Tscinbuny Programmable Quadruped Robot Kit: DIY, APP-Controlled, Educational, Action-Customizable

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Product Description

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Basic Specification
Model NO.
hc-9323
Input Voltage
7~12V (Compatible with 2×18650)
Max Power
25W
Control Method
Mobile APP WiFi (10~50m)
Capability
Customizable Walking & Steering
Assembly
DIY Kit, Solder-Free
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Product Description
"Backed by our global business network, we offer delivery to bring our educational robotics products to you, no matter where you are."

This entry-level educational programming robot kit is designed for students, beginners, and maker enthusiasts. It balances hands-on practice, coding learning, and functional expansion, making it ideal for both hobby exploration and classroom scenarios.

Key Features:

  • Beginner-Friendly: Solder-free modular assembly.
  • Arduino-Based: Supports C/C++ and graphical programming.
  • Expansion Ready: Interfaces for ultrasonic and line-tracking modules.
  • Durable Build: 8 metal-gear servos with ABS + metal frame.
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Detailed Specification
Category Component Material/Details
Structural Frame Body & Leg Brackets ABS Plastic + Aluminum Alloy
Drive System Servos (8 pcs) Metal Gear + Plastic Housing
Electronic Hardware Main Control Board ESP8266 Main Board
Power Support Battery Type 2x 18650 Lithium Battery Support
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Action Demonstration
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Packing & Quality
Frequently Asked Questions
Is this robot kit suitable for absolute beginners?
Yes, the kit features a solder-free modular design and supports graphical programming, making it perfect for students and beginners.
What control methods are available for the robot?
The robot is equipped with an ESP8266 chip and can be remotely controlled via a mobile APP through a WiFi connection with a range of 10–50 meters.
Can I add more sensors to the robot?
Absolutely. The control board includes reserved sensor interfaces that support ultrasonic modules for obstacle avoidance, line-tracking, and other custom extensions.
What batteries are required for operation?
The robot is compatible with 2 x 18650 lithium batteries, providing enough power for 1–2 hours of continuous use and debugging.
What programming environment does it support?
It is based on the Arduino system and supports C/C++ coding as well as various graphical programming platforms common in STEM education.
How is the quality of the movements ensured?
The robot utilizes 8 high-torque metal-gear servos and a rigid ABS+Metal frame to ensure stable and precise leg movements.

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