CN211409799U - Multifunctional neonate warm-keeping table - Google Patents

Multifunctional neonate warm-keeping table Download PDF

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Publication number
CN211409799U
CN211409799U CN201922453076.0U CN201922453076U CN211409799U CN 211409799 U CN211409799 U CN 211409799U CN 201922453076 U CN201922453076 U CN 201922453076U CN 211409799 U CN211409799 U CN 211409799U
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controller
infrared
module
set forth
keeps warm
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赵雪晴
张聪
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Chongqing Traditional Chinese Medicine Hospital
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Chongqing Traditional Chinese Medicine Hospital
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Abstract

The utility model relates to the technical field of infant medical equipment, in particular to a multifunctional newborn warming table, which comprises a support frame and a baby crib, a control device and an irradiation device which are arranged on the support frame from bottom to top in sequence, wherein the irradiation device comprises a mounting frame which is positioned right above the baby crib, and an infrared radiation lamp, an infrared imaging sensor and an infrared temperature measuring sensor are arranged on the mounting frame; the control device comprises a controller, a control panel, a memory and a data communication module, wherein the control panel, the weight detection device, the infrared radiation lamp, the infrared imaging sensor and the infrared temperature measurement sensor are all electrically connected with the controller; the controller is used for detecting the weight of the baby through the weight detection device, and the controller is also used for generating an infrared chart through the infrared imaging sensor. The utility model provides a pair of multi-functional neonate platform that keeps warm, functions such as integrated body temperature, weight, thermal imaging, data storage and management, the convenient medical personnel that can be very big manages the neonate.

Description

Multifunctional neonate warm-keeping table
Technical Field
The utility model relates to a baby medical equipment technical field specifically is a cold-proof platform of multi-functional neonate.
Background
The infant radiation incubator is a special nursing warm-keeping apparatus for newborns, premature infants, sick-dangerous infants and wakened infants, provides a suitable environment for the premature infants and sick infants, and is used for infusion, rescue, hospitalization observation and the like of the newborns.
Need measure and control neonate's each item physiological parameter in the period of being in hospital, move back yellow treatment to the state of an illness such as jaundice simultaneously, present insulation can function singleness, each item detects the function and all realizes through the mode of external check out test set, and the equipment that needs the operation is many, occupies bulky, and the operation is inconvenient, and each equipment data separation, is unfavorable for medical personnel to nurse the neonate.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problem, the utility model provides a multi-functional neonate platform that keeps warm.
The application provides the following technical scheme:
a multifunctional neonate warm-keeping table comprises a support frame, wherein a crib, a control device and an irradiation device are sequentially arranged on the support frame from bottom to top, the irradiation device comprises a mounting frame, the mounting frame is located right above the crib, and an infrared radiation lamp, an infrared imaging sensor and an infrared temperature measurement sensor are arranged on the mounting frame;
the crib comprises a supporting plate, wherein a weight detection device is arranged on the supporting plate, and a mattress is laid on the weight detection device; the control device comprises a controller, a control panel, a memory and a data communication module, wherein the control panel, the weight detection device, the infrared radiation lamp, the infrared imaging sensor and the infrared temperature measurement sensor are all electrically connected with the controller;
the controller is used for detecting the weight of the infant through the weight detection device, generating an infrared chart through the infrared imaging sensor, detecting the temperature of the infant through the infrared temperature measurement sensor, storing the obtained data in the memory, sending the data to the upper computer system or the monitoring terminal through the data communication module, and controlling the working state of the infrared radiation lamp according to signals of the control panel.
The utility model discloses among the technical scheme, can detect baby's weight data through weight detection device, can detect baby's skin temperature through infrared temperature sensor, can carry out the thermal imaging physical examination to the baby through infrared thermal imaging sensor, the controller can send data in real time for host computer system or monitor terminal through data communication module, can conveniently carry out digital management on the one hand, on the other hand can let the doctor master baby's each item parameter in real time through host computer system or monitor terminal, and then in time discover the abnormal conditions. The utility model provides a function such as cold-proof platform integrated body temperature of multi-functional neonate, weight, thermal imaging, data storage and management can make things convenient for medical personnel to nurse the neonate by very big.
Further, still be equipped with the blue light lamp on the mounting bracket, the blue light lamp is connected with controller signal, the controller still is used for the operating condition according to control panel's signal control blue light lamp.
The baby can be conveniently treated by the blue light lamp to fade yellow, and the on-off, the brightness and the like of the blue light lamp can be adjusted through the control panel.
Further, the control panel comprises keys and a display, and the controller is also used for controlling the display to display the acquired data.
User input is obtained through keys, and system data are displayed through a display, so that medical personnel can conveniently check the data.
And the controller is used for controlling the on-off of the alarm module according to the signal of the infrared temperature measurement sensor. When the abnormity is detected, the medical staff is reminded in real time through the alarm module.
The infrared radiation lamp and the blue light lamp are connected with the controller through the controller, the controller is used for controlling the on-off of the infrared radiation lamp and the blue light lamp according to signals of the delay module, and the controller is used for controlling the on-off of the infrared radiation lamp and the blue light lamp according to signals of the delay module. The time delay module can control infrared irradiation and the like and the blue light lamp to be automatically turned off, so that the function of a timing switch is realized.
Further, the data communication module comprises one or more of an RS484 communication module, a WIFI module, a Bluetooth module and a mobile communication module. The communication modules are all common communication modules, are wide in popularization range and easy to develop and debug.
Further, a breathing detection module is further arranged between the mattress and the weight detection device and used for detecting the breathing state of the baby according to pressure change, and the breathing detection module is in signal connection with the controller. The breathing state of the baby is monitored through pressure change.
Furthermore, the support frame is also provided with an object stage and an infusion support. Other articles can be conveniently placed and the infusion bottle can be conveniently hung.
Furthermore, the support frame includes base and bracing piece, mounting bracket, objective table and infusion support all with bracing piece sliding connection, the one end that mounting bracket, objective table and infusion support and bracing piece are connected all is equipped with the locking device who is used for the location.
Through sliding connection, the height of the infusion support, the height of the object stage and the height of the mounting rack are convenient to adjust.
Furthermore, vertical sliding grooves are formed in two sides of the supporting rod, the objective table, the infusion support and the mounting rack are connected with the supporting rod in a sliding mode through the sliding grooves, the locking device comprises locking screws, and a plurality of positioning holes matched with the locking screws are formed in the sliding grooves.
The sliding connection is realized through the sliding groove, and the positioning is realized through the locking screw.
Drawings
Fig. 1 is a logic block diagram of a first embodiment of a multifunctional newborn warming table of the present invention;
fig. 2 is an isometric view of a first embodiment of a multifunctional neonatal warming table of the present invention;
fig. 3 is a bottom view of a multifunctional neonate warming table according to a first embodiment of the present invention;
fig. 4 is an isometric view of a second embodiment of a multifunctional neonatal warming table of the present invention;
fig. 5 is a bottom view of a second embodiment of the multifunctional neonate warming table of the present invention;
fig. 6 is another bottom view of the second embodiment of the multifunctional neonate warming table of the present invention.
Detailed Description
The following is further detailed by way of specific embodiments:
the reference numbers in the drawings of the specification include: the multifunctional baby stroller comprises a base 1, a support rod 2, a mounting frame 3, universal wheels 11, a sliding groove 21, locking screws 22, an object stage 4, a shell 31, a light-transmitting cover 32, an infrared temperature measuring sensor 33, an infrared imaging sensor 34, an infrared radiant lamp 35, a blue light lamp 36, a transfusion stand 5, a baby crib 6, a support plate 61, a mattress 62, a baffle plate 63, a control panel 9, a frame body 52, an I-shaped sliding block 51, adjusting screws 53, a T-shaped sliding block 41 and an accommodating box 42.
Example one
As shown in fig. 1 to 3, the multifunctional neonate warming table of this embodiment includes a support frame, a crib 6, a control device and an irradiation device are sequentially installed on the support frame from bottom to top, the irradiation device includes an installation frame 3, the installation frame 3 is located right above the crib 6, specifically, the support frame includes a base 1 and a support rod 2, a self-locking universal wheel 11 is installed below the base 1, in this embodiment, the structures and connection modes of the support frame, the crib 6 and the installation frame 3 all adopt the prior art, such as the existing body structure of BN-100A, in this embodiment, a shell 31 is sleeved outside the installation frame 3, and an infrared radiation lamp 35, an infrared imaging sensor 34, a blue light 36 and an infrared temperature measurement sensor 33 are installed on the installation frame 3; the bottom of the shell 31 is provided with a light-transmitting cover 32, and the top of the shell 31 is provided with heat dissipation holes so as to facilitate the work of the devices.
The control device comprises a controller, a control panel 9, a time delay module, an alarm module, a memory and a data communication module, wherein the control panel 9 comprises keys and a display.
Crib 6 includes backup pad 61, is equipped with weight detection device in the backup pad 61, and backup pad 61 is connected with baffle 63 all around the joint, and baffle 63 adopts transparent plastic in this embodiment, is equipped with the size scale on baffle 63. A mattress 62 is laid on the weight detection device; in this embodiment, the weight detecting device includes pressure sensors and a support plate, the pressure sensors are disposed between the support plate and the support plate 61, the number of the pressure sensors is 4, preferably, L10C sensors of LMNC are disposed at four corners of the bottom surface of the support plate, the pressure sensors are analog voltage output sensors, in this embodiment, the pressure sensors are connected to an AD conversion interface of the controller, and the controller obtains a detection result of the weight detecting device through AD conversion.
The key, the display, the time delay module, the alarm module, the memory, the data communication module, the infrared radiation lamp 35, the blue light lamp 36, the infrared imaging sensor 34 and the infrared temperature measurement sensor 33 are all electrically connected with the controller; specifically, in this implementation, the controller adopts STM32 series singlechip, preferably STM32H7 series high performance singlechip, and in other embodiments of this application, the controller also can adopt PLC, and in this embodiment, the display adopts 7 inches LCD, and the button is the keyboard, including blue light switching button, infrared attached lamp switching button, regularly sets up button, temperature regulation button, blue light luminance regulation button, temperature measurement button etc.. In this embodiment, the delay module adopts a built-in timer of the single chip, and in other embodiments of the present application, the delay module may also adopt a 555 timing circuit constructed by a 555 timing chip. The alarm module comprises a warning lamp and a buzzer, alarms are carried out in two modes of sound and light, the warning lamp is optimized to be a red LED lamp bead, the memory adopts a built-in EEPROM of a single chip microcomputer or adopts an external connection mode to connect an existing SD card module, and then data of the SD card is read and written through a serial port. The data communication module adopts one or more of an RS484 communication module, a WIFI module, a Bluetooth module and a mobile communication module, and in this embodiment, the data communication module adopts a mobile communication module, specifically a 4G network communication module. The power supply driving circuit of the infrared radiation lamp 35 and the blue light lamp 36 is provided with a relay, an output pin of the controller is connected with the relay, the controller realizes on-off control of infrared radiation and the like and blue light and the like through the controller relay, the infrared attached lamp and the blue light lamp 36 adopt a PWM lamp light driving chip, and the controller controls the size of the output current of the driving chip through a PWM modulation mode so as to control the brightness of the lamp light. The infrared imaging sensor 34 is a ThermEye-b120 sensor which is connected with a signal input pin of the controller, and the infrared temperature measurement sensor 33 is an OS137A-1 infrared temperature measurement sensor 33 which outputs through an analog voltage signal, so that the infrared imaging sensor is connected with an AD conversion input end of the singlechip.
The controller is used for detecting the weight of the baby through the weight detection device, the controller is also used for generating an infrared chart through the infrared imaging sensor 34, the controller is also used for detecting the temperature of the baby through the infrared temperature measurement sensor 33, the controller is also used for storing the acquired data into the memory and sending the data to the upper computer system or the monitoring terminal through the data communication module, the controller is used for displaying the detected temperature, weight, infrared chart and the like through the display, and the controller is also used for controlling the working states of the infrared radiation lamp 35 and the blue light lamp 36 according to signals of the control panel 9, wherein the working states comprise power (brightness) and an opening and closing state.
The controller is further configured to control the alarm module to be turned on or off according to a signal of the infrared temperature sensor 33, a voltage comparator may be connected in parallel to an output end of the infrared temperature sensor 33, a voltage of a reference voltage of the voltage comparator corresponding to a threshold temperature is set, when the temperature is detected to exceed the threshold, the voltage comparator inputs a corresponding level to the controller, the controller controls the alarm module to be turned on, and in other embodiments, the controller may be directly used to perform comparison and determination on a value, so as to control the alarm module to be turned on or turned off.
The controller is further used for controlling the on-off of the delay module according to a signal of the control panel 9, the controller is used for controlling the on-off of the infrared radiation lamp 35 and the blue light lamp 36 according to the signal of the delay module, medical staff can control the delay on-off through a key of the control panel 9, after the delay is finished, the delay module sends a level signal to the controller, and after the controller receives the signal, the infrared radiation lamp 35 and the blue light lamp 36 are turned off.
Example two
As shown in fig. 4, 5 and 6, the difference between the present embodiment and the first embodiment is that the support frame of the present embodiment is further provided with a stage 4 and an infusion support 5. The support frame includes base 1 and bracing piece 2, and mounting bracket 3, objective table 4 and infusion support 5 all with 2 sliding connection of bracing piece, the one end that mounting bracket 3, objective table 4 and infusion support 5 and bracing piece 2 are connected all is equipped with the locking device who is used for the location. Two sides of the support rod 2 are provided with vertical sliding grooves 21, the objective table 4, the infusion support 5 and the mounting rack 3 are in sliding connection with the support rod 2 through the sliding grooves 21, the locking device comprises locking screws 22, and a plurality of positioning holes matched with the locking screws 22 are formed in the sliding grooves 21; specifically, the object stage 4 comprises a T-shaped sliding block 41 and an accommodating box 42, the cross section of the sliding groove 21 is T-shaped matched with the T-shaped sliding block 41, one end of the T-shaped sliding block 41 extends into the sliding groove 21, and the other end of the T-shaped sliding block 41 is welded to the accommodating box 42 through a bolt; the infusion support 5 comprises a support body 52, an I-shaped slide block 51 and an adjusting screw 53, wherein one end of the I-shaped slide block 51 extends into the sliding groove 21, the support body 52 is inserted into the other end of the I-shaped slide block 51, and the adjusting screw 53 is used for locking the support body 52.
EXAMPLE III
The difference between the present embodiment and the first embodiment is that a breath detection module is further disposed between the mattress 62 and the support plate of the weight detection device, the breath detection module is used for detecting the breath state of the infant according to the pressure change, and the breath detection module is in signal connection with the controller. In this embodiment, the respiration detection module employs a pressure sensor, preferably an MD30-60 film pressure sensor, and the controller determines the respiration state of the infant according to the data of the pressure sensor.
The above are only embodiments of the present invention, and the present invention is not limited to the field related to this embodiment, and the common general knowledge of the known specific structures and characteristics in the scheme is not described too much, and those skilled in the art know the common technical knowledge in the technical field of the present invention before the application date or the priority date, can know all the prior art in this field, and have the ability to apply the conventional experimental means before this date, and those skilled in the art can combine their own ability to perfect and implement the scheme, and some typical known structures or known methods should not become the obstacles for those skilled in the art to implement the present application. It should be noted that, for those skilled in the art, without departing from the structure of the present invention, several modifications and improvements can be made, which should also be regarded as the protection scope of the present invention, and these will not affect the effect of the implementation of the present invention and the practicability of the patent. The scope of the claims of the present application shall be determined by the contents of the claims, and the description of the embodiments and the like in the specification shall be used to explain the contents of the claims.

Claims (10)

1. The utility model provides a cold-proof platform of multi-functional neonate, includes the support frame by supreme crib, controlling means and the irradiation device of being equipped with in proper order down on the support frame, irradiation device includes the mounting bracket, the mounting bracket is located the crib directly over its characterized in that:
the mounting rack is provided with an infrared radiation lamp, an infrared imaging sensor and an infrared temperature measuring sensor; the crib comprises a supporting plate, wherein a weight detection device is arranged on the supporting plate, and a mattress is laid on the weight detection device;
the control device comprises a controller, a control panel, a memory and a data communication module, wherein the control panel, the weight detection device, the infrared radiation lamp, the infrared imaging sensor and the infrared temperature measurement sensor are all electrically connected with the controller;
the controller is used for detecting the weight of the infant through the weight detection device, generating an infrared chart through the infrared imaging sensor, detecting the temperature of the infant through the infrared temperature measurement sensor, storing the acquired data in the memory and sending the data to the upper computer system through the data communication module, and controlling the working state of the infrared radiation lamp according to signals of the control panel.
2. A multi-functional neonate keeps warm as set forth in claim 1, characterized in that: still be equipped with the blue light lamp on the mounting bracket, the blue light lamp is connected with controller signal, the controller still is used for the operating condition according to control panel's signal control blue light lamp.
3. A multi-functional neonate keeps warm as set forth in claim 1, characterized in that: the control panel comprises keys and a display, and the controller is also used for controlling the display to display the acquired data.
4. A multi-functional neonate keeps warm as set forth in claim 1, characterized in that: the controller is used for controlling the on-off of the alarm module according to signals of the infrared temperature measuring sensor.
5. A multi-functional neonate keeps warm as set forth in claim 1, characterized in that: the infrared radiation lamp and the blue light lamp are connected with the controller through the controller, the controller is used for controlling the on-off of the infrared radiation lamp and the blue light lamp according to signals of the delay module, and the controller is used for controlling the on-off of the infrared radiation lamp and the blue light lamp according to signals of the delay module.
6. A multi-functional neonate keeps warm as set forth in claim 1, characterized in that: the data communication module comprises one or more of an RS484 communication module, a WIFI module, a Bluetooth module and a mobile communication module.
7. A multi-functional neonate keeps warm as set forth in claim 1, characterized in that: the baby breathing device is characterized in that a breathing detection module is further arranged between the mattress and the weight detection device, the breathing detection module is used for detecting the breathing state of a baby according to pressure change, and the breathing detection module is in signal connection with the controller.
8. A multi-functional neonate keeps warm as set forth in claim 1, characterized in that: the support frame is also provided with an object stage and an infusion support.
9. A multi-functional neonate keeps warm as set forth in claim 8, characterized by: the support frame includes base and bracing piece, mounting bracket, objective table and infusion support all with bracing piece sliding connection, the one end that mounting bracket, objective table and infusion support and bracing piece are connected all is equipped with the locking device who is used for the location.
10. A multi-functional neonate keeps warm as set forth in claim 9, characterized in that: vertical sliding grooves are formed in two sides of the supporting rod, the objective table, the infusion support and the mounting rack are all connected with the supporting rod in a sliding mode through the sliding grooves, the locking device comprises locking screws, and a plurality of positioning holes matched with the locking screws are formed in the sliding grooves.
CN201922453076.0U 2019-12-30 2019-12-30 Multifunctional neonate warm-keeping table Active CN211409799U (en)

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CN201922453076.0U CN211409799U (en) 2019-12-30 2019-12-30 Multifunctional neonate warm-keeping table

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CN201922453076.0U CN211409799U (en) 2019-12-30 2019-12-30 Multifunctional neonate warm-keeping table

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112169186A (en) * 2020-09-29 2021-01-05 武汉博激世纪科技有限公司 Laser therapeutic equipment

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112169186A (en) * 2020-09-29 2021-01-05 武汉博激世纪科技有限公司 Laser therapeutic equipment

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