WO2020082308A1 - 一种智能热水壶 - Google Patents

一种智能热水壶 Download PDF

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Publication number
WO2020082308A1
WO2020082308A1 PCT/CN2018/111966 CN2018111966W WO2020082308A1 WO 2020082308 A1 WO2020082308 A1 WO 2020082308A1 CN 2018111966 W CN2018111966 W CN 2018111966W WO 2020082308 A1 WO2020082308 A1 WO 2020082308A1
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WIPO (PCT)
Prior art keywords
cavity
temperature
water
heating
kettle
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PCT/CN2018/111966
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English (en)
French (fr)
Inventor
吴岳峰
陆海传
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深圳傲智天下信息科技有限公司
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Application filed by 深圳傲智天下信息科技有限公司 filed Critical 深圳傲智天下信息科技有限公司
Priority to PCT/CN2018/111966 priority Critical patent/WO2020082308A1/zh
Priority to CN201821741683.6U priority patent/CN209678212U/zh
Publication of WO2020082308A1 publication Critical patent/WO2020082308A1/zh

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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J27/00Cooking-vessels
    • A47J27/21Water-boiling vessels, e.g. kettles
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J27/00Cooking-vessels
    • A47J27/21Water-boiling vessels, e.g. kettles
    • A47J27/212Water-boiling vessels, e.g. kettles with signaling means, e.g. whistling kettles

Definitions

  • This application relates to the technical field of water household appliances, in particular to an intelligent water kettle.
  • electric kettles are essential household appliances in modern society.
  • Existing electric kettles include two categories: ordinary type and automatic power-off type.
  • ordinary electric kettles when the water is boiling, you need to manually disconnect the electric kettle from the power supply, which is inconvenient to use, which will not only cause the waste of electrical energy and burn out the electric kettle, there may even be hidden safety hazards; automatic power off type electric kettle
  • the temperature control device and the electric kettle are integrated, and the power is automatically cut off when the water temperature reaches the boiling point.
  • Automatic temperature control kettles often use temperature control. By detecting the temperature of the water and the system control mechanism, it can achieve the real-time detection of water temperature and cut off the heating circuit when the temperature reaches 100 °C.
  • the present application provides an intelligent kettle that can directly provide users with hot water at a desired temperature, and can remotely monitor the heating process of water.
  • An intelligent kettle provided by the present application includes a kettle body, a reversible lid, a handle and a charging base.
  • the upper portion of the kettle body is provided with a water outlet.
  • the intelligent kettle also includes: the kettle body is provided with an inlet A water cavity, a heating cavity and a temperature regulating cavity, an electric layer is arranged at the bottom of the pot body, and a cavity bottom plate which can move up and down is arranged at the upper part of the electric layer; the water inlet cavity is connected with the heating cavity, and the heating cavity is regulated
  • a heat insulation layer is provided between the cavities. The bottom of the heat insulation layer is detachably connected to the cavity bottom plate.
  • the heating cavity communicates with the temperature regulating cavity;
  • the heating cavity is provided with There is a heating module and a first temperature sensor, a temperature adjustment module and a second temperature sensor are provided in the temperature adjustment cavity;
  • a temperature setting key is provided on the reversible pot lid;
  • a power supply circuit and a power supply circuit are provided in the electrical layer A processor, the power supply circuit may be electrically connected to the charging base, and the processor is electrically connected to the temperature setting key, the heating module, the first temperature sensor, the temperature adjustment module, and the second temperature sensor, respectively.
  • the inner wall of the bottom of the kettle body is provided with an electric slide rail, the cavity bottom plate is snapped on the electric slide rail, and the electric slide rail is electrically connected to the processor.
  • the reversible pot lid is further provided with an on button, a display and a reminder module, the processor is electrically connected to the on button, the display and the reminder module respectively, and the temperature setting key is provided on the display on.
  • the display is used to display the water temperature in the heating cavity and the water temperature in the temperature adjustment cavity in real time, respectively.
  • a wireless communication module is also provided in the electrical layer, and the wireless communication module is electrically connected to the processor for electrical connection between the smart kettle and the mobile phone.
  • the bottom of the heat insulation layer is provided with a magnet, and the position of the heat insulation layer on the bottom plate of the cavity is made of metal.
  • a filter layer is further provided between the water inlet cavity and the heating cavity.
  • an impermeable water sealing layer is provided in the electrical layer.
  • the wall between the water inlet chamber and the temperature adjustment chamber is an arc-shaped wall.
  • a water volume sensor and a water quality sensor are respectively provided in the heating cavity and the temperature regulating cavity.
  • the pot body of the smart kettle of the present application is provided with a water inlet cavity, a heating cavity and a temperature regulating cavity, an electric layer is provided at the bottom of the pot body, and a cavity bottom plate which can move up and down is provided above the electric layer, which can be achieved
  • the water is heated to boiling by the heating module, and then the heating is stopped.
  • the electric slide rail is triggered to move, the bottom plate of the chamber moves downward, so that the boiling water enters the temperature adjustment chamber from the heating chamber, and the temperature adjustment chamber is adjusted by temperature.
  • the module cools the boiling water to the required temperature and then stops cooling, and then keeps the water insulated to provide users with hot water at the required temperature directly.
  • Figure 1 is a perspective view of an embodiment of a smart kettle
  • Figure 2 is a perspective view 1 of an embodiment of a smart kettle
  • FIG. 3 is a second perspective view of the interior of a smart kettle according to an embodiment
  • FIG. 4 is a structural block diagram of a smart kettle according to an embodiment.
  • connection and “connection” mentioned in the application, unless otherwise specified, include direct and indirect connection (connection).
  • the present application provides a smart kettle including a kettle body 1, a reversible lid 2, a handle 3, and a charging base 4.
  • the upper portion of the kettle body 1 is provided with a water outlet 11, the kettle body 1 is provided with a water inlet cavity 13, a heating cavity 14 and a temperature regulating cavity 15, the bottom of the kettle body 1 is provided with an electrical layer 12, and the upper portion of the electrical layer 12 is provided with a cavity which can move up and down ⁇ 120 ⁇ The bottom plate 120.
  • the water inlet chamber 13 communicates with the heating chamber 14.
  • a filter layer 134 is further provided between the water inlet chamber 13 and the heating chamber 14 for filtering impurities in the water.
  • a heat insulation layer 145 is provided between the heating cavity 14 and the temperature adjustment cavity 15.
  • the bottom of the heat insulation layer 145 is detachably connected to the cavity bottom plate 120. When the cavity bottom plate 120 moves downward, the heating cavity 14 communicates with the temperature adjustment cavity 15.
  • the bottom of the heat insulation layer 145 is provided with a magnet.
  • the position of the heat insulation layer on the cavity bottom plate 120 is made of metal. The bottom of the heat insulation layer 145 and the cavity bottom plate 120 can be attracted to each other.
  • the heating chamber 14 is provided with a heating module 122 and a first temperature sensor 121
  • the temperature adjustment chamber 15 is provided with a temperature adjustment module 124 and a second temperature sensor 123.
  • it can be provided on the chamber floor 120, that is, the chamber floor 120
  • a heating module 122 and a first temperature sensor 121 are provided on the upper position corresponding to the heating cavity 14, and a temperature adjusting module 124 and a second temperature sensor 123 are provided on the cavity bottom plate 120 corresponding to the temperature adjustment cavity 15.
  • the heating module 122 is used to quickly heat the water to boiling, the temperature adjustment module 124 is used to cool the water to the desired temperature and then to keep the water warm; the first temperature sensor 121 is used to detect the water temperature in the heating chamber 14 in real time, and the second temperature sensor 123 is used to detect the water temperature in the temperature adjustment cavity 15 in real time; the reversible pot lid 2 is provided with a temperature setting key (not shown).
  • the electrical board 12 is provided with a main board PCB 126.
  • the main board PCB 126 includes a power supply circuit 1261 and a processor 1260.
  • the power supply circuit 1261 can be electrically connected to the charging base 4 to obtain an external power supply.
  • the processor 1260 is connected to the temperature setting key, the heating module 122, and the first A temperature sensor 121, a temperature adjustment module 124, a second temperature sensor 123 and a water volume sensor 129 are electrically connected.
  • the inner wall of the bottom of the kettle body 1 is provided with an electric slide rail 127, and the cavity bottom plate 120 is clamped on the electric slide rail 127.
  • the electric slide rail 127 is electrically connected to the processor 1260.
  • the electric slide rail 127 can be controlled by the processor 1260 to make the cavity bottom plate 120 Moving up and down.
  • the working principle is: in the heating chamber 14, the heating module 122 heats the water to boiling and then stops heating; when the water is boiling, the water temperature (100 ° C) detected by the first temperature sensor 121 will trigger the electric
  • the slide rail 127 moves, and the cavity bottom plate 120 moves downward, so that the boiling water enters the temperature regulating cavity 15 from the heating cavity 14; in the temperature regulating cavity 15, the temperature regulating module 124 cools the boiling water to the desired temperature and then stops cooling, and then insulates the water .
  • the reversible lid 2 is provided with an open button 22, a display 21, and a reminder module (not shown), and the processor 1260 is electrically connected to the open button 22, the display 21, and the reminder module, respectively, wherein the reminder The module is used to issue a voice or / and indicator reminder when the water in the temperature adjustment chamber 15 is cooled to the required temperature to remind the user that "the water is ready", and can directly provide the user with hot water at the required temperature.
  • the temperature setting key may include a temperature setting key corresponding to a variety of different drinks.
  • pressing the "milk powder key” is the optimal temperature for brewing milk powder
  • pressing the "tea leaf” is the optimal temperature for brewing tea leaves. , Etc., to achieve heating and warming the water to the desired temperature for brewing different drinks, which is convenient, fast and accurate.
  • the display 21 is a touch screen, and the temperature setting key is set on the display 21.
  • the display 21 is not only used to display the water temperature in the heating cavity and the water temperature in the temperature regulating cavity in real time, but also to set the desired water temperature through the temperature setting key. .
  • the electrical layer 12 is also provided with a wireless communication module 125.
  • the wireless communication module 125 is used to realize the wireless connection between the smart kettle and the mobile phone, and can receive the required water temperature information sent by the mobile phone via Bluetooth or WIFI, that is, not only You can set the required water temperature through the temperature setting key, and you can also use the mobile phone to set it remotely.
  • a magnet 144 is provided at the bottom of the heat insulation layer 145, and the position of the heat insulation layer on the cavity floor 120 is made of metal.
  • a filter layer 134 is provided between the water inlet chamber 13 and the heating chamber 14 and can be used to filter impurities in the water.
  • the electrical layer 12 is provided with an anti-permeable water sealing layer 128 for protecting electrical components in the electrical layer.
  • the wall between the water inlet chamber 13 and the temperature adjustment chamber 15 is an arc-shaped wall, which facilitates the introduction of water in the water inlet chamber 13 into the heating chamber 14.
  • a water volume sensor and a water quality sensor are respectively provided in the heating cavity 14 and the temperature regulating cavity 15, specifically, the cavity bottom plate 120 is provided with a water volume sensor, a weight sensor, and a pH value and particulate matter content that can detect water
  • the water quality sensor can detect the quantity and quality of water in the heating cavity 14 and the temperature regulating cavity 15, and can display the corresponding value on the display 21.
  • the water temperature, water quantity, and water quality information in the temperature adjustment chamber 14 can be received and monitored in real time through the mobile phone, and the information "water has been burned" can also be received through the mobile phone. Furthermore, the heating process of the water can be monitored remotely; it can also be operated remotely through a mobile phone to realize regular water boiling and water boiling in advance without the presence of the water, enhancing the user experience.
  • the electrical layer 12 may also be disposed in the charging base 4, that is, the positions of the power supply circuit, wireless communication module, and various sensors are not limited to the pot body 1, but may also be placed in Inside the charging base 4.

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  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Cookers (AREA)

Abstract

一种智能热水壶,其壶体设置有进水腔、加热腔和温度调节腔,壶体底部设置有电气层,电气层上部设置有可上下移动的腔底板,可实现在加热腔内通过加热模块将水加热至沸腾后停止加热,水沸腾时电动滑轨被触发而动作,腔底板向下移动,使得沸水由加热腔进入温度调节腔,温度调节腔内通过温度调节模块将沸水降温至所需温度后停止冷却,继而对水进行保温,可为用户直接提供所需温度的热水。

Description

一种智能热水壶 技术领域
本申请涉及水家用电器技术领域,具体涉及一种智能热水壶。
背景技术
众所周知,电水壶是现代社会中必不可少的生活家电。现有的电水壶包括两大类:普通型和自动断电型。普通型电水壶当水烧沸后,需要手动将电水壶从电源上断开,使用不方便,不但会导致电能的浪费和烧坏电水壶,甚至可能会存在安全隐患;自动断电型电水壶的温控装置与电水壶都是一体化的,当水温达到沸点后自动断电。自动控温型水壶往往采用温度控制,通过检测水的温度并对系统控制的机制能良好的实现对水温度实时检测的要求,并在温度达到100℃时切断加热电路。但仍存在如下不足:水沸腾后断电停止加热,不能报警提示用户;用户获得的是沸水,不能灵活设置所需加热温度,用户不能直接获得冲泡奶粉或茶叶等饮品最合适温度的水;也无法实时显示水温水位状况;以及无法远程控制电水壶工作,当用户离开电水壶时,无法了解水加热状况,是否加热到所需温度。
发明内容
针对现有技术的缺点,本申请提供一种智能热水壶,可为用户直接提供所需温度的热水,并可实现远程监控水的加热过程。
本申请提供的一种智能热水壶,包括:壶体、可翻转的壶盖、把手和充电底座,所述壶体上部设置有出水口,该智能热水壶还包括:所述壶体设置有进水腔、加热腔和温度调节腔,所述壶体底部设置有电气层,电气层上部设置有可上下移动的腔底板;所述进水腔与加热腔相连通,所述加热腔与温度调节腔之间设置有隔热层,所述隔热层底部与所述腔底板可拆卸连接,所述腔底板向下移动时,所述加热腔与温度调节腔相连通;所述加热腔内设置有加热模块和第一温度传感器,所述温度调节腔内设置有温度调节模块和第二温度传感器;所述可翻转的壶盖上设置有温度设置键;所述电气层内设置有供电电路和处理器,所述供电电路可与充电底座电连接,所述处理器分别与温度设置键、加热模块、第一温度传感器、温度调节模块和第二温度传感器电连接。
在一些实施例,所述壶体底部内壁设置有电动滑轨,所述腔底板卡接于电动滑轨之上,所述电动滑轨与处理器电连接。
在一些实施例,所述可翻转的壶盖上还设置有开启按钮、显示器和提醒模 块,所述处理器分别与开启按钮、显示器和提醒模块电连接,所述温度设置键设置于所述显示器上。
在一些实施例,所述显示器用于分别实时显示加热腔内水温和温度调节腔内水温。
在一些实施例,所述电气层内还设置有无线通讯模块,所述无线通讯模块与处理器电连接,用于实现智能水壶与手机电连接。
在一些实施例,所述隔热层底部设置有磁铁,所述腔底板上对应隔热层的位置为金属材质。
在一些实施例,所述进水腔与加热腔之间还设置有过滤层。
在一些实施例,所述电气层内设置有防渗透水密封层。
在一些实施例,所述进水腔与温度调节腔之间的壁体为弧形壁。
在一些实施例,所述加热腔内与温度调节腔内还设置分别有水量传感器和水质传感器。
依据上述实施例,由于本申请的智能热水壶的壶体设置有进水腔、加热腔和温度调节腔,壶体底部设置有电气层,电气层上部设置有可上下移动的腔底板,可实现在加热腔内通过加热模块将水加热至沸腾后停止加热,水沸腾时电动滑轨被触发而动作,腔底板向下移动,使得沸水由加热腔进入温度调节腔,温度调节腔内通过温度调节模块将沸水降温至所需温度后停止冷却,继而对水进行保温,可为用户直接提供所需温度的热水。
附图说明
图1为一种实施例的智能热水壶的立体图;
图2为一种实施例的智能热水壶内部透视图一;
图3为一种实施例的智能热水壶内部透视图二;
图4为一种实施例的智能热水壶的结构框图。
具体实施方式
下面通过具体实施方式结合附图对本申请作进一步详细说明。其中不同实施方式中类似元件采用了相关联的类似的元件标号。在以下的实施方式中,很多细节描述是为了使得本申请能被更好的理解。然而,本领域技术人员可以毫不费力的认识到,其中部分特征在不同情况下是可以省略的,或者可以由其他元件、材料、方法所替代。在某些情况下,本申请相关的一些操作并没有在说明书中显示或者描述,这是为了避免本申请的核心部分被过多的描述所淹没,而对于本领域技术人员而言,详细描述这些相关操作并不是必要的,他们根据 说明书中的描述以及本领域的一般技术知识即可完整了解相关操作。
本文中为部件所编序号本身,例如“第一”、“第二”等,仅用于区分所描述的对象,不具有任何顺序或技术含义。而申请所说“连接”、“联接”,如无特别说明,均包括直接和间接连接(联接)。
参考图1-4,本申请提供一种智能热水壶,包括:壶体1、可翻转的壶盖2、把手3和充电底座4。
壶体1上部设置有出水口11,壶体1设置有进水腔13、加热腔14和温度调节腔15,壶体1底部设置有电气层12,电气层12上部设置有可上下移动的腔底板120。
进水腔13与加热腔14相连通。在一些实施例,进水腔13与加热腔14之间还设置有过滤层134,用于过滤水中的杂质。
加热腔14与温度调节腔15之间设置有隔热层145,隔热层145底部与腔底板120可拆卸连接,腔底板120向下移动时,加热腔14与温度调节腔15相连通。在一些实施例,隔热层145底部设置有磁铁,腔底板120上对应隔热层的位置为金属材质,隔热层145底部与腔底板120可相互吸合。
加热腔14内设置有加热模块122和第一温度传感器121,温度调节腔15内设置有温度调节模块124和第二温度传感器123,具体地,可设置于腔底板120上,即:腔底板120上对应加热腔14的位置设置有加热模块122和第一温度传感器121,腔底板120上对应温度调节腔15的位置设置有温度调节模块124和第二温度传感器123。加热模块122用于快速将水加热至沸腾,温度调节模块124用于将水先冷却至所需温度后对水进行保温;第一温度传感器121用于实时检测加热腔14内水温,第二温度传感器123用于实时检测温度调节腔15内水温;该可翻转的壶盖2上设置有温度设置键(未示出)。
电气层12内设置有主板PCB126,主板PCB126包括供电电路1261和处理器1260,供电电路1261可与充电底座4电连接,获得外部电源供应;处理器1260分别与温度设置键、加热模块122、第一温度传感器121、温度调节模块124、第二温度传感器123和水量传感器129电连接。壶体1底部内壁设置有电动滑轨127,腔底板120卡接于电动滑轨127之上,电动滑轨127与处理器1260电连接,电动滑轨127可经处理器1260控制使得腔底板120上下移动。
对于本申请的智能热水壶,其工作原理为:在加热腔14内,加热模块122将水加热至沸腾后停止加热;水沸腾时,第一温度传感器121检测的水温(100℃) 将触发电动滑轨127动作,腔底板120向下移动,使得沸水由加热腔14进入温度调节腔15;温度调节腔15内,温度调节模块124将沸水降温至所需温度后停止冷却,继而对水进行保温。需要指出的是,本申请所涉及的方法均可利用现有技术实现,也非本申请需要保护的内容,在此不赘述。
在一些实施例,该可翻转的壶盖2上设置有开启按钮22、显示器21和提醒模块(未示出),处理器1260分别与开启按钮22、显示器21和提醒模块电连接,其中,提醒模块用于在温度调节腔15内的水被降温至所需温度时发出语音或/和指示灯提醒,提醒用户“水烧好了”,可为用户直接提供所需温度的热水。
在一些实施例,温度设置键可包括对应多种不同饮品的温度设置键,例如,按下“奶粉键”就是奶粉冲泡的最佳温度,按下“茶叶”就是冲泡茶叶的最佳温度,等等,实现将,将水加热并保温至所需的冲泡不同饮品的温度,方便快捷准确。
在一些实施例,显示器21为触摸屏,温度设置键设置于显示器21上,该显示器21不仅用于分别实时显示加热腔内水温和温度调节腔内水温,还可通过温度设置键设置所需的水温。
在一些实施例,电气层12内还设置有无线通讯模块125,无线通讯模块125用于实现智能热水壶与手机的无线连接,可接收手机通过蓝牙或WIFI发送的所需水温信息,即不仅可通过温度设置键设置所需水温,还可利用手机远程设置。
在一些实施例,隔热层145底部设置有磁铁144,所述腔底板120上对应隔热层的位置为金属材质。
在一些实施例,进水腔13与加热腔14之间设置有过滤层134,可用于过滤水中的杂质。
在一些实施例,电气层12内设置有防渗透水密封层128,用于保护电气层内电气元件。
如图2和图3所示,在一些实施例,进水腔13与温度调节腔15之间的壁体为弧形壁,便于将进水腔13内的水导入加热腔14。
在一些实施例,加热腔14内与温度调节腔15内还设置分别有水量传感器和水质传感器,具体地,腔底板120上设置有作为水量传感器额重量传感器和可检测水的PH值、颗粒物含量等的水质传感器,从而检测出加热腔14和温度调节腔15内的水量与水质,并可将相应的数值显示于显示器21上。
在一些实施例,由于智能热水壶与手机实现了无线连接,可通过手机接收 并实时监控温度调节腔14内的水温、水量和水质信息,还可通过手机接收“水烧好了”的信息,进而实现远程监控水的加热过程;还可通过手机远程操作,实现定时烧水和不在场的情况提前烧水,增强用户的体验。
需要指出的是,在另一些实施例,电气层12还可设置于充电底座4内,即供电电路、无线通讯模块和各类传感器的位置不仅仅只限定设置于壶体1,也可以放到充电底座4内。
以上应用了具体个例对本申请进行阐述,只是用于帮助理解本申请,并不用以限制本申请。对于本申请所属技术领域的技术人员,依据本申请的思想,还可以做出若干简单推演、变形或替换。

Claims (10)

  1. 一种智能热水壶,包括:壶体、可翻转的壶盖、把手和充电底座,所述壶体上部设置有出水口,其特征在于,还包括:所述壶体设置有进水腔、加热腔和温度调节腔,所述壶体底部设置有电气层,电气层上部设置有可上下移动的腔底板;所述进水腔与加热腔相连通,所述加热腔与温度调节腔之间设置有隔热层,所述隔热层底部与所述腔底板可拆卸连接,所述腔底板向下移动时,所述加热腔与温度调节腔相连通;所述加热腔内设置有加热模块和第一温度传感器,所述温度调节腔内设置有温度调节模块和第二温度传感器;所述可翻转的壶盖上设置有温度设置键;所述电气层内设置有供电电路和处理器,所述供电电路可与充电底座电连接,所述处理器分别与温度设置键、加热模块、第一温度传感器、温度调节模块和第二温度传感器电连接。
  2. 如权利要求1所述的智能热水壶,其特征在于,所述壶体底部内壁设置有电动滑轨,所述腔底板卡接于电动滑轨之上,所述电动滑轨与处理器电连接。
  3. 如权利要求1所述的智能热水壶,其特征在于,所述可翻转的壶盖上还设置有开启按钮、显示器和提醒模块,所述处理器分别与开启按钮、显示器和提醒模块电连接,所述温度设置键设置于所述显示器上。
  4. 如权利要求4所述的智能热水壶,其特征在于,所述显示器用于分别实时显示加热腔内水温和温度调节腔内水温。
  5. 如权利要求1所述的智能热水壶,其特征在于,所述电气层内还设置有无线通讯模块,所述无线通讯模块与处理器电连接,用于实现智能水壶与手机电连接。
  6. 如权利要求1所述的智能热水壶,其特征在于,所述隔热层底部设置有磁铁,所述腔底板上对应隔热层的位置为金属材质。
  7. 如权利要求1所述的智能热水壶,其特征在于,所述进水腔与加热腔之间还设置有过滤层。
  8. 如权利要求1所述的智能热水壶,其特征在于,所述电气层内设置有防渗透水密封层。
  9. 如权利要求1所述的智能热水壶,其特征在于,所述进水腔与温度调节腔之间的壁体为弧形壁。
  10. 如权利要求1所述的智能热水壶,其特征在于,所述加热腔内与温度调节腔内还设置分别有水量传感器和水质传感器。
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CN111493654B (zh) * 2020-04-20 2021-04-20 孙亚 一种具有保温和冷却功能的可调温烧水壶
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