CN209475335U - A kind of oxygen monitoring preparation facilities - Google Patents
A kind of oxygen monitoring preparation facilities Download PDFInfo
- Publication number
- CN209475335U CN209475335U CN201821974913.3U CN201821974913U CN209475335U CN 209475335 U CN209475335 U CN 209475335U CN 201821974913 U CN201821974913 U CN 201821974913U CN 209475335 U CN209475335 U CN 209475335U
- Authority
- CN
- China
- Prior art keywords
- siphunculus
- preparation facilities
- humidification bottle
- electrically connected
- oxygenerator ontology
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Fee Related
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- Respiratory Apparatuses And Protective Means (AREA)
- Accommodation For Nursing Or Treatment Tables (AREA)
Abstract
The utility model discloses a kind of oxygen monitoring preparation facilities, including oxygenerator ontology, placement plate is fixedly connected on the right side of oxygenerator ontology, humidification bottle is provided at the top of placement plate, the inner cavity of humidification bottle is provided with the first siphunculus, the top of first siphunculus passes through humidification bottle and is communicated with the first hose, and the one end of the first hose far from the first siphunculus is connected to the right side of oxygenerator ontology, is provided with oxygen concentration monitoring modular on the right side of the humidification bottle inner cavity.Has practical advantage, easy to operate, high reliablity can detect well oxygen, and detection data is accurate, strong adaptability, facilitates the recovery of patient.
Description
Technical field
The utility model relates to the field of medical instrument technology, specially a kind of oxygen monitoring preparation facilities.
Background technique
Oxygenerator is a kind of adjuvant therapy apparatus, is used for assisting to prepare oxygen supply patient, to reach intrapulmonary gas
The function of exchange reduces the consumption of human body, in favor of the recovery of respiratory function;And in current clinical medicine, oxygenerator is general
In for various medical scenes, such as respiratory disease;Cardiovascular and cerebrovascular disease etc., oxygenerator occupies in Modern Medical Field
Highly important position.
Currently, used tradition oxygenerator in pediatric hospital, is only affected children ranges oxygen and oxygen therapy, helps children extensive
Multiple, construction is single, and function is simple, and monitoring system is not perfect, cannot be detected well to oxygen, and prohibited data detection is true,
Lack adaptability to changes, will have a direct impact on the recovery of affected children ranges, and medical staff's operation when treating to affected children ranges
Trouble, it is time-consuming and laborious, work difficulty is increased to medical staff.
Utility model content
The technical problem to be solved by the present invention is to overcome traditional oxygenerator, have a single function, can not to oxygen into
Row monitoring, the problems such as monitoring data are inaccurate well, provide a kind of easy to operate, monitoring is accurate, a kind of practical oxygen
Gas monitors preparation facilities.
In order to solve the above-mentioned technical problem, the utility model provides the following technical solutions:
A kind of oxygen monitoring preparation facilities, including oxygenerator ontology are fixedly connected with placement plate on the right side of oxygenerator ontology,
Humidification bottle is provided at the top of placement plate, the inner cavity for humidifying bottle is provided with the first siphunculus, and the top of the first siphunculus passes through humidification bottle
And it is communicated with the first hose, and the one end of the first hose far from the first siphunculus is connected to the right side of oxygenerator ontology, the humidification
Bottle is provided with oxygen concentration monitoring modular on the right side of inner cavity.
It is that the utility model advanced optimizes above-mentioned technical proposal below:
The output end of oxygen concentration monitoring modular is unidirectionally electrically connected with A/D conversion module, the output end list of A/D conversion module
To central processing unit is electrically connected with, the output end and input terminal of central processing unit are two-way to be electrically connected with data comparison module, data
The input terminal of contrast module is unidirectionally electrically connected with data memory module, and the output end of central processing unit is unidirectionally electrically connected with control mould
The output end of block, control module is unidirectionally electrically connected with alarm module.
It advanced optimizes: humidifying and be communicated with filler pipe at the top of bottle, pipe lid is provided at the top of filler pipe.
It advanced optimizes: humidifying and be communicated with the second siphunculus on the right side of top of bottle, it is soft to be communicated with second at the top of the second siphunculus
Pipe, the second hose are communicated with third siphunculus far from one end of the second siphunculus, are communicated with escape pipe on the right side of third siphunculus.
Advanced optimize: the front of the oxygenerator ontology is provided with switch, and the front of the oxygenerator ontology is provided with
Display screen, the front of the oxygenerator ontology are provided with key, and the front of the oxygenerator ontology is provided with adjusting knob, described
The front of oxygenerator ontology is provided with loudspeaker, and the loudspeaker and alarm module are electrically connected.
It advanced optimizes: being fixedly connected with carrying handle at the top of oxygenerator ontology, the surface of carrying handle is provided with Anti-slip cover.
It by setting carrying handle and Anti-slip cover, can be user-friendly for carrying, improve operating efficiency.
Advanced optimize: the quadrangle of oxygenerator body bottom portion is fixedly connected to supporting leg, and the bottom of supporting leg is provided with anti-skidding
Block.
It, can be convenient for users to placing by setting supporting leg and non-slipping block, non-slipping block can be improved the contact below supporting leg
Frictional force, to improve the stability of placement.
Advanced optimize: the input terminal of central processing unit is unidirectionally electrically connected with power module, the power module be lithium from
Sub- battery.
It by setting lithium ion battery for power module, can economize on resources, save the cost is practical.
Advanced optimize: the outside for humidifying bottle is provided with fixed plate, and the right side in the left side of fixed plate and oxygenerator ontology
It is fixedly connected.
By the way that fixed plate is arranged, the stability of humidification bottle can be enhanced, and the placement of humidification bottle can also be facilitated.
The utility model by adopting the above technical scheme, has the advantages that
The utility model is by adopting the above technical scheme, easy to operate, high reliablity, can be detected well to oxygen,
Detection data is accurate, strong adaptability, facilitates the recovery of affected children ranges, and can reduce the work difficulty of medical staff,
Solves the problems such as medical staff is troublesome in poeration when treating to affected children ranges, time-consuming and laborious.
The present invention will be further described with reference to the accompanying drawings and examples.
Detailed description of the invention
FIG. 1 is a schematic structural view of the utility model;
Fig. 2 is the partial structurtes enlarged drawing of A in the utility model Fig. 1;
Fig. 3 is Tthe utility model system schematic diagram.
In figure: 1- oxygenerator ontology;2- placement plate;3- humidifies bottle;The first siphunculus of 4-;The first hose of 5-;6- oxygen concentration
Monitoring modular;7-A/D conversion module;8- central processing unit;9- data comparison module;10- data memory module;11- controls mould
Block;12- alarm module;13- filler pipe;14- pipe lid;The second siphunculus of 15-;The second hose of 16-;17- third siphunculus;18- outlet
Pipe;19- switch;20- display screen;21- key;22- adjusting knob;23- loudspeaker;24- carrying handle;25- Anti-slip cover;26- supporting leg;
27- non-slipping block;28- power module;29- fixed plate.
Specific embodiment
Embodiment please refers to Fig. 1-3, a kind of oxygen monitoring preparation facilities, including oxygenerator ontology 1, the oxygenerator sheet
The right side of body 1 is fixedly connected with placement plate 2, and the top of the placement plate 2 is provided with humidification bottle 3, and the inner cavity of the humidification bottle 3 is set
It is equipped with the first siphunculus 4, the top of first siphunculus 4 passes through humidification bottle 3 and is communicated with the first hose 5, and the first hose 5 is separate
One end of first siphunculus 4 is connected to the right side of oxygenerator ontology 1, and oxygen concentration prison is provided on the right side of 3 inner cavity of humidification bottle
Survey module 6.
The output end of the oxygen concentration monitoring modular 6 is unidirectionally electrically connected with A/D conversion module 7, the A/D conversion module
7 output end is unidirectionally electrically connected with central processing unit 8, the output end of the central processing unit 8 and input terminal is two-way is electrically connected with
Data comparison module 9, the input terminal of the data comparison module 9 are unidirectionally electrically connected with data memory module 10, the centre
The output end of reason device 8 is unidirectionally electrically connected with control module 11, and the output end of the control module 11 is unidirectionally electrically connected with alarm mould
Block 12.
The top of the humidification bottle 3 is communicated with filler pipe 13, and the top of the filler pipe 13 is provided with pipe lid 14, by setting
Set filler pipe 13 and pipe lid 14, it is convenient to being carried out inside humidification bottle 3 plus water, pipe lid 14 can seal humidification bottle 3, prevent extraneous thin
Bacterium enters inside humidification bottle 3.
The right side at 3 top of humidification bottle is communicated with the second siphunculus 15, and the top of second siphunculus 15 is communicated with second
Hose 16, second hose 16 are communicated with third siphunculus 17, the right side of the third siphunculus 17 far from one end of the second siphunculus 15
Side is communicated with escape pipe 18.
The front of the oxygenerator ontology 1 is provided with switch 19, and the front of the oxygenerator ontology 1 is provided with display screen
20, the front of the oxygenerator ontology 1 is provided with key 21, and the front of the oxygenerator ontology 1 is provided with adjusting knob 22, institute
The front for stating oxygenerator ontology 1 is provided with loudspeaker 23, and the loudspeaker 23 is electrically connected with alarm module 12.
The top of the oxygenerator ontology 1 is fixedly connected with carrying handle 24, and the surface of the carrying handle 24 is provided with Anti-slip cover 25,
It by setting carrying handle 24 and Anti-slip cover 25, can be user-friendly for carrying, improve operating efficiency.
The quadrangle of 1 bottom of oxygenerator ontology is fixedly connected to supporting leg 26, and the bottom of the supporting leg 26 is provided with anti-
Sliding block 27 can be convenient for users to placing by setting supporting leg 26 and non-slipping block 27, and non-slipping block 27 can increase stability.
The input terminal of the central processing unit 8 is unidirectionally electrically connected with power module 28, and the power module 28 is lithium ion
Battery.
By setting lithium ion battery for power module 28, can economize on resources, save the cost is practical.
The outside of the humidification bottle 3 is provided with fixed plate 29, and the left side of fixed plate 29 and the right side of oxygenerator ontology 1 are solid
Fixed connection.
By the way that fixed plate 29 is arranged, the stability of humidification bottle 3 can be enhanced, facilitate the placement of humidification bottle 3.
In use, user presses lower switch 19, module 28 is powered on for whole system, electric energy, oxygenerator ontology 1 are provided
The oxygen of manufacture is entered in the first siphunculus 4 by the first hose 5, and oxygen is entered in humidification bottle 3 by the first siphunculus 4, is led to
It crosses water to be humidified, the second siphunculus of oxygen 15 is made by the second hose 16, third siphunculus 17 and escape pipe 18 supply affected children ranges
With.
Oxygen after 6 pairs of oxygen concentration monitoring modular humidifications is monitored, and the signal monitored is transferred to A/D conversion module
Signal is converted digital signal by 7, A/D conversion modules 7, is transmitted further to central processing unit 8, and central processing unit 8 again transmits signal
To data comparison module 9.
By comparing with the data in data memory module 10, signal is fed back into central processing unit 8, if numerical value is not
Normally, central processing unit 8 transmits a signal to control module 11, and control module 11 is alarmed alarm module 12 is controlled, and reports
Alert module 12 controls loudspeaker 23 and issues the sound, reminds medical staff timely to handle, to reach strong adaptability
Purpose.
The utility model is using the above structure, easy to operate, high reliablity, can be detected well to oxygen, detection
Data are accurate, strong adaptability, facilitate the recovery of affected children ranges, and can reduce the work difficulty of medical staff, solve
The problems such as medical staff is troublesome in poeration when treating to affected children ranges, time-consuming and laborious.
Claims (9)
1. a kind of oxygen monitoring preparation facilities, including oxygenerator ontology (1), it is characterised in that: the right side of the oxygenerator ontology (1)
Side is fixedly connected with placement plate (2), and humidification bottle (3), the inner cavity of humidification bottle (3) are provided at the top of the placement plate (2)
It being provided with the first siphunculus (4), the top of first siphunculus (4) passes through humidification bottle (3) and is communicated with the first hose (5), and the
One hose (5) is connected to far from the one end of the first siphunculus (4) with the right side of oxygenerator ontology (1), the right side of described humidification bottle (3) inner cavity
Side is provided with oxygen concentration monitoring modular (6).
2. a kind of oxygen monitoring preparation facilities according to claim 1, it is characterised in that: oxygen concentration monitoring modular (6)
Output end be unidirectionally electrically connected with A/D conversion module (7), the output end of A/D conversion module (7) is unidirectionally electrically connected with central processing
Device (8), the output end and input terminal of central processing unit (8) are two-way to be electrically connected with data comparison module (9), data comparison module
(9) input terminal is unidirectionally electrically connected with data memory module (10), and the output end of central processing unit (8) is unidirectionally electrically connected with control
Module (11), the output end of control module (11) are unidirectionally electrically connected with alarm module (12).
3. a kind of oxygen monitoring preparation facilities according to claim 2, it is characterised in that: the top connection of humidification bottle (3)
Have filler pipe (13), pipe lid (14) are provided at the top of filler pipe (13).
4. a kind of oxygen monitoring preparation facilities according to claim 3, it is characterised in that: the right side at the top of humidification bottle (3)
It is communicated with the second siphunculus (15), is communicated at the top of the second siphunculus (15) the second hose (16), the second hose (16) is far from second
One end of siphunculus (15) is communicated with third siphunculus (17), and escape pipe (18) are communicated on the right side of third siphunculus (17).
5. a kind of oxygen monitoring preparation facilities according to claim 4, it is characterised in that: the oxygenerator ontology (1)
Front is provided with switch (19), and the front of the oxygenerator ontology (1) is provided with display screen (20), the oxygenerator ontology (1)
Front be provided with key (21), the front of the oxygenerator ontology (1) is provided with adjusting knob (22), the oxygenerator ontology
(1) front is provided with loudspeaker (23), and loudspeaker (23) and alarm module (12) are electrically connected.
6. a kind of oxygen monitoring preparation facilities according to claim 5, it is characterised in that: the top of oxygenerator ontology (1)
It is fixedly connected with carrying handle (24), the surface of carrying handle (24) is provided with Anti-slip cover (25).
7. a kind of oxygen monitoring preparation facilities according to claim 6, it is characterised in that: oxygenerator ontology (1) bottom
Quadrangle is fixedly connected to supporting leg (26), and the bottom of supporting leg (26) is provided with non-slipping block (27).
8. a kind of oxygen monitoring preparation facilities according to claim 7, it is characterised in that: the input of central processing unit (8)
End is unidirectionally electrically connected with power module (28), and power module (28) is lithium ion battery.
9. a kind of oxygen monitoring preparation facilities according to claim 8, it is characterised in that: the external setting of humidification bottle (3)
Have fixed plate (29), and is fixedly connected on the right side of the left side of fixed plate (29) and oxygenerator ontology (1).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201821974913.3U CN209475335U (en) | 2018-11-28 | 2018-11-28 | A kind of oxygen monitoring preparation facilities |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201821974913.3U CN209475335U (en) | 2018-11-28 | 2018-11-28 | A kind of oxygen monitoring preparation facilities |
Publications (1)
Publication Number | Publication Date |
---|---|
CN209475335U true CN209475335U (en) | 2019-10-11 |
Family
ID=68116832
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201821974913.3U Expired - Fee Related CN209475335U (en) | 2018-11-28 | 2018-11-28 | A kind of oxygen monitoring preparation facilities |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN209475335U (en) |
-
2018
- 2018-11-28 CN CN201821974913.3U patent/CN209475335U/en not_active Expired - Fee Related
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Legal Events
Date | Code | Title | Description |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20191011 Termination date: 20201128 |