High-performance AI box
By designing a high-performance AI box that integrates multiple communication interfaces and powerful computing capabilities, the problems of insufficient computing power and difficulty in data interaction in industrial equipment have been solved, thus meeting the needs of intelligent production and security.
Patent Information
- Application Number
- CN202520447196.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-14
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-03-14
AI Technical Summary
Existing industrial equipment has limited computing power, difficulty in data interaction, poor interoperability, lack of intelligent analysis capabilities, and insufficient scalability and flexibility, making it unable to meet the needs of intelligent production and security.
Design a high-performance AI box that integrates a central processing unit, a data storage module, an HDMI decoding module, a data transmission module, and an FPGA module. It supports multiple communication interfaces, including HDMI, 4G, Wi-Fi, CAN, and UART, and possesses powerful computing capabilities and flexible scalability.
It achieves efficient data processing and intelligent analysis, enhances device interconnectivity, supports the rapid operation of complex algorithms, provides diverse human-machine interaction and functional expansion, and is suitable for industrial automation and intelligent security scenarios.
Smart Images

Figure CN223859176U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to AI edge computing technical field, concretely relates to a high performance AI box. BACKGROUND
[0002] In the era of rapid development of digitization and intelligence, a series of universal problems need to be solved in many fields. In the field of industrial automation, the interconnection between traditional devices is poor, and industrial devices, sensors and the like often have different communication interface standards, leading to difficulties in data interaction, and it is difficult to realize efficient centralized monitoring and collaborative work. At the same time, the computing capacity of many existing devices is limited, and it is difficult to handle and analyze complex production data intelligently, which cannot meet the needs of intelligent production process optimization and fault prediction in the era of industry 4.0. In the field of intelligent security, most monitoring devices can only record and store simple videos, lack intelligent image recognition and analysis capabilities, and cannot effectively complete key security tasks such as personnel identification and abnormal behavior detection, and cannot meet the growing security requirements. In addition, whether in the field of industry or security, the expansibility and flexibility of the device are generally insufficient, and once the function is upgraded or new scene application requirements are met, it is often difficult to realize rapid adjustment and adaptation due to the closed system architecture or limited interface resources. SUMMARY
[0003] The utility model aims at providing a kind of high performance AI box, solve the technical problem that the intelligent security, industrial automation and the like of prior art cannot meet the needs of data intelligent processing, device interconnection, man-machine interaction, function flexible expansion and customized development in many fields.
[0004] To solve the above technical problems, the utility model adopts the following technical solutions:
[0005] Provide a kind of high performance AI box, including shell, in the shell surface is equipped with HDMI data input interface, HDMI data output interface and power interface, in the shell is equipped with circuit board, the circuit board is equipped with central processing unit, data storage module, HDMI data decoding module, data transmission module, FPGA module and power module, the power interface is electrically connected with the power module, the data storage module, data transmission module, FPGA module are all electrically connected with the central processing unit by bus, the HDMI data input interface is electrically connected to the HDMI data decoding module, the HDMI data decoding module is electrically connected to the FPGA module, the HDMI data output interface is electrically connected to the HDMI data input interface.
[0006] Preferably, the data transmission module comprises a SIM interface and a 4G network module arranged on the circuit board, the SIM interface is electrically connected to the 4G network module, and the 4G network module is electrically connected to the central processor through a bus; a SIM slot and a first antenna interface corresponding to the SIM interface and the 4G network module are arranged on the surface of the shell.
[0007] Preferably, the data transmission module comprises a wireless module for realizing Bluetooth and WiFi transmission, and a second antenna interface corresponding to the wireless module is arranged on the surface of the shell.
[0008] Preferably, the data transmission module comprises a USB interface module arranged on the circuit board, and a USB interface electrically connected to the USB interface module is arranged on the surface of the shell.
[0009] Preferably, the data transmission module comprises a network communication module, and a network port electrically connected to the network communication module is arranged on the surface of the shell.
[0010] Preferably, the data transmission module further comprises a 485 interface module, and a 485 interface electrically connected to the 485 interface module is arranged on the surface of the shell.
[0011] Preferably, the surface of the shell is provided with a group of indicator lights, the circuit board is provided with an indicator light control circuit electrically connected to the central processor, and the group of indicator lights is electrically connected to the indicator light control circuit.
[0012] Preferably, the central processor is an RK3588 processor.
[0013] Preferably, the data transmission module further comprises a CAN interface module, and a CAN interface electrically connected to the CAN interface module is arranged on the surface of the shell.
[0014] Preferably, the data transmission module further comprises a UART interface module, and a UART interface electrically connected to the UART interface module is arranged on the surface of the shell.
[0015] Compared with the prior art, the high-performance AI box has the advantages that the high-performance AI box comprises a shell, an HDMI data input interface, an HDMI data output interface and a power supply interface are arranged on the surface of the shell, a circuit board is arranged in the shell, a central processing unit, a data storage module, an HDMI data decoding module, a data transmission module, an FPGA module and a power supply module are arranged on the circuit board, the box is based on an RK3588 processor, has strong computing capacity, supports efficient operation of complex AI algorithms, and has better speed and precision in processing face detection algorithms, and is suitable for high real-time scenarios. The communication interface of the high-performance AI box integrates a gigabit Ethernet, a Wi-Fi, a 4G module and other network peripherals, and CAN, RS485 and UART local interfaces, has strong network adaptability and is convenient for industrial equipment connection, and application is widened. In terms of interaction, the HDMIOUT, the HDMIIN and the audio interface provide multiple human-computer interactions, and video display and audio playback can be realized by connecting display and audio equipment, and the high-performance AI box is suitable for security monitoring scenarios. In terms of expansion function, various peripherals such as the multi-channel USB Host, the Type-C debugging interface, the indicator light and the TF card greatly improve the expansion performance, can be connected with various devices, expand storage function, and understand the device state and operate. BRIEF DESCRIPTION OF DRAWINGS
[0016] The accompanying drawings are included to provide a further understanding of the present application and are incorporated in and constitute a part of this specification, illustrate embodiments of the present application and serve to explain the present application, and do not constitute a limitation on the present application. In the drawings:
[0017] Figure 1 It is a 45° inclined diagram of the high-performance AI box of the present application.
[0018] Figure 2 It is one of product interface diagrams of the high-performance AI box of the present application.
[0019] Figure 3 It is the second product interface diagram of the high-performance AI box of the present application.
[0020] In the drawings, each reference numeral represents: a shell 1, a connecting plate 11, an HDMI data input interface 101, an HDMI data output interface 102, a power supply interface 103, a sim slot 104, a first antenna interface 105, a second antenna interface 106, a USB3.0 full-function A port 107, a USB2.0 A port 108, a network port 109, a terminal row 1010, a Type-C interface 1011, an audio output interface 1012, a Debug interface 1013, and a TF interface 1014. DETAILED DESCRIPTION
[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0022] In one embodiment, a high-performance AI box is provided; please refer to [link / reference]. Figures 1 to 3 ,like Figure 1 As shown, the high-performance AI box includes a casing 1, with connecting plates 11 on both sides of the bottom for fixing the device. An HDMI data input interface 101 and an HDMI data output interface 102 are provided on the front surface of the casing 1. The HDMI data input interface 101 and the HDMI data output interface 102 are used to transmit HDMI signal data. Figure 1 As shown, a power interface 103 is provided on one side surface of the housing 1. The power interface 103 is electrically connected to the power module on the circuit board inside the housing 1. The power module provides DC3.3V and DC5V operating voltages to power other electronic components on the circuit board. The power interface is a row of 3-pin pluggable terminals with a spacing of 5.08mm. The received power supply voltage is 9-24V, and the standard input voltage is 12V.
[0023] In this high-performance AI box, the circuit board inside the casing 1 houses an HDMI data decoding module, a data storage module, a data transmission module, and a central processing unit (CPU). The CPU is an RK3588 processor running the Ubuntu 22.04 desktop system, supporting secondary development. Unlike closed systems, it allows for customized programs and algorithms, enhancing device flexibility and scalability, and playing a significant role in fields such as smart security and industrial automation. The HDMI data decoding module, data storage module, and data transmission module are all electrically connected to the CPU via a bus. The HDMI data decoding module connects to the bus via an FPGA module (programmable gate array), which decodes the data received from the HDMI data input interface 101. Under the control of the CPU, the analyzed data is stored in the data storage module. Then, under the control of the CPU, the decoded data stored in the data storage module can be transmitted to the outside world via the data transmission module. This data transmission module is used for communication between the circuit board and external systems, such as transmitting data to a local server or cloud server.
[0024] like Figure 1 , Figure 2 , Figure 3As shown, the data transmission module includes a 4G network module, the 4G network module is arranged on the circuit board and is correspondingly provided with a sim interface for network access, the sim interface is connected to the 4G network module, the 4G network module is electrically connected to the central processing unit through the bus, the sim slot 104 and the first antenna interface 105 corresponding to the sim interface and the 4G network module are arranged on the surface of the shell 1, the first antenna interface 105 is connected to the 4G network module, the flow card is placed in the sim slot 104, then the 4G network module can perform the transmission and reception of radio frequency signals through the antenna connected to the first antenna interface 105, if the flow card is not accessed, the 4G network module cannot work.
[0025] The data transmission module further includes a wireless module for realizing Bluetooth and WiFi transmission, the second antenna interface 106 corresponding to the wireless module is arranged on the surface of the shell 1, the wireless module is an AP6212 module, can simultaneously support WiFi and Bluetooth functions, the working frequency of WiFi and Bluetooth is 2.4GHz, the wireless module can perform the transmission and reception of wireless signals through the antenna connected to the second antenna interface 106.
[0026] The data transmission module includes a USB interface module, the USB interface electrically connected to the USB interface module is arranged on the surface of the shell, the USB interface module is composed of the USB interface drawn from the central processing unit and some peripheral electronic devices (including anti-interference devices, protector devices and the like), the USB interface is provided with two, which are 1 USB3.0 full function A port 107 and 1 USB2.0 A port 108, the functions of the device can be enriched by connecting the U disk and other external devices.
[0027] The data transmission module further includes a network communication module, the network port 109 electrically connected to the network communication port module is arranged on the surface of the shell 1, the network port 109 can connect the network with the outside world through the 100M network cable and 1000M network cable, the image and picture data on the screen can be externally transmitted after being analyzed through the network port 109, the physical form of the network port 109 is an RJ45 interface, with LINK and SIPEED indicator lights, to indicate the working state of the network port.
[0028] The data transmission module further comprises a 485 interface module, and a 485 interface electrically connected to the 485 interface module is arranged on the surface of the casing. The 485 interface communication protocol is a general communication protocol used for communication between the device and other devices, thereby improving the applicability of the device under different needs. The 485 interface is integrated in the terminal block 1010. The data transmission module of the high-performance AI box further comprises a CAN interface module, and a CAN interface electrically connected to the CAN interface module is arranged on the surface of the casing 1. The CAN interface is integrated in the terminal block 1010. The data transmission module of the high-performance AI box further comprises a UART interface module, and a UART interface electrically connected to the UART interface module is arranged on the surface of the casing. The UART interface is integrated in the terminal block 1010.
[0029] A group of indicator lights is further arranged on one side surface of the casing 1. An indicator light control circuit electrically connected to the central processor is arranged on the circuit board. The group of indicator lights is electrically connected to the indicator light control circuit. The indicator light control circuit can be a control switch group composed of thyristors, which is used to control different indicator lights. Here, the group of indicator lights includes two red and green indicator lights. The indicator lights are side-inserted LED lamp beads (with lamp holders). The red indicator light "PWR" is used as a symbol for whether the system is normally powered on. When the power supply is working normally, the indicator light is always on. The green indicator light "RUN" is used as a symbol for whether the system is normally running. When the system is running normally, the indicator light flashes.
[0030] As shown in FIG. 1, Figure 2 The casing 1 is further provided with a Debug interface 1013, which is used for debugging programs and downloading firmware programs. The physical interface form of the Debug interface 1013 is a Type-C interface. In addition, the casing 1 is further provided with an audio output interface 1012, which is used for inserting earphones to output audio. A TF interface 1014 is further arranged on one side of the casing 1. The TF interface 1014 is used for inserting an expansion memory card. The casing 1 is further provided with a Type-C interface 1011, which is used for transmitting data.
[0031] Based on the above embodiments, it can be known that the high-performance AI box is based on an RK3588 processor, has strong computing power, supports efficient operation of complex AI algorithms, and has better speed and accuracy in processing face detection algorithms, and is suitable for high real-time scenarios. The communication interface of the high-performance AI box integrates network peripherals such as gigabit Ethernet, Wi-Fi, 4G module, and CAN, RS485, UART local interface, has strong network adaptability and is convenient for industrial equipment connection, and widens application. In terms of interaction, the HDMIOUT, HDMIIN and audio interface provide multiple human-computer interaction, and access to display and audio equipment can realize video display and audio playback, and are suitable for security monitoring and other scenarios. In terms of expansion function, various peripherals such as multi-channel USB Host, Type-C form debugging interface, indicator light, TF card and the like greatly improve the expansibility, and can be externally connected to various devices, expand storage function, and understand the device state and operate.
[0032] Although the embodiments of the present application have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. A high-performance AI box, characterized in that: The application relates to a data transmission device, which comprises a shell, an HDMI data input interface, an HDMI data output interface and a power supply interface arranged on the surface of the shell, a circuit board arranged in the shell, a central processing unit, a data storage module, an HDMI data decoding module, a data transmission module, an FPGA module and a power supply module arranged on the circuit board, the power supply interface being electrically connected to the power supply module, the data storage module, the data transmission module and the FPGA module being electrically connected to the central processing unit through a bus, the HDMI data input interface being electrically connected to the HDMI data decoding module, the HDMI data decoding module being electrically connected to the FPGA module, and the HDMI data output interface being electrically connected to the HDMI data input interface.
2. The high-performance AI box of claim 1, wherein: The data transmission module comprises a sim interface and a 4G network module arranged on the circuit board, the sim interface being electrically connected to the 4G network module, and the 4G network module being electrically connected to the central processing unit through a bus; a sim slot and a first antenna interface corresponding to the sim interface and the 4G network module are arranged on the surface of the shell.
3. The high-performance AI box of claim 1, wherein: The data transmission module comprises a wireless module for realizing Bluetooth and WiFi transmission, and a second antenna interface corresponding to the wireless module is arranged on the surface of the shell.
4. The high-performance AI box of claim 1, wherein: The data transmission module comprises a USB interface module arranged on the circuit board, and a USB interface electrically connected to the USB interface module is arranged on the surface of the shell.
5. The high-performance AI box of claim 1, wherein: The data transmission module comprises a network communication module, and a network port electrically connected to the network communication module is arranged on the surface of the shell.
6. The high-performance AI box of claim 1, wherein: The data transmission module further comprises a 485 interface module, and a 485 interface electrically connected to the 485 interface module is arranged on the surface of the shell.
7. The high-performance AI box of claim 1, wherein: A group of indicator lamps are arranged on the surface of the shell, an indicator lamp control circuit electrically connected to the central processing unit is arranged on the circuit board, and the group of indicator lamps are electrically connected to the indicator lamp control circuit.
8. The high-performance AI box of claim 1, wherein: The central processing unit is an RK3588 processor.
9. The high-performance AI box of claim 1, wherein: The data transmission module further comprises a CAN interface module, and a CAN interface electrically connected to the CAN interface module is arranged on the surface of the shell.
10. The high-performance AI box of claim 1, wherein: The data transmission module further comprises a UART interface module, and a UART interface electrically connected to the UART interface module is arranged on the surface of the shell.