CN210390691U - Vehicle-mounted purifier - Google Patents

Vehicle-mounted purifier Download PDF

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Publication number
CN210390691U
CN210390691U CN201920698199.8U CN201920698199U CN210390691U CN 210390691 U CN210390691 U CN 210390691U CN 201920698199 U CN201920698199 U CN 201920698199U CN 210390691 U CN210390691 U CN 210390691U
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module
air quality
rechargeable battery
vehicle
quality detection
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CN201920698199.8U
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周子文
高瑞
黄虹淋
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Shenzhen Meizhao Environment Co ltd
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Shenzhen Meizhao Environment Co ltd
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Abstract

The utility model relates to a vehicle-mounted purifier, which comprises a rechargeable battery, an air quality detection module, a purification driving module, a communication module and a control module, wherein the rechargeable battery is respectively connected with the air quality detection module, the purification driving module, the communication module and the control module to provide power for each module; the communication module is also connected with the air quality detection module and is used for connecting the air quality detection module with the mobile terminal; the control module is also respectively connected with the air quality detection module, the communication module and the purification driving module and used for controlling the output state of the purification driving module according to the instruction fed back by the air quality detection module or the communication module. The vehicle-mounted purifier is internally provided with the rechargeable battery, so that the vehicle-mounted purifier can still continuously work in the power-off state of the automobile; the air quality detection module and the communication module are arranged, so that a user can remotely check the air quality state in the vehicle and the running state of the purifier.

Description

Vehicle-mounted purifier
Technical Field
The utility model relates to an automotive supplies field especially relates to an on-vehicle clarifier.
Background
The vehicle-mounted purifier, also called vehicle-mounted air purifier, vehicle air purifier and automobile air purifier, is an air purifier specially used for purifying the pollution in an automobile, such as peculiar smell, poisonous and harmful gas, bacteria, viruses and the like in the air in the automobile. In the prior art, after the automobile power supply needs to be turned on, the purifier can be powered on for use, and a user cannot know the air purification effect and can not remotely check the running state of the purifier.
SUMMERY OF THE UTILITY MODEL
Therefore, in order to solve the above problems, it is necessary to provide a vehicle-mounted purifier, so that a user can remotely check the air quality state and the operation state of the purifier in a vehicle, and the vehicle-mounted purifier can still continuously work in a power-off state.
An on-board purifier, comprising:
a rechargeable battery for providing power;
the air quality detection module is connected with the rechargeable battery and used for detecting the air quality in the vehicle;
the purification driving module is connected with the rechargeable battery and used for driving the purifier to perform purification work;
the communication module is respectively connected with the rechargeable battery and the air quality detection module and is used for connecting the air quality detection module with the mobile terminal; and
and the control module is respectively connected with the rechargeable battery, the air quality detection module, the communication module and the purification driving module and is used for controlling the output state of the purification driving module according to the air quality information of the air quality detection module or a control instruction sent by the communication module.
In one embodiment, the control module comprises a comparison unit, and the comparison unit is respectively connected with the rechargeable battery, the purification driving module and the air quality detection module.
In one embodiment, the control module further comprises a storage unit, and the storage unit is connected with the comparison unit.
In one embodiment, the control module comprises a timing unit, and the timing unit is respectively connected with the rechargeable battery and the purification driving module.
In one embodiment, the timing unit is further connected to the communication module.
In one embodiment, the device further comprises a key input module, and the key input module is connected with the control module.
In one embodiment, the rechargeable battery further comprises a power interface, wherein the power interface is connected with the rechargeable battery and is used for connecting the rechargeable battery with an external power supply.
In one embodiment, the rechargeable battery has a capacity greater than 20000 mAh.
In one embodiment, the rechargeable battery is a nickel-metal hydride rechargeable battery.
In one embodiment, the air quality detection module comprises an air quality detection sensor, and the air quality detection sensor is respectively connected with the control module and the communication module.
The vehicle-mounted purifier is internally provided with the rechargeable battery, so that the vehicle-mounted purifier can still continuously work in the power-off state of the automobile; the air quality detection module and the communication module are arranged, so that a user can remotely check the air quality state in the vehicle and the running state of the purifier.
Drawings
FIG. 1 is a block diagram of the circuitry of an on-board purifier in one embodiment;
FIG. 2 is a block circuit diagram of a control module in one embodiment;
FIG. 3 is a block diagram of the electrical circuit of the on-board purifier in another embodiment;
FIG. 4 is a block circuit diagram of a control module in another embodiment;
fig. 5 is a block circuit diagram of an on-board purifier in another embodiment.
Detailed Description
In order to facilitate understanding of the present invention, the present invention will be described more fully hereinafter with reference to the accompanying drawings. Preferred embodiments of the present invention are shown in the drawings. The invention may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used in the description of the invention herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention.
Fig. 1 is a circuit block diagram of an on-vehicle purifier in an embodiment, the on-vehicle purifier includes a rechargeable battery 110, an air quality detection module 120, a purification driving module 130, a communication module 140 and a control module 150, the rechargeable battery 110 is respectively connected with the air quality detection module 120, the purification driving module 130, the communication module 140 and the control module 150 to provide power for the modules; the communication module 140 is further connected to the air quality detection module 120, and is configured to enable the air quality detection module 120 to be connected to the mobile terminal; the control module 150 is further connected to the air quality detection module 120, the communication module 140, and the purification driving module 130, respectively, and is configured to control the output state of the purification driving module 130 according to an instruction fed back by the air quality detection module 120 or the communication module 140.
The traditional vehicle-mounted purifier is connected with an automobile and is powered by a power supply in the automobile, so the vehicle-mounted purifier works on the premise of starting the automobile, the rechargeable battery 110 is arranged in the vehicle-mounted purifier in the embodiment, when the automobile is started, the rechargeable battery 110 is charged, and the vehicle-mounted purifier is powered by the power supply in the automobile; when the automobile is powered off, the rechargeable battery 110 discharges, and the vehicle-mounted purifier supplies power by virtue of the rechargeable battery 110, so that the problem that the vehicle-mounted purifier cannot continuously work in the automobile power-off state is solved, and preconditions are created for realizing functions of remote control, timing work and the like.
The air quality detection module 120 is used for detecting the air quality in the vehicle, and when the purification driving module 130 does not work, the air quality detection module 120 can work alone and send the air quality condition in the vehicle to the mobile terminal through the communication module 140, so that a user can check the air quality condition in the vehicle at any time; when the purification driving module 130 operates, the air quality detection module 120 may collect air quality information in the vehicle in real time, and send the air quality status in the vehicle to the mobile terminal through the communication module 140, or send the air quality information to the control module 150, so as to refer to the output power of the purification driving module 130. Wherein, air quality detection module 120 includes air quality detection sensor, and this air quality detection sensor is connected with control module 150 and communication module 140 respectively, and this air quality detection sensor can be used to detect formaldehyde and examine, organic gaseous state material, carbon dioxide, fine particles, temperature and humidity isoparametric.
The purification driving module 130 is used for driving the purifier to perform purification work, and can adjust the output power according to the real-time air quality information, so as to achieve the purpose of saving energy consumption.
The communication module 140 transmits the air quality condition collected by the air quality detection module 120 to the mobile terminal, receives a control command from the mobile terminal, and transmits the control command to the control module 150 to control the operation of the purge driving module 130.
The control module 150 receives the air quality information of the air quality detection module 120 or the control command sent by the communication module 140, and controls the output state of the purge driving module 130. Specifically, the control module 150 receives the air quality information of the air quality detection module 120, and adjusts the output frequency of the purge driving module 130 according to the real-time air quality information, wherein when the air quality condition is good, the output frequency of the purge driving module 130 can be adjusted to zero; the control module 150 receives a control command from the communication module 140, and controls the operation of the purge driving module 130 according to the control command, wherein the control command may be to start the operation of the purge driving module 130, to stop the operation of the purge driving module 130, or to operate the purge driving module 130 according to the selected output frequency.
The vehicle-mounted purifier in the embodiment is internally provided with the rechargeable battery 110, so that the vehicle-mounted purifier can still continuously work in the power-off state of the automobile; an air quality detecting module 120 and a communication module 140 are provided so that a user can remotely check the air quality state and the operation state of the cleaner in the vehicle.
Fig. 2 is a circuit block diagram of the control module in an embodiment, where the control module 150 includes a comparing unit 151, and the comparing unit 151 is respectively connected to the purification driving module 130 and the air quality detecting module 120, and is configured to compare the air quality information obtained by the air quality detecting module 120 with preset air quality information, and adjust the output power of the purification driving module 130 according to the comparison result.
Wherein, the air quality information with the optimal air quality grade can be preset; after receiving the air quality information in the air quality detection module 120, the comparing unit 151 compares the air quality information with the best level to obtain a difference value, and adjusts the output power of the purification driving module 130 according to the difference value. Specifically, the larger the difference, the larger the output power of the purge driving module 130; conversely, the smaller the output power of the purge driving module 130.
The air quality information in a plurality of grades can be preset, the grades can comprise excellent, good and medium and poor from high to low, and each grade is provided with a corresponding range; after receiving the air quality information in the air quality detection module 120, the comparing unit 151 compares the air quality information with preset air quality information, determines which class range the air quality information is in, and adjusts the output power of the purification driving module 130 according to the class of the air quality information. Specifically, the higher the air quality level, the lower the output power of the purge driving module 130; conversely, the greater the output power of the purge driving module 130.
The control module 150 in this embodiment may further include a storage unit 152, and the storage unit 152 is connected to the comparison unit 151 for storing the preset value. Specifically, a data table is stored in the storage unit, the comparison unit 151 sends a result obtained after processing the current air quality information to the storage unit 152, the storage unit 152 checks the table and then feeds back an output result to the comparison unit 151, and the comparison unit 151 adjusts the output power of the purification driving module 130 according to the output result.
In one embodiment, the data table is configured with a plurality of sets of data consisting of a difference obtained by comparing the current air quality information with the air quality information with a preset level being superior, and the output power of the purge driving module 130; in other embodiments, the data table may also be configured with a plurality of sets of data consisting of the air quality level and the output power of the purge driving module 130.
In one embodiment, a power selection module 160 is further connected between the comparison unit 151 and the purge driving module 130, and the power selection module 160 adjusts the output power of the purge driving module 130 according to the power selection command output by the comparison unit 151.
The vehicle-mounted purifier in this embodiment can adjust the output power of the purification driving module 130 in real time according to the current air quality condition, and can achieve the purpose of saving energy consumption while realizing air purification.
In one embodiment, as shown in fig. 3, the power selection module 160 is further connected to the communication module 140, and the mobile terminal can directly select the required output power according to the requirement, and send the output power to the power selection module 160 through the communication module 140 to remotely control the operation of the purge driving module 130.
Fig. 4 is a circuit block diagram of a control module in another embodiment, and the control module 150 further includes a timing unit 153, and the timing unit 153 is connected to the purge driving module 130. The timing unit 153 is used for setting the operation time of the purge driving module 130, which may be the time for starting the operation, the time for stopping the operation, and the time for continuing the operation.
Specifically, a clock may be built in the vehicle-mounted purifier, and the timing unit 153 may determine whether the time to start the operation or the time to stop the operation is reached according to the time on the clock, and control the driving/purifying driving module 130 to start the operation or stop the operation.
The continuous working time can be set when the purification driving module 130 works, and when the working time of the purification driving module 130 is equal to the set continuous working time, the purification driving module 130 stops working; the time for continuous operation may be set at the same time when the time for starting operation is set, and the time for continuous operation is counted from when the purge driving module 130 reaches the time for starting operation.
In one embodiment, the timing unit 153 may be further connected to the communication module 140, and the mobile terminal may send an instruction to the timing unit 153 through the communication module 140 to remotely set the operation time of the purge driving module 130.
Fig. 5 is a circuit diagram of the on-board purifier in another embodiment, which further includes a key input module 170, the key input module 170 is connected to the control module 150, specifically, in order to reduce the volume of the on-board purifier, the key input module 170 is connected to the timing unit 153, and the key input module 170 may include only a timing key, so as to select the continuous operation time of the purification driving module 130 according to the number of times of continuous pressing. In other embodiments, the key input module 170 may further include other keys, such as a number squared, a timing mode selection key, an operation mode selection key, or a power selection key.
In the present embodiment, the vehicle-mounted purifier can send an instruction to the timing unit 153 through the communication module 140 to remotely set the operation time of the purification driving module 130, and can also set the operation time of the purification driving module 130 through the key input module 170. The output power of the purification driving module 130 is remotely set by the mobile terminal, and an automatic adjustment mode or a manual adjustment mode is selected first, and if the automatic adjustment mode is selected, the comparing unit 151 starts to operate, compares the air quality information obtained in the air quality detection module 120 with the preset air quality information, and adjusts the output power of the purification driving module 130 according to the comparison result; if the adjustment mode is the manual adjustment mode, the user can manually input the required output power of the purge driving module 130 at the mobile terminal, and the communication module 140 sends the output power to the power selection module 160, so that the purge driving module 130 operates at the fixed output power.
In one embodiment, the vehicle purifier further comprises a power interface connected to the rechargeable battery 110 for connecting the rechargeable battery 110 to an external power source. Wherein, the rechargeable battery can be a nickel-hydrogen rechargeable battery, and the electric quantity of the rechargeable battery is more than 20000 mAh.
The technical features of the embodiments described above may be arbitrarily combined, and for the sake of brevity, all possible combinations of the technical features in the embodiments described above are not described, but should be considered as being within the scope of the present specification as long as there is no contradiction between the combinations of the technical features.
The above-mentioned embodiments only represent some embodiments of the present invention, and the description thereof is specific and detailed, but not to be construed as limiting the scope of the present invention. It should be noted that, for those skilled in the art, without departing from the spirit of the present invention, several variations and modifications can be made, which are within the scope of the present invention. Therefore, the protection scope of the present invention should be subject to the appended claims.

Claims (10)

1. An on-board purifier, comprising:
a rechargeable battery for providing power;
the air quality detection module is connected with the rechargeable battery and used for detecting the air quality in the vehicle;
the purification driving module is connected with the rechargeable battery and used for driving the purifier to perform purification work;
the communication module is respectively connected with the rechargeable battery and the air quality detection module and is used for connecting the air quality detection module with the mobile terminal; and
and the control module is respectively connected with the rechargeable battery, the air quality detection module, the communication module and the purification driving module and is used for controlling the output state of the purification driving module according to the air quality information of the air quality detection module or a control instruction sent by the communication module.
2. The vehicle-mounted purifier as recited in claim 1, wherein the control module comprises a comparison unit, and the comparison unit is respectively connected with the rechargeable battery, the purification driving module and the air quality detection module.
3. The vehicle-mounted purifier of claim 2, wherein the control module further comprises a storage unit, the storage unit being connected to the comparison unit.
4. The vehicle-mounted purifier of claim 1, wherein the control module comprises a timing unit, and the timing unit is connected with the rechargeable battery and the purification driving module respectively.
5. The on-board purifier of claim 4, wherein the timing unit is further coupled to the communication module.
6. The vehicle-mounted purifier of claim 1, further comprising a key input module, the key input module being coupled to the control module.
7. The vehicle-mounted purifier of claim 1, further comprising a power interface coupled to the rechargeable battery for coupling the rechargeable battery to an external power source.
8. The on-board purifier of claim 1, wherein the rechargeable battery has a capacity greater than 20000 mAh.
9. The vehicle-mounted purifier of claim 1, wherein the rechargeable battery is a nickel-metal hydride rechargeable battery.
10. The vehicle-mounted purifier of claim 1, wherein the air quality detection module comprises air quality detection sensors, and the air quality detection sensors are respectively connected with the control module and the communication module.
CN201920698199.8U 2019-05-15 2019-05-15 Vehicle-mounted purifier Active CN210390691U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920698199.8U CN210390691U (en) 2019-05-15 2019-05-15 Vehicle-mounted purifier

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920698199.8U CN210390691U (en) 2019-05-15 2019-05-15 Vehicle-mounted purifier

Publications (1)

Publication Number Publication Date
CN210390691U true CN210390691U (en) 2020-04-24

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Application Number Title Priority Date Filing Date
CN201920698199.8U Active CN210390691U (en) 2019-05-15 2019-05-15 Vehicle-mounted purifier

Country Status (1)

Country Link
CN (1) CN210390691U (en)

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