WO2015180092A1 - 环带结构和智能手环 - Google Patents

环带结构和智能手环 Download PDF

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Publication number
WO2015180092A1
WO2015180092A1 PCT/CN2014/078783 CN2014078783W WO2015180092A1 WO 2015180092 A1 WO2015180092 A1 WO 2015180092A1 CN 2014078783 W CN2014078783 W CN 2014078783W WO 2015180092 A1 WO2015180092 A1 WO 2015180092A1
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WO
WIPO (PCT)
Prior art keywords
smart bracelet
monitoring
groove
air quality
sensor
Prior art date
Application number
PCT/CN2014/078783
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English (en)
French (fr)
Inventor
袁剑敏
Original Assignee
深圳华盛昌机械实业有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳华盛昌机械实业有限公司 filed Critical 深圳华盛昌机械实业有限公司
Priority to CN201490000064.5U priority Critical patent/CN205378934U/zh
Priority to PCT/CN2014/078783 priority patent/WO2015180092A1/zh
Publication of WO2015180092A1 publication Critical patent/WO2015180092A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A44HABERDASHERY; JEWELLERY
    • A44CPERSONAL ADORNMENTS, e.g. JEWELLERY; COINS
    • A44C5/00Bracelets; Wrist-watch straps; Fastenings for bracelets or wrist-watch straps

Definitions

  • the present invention relates to the technical field of wristbands, and more particularly to an annulus structure and a smart bracelet including the annulus structure.
  • the bracelet is a kind of item that people often wear in daily life.
  • the object of the present invention is to provide an endless belt structure, which aims to solve the problem of excessive volume and poor heat dissipation of the smart wristband in the prior art.
  • the present invention is realized by the endless belt structure comprising an annular belt body, the upper part of the belt body is provided with a recess for placing an electronic component and a display screen, and a lower portion is provided with a capacity for placing the battery.
  • the cavity, the groove and the cavity are respectively elongated, respectively extending along the length direction of the annulus body and disposed opposite to each other.
  • the present invention also provides a smart wristband comprising the above-described annulus structure, a control element, a display screen and a battery, the control element and the display screen being embedded in the recess, the battery being placed in the cavity.
  • the present invention provides an endless belt structure in which a groove and a cavity are respectively disposed at upper and lower portions of the endless belt body, and a display screen, an electronic component, and the like are placed in the groove, and the battery is placed in the cavity.
  • the groove and the cavity are respectively elongated, so that the inner space of the annulus body can be fully utilized, the volume of the annulus structure is greatly reduced, the volume of the smart bracelet is reduced, and the battery is placed separately from other electronic components.
  • the full length of the loop body can be fully deployed to facilitate heat dissipation.
  • the smart wristband provided by the invention has an electronic component such as a display screen and a control component placed in a groove in the upper part of the annulus body, and the battery is placed in a cavity in the lower part of the annulus body, so that the ring of the annulus body is fully utilized.
  • the structure separates the electronic components from the battery, which can greatly reduce the volume of the smart bracelet and facilitate the heat dissipation of electronic components in the smart bracelet.
  • FIG. 1 is a perspective exploded view of a functional wristband provided by an embodiment of the present invention.
  • the endless belt structure 101 includes an endless belt body having an annular shape, and an outer surface of the upper portion is provided with a strip-shaped groove, and the groove can be used for placing various electronic components, such as a control component. 104, display screen 103, etc.; a lower portion of the annular body is provided with a cavity, the cavity is also strip-shaped, which is used for placing the battery 107, and the groove and the cavity respectively extend the length direction of the annular body, The two are arranged oppositely.
  • grooves and cavities are respectively disposed at upper and lower portions of the annulus body, and electronic components such as the display screen 103 and the control element 104 are placed in the grooves, and the battery 107 is placed in the cavity, and
  • the groove and the cavity are respectively elongated, so that the inner space of the annulus body can be fully utilized, the volume of the annulus structure 101 is greatly reduced, the volume of the smart bracelet 1 is reduced, and the battery 107 is placed separately from other electronic components.
  • the full length of the loop body can be fully deployed to facilitate heat dissipation.
  • the groove on the upper part of the belt body includes an intermediate groove 1011 and two are respectively distributed in the intermediate groove.
  • the side grooves 1012 on both sides of the 1011 of course, the side grooves 1012 are in communication with the intermediate groove 1011, forming a groove having an open upper end, the intermediate groove 1011 can be used for placing the display screen 103, etc., and other electronic components can be placed in the side groove 1012. So that the space of the groove is fully utilized, and the electronic components are also fully spread out to facilitate heat dissipation and arrangement.
  • a cover 102 is disposed at an upper end of the side groove 1012, and the cover 102 covers the upper end of the side groove.
  • the end of the cover abuts on the display screen 103, so that Since the face plate 102 is disposed on both sides of the display screen 103, the fixing of the display screen 103 can be achieved by the double-sided case 102, and the face case 102 closes the upper end opening of the side groove 1012, so that the side groove and the face shell 102
  • An accommodation space is formed between the other, and other electronic components can be enclosed in the accommodation space, which can function as a seal and waterproof.
  • gaps 1013 are respectively provided, so that when the display screen 103 is placed in the intermediate slot 1011, both sides of the display screen 103 can be embedded in the two notches 1013 to facilitate the installation of the display screen 103. And the display screen 103 can be made more stable in the intermediate slot 1011.
  • the cavity is located directly under the groove, and the two ends of the cavity respectively extend to extend the two ends of the groove, so that a relatively symmetric arrangement between the cavity and the groove can be ensured, so that the electronic component and the battery
  • the entire endless belt structure 101 is more balanced, increasing the wearing comfort.
  • the embodiment further provides a smart wristband 1 comprising the above-mentioned belt structure 101, a control element 104 and a display screen 103.
  • the display screen 103 is embedded in the groove of the belt structure 101, and its display surface (that is, the upper side) The surface is arranged upwards such that the display surface is exposed; the control element 104 and various electronic components are placed in the recess, and the control component 104 is used to automatically control the operation of the entire smart wristband 1.
  • the control component 104 can It is a variety of components, such as PCB boards, microcontrollers and various other components with control effects.
  • the smart bracelet 1 includes a battery 107 which is disposed in a cavity below the annulus structure 101 so that the position between the other components is not repeated and the internal space of the annulus structure 101 is more effectively distributed.
  • the battery 107 is disposed together with other components, which can also greatly improve the heat dissipation and volume reduction of the smart bracelet 1.
  • the battery 107 is provided in plurality, and the plurality of batteries 107 are evenly distributed adjacent to the cavity in the lower part of the annulus structure 101, so that the user does not wear the wristband structure when wearing the smart bracelet 1. 101 built-in battery 107, I feel uncomfortable.
  • the smart bracelet 1 further includes a wireless communication component 105 and an air quality monitoring component, the wireless communication component 105 and the air quality monitoring component are respectively qualitatively connected to the control component 104, which is controlled by the control component 104 to operate, save data, and transfer data.
  • the air quality monitoring component can monitor the air quality in the environment in which the smart bracelet 1 is located, and transmit the monitoring data to the control component 104, and the control component 104 can transmit the monitoring data to the display screen 103 for display, or
  • the wireless communication component 105 transmits the monitoring data to an external server for calculation, statistics, storage, and the like.
  • the smart bracelet 1 has various functions, and by setting an air quality monitoring component, the air quality of the environment in which the user is located can be monitored, and transmitted to the outside through the control component 104 using the wireless communication component 105.
  • a device such as a server is directly displayed on the display screen 103; thus, in daily life, the user can monitor the air quality of the walking path or the surrounding environment, and through the monitoring data storage, calculation processing, etc., to select better.
  • the walking path or can promptly prompt the user to change the ambient air quality, so that the user can choose whether to continue to stay or leave, etc., which provides a guiding role for the user's healthy life; especially for some sick users, the environment
  • the air quality in the impact has a great influence on it.
  • the air quality monitoring component in the wristband 1 can always monitor the data of the ambient air quality, which is beneficial to the user's health choice and meets the user's demand for healthy life. .
  • the smart bracelet 1 is small in size, and it is directly worn on the hand, and the user does not need to carry any other monitoring instrument, which is simple and convenient to use.
  • the external server After the monitoring data is transmitted to the external server or the like through the wireless communication component 105, data processing, calculation, statistics, and the like are performed, and the external server can more visually feed the processed data to the wristband 1, and the display screen 103 is displayed. If the path is matched, multiple air quality paths are simulated, so that the user can select a better walking path; or, by some image processing, the air quality can be displayed in the form of an image, etc., and the specific manner can also be various, and not limited. In the form of this embodiment.
  • control component 104 the air quality monitoring component, and the wireless communication component 105
  • the control component 104, the air quality monitoring component, and the wireless communication component 105 are all placed in an annulus structure.
  • the placement of the specific position can be determined according to actual needs.
  • the air quality monitoring component includes a PM2.5 monitoring sensor 106 for monitoring air PM2.5, which can be used in conjunction with the user's running.
  • PM2.5 monitoring sensor 106 in the wristband 1 is automatically activated to turn on the monitoring.
  • the PM2.5 is turned on again. Monitoring, to distinguish the air quality when running in different states and different positions.
  • the air quality monitoring component includes a temperature and humidity sensor 113 for monitoring temperature and humidity in the air.
  • a temperature and humidity sensor 113 for monitoring temperature and humidity in the air.
  • the air quality monitoring component includes a gas pressure sensor 112 for automatically monitoring air pressure and altitude in the air, and the user can monitor the height and air pressure of the position at any time during outdoor activities, and the function is more suitable for some users with diseases. Practical, and can be combined with real-time voice reminders.
  • the air quality monitoring component includes a contaminated gas sensor 114 for monitoring the concentration of contaminated gas in the air, in combination with the PM2.5 sensor described above, monitoring the quality of the air, and, when the air in the environment When the data of PM2.5 or polluted gas reaches a certain hazard, the user can be reminded to leave with the voice. Of course, when the user is in the car, through the pollution gas sensor 114, it can be determined whether the air in the vehicle environment is up to standard and whether the window is opened.
  • the air quality monitoring component includes an ultraviolet sensor 115 for monitoring the ultraviolet index in the environment, so that the user can protect the user through the reminder of the ultraviolet sensor 115 when performing outdoor activities, of course, when the ultraviolet index When it is too high, users can also take appropriate protective measures.
  • the air quality monitoring component includes an electromagnetic radiation sensor 118 and an NCV sensor 117 for monitoring whether there is a hazard in the environment where the user is located, whether there is electromagnetic radiation, and thus, according to the data monitored by the electromagnetic radiation sensor 118, the air radiation monitoring component can be selected. To a place where electromagnetic radiation is small.
  • the air quality monitoring component includes a noise sensor 116 that monitors the noise around the environment in which the user is located, and can react differently when the environment changes drastically.
  • sensors are related to air quality monitoring, which can be summarized as measurement type sensors.
  • the air quality monitoring elements can also include more other sensors, and are not limited to the above categories.
  • the smart bracelet 1 includes a three-axis acceleration sensor 111 and a gravity sensor 109, and the three-axis acceleration sensor 111 is placed in the groove for implementing the step counting function, and can calculate the caledic path in the user's body, with which the ring-shaped structure 101 can be monitored whether it is in a stationary state or a moving state, thereby depending on the state. , perform corresponding measurements.
  • the smart bracelet 1 includes a distance sensor 108, which serves as an interface for the user experience, and can have more human-computer interaction functions between the user and the wristband 1; LED lights are also provided on the loop structure 101.
  • the control element 104 is connected so that when the human body approaches the smart bracelet 1, the control element 104 controls the LED light to be illuminated by the monitoring function of the distance sensor 108. When the wristband 1 is close to the human eye, the control element 104 controls the LED light. Darken, so as not to be too glaring to avoid harm to the human eye.
  • the wireless communication component 105 includes WIFI and Bluetooth.
  • the Bluetooth can be used to connect to the mobile phone, and the data monitored by the wristband 1 is uploaded to the server through the mobile phone.
  • the smart bracelet 1 includes a GPS component that constantly monitors the location of the user, monitors the air quality of all places where the user goes, such as PM2.5, concentration of pollutants, and altitude, and uses maps.
  • the form is represented in the APP interface and stored in the backend server. The user can retrieve the data at any time and share the data with friends around him. It can also identify the local environment status in places that he has not been to.
  • the various components in the air quality monitoring component of the smart bracelet 1, such as the various sensors described above, the PM2.5 monitoring sensor 106, etc., are small in size and thus embedded in the annulus 10 of the smart wristband 1, the smart hand The volume of the ring 1 can be made smaller.
  • the smart bracelet 1 can share data with each other through Bluetooth, and can also be set to be similar to WeChat "shake” or “sweep” "To achieve data sharing.
  • the groove on the upper portion of the endless belt structure 101 includes an intermediate groove 1011 and two side grooves 1012 respectively distributed on two sides of the intermediate groove 1011.
  • the side groove 1012 and the intermediate groove 1011 are in communication to form a groove with an upper end opening.
  • the display screen 103 is placed in the intermediate slot 1011.
  • a face shell 102 is provided, and the end of the face shell 102 abuts on the display screen 103.
  • the double-sided shell 102 is utilized.
  • the fixing of the display screen 103 can be achieved, and the face shell 102 closes the upper end opening of the side groove 1012, so that the groove and the face shell A receiving space is formed between 102.
  • the above air quality sensor and various other sensors can be placed in the accommodating space.
  • the portion can be placed in the intermediate slot 1011.
  • the specific placement depends on the actual space requirement, and is not limited to the specific placement in this embodiment.
  • control component 104 is a control circuit board, which is in the form of a strip, which is placed in the groove and extends along the length direction of the annulus structure 101, so that the entire control circuit board is deployed as much as possible. In the entire groove, and can play the role of heat dissipation, and easy to control the electrical connection between the circuit board and each sensor, without having to arrange too many wires to connect.
  • the smart bracelet 1 includes a horn 110 that is placed in the recess, which is exposed outside the endless belt structure 101 and electrically connected to the control element 104.
  • a horn 110 that is placed in the recess, which is exposed outside the endless belt structure 101 and electrically connected to the control element 104.
  • the data of the control unit 104 can use the speaker 110 to emit different warning sounds for alerting the user.
  • a plurality of LED lights are embedded in the ring belt 101 of the smart bracelet 1 , and the plurality of LED lights are electrically connected to the control element 104 , and the plurality of LED lights may be arranged in an array, which is arranged around the ring band 101 or surrounds Arranged in the outer circumference of the groove or the like, which can be used to display a plurality of functions of the smart bracelet 1 to prompt the monitoring state of the various components of the air quality monitoring element of the smart bracelet 1 by various lighting means.
  • the smart bracelet 1 in this embodiment can be designed as a smart watch as long as its display screen 103 can display time and the like.

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Abstract

环带结构和智能手环(1),环带结构(101)包括呈环状的环带本体,环带本体的上部设有用于放置电子元件及显示屏(103)的凹槽,其下部中设有用于放置电池(107)的容腔,凹槽及容腔分别呈长条状,分别沿环带本体的长度方向延伸,且相对布置。该环带结构(101)可以充分利用环带本体的内部空间,大大缩小环带结构(101)的体积,缩小智能手环(1)的体积,并且电池(107)与其它电子元件分开放置,充分利用环带本体的长条结构展开放置,可以便于散热。

Description

环带结构和智能手环 技术领域
本发明涉及手环的技术领域,尤其涉及环带结构和包括该环带结构的智能手环。
背景技术
手环是人们日常生活中经常佩戴的物品,其有多种类型,如运动型手环、保健型手环等,根据人们不同需求,手环中可以设置有多种不同结构,如加设按摩结构、磁性体等。
目前,手环的种类虽然有多种,但是其功能却大致相同的,只是装饰效果,或者,再嵌入一些结构,使其具备保健的效果,功能较为单一。
随着人们生活水平的提高,以及人们在现时生活中的更多需要及要求,且为了更好提高人们的健康指数,现有技术中,出现了多种智能手环,主要是在手环中嵌入各种功能的电子元件,使得手环的功能不再单一化,其还具有多种其他的功能,如脉搏监测等等,这样,随着智能手环中电子元件的增多,并且所需要耗损的电能也较多,电池的体积较大,导致智能手环体积过大,且散热不好。
技术问题
本发明的目的在于提供环带结构,旨在解决现有技术中的智能手环体积过大以及散热差的问题。
技术解决方案
本发明是这样实现的,环带结构,包括呈环状的环带本体,所述环带本体的上部设有用于放置电子元件及显示屏的凹槽,其下部中设有用于放置电池的容腔,所述凹槽及容腔分别呈长条状,分别沿所述环带本体的长度方向延伸,且相对布置。
本发明还提供了智能手环,包括上述的环带结构、控制元件、显示屏以及电池,所述控制元件及显示屏嵌于所述凹槽中,所述电池置于所述容腔中。
与现有技术相比,本发明提供的环带结构,其分别在环带本体的上部及下部设置凹槽及容腔,将显示屏、电子元件等放置在凹槽中,电池放置在凹腔中,并且,凹槽与容腔分别呈长条状,这样,可以充分利用环带本体的内部空间,大大缩小环带结构的体积,缩小智能手环的体积,并且电池与其它电子元件分开放置,充分利用环带本体的长条结构展开放置,可以便于散热。
有益效果
本发明提供的智能手环,其显示屏以及控制元件等电子元件放置在环带本体上部的凹槽中,电池则放置在环带本体下部的容腔中,这样,充分利用环带本体的环形结构,将电子元件与电池分开放置,可以大大缩小智能手环的体积,并且,便于智能手环内电子元件等的散热。
附图说明
图1是本发明实施例提供的职能手环的爆炸立体示意图。
本发明的实施方式
为了使本发明的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
以下结合具体实施例对本发明的实现进行详细的描述。
如图1所示,为本发明提供的较佳实施例。
本实施例提供环带结构101包括环带本体,该环带本体呈环状,其上部的外表面设有呈条状的凹槽,该凹槽可以用于放置各种电子元件,如控制元件104、显示屏103等等;环带本体的下部中设有容腔,该容腔也呈条状,其用于放置电池107,凹槽与容腔分别延伸环带本体的长度方向延伸布置,两者相对布置。
上述的环带结构101中,分别在环带本体的上部及下部设置凹槽及容腔,将显示屏103、控制元件104等电子元件放置在凹槽中,电池107放置在凹腔中,并且,凹槽与容腔分别呈长条状,这样,可以充分利用环带本体的内部空间,大大缩小环带结构101的体积,缩小智能手环1的体积,并且电池107与其它电子元件分开放置,充分利用环带本体的长条结构展开放置,可以便于散热。
本实施例中,环带本体上部的凹槽包括中间槽1011以及两分别分布在中间槽 1011两侧的侧槽1012,当然,侧槽1012与中间槽1011是连通,形成上端开口的凹槽,中间槽1011可以用于放置显示屏103等,其它电子元件则可以放置在侧槽1012中,从而充分利用凹槽的空间,且将个电子元件也充分摊开放置,便于散热且布置。
在两侧槽1012的上端设有面壳102,该面壳102覆盖在侧槽的上端,当显示屏等放置在中间槽中后,面壳的端部抵接在显示屏103上,这样,由于显示屏103两侧都布置有面壳102,利用该两面壳102,则可以实现对显示屏103的固定,并且,面壳102封闭了侧槽1012的上端开口,使得侧槽与面壳102之间形成容纳空间,其它的电子元件则可以被封闭在该容纳空间中,可以起到密封防水等作用。
在中间槽1011的两侧壁的上端,分别设有缺口1013,这样,当显示屏103放置在该中间槽1011中,其两侧可以嵌入在该两缺口1013中,便于显示屏103的安装,且可以使得显示屏103在中间槽1011中更加稳固。
本实施例中,容腔位于凹槽的正下方,且容腔的两端分别延伸凹槽的两端延伸布置,这样,可以保证容腔与凹槽之间相对对称布置,使得电子元件以及电池 107等安装在环带结构中后,整个环带结构101更加均衡,增加其佩戴的舒适感。
本实施例还提供了智能手环1,其包括上述的环带结构101、控制元件104以及显示屏103,显示屏103嵌入在环带结构101的凹槽中,并且其显示面(也就是上表面)朝上布置,这样,显示面显露在外;控制元件104以及各种电子元件放置在凹槽中,控制元件104用于对整个智能手环1的运行进行自动化控制,当然,控制元件104可以是多种形式的元件,如PCB板、单片机以及各种其它具有控制效果的元件。
智能手环1包括电池107,电池107设置在环带结构101下部的容腔中,这样,则不会与其它元件之间位置重复,且更有效分配环带结构101的内部空间,另外,避免电池107与其它元件之间设置在一起,也可以大大提高智能手环1的散热以及缩小体积。
具体地,电池107设置有多个,该多个电池107均匀相邻分布在环带结构101下部的容腔中,这样,用户在配戴该智能手环1时,也不会因为环带结构101内置电池107,感觉不适。
智能手环1还包括无线通讯元件105以及空气质量监测元件,该无线通讯元件 105及空气质量监测元件分别定性连接于控制元件104,其由控制元件104控制运行、保存数据以及数据传递等。其中,空气质量监测元件可以对智能手环1所处环境中的空气质量进行监测,并将监测数据传递至控制元件104,控制元件104可以将该监测数据传递至显示屏103中进行显示,或者利用无线通讯元件105,将监测数据传递至外部的服务器,进行运算、统计以及储存等。
上述提供的智能手环1,其功能多样化,其通过设置空气质量监测元件,可以对用户所处的环境的空气质量进行监测,并通过控制元件104,利用无线通讯元件105,传递至外的服务器等设备,或者直接显示在显示屏103上;这样,在日常生活中,用户可以对其行走路径或周围环境的空气质量进行监测,并经这些监测数据储存、计算处理等,以选择更优的行走路径,或者,可以时刻提示用户所处环境空气质量的变化状况,以使用户选择是否继续停留或离开等,其为用户的健康生活提供引导作用;特别对于一些患病用户二样,环境中的空气质量对其影响较大,利用该手环1中的空气质量监测元件则可以时刻监测到其所处环境空气质量的数据,有利于用户的健康选择,满足用户对健康生活追求的需求。
另外,智能手环1的体积较小,其直接配戴在手上,用户不需要再另外携带任何监测仪器,使用起来简单及便捷。
当监测数据通过无线通讯元件105传递至外部的服务器等后,进行数据处理、计算以及统计等,外部服务器可以将处理后的数据,更加形象化反馈至手环1中,显示的显示屏103上,如配合路径,模拟出多条空气质量路径,以便用户选择更佳的行走路径;或者,通过一些图像处理,以图像形式显示空气质量等等,具体方式还可以是多种多样,并不仅限制于本实施例所举形式。
当然,为了便于安装控制元件104、空气质量监测元件以及无线通讯元件105,该控制元件104、空气质量监测元件以及无线通讯元件105等都放置在环带结构 101的凹槽中,当然,具体位置的放置可以根据实际需要而定。
具体地,空气质量监测元件包括PM2.5监测传感器106,用于监测空气中的 PM2.5,其可以结合用户跑步时使用,当用户在跑步时,手环1中的PM2.5监测传感器106自动启动,开启监测,当跑到一定的时间时,则再次开启PM2.5的监测,区别跑步不同状态、不同位置时的空气质量。
空气质量监测元件包括温湿度传感器113,其用于监测空气中的温湿度,当用户在不同位置时,其可以监测不同位置空气中的温湿度,并根据不同的环境进行相应的提示,并且,还可以用于区分用户运动时的发热量是否过高,以提醒客户继续运动或选择休息。
空气质量监测元件包括气压传感器112,用于自动监测空气中的气压和海拔高度,用户在进行户外活动时,可以随时监测其所处位置的高度及气压,对于一些有疾病的用户,该功能更加实用,并且,可以配合实时语音提醒。
空气质量监测元件包括污染气体传感器114,其用于监测空气中,污染气体的浓度,结合上述的PM2.5传感器,监测空气的质量,并且,当环境中的空气的 PM2.5或污染气体的数据达到一定危害时,可以配合语音提醒用户离开。当然,当用户在车内时,通过该污染气体传感器114,则可以判断车内环境的空气是否达标,并提示是否开窗。
空气质量监测元件包括紫外线传感器115,其用于监测环境中的紫外线指数,这样,用户在进行户外活动时,可以通过该紫外线传感器115的提醒,对用户起到保护的作用,当然,当紫外线指数太高时,用户也可以采取相应的防护措施。
空气质量监测元件包括电磁辐射传感器118以及NCV传感器117,用于主要用于监测用户所处环境中是否存在有危害,是否存在电磁辐射,这样,根据该电磁辐射传感器118监测的数据,则可以选择到电磁辐射较小的地方。
空气质量监测元件包括噪音传感器116,其用于监测用户所处环境周围的噪音,当所处环境发生剧烈变化时,则可以做出不同的反应。
上述的各类传感器,都是涉及空气质量监测的,其可以归纳为测量类传感器,当然,空气质量监测元件还可以包括更多其他的传感器,并不仅限制于上述的种类。
智能手环1包括三轴加速度传感器111及重力传感器109,该三轴加速度传感器 111置于凹槽中,其用于实现计步功能,并且可以计算处用户体内的卡里路,利用该三轴加速度传感器111,可以监测环带结构101处于静止状态还是运动状态,从而根据状态,进行相对应测量。
智能手环1包括距离传感器108,其用于作为用户体验的接口,可以使得用户与手环1之间具有更多的人机交互功能;在环带结构101上还设有LED灯,其电性连接控制元件104,这样,当人体靠近该智能手环1时,利用距离传感器108的监测功能,控制元件104则控制LED灯亮,当手环1靠近人眼时,控制元件104则控制LED灯变暗,从而不至于过于刺眼,避免对人眼的伤害。
本实施例中,无线通讯元件105包括WIFI以及蓝牙,其中,蓝牙可以用于连接手机,并通过手机,将手环1监测的数据上传至服务器。
智能手环1包括GPS元件,其时刻监控用户所处的位置,将用户所有去到的地方的空气质量进行监测,如PM2.5,污染气体浓度,以及海拔高度等等参数,并利用地图的形式在APP界面表示出来,并保存在后台服务器中,用户可以随时调取这些数据并且可以和身边的朋友共享这些数据,可以使自己没去过的地方也标识出当地的环境状态。
智能手环1的空气质量监测元件中的各个部件,如上述的各种传感器,PM2.5监测传感器106等,其体积较小,从而内嵌在智能手环1的环带10中,智能手环1的体积可以做得比较小。
当然,为了实现两个手环1或多个手环1之间的数据功能,智能手环1通过蓝牙可以相互之间进行数据分享,也可以设置类似微信“摇一摇”或“扫一扫”来实现数据共享。
本实施例中,环带结构101上部的凹槽包括中间槽1011以及两分别分布在中间槽1011两侧的侧槽1012,当然,侧槽1012与中间槽1011是连通的形成上端开口的凹槽,显示屏103放置在中间槽1011中。
在两侧槽1012的上端设有面壳102,该面壳102的端部抵接在显示屏103上,这样,由于显示屏103两侧都布置有面壳102,利用该两面壳102,则可以实现对显示屏103的固定,并且,面壳102封闭了侧槽1012的上端开口,使得凹槽与面壳 102之间形成容纳空间。
上述的空气质量传感器以及各类其它传感器都可以放置在容纳空间中,当然,部分可以放置在中间槽1011中,具体放置可视实际空间需求而定,不限于本实施例中的具体放置。
本实施中,控制元件104为控制电路板,该控制电路板呈条板状,其放置在凹槽中,且沿着环带结构101的长度方向延伸布置,这样,尽量使得整个控制电路板展开在整个凹槽内,及可以起到散热的作用,且便于控制电路板与各传感器之间的电性连接,不需要通过布置过多电线连接。
智能手环1包括喇叭110,其置于凹槽中,其显露在环带结构101外,且电性连接于控制元件104,这样,对于智能手环1内的各个监测元件,根据其监测到的数据,控制元件104可以利用喇叭110发出不同的警示声音,用于提醒用户。
智能手环1的环带101中嵌设有多个LED灯,该多个LED灯与控制元件104电性连接,该多个LED灯可以呈阵列排布,其环绕环带101布置,或者环绕在凹槽外周布置等等,其可以用于显示智能手环1的多个功能,通过各种不同的亮灯方式,提示智能手环1的空气质量监测元件的各个部件的监测状态。
本实施例中的智能手环1,可以设计为智能手表,只要其显示屏103可以显示时间等则可。
以上所述仅为本发明的较佳实施例而已,并不用以限制本发明,凡在本发明的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本发明的保护范围之内。

Claims (21)

  1. 环带结构,其特征在于,包括呈环状的环带本体,所述环带本体的上部设有用于放置电子元件及显示屏的凹槽,其下部中设有用于放置电池的容腔,所述凹槽及容腔分别呈长条状,分别沿所述环带本体的长度方向延伸,且相对布置。
  2. 如权利要求1所述的环带结构,其特征在于,所述凹槽包括用于放置显示屏的中间槽以及两分别用于放置电子元件的侧槽,两所述侧槽分别位于所述中间槽的两侧。
  3. 如权利要求2所述的环带结构,其特征在于,所述侧槽的上端封设有面壳,所述面壳与所述侧槽之间形成用于放置电子元件的容纳空间。
  4. 如权利要求2所述的环带结构,其特征在于,所述中间槽的两侧壁的上端分别设有缺口。
  5. 如权利要求1~4任一项所述的环带结构,其特征在于,所述容腔位于所述凹槽的正下方,其两端分别朝向所述凹槽的两端延伸布置。
  6. 智能手环,其特征在于,包括权利要求1~5任一项所述的环带结构、控制元件、显示屏以及电池,所述控制元件及显示屏嵌于所述凹槽中,所述电池置于所述容腔中。
  7. 如权利要求6所述的智能手环,其特征在于,所述凹槽中设有用于监测外部环境空气质量且将监测数据传递至所述控制元件的空气质量监测元件以及由所述控制元件控制将所述监测数据传递至外部服务终端的无线通讯元件,所述空气质量监测元件及无线通讯元件置于所述凹槽中。
  8. 如权利要求7所述的智能手环,其特征在于,所述空气质量监测元件包括用于监测空气中PM2.5数据的PM2.5监测传感器。
  9. 如权利要求7所述的智能手环,其特征在于,所述空气质量监测元件包括用于监测空气气压的气压传感器。
  10. 如权利要求7所述的智能手环,其特征在于,所述空气质量监测元件包括用于监测空气温湿度的温湿度传感器。
  11. 如权利要求7所述的智能手环,其特征在于,所述空气质量监测元件包括用于监测空气中污染气体数据的污染气体传感器。
  12. 如权利要求7所述的智能手环,其特征在于,所述空气质量监测元件包括用于监测空气中紫外线数据的紫外线传感器。
  13. 如权利要求7所述的智能手环,其特征在于,所述空气质量监测元件包括用于监测空气中电磁辐射数据的电磁辐射传感器。
  14. 如权利要求7所述的智能手环,其特征在于,所述空气质量监测元件包括用于监测噪音数据的噪音传感器。
  15. 如权利要求6~14任一项所述的智能手环,其特征在于,所述智能手环包括用于监测用户是否处于运动状态的三轴加速度传感器,所述三轴加速度传感器电性连接于所述控制元件。
  16. 如权利要求6~14任一项所述的智能手环,其特征在于,所述智能手环包括用于人机交互功能的距离传感器,所述距离传感器电性连接于所述控制元件。
  17. 如权利要求6~14任一项所述的智能手环,其特征在于,所述智能手环包括GPS元件,所述GPS电性连接于控制元件,且配合所述空气质量监测元件,将用户去过地方的空气质量以地图形式展现。
  18. 如权利要求6~14任一项所述的智能手环,其特征在于,所述控制元件为呈条板状的控制电路板,其置于所述凹槽中,且沿所述环带的长度方向延伸布置。
  19. 如权利要求6~14任一项所述的智能手环,其特征在于,所述智能手环包括多个所述电池,多个所述电池均匀相邻置于所述环带本体下部的容腔中。
  20. 如权利要求6~14任一项所述的智能手环,其特征在于,所述智能手环包括喇叭,所述喇叭电线连接于所述控制元件,其置于凹槽中,且显露出所述环带外。
  21. 如权利要求6至14任一项所述的智能手环,其特征在于,所述环带中嵌设有多个LED灯,该多个LED灯呈阵列布置。
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