Air water making device with linked switch
By synchronously controlling the electrical switch and water storage switches through the linkage switch equipment, the problem of the air water machine having to turn on two switches is solved, achieving convenient, safe and reliable air water production operation.
Patent Information
- Application Number
- CN202422428995.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-08
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-10-08
AI Technical Summary
The existing air water maker needs to turn on two different switches of the control circuit and mechanical structural parts respectively, which is inconvenient to use.
Linked switching equipment is adopted, including transmission components, electrical switch components and water storage switch components. The electrical switch and water storage switch are synchronized by a switch to realize the power-on and water storage switch connection of the electrical switch.
It improves the convenience of using the air water-making device and ensures the safety and reliability of the device.
Smart Images

Figure CN223135241U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of air water production, and in particular to an air water production device with a linkage switch. Background Art
[0002] The working principle of an air water maker is to collect water molecules in the air through high-efficiency filtration, condense them into liquid water, and then produce high-quality domestic drinking water through a series of purification processes.
[0003] An air water maker is usually divided into a control circuit part and a mechanical structure part. When starting the air water maker, it is necessary to turn on the control circuit part so that the control circuit can control the operation of devices such as the condensation device and the heat dissipation device. At the same time, it is also necessary to turn on the mechanical structure part so that the water storage tank starts to collect the liquid water formed by condensation. And turning on the two parts requires two different switches for control, which is inconvenient to use. Utility Model Content
[0004] The purpose of this application is to provide an air water production device with a linkage switch to improve the convenience of using the air water production device.
[0005] An air water production device with a linkage switch provided by this application adopts the following technical solutions:
[0006] An air water production device with a linkage switch includes a housing and a controller. Inside the housing, there are an air intake chamber, a condensation chamber, and a water storage chamber connected in sequence;
[0007] It further includes a linkage switch device. The linkage switch device includes a transmission component, an electrical switch component, and a water storage switch component. The electrical switch component is arranged between the air intake chamber and the condensation chamber and is electrically connected to the controller. The water storage switch is arranged between the condensation chamber and the water storage chamber;
[0008] When the linkage switch device is in the closed state, the top of the transmission component abuts against the electrical switch component, and the bottom of the transmission component abuts against the water storage switch component;
[0009] When the linkage switch device is in the open state, the top of the transmission component opens the electrical switch component upward to energize the controller, and the bottom of the transmission component opens the water storage switch component downward to connect the condensation chamber and the water storage chamber.
[0010] By adopting the above technical solutions, this application synchronously controls the electrical switch and the water storage switch through the linkage switch device. The electrical switch can energize the controller, and the water storage switch can connect the water storage chamber and the condenser. Only one switch is required to turn on or off the entire air water production device, improving the convenience of using the air water production device.
[0011] Further, the transmission assembly includes a knob, a rotating connector, and a transmission rod. The rotating connector is connected inside the knob. The top of the rotating connector abuts against the electric switch assembly, the bottom of the rotating connector abuts against the top of the transmission rod, and the bottom of the transmission rod abuts against the water storage switch assembly.
[0012] By adopting the above technical solution, the present application synchronously controls the electric switch assembly and the water storage switch assembly through the transmission assembly, and realizes the linkage switch through a simple structural connection, improving the convenience of using the air water making device.
[0013] Further, the rotating connector is an elliptical cylinder composed of a smooth surface and a curved surface;
[0014] When the knob is in the initial state, the smooth surface of the rotating connector abuts against the electric switch assembly, and the bottom of the transmission rod abuts against the water storage switch assembly;
[0015] When the knob starts to rotate from the initial state, the knob drives the rotating connector to rotate, the rotating connector drives the transmission rod to move downward. When the rotating connector rotates to the curved surface contacting the electric switch assembly, the electric switch assembly is turned on, and the transmission rod moves downward to push the water storage switch assembly, turning on the water storage switch assembly.
[0016] By adopting the above technical solution, the present application synchronously controls the opening or closing of the electric switch assembly and the water storage switch assembly through the knob, the rotating connector with a specific shape, and the transmission rod, improving the convenience of using the air water making device.
[0017] Further, the electric switch assembly is a micro switch. When the rotating connector rotates to the curved surface contacting the micro switch, the micro switch is turned on.
[0018] By adopting the above technical solution, the present application powers on the controller through the micro switch. When the curved surface of the rotating connector contacts the micro switch, the micro switch can be triggered. The micro switch has the advantages of high sensitivity and high control precision, and can ensure the safety and reliability of the air water making device.
[0019] Further, the water storage switch assembly includes a valve cavity, a valve core, and a return spring. The valve cavity communicates with the condensation cavity and the water storage cavity. The valve core is located inside the valve cavity, and the return spring is nested on the outer surface of the bottom of the transmission rod and the valve core.
[0020] By adopting the above technical solution, the present application realizes the water storage switch through the valve cavity, the valve core, and the return spring, and can ensure the safety and reliability of the air water making device.
[0021] Further, the valve cavity includes a first cavity near the condensation cavity end and a second cavity near the water storage cavity end. The diameter of the first cavity is smaller than the diameter of the second cavity.
[0022] By adopting the above technical solution, in the present application, the valve cavity communicates with the condensation cavity and the water storage cavity. When the first cavity and the second cavity communicate, the condensation cavity and the water storage cavity communicate; when the first cavity and the second cavity are isolated, the condensation cavity and the water storage cavity are isolated. A water storage switch is realized through a simple structure, improving the convenience during the use of the air water making device.
[0023] Furthermore, the shape of the top of the valve core is a cone, and the bottom diameter of the cone is larger than the diameter of the first cavity;
[0024] When the linkage switch device is in the closed state, the top of the valve core closely adheres to the connection part of the first cavity and the second cavity, isolating the first cavity and the second cavity;
[0025] When the linkage switch device is in the open state, the transmission rod moves downward and pushes the valve core downward, communicating the first cavity and the second cavity.
[0026] By adopting the above technical solution, in the present application, the valve core blocks the valve cavity, thereby isolating the condensation cavity and the water storage cavity; the valve core is moved downward through the transmission rod, thereby communicating the condensation cavity and the water storage cavity, and further realizing the effect of the water storage switch, which can ensure the safety and reliability of the air water making device.
[0027] Furthermore, a limiting block is provided on one side of the bottom of the rotating connecting piece where it abuts against the transmission rod.
[0028] By adopting the above technical solution, in the present application, the position of the transmission rod is limited by the limiting block, ensuring the stability of the linkage switch.
[0029] In summary, the present application includes at least one of the following beneficial technical effects:
[0030] 1. In the present application, the linkage switch device synchronously controls the electrical switch and the water storage switch. The electrical switch can power on the controller, and the water storage switch can communicate the water storage cavity and the condenser. Only one switch is needed to turn on or off the entire air water making device, improving the convenience during the use of the air water making device;
[0031] 2. In the present application, the micro switch is used to power on the controller. When the curved surface of the rotating connecting piece contacts the micro switch, the micro switch can be triggered. The micro switch has the advantages of high sensitivity and high control precision, and can ensure the safety and reliability of the air water making device;
[0032] 3. In the present application, the valve core blocks the valve cavity, thereby isolating the condensation cavity and the water storage cavity; the valve core is moved downward through the transmission rod, thereby communicating the condensation cavity and the water storage cavity, and further realizing the effect of the water storage switch, which can ensure the safety and reliability of the air water making device. Description of the Drawings
[0033] Figure 1 is the overall structural schematic diagram of the embodiment of the present application;
[0034] Figure 2 is the schematic diagram of the side sectional view result of the embodiment of the present application;
[0035] Figure 3 is the structural schematic diagram of the linkage switch device of the embodiment of the present application;
[0036] Figure 4 is the structural schematic diagram of the water storage switch assembly of the embodiment of the present application;
[0037] In the figure, 1 is the outer shell; 11 is the air inlet cavity; 12 is the condensation cavity; 13 is the water storage cavity; 2 is the linkage switch device; 21 is the transmission assembly; 211 is the knob; 212 is the rotating connecting piece; 2121 is the smooth surface; 2122 is the curved surface; 213 is the transmission rod; 214 is the limiting block; 22 is the electric switch assembly; 23 is the water storage switch assembly, 231 is the valve cavity; 2311 is the first cavity; 2312 is the second cavity; 232 is the valve core; 233 is the return spring. Specific embodiments
[0038] The following will be further described in detail with reference to the attached Figure 1 - attached Figure 4 , to further illustrate the present application in detail.
[0039] An air-to-water machine is usually divided into a control circuit part and a mechanical structure part. When starting the air-to-water machine, it is necessary to start the control circuit part so that the control circuit can control the operation of devices such as the condensation device and the heat dissipation device. At the same time, it is also necessary to start the mechanical structure part so that the water storage tank starts to collect the liquid water formed by condensation. And starting the two parts requires two different switches for control, which is inconvenient to use. Therefore, the embodiment of the present application provides an air-to-water device with a linkage switch, referring to Figure 1 and Figure 2, including a housing 1 and a controller. Inside the housing 1, there are an air intake chamber 11, a condensation chamber 12, and a water storage chamber 13 connected in sequence. External air enters the condensation chamber 12 through the air intake chamber 11, condenses into liquid water in the condensation chamber 12, and the liquid water enters the water storage chamber 13 for storage, thus realizing air water production. The embodiment of the present application further includes a linkage switch device 2, which includes a transmission component 21, an electrical switch component 22, and a water storage switch component. The electrical switch component 22 is arranged between the air intake chamber 11 and the condensation chamber 12 and is electrically connected to the controller. The water storage switch is arranged between the condensation chamber 12 and the water storage chamber 13. When the linkage switch device 2 is in the closed state, the top of the transmission component 21 abuts against the electrical switch component 22, and the bottom of the transmission component 21 abuts against the water storage switch component. When the linkage switch device 2 is in the open state, the top of the transmission component 21 opens the electrical switch component 22 upward to energize the controller, and the bottom of the transmission component 21 opens the water storage switch component downward to connect the condensation chamber 12 and the water storage chamber 13.
[0040] The implementation principle of the embodiment of the present application is: the electrical switch and the water storage switch are synchronously controlled through the linkage switch device 2. The electrical switch can energize the controller, and the water storage switch can connect the water storage chamber 13 and the condenser. Only one switch is needed to turn on or off the overall air water production device, improving the convenience of using the air water production device.
[0041] As Figure 2 and Figure 3 shown, the transmission component 21 of the embodiment of the present application includes a knob 211, a rotating connecting piece 212, and a transmission rod 213. Inside the knob 211, the rotating connecting piece 212 is connected. The top of the rotating connecting piece 212 abuts against the electrical switch component 22, the bottom of the rotating connecting piece 212 abuts against the top of the transmission rod 213, and the bottom of the transmission rod 213 abuts against the water storage switch component. The rotating connecting piece 212 is an elliptical cylinder composed of a smooth surface 2121 and a curved surface 2122. When the knob 211 is in the initial state, the smooth surface 2121 of the rotating connecting piece 212 abuts against the electrical switch component 22, the bottom of the transmission rod 213 abuts against the water storage switch component, and the linkage switch device 2 is in the closed state. When the knob 211 starts to rotate from the initial state, the knob 211 drives the rotating connecting piece 212 to rotate, the rotating connecting piece 212 drives the transmission rod 213 to move downward, the rotating connecting piece 212 rotates until the curved surface 2122 contacts the electrical switch component 22 to open the electrical switch component 22, and the transmission rod 213 moves downward to push the water storage switch component to open the water storage switch component, and the linkage switch device 2 is in the open state.
[0042] In a preferred embodiment, a limiting block 214 is provided on one side of the bottom of the rotating connecting piece 212 where it abuts against the transmission rod 213. The limiting block 214 is used to limit the position of the transmission rod 213 to ensure that the transmission rod 213 can maintain a stable position when moving downward driven by the rotating connecting piece 212.
[0043] The electric switch assembly 22 in the embodiment of the present application is a microswitch. When the rotating connecting member 212 rotates to make the curved surface 2122 contact the microswitch, the microswitch is turned on. The controller is powered on through the microswitch. When the curved surface 2122 of the rotating connecting member 212 contacts the microswitch, the microswitch can be triggered. The microswitch has the advantages of high sensitivity and high control precision.
[0044] As Figure 2 、 Figure 3 and Figure 4 shown, the water storage switch assembly includes a valve cavity, a valve core and a return spring. The valve cavity communicates with the condensation cavity 12 and the water storage cavity 13. The valve core is located inside the valve cavity, and the return spring is nested on the bottom of the transmission rod 213 and the outer surface of the valve core. The valve cavity includes a first cavity near the condensation cavity 12 and a second cavity near the water storage cavity 13. The diameter of the first cavity is smaller than that of the second cavity. The shape of the top of the valve core is a cone, and the bottom diameter of the cone is larger than the diameter of the first cavity. When the linkage switch device 2 is in the closed state, the top of the valve core closely adheres to the connection between the first cavity and the second cavity, isolating the first cavity and the second cavity, so as to isolate the condensation cavity 12 and the water storage cavity 13. When the linkage switch device 2 is in the open state, the transmission rod 213 is pushed downward by the extrusion of the rotating connecting member 212 and pushes the valve core downward, so that the first cavity and the second cavity communicate, and thus the condenser and the water storage cavity 13 communicate. When the linkage switch is switched from the open state to the closed state again, the rotating connecting member 212 no longer extrudes the transmission member, and the return spring provides elastic force for the transmission rod 213 and the valve core to reset the transmission rod 213 and the valve core.
[0045] The valve cavity is blocked by the valve core, so that the condensation cavity 12 and the water storage cavity 13 are isolated. The valve core is moved downward through the transmission rod 213, so that the condensation cavity 12 and the water storage cavity 13 communicate, thereby realizing the effect of the water storage switch. The water storage cavity 13 is opened when the air water making device is turned on, and the water storage cavity 13 is closed when the air water making device is turned off, ensuring the safety and reliability of the air water making device.
[0046] The embodiments of the present specific implementation manner are all preferred embodiments of the present application, and do not limit the protection scope of the present application accordingly. The same components are denoted by the same reference numerals. Therefore, all equivalent changes made according to the structure, shape and principle of the present application should be covered within the protection scope of the present application.
Claims
1. An air-to-water device with a linkage switch, characterized in that, It includes a housing (1) and a controller. Inside the housing (1), there is an air inlet chamber (11), a condensation chamber (12), and a water storage chamber (13) connected in sequence. It further includes a linkage switch device (2). The linkage switch device (2) includes a transmission component (21), an electric switch component (22), and a water storage switch component. The electric switch component (22) is disposed between the air inlet chamber (11) and the condensation chamber (12) and is electrically connected to the controller. The water storage switch is disposed between the condensation chamber (12) and the water storage chamber (13). When the linkage switch device (2) is in the closed state, the top of the transmission component (21) abuts against the electric switch component (22), and the bottom of the transmission component (21) abuts against the water storage switch component. When the linkage switch device (2) is in the open state, the top of the transmission component (21) opens the electric switch component (22) upward to energize the controller, and the bottom of the transmission component (21) opens the water storage switch component downward to connect the condensation chamber (12) and the water storage chamber (13).
2. The air water making device with a linkage switch according to claim 1, characterized in that, The transmission component (21) includes a knob (211), a rotating connecting piece (212), and a transmission rod (213). Inside the knob (211), the rotating connecting piece (212) is connected. The top of the rotating connecting piece (212) abuts against the electric switch component (22), the bottom of the rotating connecting piece (212) abuts against the top of the transmission rod (213), and the bottom of the transmission rod (213) abuts against the water storage switch component.
3. The air water making device with a linkage switch according to claim 2, characterized in that, The rotating connecting piece (212) is an ellipsoidal cylinder composed of a smooth surface (2121) and a curved surface (2122). When the knob (211) is in the initial state, the smooth surface (2121) of the rotating connecting piece (212) abuts against the electric switch component (22), and the bottom of the transmission rod (213) abuts against the water storage switch component. When the knob (211) starts to rotate from the initial state, the knob (211) drives the rotating connecting piece (212) to rotate. The rotating connecting piece (212) drives the transmission rod (213) to move downward. When the rotating connecting piece (212) rotates to the curved surface (2122) contacting the electric switch component (22), the electric switch component (22) is opened. The transmission rod (213) moves downward to push the water storage switch component to open the water storage switch component.
4. The air water making device with a linkage switch according to claim 2, characterized in that, The electric switch component (22) is a microswitch. When the rotating connecting piece (212) rotates to the curved surface (2122) contacting the microswitch, the microswitch is opened.
5. The air water making device with a linkage switch according to claim 2, characterized in that, The water storage switch component includes a valve cavity, a valve core, and a return spring. The valve cavity connects the condensation chamber (12) and the water storage chamber (13). The valve core is located inside the valve cavity. The return spring is nested on the bottom of the transmission rod (213) and the outer surface of the valve core.
6. The air water making device with a linkage switch according to claim 5, characterized in that, The valve cavity includes a first cavity at one end close to the condensation chamber (12) and a second cavity at one end close to the water storage chamber (13). The diameter of the first cavity is smaller than the diameter of the second cavity.
7. The air water making device with a linkage switch according to claim 6, wherein, The shape of the top of the valve core is a cone, and the bottom diameter of the cone is larger than the diameter of the first cavity. When the linkage switch device (2) is in the closed state, the top of the valve core closely adheres to the connection between the first cavity and the second cavity, isolating the first cavity and the second cavity; When the linkage switch device (2) is in the open state, the transmission rod (213) moves downward and pushes the valve core downward, connecting the first cavity and the second cavity.
8. A water-making device with a linkage switch according to any one of claims 2-7, characterized in that A limiting block (214) is provided on one side of the bottom of the rotating connecting piece (212) where it abuts against the transmission rod (213).