WO2016146065A1 - 一种智能指纹锁芯 - Google Patents

一种智能指纹锁芯 Download PDF

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Publication number
WO2016146065A1
WO2016146065A1 PCT/CN2016/076489 CN2016076489W WO2016146065A1 WO 2016146065 A1 WO2016146065 A1 WO 2016146065A1 CN 2016076489 W CN2016076489 W CN 2016076489W WO 2016146065 A1 WO2016146065 A1 WO 2016146065A1
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WIPO (PCT)
Prior art keywords
fingerprint
lock cylinder
smart
lock
motor drive
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Application number
PCT/CN2016/076489
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English (en)
French (fr)
Inventor
吴育丽
黄轩
吴恭
吴育标
吴桂标
王旭明
Original Assignee
深圳市迈悍德实业有限公司
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Application filed by 深圳市迈悍德实业有限公司 filed Critical 深圳市迈悍德实业有限公司
Publication of WO2016146065A1 publication Critical patent/WO2016146065A1/zh

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Classifications

    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B49/00Electric permutation locks; Circuits therefor ; Mechanical aspects of electronic locks; Mechanical keys therefor
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07CTIME OR ATTENDANCE REGISTERS; REGISTERING OR INDICATING THE WORKING OF MACHINES; GENERATING RANDOM NUMBERS; VOTING OR LOTTERY APPARATUS; ARRANGEMENTS, SYSTEMS OR APPARATUS FOR CHECKING NOT PROVIDED FOR ELSEWHERE
    • G07C9/00Individual registration on entry or exit

Definitions

  • the utility model relates to the field of locks, and more particularly to an intelligent fingerprint lock core.
  • the structure generally includes a door handle, a lock core structure located in the door, an outer door lock plate and a square shaft, the door handle is directly connected with the square shaft, and the square shaft is connected with the lock core structure, and the square shaft can be rotated to drive the door handle by rotating the door handle
  • the lock cylinder structure performs unlocking and locking operations.
  • the fingerprint recognition module controls the action motor to start, and then Drive the lock cylinder clutch mechanism to unlock and lock the action, the existing fingerprint lock is straight
  • the mechanical lock is upgraded to a fingerprint lock, it is necessary to completely remove the lock cylinder structure and the outer door lock plate in the door, and the lock body needs to be replaced, which makes the upgrade very cumbersome and cannot be completed by a non-professional.
  • the technical problem to be solved by the utility model is to provide an intelligent fingerprint lock core which is convenient to install, convenient to use and high in safety.
  • An intelligent fingerprint lock core includes a fingerprint device, a main control microprocessor, and a wireless bidirectional transceiver circuit coupled with the main control microprocessor, Status display two-color light ring, motor drive, cam and clutch mechanism, lithium battery power supply system, Micro USB charging and emergency power supply circuit
  • the fingerprint device and the motor driving device are respectively fixed at both ends of the lock cylinder and are signal-coupled.
  • a built-in power supply and communication cable connecting the fingerprint device and the motor driving device is further disposed in the lock core.
  • the fingerprint device and the motor driving device are coupled by a wireless signal.
  • the fingerprint device includes a fingerprint sensor and a fingerprint processor, and the fingerprint sensor is a surface active fingerprint sensor.
  • the fingerprint device has a finger wake-up function.
  • the wireless transceiver circuit can perform two-way encrypted communication with a smart phone or a smart home controller smart device to implement remote setting , remote alarm and remote control functions.
  • the motor drive device is uniquely paired with the main control microprocessor to provide complete security for the system.
  • Micro USB charging and emergency power supply circuit can provide emergency power supply for the system when the battery is exhausted. To ensure the user's emergency use.
  • the lithium battery charging system can realize the charging of the lock cylinder.
  • the state displays a two-color light circle that can display a user operating state under control of the processor.
  • the electric driving device includes a driving board embedded in the handle; a motor connected to the cam is fixed on the driving board And a battery for supplying power to the motor; the motor shaft drives the cam clutch mechanism through a transmission mechanism to realize an unlocking and locking function;
  • the motor driving device includes a motor control microprocessor and a motor driving circuit
  • the smart fingerprint lock core is provided with a setting button for local management of the intelligent fingerprint lock core
  • the control device includes a power management circuit, a motor drive circuit, a buzzer, and a charging LED.
  • the existing fingerprint lock is divided into two parts: the lock core and the fingerprint device.
  • FIG. 1 is a schematic structural view of an intelligent fingerprint lock core according to an embodiment of the present invention.
  • FIG. 2 is a schematic diagram of the principle of an intelligent fingerprint lock core according to an embodiment of the present invention.
  • 1 fingerprint sensor 2 , mirror film 3 , shell material , 4 , electronic original device main board ; 5, the connection board; 6, the button element device; 7, usb interface; 8, circuit interface board; 9, screw; 10, set the button; Stainless steel plate; 12, parts connector; 13 , lock body; 14 , stainless steel plate seal; 15 , stainless steel plate handle; 16 , drive plate ; Input board; 18, battery; 19, electric machine; 20, built-in wire; 21, key port.
  • the intelligent fingerprint lock core of the utility model comprises a fingerprint collection device, a control device, a lock body and a handle;
  • the lock body is provided with a cam for driving the lock tongue, and the handle is provided with an electric drive device for driving the cam;
  • the fingerprint collection device and the handle are respectively fixed on the lock body
  • the end of the lock body is further provided with a built-in electric wire connecting the fingerprint collecting device and the electric driving device;
  • the fingerprint collecting device comprises a shell material, the outer surface of the shell material is provided with a lens, and the fingerprint sensor for collecting fingerprint information is provided in the lens body.
  • the existing fingerprint lock is divided into two parts: the lock core and the fingerprint device.
  • the lock core needs to be replaced and the fingerprint device part is required to be installed. Since the fingerprint verification function is directly installed in the lock core, the fingerprint function is integrated in the lock core, and the customer does not need to replace the lock core, and the installation is simple, and the upgrade and maintenance are convenient.
  • the smart fingerprint lock core of the embodiment includes a fingerprint collection device, a control device, a lock body 13 and a handle;
  • the lock body 13 is provided with a cam for driving the lock tongue, and an electric drive device for driving the cam is arranged in the handle;
  • the fingerprint collection device and the handle are respectively fixed at the two ends of the lock body 13, and the lock body 13
  • the fingerprint collection device comprises a shell material 3, and the outer surface of the shell material 3 is provided with a mirror 2, and the fingerprint sheet 2 is provided with fingerprint information.
  • the fingerprint sensor 1 is provided with a connecting plate 5 in the shell material 3; the main board of the electronic component is fixed at one end of the connecting board 5; and the circuit interface board 8 is fixed at the other end; An input board 17 having a button component 6 is fixed in the middle; and a built-in electric wire 20 is connected to the circuit interface board 8.
  • the button element device 6 has a setting button 10; the input board 17 has a U SB interface for connecting an external power source. 7;
  • the intelligent fingerprint lock cylinder also includes the part connecting piece 12; the shell material 3 is also fixed with a stainless steel plate 11 at the opening; the stainless steel plate 11 is internally provided with a screw 9 , a screw 9 The threaded end is fixed to the part connector 12; the end of the lock body 13 away from the handle is embedded in the part connector 12. Provide emergency power to the USB interface 7 when the battery is exhausted. So that the user can unlock.
  • the electric drive unit includes a drive plate 16 that is embedded in the handle; a motor coupled to the cam is attached to the drive plate 16 19 And a battery 18 for supplying power to the motor 19; the output shaft of the motor 19 is driven to rotate by a transmission mechanism cam.
  • the control device comprises a main controller, a wireless transceiver circuit respectively connected to the main controller, and a battery 18 Coupling power management circuit, motor coupled to motor 19 19 drive circuit, button components 6, buzzer, LED indicator.
  • Motor 19 drive module control motor 19 turn Actuator, motor 19
  • the output shaft is driven by the drive mechanism to drive the cam to drive the bolt movement.
  • the lock tongue is retracted into the door, unlocked, and the door can be pushed in.
  • the cam is embedded in the lock body 13.
  • Motor control lock cylinder and cam connection When connected together, turn the lock cylinder to rotate the lock tongue.
  • the rotary lock cylinder is idling and will not drive the cam, so it will not unlock.
  • the electronic original device main board 4 is provided with a fingerprint processing circuit coupled with the fingerprint sensor 1; the main controller is fixed on the connecting board 5; The wireless transceiver circuit is fixed to the input board 17; the button component 6 includes a reset circuit.
  • the lock body 13 is also provided There is a key port 21 that interfaces with an external mechanical key; a stainless steel seal 14 is provided at the opening of the handle; and the handle is a stainless steel plate handle 15.
  • the utility model uses a high-efficiency, low-power micro-controller as a main controller to realize user setting and fingerprint of the system. Identification, motor control, wireless communication, power management and other functions.
  • the user fingerprint is entered in the lock cylinder, and the system extracts the user fingerprint feature. Form a fingerprint template and store it in the internal memory of the system as the basis for identification of the user's identity.
  • the fingerprint processor controls the fingerprint sensor 1, and the user finger is read.
  • the pattern is generated and the fingerprint template is generated and compared with the fingerprint template stored by the system. If a matching fingerprint is found in the fingerprint comparison, the fingerprint processor sends a successful comparison signal to the microprocessor; the microcontroller receives the comparison success signal. Thereafter, the encrypted motor control signal is output to the motor microprocessor, which controls the motor to rotate.
  • the rotation of the motor drives the transmission mechanism to engage the lock cylinder with the cam. At this time, when the lock cylinder is rotated, the cam follows the rotation, and the lock tongue is retracted into the door, and the unlocking is successful.
  • the motor microcontroller again controls the motor to reverse, driving the transmission mechanism to separate the lock cylinder from the cam and lock the door. At this time, if the lock cylinder is rotated, since the cam is separated from the lock cylinder, the lock cylinder is idling and cannot drive the lock tongue. This is the control principle of fingerprint unlocking and locking.
  • the fingerprint processor sends a comparison failure signal to the microcontroller (master); the microprocessor will turn off the fingerprint processor and end the operation. The microprocessor will not drive the motor, the lock cylinder and the cam are still there. In the separated state, the lock cannot be unlocked, thereby preventing illegal users from opening the door.
  • the utility model adopts a capacitive fingerprint sensor 1 , which can not only prevent false fingers Fraud, fingerprint and other fraudulent means, and can effectively avoid the problem of low fingerprint recognition rate caused by dry and wet fingers, so that the fingerprint lock core is easy to use and safe.
  • the utility model adopts an advanced fingerprint identification algorithm, which can be 360 ° All-round identification of user fingerprints, with self-learning function, thus comprehensively improve the fingerprint recognition rate to meet the needs of all user groups. With the setting button of this unit, the user can carry out the fingerprint lock cylinder. Effective management, including fingerprint registration, fingerprint deletion, remote registration, remote deletion and other functions.
  • the fingerprint lock cylinder should be set up immediately to use the fingerprint lock cylinder safely.
  • Smart lock cylinder designed with buzzer and LED The indicator light can provide a complete sound and light prompt for the user's operation.
  • the utility model has a built-in wireless transceiver circuit, which can conveniently perform remote management and remote control.
  • the user can unlock the remotely via the mobile phone.
  • the lock cylinder can also report the status of the unit to the user's mobile phone.
  • the utility model can also be conveniently connected with the smart home system to integrate with the smart home system.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Lock And Its Accessories (AREA)

Abstract

一种智能指纹锁芯。该智能指纹锁芯包括指纹装置、主控微处理器、与主控微处理器耦合的无线双向收发电路、状态显示双色灯圈、电机驱动装置、凸轮及其离合机构、锂电池供电系统、Micro USB充电及应急供电电路;所述指纹装置和电机驱动装置分别固定在锁芯两端,所述锁芯内还设有连接指纹装置和电机驱动装置的内置供电和通讯电缆。由于指纹功能和电机驱动装置直接集成在锁芯里面,客户只要更换锁芯,勿需更换锁体,就能把传统机械锁升级为智能锁,安装简单,方便升级维护。

Description

一种智能指纹锁芯 技术领域
本实用新型涉及锁具领域,更具体的说,涉及一种智能指纹锁芯。
背景技术
现有的门锁通常为机械锁结 构,一般包括门把手、位于门内的锁芯结构、外门锁板和方轴,门把手与方轴直接连接,方轴与锁芯结构连接,通过转动门把手可以带动方轴转动进而驱动锁芯结构进行开锁和锁闭动作。随着门锁的发展,安全性更高的指纹锁越来越普遍,指纹锁相对于机械锁而言,增加了指纹识别模块和动作电机,指纹识别模块在识别成功后控制动作电机启动,进而驱动锁芯离合机构进行开锁和上锁动作,现有的指纹锁对于直 接 由 机械 锁 升 级 为指 纹 锁的 情 况而 言,需要全部拆除门内的锁芯结构和外门锁板,需要更 换锁体,使得这种升级十分繁琐,非专业人士无法完成。
发明内容
本实用新型所要解决的技术问题是提供一种方便安装 、 方便使用 , 高安全性的智能指纹锁芯。
本实用新型的目的是通过以下技术方案来实现的:
一种智能指纹锁芯 , 包括指纹装置 , 主控微处理器 、 与主控微处理器耦合的无线 双向收发电路 、 状态显示双色灯圈 、 电机驱动装置 、 凸轮及其离合机构 、 锂电池供电系统、 Micro USB 充电及应急供电电路 ;所述指纹装置和电机驱动装置分别固定在锁芯两端 ,并信号耦合。
进一步的 , 所述锁芯内还设有连接指纹装置和电机驱动装置的内置供电和通讯电缆。
进一步的,所述指纹装置和电机驱动装置通过无线信号耦合。
进一步的 , 所述指纹装置包括指纹传感器和指纹处理器 , 所述指纹传感器为面式活体指纹传感器 ;所述指纹装置具有手指唤醒功能。
进一步的 , 所述无线收发电路能与智能手机或智能家居控制器智能设备进行双向加密通讯 ,实现远程设置 ,远程报警及远程控制功能。
进一步的 , 所述马达驱动装置与主控微处理器唯一配对 , 为系统提供完整的安全性。
进一步的 , 所述 Micro USB 充电及应急供电电路 , 能在电池耗尽时为系统应急供电 ,保证用户应急使用。
进一步的,所述锂电池充电系统,能实现锁芯充电。
进一步的 ,所述状态显示双色灯圈 ,可在为处理器控制下 ,显示用户操作状态。
进一步的 , 所述电动驱动装置包括嵌入固定在把手内的驱动板 ; 驱动板上固定有与凸轮连接的电机 ,以及给电机供电的电池 ;所述电机轴通过传动机构驱动凸轮离合机构,实现开锁和上锁功能 ;
所述电机驱动装置包括电机控制微处理器和电机驱动电路 ;
所述智能指纹锁芯设有设置按键 ,用于智能指纹锁芯的本地管理 ;
所述控制装置包括电源管理电路 、马达驱动电路 、蜂鸣器 、充电 LED 指示灯。
现有的指纹锁分锁芯和指纹器两部
分,需要换锁芯并需要请人专门安装指纹器部分。本实用新型由于指纹验证功能直接装在锁芯里面,指纹功能集成在锁芯里,客户不需更换锁芯,安装简单,方便升级维护。
附图说明
图 1 是本实用新型实施例智能指纹锁芯的结构示意图;
图 2是本实用新型实施例智能指纹锁芯的原理示意图。
其 中 : 1 、 指纹传感 器 ; 2 、 镜 片 ; 3 、 壳 料 ; 4 、 电子原器件主 板 ; 5 、 连接 板 ; 6 、 按键元 器 件 ; 7 、 usb 接 口 ; 8 、 电路接口 板 ; 9 、 螺 丝 ; 10 、 设置按 键 ; 11 、 不锈钢 板 ; 12 、 零件连接 件 ; 13 、 锁 体 ; 14 、 不锈钢板封 口 ; 15 、 不锈钢板把 手 ; 16 、 驱动 板 ; 17 、 输入 板 ; 18 、 电 池 ; 19 、 电 机 ; 20 、 内置电线 ; 21 、 钥匙口。
具体实施方式
本实用新型的智能指纹锁芯包括指纹采集装置、控制装置、锁体和把手 ; 所述锁体内设有驱动锁舌的凸轮,所述把手内设有驱动凸轮的电动驱动装置 ; 所述指纹采集装置和 把手分别固定在锁体两 端,所述锁体内还设有连接指纹采集装置和电动驱动装置的内置电线 ; 所述指纹采集装置包括壳料,所述壳料外表面设有镜片,镜片内设有采集指纹信息的指纹传感器 ; 所述壳料内设有连接 板;连接板一端固定有电子元器件主板 ; 另一端固定有电 路接口板 ; 中间固定有设有按键元器件的输入板 ; 所述内置电线与电路接口板连接。现有的指纹锁分锁芯和指纹器两部分,需要换锁芯并需要请人专门安装指纹器部分。本实用新型由于指纹验证功能直接装在锁芯里面,指纹功能合在锁芯里,客户不需更换锁芯,安装简单,方便升级维护。
下面结合附图和较佳的实施例对本实用新型作进一步说明。
如图 1 、 2 所示 。本实施方式的智能指纹锁芯包括指纹采集装置 、控制装置 、锁体 13 和把手 ; 锁体 13 内设有驱动锁舌的凸轮 , 把手内设有驱动凸轮的电动驱动装置 ; 指纹采集 装置和把手分别固定在锁 体13 两端,锁体 13 内还设有连接指纹采集装置和电动驱动装置 的内置电线 20 。
指纹采集装置包括壳 料 3 , 壳 料 3 外表面设有镜 片 2 , 镜 片 2 内设有采集指纹信息 的指纹传感 器 1 ; 壳 料 3 内设有连接 板 5 ; 连接 板 5 一端固定有电子元器件主 板 ; 另一端固 定有电路接口板 8 ; 中间固定有设有按键元器件 6 的输入板 17 ; 内置电线 20 与电路接口板 8 连接。
按键元器 件 6 上设有设置按 键 10 ; 输入 板 17 上设有用于连接外部电源 的 U SB 接口 7 ; 智能指纹锁芯还包括零件连接件 12 ; 壳料 3 开口处还固定有不锈钢板 11 ; 不锈钢板 11 内贯穿有螺丝 9 , 螺丝 9 带螺纹的一端固定在零件连接件 12 上 ; 锁体 13 远离把手的一端嵌入固定在零件连接件 12 内。当锁芯电池耗尽时,提供应急供电到 USB 接口 7 , 以便用户可以开锁。
电动驱动装置包括嵌入固定在把手内的驱动 板 16 ; 驱动 板 16 上固定有与凸轮连 接的电机 19 , 以及给电机 19 供电的电池 18 ; 电机 19 的输出轴通过传动机构驱动凸轮转动。控制装置包括主控器,分别与主控器连接的无线收发电路、与电池 18 耦合的电源 管理电路、与电机 19 耦合的电机 19 驱动电路、按键元器件 6 、 蜂鸣器、 LED 指示灯。电机 19 驱动模块控制电 机 19 转 动,电机 19 输出轴通过传动机构驱动凸轮转 动,进而驱动锁舌运动。锁舌在门里的锁体 13 上。锁舌伸出,插入门框,门就上锁了。锁舌缩回门内,开锁,推门就可以进去了。我们开锁,实际上就是转动锁芯,凸轮是嵌入锁体 13 的,凸轮转,就会带 动锁舌进或者 出。马达控制锁芯与凸轮的连接 : 连在一 起,转动锁芯,就可以转动锁舌 ; 两 者分开,转动锁芯就是空转,不会带动凸轮,因此不会开锁。
电子原器件主板 4 上设有与指纹传感器 1 耦合的指纹处理电路 ;主控器固定在连 接板5上 ; 无线收发电路固定在输入板17上 ; 按键元器件6包括复位电路。锁体13内还设 有与外部机械钥匙对接的钥匙口21;把手的开口处设有不锈钢封口14;把手为不锈钢板把 手15 。
经过科学和实践证明 ,人体指纹具有唯一性和固定性 ,且不易复制 。本实用新型就 是利用指纹的这些特点 , 代替机械钥匙 , 实现身份识别功能 , 从而将人们从随身携带钥匙的传统习惯中解放出来 ,方便用户 ,提高用户的生活质量。
本实用新型使用高 效、低功耗的微控制器作为主控器,实现系统的用户设置、指纹 识别、马达控制、无线通讯、电源管理等功能。
利用人体指纹的唯一性 , 通过指纹传感器 1 , 在锁芯内录入用户指纹 , 系统提取用户指纹特征 ,形成指纹模板 ,保存在系统内存储器内 ,作为用户身份的识别依据。
当用户要开锁 时,将已经登记过的手指放在指纹传感器1上,微控制器检测到手指后,控制指纹处理器,指纹处理器控制指纹传感器1,读取用户指 纹,并将其生成指纹模板,与系统存储的指纹模板进行逐一比对。如果指纹比对中发现有匹配的指纹,指纹处理器发送比对成功的信号给微处理器 ; 微控制器收到比对成功信号 后,输出加密的马达控制信号给马达微处理器,马达微处理器控制马达转动。马达转动带动传动机构,使锁芯与凸轮咬合。此时,转动锁芯时,凸轮跟随转动,带动锁舌缩回门内,开锁成功。5秒钟后,马达微控制器再次控制马达反转,带动传动机构,使锁芯与凸轮分离,将门上锁。此时若转动锁芯,由于凸轮已与锁芯分离,锁芯空转,无法带动锁舌。这就是指纹开锁和上锁的控制原理。
如果用户指纹比对不成 功,指纹处理器发送比对失败信号给微控制器(主控器);微处理器将关闭指纹处理器,结束本次操作。微处理器也不会驱动马达,锁芯与凸轮依然处 于分离状态,不能开锁,从而防止非法用户开门。
本实用新型采用电容式指纹传感 器 1 , 不仅能防止假指 纹、指模等欺诈手段,而且可以有效避免干、湿手指带来的指纹识别率低等问题,使之能指纹锁芯易用又安全。本实用 新型采用先进的指纹识别算 法,可 360 °全方位识别用户指 纹,带有自学习功能,从而全面 提高指纹识别率,满足所有用户群体需求。利用本机的设置键,用户可以对指纹锁芯进行有 效管理,包括指纹登记,指纹删除,遥控登记,遥控删除等功能。
用户在装好锁芯后,应该马上对指纹锁芯进行设置,以便安全地使用指纹锁芯。智能锁芯设计了蜂鸣器和 LED 指示灯,可以对用户的操作提供全程完整的声光提示。
本实用新型内置无线收发电路,可方便地进行远程管理,远程控制。 用户可以通过手机远程开锁。 锁芯也可以向用户手机报告本机状态。本实用新型还可以方便地与智能家 居系统联网,从而与智能家居系统融为一体。
以上内容是结合具体的优选实施方式对本实用新型所作的进一步详细说 明,不能 认定本实用新型的具体实施只局限于这些说明。对于本实用新型所属技术领域的普通技术人员来说,在不脱离本实用新型构思的前提下,还可以做出若干简单推演或替换,都应当视为属于本实用新型的保护范围。

Claims (9)

  1. 一种智能指纹锁 芯,其特征在于,包括指纹装置,主控微处理器、与主控微处理器耦 合的无线双向收发电 路、状态显示双色灯圈、电机驱动装置、凸轮及其离合机构、锂电池供电系统、 Micro USB 充电及应急供电电路 ; 所述指纹装置和电机驱动装置分别固定在锁芯两 端,并信号耦合。
  2. 如权利要 求1所述的智能指纹锁 芯,其特征在于,所述锁芯内还设有连接指纹装置 和电机驱动装置的内置供电和通讯电缆。
  3. 如权利要求1所述的智能指纹锁 芯,其特征在于,所述指纹装置和电机驱动装置通 过无线信号耦合。
  4. 如权利要 求1所述的智能指纹锁芯,其特征在于,所述指纹装置包括指纹传感器和 指纹处理器,所述指纹传感器为面式活体指纹传感器;所述指纹装置具有手指唤醒功能。
  5. 如权利要求1所述的智能指纹锁芯,其特征在于,所述无线双向收发电路能与智能手机或智能家居控制器智能设备进行双向加密通讯,实现远程设置,远 程报警及远程控制功能。
  6. 如权利要求1所述的智能指纹锁芯,其特征在于, 所述智能指纹锁芯还包括马达驱 动装置,所述马达驱动装置与主控微处理器唯一配对,为系统提供完整的安全性。
  7. 如权利要求1所述的智能指纹锁芯,其特征在于,所述 Micro USB 充电及应急供电电 路,能在电池耗尽时为系统应急供电,保证用户应急使用。
  8. 如权利要求1所述的智能指纹锁芯,其特征在于,所述锂电池充电系统,能实现锁芯 充电。
  9. 如权利要求1所述的智能指纹锁芯 ,其特征在于,所述状态显示双色灯圈,可在为处 理器控制下,显示用户操作状态。
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