CN217743897U - Intelligent vehicle-mounted water cup - Google Patents

Intelligent vehicle-mounted water cup Download PDF

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Publication number
CN217743897U
CN217743897U CN202221535457.9U CN202221535457U CN217743897U CN 217743897 U CN217743897 U CN 217743897U CN 202221535457 U CN202221535457 U CN 202221535457U CN 217743897 U CN217743897 U CN 217743897U
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module
probe
tds
cup
vehicle
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CN202221535457.9U
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郑柳科
张洁
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Small Monster Shenzhen Technology Co ltd
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Small Monster Shenzhen Technology Co ltd
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Abstract

The utility model provides an on-vehicle drinking cup of intelligence, it includes the bowl cover subassembly, cup body assembly and intelligent module, the bowl cover subassembly includes that detachable assembles in cup body assembly's assembly portion, the cover of elastic connection assembly portion, cup body assembly includes the shell, five metals inner bag and bottom of cup, the intelligence module includes first mainboard and the rechargeable battery who is connected with first mainboard electricity respectively, a display module, water intake detection module, the intelligence module still includes the second mainboard and the heating module who is connected with second mainboard electricity and has the TDS detection module of temperature-sensing function. The utility model discloses intelligent vehicle-mounted drinking cup has realized intelligent functions such as water intake detection, water quality testing, temperature detection through water intake detection module, TDS probe module that has the temperature-sensing function to more healthy drinking water experience is provided for the user.

Description

Intelligent vehicle-mounted water cup
Technical Field
The utility model relates to an auto-parts field, concretely relates to on-vehicle drinking cup of intelligence.
Background
With the development of science and technology and the popularization and use of automobiles, people hope to boil water, make tea, make coffee, make milk and the like under the condition of going out, so that the time and the expense are saved, and people can really enjoy healthy automobile life. In the traditional technology, the vehicle-mounted water cup comprises a cup body and a power base, wherein the power base is inserted into a vehicle through a cigarette lighter plug on a power line to heat water in the cup body, and the vehicle-mounted water cup is single in function and poor in safety.
People are busy working every day, particularly car drivers are easy to forget to drink water or drink water insufficiently, so that the body is sub-healthy, and therefore the intelligent vehicle-mounted water cup capable of reminding users of drinking water is needed to be provided, and the body of people is healthier.
On the other hand, people pay more and more attention to the quality of water, and can evaluate the purity of water by measuring the TDS value of water, wherein TDS (Total Dissolved Solids) refers to the Total amount of Solids Dissolved in water, and the lower the TDS is, the closer the water to be measured is to the pure water. Present TDS sensing probe generally is used for fields such as civilian purifier, uses on the drinking cup very little to common TDS sensing probe can only detect the TDS value, and the function is single.
Therefore, there is a need to provide a new intelligent vehicle-mounted water cup to solve the above technical problems.
SUMMERY OF THE UTILITY MODEL
Not enough to prior art exists, the utility model aims to provide an intelligence drinking cup subassembly with drinking water volume detects, temperature detects, TDS detects the function to solve the problem among the correlation technique.
In order to achieve the above object, the utility model provides an on-vehicle drinking cup of intelligence, it includes bowl cover subassembly, cup body assembly and intelligent module, the bowl cover subassembly include detachable assemble in cup body assembly's assembly portion, elastic connection the cap of assembly portion, cup body assembly includes shell, five metals inner bag and bottom of cup, the intelligent module include first mainboard and respectively with rechargeable battery, display module, the water intake detection module that first mainboard electricity is connected, the intelligent module still include the second mainboard and with the heating module that the second mainboard electricity is connected and TDS detection module that has the temperature-sensing function.
Preferably, the TDS detection module includes integrated in the TDS chip of second mainboard and assemble in the TDS probe module of five metals inner bag.
Preferably, the TDS probe module includes a first probe having a receiving slot, a second probe surrounding the first probe, a spacer for spacing the first probe and the second probe, and a kit for enclosing the second probe.
Preferably, the TDS probe module further comprises an NTC thermistor contained in the containing groove, a wire connected with the NTC thermistor, and an NTC connector connected with the second main board.
Preferably, the TDS probe module further comprises a heat-conducting silica gel filled in the NTC thermistor and the gap of the containing groove.
Preferably, the TDS probe module further comprises a wire and a TDS connector connecting the first probe and the second probe, wherein the TDS connector is electrically connected to the second motherboard.
Preferably, the five metals inner bag has accepts chamber, diapire, certainly the fixed part of the center downwardly extending of diapire, the fixed part include with accept the communicating fixed slot of chamber.
Preferably, the first probe, the second probe part expose in accept the chamber, the external member accept in the fixed slot, TDS probe module is still located including the cover the sealing washer of external member, the sealing washer is located the external member between the fixed part.
Preferably, the first main board, the water intake detection module, the display module and the rechargeable battery are assembled on the cover, and the intelligent module further comprises a vibration module electrically connected with the first main board.
Preferably, the water intake detection module comprises a water intake detection small plate, shading silica gel, a PC lens and a connector connected with the first main board, and the water intake detection small plate is integrated with a laser detection chip.
The utility model provides an on-vehicle drinking cup of intelligence, its cooperation through bowl cover subassembly, cup subassembly and intelligent module, intelligent module includes water intake detection module, TDS probe module, has realized intelligent functions such as water intake detection, water quality testing, intelligence warning to more healthy drinking water experience is provided for the user.
Drawings
FIG. 1 is a schematic view of a combination of an intelligent vehicle-mounted water cup of the present invention;
FIG. 2 is a schematic view of a part of the assembly of the intelligent vehicle-mounted water cup of the present invention;
FIG. 3 is an exploded view of the intelligent vehicle-mounted water cup of the present invention;
fig. 4 is an exploded schematic view of a TDS probe module of the present invention;
fig. 5 is a schematic cross-sectional view of the TDS probe module of the present invention.
FIG. 6 isbase:Sub>A schematic partial cross-sectional view taken along A-A of FIG. 1;
fig. 7 is another partial cross-sectional view taken along linebase:Sub>A-base:Sub>A of fig. 1.
Detailed Description
The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application, and it is obvious that the described embodiments are only a part of the embodiments of the present application, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present application.
As shown in fig. 1 to 3, the present embodiment provides an intelligent vehicle-mounted water cup 100, which includes a cup lid assembly 10, a cup body assembly 20, and an intelligent module. The lid assembly 10 includes a mounting portion 11 detachably assembled to the bowl assembly 20 and a lid portion 12 elastically coupled to the mounting portion 11. The cup body assembly 20 comprises a shell 21, a hardware inner container 22, a cup bottom 23, a waterproof pad 24, a silica gel cover 25 and a cup opening silica gel 26.
The intelligent module comprises a first main board 311 assembled on the cover 12, and a battery 312, a display module 313, a vibration module 314, a water intake detection module 315 and a first pin header module 316 which are electrically connected with the first main board 311.
In the present embodiment, the ESP32S-8M control module (not shown) is integrated into the first main board 311, and includes a WIFI module and a bluetooth module for transmitting and receiving signals, but is not limited thereto.
In the present embodiment, the battery 312 is a lithium battery. The display module 313 is assembled on the top of the cover 12, and includes a glass 3131 and a display assembly 3132, where the display assembly 3132 is a TP/LCD full-touch assembly, that is, includes a touch screen and a display screen. The vibration module 314 is a motor, but is not limited thereto. The user can control the functions of the intelligent vehicle-mounted water cup 100 such as opening, closing and heat preservation through the display module 313, and the display module 313 can also display information such as battery capacity, water temperature, vibration reminding, water intake, time and alarm clock.
The intelligent module 30 further includes a second main board 321 assembled on the cup body assembly 20, a heating module 322 electrically connected to the second main board 321, a TDS detection module having a temperature sensing function, a third pin header module 325, and a power socket 326.
The TDS detection module includes a TDS chip (not shown) integrated on the second main board 321 and a TDS probe module 324. In this embodiment, the model of the TDS chip is BAT2U, but is not limited thereto.
The second main board 321 also integrates an OB38R08T1 control unit, a hosb 238 fast-charging trap chip, and the like, but is not limited thereto.
The water intake amount detection module 315 includes a water intake amount detection small plate 3151, a light-shielding silicone 3152, a PC lens 3153, and a connector 3154 electrically connected to the first main board 311.
As shown in fig. 4 and 5, TDS probe module 324 includes a first probe 3241, a second probe 3242 surrounding first probe 3241, a spacer 3243 separating first probe 3241 and second probe 3242, and a sleeve 3244 surrounding second probe 3242.
The first probe 3241 and the second probe 3242 are made of steel. The first probe 3241 has a barrel shape and includes a receiving groove 3240. The second probe 3242 is tubular. Spacer 3243, sleeve 3244 is made of, but not limited to, duPont PA12 material.
The TDS probe module 324 further includes an NTC thermistor 3245 received in the receiving groove 3240, a wire electrically connected to the NTC thermistor 3245, and an NTC connector 3248. The NTC connector 3248 is connected to the second main board 321. The NTC thermistor 3248 may transmit the sensed temperature information to the second main board 321.
TDS probe module 324 also includes a sealing ring 3246 that is sleeved on sleeve 3244.
The TDS probe module 324 further includes a heat conductive silica gel 3247 filled in the gaps of the NTC thermistor 3245 and the accommodating groove 3240. The NTC thermistor 3245 and the first probe 3241 are fixed by a thermally conductive silica gel 3247. The first probe 3241 has good thermal conductivity so that the NTC thermistor 3245 can sense the temperature of the liquid.
TDS probe module 324 also includes wires electrically connecting first probe 3241, second probe 3242, and TDS connector 3249. The TDS connector 3249 is connected to the second main board 321, and the TDS values detected by the first and second probes 3241 and 3242 are transmitted to the second main board 321.
The second main board 321 transmits the temperature information and the TDS value to the first main board 311, and then to the display module 313.
As shown in fig. 3, 6 and 7, the cover 12 includes a first base wall 121 and a first side wall 122 that together form the first receiving cavity 120. The cover 12 further includes a first connecting portion 123 extending outwardly from the outer surface of the first sidewall 122, a first holding portion 124 extending downwardly from the first base wall 121, and a first fastening portion 125 extending downwardly from the lower end of the first sidewall 122. The first latching part 125 includes a latching groove 1250. The first connection portion 123 includes a first through hole 1230 therethrough.
The water intake amount detection module 315 is fixed to the first holding portion 124. The first holding portion 124 further includes a through hole 1240 communicating with the first receiving cavity 120. The PC lens 3153 covers the through hole 1240. The water intake amount detecting small plate 3151 incorporates a laser detection chip (not shown). In the present embodiment, the model of the laser detection chip is TMF8801. The first main board 311 is further integrated with a three-axis IC chip, which is model No. SC7a20, but is not limited thereto. The triaxial IC chip can judge whether liquid is static, and when static, the laser detection chip emits laser to the liquid, and water yield data is calculated through the reflection distance. The water intake detection module 315 transmits the water intake data to the first main board 311, the first main board 311 transmits the water intake data to the display module 313, the display module 313 displays the water intake information, the first main board 311 controls the vibration module 313 to vibrate according to the water intake data, and the display module 313 displays reminding information, so that the function of reminding a user of drinking water is realized.
The housing 21 includes a base plate 211 and a side plate 212 that together form a housing space 210. Base 211 includes an outlet 2110 that communicates with receiving space 210 and a pin header receiving slot 2111. The material of the housing 21 may be metal, plastic, etc. The outer shell 21 and the hardware inner container 22 can be fixed by welding, an integral molding process or glue, but not limited thereto.
The hardware inner container 22 is partially accommodated in the accommodating space 210, and the waterproof pad 24 is located between the hardware inner container 22 and the substrate 211 of the casing 21 and plays a role of sealing. Hardware inner container 22 includes a cavity 220, and cavity 220 is used for holding liquid or other liquid. The hardware inner container 22 is made of a metal material, and in the present embodiment, the hardware inner container 22 includes two layers of metal welded together, but is not limited thereto.
Hardware inner container 22 includes a bottom wall 223, a fixing portion 224 extending downward from the center of bottom wall 223. The fixing portion 224 includes a fixing groove 2241 communicating with the receiving chamber 220.
The first and second probes 3241, 3242 are partially exposed to the housing cavity 220 and are contactable with the liquid to detect the TDS value of the water. The kit 3244 is accommodated in the fixing groove 3241. The sealing ring 3245 is located between the sleeve 3244 and the fixing portion 224 to provide sealing.
The hardware inner container 22 includes a main body 221 accommodated in the accommodating space 210 and a cup opening portion 222 extending from the outlet 2110 to the outside of the housing 21. The cup mouth portion 222 is provided with an external thread rotatably fixed with the fitting portion 11. The diameter of the body 221 is larger than the diameter of the cup mouth 222.
The silicone cover 25 is disposed on the cup opening 222 and abuts against the base 211 of the housing 21, and the silicone cover 25 includes a plurality of receiving slots 251 communicated with the pin header receiving slots 2111.
The rim of the cup silica gel 26 is disposed on the top end of the rim of the cup portion 222, and when the assembly portion 11 is assembled to the cup body assembly 20, the rim of the cup silica gel 26 is located between the rim of the cup portion 222 and the first base wall 111 of the assembly portion 11, and plays a role in sealing.
The heating module 322 includes a heating sheet 3221 abutting against the bottom wall 223 of the hardware inner container 22, and heat insulation cotton 3222 located on one side of the heating sheet 3221 far away from the hardware inner container 22. The second main board 321 controls the heating sheets 3221 to heat the hardware inner container 22, so that the liquid in the hardware inner container 22 is heated.
The assembling portion 11 includes a second base wall 111, a second side wall 112 having an internal thread, a pressing member 113 assembled to the second side wall 112, a second connecting portion 114 extending outward from an outer surface of the second side wall 112, a second holding portion 115 extending upward from the second base wall 111, a drinking nozzle 116 assembled to the second holding portion 115, a magnet 117 fixed to the second holding portion 115 and disposed adjacent to the drinking nozzle 116, an air vent 118 penetrating through the second base wall 111, an air permeable membrane 1191 fixed to the air vent 118, and a pressure relief valve cover 1192. The second connection portion 114 includes a second through hole 1140 therethrough.
The pressing assembly 113 includes a key 1131, a key holder 1132 having a through hole, and a spring 1133. The spring 1133 passes through the through hole of the key holder 1132 and abuts against the key 1131 and the second sidewall 112. The key holder 1132 further includes a second catching portion 1134. The second locking portion 1134 is locked with the first locking portion 125.
The lid assembly 10 further includes a rotating shaft 13 and a spring 14 passing through the first through hole 1230 and the second through hole 1140.
In this embodiment, the small water intake detecting plate 3151 further integrates a hall switch circuit, when the cover 12 is closed, the magnet 117 approaches the hall switch circuit, the hall switch circuit outputs a high level, and the hall switch circuit is turned on; when the cover portion 11 is opened, the magnet 117 is away from the hall switch circuit, the hall switch circuit outputs a low level, and the hall switch circuit is closed. By means of the design, the safety of the intelligent vehicle-mounted water cup 100 can be improved. In the present embodiment, the hall switch circuit is of a model number BL _ MT8632 or BL-HE-DH627S, but is not limited thereto.
The first pin row module 316 is assembled to the cover 12, and includes a first pin row 3161 connected to the first main board 311, a first pin row holder 3162 fixed to the first base wall 121, and a first elastic pin row 3163 penetrating through the first pin row holder 3162. The first row of pins 3161 and the first elastic row of pins 3163 are in contact with each other to achieve electrical connection.
The smart module further comprises a second pin header module 317 assembled to the assembly portion 11. The second pin header module 317 includes a second pin header bracket 3171 fixed to the second sidewall 112 and a second elastic pin header 3172 penetrating the second sidewall 112. Springs are arranged in the first elastic pin header 3163 and the second elastic pin header 3172.
When a user presses the key 1131, the first buckling part 125 and the second buckling part 1134 are buckled, the cover 12 can rotate along the rotating shaft 13, and the smart car cup 100 is opened; when the user closes the cover 12 and the mounting portion 11, the holding portion 124 is inserted into the drinking nozzle 115, and the first elastic pin 3162 abuts against the second elastic pin 3171, thereby achieving electrical connection.
The third pin header module 325 is assembled to the housing 21, and includes a third pin header support 3251 and a third pin header 3252 retained in the pin header accommodating groove 2111. The third row of pins 3252 is electrically connected to the second main board 321 through a connection wire. When the assembly portion 11 is assembled to the cup assembly 20, the second elastic pin header 3172 may pass through the receiving groove 251 to abut against the third pin header 3253, thereby achieving electrical connection.
In this embodiment, the number of the first row of pins 3161 is 3, wherein the first row of pins 3163, the second row of pins 3172, and the third row of pins 3253 are respectively used for transmitting power signals, data signals, and ground, and correspondingly, the number of the first row of pins 3163, the second row of pins 3172, and the third row of pins 3253 is 3, but not limited thereto.
The cup bottom 23 is accommodated in the accommodating space 210 and assembled in the hardware inner container 22, and includes a bottom wall 231, a side wall 232, a cup bottom silicone ring 233, and a cup bottom silicone 234.
The bottom wall 231 is used to support the second main plate 321. The bottom wall 231 comprises a line groove 2311 which is recessed towards the hardware inner container and a side hole 2312 which is communicated with the line groove 2311, and an interface of the power supply female seat 326 is accommodated in the side hole 2312. The sidewall 232 includes a notch 2321 that communicates with the wireway 2311. When the power cord is connected, the male plug of the power cord can be accommodated in the wire groove 2311 and passes through the side hole 2312 to be butted with the power female seat 326, and the power cord extends to the outside from the notch 2321. In the present embodiment, the power female socket 326 is a TYPE-C waterproof female socket, but is not limited thereto.
The inner surface of the side wall 232 is provided with a plurality of fastening grooves 2322, the outer surface of the hardware inner container 22 is provided with a plurality of bumps 225, and the protrusions 225 are fastened and fixed with the fastening grooves 2322.
The outer surface of the side wall 232 is sleeved with a bottom silica gel ring 233. The outer surface of the side wall 232 is provided with a containing groove 2323, the bottom silica gel ring 233 is contained in the containing groove 2323, and the bottom silica gel ring 233 is located between the side wall 232 and the housing 21 to perform a sealing function.
The silicone 234 is fixed to the sidewall 232 and the bottom of the housing 21.
To sum up, the utility model provides an on-vehicle drinking cup of intelligence, it has realized intelligent functions such as water intake detection, water quality testing, temperature detection through water intake detection module, the TDS probe module that has the temperature-sensing function to more healthy drinking water experience is provided for the user.
Finally, it should be noted that: the above embodiments are only used to illustrate the technical solutions of the present application, and not to limit the same; although the present application has been described in detail with reference to the foregoing embodiments, it will be understood by those of ordinary skill in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; such modifications and substitutions do not necessarily depart from the spirit and scope of the corresponding technical solutions in the embodiments of the present application.

Claims (10)

1. The utility model provides an on-vehicle drinking cup of intelligence, its characterized in that, it includes bowl cover subassembly, cup body assembly and intelligent module, the bowl cover subassembly include detachable assemble in cup body assembly's assembly portion, elastic connection the cover of assembly portion, cup body assembly includes shell, five metals inner bag and bottom of cup, the intelligent module include first mainboard and respectively with rechargeable battery, display module, the water intake detection module that first mainboard electricity is connected, the intelligent module still include the second mainboard and with the heating module that the second mainboard electricity is connected and TDS detection module that has the temperature-sensing function.
2. The vehicle-mounted drinking cup of intelligence of claim 1, characterized in that, TDS detection module is including integrated in the TDS chip of second mainboard and assemble in the TDS probe module of five metals inner bag.
3. The on-board drinking cup of claim 2, wherein the TDS probe module comprises a first probe having a receiving slot, a second probe surrounding the first probe, a spacer for spacing the first probe and the second probe, and a kit surrounding the second probe.
4. The vehicle-mounted drinking cup of intelligence of claim 3, characterized in that, the TDS probe module further includes an NTC thermistor received in the receiving slot, a wire connecting the NTC thermistor and an NTC connector, the NTC connector is connected with the second main board.
5. The on-vehicle drinking cup of intelligence of claim 4, characterized in that, the TDS probe module is still including filling in NTC thermistor, the heat conduction silica gel of the gap of accepting the groove.
6. The vehicle-mounted drinking cup of intelligence of claim 5, characterized in that, TDS probe module still includes the wire and the TDS connector of connecting first probe, second probe, the TDS connector electricity is connected the second mainboard.
7. The vehicle-mounted intelligent water cup of claim 6, wherein the hardware inner container is provided with a containing cavity, a bottom wall and a fixing part extending downwards from the center of the bottom wall, and the fixing part comprises a fixing groove communicated with the containing cavity.
8. The vehicle-mounted drinking cup of intelligence of claim 7, wherein the first probe, the second probe are partially exposed to the accommodating cavity, the kit is accommodated in the fixing groove, the TDS probe module further comprises a sealing ring sleeved on the kit, and the sealing ring is located between the kit and the fixing portion.
9. The intelligent vehicle-mounted water cup according to claim 8, wherein the first main board, the water intake detection module, the display module and the rechargeable battery are assembled on the cover, and the intelligent module further comprises a vibration module electrically connected with the first main board.
10. The intelligent vehicle-mounted water cup according to claim 9, wherein the water intake detection module comprises a water intake detection small plate, shading silica gel, a PC lens and a connector connected with the first main board, and the water intake detection small plate is integrated with a laser detection chip.
CN202221535457.9U 2022-06-17 2022-06-17 Intelligent vehicle-mounted water cup Active CN217743897U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221535457.9U CN217743897U (en) 2022-06-17 2022-06-17 Intelligent vehicle-mounted water cup

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221535457.9U CN217743897U (en) 2022-06-17 2022-06-17 Intelligent vehicle-mounted water cup

Publications (1)

Publication Number Publication Date
CN217743897U true CN217743897U (en) 2022-11-08

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221535457.9U Active CN217743897U (en) 2022-06-17 2022-06-17 Intelligent vehicle-mounted water cup

Country Status (1)

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CN (1) CN217743897U (en)

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