CN217087075U - Drive board and electronic equipment - Google Patents

Drive board and electronic equipment Download PDF

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Publication number
CN217087075U
CN217087075U CN202121527217.XU CN202121527217U CN217087075U CN 217087075 U CN217087075 U CN 217087075U CN 202121527217 U CN202121527217 U CN 202121527217U CN 217087075 U CN217087075 U CN 217087075U
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China
Prior art keywords
board
plate
expansion
interface
drive
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CN202121527217.XU
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Chinese (zh)
Inventor
陈亦鹏
孙云乐
蔡文晖
张军伟
刘啸宇
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shanghai Sensetime Intelligent Technology Co Ltd
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Shanghai Sensetime Intelligent Technology Co Ltd
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Priority to CN202121527217.XU priority Critical patent/CN217087075U/en
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Abstract

The application provides a drive plate and electronic equipment, drive plate (100) are provided with net gape seat (23), net gape seat (23) can be for external equipment power supply and/or carry out the communication through connecting the net twine. By adopting the technical scheme, the net port seat is arranged on the driving plate, so that the driving plate can be directly connected with and drive the components of the robot, such as a camera, a motor, a sensor and the like.

Description

Drive board and electronic equipment
Technical Field
The application relates to a driving board and electronic equipment.
Background
The raspberry pi development board is a very popular development board, which has also gradually begun to spread in the field of programming education. In order to make programming education more interesting, some products combine raspberry development boards with splicing blocks (robots), so that the splicing blocks are endowed with richer perception and computing capability, and meanwhile, the programming education is interesting and playable. However, the raspberry development board itself does not have an interface to a sensor, a motor, and the like of the robot, and cannot directly drive the sensor, the motor, and the like.
SUMMERY OF THE UTILITY MODEL
The embodiment of the application provides a driving board and electronic equipment.
The application provides a drive plate, the drive plate is provided with the net gape seat, the net gape seat can be for the peripheral equipment power supply and/or carry out the communication through connecting the net twine.
Optionally, the drive board includes core board and expansion board, core board is the development board, core board with the expansion board fixed connection and electricity are connected, through the expansion board can be for core board power supply and provide serial communication.
Optionally, the drive board is mounted with a heat sink, the heat sink being fixedly connected to the core board and/or the expansion board.
Optionally, the core board is press-fixed between the expansion board and the heat spreader.
Optionally, the net mouth seat is disposed on the expansion board.
Optionally, the expansion board includes a USB-a interface and a Type-C interface, the USB-a interface is configured to receive a USB plug, and the Type-C interface is configured to receive a Type-C plug.
Optionally, the expansion board includes a memory card slot for receiving a memory card.
Optionally, the expansion board is internally provided with a sound card driver.
Optionally, the expansion board is provided with a screen display interface and a screen touch interface, and the screen display interface and the screen touch interface are used for connecting a screen.
The present application further proposes an electronic device, comprising:
the drive plate of any of the above claims;
sensors and/or motors; and
and the net wire is used for connecting the net port seat of the driving plate with the sensor and/or the motor.
Optionally, the sensor comprises at least one of a camera, a photosensor, an ultrasonic sensor.
By adopting the technical scheme, the driving board is provided with the network port seat, so that the driving board can be directly connected with and drive the camera, the motor, the sensor and other components of the robot.
Drawings
Fig. 1 shows a schematic structural diagram of a driving plate according to an embodiment of the present application.
Fig. 2 shows a structural diagram of a driving plate according to an embodiment of the present application.
Fig. 3 shows a schematic structural view of a driving board with a heat sink mounted thereon according to an embodiment of the present application.
Fig. 4 shows a schematic structural diagram of an electronic device according to an embodiment of the application.
Fig. 5 shows a schematic structural diagram of another electronic device according to an embodiment of the present application.
Description of the reference numerals
100 drive board 200 shell 300 building block
1 core board 11 first mounting hole
2 expansion board 21USB-A interface 22Type-C interface 23 socket 24 memory card slot 25 key 26 second mounting hole 27 screen
3 a radiator.
Detailed Description
In order to more clearly illustrate the above objects, features and advantages of the present application, a detailed description of the present application is provided in this section in conjunction with the accompanying drawings. This application is capable of embodiments in addition to those described herein, and is intended to cover such departures from the present disclosure as come within known or customary practice in the art to which this application pertains and which fall within the limits of the appended claims. The protection scope of the present application shall be subject to the claims.
As shown in fig. 1 to 3, the present application provides a driving board 100, which includes a core board 1 and an expansion board 2, where the core board 1 and the expansion board 2 may both be rectangular circuit boards, the core board 1 is fixedly connected to the expansion board 2, and the core board 1 and the expansion board 2 are electrically connected through a flat cable, and the expansion board 2 may provide power to the core board 1 and provide a function of serial communication.
The core board 1 and the expansion board 2 may be fixedly connected by a clip, and the clip may be disposed on the core board 1 and/or the expansion board 2. As shown in fig. 3, the expansion board 2 may be fixedly connected with a heat sink 3, a surface of the heat sink 3 contacting the core board 1 dissipates heat of the core board 1, and the core board 1 may be fixed between the expansion board 2 and the heat sink 3 by pressing.
The heat sink 3 may be connected to the core board 1 and/or the expansion board 2 by bolts, for example, the core board 1 is provided with two first mounting holes 11, the expansion board 2 is provided with one second mounting hole 26, and the second mounting hole 26 is located at a side of the core board 1. The heat sink 3 may be mounted to the core plate 1 and/or the expansion plate 2 through the first mounting hole 11 and the second mounting hole 26 using bolts. The second mounting hole 26 is used for mounting the heat sink 3 and also has a function of fixing the core board 1 to the expansion board 2.
Radiator 3 includes fin and fan, and the fan is installed in the fin, and the fin hugs closely core plate, can be for core plate 1 rapid cooling through the fan. The fan can be a speed-regulating fan, and the fan is electrically connected with the expansion board 2, so that the rotating speed of the fan can be regulated as required.
Illustratively, the core board 1 may be a raspberry pi development board, and the driver board 100 may be a raspberry pi driver board. Of course, the core board 1 may be other types of development boards.
The expansion board 2 comprises a USB-A interface 21, a Type-C interface 22, a network interface seat 23, a memory card slot 24 and keys 25.
The expansion board 2 can be connected to an external device through the USB-a interface 21, the Type-C interface 22, the network socket 23, and the memory card slot 24. The USB-A interface 21 is used for receiving a USB plug, the Type-C interface 22 is used for receiving a Type-C plug, the network port seat 23 is used for receiving a crystal head of a network cable, and the memory card slot 24 is used for receiving a memory card.
The raspberry pi drive plate of this application can be used for the robot, for example by the robot that building blocks put together and form. The net gape seat 23 of the raspberry group drive plate can be compatibly connected with a camera, a motor and a sensor (such as a photoelectric sensor and an ultrasonic sensor) of a robot, the raspberry group drive plate is connected with the robot through a network cable, the sensor of the robot is powered and the function of serial port communication is provided through the raspberry group drive plate, and therefore the raspberry group drive plate is enabled to have rich playability and developability.
The network port seat 23 may be a network port seat of RJ11 type, the network port seat 23 is provided with a plurality of network port seats 23, a plurality of network port seats 23 may be connected together to form a group, for example, 4 network port seats 23 are connected to form a group, the network port seat 23 may be provided with 3 groups, and three edges of the expansion board 2 may be respectively provided with one network port seat 23.
Because the expansion board 2 and the core board 1 establish serial communication, the core board 1 and the expansion board 2 can be controlled and operated through the keys 25.
The expansion board 2 may further be provided with a screen display interface and a screen touch interface, the screen display interface and the screen touch interface may be two independent interfaces or may be the same interface integrating two functions, through the screen display interface and the screen touch interface, the expansion board 2 may be connected to the screen 27, and the screen 27 is used to implement display and touch (click, slide) operations, so that the driving board 100 is convenient to implement human-computer interaction.
The expansion board 2 may have a built-in sound card having a sound card driver so that the drive board 100 can record and play audio. The expansion board 2 can be connected with a battery, the battery can be a rechargeable battery, and the raspberry is sent with a driving board for power supply through the battery, so that the driving board 100 is durable in endurance. The expansion board 2 and the battery are both provided with metal contacts, and the expansion board 2 and the battery can be connected through the metal contacts. The expansion board 2 is provided with a time delay startup and shutdown program, so that the expansion board 2 has a time delay startup and shutdown function, and shutdown caused by mistaken triggering of a switch can be avoided.
In a possible embodiment, a first edge of the expansion board 2 is provided with a USB-a interface 21 and a Type-C interface 22, and a second edge opposite to the first edge is provided with a group port seat 23. For example, as shown in fig. 4, 4 mesh holders 23 are provided as a group. A third edge adjacent to the first edge is also provided with a networking port seat 23, a fourth edge opposite to the third edge is also provided with a networking port seat 23, one side of the networking port seat 23 is provided with a storage card slot 24, and the other side is provided with two keys 25.
The drive plate of this application embodiment can compatible raspberry group development board, and the user can utilize the raspberry to send the drive plate to carry out the program development to the camera, motor, sensor etc. of the compatible robot of raspberry group drive plate can make the raspberry send the drive plate to be connected with camera, motor, sensor etc.. The camera and the sensor enable the robot to have sensing capability, the motor enables the robot to have movement capability, and the raspberry group drive plate enables the robot to have computing capability. The raspberry pi drive plate is connected with a robot (such as a robot formed by splicing building blocks), and can be used for entertainment or programming education.
The present application further proposes an electronic device, which includes: a drive plate 100, mesh wires and sensors and/or motors; the network cable is used to connect the network port seat 23 of the drive board 100 with the sensor and/or motor. The sensor may include at least one of a camera, a photosensor, an ultrasonic sensor.
As shown in fig. 4, the electronic device may further include a housing 200, the inside of the housing 200 may be used to house the driving board 100 and the battery, the screen 27 may be mounted on the surface of the housing 200, the housing 200 may be provided with holes exposing various interfaces of the driving board, and the housing 200 may protect the driving board.
As shown in fig. 5, the electronic device may further include a building block assembly 300, the building block assembly 300 may be connected to the housing 200 to form various models of robots in a pieced manner, and the driving board 100 may provide the robots with rich sensing and computing capabilities.
While the present application has been described in detail with reference to the above embodiments, it will be apparent to those skilled in the art that the present application is not limited to the embodiments described in the present specification. The present application can be modified and implemented as a modified embodiment without departing from the spirit and scope of the present application defined by the claims. Therefore, the description in this specification is for illustrative purposes and does not have any limiting meaning for the present application.

Claims (8)

1. A driving board is characterized in that the driving board is provided with a network port seat which can supply power and/or communicate with external equipment through a connecting network cable,
the drive plate includes nuclear core plate and expansion board, nuclear core plate is the development board, nuclear core plate with the expansion board fixed connection is and the electricity is connected, through the expansion board can be for nuclear core plate power supply and provide serial ports communication, the expansion board includes USB-A interface and Type-C interface, USB-A interface is used for receiving the USB plug, Type-C interface is used for receiving Type-C plug.
2. A drive board according to claim 1, wherein the drive board is fitted with a heat sink fixedly attached to the core board and/or expansion board.
3. A drive plate according to claim 2 wherein the core plate is press-fitted between the expansion plate and the heat sink.
4. The drive plate of claim 1, wherein the socket is provided to the expansion plate.
5. The driver board according to claim 1, wherein the expansion board includes a memory card slot for receiving a memory card.
6. The driver board of claim 1, wherein the expansion board has a sound card drive built in.
7. The driving board according to claim 1, wherein the expansion board is provided with a screen display interface and a screen touch interface for connecting a screen.
8. An electronic device, comprising:
a drive plate according to any one of claims 1 to 7;
sensors and/or motors; and
and the net wire is used for connecting the net port seat of the driving plate with the sensor and/or the motor.
CN202121527217.XU 2021-07-06 2021-07-06 Drive board and electronic equipment Active CN217087075U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121527217.XU CN217087075U (en) 2021-07-06 2021-07-06 Drive board and electronic equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121527217.XU CN217087075U (en) 2021-07-06 2021-07-06 Drive board and electronic equipment

Publications (1)

Publication Number Publication Date
CN217087075U true CN217087075U (en) 2022-07-29

Family

ID=82496763

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121527217.XU Active CN217087075U (en) 2021-07-06 2021-07-06 Drive board and electronic equipment

Country Status (1)

Country Link
CN (1) CN217087075U (en)

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