Desktop ai robot
The desktop AI robot, with its modular design and positioning components, solves the problems of limited mobility and interaction, enabling convenient movement and flexible interaction, and enhancing the robot's adaptability and functionality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HEBEI SHANGPIN ACME IND DESIGN CO LTD
- Filing Date
- 2025-08-27
- Publication Date
- 2026-06-19
AI Technical Summary
Existing desktop AI robots are not easy to move due to their all-in-one structure, and are easily disturbed in multi-person scenarios or noisy environments, making them unable to interact effectively.
The robot body and base are designed in a split manner. Combined with positioning components and a magnetic charging head, the robot body can be separated from the base for close-range interaction. The base is equipped with a gimbal and camera to enhance the interaction function.
It enables convenient movement and close-range interaction of the robot body, reduces external interference, provides flexible interaction methods and charging convenience, and enhances the robot's interactive capabilities.
Smart Images

Figure CN224374087U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of intelligent devices, and in particular to a desktop AI robot. Background Technology
[0002] With the continuous advancement of technology and the booming development of the robotics field, intelligent robots are gradually integrating into people's daily lives, and numerous intelligent robot products have emerged in the market, bringing people many conveniences. Among them, desktop robots, as a branch of intelligent robots, mainly focus on emotional communication and companionship / entertainment functions. Patents such as CN217113548U, CN119567292A, and CN216161245U disclose related technical solutions.
[0003] The existing technical solutions have the following technical problems:
[0004] 1. The product has a one-piece structure, which makes it inconvenient to move due to the limitation of cable length;
[0005] 2. In multi-person scenarios or noisy environments, when the robot is woken up, it will be interfered with by the voices and noise of multiple people, making it unable to interact effectively. Summary of the Invention
[0006] The technical problem to be solved by this utility model is to provide a desktop AI robot. By designing the robot body and the base as separate structures, the technical problem of existing robots being inconvenient to move is solved. Users can remove the robot body from the base and interact with it at close range, reducing or avoiding other interference. The robot body can be charged when it is placed on the base.
[0007] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is: a desktop AI robot, including a base and a robot body placed on top of the base. The key feature is that a positioning component is provided between the base and the robot body. The positioning component includes a positioning seat with a positioning part disposed on the top of the base and a positioning groove disposed on the bottom of the robot body and matching the positioning part. A charging seat is provided in the central hole of the positioning seat, and a magnetic charging head matching the charging seat is provided on the bottom of the robot body.
[0008] Furthermore, the positioning seat includes a tapered connecting portion and one or more positioning portions evenly distributed circumferentially along the connecting portion.
[0009] Furthermore, the positioning part includes one or two or more petal-shaped positioning blocks arranged side by side.
[0010] Furthermore, a positioning boss is provided on the inner side of the positioning part, and a groove matching the positioning boss is provided in the positioning groove.
[0011] Furthermore, the robot body includes a front shell, a rear shell connected to the front shell to form an installation cavity, and an AI interaction device. The AI interaction device includes a processor module, a display screen connected to the processor module, function buttons, a microphone, a speaker, a communication module, and a battery. The display screen is disposed on the front shell, and the function buttons are disposed at the connection between the front shell and the rear shell.
[0012] Furthermore, heat dissipation holes are provided on the rear shell near the connection point with the front shell.
[0013] Furthermore, a sound outlet is provided on the rear shell.
[0014] Furthermore, a gimbal is provided on the base, the fixed part of the gimbal is provided with control buttons, the rotating part is provided with a camera, and the positioning seat is located on the top of the rotating part.
[0015] The beneficial effects of this utility model are: 1. The robot body and the base are designed to be separable, making it easy to remove from the base for voice interaction and other operations, effectively avoiding external interference; 2. A positioning component is designed to facilitate the quick placement of the robot body on the base and timely charging of the robot body through the charging dock and charging head; 3. The positioning part is petal-shaped, which improves the aesthetics; 4. A gimbal and camera are set on the base, which can work together with the robot body to achieve collaborative image acquisition and voice interaction. Attached Figure Description
[0016] Figure 1 This is a structural schematic diagram of a first embodiment of the desktop AI robot of this utility model;
[0017] Figure 2 This is a schematic diagram of the robot body being removed from the base in Embodiment 1;
[0018] Figure 3 This is a schematic diagram of the robot body in Embodiment 1 of the desktop AI robot of this utility model;
[0019] Figure 4 This is a block diagram of the control system of the robot body in Embodiment 1 of the desktop AI robot of this utility model;
[0020] Figure 5 This is a structural schematic diagram of Embodiment 2 of the desktop AI robot of this utility model.
[0021] In the attached diagram, 1 is the base, 2 is the positioning seat, 2-1 is the positioning part, 2-2 is the connecting part, 2-3 is the positioning block, 2-4 is the positioning boss, 3 is the robot body, 3-1 is the positioning groove, 3-2 is the front shell, 3-3 is the rear shell, 3-4 is the heat dissipation hole, 3-5 is the sound outlet, 3-6 is the groove, 4 is the charging seat, 5 is the magnetic charging head, 6 is the processor module, 7 is the display screen, 8 is the function button, 9 is the microphone, 10 is the speaker, 11 is the communication module, 12 is the battery, 13 is the gimbal, 13-1 is the fixing part, 13-2 is the control button, 13-3 is the rotating part, and 14 is the camera. Detailed Implementation
[0022] Example 1: See Appendix Figure 1-4 The desktop AI robot in this embodiment includes a base 1 and a robot body 3 placed on top of the base 1. The robot body 3 and the base 1 are designed to be detachable. When it needs to be used in another place, the robot body 3 can be removed from the base 1 and used in another place. Or, if there is environmental noise that affects the interaction, the robot body 3 can be removed from the base 1 and interacted with at close range.
[0023] See appendix Figure 2 and 3 Due to the detachable design, a positioning component is provided between the base 1 and the robot body 3 to facilitate quick positioning between the robot body 2 and the base 1. The positioning component includes a positioning seat 2 with a positioning part 2-1 located on the top of the base 1 and a positioning groove 3-1 located on the bottom of the robot body 3 and matching the positioning part 2-1.
[0024] The aforementioned positioning base 2 includes a conical connecting portion 2-2 and one or more positioning portions 2-1 evenly arranged circumferentially along the connecting portion 2-2. Each positioning portion 2-1 includes one or two or more petal-shaped positioning blocks 2-3 arranged side-by-side. In this embodiment, two positioning portions 2-1 are provided, each including two petal-shaped positioning blocks 2-3 arranged side-by-side, to ensure that the base 1 remains aesthetically pleasing whether the robot body 3 is placed on or removed from the base 1.
[0025] A positioning boss 2-4 is provided on the inner side of the positioning part 2-1 and on each positioning block 2-3. A groove 3-6 matching the positioning boss 2-4 is provided in the positioning groove 3-1. The positioning boss 2-4 and the groove 3-6 can achieve two positioning, ensuring positioning accuracy.
[0026] After the robot body 3 is placed on the base 1, it needs to be charged in time to avoid the robot from shutting down due to low power. Therefore, a charging base 4 is provided in the center hole of the connecting part 2-2, and a magnetic charging head 5 matching the charging base 4 is provided at the bottom of the robot body 3.
[0027] See appendix Figure 3 and 4 The robot body 3 includes a front shell 3-2, a rear shell 3-3 connected to the front shell 3-2 to form a mounting cavity, and an AI interaction device. The robot body 3 is spherical, small and exquisite, and easy to handle. The AI interaction device includes a processor module 6, a display screen 7 connected to the processor module 6, function buttons 8, a microphone 9, a speaker 10, a communication module 11 supporting 2.4G / 5G WiFi wireless communication, and a battery 12. The display screen 7 is located on the front shell 3-2. The function buttons 8 are located at the connection between the front shell 3-2 and the rear shell 3-3. In this embodiment, the function buttons 8 are a wake-up button (a short press wakes up the robot body 3) and a power button (pressing for a certain period of time controls the power on / off of the robot body 3), and can also be customized as other buttons. The processor module 6, microphone 9, speaker 10, communication module 11, and battery 12 are all located inside the mounting cavity. To ensure that the heat generated by the components inside the mounting cavity is dissipated in a timely manner during operation, heat dissipation holes 3-4 are provided on the rear shell 3-3 near the connection with the front shell 3-2. The rear cover 3-3 has a sound outlet 3-5 that matches the speaker 10. After receiving a voice command, the AI interaction device processes the command, generates a response, and plays the voice through the speaker 10 and / or displays an image through the display screen 7 to complete the interaction.
[0028] When applied to the catering industry, this embodiment enables self-service ordering and payment through voice interaction and image display. It includes the following steps.
[0029] 1. The desktop AI robot is placed on the table. After diners are seated, they can wake up the robot by voice or by pressing function button 8.
[0030] 2. After being activated, the robot will listen for the diners' voice commands for a certain period of time. It will then analyze the voice commands, understand natural language, and synthesize responses, ultimately playing the commands aloud through a speaker. Diners can order food through interaction with the robot. During ordering, the display screen can show real-time photos of the dishes the diners are ordering. The photos will display information such as the dish's heat and spiciness.
[0031] When diners are unsure which dishes to order and ask the robot for help, the robot retrieves the most frequently ordered dishes from its database and provides the diners with relevant information through voice and images.
[0032] Due to the potentially large number of diners, there may be instances where commands cannot be accurately recognized. Customers can remove the robot from base 1 and use it to interact with the customer and place their orders.
[0033] 3. After diners have placed their orders, the information about the ordered dishes will be displayed on the screen. At this time, the robot enters sleep mode. If any problems occur during the meal, the robot can be woken up and the back-end management personnel can be notified through voice interaction for handling.
[0034] 4. When it's time to pay the bill after the meal, you can wake up the robot again to display the payment code on the screen for the diners to pay.
[0035] In this embodiment, when applied to a companionship scenario, a gimbal 13 is mounted on the base 1. The fixed part 13-1 of the gimbal 13 has control buttons 13-2, and the rotating part 13-3 has a camera 14. A positioning seat 2 is positioned on top of the rotating part 13-3 to enable a wider range of application scenarios. The control buttons 13-2 have three functions: a power button, a rotation button, and a light button. The functions of the buttons can also be customized. The gimbal 13 has communication capabilities, enabling collaboration with the robot body 3 via a backend system.
[0036] In addition to interacting with the robot body 3 to control the gimbal 13, the operator can also rotate the rotating part 13-3 3 360° using the control button 13-2 on the gimbal 13. During the rotation, the camera 14 simultaneously captures images, which are then stitched together to create a 360° panoramic photo.
[0037] Operators can also use the camera 14 on the gimbal 13 and the display screen 7 on the robot to make video calls and other functions.
[0038] Example 2: See Appendix Figure 5 In this embodiment, the positioning part 2-1 of the positioning seat 2 is provided with a through hole, and the robot body 3 is provided with a connecting hole coaxial with the through hole. The connection between the two is achieved by a connecting screw that passes through the through hole and is threaded to the connecting hole, thereby realizing two modes: a fixed mode and a detachable mode.
[0039] Finally, it is necessary to note that the above content is only used to help understand the technical solution of the present invention and should not be construed as a limitation on the scope of protection of the present invention; any non-essential improvements and adjustments made by those skilled in the art based on the above content of the present invention are all within the scope of protection claimed by the present invention.
Claims
1. A desktop AI robot, comprising a base (1) and a robot body (3) placed on top of the base (1), characterized in that: A positioning component is provided between the base (1) and the robot body (3). The positioning component includes a positioning seat (2) located on the top of the base (1) and having a positioning part (2-1) and a positioning groove (3-1) located on the bottom of the robot body (3) and matching the positioning part (2-1). A charging seat (4) is provided in the center hole of the positioning seat (2), and a magnetic charging head (5) matching the charging seat (4) is provided at the bottom of the robot body (3).
2. The desktop AI robot according to claim 1, characterized in that: The positioning seat (2) includes a tapered connecting part (2-2) and one or more positioning parts (2-1) evenly arranged circumferentially along the connecting part (2-2).
3. The desktop AI robot according to claim 2, characterized in that: The positioning part (2-1) includes one or two or more petal-shaped positioning blocks (2-3) arranged side by side.
4. The desktop AI robot according to claim 2, characterized in that: A positioning boss (2-4) is provided on the inner side of the positioning part (2-1), and a groove (3-6) matching the positioning boss (2-4) is provided in the positioning groove (3-1).
5. The desktop AI robot according to claim 1, characterized in that: The robot body (3) includes a front shell (3-2), a rear shell (3-3) connected to the front shell (3-2) to form an installation cavity, and an AI interaction device. The AI interaction device includes a processor module (6), a display screen (7) connected to the processor module (6), function buttons (8), a microphone (9), a speaker (10), a communication module (11), and a battery (12). The display screen (7) is located on the front shell (3-2), and the function buttons (8) are located at the connection between the front shell (3-2) and the rear shell (3-3).
6. The desktop AI robot according to claim 5, characterized in that: A heat dissipation hole (3-4) is provided on the rear shell (3-3) near the connection with the front shell (3-2).
7. The desktop AI robot according to claim 5, characterized in that: A sound outlet (3-5) is provided on the rear shell (3-3).
8. The desktop AI robot according to any one of claims 1-7, characterized in that: A gimbal (13) is provided on the base (1). The fixed part (13-1) of the gimbal (13) is provided with control buttons (13-2), and the rotating part (13-3) is provided with a camera (14). The positioning seat (2) is located on the top of the rotating part (13-3).
Citation Information
Patent Citations
Desktop AI accompanying robot
CN119567292A
AI intelligent teaching robot based on Internet of Things
CN216161245U
Intelligent education robot with voice interaction function
CN217113548U