ai baby cradle
The AI-powered baby cradle enables automatic monitoring, solving the problem of manual operation required for existing infant products, reducing the workload of caregivers, and ensuring that babies receive continuous care and a comfortable environment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- 王开彬
- Filing Date
- 2025-03-04
- Publication Date
- 2026-06-09
AI Technical Summary
Existing infant and toddler products such as strollers and cribs have limited functions and require manual rocking or holding, increasing the workload of caregivers. This is especially true in daycare centers or homes, where caregivers need to look after multiple infants or perform other tasks simultaneously, leading to an excessive workload.
An AI-powered baby cradle has been developed, integrating an AI system that automatically detects the baby's condition, plays lullabies, pats the baby's body, rocks the cradle, and monitors the environment. It can be remotely controlled via radar voice control and smartphone to achieve automatic monitoring.
It reduces the workload of caregivers, ensures that infants receive continuous care, allows caregivers to perform other tasks, and enables infants to grow up in a safe and comfortable environment.
Smart Images

Figure CN122163061A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of AI artificial intelligence baby cradle technology and manufacturing technology. Background Technology
[0002] Currently, the strollers, cribs, and cradles commonly used for infants and toddlers have limited functions. They require someone to hold and rock the baby before or after sleep, which adds a lot of trouble for caregivers. This is especially true in daycare centers, where several people have to care for dozens of babies, each of whom needs to be rocked and held, making caregivers busy and overwhelmed. Mothers, grandmothers, maternal grandmothers, and nannies who are home alone with their children have to take care of the baby, cook, do housework, and sometimes even go out to run errands. They are worried that the baby will be unattended when he or she wakes up, so they are not only extremely busy every day but also constantly anxious, fearing that they might not have done something right. Summary of the Invention
[0003] In order to overcome the shortcomings of the existing technology, the AI artificial intelligence baby cradle of the present invention not only effectively solves the above problems, but also forms an AI artificial intelligence baby cradle through the developed AI artificial intelligence system, so that the AI artificial intelligence baby cradle replaces the guardian's work of monitoring the baby in the cradle.
[0004] The technical solution to achieve the above objectives is composed of an AI artificial intelligence baby cradle outer frame (1), an AI artificial intelligence baby cradle inner frame (2), an AI artificial intelligence display screen (3), an AI artificial intelligence monitoring sensor (4), an AI artificial intelligence control box (5), a radar voice controller (6), an AI artificial intelligence baby cradle inner frame bottom plate (7), a humanoid robot hand (8), a humanoid robot palm (9), a stroller handle (10), a stroller handle brake lever (11), a foot brake (12), omnidirectional wheels (13), a power plug (14), a power cord (15), a rechargeable battery (16), a slide rail (17), a linear motion module (18), a slide rail (19), a linear motion module (20), a communication line (21), a communication line (22), a communication line (23), a humidity sensor (24), a communication line (25), a power cord (26), a communication line (27), a communication line (28), a communication line (29), a smartphone (30), and a network (31).Its structural features include a caster wheel (13) installed at each of the four bottom corners of the AI artificial intelligence baby cradle outer frame (1), with a foot brake (12) on each caster wheel (13); a stroller handle (10) and a stroller handle brake lever (11) fixed to the upper edge of one side of the AI artificial intelligence baby cradle outer frame (1); an AI artificial intelligence monitoring sensor (4) installed at one corner of the AI artificial intelligence baby cradle outer frame (1); and an AI artificial intelligence control box (5) fixed to the outer side of the AI artificial intelligence baby cradle outer frame (1). Two slide rails (17) and a linear motion module (18) are first fixed horizontally on the bottom plate of the frame (1). The linear motion module (18) is fixed in the middle of the two slide rails (17). Two slide rails (19) and a linear motion module (20) are fixed vertically on top of the two slide rails (17) and the linear motion module (18). The bottom plate (7) of the inner frame of the AI artificial intelligence baby cradle is fixed on the two slide rails (19) and the linear motion module (20). The AI artificial intelligence display screen (3) and the radar voice controller (5) are fixed on the inner side of the inner frame of the AI artificial intelligence baby cradle. A humanoid robot hand (8) and a humanoid robot palm (9) are attached to the outer side of the inner frame of the AI artificial intelligence baby cradle. A rechargeable battery (16) is fixed to the outer side of the inner frame of the AI artificial intelligence baby cradle. The rechargeable battery (16) is connected to a power cord (15) and a power plug (14). The AI artificial intelligence control box (5) is connected to the AI artificial intelligence display screen (3) via a communication line 27, to the AI artificial intelligence monitoring sensor (4) via a communication line (22), to the radar voice controller (6) via a communication line (25), and to the humanoid robot hand (8) and the humanoid robot palm (9) via a communication line (21). The robot hand (9) is connected to the humidity sensor (24) via communication line (23), the linear motion module (18) via communication line (28), and the linear motion module (20) via communication line (29). The smartphone (30) is connected to the AI monitoring sensor (4) via wireless network (31). The AI control box (5) is connected to the rechargeable battery (16) via power cord (26). The rechargeable battery (16) is connected to the power cord (15), and the power cord (15) is connected to the power plug (14). In this way, the AI display screen (3), the AI monitoring sensor (4), the radar voice controller (6), the humanoid robot hand (8), the humanoid robot hand (9), the humidity sensor (24), the linear motion module (18), and the linear motion module (20) can complete their functions through the preset program of the AI control system chip installed in the AI control box (5), thereby achieving the purpose of the AI cradle replacing the guardian's monitoring of the baby in the cradle.
[0005] This invention not only possesses the functions of a typical stroller but also features an AI-powered control system that automatically detects whether the baby needs to urinate, plays lullabies, pats the baby's body, monitors the surrounding environment and the baby's sleeping state, and automatically rocks the cradle as needed. The rocking is not unidirectional but rather an alternating, timed rocking motion in both longitudinal and lateral directions (though unidirectional rocking is also possible). Whenever the baby rolls or cries, the AI-powered baby cradle automatically rocks and plays a lullaby or a recording from a family member, or allows for remote video communication with the baby via smartphone. This helps prevent the baby from feeling lonely or isolated upon waking, contributing to normal physical development. The rocking and lullaby playback times are controlled by the AI system, and the baby's guardian can also remotely monitor the baby via mobile phone, ensuring the baby always feels loved and supported. This not only ensures the baby feels loved but also significantly reduces the guardian's workload, allowing time for household chores such as cleaning and cooking. Attached Figure Description
[0006] Appendix Figure 1 3D illustration of an AI-powered baby cradle
[0007] Appendix Figure 2 A cross-sectional view of an AI-powered baby cradle.
[0008] Appendix Figure 3 Cross-sectional diagram of an AI-powered baby cradle
[0009] Appendix Figure 4 Top view of an AI-powered baby cradle
[0010] Appendix Figure 5 Diagram showing the connection between the AI control box and related devices.
[0011] In the picture:
[0012] 1 is the outer frame of the AI baby cradle; 2 is the inner frame of the AI baby cradle; 3 is the AI display screen; 4 is the AI monitoring sensor; 5 is the AI control box; 6 is the radar voice controller; 7 is the bottom plate of the inner frame of the AI baby cradle; 8 is the humanoid robot hand; 9 is the humanoid robot palm; 10 is the stroller handle; 11 is the stroller handle brake lever; 12 is the foot brake; 13 is the omnidirectional wheel; 14 is the power plug; 15 is the power cord; 16 is the charger; 17 is the slide rail; 18 is the linear motion module; 19 is the slide rail; 20 is the linear motion module; 21 is the communication line; 22 is the communication line; 23 is the communication line; 24 is the humidity sensor; 25 is the communication line; 26 is the power cord; 27 is the communication line; 28 is the communication line; 29 is the communication line; 30 is the smartphone; 31 is the wireless network. Detailed Implementation
[0013] The first step is to connect the AI control system installed in the AI control box (5) to the AI display screen (3) via communication line (27), the AI monitoring sensor (4) via communication line (22), the radar voice controller (6) via communication line (25), the humanoid robot hand (8) and humanoid robot palm (9) via communication line (21), the humidity sensor (24) via communication line (23), the linear motion module (18) via communication line (28), and the linear motion module (20) via communication line (29). The second step is to turn on the power switch to connect the power supply, and start the AI management mode through the preset programs of the developed AI control system chip. Whenever the baby rolls or cries, the information can be transmitted back to the AI control system via the AI monitoring sensor (4) or the radar voice controller (6). In the AI control system, after processing by the AI artificial intelligence control system, the linear motion module (18) and linear motion module (20) are activated in time to make the inner frame (2) of the AI artificial intelligence baby cradle shake, and the humanoid robot hand (8) and humanoid robot palm (9) are activated so that the humanoid robot palm (9) gently pats the baby's body and plays a lullaby. At the same time, the baby's guardian's smartphone (30) also receives the information. The guardian can also remotely monitor the baby's status through the smartphone (30) to see if the baby needs to communicate with the guardian. In addition, the humidity sensor (24) is placed under the baby's crotch. Once the baby urinates, the humidity sensor (24) will immediately transmit the information back to the AI artificial intelligence control system. After processing by the AI artificial intelligence control system, the information will be promptly notified to the guardian so that the guardian can change the baby's diaper in time to protect the baby's skin from the effects of heat and dirt and grow healthily.
Claims
1. An AI baby cradle, comprising an outer frame (1), an inner frame (2), an AI display screen (3), an AI monitoring sensor (4), an AI control box (5), a radar voice controller (6), a bottom plate of the inner frame (7), a humanoid robot hand (8), a humanoid robot palm (9), a stroller handle (10), a stroller handle brake lever (11), a foot brake (12), casters (13), a power plug (14), a power cord (15), a rechargeable battery (16), a slide rail (17), a linear motion module (18), a slide rail (19), a linear motion module (20), and a communication line. The system consists of a road (21), a communication line (22), a communication line (23), a humidity sensor (24), a communication line (25), a power cord (26), a communication line (27), a communication line (28), a communication line (29), a smartphone (30), and a network (31). A caster wheel (13) is installed at each of the four bottom corners of the AI baby cradle frame (1). Each caster wheel (13) has a foot brake (12). A stroller handle (10) and a stroller handle brake lever (11) are fixed to the upper edge of one side of the AI baby cradle frame (1). An AI monitoring sensor (4) is installed at one corner of the AI baby cradle frame (1). (1) The AI control box (5) is fixed on the outer side. On the bottom plate of the outer frame (1) of the AI baby cradle, two slide rails (17) and a linear motion module (18) are first fixed horizontally. The linear motion module (18) is fixed in the middle of the two slide rails (17). The two slide rails (19) and the linear motion module (20) are fixed vertically on the top of the two slide rails (17) and the linear motion module (18). The bottom plate (7) of the inner frame of the AI baby cradle is fixed on the two slide rails (19) and the linear motion module (20). The AI display screen (3), radar voice controller (5), humanoid robot hand (8) and humanoid robot palm (9) are fixed on the inner side of the inner frame of the AI baby cradle. A rechargeable battery (16) is fixed on the outer side of the inner frame of the AI baby cradle. The rechargeable battery (16) is connected to the power cord (15) and the power plug (14). The AI control box (5) is connected to the AI display screen (3) via communication line 27, to the AI monitoring sensor (4) via communication line (22), to the radar voice controller (6) via communication line (25), to the humanoid robot hand (8) and humanoid robot palm (9) via communication line (21), to the humidity sensor (24) via communication line (23), to the linear motion module (18) via communication line (28), and to the linear motion module (20) via communication line (29).A smartphone (30) connects to an AI monitoring sensor (4) via a wireless network (31). An AI control box (5) connects to a rechargeable battery (16) via a power cord (26). The rechargeable battery (16) is connected to a power cord (15), which in turn is connected to a power plug (14).
2. The AI artificial intelligence baby cradle according to claim 1 is equipped with an AI artificial intelligence system chip developed for the AI artificial intelligence baby cradle installed in the AI artificial intelligence control box (5).
3. The AI artificial intelligence baby cradle according to claim 1 controls the use of the AI artificial intelligence display screen (3), AI artificial intelligence monitoring sensor (4), radar voice controller (6), humanoid robot hand (8), humanoid robot palm (9), linear motion module (18), linear motion module (20), humidity sensor (24) and smartphone (30) through the developed AI artificial intelligence system.