Monitoring equipment

By introducing selectively operating fetal and infant status information collection units into the monitoring equipment, the problem of limited applicability of existing equipment has been solved, enabling full-process monitoring from pregnancy to infancy, and improving user experience and convenience.

CN223731394UActive Publication Date: 2025-12-30MC DEVICES CO LTD
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Patent Information

Application Number
CN202422878883.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-22
Publication Date
2025-12-30
Estimated Expiration
2034-11-22

AI Technical Summary

Technical Problem

Existing monitoring equipment has limited applicability and cannot meet the diverse needs of users.

Method used

A monitoring device is provided, including a monitoring device and a receiving device. The monitoring device has first and second acquisition units that operate selectively for acquiring status information of the fetus and the infant, respectively. The receiving device can receive and play back this information.

Benefits of technology

This expands the application scenarios of monitoring equipment, from the pregnancy period before birth to the infant's growth period after birth, meeting the diverse needs of users and reducing the caregiving pressure on guardians.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses monitoring equipment, and belongs to the technical field of monitoring. The monitoring equipment comprises a monitoring device and a receiving device, the monitoring device comprises a first collecting unit and a second collecting unit, the first collecting unit is used for collecting state information of a fetus when the first collecting unit is close to the skin of a pregnant woman, and the second collecting unit is used for collecting state information of a baby when the second collecting unit is placed close to the baby. The receiving device can receive the state information of the baby; the monitoring device can selectively set one of the first acquisition unit and the second acquisition unit to be in a working state. According to the monitoring equipment provided by the invention, the first acquisition unit and the second acquisition unit can work relatively independently, the monitoring equipment is suitable for monitoring the state of an infant and also suitable for monitoring the state of a fetus, the monitoring equipment can be used from the pregnancy period before the birth of the fetus to the growth period of the infant after the birth, the use scene of the monitoring equipment is expanded, and the monitoring efficiency is improved. And diversified use requirements of users can be met.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of monitoring, in particular to a monitoring device. BACKGROUND

[0002] The monitoring device can share the accompanying pressure of the guardian, and is welcomed by more and more families or neonatal care institutions. The monitoring device usually includes a parent machine and a baby machine, and the baby machine and the parent machine can perform short-distance wireless communication. The baby machine is placed close to the baby and is used to obtain the state information of the baby. The baby machine sends the state information of the baby to the parent machine, and the guardian can obtain the state of the baby from the parent machine. In the related technology, the monitoring device is only applicable to the state monitoring of the baby, and the application scene of the monitoring device is limited, which is difficult to meet the diversified use demand of the user. CONTENT OF THE UTILITY MODEL

[0003] The present application provides a monitoring device, which can solve the technical problem of limited application scene of the monitoring device.

[0004] To solve the above technical problem, the monitoring device provided by the present application includes a monitoring device and a receiving device, the receiving device is in communication connection with the monitoring device, the monitoring device includes a first acquisition unit and a second acquisition unit, the first acquisition unit is used to acquire the state information of the fetus when the first acquisition unit is close to the skin of the pregnant woman, the second acquisition unit is used to acquire the state information of the baby when the second acquisition unit is close to the baby, and the receiving device can receive the state information of the baby; wherein the monitoring device can selectively set one of the first acquisition unit and the second acquisition unit to be in a working state.

[0005] In an embodiment, the monitoring device includes a machine body and a switch, the first acquisition unit and the second acquisition unit are fixedly installed on the machine body, and the switch is used to selectively set one of the first acquisition unit and the second acquisition unit to be in a working state.

[0006] In an embodiment, the monitoring device includes a machine body, and at least one of the first acquisition unit and the second acquisition unit is detachably connected with the machine body.

[0007] In an embodiment, the first acquisition unit includes a first acquisition module, and the first acquisition module is used to acquire the fetal heart information of the fetus when the first acquisition unit is close to the skin of the pregnant woman.

[0008] In an embodiment, the first acquisition module includes one of an ultrasonic transducer and a pressure sensor.

[0009] In an embodiment, the first acquisition unit includes a second acquisition module, and the second acquisition module is used to acquire the fetal movement information of the fetus when the first acquisition unit is close to the skin of the pregnant woman.

[0010] In an embodiment, the second acquisition module comprises at least one of an ultrasonic transducer, a pressure sensor, and an acceleration sensor.

[0011] In an embodiment, the monitoring device comprises: a first processor, electrically connected with the first acquisition unit, the first processor being configured to generate first output data based on the state information of the fetus; and a first output unit, electrically connected with the first processor, the first output unit being configured to receive and play the first output data.

[0012] In an embodiment, the state information of the fetus comprises a vibration signal of a fetal heart or fetal movement, and the first output data comprises audio data generated based on the vibration signal of the fetal heart or fetal movement of the fetus; the first output unit comprises a first audio playing module configured to receive and play the audio data.

[0013] In an embodiment, the state information of the fetus comprises a vibration signal of a fetal heart or fetal movement, and the first output data comprises video data generated based on the vibration signal of the fetal heart or fetal movement of the fetus; the first output unit comprises a first video playing module configured to receive and play the video data.

[0014] In an embodiment, the monitoring device comprises a first communication unit, the first communication unit being electrically connected with the first acquisition unit and the second acquisition unit, and the first communication unit being configured to send the state information of the fetus and the state information of the infant to a receiving device; the receiving device comprises: a second communication unit, communicatively connected with the first communication unit, the second communication unit being configured to receive the state information of the fetus and the state information of the infant; a second processor, electrically connected with the second communication unit, the second processor being configured to generate second output data based on the state information of the fetus; and a second output unit, electrically connected with the second processor, the second output unit being configured to receive and play the second output data.

[0015] In an embodiment, the state information of the fetus comprises a vibration signal of a fetal heart or fetal movement, and the second output data comprises audio data generated based on the vibration signal of the fetal heart or fetal movement of the fetus, and the second output unit comprises a second audio playing module configured to receive and play the audio data; and / or, the state information of the fetus comprises a vibration signal of a fetal heart or fetal movement, and the second output data comprises video data generated based on the vibration signal of the fetal heart or fetal movement of the fetus, and the second output unit comprises a second video playing module configured to receive and play the video data.

[0016] In an embodiment, the state information of the infant includes sound information and video information; the second acquisition unit includes: a third acquisition module, configured to acquire sound information of the infant when the second acquisition unit is placed close to the infant; and a fourth acquisition module, configured to acquire video information of the infant when the second acquisition unit is placed close to the infant; and the second output unit includes a second audio playing module and a second video playing module, the second audio playing module being configured to receive and play the sound information, and the second video playing module being configured to receive and play the video information.

[0017] In an embodiment, the third acquisition module includes a microphone, and the fourth acquisition module includes a camera.

[0018] In an embodiment, the receiving device includes a third acquisition unit configured to acquire feedback audio, the third acquisition unit being in communication connection with the second communication unit, and the second communication unit being further configured to send the feedback audio to the first communication unit; and the monitoring device includes a first audio playing module, the first audio playing module being in electrical connection with the first communication unit, and the first audio playing module being configured to play the feedback audio to calm the infant.

[0019] The monitoring device provided in the present application includes a first acquisition unit and a second acquisition unit, the first acquisition unit being configured to acquire state information of a fetus, so that the monitoring device can be used for state monitoring of the fetus; the second acquisition unit being configured to acquire state information of an infant, and the receiving device being configured to receive the state information of the infant, so that the monitoring device can be used for state monitoring of the infant; further, one of the first acquisition unit and the second acquisition unit is selectively set to be in a working state, so that the first acquisition unit and the second acquisition unit can work relatively independently, the monitoring device is applicable to both state monitoring of the infant and state monitoring of the fetus, and the monitoring device can be used from a pregnancy period before birth of the fetus to a growth period of the infant after birth, thereby expanding a use scenario of the monitoring device and meeting diversified use requirements of users. BRIEF DESCRIPTION OF DRAWINGS

[0020] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without any creative effort.

[0021] Figure 1 is a framework schematic diagram of an embodiment of the monitoring device provided in the present application;

[0022] Figure 2 is a framework schematic diagram of an embodiment of the monitoring device provided in the present application;

[0023] Figure 3is a frame diagram of another embodiment of the monitoring device provided by the present application;

[0024] Figure 4 is a frame diagram of an embodiment of the first acquisition unit provided by the present application;

[0025] Figure 5 is a frame diagram of another embodiment of the monitoring device provided by the present application;

[0026] Figure 6 is a frame diagram of another embodiment of the monitoring device provided by the present application;

[0027] Figure 7 is a frame diagram of an embodiment of the first output unit provided by the present application;

[0028] Figure 8 is a frame diagram of an embodiment of the receiving device provided by the present application;

[0029] Figure 9 is a frame diagram of an embodiment of the second output unit provided by the present application;

[0030] Figure 10 is a frame diagram of an embodiment of the second acquisition unit provided by the present application;

[0031] Figure 11 is a frame diagram of another embodiment of the receiving device provided by the present application. DETAILED DESCRIPTION

[0032] The present application will be further described below in conjunction with the drawings and embodiments. It is particularly pointed out that the following embodiments are only for illustrating the present application, but not for limiting the scope of the present application. Similarly, the following embodiments are only part of the embodiments of the present application, but not all the embodiments of the present application. All other embodiments obtained by those of ordinary skill in the art without making creative efforts fall within the scope of protection of the present application.

[0033] In the description of the present application, the meaning of "a plurality of" is at least two, such as two, three, etc., unless otherwise explicitly and specifically limited. The terms "first", "second", "third" in the embodiments of the present application are only for descriptive purpose, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second", "third" can explicitly or implicitly include at least one of the features. All directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the present application are only used to explain the relative position relationship, movement condition, etc. between components, and if the specific posture (as shown in the drawings) changes, the directional indications also change accordingly. The terms "comprising" and "having" and any variations thereof in the embodiments of the present application are intended to cover non-exclusive inclusion. For example, the process, method, system, product or device including a series of steps or units is not limited to the listed steps or units, but can optionally include steps or units not listed, or can optionally include other steps or components inherent to the process, method, product or device.

[0034] Reference herein to "an embodiment" means that a particular feature, structure, or characteristic described in connection with the embodiment can be included in at least one embodiment of the application. The appearances of the phrase that the phrase in the specification in various places does not necessarily all refer to the same embodiment, nor is it necessarily mutually exclusive of other embodiments. It is explicitly and implicitly understood that the embodiments described herein are capable of combination.

[0035] The present application provides a monitoring device. Please refer to Figure 1 The monitoring device 100 can include a monitoring apparatus 10 and a receiving apparatus 20. The monitoring apparatus 10 is used to acquire monitoring information. The receiving apparatus 20 is in communication connection with the monitoring apparatus 10, so that data can be transmitted between the monitoring apparatus 10 and the receiving apparatus 20. The receiving apparatus 20 can be a parent machine, and the receiving apparatus 20 can also be a terminal device, such as a mobile phone, a palm computer, a notebook computer, a server, etc. The receiving apparatus 20 can also simultaneously include a parent machine and a plurality of terminal devices.

[0036] Please refer to Figure 2The monitoring device 10 comprises a first acquisition unit 11 and a second acquisition unit 12. The first acquisition unit 11 is configured to acquire the state information of the fetus when the first acquisition unit 11 is close to the skin of the pregnant woman, so that the user can know the health status of the fetus. The user can also upload the state information full of joy of new life to a social platform to share with family and friends. The second acquisition unit 12 is configured to acquire the state information of the baby when the second acquisition unit 12 is close to the baby, and the receiving device 20 can receive the state information of the baby, so that the guardian can obtain the state information of the baby from the receiving device 20. Since the receiving device 20 is in communication connection with the monitoring device 10, the receiving device 20 and the monitoring device 10 can be at a certain distance, and the guardian can temporarily leave the baby with the receiving device 20, thereby reducing the accompanying pressure of the guardian.

[0037] The monitoring device 10 can selectively set one of the first acquisition unit 11 and the second acquisition unit 12 to be in a working state. That is, the monitoring device 10 can control one of the first acquisition unit 11 and the second acquisition unit 12 to be in a working state, and the other to be in a non-working state, so that the first acquisition unit 11 and the second acquisition unit 12 can work relatively independently.

[0038] The monitoring device 100 provided in the present application comprises the first acquisition unit 11 and the second acquisition unit 12. The first acquisition unit 11 is configured to acquire the state information of the fetus, so that the monitoring device 100 can be used for the state monitoring of the fetus. The second acquisition unit 12 is configured to acquire the state information of the baby, and the receiving device 20 can receive the state information of the baby, so that the monitoring device 100 can be used for the state monitoring of the baby. Further, one of the first acquisition unit 11 and the second acquisition unit 12 is selectively set to be in a working state, so that the first acquisition unit 11 and the second acquisition unit 12 can work relatively independently. The monitoring device 100 is suitable for the state monitoring of the baby and the state monitoring of the fetus. The monitoring device 100 can be used from the pregnancy period before the birth of the fetus to the growth period after the birth of the baby, which expands the use scenario of the monitoring device 100 and can meet the diversified use needs of the user.

[0039] In an embodiment, as Figure 3As shown, the monitoring device 10 comprises a machine body 13. The machine body 13 can comprise a shell and a control mainboard arranged in the shell, which are used to provide a carrier for other components. The first acquisition unit 11 and the second acquisition unit 12 are fixedly installed on the machine body 13. According to different types of sensors, the acquisition units can be installed inside the machine body 13; or, part of the acquisition units is installed inside the machine body 13, and the other part is located on the surface of the machine body 13 to facilitate the acquisition of corresponding state information. The first acquisition unit 11 and the second acquisition unit 12 are fixedly installed on the machine body 13, so that the first acquisition unit 11 and the second acquisition unit 12 are integrated into the machine body 13, and the first acquisition unit 11, the second acquisition unit 12 and the machine body 13 form an integrated structure. On the one hand, the first acquisition unit 11 and the second acquisition unit 12 can share part of the components of the machine body 13, such as the shell and the control mainboard, which can not only reduce the volume of the monitoring device 10, but also reduce the cost of the monitoring device 10; on the other hand, the monitoring device 10 does not need to be assembled and connected when in use, which can improve the convenience of use; on the other hand, the monitoring device 10 has good integrity, which can facilitate the storage of the monitoring device 10. The monitoring device 10 further comprises a switching switch 14, which is used to selectively set one of the first acquisition unit 11 and the second acquisition unit 12 to be in a working state, so as to facilitate the monitoring equipment 100 to switch the monitoring mode in different use scenarios, so that the first acquisition unit 11 and the second acquisition unit 12 can work relatively independently. The switching switch 14 can be installed on the machine body 13 or the acquisition unit. The switching switch 14 can be a touch switch, a push-pull switch or a press switch.

[0040] In an embodiment, at least one of the first collecting unit 11 and the second collecting unit 12 is detachably connected with the machine body 13. That is, one of the first collecting unit 11 and the second collecting unit 12 can be detachably connected with the machine body 13, or both of the first collecting unit 11 and the second collecting unit 12 can be detachably connected with the machine body 13. The collecting unit can be relatively independent of the machine body 13. The collecting unit can be assembled and connected with the machine body 13 by clamping, bonding, threaded connection or magnetic attraction, etc. The collecting unit can be detached from the machine body 13. Alternatively, the collecting unit is connected with the machine body 13 by a data line, data can be transmitted between the collecting unit and the machine body 13, and the two do not need to be assembled and connected. When the data line is removed, the collecting unit can be detached from the machine body 13. In this way, the collecting unit can be provided separately from the machine body 13, and when the use scenario of the monitoring device 100 changes, the collecting unit temporarily not needed for use can be detached from the machine body 13, which is conducive to the relatively independent working of the first collecting unit 11 and the second collecting unit 12. For example, during the pregnancy period before the birth of the fetus, the second collecting unit 12 can be detached from the machine body 13 since it is not needed. For another example, during the growth period of the baby after the birth of the fetus, the first collecting unit 11 can be detached from the machine body 13 since it is not needed. In addition, the first collecting unit 11 and the second collecting unit 12 can share part of the components of the machine body 13, for example, can share the control mainboard, which can reduce the cost of the monitoring device 10.

[0041] Please refer to Figure 4 In an embodiment, the first collecting unit 11 comprises a first collecting module 111, which is configured to collect fetal heart information when the first collecting unit 11 is close to the skin of the pregnant woman. The fetal heart is the heartbeat of the fetus, which can be stably detected after 16 weeks of pregnancy. The fetal heart is an important indicator for judging the vital signs of the fetus, and the setting of the first collecting module 111 to collect the fetal heart information can facilitate the user to grasp the growth and development of the fetus at any time.

[0042] In an embodiment, the first collecting module 111 comprises one of an ultrasonic transducer and a pressure sensor. The ultrasonic transducer can generate an ultrasonic beam, part of the incident beam reaches the fetal heart movement surface, and due to the Doppler effect, the frequency of the ultrasonic wave is shifted. The fetal heart information can be obtained by separating and amplifying the reflected signal. The pressure sensor can be a piezoelectric film sensor, which can sense the mechanical vibration of the pregnant woman's abdominal skin caused by the heartbeat movement of the fetus and convert it into an electrical signal. The fetal heart information can be obtained by amplifying, filtering, analog-digital converting and separating the electrical signal.

[0043] Please refer to Figure 4In an embodiment, the first collecting unit 11 comprises a second collecting module 112, which is configured to collect fetal movement information of the fetus when the first collecting unit 11 is close to the skin of the pregnant woman. Fetal movement is the first objective sign of fetal life, and the pregnant woman can generally feel fetal movement at about four months of pregnancy. The number, speed, strength, etc. of fetal movement represent the health status of the fetus in the mother's body. The second collecting module 112 is configured to collect fetal movement information, so that the user can conveniently know the growth and development of the fetus at any time.

[0044] The first collecting unit 11 can be provided with one of the first collecting module 111 and the second collecting module 112, or can be provided with both the first collecting module 111 and the second collecting module 112.

[0045] In an embodiment, the second collecting module 112 comprises at least one of an ultrasonic transducer, a pressure sensor and an acceleration sensor. The ultrasonic transducer can obtain fetal movement information based on the Doppler effect, and the pressure sensor and the acceleration sensor can obtain fetal movement information based on mechanical vibration. When the second collecting module 112 comprises multiple of the ultrasonic transducer, the pressure sensor and the acceleration sensor, multi-scale detection can be performed through multiple sensors, so as to improve the accuracy of fetal movement detection.

[0046] When the sensor arrangement of the first collecting module 111 is the same as that of the second collecting module 112, the first collecting module 111 can share some of the same sensors with the second collecting module 112, that is, the first collecting module 111 (or the second collecting module 112) can be used to collect fetal heart information and fetal movement information, so as to realize the reuse of sensors and reduce the number of components of the monitoring device 10.

[0047] The state information of the fetus collected by the first collecting unit 11 can be output at one end of the monitoring device 10. Please refer to Figure 5 、 Figure 6In an embodiment, the monitoring device 10 comprises a first processor 15 and a first output unit 16. The first processor 15 can be a general purpose processor, a digital signal processor (DSP), an application specific integrated circuit (ASIC), a field-programmable gate array (FPGA) or other programmable logic device, discrete gate or transistor logic, discrete hardware components. The general purpose processor can be a microprocessor to reduce the size of the first processor 15, which is conducive to miniaturization of the monitoring device 10. The first processor 15 is electrically connected to the first acquisition unit 11, and the first processor 15 is configured to generate first output data based on the state information of the fetus. The state information of the fetus acquired by the first acquisition unit 11 is usually a vibration signal, and it is difficult for the user to understand the information represented by the vibration signal. By processing the state information to generate the first output data, the state information can be converted into a form that is easy for the user to understand, thereby improving the ease of use of the product. The first output unit 16 is electrically connected to the first processor 15, and the first output unit 16 is configured to receive and play the first output data. By setting the first output unit 16 to play the first output data, the monitoring device 10 can not only monitor the state of the fetus, but also facilitate the user to share the joy of the new life with family and friends through the monitoring device 10. In addition, since the state information of the fetus is directly output at one end of the monitoring device 10, the output of the state information of the fetus is independent of the receiving device 20, which can reduce the amount of data transmission between the monitoring device 10 and the receiving device 20.

[0048] In an embodiment, the first output data comprises a prompt voice for prompting the health status of the fetus. For example, the first processor 15 processes the fetal heart information of the fetus to generate a prompt voice, which can prompt the user whether the fetal heart rate is within a normal range. The fetal heart rate changes with the different intrauterine environment, and the change of the fetal heart rate is a manifestation of the normal regulation function of the central nervous system and a manifestation of the good state of the fetus in the uterus. Generally, the normal fetal heart rate of the fetus is 110-160 beats per minute. If the fetal heart rate is less than 100 beats per minute or greater than 160 beats per minute and lasts for more than 10 minutes, it is called fetal bradycardia or fetal tachycardia. If the first processor 15 processes the fetal heart information of the fetus and finds fetal bradycardia or fetal tachycardia, a prompt voice can be generated so that the user can discover abnormal conditions in time.

[0049] In an embodiment, the state information of the fetus comprises a vibration signal of fetal heart or fetal movement, and the first output data comprises audio data generated based on the vibration signal of fetal heart or fetal movement of the fetus, so that the user can more intuitively perceive the fetal heart or fetal movement of the fetus through the sound. For example, the first output unit 16 can be a speaker, and the first output unit 16 can play the audio data to generate a sound, so that the user can perceive the fetal heart or fetal movement of the fetus through the sound.Figure 7 As shown, the first output unit 16 comprises a first audio playing module 161, and the first audio playing module 161 is configured to receive and play audio data. The first audio playing module 161 can comprise a loudspeaker, so as to output the vibration signal of the fetal heart or fetal movement in a sound manner. Converting the vibration signal of the fetal heart or fetal movement into audio data playing can make the presentation of the fetal state information more intuitive, thereby improving the user experience.

[0050] In an embodiment, the fetal state information comprises the vibration signal of the fetal heart or fetal movement, and the first output data comprises video data generated based on the vibration signal of the fetal heart or fetal movement, so that the user can more intuitively feel the fetal heart or fetal movement of the fetus in an image manner. For example, Figure 7 As shown, the first output unit 16 comprises a first video playing module 162, and the first video playing module 162 is configured to receive and play video data. The first video playing module 162 can comprise a display, so as to output the vibration signal of the fetal heart or fetal movement in an image manner. For example, the video data can be a frequency spectrum waveform diagram, so as to realize the visualization of the fetal state information. Converting the vibration signal of the fetal heart or fetal movement into video data playing can make the presentation of the fetal state information more intuitive, thereby improving the user experience.

[0051] The first output unit 16 can be provided with one of the first audio playing module 161 and the first video playing module 162, or can be provided with both the first audio playing module 161 and the first video playing module 162.

[0052] The fetal state information collected by the first collection unit 11 can also be output at the receiving device 20. Please refer to Figure 5 In an embodiment, the monitoring device 10 comprises a first communication unit 17, and the first communication unit 17 is electrically connected with the first collection unit 11 and the second collection unit 12, and the first communication unit 17 is configured to send the fetal state information and the infant state information to the receiving device 20, so that the fetal state information and the infant state information can be output at the receiving device 20. By setting the fetal state information to be output at the receiving device 20, part of the components at the monitoring device 10 can be omitted, for example, the monitoring device 10 can not be provided with a loudspeaker or a display, thereby reducing the number of components of the monitoring device 10, and the volume of the monitoring device 10 can be reduced.

[0053] Please refer to Figure 8In an embodiment, the receiving device 20 comprises a second communication unit 21, a second processor 22, and a second output unit 23. The second communication unit 21 is communicatively connected with the first communication unit 17, and is configured to receive the fetal status information and the infant status information. The communication connection between the second communication unit 21 and the first communication unit 17 can be a wired connection. For example, when the receiving device 20 is a computer, the second communication unit 21 and the first communication unit 17 can be connected through a data line. The communication connection between the second communication unit 21 and the first communication unit 17 can also be a wireless connection. For example, when the receiving device 20 is a parent machine, the communication unit can comprise one or more of a WiFi communication module, a Bluetooth communication module, and a ZigBee communication module, and the second communication unit 21 and the first communication unit 17 can communicate in a short range, and the maximum communication distance between the monitoring device 10 and the receiving device 20 can be between 600-800 meters. For another example, when the receiving device 20 is a mobile phone, the communication connection between the second communication unit 21 and the first communication unit 17 can also be through the Internet. For example, the first communication unit 17 uploads the fetal status information and the infant status information to the Internet, and the second communication unit 21 can obtain the status information from the Internet, so that the joy of the new life can be shared with family and friends far away. The second processor 22 is electrically connected with the second communication unit 21, and is configured to generate second output data based on the fetal status information. The second output unit 23 is electrically connected with the second processor 22, and is configured to receive and play the second output data. The second processor 22 and the second output unit 23 can be configured in the same manner as the first processor 15 and the first output unit 16.

[0054] In an embodiment, the fetal status information comprises a vibration signal of fetal heart or movement, and the second output data comprises audio data generated based on the vibration signal of fetal heart or movement. The second output unit 23 comprises a second audio playing module 231, as shown in FIG. 2B, which is configured to receive and play the audio data. The second audio playing module 231 can comprise a loudspeaker, so that the vibration signal of fetal heart or movement is converted into audio data for playing, which can make the presentation of the fetal status information more intuitive. Figure 9

[0055] In an embodiment, the fetal status information comprises a vibration signal of fetal heart or movement, and the second output data comprises video data generated based on the vibration signal of fetal heart or movement. The second output unit 23 comprises a second video playing module 232, as shown in FIG. 2C, which is configured to receive and play the video data. The second video playing module 232 can comprise a display screen, so that the vibration signal of fetal heart or movement is converted into video data for playing, which can make the presentation of the fetal status information more intuitive. Figure 9 ​As shown, the second video playing module 232 is configured to receive and play the video data. The second video playing module 232 can include a display, so as to convert the vibration signals of the fetal heart or fetal movement into video data playing, which can make the presentation of the status information of the fetus more intuitive.

[0056] The second output unit 23 can be provided with one of the second audio playing module 231 and the second video playing module 232, or can be provided with both the second audio playing module 231 and the second video playing module 232.

[0057] In an embodiment, the status information of the infant can include sound information and video information, so as to make the guardian better know the status of the infant. For example, Figure 10 As shown, the second collecting unit includes a third collecting module 121 and a fourth collecting module 122. The third collecting module 121 is configured to collect sound information of the infant when the second collecting unit 12 is placed close to the infant. For example, the third collecting module 121 can collect breathing sound, crying sound, etc. of the infant. The fourth collecting module 122 is configured to collect video information of the infant when the second collecting unit 12 is placed close to the infant. The second output unit 23 includes a second audio playing module 231 and a second video playing module 232. The second audio playing module 231 is configured to receive and play the sound information, and the second video playing module 232 is configured to receive and play the video information. By obtaining the sound information and the video information of the infant, the guardian can more comprehensively know the status of the infant.

[0058] In an embodiment, the third collecting module 121 includes a microphone, and the fourth collecting module 122 includes a camera. When the infant makes a sound, such as crying, the sound will cause the diaphragm in the microphone to vibrate, and then generate sound information in the form of an electric signal. The camera can obtain the video information of the infant and convert the video information into a digital signal for transmission.

[0059] In an embodiment, as shown, Figure 11 As shown, the receiving device 20 includes a third collecting unit 24 configured to collect feedback audio. The third collecting unit 24 can include a microphone, and the feedback audio can be the sound of the guardian to soothe the infant. The third collecting unit 24 is in communication connection with the second communication unit 21, and the second communication unit 21 is further configured to send the feedback audio to the first communication unit 17. The monitoring device 10 includes a first audio playing module 161, which is in electrical connection with the first communication unit 17, and the first audio playing module 161 is configured to play the feedback audio to soothe the infant. By playing the feedback audio through the monitoring device 10, the infant can receive the sound of the guardian, which can enhance the sense of security of the infant and be conducive to the emotional stability of the infant.

[0060] The monitoring device 10 and the receiving device 20 can further comprise a power supply unit to provide the monitoring device 10 and the receiving device 20 with electric energy for operation. The power supply unit can be an external power source or an internal battery.

[0061] The above merely provides part of the embodiments of the present application and does not limit the protection scope of the present application. Any equivalent device or equivalent process transformation using the content of the present application specification and drawings, or direct or indirect application in other related technical fields, are also included in the patent protection scope of the present application.

Claims

1. A monitoring device, characterized in that The monitoring device comprises a first collecting unit and a second collecting unit, the first collecting unit is used for collecting state information of a fetus when the first collecting unit is close to the skin of a pregnant woman, and the second collecting unit is used for collecting state information of an infant when the second collecting unit is close to the infant. The monitoring device can selectively set one of the first collecting unit and the second collecting unit to be in a working state.

2. The monitoring device of claim 1, wherein, The monitoring device comprises a body and a switch, the first collecting unit and the second collecting unit are fixedly installed on the body, and the switch is used for selectively setting one of the first collecting unit and the second collecting unit to be in a working state.

3. The monitoring device of claim 1, wherein, The monitoring device comprises a body, and at least one of the first collecting unit and the second collecting unit is detachably connected to the body.

4. The monitoring device of claim 1, wherein, The first collecting unit comprises a first collecting module, the first collecting module is used for collecting fetal heart information of the fetus when the first collecting unit is close to the skin of the pregnant woman.

5. The monitoring device of claim 4, wherein, The first collecting module comprises one of an ultrasonic transducer and a pressure sensor.

6. The monitoring device of claim 1, wherein, The first collecting unit comprises a second collecting module, the second collecting module is used for collecting fetal movement information of the fetus when the first collecting unit is close to the skin of the pregnant woman.

7. The monitoring device of claim 6, wherein, The second collecting module comprises at least one of an ultrasonic transducer, a pressure sensor and an acceleration sensor.

8. The monitoring device of claim 1, wherein, The monitoring device comprises: A first processor, electrically connected to the first collecting unit, is used for generating first output data based on the state information of the fetus; A first output unit, electrically connected to the first processor, is used for receiving and playing the first output data.

9. The monitoring device of claim 8, wherein, The state information of the fetus comprises vibration signals of fetal heart or fetal movement, and the first output data comprises audio data generated based on the vibration signals of fetal heart or fetal movement of the fetus; The first output unit comprises a first audio playing module, the first audio playing module is used for receiving and playing the audio data.

10. The monitoring device of claim 8, wherein, The state information of the fetus comprises vibration signals of fetal heart or fetal movement, and the first output data comprises video data generated based on the vibration signals of fetal heart or fetal movement of the fetus; The first output unit comprises a first video playing module, the first video playing module is used for receiving and playing the video data.

11. The monitoring device of claim 1, wherein, The monitoring device comprises a first communication unit, the first communication unit is electrically connected to the first collecting unit and the second collecting unit, and is used for sending the state information of the fetus and the state information of the infant to the receiving device; The receiving device comprises: A second communication unit, in communication connection with the first communication unit, is used for receiving the state information of the fetus and the state information of the infant; A second processor, electrically connected to the second communication unit, is used for generating second output data based on the state information of the fetus. The second output unit is electrically connected with the second processor, and is configured to receive and play the second output data.

12. The monitoring device of claim 11, wherein, The state information of the fetus includes a vibration signal of a fetal heart or fetal movement, the second output data includes audio data generated based on the vibration signal of the fetal heart or fetal movement of the fetus, and the second output unit includes a second audio playing module configured to receive and play the audio data; and / or, The state information of the fetus includes a vibration signal of a fetal heart or fetal movement, the second output data includes video data generated based on the vibration signal of the fetal heart or fetal movement of the fetus, and the second output unit includes a second video playing module configured to receive and play the video data.

13. The monitoring device of claim 11, wherein, The state information of the infant includes sound information and video information. The second collecting unit includes: The third collecting module is configured to collect the sound information of the infant when the second collecting unit is placed close to the infant. The fourth collecting module is configured to collect the video information of the infant when the second collecting unit is placed close to the infant. The second output unit includes a second audio playing module and a second video playing module, the second audio playing module is configured to receive and play the sound information, and the second video playing module is configured to receive and play the video information.

14. The monitoring device of claim 13, wherein, The third collecting module includes a microphone, and the fourth collecting module includes a camera.

15. The monitoring device of claim 11, wherein, The receiving device includes a third collecting unit configured to collect feedback audio, the third collecting unit is in communication connection with the second communication unit, and the second communication unit is further configured to send the feedback audio to the first communication unit. The monitoring device includes a first audio playing module, the first audio playing module is in electrical connection with the first communication unit, and the first audio playing module is configured to play the feedback audio to calm the infant.