WO2018161925A1 - 自监护智能皮带及其数据信息管控方法 - Google Patents

自监护智能皮带及其数据信息管控方法 Download PDF

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WO2018161925A1
WO2018161925A1 PCT/CN2018/078363 CN2018078363W WO2018161925A1 WO 2018161925 A1 WO2018161925 A1 WO 2018161925A1 CN 2018078363 W CN2018078363 W CN 2018078363W WO 2018161925 A1 WO2018161925 A1 WO 2018161925A1
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belt
mobile phone
rail plate
bluetooth
monitoring
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PCT/CN2018/078363
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English (en)
French (fr)
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曹树槐
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曹树槐
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    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B19/00Programme-control systems
    • G05B19/02Programme-control systems electric
    • G05B19/04Programme control other than numerical control, i.e. in sequence controllers or logic controllers
    • G05B19/042Programme control other than numerical control, i.e. in sequence controllers or logic controllers using digital processors
    • G05B19/0428Safety, monitoring
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B2219/00Program-control systems
    • G05B2219/20Pc systems
    • G05B2219/24Pc safety
    • G05B2219/24024Safety, surveillance

Definitions

  • the present invention relates to the field of leather manufacturing, electronic control, micro motor control, micro power generation, wireless communication, and smart wear.
  • the background proposed by this program is that although the belts used by people daily are quite perfect in terms of structure, appearance, convenience and durability, there is not much room for transformation and upgrading.
  • belts as a must for most people, need to be given more human functions to provide greater social value.
  • the main function of the belt is that the waist size (waist circumference) of the human body is not constant for 24 hours a day, or even fluctuating, and the binding pants are its most basic function.
  • the added value is the fashion or taste, which is commonly known as the belt.
  • this case believes that to give the belt products a humanized function, it is necessary to combine the informational thinking and upload the waist size data to the cloud, which is necessary for the majority of male and female friends, for the following reasons:
  • the restraint size and fluctuation of the belt can obviously reflect the waist size and fluctuation of a person.
  • the restraint size and fluctuation of the belt can obviously reflect the waist size and fluctuation of a person.
  • men's belts are usually tied to the waist (unless they are not belted when they go out), and in general, men are unlikely to hold the belt in their hands for a long time in public or Hidden in the bag, therefore, the men's belt system / solution is extremely regular;
  • the invention provides a self-monitoring intelligent belt and a data information control method thereof, comprising a belt head, a belt body, a belt user end mobile phone APP, a guardian mobile phone app, and data information control of human-computer interaction between the above units. method.
  • the above-mentioned belt head comprises: an inner rail plate, an outer rail plate, a bridge beam and a guide frame, and a buckle seat bridge.
  • the inner rail plate comprises: a retracting gear, an inner rail plate substrate, a leather strip pressing column, a snap seat bridge (connected to the inner rail plate), and a snap socket.
  • the foregoing outer rail plate comprises: a traction wheel, an outer rail plate substrate inner board, an MCU control unit (including a Bluetooth/WiFI/wireless communication interface), a miniature lithium battery, a charging port, a power supply port, an emergency power generation switch, a micro stepping motor, Switch micro power generation system, relay (counting type), latch, inner plate cover, outer rail plate substrate outer plate, buckle male seat and pin groove, flip pin seat and pin (connected by pin and bridge beam), hollow guide Groove.
  • the belt body described above includes: a leather strip, a card slot on the leather strip, and a marginal card slot.
  • the speed and time of the stepping motor are collected by the MCU control unit, and then the initial bite size and the traction size of the belt are measured, converted and controlled, and the measured data information is uploaded to the mobile phone App through Bluetooth/WiFi, and transmitted to the mobile phone App at regular or on demand. Friends or contacts.
  • the size and locking state of the opponent's belt can be controlled by setting a monitoring program or timing monitoring in the mobile phone App.
  • the relay adopts a counting type relay, and the MCU control unit collects the accumulated number of times, the opening and closing time, and directs the Bluetooth/WiFI/wireless communication interface to upload to the mobile phone App, and then Transfer to the other party's mobile app via the mobile phone mobile network.
  • the above setting of the monitoring program or the timing monitoring control in the mobile phone app includes the following steps.
  • Step 1 Open the Bluetooth or WiFi or the equivalent wireless communication interface of the mobile phone of the belt user through the operation button of the mobile phone App.
  • Step 2 Establish communication between the Bluetooth of the mobile phone and the Bluetooth interface of the belt head through the mobile phone APP of the belt user end.
  • Step 3 Start the MCU control unit through the Bluetooth communication data.
  • Step 4 The micro stepping motor is started by the MCU control unit.
  • Step 5 Pull the belt strap tightly or loosen by the micro stepping motor.
  • Step 6 The MCU control unit collects the rotational speed and traction time fed back by the micro stepping motor and converts it into a belt traction size in combination with the pulse frequency.
  • Step 7 The MCU control unit collects the cumulative number of switching times and switching time of the switch relay (counting type relay), and the MCU control unit collects the external communication on/off time of the Bluetooth or equivalent wireless communication module in the belt head.
  • Step 8 The MCU control unit drives the Bluetooth interface to store the data information such as the traction size, the cumulative switching times, the switching time, the Bluetooth external communication on/off time, and the like in the internal storage unit (in the MCU memory) and/or on the belt user mobile phone. App.
  • Step 9 The belt user mobile phone APP transmits the data information such as the traction size, the cumulative switching times, the switching time, the Bluetooth external communication on/off time, and the like to the monitoring mobile phone App through the mobile phone wireless communication network.
  • Step 10 When the mobile phone APP of the monitoring terminal approaches the belt head, the Bluetooth communication is automatically turned on, the monitoring data information of the MCU unit stored in the belt head is read out, or the monitoring program/data information in the monitoring mobile phone APP is written into the belt head. MCU unit.
  • Step 11 When the user of the belt or the portable electronic device urgently needs power, the belt user turns on the emergency power generation switch, and pulls the micro-power generation device inside the belt head through the leather strip to drive the micro lithium battery to obtain electric energy.
  • Step 12 When the mobile phone App of the monitoring terminal receives the abnormal communication time of the Bluetooth external communication (when the mobile phone user of the belt can not communicate with the belt Bluetooth), the mobile phone App sends a reminding message to the guardian personnel, so that the guardian personnel can call the belt in time. The user's mobile phone and trying to retrieve the phone.
  • the operation buttons in the above step 1 mainly include: “on Bluetooth”, “tension size”, “relaxation size”, “current size”, “size fluctuation curve”, “opening and closing data query”, “instant opening and closing check”
  • Function buttons such as “Alarm and automatic monitoring status inquiry/program setting”, “Mobile phone anti-lost monitoring mode display column”, “Mobile phone anti-lost monitoring mode display and setting bar” (see Figure 1).
  • the belt head in the above step 2 includes: an inner rail plate, an outer rail plate, a bridge beam and a guide frame, a snap seat bridge, a female seat, a male seat and a slot.
  • the method for receiving the data information of the Bluetooth external communication on/off time in the monitoring mobile phone App in the above step 12 is realized by the mobile phone wireless network communication between the monitoring terminal App and the belt user end App or through the Bluetooth/WiFi through the monitoring terminal App. It is realized by communication with the belt head wireless communication module.
  • Figure 1 A global diagram of the belt, including the belt head, the leather strip body, the mobile phone App, and the data information control method;
  • Belt user end App communicates with the belt head wireless communication module via Bluetooth/WiFi, reads monitoring data information or writes monitoring parameters;
  • the monitoring app communicates with the belt head wireless communication module via Bluetooth/WiFi, reads monitoring data information or writes monitoring parameters;
  • FIG. 1 Top view of the belt head
  • the self-monitoring intelligent belt is a mobile internet intelligent wearable integrated system composed of a belt head, a leather strip body and a mobile phone App, and a data information control method thereof, as shown in FIG.
  • the belt head is the main functional component, and the belt head is composed of four inner structural members: the inner rail plate, the outer rail plate and the bridge beam, the guide frame and the buckle seat bridge, as shown in Fig. 2.
  • the inner rail plate and the outer rail plate are integrally connected by riveting of the bridge beam, and the guide frame is used for the tail end of the leather body to be easily inserted into the belt head, and the buckle seat bridge connects the inner rail plate and the outer rail plate inner plate into one body.
  • the inner rail plate is made up of 7---retracting gear; 8---inner rail plate substrate; 9--the leather strip pressing column is connected by metal/plastic material, as shown in Fig. 2.
  • the outer rail plate consists of 10---traction wheel, 11---outer rail plate substrate inner board, 12---MCU control unit (including Bluetooth/wireless communication interface), 13---mini lithium battery, 14--- Charging port, 15----supply port, 16---emergency switch, 17---micro stepper motor, 18---micro power generator, 19---switch relay (counting type), 20-- - inner panel cover, 21---outer rail plate substrate outer panel, 22--- flip cover pin and pin (connected by pin and bridge beam), 23--- hollow guide slot ( Figure 3) ; and: 24---plug, 25--- buckle female seat, 26--- snap seat bridge (connected with the inner rail plate), 27-- buckle male seat and slot (as shown in Figure 4 ).
  • the bolts and buckles are the main components and frequently moving parts of the belt head.
  • the bolts and buckles are shown in Figure 4.
  • the main items are: 24---plug, 25---fastening female seat, 26---fastening Bridge (connected to the inner rail plate), 27--clip male seat and slot.
  • the latch is pushed or pulled back by the switch relay (counting type) to lock the connection between the outer panel of the outer rail plate substrate and the inner rail plate, the snap socket, the snap seat bridge (connected with the inner rail plate), and the outer rail plate
  • the outer panel of the substrate, the flip pin seat and the pin together constitute a flexible lever mechanism member for the normal opening and closing of the belt.
  • a marginal card slot is provided in the present case, as shown in FIG.
  • the marginal card slot must be matched with the size of the leather strip body to achieve the effect of failure prevention. Therefore, the total length of the leather strip, the user's waist circumference, the card slot, and the margin card should be used as appropriate before use.
  • the bit slot is comprehensively considered and tailored.
  • a simplified implementation is the MCU control unit (including Bluetooth/wireless communication interface) connected to the inner panel of the outer rail plate substrate in FIG. 3, a micro lithium battery, a charging port, a power supply port, an emergency power switch, The micro stepping motor, the micro power generation device and the inner panel cover are integrated, and the modular portable is embedded in the inner plate of the outer rail plate substrate.
  • the MCU control unit including Bluetooth/wireless communication interface
  • the structure/function cavity left by the module disassembly, the storage box with the equivalent size and the mechanical support function of the module (such as a daily small object such as a key) is embedded and embedded.
  • the inner plate of the rail plate substrate In the inner plate of the rail plate substrate.
  • the inner plate of the outer rail plate substrate is connected to the outer pin of the outer rail plate substrate through the flip pin seat.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Automation & Control Theory (AREA)
  • Telephonic Communication Services (AREA)

Abstract

一种自监护智能皮带的数据信息管控方法,其中,自监护智能皮带是由皮带头、皮革条本体和手机App组合而成的移动互联网智能穿戴综合系统,能够自动束紧或放松,通过测量皮带开合次数、开合时间、牵引尺寸测量使用者的腰围,通过皮带头、手机App与第三方监护端App的无线通信实现数据信息远程上传至云端并在使用者群体之间的手机App共享,还具有发电的功能,以备外出旅行和紧急情况下使用。

Description

自监护智能皮带及其数据信息管控方法 技术领域
本发明涉及皮革制造、电子控制、微电机控制、微型发电装置、无线通信、智能穿戴领域。
背景技术
随着移动互联网的普及,人们的生活越来越依赖以信息化和自动控制带来的便利,本案提出了一种智能皮带及其数据信息传输和控制的方案。
本方案提出的背景是:人们日常使用的皮带虽然在结构、外观、便利性、耐久性方面都已相当完善,没有太多的改造升级的空间。然而,皮带作为大部分人士都穿戴的必须品,需要赋予其更多的人性化功能,方能提供更大的社会价值。显而易见,皮带的主要功能在于:人体腰部尺寸(腰围)并不是一天二十四小时不变的,甚至是波动变化的,束缚裤子是其最基本功能。对于大多数女性朋友,其更大的附加价值在于时尚或品味,此时俗称腰带。
基于以上分析,本案认为要给皮带产品赋予人性化功能,需结合信息化思维,将腰部尺寸数据上传至云端,这对于广大男性和女性朋友,都十分必要,理由如下:
第一,减少手工系束皮带的繁琐(特别是饭前饭后腰围尺寸波动幅度比较大的人士);
第二,皮带的束缚尺寸及波动状况可明显反映一个人的腰围尺寸及波动状况,对注重腰围、体重、饮食健康的朋友们,用腰围尺寸这个最基本的指标监测自己的身体健康状况及身材容貌,具有很好的效果,并能主动提示自己的健康状况及容貌指标;
第三,由于通常情况下,男人的皮带都是束缚于腰间的(除非出门的时候就没系皮带),并且通俗情况下男人不太可能在公共场合下长时间把皮带抓在手上或藏于包中,因此,男人的皮带的系/解是极其有规律性的;
第四,外出时,手机等随身电子设备容易匮电,并且急于找不到应急电源;
第五,手机是现代社会每个人工作生活的必备品,皮带作为最常见的穿戴必需品几乎不离身也不易丢。然而,对于差旅繁忙的人士,手机往往会因为疏忽而漏带或丢掉,当手机携带者自己发现手机漏带或丢掉时,已为时过晚,甚至无法挽回损失。
上述五种市场功能诉求,都迫切需要一种人性化、安全可靠的技术方案来弥补, 本案由此而,区别于现有的智能穿戴皮带人机交互技术、手机防丢智能装置或方法,本案融入了第三方监护人,在便利化日常生活、提升健康管理水平的基础功能上,通过“人-人-机”的数据信息交互设计,实现减少被监护人的物品财产损失、减少监护人的情感担忧和连带财产风险的多重功能和实用价值。
发明内容
本发明提出了一种自监护智能皮带及其数据信息管控方法,包括皮带头、皮带本体、皮带使用者端手机APP、监护者端手机App、以及上述各单元之间人机交互的数据信息管控方法。
上述的皮带头包括:内导轨板、外导轨板、桥接梁及导框、卡扣座桥。
前述内导轨板包括:止退齿轮、内导轨板基板、皮革条压紧柱、卡扣座桥(与内导轨板相连接)、卡扣母座。
前述外导轨板包括:牵引轮、外导轨板基板内板、MCU控制单元(含蓝牙/WiFI/无线通信接口)、微型锂电池、充电端口、供电端口、应急生电开关、微型步进电机、开关微型发电系统、继电器(计数型)、插销、内板护盖、外导轨板基板外板、卡扣公座及销槽、翻盖销座及销钉(以销钉与桥接梁连接)、缕空导引槽。
上述的皮带本体包括:皮革条、皮革条上的卡槽、边际卡位槽。
本案通过MCU控制单元采集步进电机的转速及时间,进而测算、换算并控制皮带初始咬合尺寸与牵引尺寸,将测算的数据信息通过蓝牙/WiFi上传至手机App中,并定时或按需传送给好友或联系人。
进一步地,对于亲密级好友或联系人,可通过在手机App中设置监测程序或定时监测控制对方皮带的尺寸和锁紧状态。
上述的锁紧状态由继电器反馈回来的插销伸缩信号进行识别,通常继电器采用计数型继电器,由MCU控制单元采集累计次数、开闭时间,并指引蓝牙/WiFI/无线通信接口上传至手机App,再经由手机移动网络传输至对方手机App。
上述的在手机App中设置监测程序或定时监测控制,包括如下步骤。
步骤一、通过监护端手机App操作按钮“开启蓝牙”开启皮带使用者端的手机蓝牙或WiFi或等效的无线通信接口。
步骤二、通过皮带使用者端的手机APP建立该手机蓝牙与皮带头蓝牙接口的通信。
步骤三、通过蓝牙通信数据启动MCU控制单元。
步骤四、由MCU控制单元启动微型步进电机。
步骤五、由微型步进电机牵引皮带条束紧或放松尺寸。
步骤六、由MCU控制单元采集微型步进电机反馈的转速、牵引时间并结合脉冲频率换算成皮带牵引尺寸。
步骤七、由MCU控制单元采集开关继电器(计数型继电器)的累计开关次数、开关时间,由MCU控制单元采集皮带头中蓝牙或等效无线通信模块的对外通信通断时间。
步骤八、MCU控制单元驱动蓝牙接口将上述牵引尺寸、累计开关次数、开关时间、蓝牙对外通信通断时间等数据信息储存在内部存储单元(MCU内存中)和/或上传至皮带使用者端手机App。
步骤九、皮带使用者端手机APP通过手机无线通信网络将上述牵引尺寸、累计开关次数、开关时间、蓝牙对外通信通断时间等数据信息传送至监护端手机App。
步骤十、监护端手机APP接近皮带头时,自动开启蓝牙通信,将储存在皮带头中MCU单元的监护数据信息读取出来,或将监护端手机APP中的监护程序/数据信息写入皮带头的MCU单元。
步骤十一、皮带使用者由于手机或随身电子设备匮电急需电源时,开启紧急生电开关,并通过左右来回拉动皮革条驱动皮带头内部的微型发电装置,进而为微型锂电池充电获取电能。
步骤十二、当监护端手机App接收到蓝牙对外通信通断时间异常(皮带使用者端手机App无法与皮带蓝牙通信时),手机App发出提醒消息给监护端人员,便于监护端人员及时拨打皮带使用者端人员的手机并试图找回手机。
上述步骤一中的操作按钮,主要包括:“开启蓝牙”、“拉紧尺寸”、“放松尺寸”、“当前尺寸”、“尺寸波动曲线”、“开合数据查询”、“即时开合点检”、“预警与自动监护状态查询/程序设置”、“手机防丢监护模式显示栏”、“手机防丢监护模式显示及设置栏”等功能按钮(如附图1)。
上述步骤二中的皮带头,包括:内导轨板、外导轨板、桥接梁及导框、卡扣座桥、母座、公座及插槽。
上述步骤十二中的监护端手机App接收蓝牙对外通信通断时间的数据信息的方法,通过监控端App与皮带使用者端App之间的手机无线网络通信实现或者通过监护端App通过蓝牙/WiFi与皮带头无线通信模块通信实现。
附图说明
附图1:皮带全局图,其中含有皮带头、皮革条本体、手机App、数据信 息控制方法示意;
31---监控端App与皮带使用者端App之间的手机无线网络通信,读取监控数据信息或写入监控参数;
32---皮带使用者端App通过蓝牙/WiFi与皮带头无线通信模块通信,读取监控数据信息或写入监控参数;
33---监护端App通过蓝牙/WiFi与皮带头无线通信模块通信,读取监控数据信息或写入监控参数;
34---手机防丢监护模式显示栏;
35---手机防丢监护模式显示及设置栏。
附图2:皮带头俯视图
皮带头:
4---内导轨板;5---外导轨板;6---桥接梁及导框;
内导轨板:
7---止退齿轮;8---内导轨板基板;9--皮革条压紧柱。
附图3:皮带头内部示图
外导轨板:
10---牵引轮、11---外导轨板基板内板、12---MCU控制单元(含蓝牙/无线通信接口)、13---微型锂电池、14---充电端口、15---供电端口、16---应急生电开关、17---微型步进电机、18---微型发电装置、19---开关继电器(计数型)、20---内板护盖、21---外导轨板基板外板、22---翻盖销座及销钉(以销钉与桥接梁连接)、23---缕空导引槽。
附图4:插销及卡扣示图
24---插销、25---卡扣母座、26---卡扣座桥(与内导轨板相连接)27--卡扣公座及插槽。
附图5:边际卡位槽示图
28---边际卡位槽、29---皮革条、30---皮革条上的卡槽;
实施方式
自监护智能皮带是由皮带头、皮革条本体和手机App组合而成的移动互联网智能穿戴综合系统,及其数据信息管控方法,如附图1。
皮带头是主要功能部件,皮带头由内导轨板、外导轨板和桥接梁及导框、 卡扣座桥四大结构部件组成,如附图2。
内导轨板、外导轨板通过桥接梁铆接连为一体,导框用于皮革本体的尾端方便穿插进皮带头、卡扣座桥将内导轨板与外导轨版内板连为一体。
内导轨板由7---止退齿轮;8---内导轨板基板;9--皮革条压紧柱经金属/塑材连接而成,如附图2。
外导轨板由10---牵引轮、11---外导轨板基板内板、12---MCU控制单元(含蓝牙/无线通信接口)、13---微型锂电池、14---充电端口、15---供电端口、16---应急生电开关、17---微型步进电机、18---微型发电装置、19---开关继电器(计数型)、20---内板护盖、21---外导轨板基板外板、22---翻盖销座及销钉(以销钉与桥接梁连接)、23---缕空导引槽(如附图3);以及:24---插销、25---卡扣母座、26---卡扣座桥(与内导轨板相连接)、27--卡扣公座及插槽(如附图4)。
插销和卡扣是皮带头的主要部件和频繁动作部件,插销和卡扣示图见附图4,主要包括:24---插销、25---卡扣母座、26---卡扣座桥(与内导轨板相连接)、27--卡扣公座及插槽。
其中插销由开关继电器(计数型)推动或拉回以锁死外导轨板基板外板与内导轨板的连接,卡扣母座、卡扣座桥(与内导轨板相连接)、外导轨板基板外板、翻盖销座及销钉一起组成柔性杠杆机构件,用于皮带正常的开合松紧。
为了防止智能部件的失灵失效,进而导致对人体产生伤害,本案设置了边际卡位槽,如附图5。
特别地,边际卡位槽须与皮革条本体的尺寸匹配使用,才能起到失效预防的效果,因此产品使用前,应酌情对皮革条的总长度、使用者的腰围、卡位槽、边际卡位槽综合考虑并进行裁剪。
一种简化的实施方案是将附图3中的连接于外导轨板基板内板上的MCU控制单元(含蓝牙/无线通信接口)、微型锂电池、充电端口、供电端口、应急生电开关、微型步进电机、微型发电装置、内板护盖组成一体,模块化便携嵌入到外导轨板基板内板中。
优选地,为兼容匹配上述模块化便携嵌入槽、模块拆卸留下的结构/功能空洞,附加配置与模块等同尺寸及力学支撑功能的置物盒(如放置钥匙等日常小物件),便携嵌入到外导轨板基板内板中。外导轨板基板内板通过翻盖销座与外导轨板基板外板销轴联动连接。

Claims (5)

  1. 自监护智能皮带及其数据信息管控方法,是由皮带头、皮革条本体和手机App组合而成的移动互联网智能穿戴综合系统,包括智能皮带结构件和数据信息管控方法,其步骤如下:
    步骤一、通过监护端手机App操作按钮“开启蓝牙”开启皮带使用者的手机蓝牙或WiFi或等效的无线通信接口;
    步骤二、通过皮带使用者端的手机APP建立该手机蓝牙与皮带头蓝牙接口的通信;
    步骤三、通过蓝牙通信数据启动MCU控制单元;
    步骤四、由MCU控制单元启动微型步进电机;
    步骤五、由微型步进电机牵引皮带条束紧或放松尺寸;
    步骤六、由MCU控制单元采集微型步进电机反馈的转速、牵引时间并并结合脉冲频率换算成皮带牵引尺寸;
    步骤七、由MCU控制单元采集开关继电器(计数型继电器)的累计开关次数、开关时间;
    步骤八、MCU控制单元驱动蓝牙接口将上述牵引尺寸、累计开关次数、开关时间储存在内部存储单元(MCU内存中)和/或上传至手机App;
    步骤九、皮带使用者端手机APP通过手机无线通信网络将上述牵引尺寸、累计开关次数、开关时间等数据信息传送至监护端手机App;
    步骤十、监护端手机APP接近皮带头时,自动开启蓝牙通信,将储存在皮带头中MCU单元的监护数据信息读取出来,或将监护端手机APP中的监护程序/数据信息写入皮带头的MCU单元;
    步骤十一、皮带使用者由于手机或随身电子设备匮电急需电源时,开启紧急生电开关,并通过左右来回拉动皮革条驱动皮带头内部的微型发电装置,进而为微型锂电池充电获取电能;
    步骤十二、当监护端手机App接收到蓝牙对外通信通断时间异常(皮带使用者端手机App无法与皮带蓝牙通信时),手机App发出提醒消息给监护端人员,便于监护端人员及时拨打皮带使用者端人员的手机并试图找回手机。
    上述步骤一中的操作按钮,包括:“开启蓝牙”、“拉紧尺寸”、“放松尺寸”、“当前尺寸”、“尺寸波动曲线”、“开合数据查询”、“即时开合点检”、“预警与自动监护状态查询/程序设置”、“手机防丢监护模式显示栏”、“手机防丢监护 模式显示及设置栏”功能按钮;
    上述步骤二中的皮带头,包括:内导轨板、外导轨板、桥接梁及导框、卡扣座桥、母座、公座及插槽;
    上述步骤十二中的监护端手机App接收蓝牙对外通信通断时间的数据信息的方法,通过监控端App与皮带使用者端App之间的手机无线网络通信实现或者通过监护端App通过蓝牙/WiFi与皮带头无线通信模块通信实现。
  2. 如权利要求1所述的智能皮带结构件,包括皮带头、皮革条本体、手机App;
    所述的皮带头,包括:内导轨板、外导轨板、桥接梁及导框;
    上述的内导轨板,包括:止退齿轮、内导轨板基板、皮革条压紧柱;
    上述的外导轨板,包括:牵引轮、外导轨板基板内板、MCU控制单元(含蓝牙/无线通信接口)、微型锂电池、充电端口、供电端口、应急生电开关微型步进电机、微型发电装置开关继电器(计数型)、内板护盖、外导轨板基板外板、翻盖销座及销钉(以销钉与桥接梁连接)、缕空导引槽、插销、卡扣母座、卡扣座桥(与内导轨板相连接)、卡扣公座及插槽;
    所述的皮革条本体,包括边际卡位槽、皮革条、皮革条上的卡槽。
  3. 如权利要求2所述的外导轨板基板内板,配置有便携嵌入槽,MCU控制单元(含蓝牙/无线通信接口)、微型锂电池、充电端口、供电端口、应急生电开关、微型步进电机、微型发电装置、内板护盖组成一体化模块,模块化便携嵌入到外导轨板基板内板中。
  4. 如权利要求3所述的模块化便携嵌入,还附加配置与一体化模块等同尺寸及力学支撑功能的置物盒(如放置钥匙等日常小物件),便携嵌入到外导轨板基板内板中。外导轨板基板内板通过翻盖销座与外导轨板基板外板销轴联动连接。
  5. 如权利要求4所述的置物盒,配置有纽扣电池、蓝牙接口、开关继电器(定时及计数型)及连接插销,插销与卡扣基座配合,卡扣工作及插槽闭合时,触发继电器定时并计数。
PCT/CN2018/078363 2017-03-09 2018-03-08 自监护智能皮带及其数据信息管控方法 WO2018161925A1 (zh)

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