CN202942112U - Induction layer and respiratory monitoring mattress thereof - Google Patents
Induction layer and respiratory monitoring mattress thereof Download PDFInfo
- Publication number
- CN202942112U CN202942112U CN 201220609127 CN201220609127U CN202942112U CN 202942112 U CN202942112 U CN 202942112U CN 201220609127 CN201220609127 CN 201220609127 CN 201220609127 U CN201220609127 U CN 201220609127U CN 202942112 U CN202942112 U CN 202942112U
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- plate body
- induction
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- coiling
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Abstract
The utility model belongs to the field of respiratory monitoring mattresses, particularly relates to structural design used for an induction layer of the respiratory monitoring mattress and discloses the induction layer. At least two rows of coiling screens which are arranged in a parallel mode are arranged on each plate body, and each coiling screen comprises a plurality of arc-shaped coiling blocks which are arranged at intervals. On each plate body, induction lines are wound between the arc-shaped coiling blocks on two adjacent rows of coiling screens. When the arc-shaped coiling blocks serve as good transition of the induction lines in the process of coiling, the induction lines can be prevented from breaking. Simultaneously, the diameter width of the arc-shaped coiling blocks is controlled, and the sensitivity of an induction line area can be guaranteed. Flexible parts are adopted between two adjacent plate body groups for connection, and the two adjacent plate body groups are enabled to be placed in a mutually folding mode. The whole induction area is reduced, and the induction layer and the respiratory monitoring mattress of the induction layer can be carried by a user conveniently.
Description
Technical field
This utility model relates to monitoring of respiration mattress field, particularly for the inductive layer of monitoring of respiration mattress.
Background technology
In recent years, along with the development of pliable pressure sensor and monitoring of respiration technology, respiration monitoring device is applied to the household textiles field gradually.Be provided with the mattress of respiration monitoring function, help to solve the long-term monitoring of respiration problem under sleep state.Particularly to the patient of infant or respiratory tract disease, under its sleep state, it is carried out real-time monitoring of respiration, be conducive to the grasp to Safe sleep and the state of an illness.
Respiration monitoring function during for the acquisition sleep, the one sensor-type monitoring of respiration mattress of class was once arranged before this, mainly responded to the breathing state of human body by sensor, however this type of product requirement respiration pickup and human body continuous contact, thereby affect user's comfort, even normally sleep.
For addressing the above problem, the novel monitoring of respiration mattress of one class is arranged on the market, its appearance is external member, be provided with inductive layer in external member, be covered with the line of induction that is parallel to each other to form induction zone on inductive layer, so when human body is pressed on mattress, carrying out along with human body respiration, to impel the line of induction to exhale between a suction one different distortion will occur, the light decay that produces when utilizing the line of induction to produce axial deformation, with the light decay value real-time be sent to electronic building brick, through the mathematical conversion of electronic building brick, can obtain the related data of human body respiration.Yet this type of monitoring of respiration mattress, due to its core devices that adopts the line of induction to change as the induction human body respiration, and the line of induction general adopt make such as optical fiber or other piezoelectrics and, make because of optical fiber cable and piezoelectric and form that induction cable existence itself is easy to break or impaired deficiency affects sensitivity or the nominal situation of induction zone; In addition, also because the line of induction itself is easily broken, inductive layer is not collapsible usually, so causes mattress also can't fold, and is unfavorable for placement and the movement of mattress.
The utility model content
Technical problem to be solved in the utility model is to provide line of induction winding mode and folding inductive layer.
The inductive layer that this utility model provides is achieved in that
Inductive layer, be located in the inside of monitoring of respiration mattress, comprise at least two plate body groups that are arranged side by side, described plate body group comprises plate body and the buckle of mutual fastening, and being set around the line of induction between described plate body and buckle, the flexible piece by strip between the edge of each described plate body group interconnects; Each described plate body is provided with the coiling screens that at least two rows are arranged side by side, and each described coiling screens comprises the arc-shape winding piece of some pitch arrangement, and the arc-shape winding piece mutual dislocation in two adjacent row's coiling screens arranges; On each described plate body, the described line of induction is set around between the two adjacent arc-shape winding pieces of arranging in the coiling screens; Cut out along its length direction on described flexible piece and establish some location cut channel; Between each described plate body group, the described line of induction is along the length direction of described flexible piece and pass described location cut channel to be located on described flexible piece.
Particularly, each described plate body is provided with the coiling screens that two rows are parallel to each other, and the edge of described plate body is located in each described coiling screens.
Particularly, described buckle has identical structure with described plate body, and between each adjacent described arc-shape winding piece, spacing equates, and its spacing can hold a described arc-shape winding piece.
Particularly, described arc-shape winding piece comprises one arc and some limit fasteners that is stretched out by the arc limit of described arc, and the described line of induction is walked around arc arc limit radius size between 6mm ~ 25mm.
Particularly, described arc-shape winding piece is embedded on described plate body, and its arc limit and described plate body form the arc groove of the described line of induction of winding, also are provided with tangent with described arc groove on described plate body and are communicated with each arc groove that is positioned in same coiling screens.
Particularly, described location cut channel is " V " font or is arcs of recesses, and the opening direction of adjacent two location cut channels is opposite.
Particularly, described flexible piece is symmetrically arranged with the button bit of some mutual fastenings along its length direction.
Particularly, be provided with the flexible thin rete between described plate body and buckle.
Particularly, be respectively equipped with grid on described plate body and buckle, described grid comprises the vertical ordinate of the some and described line of induction; Be positioned at ordinate and the ordinate mutual dislocation setting that is positioned on described buckle on described plate body, and has the gap that can supply the described line of induction to pass between the ordinate of the position that described plate body is corresponding with described buckle, this gap is slightly larger than the radius of the described line of induction, and the described line of induction is worn between the ordinate of the ordinate that is sandwiched in described plate body and described buckle.
Utility model also provides the monitoring of respiration mattress, comprises inductive layer as above.
the beneficial effects of the utility model are: its coiling screens that is arranged side by side by setting at least two rows on plate body of the inductive layer that this utility model provides, each described coiling screens comprises the arc-shape winding piece of some pitch arrangement, and the arc-shape winding piece mutual dislocation in two adjacent row's coiling screens arranges, so the line of induction can reciprocally block between the arc-shape winding piece that is around in adjacent two row's coiling screens, make the zone that surrounds between two row's coiling screens form induction zone, because the arc-shape winding piece has good transition, therefore the line of induction can not ruptured, therefore there is not the easily broken situation of the line of induction in inductive layer of the present utility model, and can guarantee that induction zone has than high sensitive.In addition, the inductive layer that this utility model provides is by adopting flexible piece to connect adjacent plate body group, the line of induction is along the length direction of described flexible piece and pass described location cut channel to be located on described flexible piece, utilize flexible piece as a good transition, can avoid the line of induction directly by directly being set around on a plate body group on another plate body group; Simultaneously, with the location structure of location cut channel as the line of induction, avoid the line of induction to break away from from described flexible piece, so total induction zone can be made of the single induction zone on a plurality of plate body groups, and owing to adopting flexible piece to connect, make the mutual flip angle of two plate body groups can reach 360 °, two neighbours' two plate body groups can fold placement mutually, so just can dwindle the area of whole inductive layer, be convenient to carrying of user.
Description of drawings
Fig. 1 is the structural representation of this utility model one preferred embodiment;
Fig. 2 is the structural representation after plate body coiling of the present utility model;
Fig. 3 is the partial enlarged drawing of Fig. 2, in order to the structure of the arc-shape winding piece that represents described coiling screens;
Fig. 4 is for the example of the winding mode of the described line of induction after inductive layer of the present utility model is simplified;
Fig. 5 is the structural representation of flexible piece of the present utility model;
Fig. 6 is the partial schematic diagram after plate body of the present utility model and buckle fasten mutually;
Fig. 7 is the partial sectional view in B-B cross section in Fig. 2.
The specific embodiment
In order to make technical problem to be solved in the utility model, technical scheme and beneficial effect clearer, below in conjunction with drawings and Examples, this utility model is further elaborated.Should be appreciated that specific embodiment described herein only in order to explaining this utility model, and be not used in restriction this utility model.
Please refer to Fig. 1 ~ 6, inductive layer, be located in the inside of monitoring of respiration mattress, it comprises two individual plate body groups 100 that are arranged side by side, described plate body group 100 comprises plate body 1 and the buckle 4 of mutual fastening, and be set around the line of induction 2 between described plate body 1 and buckle 4,, the flexible piece 3 by strip between the edge of two described plate body groups 100 interconnects; Each described plate body 1 is provided with the coiling screens 11 that two rows are arranged side by side, and each described coiling screens 11 comprises the arc-shape winding piece 111 of some pitch arrangement, and the arc-shape winding piece 111 mutual dislocation settings in two adjacent row's coiling screens 11; On each described plate body 1, the described line of induction 2 is set around between the two adjacent arc-shape winding pieces 111 of arranging in coiling screens 11; Cut out along its length direction on described flexible piece 3 and establish some location cut channel 31; Between each described plate body 1, the described line of induction 2 is along the length direction of described flexible piece 3 and pass described location cut channel 31 to be located on described flexible piece 3.
its coiling screens 11 that is arranged side by side by setting at least two rows on each described plate body 1 of the inductive layer that this utility model provides, each described coiling screens 11 comprises the arc-shape winding piece 111 of some pitch arrangement, and the arc-shape winding piece 111 mutual dislocation settings in two adjacent row's coiling screens 11, so only can reciprocally block between the arc-shape winding piece 111 that is around in adjacent two row's coiling screens 11 with a line of induction 2, make the zone that surrounds between two row's coiling screens 11 form induction zone 5, because arc-shape winding piece 111 has good transition, therefore the line of induction 2 can not ruptured, therefore inductive layer of the present utility model can only adopt a line of induction 2 to get final product, and it can guarantee that induction zone 5 has higher sensitivity.Certainly, for strengthening the covering scope of this utility model test, as the real time measure to basic human body physiological features such as temperature, heart beatings, inductive layer of the present utility model can adopt two lines of induction and around mode, even many lines of induction and around mode.So can obtain the test data of many groups, the corresponding a kind of human body physiological characteristics of each test data.In addition, the inductive layer that this utility model provides is by adopting flexible piece 3 to connect adjacent plate body group 100, the line of induction 2 the edge along the length direction of described flexible piece 3 and pass described location cut channel 31 to be located on described flexible piece 3, utilize flexible piece 3 as a good transition, can avoid the line of induction 2 directly by directly being set around on a plate body group 100 on another plate body group 100; Simultaneously, with the location structure of location cut channel 31 as the line of induction 2, avoid the line of induction 2 to break away from from described flexible piece 3, so total induction zone can be made of the single induction zone 5 on two plate bodys, and owing to adopting flexible piece 3 to connect, make the mutual flip angle of two plate body groups can reach 360 °, two neighbours' two plate body groups can fold placement mutually, so just can dwindle the area of inductive layer, be convenient to carrying of user.In the present embodiment, in view of the fragile characteristic of the line of induction, for avoiding causing, the line of induction is caused wearing and tearing, each parts in above-described embodiment all adopt the gentle nonmetallic materials of quality to make.Wherein, flexible piece 3 can adopt the better fabric of pliability to make.In addition, after preventing that the described line of induction 2 is set around described coiling screens 11, too tight, when causing the user to use, cause the fracture of the line of induction, in the present embodiment, on described plate body 1, latticed lines design is adopted in the zone of superimposed described induction zone 5, make described plate body 1 have certain elasticity, in the coiling process, what the line of induction 2 should not be too tight is set around on described coiling screens 11 simultaneously.
At least only need a line of induction to get final product for further illustrating inductive layer of the present utility model, please refer to accompanying drawing 4, the expression of this simplification the structure of inductive layer of the present utility model, in the figure by on the described line of induction 2 apposition arrow, represent its winding mode, wherein " with solid arrow " represents the coiling trend that the described line of induction 2 moves into, the coiling trend that the described line of induction 2 of " with hollow arrow " expression lays out has 2 overlapping parts of the expression line of induction of the line of induction of " with solid arrow " and " with hollow arrow " simultaneously.
Please refer to Fig. 1 ~ 4, in the present embodiment, each described plate body 1 is provided with the coiling screens 11 that two rows are parallel to each other, and each described coiling screens 11 is located at the edge of described plate body 1, and so the line of induction 2 can form maximum induction zone 5 after being set around in described coiling screens 11.
Please refer to Fig. 1 and Fig. 6, in the present embodiment, described buckle 4 has identical structure with described plate body 1, and between each adjacent described arc-shape winding piece 111, spacing equates, and its spacing can hold a described arc-shape winding piece 111.So, can be convenient to actual production, in process of production, only need offer a mold and get final product, save production cost.
Please refer to Fig. 3, in the present embodiment, described arc-shape winding piece 111 comprises one arc 1111, and the radian on this arc limit of arc 1111 is 180 °, and after so can making the line of induction 2 described arc-shape winding pieces 111 of pile warp, the circuit of both sides keeps being parallel to each other.Three limit fasteners that are evenly arranged 1112 are stretched out on the arc limit of described arc 1111, wherein two limit fasteners 1112 are positioned at the two ends on described arc limit, a limit fastener 1112 is positioned at the center on described arc limit, the described line of induction 2 is walked around arc arc limit, and described limit fastener 1112 carries out good spacingly, can avoid the described line of induction 2 to come off from described arc-shape winding piece 111.Conventional plastic optical fiber minimum bending radius is 5mm, but the inductive layer winding line of induction for this utility model is provided, and the described line of induction is walked around arc arc limit radius size between 6mm ~ 25mm.
Please refer to Fig. 3 ~ 4, in the present embodiment, described arc-shape winding piece 111 is embedded on described plate body 1, its arc limit and described plate body 1 form the arc groove 12 of the described line of induction 2 of winding, also are provided with tangent with described arc groove 12 on described plate body 1 and are communicated with the straight trough 13 that is positioned at each arc groove 12 in same coiling screens 11.So can make the surface of described plate body 1 keep smooth, and within the described line of induction 2 is arranged in described arc groove 12 and straight trough 13, can avoid the described line of induction 2 pressurized in described coiling screens 11.
Please refer to Fig. 5, in the present embodiment, described location cut channel 31 is " V " font, and the opening direction of adjacent two location cut channels 31 is opposite, the described line of induction 2 is arranged between each described location cut channel 31, and reaches good locating effect.Certainly, above-mentioned location cut channel 31 also can adopt the design of other structure, as adopting " U " font or semicircular design, also can realize the purpose to the described line of induction 2 good location.Further, skid off from the location cut channel 31 on described flexible piece 3 for preventing the described line of induction 2, described flexible piece 3 is symmetrically arranged with the button bit 32 of some mutual fastenings along its length direction.
In the present embodiment, for preventing the described line of induction between described plate body and buckle, be subjected to the pressure folder of described plate body and buckle and impaired, be provided with the flexible thin rete between described plate body 1 and buckle 4.This flexible thin rete can adopt polyethylene film, the not single flexible protective effect of this type of thin film, and also possessing has moisture resistance, and poisture-penetrability is little, so can also guarantee the drying property of the described line of induction.
Please refer to Fig. 7, in the present embodiment, for avoiding in user's use procedure, because of described plate body group 100 pressurizeds when excessive, cause the wearing and tearing of the described line of induction 2, be respectively equipped with grid 6 on described plate body 1 and buckle 4, described grid 6 comprises the ordinate 61 that the some and described line of induction 2 is vertical; Be positioned at ordinate 61 and the ordinate 61 mutual dislocation settings that are positioned on described buckle 4 on described plate body 1, and has the gap that can supply the described line of induction 2 to pass between the ordinate 61 of the position that described plate body 1 is corresponding with described buckle 4, this gap is slightly larger than the radius of the described line of induction 2, and the described line of induction 2 is worn between the ordinate 61 of the ordinate 61 that is sandwiched in described plate body 1 and described buckle 4.So, when the described line of induction 2 is located between described plate body 1 and described buckle 4, the variation that will bend of the described line of induction 2.If this line of induction 2 adopts optical fiber fabrication to form, can be the smoothly crooked logical light of this line of induction 2, simultaneously because the position of line of induction bending change is more, the logical light of its generation changes more obvious, thereby its sensitivity also will increase for it, can significantly strengthen the monitoring capability of whole inductive layer.Preferably, the cross section of each described ordinate 61 is triangular in shape, one side the leg-of-mutton plane that is parallel to described plate body group 100 places, and right summit, this limit is provided with chamfering, to reduce its sharp property, makes the described ordinate 61 of walking around that the described line of induction 2 can be level and smooth.
Utility model also provides the monitoring of respiration mattress, comprises inductive layer as above, and it is provided with the package assembly of parcel inductive layer.
The above is only preferred embodiment of the present utility model; not in order to limit this utility model; all any modifications of doing within spirit of the present utility model and principle, be equal to and replace and improvement etc., within all should being included in protection domain of the present utility model.
Claims (10)
1. inductive layer, be located in the inside of monitoring of respiration mattress, it is characterized in that: comprise at least two plate body groups that are arranged side by side, described plate body group comprises plate body and the buckle of mutual fastening, and being set around the line of induction between described plate body and buckle, the flexible piece by strip between the edge of each described plate body group interconnects; Each described plate body is provided with the coiling screens that at least two rows are arranged side by side, and each described coiling screens comprises the arc-shape winding piece of some pitch arrangement, and the arc-shape winding piece mutual dislocation in two adjacent row's coiling screens arranges; On each described plate body, the described line of induction is set around between the two adjacent arc-shape winding pieces of arranging in the coiling screens; Cut out along its length direction on described flexible piece and establish some location cut channel; Between each described plate body group, the described line of induction is along the length direction of described flexible piece and pass described location cut channel to be located on described flexible piece.
2. inductive layer according to claim 1, it is characterized in that: each described plate body is provided with the coiling screens that two rows are parallel to each other, and the edge of described plate body is located in each described coiling screens.
3. inductive layer according to claim 1, it is characterized in that: described buckle has identical structure with described plate body, and between each adjacent described arc-shape winding piece, spacing equates, and its spacing can hold a described arc-shape winding piece.
4. inductive layer according to claim 1 is characterized in that: described arc-shape winding piece comprises one arc and some limit fasteners that is stretched out by the arc limit of described arc, and the described line of induction is walked around arc arc limit radius size between 6mm ~ 25mm.
5. inductive layer according to claim 1, it is characterized in that: described arc-shape winding piece is embedded on described plate body, its arc limit and described plate body form the arc groove of the described line of induction of winding, also are provided with tangent with described arc groove on described plate body and are communicated with each arc groove that is positioned in same coiling screens.
6. inductive layer according to claim 1 is characterized in that: described location cut channel is for " V " font or be arcs of recesses, and the opening direction of adjacent two location cut channels is opposite.
7. inductive layer according to claim 1, it is characterized in that: described flexible piece is symmetrically arranged with the button bit of some mutual fastenings along its length direction.
8. inductive layer according to claim 1, is characterized in that: be provided with the flexible thin rete between described plate body and buckle.
9. inductive layer according to claim 1, it is characterized in that: be respectively equipped with grid on described plate body and buckle, described grid comprises the vertical ordinate of the some and described line of induction; Be positioned at ordinate and the ordinate mutual dislocation setting that is positioned on described buckle on described plate body, and has the gap that can supply the described line of induction to pass between the ordinate of the position that described plate body is corresponding with described buckle, this gap is slightly larger than the radius of the described line of induction, and the described line of induction is worn between the ordinate of the ordinate that is sandwiched in described plate body and described buckle.
10. the monitoring of respiration mattress, is characterized in that: comprise inductive layer as described in claim 1 to 9 any one.
Priority Applications (1)
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CN 201220609127 CN202942112U (en) | 2012-11-16 | 2012-11-16 | Induction layer and respiratory monitoring mattress thereof |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN 201220609127 CN202942112U (en) | 2012-11-16 | 2012-11-16 | Induction layer and respiratory monitoring mattress thereof |
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CN202942112U true CN202942112U (en) | 2013-05-22 |
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CN 201220609127 Withdrawn - After Issue CN202942112U (en) | 2012-11-16 | 2012-11-16 | Induction layer and respiratory monitoring mattress thereof |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102988050A (en) * | 2012-11-16 | 2013-03-27 | 汇嘉健康生活科技有限公司 | Induction layer and respiration monitoring mattress thereof |
WO2017143780A1 (en) * | 2016-02-26 | 2017-08-31 | 深圳和而泰智能控制股份有限公司 | Sleep monitor and control box thereof |
CN107692973A (en) * | 2017-10-19 | 2018-02-16 | 北京浩雨固定式护颈托枕科技有限公司 | A kind of life sign monitor system based on Fibre Optical Sensor |
-
2012
- 2012-11-16 CN CN 201220609127 patent/CN202942112U/en not_active Withdrawn - After Issue
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102988050A (en) * | 2012-11-16 | 2013-03-27 | 汇嘉健康生活科技有限公司 | Induction layer and respiration monitoring mattress thereof |
CN102988050B (en) * | 2012-11-16 | 2017-05-31 | 汇嘉健康生活科技有限公司 | Inductive layer and its monitoring of respiration mattress |
WO2017143780A1 (en) * | 2016-02-26 | 2017-08-31 | 深圳和而泰智能控制股份有限公司 | Sleep monitor and control box thereof |
CN107692973A (en) * | 2017-10-19 | 2018-02-16 | 北京浩雨固定式护颈托枕科技有限公司 | A kind of life sign monitor system based on Fibre Optical Sensor |
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Granted publication date: 20130522 Effective date of abandoning: 20170531 |
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