Raspberry Pi Programming Experiment Board
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40+sensors | WiFi IoT | Programming learning | Secondary development


Programming development Experimental testing One-piece molding Technical Support

Python programming Graphical programming Audio-Visual Entertainment Tutorial Books
Random shipment of product styles
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The Raspberry Pi programming experimental board comes in two different color styles, with the same feature, and will be shipped randomly.
Green Programming Experiment Board Black Programming Experiment Board
Product Introduction
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The Raspberry Pi experimental board programming and development kit is a comprehensive sensor development training product based on the Raspberry Pi hardware platform, suitable for fields such as artificial intelligence, Internet of Things, automation, and embedded Linux development.
The product can be equipped with a high-definition HDMI display and wireless keyboard and mouse, making it easy to operate the system desktop, edit code, and run programs. More than 40 common IoT sensors, such as LED lights, infrared sensors, buzzers, etc., are integrated on a single experimental board to avoid loss or damage.
Each sensor comes with Python source code, which can be further developed based on textbooks. It is also equipped with a 5W speaker amplifier and supports Linux media playback application programming experiments.

Product Features
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| 40+experimental modules Over 40 experimental modules covering multiple fields from basic to advanced, providing rich practical experience to help learners deepen their understanding and application. |
| Integrated experimental board The integrated design makes the experiment more convenient, integrating various modules into the experimental board, simplifying the connection steps, and reducing the possibility of errors. |
| GPIO multiplexing module The addition of dip switches allows limited pins to achieve more functions. Improved flexibility and practicality, adapting to more experimental needs and application scenarios. |
| Built-in speaker The built-in speaker provides great convenience for multimedia experiments. Users can easily achieve audio output without the need for external audio devices. |
| High compatibility It can be connected to most mainstream development boards in the market such as Arduino, microbit, etc., greatly facilitating users' experimentation and development work. |
| Raspberry Pi experimental motherboard Equipped with a Raspberry Pi motherboard, more complex and diverse experiments can be conducted to explore the infinite possibilities of programming. |
| Suitable for a wide range of people Suitable for a wide range of people, from beginners to professional engineers. Whether in the field of education, research institutions, or electronics enthusiasts, they can all benefit from it. |
| Enrich textbook materials Provide detailed tutorials and sample code. Each experimental module comes with detailed tutorials and example code to help users quickly get started and successfully complete experiments. |
Usage scenarios
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The Raspberry Pi experimental board programming development kit supports both Python and Scratch programming languages. For advanced users, Python programming allows you to explore more features in depth. In addition, you can also try using graphical programming Scratch3.0, which is easy to learn and more suitable for beginners.

Competitive events Experimental development Teaching Practice Technology Exhibition
Product documentation
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The content goes from shallow to deep, open course source code.
Raspberry Pi Experimental Board Course Catalog | |||
Raspberry Pi Sensor Experiment Board Python Programming | Experimental article on graphical children's programming | ||
Initial Introduction Experiment Board | 1. Introduction to Raspberry Pi Sensor Experiment Board | Get to know the Raspberry Pi sensor experimental board | 1. Introduction to Raspberry Pi Sensor Experiment Board |
2. Switching of reuse pin GPIO | 2. Switching of reuse pin GPIO | ||
3. List of GPIO pins corresponding to sensors | 3. List of GPIO pins corresponding to sensors | ||
Basic Operations of Raspberry Pi | 1. Use of Raspberry Pi experimental board | Scratch3.0 Programming Beginner's Guide | 1. Get to know Scratch3.0 |
2. Burning and Backup of Raspberry Pi System | 2. Add Raspberry Pi GPIO extension | ||
3. Introduction to basic knowledge of Raspberry Pi | Graphic Experiment Course | 1. Button module experiment | |
Raspberry Pi Sensor Experiment Course | 1. LED light module experiment | 2. Active buzzer experiment | |
2. Active buzzer experiment | 3. Button controlled buzzer experiment | ||
3. Button module experiment | 4. Relay experiment | ||
4. Relay experiment | 5. Vibration motor experiment | ||
5. Vibration motor experiment | 6. Sound sensor experiment | ||
6. Sound sensor experiment | 7. Experiment on human body sensing sensors | ||
7. Experiment on Digital Light Intensity Sensor | 8. Touch sensor experiment | ||
8. DHT11 Temperature and Humidity Sensor Experiment | 9. Tilt sensor experiment | ||
9. Experiment on Human Motion Sensing Sensor | 10. RGB-LED light module experiment | ||
10. Ultrasonic ranging sensor experiment | 11. Flame Sensor Experiment | ||
11. RFID card reader experiment | 12. Smoke sensor experiment | ||
2.LCD1602 LCD Display Screen Experiment | 13. Infrared obstacle avoidance sensor experiment | ||
13. Servo servo experiment | 14. U-shaped photoelectric sensor experiment | ||
14. Stepper motor experiment | 15. Hall sensor experiment | ||
15. Dot matrix display screen experiment | 16. Bread board custom pin experiment | ||
16.4-digit 7-segment digital tube experiment | My World Programming Experiment | ||
17. Touch sensor experiment | Get to know the Raspberry Pi sensor test board | 1. Introduction to Raspberry Pi Sensor Experiment Board | |
18. Tilt sensor experiment | 2. Switching of reuse pin GPIO | ||
19. Infrared Remote Control Experiment | 3. List of GPIO pins corresponding to sensors | ||
20. RGB color light experiment | My World Introduction | Introduction to Minecraft Pi Edition | |
21. Passive buzzer experiment | 2. Running Minecraft Pi Edition | ||
22. Flame Sensor Experiment | Introduction to Minecraft API | 1. Obtain the player's position in the game | |
23. Smoke sensor experiment | 2. Transfer the player to a certain location in the game | ||
24. Infrared obstacle avoidance sensor experiment | 3. Generate and use block props | ||
25. U-shaped photoelectric sensor experiment | 4. Put down block props during exercise | ||
25. U-shaped photoelectric sensor experiment | 5. Play with TNT block props | ||
26. Hall sensor experiment | 6. Play with "Lava" block props | ||
27. joystick sensor experiment | 7. Building a house using Python code | ||
28. Digital Rotary Encoder Experiment | Combining physical sensors to explore my world | 1. Display the player's position on the LCD screen | |
29. Experiment on reed switch sensor | 2. Use sensors to teleport players through the air | ||
30. Experiment on photosensitive sensor | 3. Produce TNT bomb detectors | ||
31. Potentiometer sensor experiment | 4. Use NFC to generate block props | ||
32. Thermal Sensor Experiment | 5. Use button modules to control players to walk | ||
33.Experiment on DS18B20 Temperature Sensor | Contact Us | 1. Frequently Asked Questions and Answers | |
34. BMP180 pressure sensor experiment | 2. Technical support | ||
35. MPU6050 Sensor Experiment | |||
36. Bread board custom pin experiment | 3. Online data download | ||
37. Play music experiment | |||
| Matching Example Courses 200 pages of 40+selected cases Python Programming Chapter Graphic Programming Chapter My World Programming Chapter |
video tutorial
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Provide textbook level development manuals that are easy to understand and comprehend. Combining 36+project case videos, combining theoretical knowledge with practical operations.

Secondary development programming
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Supporting diverse ways, not only can it be paired with the display screen in the package, but it can also be programmed remotely to the Raspberry Pi experimental board using wired or wireless methods.

Two types of programming, suitable for beginners and advanced levels
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01 Python code programming Easy to learn and widely used in many fields, users can learn higher-level programming skills. | 02 Scratch3.0 graphical programming Drag and drop the graphics module to complete programming, suitable for beginners, as simple and easy as building blocks. |

Entertainment and learning, strong compatibility
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Adapt to the game Minecraft, add changes to the game to save time and cost,
At the same time, learning Python programming skills creates an interactive connection between Raspberry Pi and games.

Small PCs have stronger practicality
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The experimental development board wants to be a small host, paired with a display screen and mouse, which can become a small PC that can not only program, but also perform various experiments, edit tables, documents, game battles, and other functions. You can also browse web pages, send emails, watch videos, enjoy music, and more through WiFi networking.

Entertainment games Table document Voice entertainment Experimental testing
Dual speakers, high-power audio output
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The development board is equipped with two speakers, eliminating the need for an external amplifier device. It can manually adjust the sound volume and play audio and video content.

Product Parameters
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Raspberry Pi Programming Development Experiment Kit | |||
Processor | Raspberry Pi 4 Model B | Memory RAM | 4GB LPDDR4 3200 |
Wired interface | Gigabit Ethernet | WiFi network | 802.11AC wireless dual band |
HDMI interface | Two HDMI interfaces | Display screen | Multiple specifications available for selection |
Storage ROM | 64GB TF card | Programming language | Python/Scartch3.0 |
Develop interface | UART、I2C、SPI、PWM | USB port | 2*USB2.0、2*USB3.0 |
Course experiment | 37+hardware module experiments | Power supply voltage | 12V DC power adapter |
Product documentation | Provide detailed supporting graphic and textual materials | Secondary development | Provide experimental course source code |
Net weight | 746g | Product dimensions | 280*162*48mm |
Display screen parameters
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Display screen parameters | |||
Model | 7-inch display screen | 11-inch display screen | 13-inch display screen |
Screen size | 170*115*35mm | 285*182*40mm | 324*200*12mm |
Resolution | 1024*600PX | 1920*1080PX | 1920*1080PX |
Weight | 256g | 578g | 1678g |
Panel Type | ips | ||
Interface | USB/HDMI/power interface | ||
Applicable | Raspberry Pi/Nvidia/Windows | ||
Support | Raspbian series, Ubuntu image, Windows system and other systems | ||
Shipping List
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List of experimental boards
① Raspberry Pi development board (randomly shipped) ② Keyboard (optional)
③ Mouse (optional) ④ Power adapter ⑤ Experimental accessory kit

Three optional display screens

7-inch display screen 11 inch display screen 13 inch display screen



















