CN214105612U - Medical portable breathing purification system's host computer - Google Patents
Medical portable breathing purification system's host computer Download PDFInfo
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- CN214105612U CN214105612U CN202022802314.7U CN202022802314U CN214105612U CN 214105612 U CN214105612 U CN 214105612U CN 202022802314 U CN202022802314 U CN 202022802314U CN 214105612 U CN214105612 U CN 214105612U
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- fan
- check valve
- air
- kuppe
- housing
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Abstract
A host of a medical portable breathing purification system comprises a shell, a button cap, a magnetic attraction contact, a check valve, a purification filter element, a fan, a first air guide sleeve, a second air guide sleeve, a battery, a sensor plate and a control plate; an air inlet groove is formed in the shell; the button cap, the magnetic attraction contact and the check valve are arranged on the shell, and an air outlet interface is arranged on the check valve; purify filter core, fan, first kuppe, second kuppe, battery, sensor board, control panel and set up in the casing, it is corresponding with the air inlet duct to purify the air inlet of filter core, and the gas outlet is through the side intercommunication that admits air of first kuppe and fan, and the side of giving vent to anger of fan is through second kuppe and check valve intercommunication, is equipped with another interface of giving vent to anger on the second kuppe, and the control panel is connected with button cap, magnetism contact, fan, battery, sensor board. The utility model discloses an active air supply has increased the travelling comfort that the gauze mask wore, has effectively improved the respiratory problem when wearing the gauze mask for a long time and performing the operation.
Description
Technical Field
The utility model relates to an air purification technical field, concretely relates to medical portable respiratory purification system's host computer.
Background
Wear the gauze mask in the operation at present and do not have air supply system, and the gauze mask can be soaked to a large amount of vapor and skin sweat of mouth nose exhalation when wearing the gauze mask for a long time, causes the reduction of gauze mask virus protective capacities or even became invalid, arouses more easily that skin is uncomfortable. Moreover, some operation environments are severe and harmful gases are easily generated, so that it is essential to perform breathing purification while a user wears a mask.
SUMMERY OF THE UTILITY MODEL
The utility model provides a to above-mentioned problem, provide a medical portable respiratory purification system's host computer.
The purpose of the utility model can be realized by the following technical scheme:
a host of a medical portable breathing purification system comprises a shell, a button cap, a magnetic attraction contact, a check valve, a purification filter element, a fan, a first air guide sleeve, a second air guide sleeve, a battery, a sensor plate and a control plate; an air inlet groove is formed in the shell; the button cap, the magnetic attraction contact and the check valve are arranged on the shell, and an air outlet interface is arranged on the check valve; purify filter core, fan, first kuppe, second kuppe, battery, sensor board, control panel set up in the casing, the air inlet that purifies the filter core is corresponding with the air inlet duct of casing, and the gas outlet that purifies the filter core is through the side intercommunication that admits air of first kuppe and fan, the side of giving vent to anger of fan passes through second kuppe and check valve intercommunication, be equipped with another interface of giving vent to anger of wearing out the casing on the second kuppe, the control panel is connected with button cap, magnetism contact, fan, battery, sensor board.
Preferably, the sensor board comprises a TVOC sensor, a temperature and humidity sensor.
More preferably, the control panel includes PM2.5 sensor, power module, control module, wiFi module, power module and magnetism are inhaled the contact and are connected with the battery, control module and PM2.5 sensor, power module, wiFi module the TVOC sensor and the temperature and humidity sensor of sensor board are connected.
Preferably, the housing comprises a front cover, a rear cover, a bottom cover and a top cover.
More preferably, the air inlet groove of the casing is opened on the bottom cover of the casing, the button cap is arranged on the front cover of the casing, the magnetic attraction point is arranged on the rear cover of the casing, and the air outlet port of the second air guide sleeve upwards penetrates through the top cover of the casing. The lower extreme of purifying filter core is the air inlet, and the upper end is the gas outlet, the front side of fan is the side of admitting air, and the rear side is the side of giving vent to anger.
More preferably, the check valve is installed beside the top cover of the housing, the check valve and the top cover together form the top surface of the housing, and the air outlet port of the check valve is arranged upwards.
More preferably, the battery is disposed in a battery compartment formed inside a rear cover of the case.
Preferably, the light guide plate is arranged on the shell.
Preferably, the portable electronic device further comprises a back clip, and the back clip is arranged on the shell.
Compared with the prior art, the beneficial effects of the utility model are that: adopt purification filter core to filter, disinfect to the air, adopt the fan to continuously supply air, adopt sensor board and control panel real-time supervision air parameter, effectively prevented harmful substance incoming call human body, increased the travelling comfort that the gauze mask was worn through initiative air supply, effectively improved the breathing problem of wearing the gauze mask for a long time and operating.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention.
Fig. 2 is an explosion diagram of the present invention.
Fig. 3 is a system diagram of a sensor board and a control board according to the present invention.
The parts in the figures are numbered as follows:
1 front cover
2 rear cover
3 bottom cover
4 Top cover
5 purifying filter element
6 Fan
7 first air guide sleeve
8 second air guide sleeve
9 batteries
10 sensor board
11 control panel
12 light guide sheet
13 button cap
14 magnetic attraction contact
15 back clip
16 check valve
17 Label
18 antenna cover.
Detailed Description
The following detailed description of the embodiments of the present invention will be given with reference to the accompanying drawings to make it clear to those skilled in the art how to practice the invention. While the invention has been described in connection with its preferred embodiments, these embodiments are intended to be illustrative, and not to limit the scope of the invention.
Referring to fig. 1 and 2, a main unit of a medical portable breathing purification system for continuously sending out filtered clean air mainly comprises a housing, a purification filter element 5, a fan 6, a first air guide sleeve 7, a second air guide sleeve 8, a battery 9, a sensor board 10 and a control board 11.
The shell is composed of a front cover 1, a rear cover 2, a bottom cover 3 and a top cover 4. The front cover 1 is provided with a light guide sheet 12 and a button cap 13, the light guide sheet 12 is used for converting an indicator light source of the control panel 11 into a surface light source and emitting light uniformly, and the button cap 13 is used for manually pressing a control switch of the control panel 11. The back cover 2 is provided with a magnetic attraction contact 14 and a back clamp 15 positioned on the outer side, the magnetic attraction contact 14 is used for charging the battery pack from an external power supply, and the back clamp 15 is used for fixing the host machine on a belt or clothes of a user. And the bottom cover 3 is provided with an air inlet groove corresponding to the air inlet of the purification filter element 5. The top cover 4 does not close the top surface of the housing, the side of the top cover 4 is provided with a check valve 16, and the check valve 16 and the top cover 4 together form the top surface of the housing.
The casing is internally provided with a purification filter element 5, a fan 6, a first air guide sleeve 7, a second air guide sleeve 8, a battery 9, a sensor board 10 and a control board 11.
The lower end of the purification filter element 5 is an air inlet and corresponds to the air inlet groove of the bottom cover 3, the upper end of the purification filter element 5 is an air outlet, and the purification filter element 5 is used for filtering air. The front side of fan 6 is for admitting air the side, the rear side is for giving vent to anger the side, is linked together through first kuppe 7 between the side of admitting air of fan 6 and the gas outlet of purifying filter element 5, and the side of giving vent to anger of fan 6 corresponds the inboard space of back lid 2 to the upper portion in this inboard space is equipped with second kuppe 8, second kuppe 8 is adjacent to be set up in the inboard of top cap 4, is equipped with the interface of giving vent to anger that upwards passes top cap 4 on the second kuppe 8, and the interface of giving vent to anger of second kuppe 8 is used for being connected with a breather pipe of medical portable breathing purification system, and this breather pipe is connected with the gauze mask that the user used.
Wherein, the check valve 16 is communicated with the second dome 8 and is provided with an upward air outlet port, the air outlet port of the check valve 16 is used for being connected with another air pipe of the medical portable breathing purification system, the air pipe is connected with a mask used by a user, and the check valve 16 prevents the user from inhaling the external air which does not pass through the host machine.
The batteries 9 are arranged in a battery compartment formed on the inner side of the rear cover 2, and the batteries 9 are rechargeable batteries and are more than two in number to form a battery pack.
Referring to fig. 3, the sensor board 10 includes a TVOC sensor, a temperature and humidity sensor. The TVOC sensor is responsible for collecting TVOC parameters, and the temperature and humidity sensor is responsible for collecting temperature and humidity parameters and transmitting the temperature and humidity parameters to the control module of the control panel 11.
Referring to fig. 3, the control board 11 mainly includes a PM2.5 sensor, a power module, a control module, a WiFi module, an indicator light, and a control switch. The PM2.5 sensor is responsible for collecting air quality parameters. The power module is responsible for controlling the charging and the protection of an external charging power supply to the battery pack and supplying the power supply of the battery pack to each part through voltage reduction and voltage stabilization. The control module is responsible for carrying out data conversion with the parameter that TVOC sensor and temperature and humidity sensor on the sensor board 10 and the PM2.5 sensor of self board-mounted are gathered and is exported through the wiFi module to according to tactics control fan 6 and the bactericidal lamp work in medical portable respiratory purification system's the charging station.
In addition, a label 17 is arranged on the outer surface of the bottom cover 3, and an antenna cover 18 is arranged in the shell.
This host computer during operation, control panel 11 is according to the work of the detection information control fan 6 of sensor board 10, the air gets into from the air inlet tank of bottom 3 and the air inlet of purifying filter core 5 and filters in purifying filter core 5, the clean air after the filtration flows from the gas outlet of purifying filter core 5, flow to the inboard space of back lid 2 after first kuppe 7 water conservancy diversion and fan 6 carry, at last through the water conservancy diversion of second kuppe 8, from the interface outflow of giving vent to anger of second kuppe 8 and the interface outflow of giving vent to anger of check valve 16, realize the continuous transport of clean air, check valve 16 prevents that the outside gas from getting into the host computer simultaneously.
It should be noted that many variations and modifications of the embodiments of the present invention are possible, which are fully described, and are not limited to the specific examples of the above embodiments. The above embodiments are merely illustrative of the present invention and are not intended to limit the present invention. In conclusion, the scope of the present invention should include those changes or substitutions and modifications which are obvious to those of ordinary skill in the art.
Claims (10)
1. A host of a medical portable breathing purification system is characterized by comprising a shell, a button cap, a magnetic attraction contact, a check valve, a purification filter element, a fan, a first air guide sleeve, a second air guide sleeve, a battery, a sensor plate and a control plate;
an air inlet groove is formed in the shell;
the button cap, the magnetic attraction contact and the check valve are arranged on the shell, and an air outlet interface is arranged on the check valve;
purify filter core, fan, first kuppe, second kuppe, battery, sensor board, control panel set up in the casing, the air inlet that purifies the filter core is corresponding with the air inlet duct of casing, and the gas outlet that purifies the filter core is through the side intercommunication that admits air of first kuppe and fan, the side of giving vent to anger of fan passes through second kuppe and check valve intercommunication, be equipped with another interface of giving vent to anger of wearing out the casing on the second kuppe, the control panel is connected with button cap, magnetism contact, fan, battery, sensor board.
2. The host of claim 1, wherein the sensor board comprises a TVOC sensor and a temperature and humidity sensor.
3. The main unit of the medical portable respiration purification system of claim 2, wherein the control board comprises a PM2.5 sensor, a power module, a control module and a WiFi module, the power module is connected with the magnetic attraction contact and the battery, and the control module is connected with the PM2.5 sensor, the power module, the WiFi module, the TVOC sensor of the sensor board and the temperature and humidity sensor.
4. The main unit of the medical portable respiration purification system of any one of claims 1 to 3, wherein the housing comprises a front cover, a rear cover, a bottom cover and a top cover.
5. The main unit of the medical portable breathing purification system of claim 4, wherein the air inlet slot of the housing is opened on the bottom cover of the housing, the button cap is disposed on the front cover of the housing, the magnetic attraction point is disposed on the rear cover of the housing, and the air outlet port of the second air guide sleeve passes through the top cover of the housing.
6. The main unit of the medical portable breathing purification system according to claim 5, wherein the lower end of the purification filter element is an air inlet, the upper end of the purification filter element is an air outlet, and the front side of the fan is an air inlet side and the rear side of the fan is an air outlet side.
7. The main unit of the medical portable breathing purification system according to claim 4, wherein the check valve is installed at the side of the top cover of the housing, the check valve and the top cover together form the top surface of the housing, and the air outlet port of the check valve is disposed upward.
8. The main unit of the medical portable breathing purification system of claim 4, wherein the battery is disposed in a battery compartment formed inside the rear cover of the housing.
9. The main unit of the medical portable respiration purification system according to any one of claims 1 to 3 and 5 to 7, further comprising a light guide plate, wherein the light guide plate is disposed on the housing.
10. The main unit of the medical portable respiration purification system of any one of claims 1 to 3 and 5 to 7, further comprising a back clip disposed on the housing.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202022802314.7U CN214105612U (en) | 2020-11-27 | 2020-11-27 | Medical portable breathing purification system's host computer |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202022802314.7U CN214105612U (en) | 2020-11-27 | 2020-11-27 | Medical portable breathing purification system's host computer |
Publications (1)
Publication Number | Publication Date |
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CN214105612U true CN214105612U (en) | 2021-09-03 |
Family
ID=77508858
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202022802314.7U Active CN214105612U (en) | 2020-11-27 | 2020-11-27 | Medical portable breathing purification system's host computer |
Country Status (1)
Country | Link |
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CN (1) | CN214105612U (en) |
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2020
- 2020-11-27 CN CN202022802314.7U patent/CN214105612U/en active Active
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