the Bluetooth smart card (such as a pocket, a trouser pocket or a wallet, etc.), and when the Bluetooth smart card detects that the induced current of the NFC antenna loop changes, the Bluetooth module is automatically powered, and the Bluetooth connection function is turned on, thereby realizing the movement.
  • the Bluetooth pairing connection between the terminal and the Bluetooth smart card when the Bluetooth smart card detects that the induced current of the NFC antenna loop changes, the Bluetooth module is automatically powered, and the Bluetooth connection function is turned on, thereby realizing the movement.
  • Embodiment 3 Bluetooth connection activation method of a Bluetooth smart card
  • FIG. 2 is a flowchart of a Bluetooth connection activation method of a Bluetooth smart card according to the present invention, which includes the following steps:
  • the step S61 is specifically: monitoring an induced current of the NFC antenna of the Bluetooth smart card;
  • the distance between the mobile terminal with the NFC antenna and the Bluetooth smart card is further detected in the near field communication distance: the induced current of the NFC antenna of the Bluetooth smart card is monitored to exceed a preset threshold.
  • Embodiment 4 Bluetooth connection activation method of a Bluetooth smart card
  • This embodiment is based on the third embodiment, and is added before step S61:
  • S81 Bind the ID of the mobile terminal with the NFC antenna to the ID of the Bluetooth smart card with the NFC antenna.
  • step S91 Authenticate the ID of the mobile terminal and the ID of the Bluetooth smart card, and determine whether the IDs of the two are bound. If yes, go to step S62.
  • the step S101 is specifically: when the sensing current of the NFC antenna of the Bluetooth smart card is less than a preset threshold, the Bluetooth module that drives the Bluetooth smart card turns off the Bluetooth connection to make it in a deep sleep state.
  • the step S101 is: the duration of the Bluetooth connection being activated by the Bluetooth module that activates the Bluetooth smart card exceeds After the preset time threshold is reached, the Bluetooth module that drives the Bluetooth smart card turns off the Bluetooth connection, causing it to be in a deep sleep state.

Abstract

一种蓝牙智能卡芯片、蓝牙智能卡及其蓝牙连接激活方法,该芯片包括:智能卡模块(1)、蓝牙模块(2)以及NFC天线(3),智能卡模块(1)分别与蓝牙模块(2)和NFC天线(3)连接;智能卡模块(1)用于监测蓝牙智能卡芯片与带有NFC天线的移动终端之间的距离,当监测到距离在近场通讯距离内时,激活蓝牙模块(2)开启蓝牙连接;否则驱动蓝牙模块(2)关闭蓝牙连接。该卡的卡体上设置有该蓝牙智能卡芯片。该方法包括:监测带有NFC天线的移动终端与蓝牙智能卡之间的距离;当监测到距离在近场通讯距离内时,激活蓝牙模块(2)开启蓝牙连接。所述蓝牙智能卡芯片、蓝牙智能卡及其蓝牙连接激活方法,实现了蓝牙智能卡与移动终端之间的便捷连接,节省了蓝牙智能卡的耗电量。

Description

一种蓝牙智能卡芯片、蓝牙智能卡及其蓝牙连接激活方法 技术领域
本发明涉及智能卡领域,特别涉及一种蓝牙智能卡芯片、蓝牙智能卡及其蓝牙连接激活方法。
背景技术
现有的蓝牙智能卡(或称为具有蓝牙连接功能的智能卡),因为受ISO7810标准对卡片尺寸的限制,所有电池的尺寸和容量都是有限的,无法做到蓝牙智能卡和移动终端一直处于联机的状态。
常规的蓝牙智能卡如果要实现随时配对连接的功能,智能卡需要一直保持在心跳待机或者工作待机的状态下,这样线路的功耗都在uA和mA的级别耗电量非常大,智能卡的待机时间端。
针对上述情况,现有的一种节省能耗的方法是采用机械按键唤醒的方式来实现蓝牙智能卡和移动终端的蓝牙连接,如物理按键(锅仔片、开关等)或类似物理按键(多轴的陀螺仪等),当需要进行连接时,将机械按键按下,当需要进行连接时,将机械按键按起。这种方法需要主动去操作智能卡,操作不便,使用户的体验效果大打折扣。
因此,急需提供一种新型的蓝牙智能卡,既能节省功耗,又能实现与移动终端的蓝牙便捷连接。
发明内容
本发明针对上述现有技术中存在的问题,提出一种蓝牙智能卡芯片、蓝牙智能卡及其蓝牙连接激活方法,
为解决上述技术问题,本发明是通过如下技术方案实现的:
本发明提供一种蓝牙智能卡芯片,其包括:智能卡模块、蓝牙模块以及NFC天线(近场通讯天线),所述智能卡模块分别与所述蓝牙模块和所述NFC天线连接;
所述智能卡模块用于监测所述蓝牙智能卡芯片与带有NFC天线的移动终端之间的距离,当监测到所述带有NFC天线的移动终端与所述蓝牙智能卡芯片的距离在近场通讯距离内时,激活所述蓝牙模块开启蓝牙连接;否则驱动所述蓝牙模块关闭蓝牙连接。
本发明的NFC天线不仅用于常规卡片的非接触场景中使用,如刷卡支付,而且还作为启动蓝牙模块的侦测元件。当带有NFC天线的移动终端靠近蓝牙智能卡时,卡片中的NFC天线的感应电流变化,智能卡模块监测到其感应电流变化时,确认需要开启蓝牙连接功能,为蓝牙模块供电,进行蓝牙配对连接。
较佳地,所述近场通讯距离为0~10cm,只需要将移动终端靠近在蓝牙智能卡的10cm范围内,就可以完成开启蓝牙模块的操作,无需将蓝牙智能卡掏出,方便快捷。
较佳地,所述智能卡模块还用于对所述移动终端和所述蓝牙智能卡进行身份认证;并且在当监测到所述带有NFC天线的移动终端与所述蓝牙智能卡芯片的距离在近场通讯距离内,且对所述移动终端和所述蓝牙智能卡进行身份认证的结果为通过时,激活所述蓝牙模块开启蓝牙连接;否则驱动所述蓝牙模块关闭蓝牙连接。增加了用户身份认证的功能后,可以防止别人盗刷蓝牙智能卡。
较佳地,所述智能卡模块在对所述移动终端和所述蓝牙智能卡进行身份认证时,具体是通过判断所述移动终端的标识与所述蓝牙智能卡芯片的标识是否绑定在一起来实现的。将个人专有的移动终端和个人制定的蓝牙智能卡进行绑定后,只有相互绑定的移动终端和蓝牙智能卡才能通过靠近实现蓝牙配对连接,可以防止其他人也通过这种方式偷刷蓝牙智能卡的NFC进行配对连接。
本发明还提供一种蓝牙智能卡,包括卡体,所述卡体上设置有上述的蓝牙智能卡芯片。
本发明还提供一种蓝牙智能卡的蓝牙连接激活方法,其包括以下步骤:
S61:监测带有NFC天线的移动终端与蓝牙智能卡之间的距离;
S62:当监测到所述带有NFC天线的移动终端与所述蓝牙智能卡之间的距离在近场通讯距离内时,激活所述蓝牙智能卡的蓝牙模块开启蓝牙连接。
较佳地,所述步骤S61具体为:监测所述蓝牙智能卡的NFC天线的感应电流;
所述步骤S62中监测到所述带有NFC天线的移动终端与所述蓝牙智能卡之间的距离在近场通讯距离内进一步为:监测到蓝牙智能卡的NFC天线的感应电流超过预设阈值。
较佳地,所述步骤S61之前还包括:
S81:将带有NFC天线的移动终端的标识与带有NFC天线的蓝牙智能卡的标识进行绑定。
较佳地,所述步骤S61和步骤S62之间还包括:
S91:对所述移动终端的标识和所述蓝牙智能卡的标识进行认证,判断两者的标识是否绑定,是则转入步骤S62。
较佳地,所述步骤S62之后还包括:
S101:当监测到所述带有NFC天线的移动终端与所述蓝牙智能卡之间的距离在近场通讯距离外时,驱动所述蓝牙智能卡的蓝牙模块关闭蓝牙连接。
较佳地,所述步骤S101具体为:当监测到所述蓝牙智能卡的NFC天线的感应电流小于预设阈值时,驱动所述蓝牙智能卡的蓝牙模块关闭蓝牙连接。
较佳地,所述步骤S62之后还包括:在激活所述蓝牙智能卡的蓝牙模块开启蓝牙连接的持续时间超过预设时间阈值后,驱动所述蓝牙智能卡的蓝牙模块关闭蓝牙连接。
相较于现有技术,本发明具有以下优点:
(1)本发明提供的蓝牙智能卡芯片、蓝牙智能卡及其蓝牙连接激活方法,NFC回路是被动的,不需要对其进行单独供电;先通过NFC天线回路来侦测移动终端,再启动蓝牙连接功能,可以让蓝牙智能卡长时间的处在功耗为nA级的深度睡眠状态,节省蓝牙智能卡的耗电量,待机时间长;
(2)只需将带有NFC的移动终端靠近蓝牙智能卡的存放位置(如衣兜、裤兜或钱包等)即可完成蓝牙连接功能的开启,不需用户将蓝牙智能卡掏出,提升了用户的体验效果。
当然,实施本发明的任一产品并不一定需要同时达到以上所述的所有优点。
附图说明
下面结合附图对本发明的实施方式作进一步说明:
图1为本发明的蓝牙智能卡芯片的结构示意图;
图2为本发明的实施例3的蓝牙连接激活方法的流程图;
图3为本发明的实施例4的蓝牙连接激活方法的流程图;
图4为本发明的较佳实施例的蓝牙连接激活方法的流程图。
标号说明:1-智能卡模块,2-蓝牙模块,3-NFC天线。
具体实施方式
下面对本发明的实施例作详细说明,本实施例在以本发明技术方案为前提下进行实施,给出了详细的实施方式和具体的操作过程,但本发明的保护范围不限于下述的实施例。
实施例1:蓝牙智能卡芯片
如图1所示为本发明的蓝牙智能卡芯片的结构示意图,其包括:智能卡模块1、蓝牙模块2以及NFC天线3,智能卡模块1分别与蓝牙模块2以及NFC天线3相连,用于监测NFC天线3的感应电流变化以及为蓝牙模块2供电。
当带有NFC天线的移动终端(如智能手机、智能手环等)接近智能卡芯片时,位于0~10cm的近场通讯距离内时,NFC天线3的感应电流变化,智能卡模块1监测到NFC天线3的感应电流变化时,激活蓝牙模块2,开启蓝牙连接功能,使移动终端与蓝牙智能卡实现蓝牙配对连接;否则驱动蓝牙模块2关闭蓝牙连接,使蓝牙模块2处于深度睡眠状态,功耗只有nA级。
实施例2:蓝牙智能卡
本实施例详细描述本发明的蓝牙智能卡,其包括卡体,卡体上设置有实施例1所描述的蓝牙智能卡芯片。
本实施例的蓝牙智能卡的ID与移动终端的ID通过软件认证的方式进行了绑定,在刷卡时进行身份验证,判断是否为与其绑定的移动终端,只有与其绑定的移动终端才能通过刷该蓝牙智能卡的NFC天线来进行配对连接,防止他人盗刷,支付环境比较安全可靠。
在实际中,上述蓝牙智能卡的ID具体可以是蓝牙智能卡设备的ID,也可以是该蓝牙智能卡上的NFC天线的ID;而移动终端的ID具体可以是移动终端设备的ID,也可以是移动终端上的NFC天线的ID。
本实施例的蓝牙智能卡在不使用时,蓝牙模块处于断电状态,节省了耗电量,待机时间长;当需要使用时,只需将移动终端与蓝牙智能卡进行靠近,不需要将其掏出,用户只需拿着智能手机或智能手环等移 动终端向蓝牙智能卡的存放位置(如衣兜、裤兜或钱包等)靠近即可,蓝牙智能卡监测到NFC天线回路的感应电流发生变化时,自动为蓝牙模块进行供电,开启蓝牙连接功能,从而实现移动终端和蓝牙智能卡的蓝牙配对连接。
实施例3:蓝牙智能卡的蓝牙连接激活方法
如图2所示为本发明的蓝牙智能卡的蓝牙连接激活方法的流程图,其包括以下步骤:
S61:监测带有NFC天线的移动终端与蓝牙智能卡之间的距离;
S62:当监测到所述带有NFC天线的移动终端与所述蓝牙智能卡之间的距离在近场通讯距离内时,激活所述蓝牙智能卡的蓝牙模块开启蓝牙连接。
其中:所述步骤S61具体为:监测所述蓝牙智能卡的NFC天线的感应电流;
所述步骤S62中监测到所述带有NFC天线的移动终端与所述蓝牙智能卡之间的距离在近场通讯距离内进一步为:监测到蓝牙智能卡的NFC天线的感应电流超过预设阈值。
实施例4:蓝牙智能卡的蓝牙连接激活方法
本实施例是在实施例3的基础上,在步骤S61之前增加了:
S81:将带有NFC天线的移动终端的ID与带有NFC天线的蓝牙智能卡的ID进行绑定。
相应的,在步骤S61和S62之间增加了:
S91:对所述移动终端的ID和所述蓝牙智能卡的ID进行认证,判断两者的ID是否绑定,是则转入步骤S62。
在步骤S62之后增加了:
S101:当监测到所述带有NFC天线的移动终端与所述蓝牙智能卡之间的距离在近场通讯距离外时,驱动所述蓝牙智能卡的蓝牙模块关闭蓝牙连接。
其中:所述步骤S101具体为:当监测到所述蓝牙智能卡的NFC天线的感应电流小于预设阈值时,驱动所述蓝牙智能卡的蓝牙模块关闭蓝牙连接,使其处于深度睡眠状态。
较佳实施例中,所述步骤S101为:在激活所述蓝牙智能卡的蓝牙模块开启蓝牙连接的持续时间超过 预设时间阈值后,驱动所述蓝牙智能卡的蓝牙模块关闭蓝牙连接,使其处于深度睡眠状态。
此处公开的仅为本发明的优选实施例,本说明书选取并具体描述这些实施例,是为了更好地解释本发明的原理和实际应用,并不是对本发明的限定。任何本领域技术人员在说明书范围内所做的修改和变化,均应落在本发明所保护的范围内。

Claims (12)

  1. 一种蓝牙智能卡芯片,其特征在于,包括:智能卡模块、蓝牙模块以及NFC天线,所述智能卡模块分别与所述蓝牙模块和所述NFC天线连接;
    所述智能卡模块用于监测所述蓝牙智能卡芯片与带有NFC天线的移动终端之间的距离,当监测到所述带有NFC天线的移动终端与所述蓝牙智能卡芯片的距离在近场通讯距离内时,激活所述蓝牙模块开启蓝牙连接;否则驱动所述蓝牙模块关闭蓝牙连接。
  2. 根据权利要求1所述的蓝牙智能卡芯片,其特征在于,所述近场通讯距离为0~10cm。
  3. 根据权利要求1所述的蓝牙智能卡芯片,其特征在于,所述智能卡模块还用于对所述移动终端和所述蓝牙智能卡进行身份认证;
    并且在当监测到所述带有NFC天线的移动终端与所述蓝牙智能卡芯片的距离在近场通讯距离内,且对所述移动终端和所述蓝牙智能卡进行身份认证的结果为通过时,激活所述蓝牙模块开启蓝牙连接;否则驱动所述蓝牙模块关闭蓝牙连接。
  4. 根据权利要求3所述的蓝牙智能卡芯片,其特征在于,所述智能卡模块在对所述移动终端和所述蓝牙智能卡进行身份认证时,具体是通过判断所述移动终端的标识与所述蓝牙智能卡芯片的标识是否绑定在一起来实现的。
  5. 一种蓝牙智能卡,包括卡体,其特征在于,所述卡体上设置有如权利要求1至4任一项所述的蓝牙智能卡芯片。
  6. 一种蓝牙智能卡的蓝牙连接激活方法,其特征在于,包括以下步骤:
    S61:监测带有NFC天线的移动终端与蓝牙智能卡之间的距离;
    S62:当监测到所述带有NFC天线的移动终端与所述蓝牙智能卡之间的距离在近场通讯距离内时,激活所述蓝牙智能卡的蓝牙模块开启蓝牙连接。
  7. 根据权利要求6所述的蓝牙连接激活方法,其特征在于,所述步骤S61具体为:监测所述蓝牙智能卡的NFC天线的感应电流;
    所述步骤S62中监测到所述带有NFC天线的移动终端与所述蓝牙智能卡之间的距离在近场通讯距离 内进一步为:监测到蓝牙智能卡的NFC天线的感应电流超过预设阈值。
  8. 根据权利要求6所述的蓝牙连接激活方法,其特征在于,所述步骤S61之前还包括:
    S81:将带有NFC天线的移动终端的标识与带有NFC天线的蓝牙智能卡的标识进行绑定。
  9. 根据权利要求8所述的蓝牙连接激活方法,其特征在于,所述步骤S61和步骤S62之间还包括:
    S91:对所述移动终端的标识和所述蓝牙智能卡的标识进行认证,判断两者的标识是否绑定,是则转入步骤S62。
  10. 根据权利要求6所述的蓝牙连接激活方法,其特征在于,所述步骤S62之后还包括:
    S101:当监测到所述带有NFC天线的移动终端与所述蓝牙智能卡之间的距离在近场通讯距离外时,驱动所述蓝牙智能卡的蓝牙模块关闭蓝牙连接。
  11. 根据权利要求10所述的蓝牙连接激活方法,其特征在于,所述步骤S101具体为:当监测到所述蓝牙智能卡的NFC天线的感应电流小于预设阈值时,驱动所述蓝牙智能卡的蓝牙模块关闭蓝牙连接。
  12. 根据权利要求6所述的蓝牙连接激活方法,其特征在于,所述步骤S62之后还包括:在激活所述蓝牙智能卡的蓝牙模块开启蓝牙连接的持续时间超过预设时间阈值后,驱动所述蓝牙智能卡的蓝牙模块关闭蓝牙连接。
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