Newborn monitoring device for obstetrical nursing
By designing a neonatal monitoring device with a constant temperature bed, slag removal, temporary air filtration, and power outage ventilation mechanism, the problem of carbon dioxide accumulation and oxygen deficiency caused by the interruption of air circulation in the incubator during power outages has been solved, thus achieving air circulation and ensuring the safety of newborns in the event of a sudden power outage.
Patent Information
- Application Number
- CN202511510123.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-22
- Publication Date
- 2026-01-30
AI Technical Summary
In the event of a sudden power outage, the air circulation system of existing incubators stops operating, leading to the accumulation of carbon dioxide and oxygen deficiency, which increases the risk of neonatal asphyxia.
A neonatal monitoring device was designed, comprising a constant temperature bed mechanism, a slag removal mechanism, a temporary air filtration mechanism, and a power-off ventilation mechanism. The constant temperature bed mechanism is driven by a backup power supply for ventilation, and the power-off ventilation mechanism is automatically triggered when the power is depleted. The temporary air filtration mechanism filters the air to ensure unobstructed airflow and prevent hypoxia.
In the event of a power outage, the device can automatically activate the backup power supply to drive the constant temperature bed mechanism to ventilate, filter the air through a temporary air filtration mechanism to prevent newborn suffocation, ensure air circulation, and reduce the risk of suffocation.
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Figure CN121421789A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of obstetric nursing, in particular to a newborn monitoring device for obstetric nursing. BACKGROUND
[0002] Obstetrics is one of the four major disciplines of clinical medicine, mainly studying the etiology, pathology, diagnosis and prevention and treatment of female reproductive organ diseases, the physiological and pathological changes of pregnancy and childbirth, the prevention and diagnosis and treatment of high-risk pregnancy and dystocia, female reproductive endocrine and women's health care, etc.
[0003] In obstetric nursing, part of the newborns need to be placed in an incubator for vital sign monitoring and support. The conventional incubator usually relies on the built-in air circulation system to maintain the air update in the incubator after the operation window is closed. However, this system has potential risks, especially in the case of sudden power failure, the air circulation system stops running, and the air in the incubator cannot be effectively updated, which may lead to carbon dioxide accumulation and oxygen deficiency, thereby increasing the risk of neonatal asphyxia. SUMMARY
[0004] In view of the deficiencies of the prior art, the present application provides a newborn monitoring device for obstetric nursing, which solves the problems mentioned in the background.
[0005] The application provides the following technical scheme: a kind of newborn monitoring device for obstetric nursing, comprising: constant temperature bed mechanism, the inside installation of constant temperature bed mechanism is equipped with deslagging mechanism, the top of constant temperature bed mechanism is equipped with temporary air filtering mechanism, both sides of constant temperature bed mechanism are equipped with power-off ventilation mechanism, and constant temperature bed mechanism includes bed bottom shell, flip bin, exhaust air guide shell, exhaust air guide seat, air extraction motor, air extraction fan blade, breathable pad, waste gas discharge hole and standby power supply, the top of bed bottom shell is rotatably connected with flip bin, the middle of the bottom of bed bottom shell is fixedly connected with exhaust air guide shell, the inside of exhaust air guide shell is fixedly connected with exhaust air guide seat, the bottom of exhaust air guide seat is fixedly installed with air extraction motor, the output end of air extraction motor is fixedly installed with air extraction fan blade, and air extraction fan blade is located in the inside of exhaust air guide shell, the inside of bed bottom shell is fixedly connected with breathable pad, the surface of the two sides of breathable pad is penetrated with waste gas discharge hole, the inside of bed bottom shell is fixedly installed with standby power supply, and temporary air filtering mechanism includes filter box, core replacement flip cover, pad net plate, electromagnet sheet, lower convex box, armature sheet and pressure closing spring sheet, the inner wall of the top of flip bin is fixedly connected with filter box, the top of filter box is rotatably connected with core replacement flip cover, the inner wall of filter box is fixedly connected with pad net plate, the inside of pad net plate is fixedly connected with electromagnet sheet, the bottom of filter box is fixedly connected with lower convex box, the inside of lower convex box is movably provided with armature sheet, pressure closing spring sheet is fixedly connected between armature sheet and electromagnet sheet, and electromagnet sheet corresponds with armature sheet, and power-off ventilation mechanism includes ring motor, movable support ring and rubber cylinder sleeve, the two sides of flip bin are fixedly installed with ring motor, the inner wall of flip bin is rotatably connected with movable support ring, the surface of movable support ring is fixedly connected with the output end of ring motor, and the one end of movable support ring is fixedly connected with rubber cylinder sleeve.
[0006] Preferably, the constant temperature bed mechanism further comprises a safety shell, an electromagnet strip, a sealing strip, a pump gas inlet and a pump gas outlet, the safety shell is fixedly connected to the inner bottom wall of the bed bottom shell, and the safety shell is sleeved on the surface of the standby power supply, one side of the safety shell is provided with a safety pressure relief groove, the electromagnet strip is fixedly installed in the inside of the bed bottom shell, the sealing strip is fixedly attached to the upper surface of the bed bottom shell, the pump gas inlet is penetrated and arranged in the middle of the top of the exhaust air guide shell, and the pump gas outlet is penetrated and arranged on the surface of the exhaust air guide seat.
[0007] Preferably, the constant temperature bed mechanism further comprises a mounting groove and a mattress, the mounting groove is embedded on the upper surface of the breathable pad, and the surface of the breathable pad is penetrated with a breathable hole.
[0008] Preferably, the constant temperature bed mechanism further comprises an electromagnetic switch valve, a control module, an armature bar, a luminous lamp, a sensor module and a light transmission plate, the electromagnetic switch valve is fixedly installed on the surface of the flip bin, the control module is fixedly installed on both sides of the flip bin, the armature bar is fixedly connected to the bottom of the flip bin, the luminous lamp is fixedly installed on the inner top wall of the flip bin, the sensor module is fixedly installed inside the flip bin, and the light transmission plate is fixedly installed on the surface of the flip bin.
[0009] Preferably, the slag discharging mechanism comprises an ash receiving groove, an ash cleaning motor, a protective shell, a connecting block, an elastic bar and a cleaning brush, the ash receiving groove is fixedly installed inside the bed bottom shell, the ash cleaning motor and the protective shell are both fixedly installed at the bottom of the ash receiving groove, the ash cleaning motor is located inside the protective shell, the connecting block is fixedly installed at the output end of the ash cleaning motor, the elastic bar is fixedly sleeved on the surface of the connecting block, and the cleaning brush is fixedly connected to the surface of the elastic bar.
[0010] Preferably, the slag discharging mechanism further comprises a lower connector, a gas permeation cylinder, a connecting ring and a sealing ring, the lower connector is fixedly connected to the bottom of the ash receiving groove, the gas permeation cylinder is fixedly connected to the bottom of the lower connector, the connecting ring is fixedly connected to the bottom of the gas permeation cylinder, and the sealing ring is fixedly connected to the inner wall of the lower connector.
[0011] Preferably, the slag discharging mechanism further comprises a threaded bottle, a ventilation hole, a rubber ring and a filter bag, the threaded bottle is threadedly connected to the inside of the connecting ring, the ventilation hole is formed through the surface of the threaded bottle, the rubber ring is fixedly connected to the bottom of the threaded bottle, and the filter bag is fixedly connected to the inside of the threaded bottle.
[0012] Preferably, the temporary air filtering mechanism comprises a magnet block, an armature block, an air filtering pad and an activated carbon bag, the magnet block is fixedly installed inside the air filtering box, the armature block is fixedly installed inside the core replacing flip cover, the air filtering pad is fixedly connected to the inside of the air filtering box, and the activated carbon bag is movably installed between the air filtering box and the core replacing flip cover.
[0013] Preferably, the temporary air filtering mechanism further comprises an air inlet hole and a rubber sheet, the air inlet hole is formed through the bottom of the lower convex box, and the rubber sheet is fixedly sleeved on the surface of the armature sheet.
[0014] Preferably, the power-off ventilation mechanism comprises a support frame and a fixed support ring, the support frame is fixedly installed on the surface of the flip bin, the fixed support ring is fixedly connected to the inner wall of the support frame, and one end of the fixed support ring is fixedly connected to one end of the rubber cylinder sleeve.
[0015] Compared with the prior art, the present application has the following beneficial effects: The new-born monitoring device for obstetric nursing can automatically start the standby power supply to drive the constant temperature bed mechanism to realize ventilation driving when the main power supply is interrupted, and can realize air filtration through the temporary air filtration mechanism, and when the standby power supply is exhausted, the power-off ventilation mechanism of the power-off ventilation mechanism can be automatically triggered to maintain the smoothness of the air path inside the constant temperature bed mechanism, effectively preventing the risk of new-born asphyxia caused by hypoxia.
[0016] The new-born monitoring device for obstetric nursing can utilize the air extraction fan blade driven by the air extraction motor to realize smooth ventilation, and can realize active air pumping through the air extraction fan blade when the temporary air filtration mechanism is used during power failure, thereby ensuring air circulation.
[0017] The new-born monitoring device for obstetric nursing can collect dust falling from the mattress through the filter bag, and can conveniently disassemble the threaded bottle for cleaning at any time.
[0018] The new-born monitoring device for obstetric nursing can temporarily provide breathing for new-borns by filtering air through the air filter pad and activated carbon package when power is off, thereby ensuring that the device itself can maintain external air circulation for a period of time.
[0019] The new-born monitoring device for obstetric nursing can use the rubber cylinder sleeve as an operation window in normal times, and can automatically open as a ventilation window when the power is completely off, thereby avoiding sealing of the device. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 The structure of the present application is shown in the figure; Figure 2 The side view of the present application is shown in the figure; Figure 3 The structure of the present application is shown in the figure; Figure 4 The position of the bed bottom shell of the present application is shown in the figure; Figure 5 The explosion structure of the present application is shown in the figure; Figure 6 Structure diagram of the invention at the position of the ash receiving groove; Figure 7 Structure diagram of the invention at the position of the ash receiving groove; Figure 8 Structure diagram of the invention at the position of the ash receiving groove; Figure 9 Structure diagram of the invention at the position of the ash receiving groove; Figure 10 Structure diagram of the invention at the position of the ash receiving groove; Figure 11 Structure diagram of the invention at the position of the ash receiving groove;
[0021] In the figure: 101, bed bottom shell; 102, flip cover; 103, exhaust guide shell; 104, exhaust guide seat; 105, air extraction motor; 106, air extraction fan blade; 107, air permeable pad; 108, exhaust gas discharge hole; 109, backup power supply; 110, safety shell; 111, electromagnet strip; 112, sealing strip; 113, pump gas inlet; 114, pump gas outlet; 115, installation sink; 116, bed pad; 117, electromagnetic switch valve; 118, control module; 119, armature strip; 120, luminous lamp; 121, sensor module; 122, light transmission plate; 201, ash receiving groove; 202, ash cleaning motor; 203, protective shell; 204, connecting block; 205, elastic strip; 206, cleaning brush; 207, lower connecting seat; 208, air permeable cylinder; 209, connecting ring; 210, sealing ring; 211, threaded bottle; 212, air hole; 213, rubber ring; 214, filter screen bag; 301, filter box; 302, core replacement flip cover; 303, pad screen plate; 304, electromagnet piece; 305, lower convex box; 306, armature piece; 307, pressure closing spring piece; 308, magnet block; 309, armature block; 310, filter pad; 311, activated carbon package; 312, air inlet hole; 313, rubber piece; 401, ring-shaped motor; 402, dynamic support ring; 403, rubber cylinder sleeve; 404, support frame; 405, fixed support ring. DETAILED DESCRIPTION
[0022] 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. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0023] Please refer to Figures 1-11The utility model provides a kind of neonatal monitoring device for obstetric care, comprising: constant temperature bed mechanism, the inside installation of constant temperature bed mechanism is equipped with slag mechanism, the top of constant temperature bed mechanism is equipped with temporary air filter mechanism, both sides of constant temperature bed mechanism are equipped with power-off ventilation mechanism, and constant temperature bed mechanism includes bed bottom shell 101, flip bin 102, exhaust guide shell 103, exhaust guide seat 104, suction motor 105, suction fan blade 106, breathable mat 107, waste gas discharge hole 108 and standby power supply 109, flip bin 102 is rotatably connected at the top of bed bottom shell 101, exhaust guide shell 103 is fixedly connected at the middle of the bottom of bed bottom shell 101, exhaust guide seat 104 is fixedly connected in the inside of exhaust guide shell 103, suction motor 105 is fixedly installed at the bottom of exhaust guide seat 104, suction fan blade 106 is fixedly installed at the output end of suction motor 105, and suction fan blade 106 is located in the inside of exhaust guide shell 103, breathable mat 107 is fixedly connected in the inside of bed bottom shell 101, waste gas discharge hole 108 is formed in the surface close to both sides of breathable mat 107, and standby power supply 109 is fixedly installed in the inside of bed bottom shell 101, temporary air filter mechanism includes filter box 301, core changing flip cover 302, mat net plate 303, electromagnet sheet 304, lower convex box 305, armature sheet 306 and pressure closing spring sheet 307, filter box 301 is fixedly connected at the inner wall of the top of flip bin 102, core changing flip cover 302 is rotatably connected at the top of filter box 301, and through core changing flip cover 302, active carbon bag 311 can be conveniently replaced at any time, mat net plate 303 is fixedly connected at the inner wall of filter box 301, electromagnet sheet 304 is fixedly connected in the inside of mat net plate 303, lower convex box 305 is fixedly connected at the bottom of filter box 301, armature sheet 306 is movably arranged in the inside of lower convex box 305, pressure closing spring sheet 307 is fixedly connected between armature sheet 306 and electromagnet sheet 304, and electromagnet sheet 304 corresponds to armature sheet 306, power-off ventilation mechanism includes ring motor 401, dynamic support ring 402 and rubber cylinder sleeve 403, ring motor 401 is fixedly installed at both sides of flip bin 102, dynamic support ring 402 is rotatably connected at the inner wall of flip bin 102 by bearing, and the surface of dynamic support ring 402 is fixedly connected with the output end of ring motor 401, rubber cylinder sleeve 403 is fixedly connected at one end of dynamic support ring 402, by the constant temperature bed mechanism, slag mechanism, temporary air filter mechanism and power-off ventilation mechanism arranged, standby power supply 109 can be automatically started when main power is interrupted to drive constant temperature bed mechanism to realize ventilation driving, and air filtration is realized through temporary air filter mechanism, when standby power supply 109 is exhausted, the power-off ventilation mechanism of power-off ventilation mechanism can be automatically triggered, maintain the inside air passage of constant temperature bed mechanism unobstructed, effectively prevent the risk of neonatal asphyxia caused by hypoxia.
[0024] The constant temperature bed mechanism also includes a safety shell 110, an electromagnet strip 111, a sealing strip 112, a pump air inlet 113, and a pump air outlet 114. The safety shell 110 is fixedly connected to the inner bottom wall of the bed base shell 101 and is sleeved on the surface of the backup power supply 109. A safety pressure relief groove is provided on one side of the safety shell 110. The electromagnet strip 111 is fixedly installed inside the bed base shell 101. The sealing strip 112 is fixedly attached to the upper surface of the bed base shell 101. The pump air inlet 113 is opened through the middle of the top of the exhaust guide shell 103, and the pump air outlet 114 is opened through the surface of the exhaust guide seat 104.
[0025] The constant temperature bed mechanism also includes a mounting groove 115 and a mattress 116. The mounting groove 115 is embedded in the upper surface of the breathable pad 107, and the surface of the breathable pad 107 is provided with ventilation holes. The mattress 116 is fixedly installed inside the mounting groove 115.
[0026] The constant temperature bed mechanism also includes an electromagnetic switch valve 117, a control module 118, an armature bar 119, a night light 120, a sensor module 121, and a light-transmitting plate 122. The electromagnetic switch valve 117 is fixedly installed on the surface of the flip-top compartment 102, the control module 118 is fixedly installed on both sides of the flip-top compartment 102, the armature bar 119 is fixedly connected to the bottom of the flip-top compartment 102, the night light 120 is fixedly installed on the inner top wall of the flip-top compartment 102, the sensor module 121 is fixedly installed inside the flip-top compartment 102, and the light-transmitting plate 122 is fixedly installed on the surface of the flip-top compartment 102. The mechanism is connected via a bed base shell 101, a flip-top compartment 102, and an exhaust guide shell 103. The exhaust guide seat 104, the suction motor 105, the suction fan blade 106, the ventilation pad 107, the exhaust gas discharge hole 108, the backup power supply 109, the fuse box 110, the electromagnet bar 111, the sealing strip 112, the pump air inlet 113, the pump air outlet 114, the mounting groove 115, the mattress 116, the electromagnetic switch valve 117, the control module 118, the armature bar 119, the night light 120, the sensor module 121, and the light-transmitting plate 122 enable the suction motor 105 to drive the suction fan blade 106 to achieve smooth air exchange during use, and ensure that the suction fan blade 106 can actively pump air to ensure air circulation when the temporary air filtration mechanism is used during a power outage.
[0027] The slag discharge mechanism includes a slag receiving trough 201, a slag cleaning motor 202, a protective shell 203, a connecting block 204, an elastic strip 205, and a cleaning brush 206. The slag receiving trough 201 is fixedly installed inside the bed bottom shell 101. The slag cleaning motor 202 and the protective shell 203 are both fixedly installed at the bottom of the slag receiving trough 201, and the slag cleaning motor 202 is located inside the protective shell 203. The connecting block 204 is fixedly installed at the output end of the slag cleaning motor 202. The elastic strip 205 is fixedly sleeved on the surface of the connecting block 204, and the cleaning brush 206 is fixedly connected to the surface of the elastic strip 205.
[0028] Wherein, the slag discharge mechanism further comprises a lower adapter 207, a breather cylinder 208, a connecting ring 209 and a sealing ring 210, the lower adapter 207 is fixedly connected to the bottom of the ash receiving groove 201, the breather cylinder 208 is fixedly connected to the bottom of the lower adapter 207, the connecting ring 209 is fixedly connected to the bottom of the breather cylinder 208, and the sealing ring 210 is fixedly connected to the inner wall of the lower adapter 207.
[0029] Wherein, the slag discharge mechanism further comprises a threaded bottle 211, a breather hole 212, a rubber ring 213 and a filter bag 214, the threaded bottle 211 is threadedly connected to the inside of the connecting ring 209, the breather hole 212 is formed through the surface of the threaded bottle 211, the rubber ring 213 is fixedly connected to the bottom of the threaded bottle 211, and the filter bag 214 is fixedly connected to the inside of the threaded bottle 211, through the ash receiving groove 201, the ash cleaning motor 202, the protective shell 203, the connecting block 204, the elastic strip 205, the cleaning brush 206, the lower adapter 207, the breather cylinder 208, the connecting ring 209, the sealing ring 210, the threaded bottle 211, the breather hole 212, the rubber ring 213 and the filter bag 214, the filter bag 214 can be used to collect the dust falling from the mattress 116, and the threaded bottle 211 can be conveniently disassembled and cleaned at any time.
[0030] Wherein, the temporary air filter mechanism comprises a magnet block 308, an armature block 309, an air filter pad 310 and an activated carbon bag 311, the magnet block 308 is fixedly installed in the inside of the filter box 301, the armature block 309 is fixedly installed in the inside of the core changing flip cover 302, the air filter pad 310 is fixedly connected to the inside of the filter box 301, and the activated carbon bag 311 is movably installed between the filter box 301 and the core changing flip cover 302.
[0031] Wherein, the temporary air filter mechanism further comprises an air inlet hole 312 and a rubber sheet 313, the air inlet hole 312 is formed through the bottom of the lower convex box 305, and the rubber sheet 313 is fixedly sleeved on the surface of the armature sheet 306, through the filter box 301, the core changing flip cover 302, the pad screen plate 303, the electromagnet sheet 304, the lower convex box 305, the armature sheet 306, the pressure closing spring sheet 307, the magnet block 308, the armature block 309, the air filter pad 310, the activated carbon bag 311, the air inlet hole 312 and the rubber sheet 313, the air filter pad 310 and the activated carbon bag 311 can be used to filter air to temporarily provide breathing for the newborn when power is off, and the device itself can maintain air external circulation for a period of time.
[0032] Wherein; power ventilation mechanism includes support frame 404 and fixed support ring 405, support frame 404 is fixedly installed on the surface of the flip bin 102, fixed support ring 405 is fixedly connected on the inner wall of support frame 404, and one end of fixed support ring 405 is fixedly connected with one end of rubber cylinder sleeve 403, through the setting of annular motor 401, movable support ring 402, rubber cylinder sleeve 403, support frame 404 and fixed support ring 405, it can be used as an operating window through rubber cylinder sleeve 403 in ordinary times, and it can be opened as a ventilation window when the power is completely cut off, so as to avoid the sealing of the device inside.
[0033] Working principle: In use, the electromagnetic switch valve 117 is connected with the external gas treatment system, the fresh air with appropriate humidity and heat is pumped through the external gas treatment system, the electromagnetic switch valve 117 is opened, the annular motor 401 is started, the annular motor 401 drives the movable support ring 402 to rotate, the movable support ring 402 drives one end of the rubber cylinder sleeve 403 to twist when rotating, since the other end of the rubber cylinder sleeve 403 is fixed, the twisting of one end of the rubber cylinder sleeve 403 will tighten the middle part to be closed, so that the inside of the flip bin 102 is closed, then the air suction motor 105 is started, the air suction motor 105 drives the air suction fan blade 106 to rotate, the air suction fan blade 106 rotates to suck the waste gas in the bed bottom shell 101, so that the waste gas in the flip bin 102 passes through the waste gas discharge hole 108 or passes through the mattress 116 and the installation sink 115 to reach the ash receiving groove 201, when the waste gas passes through the mattress 116, it will frequently take away the dust or small waste particles in the mattress 116, so that it falls to the surface of the ash receiving groove 201, then the gas enters the lower connector 207 and is discharged from the air permeable cylinder 208 to the lower side of the ash receiving groove 201, at this time, the dust in the waste is intercepted by the filter screen bag 214, then the waste gas enters the exhaust guide shell 103 and is discharged by the air suction fan blade 106, so that the gas can continuously circulate and exchange; When cleaning the surface of the ash receiving groove 201, the air suction motor 105 and the dust removal motor 202 are started, the dust removal motor 202 drives the elastic strip 205 to rotate through the connecting block 204, the elastic strip 205 rotates to move the surface of the ash receiving groove 201 through the cleaning brush 206, so that the dust or small waste particles on the surface of the ash receiving groove 201 can be collected into the filter screen bag 214 by the suction force generated by the air suction motor 105; When the power is off, the control module 118 controls the standby power supply 109 to supply power to the ring motor 401, the air extraction motor 105 and the electromagnetic iron sheet 304, the electromagnetic switch valve 117 is closed, the air extraction motor 105 continues to extract exhaust gas, the ring motor 401 continues to keep the rubber cylinder sleeve 403 closed, the electromagnetic iron sheet 304 is powered on, the lower convex box 305 is powered on and attracts the armature sheet 306, so that the rubber sheet 313 removes the closure of the air inlet hole 312, the air inlet hole 312 is unobstructed, and due to the suction of the air extraction motor 105, a negative pressure is formed in the flip cover 102, at this time, external air will be continuously sucked by the negative pressure, so that the air passes through the filter core flip cover 302, the activated carbon bag 311 and the filter pad 310 for filtering, and the filtered air enters the lower convex box 305 through the pad net plate 303, and then enters the flip cover 102 through the air inlet hole 312 to be inhaled by the baby; When the energy of the standby power supply 109 is used up, the air extraction motor 105 stops, the electromagnetic iron sheet 304 is powered off, the pressure closing spring sheet 307 is bounced back to the rubber sheet 313 to close the air inlet hole 312, and at the same time, the ring motor 401 is powered off, the torsion of the rubber cylinder sleeve 403 is released to bounce back, thereby pushing back the ring motor 401 in the opposite direction and unfolding, so as to keep unobstructed, so that the device uses the opened rubber cylinder sleeve 403 to flow air, thereby avoiding asphyxia of the newborn.
[0034] Although the embodiments of the present application have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. A neonatal monitoring device for obstetric care, characterized in that, The utility model relates to a constant temperature bed mechanism, the inside installation of the constant temperature bed mechanism is discharged, the top of the constant temperature bed mechanism is installed with temporary filter mechanism, both sides of the constant temperature bed mechanism are installed with power-off ventilation mechanism. The utility model relates to a constant temperature bed mechanism, the inside installation of the constant temperature bed mechanism is discharged, the top of the constant temperature bed mechanism is installed with temporary filter mechanism, both sides of the constant temperature bed mechanism are installed with power-off ventilation mechanism. 2. A neonatal monitoring device for obstetric care as claimed in claim 1, wherein, The constant temperature bed mechanism further comprises a containment shell (110), an electromagnet strip (111), a sealing strip (112), a pump gas inlet (113) and a pump gas outlet (114), the containment shell (110) is fixedly connected to the inner bottom wall of the bed bottom shell (101), the containment shell (110) is sleeved on the surface of the backup power supply (109), one side of the containment shell (110) is provided with a safety relief groove, the electromagnet strip (111) is fixedly installed in the interior of the bed bottom shell (101), the sealing strip (112) is fixedly attached to the upper surface of the bed bottom shell (101), the pump gas inlet (113) is throughly provided in the middle of the top of the exhaust guide shell (103), and the pump gas outlet (114) is throughly provided on the surface of the exhaust guide seat (104).
3. A neonatal monitoring device for obstetric care according to claim 2, characterized in that, The constant temperature bed mechanism further comprises a mounting groove (115) and a mattress (116), the mounting groove (115) is embeddedly provided on the upper surface of the breathable cushion plate (107), and the surface of the breathable cushion plate (107) is throughly provided with a breathable hole, and the mattress (116) is fixedly installed in the interior of the mounting groove (115).
4. A neonatal monitoring device for obstetric care according to claim 3, characterized in that, The constant temperature bed mechanism further comprises an electromagnetic switch valve (117), a control module (118), an armature strip (119), a luminous lamp (120), a sensor module (121) and a light transmission plate (122), the electromagnetic switch valve (117) is fixedly installed on the surface of the flip cover bin (102), the control module (118) is fixedly installed on both sides of the flip cover bin (102), the armature strip (119) is fixedly connected to the bottom of the flip cover bin (102), the luminous lamp (120) is fixedly installed on the inner top wall of the flip cover bin (102), the sensor module (121) is fixedly installed in the interior of the flip cover bin (102), and the light transmission plate (122) is fixedly installed on the surface of the flip cover bin (102).
5. A neonatal monitoring device for obstetric care as claimed in claim 1, wherein, The slag discharging mechanism comprises an ash receiving groove (201), an ash cleaning motor (202), a protective shell (203), a connecting block (204), an elastic strip (205) and a cleaning brush (206), the ash receiving groove (201) is fixedly installed in the interior of the bed bottom shell (101), the ash cleaning motor (202) and the protective shell (203) are both fixedly installed at the bottom of the ash receiving groove (201), the ash cleaning motor (202) is located in the interior of the protective shell (203), the connecting block (204) is fixedly installed at the output end of the ash cleaning motor (202), the elastic strip (205) is fixedly sleeved on the surface of the connecting block (204), and the cleaning brush (206) is fixedly connected to the surface of the elastic strip (205).
6. A neonatal monitoring device for obstetric care according to claim 5, characterized in that, The slag discharging mechanism further comprises a lower connector (207), a breathable cylinder (208), a connecting ring (209) and a sealing ring (210), the lower connector (207) is fixedly connected to the bottom of the ash receiving groove (201), the breathable cylinder (208) is fixedly connected to the bottom of the lower connector (207), the connecting ring (209) is fixedly connected to the bottom of the breathable cylinder (208), and the sealing ring (210) is fixedly connected to the inner wall of the lower connector (207).
7. A neonatal monitoring device for obstetric care according to claim 6, characterized in that, The residue discharging mechanism further comprises a threaded bottle (211), a vent hole (212), a rubber ring (213) and a filter bag (214), the threaded bottle (211) is threadedly connected to the inside of the connecting ring (209), the vent hole (212) is formed through the surface of the threaded bottle (211), the rubber ring (213) is fixedly connected to the bottom of the threaded bottle (211), and the filter bag (214) is fixedly connected to the inside of the threaded bottle (211).
8. A neonatal monitoring device for obstetric care as claimed in claim 1, wherein, The temporary air filtering mechanism comprises a magnet block (308), an armature block (309), an air filtering pad (310) and an activated carbon bag (311), the magnet block (308) is fixedly installed in the inside of the air filtering box (301), the armature block (309) is fixedly installed in the inside of the core replacing flip cover (302), the air filtering pad (310) is fixedly connected to the inside of the air filtering box (301), and the activated carbon bag (311) is movably installed between the air filtering box (301) and the core replacing flip cover (302).
9. A neonatal monitoring device for obstetric care according to claim 8, characterized in that, The temporary air filtering mechanism further comprises an air inlet hole (312) and a rubber sheet (313), the air inlet hole (312) is formed through the bottom of the lower convex box (305), and the rubber sheet (313) is fixedly sleeved on the surface of the armature sheet (306).
10. A neonatal monitoring device for obstetric care as claimed in claim 1, wherein, The power-off ventilation mechanism comprises a support frame (404) and a fixed support ring (405), the support frame (404) is fixedly installed on the surface of the flip cover bin (102), the fixed support ring (405) is fixedly connected to the inner wall of the support frame (404), and one end of the fixed support ring (405) is fixedly connected to one end of the rubber cylinder sleeve (403).