OneChip • Novadynamix • 
OneChip • Novadynamix • 
Robotic Platform Overview

At Novadynamix, we build intelligent robotics platforms, educational hardware, and hands-on learning systems that help students move beyond toy robotics and start building real engineering skills.

How It Works

A step-by-step blueprint from raw hardware assembly to advanced autonomous AI deployment.

Step 01

Unbox & Modular Assembly

Connect our unified Arduino-compatible hardware components with zero complex wiring. Snap together motors, sensors, and displays using standardized brackets designed for rapid mechanical prototyping.

Unbox & Modular Assembly
Step 02

Visual Block Programming

Start coding instantly with our customized visual block interface. Control servo motors, read sensor telemetry, and build complex loop logics without worrying about syntactical compiler errors.

Visual Block Programming
Step 03

Train Machine Learning Models

Feed camera frames or microphone inputs directly to the block editor. Train neural networks for gesture recognition, color tracking, or speech commands using the integrated visual ML module.

Train Machine Learning Models
Step 04

Deploy & Autonomous Control

Compile and run your logic locally on the rover. Watch it self-navigate, bypass obstacles, read traffic signs, and follow instructions wirelessly using the long-range telemetry dashboard.

Deploy & Autonomous Control

Capabilities Never Seen in Its Class

Quick Tool

Changing

Auto

Calibration

4th Axis

Support

Optional

Laser Module

External Dust

Collection

APP Remote

Control

Ultra-high Precision

0.01 mm Repeatability

High Speed

13,000 RPM

Mars Rover Project Blueprints

Explore hands-on programming paradigms integrating block coding, Python scripts, and machine learning models with real robotic hardware.

Block & Python
Computer Controlled Mars Rover
Motion: Forward-Backward

Computer Controlled Mars Rover

Control Mars Rover with PictoBlox using motors and servo motors to move in all directions wirelessly with keyboard.

Block & Python
Alternative Mars Rover Motion Control
Motion: Circular Right-Left

Alternative Mars Rover Motion Control

Code the Mars Rover to turn left and right on a circle. Experiment with different orientations and use the up and down keys to move the Rover.

Block & Python
Sign Detection with Mars Rover
Sign Detection Control

Sign Detection with Mars Rover

Code the Mars Rover to use a camera feed to detect the signs using Artificial Intelligence and act accordingly!

Block & Python
Mars Rover Control with Dabble
Dabble Controlled Mars Rover

Mars Rover Control with Dabble

Learn to control Mars Rover using Dabble App on your device with customized functions for specialized circular motions.

Block & Python
Mars Rover Obstacle Avoidance
Ultrasonic Sensor Control

Mars Rover Obstacle Avoidance

Code Mars Rover to use an ultrasonic sensor to navigate and avoid obstacles while you learn its movements and obstacle detection skills.

Block & Python
Speech Recognized Control of Mars Rover
Speech Recognized Control

Speech Recognized Control of Mars Rover

Code Mars Rover to detect speech and make decision to move around. Control it with your voice.

Block & Python
Sound Based Mars Rover Control Using ML
Sound Based Controlled

Sound Based Mars Rover Control Using ML

Create custom sounds to control Mars Rover with PictoBlox's Audio Classifier in the ML Environment.

Block & Python
Gesture Controlled Mars Rover
Hand Gesture Controlled

Gesture Controlled Mars Rover

This project uses Machine Learning to identify hand gestures and move the Mars Rover.

Learning Pathways & Core Disciplines

Dive into structured learning pathways that guide students from visual block-based programming to advanced AI and autonomous robotics.

Coding - Graphical & Python

Coding - Graphical & Python

Artificial Intelligence

Artificial Intelligence

Robotics

Robotics

Self Driving Technology

Self Driving Technology

Interactive AI

Interactive AI

Localization and Automation

Localization and Automation

System Specifications

Hover or drag the carousel below to explore the advanced modular architecture of the Nova Dynamix hardware platform.

Payload Capacity
15kg max load

Payload Capacity

Equipped with heavy-duty mounting rails for external arm manipulators or scientific instruments.

Traction System
6x6independent drive

Traction System

High-torque metal geared motors with custom off-road wheels to climb obstacles up to 45 degrees.

Lithium Power
4.5hours endurance

Lithium Power

Smart BMS battery pack supporting quick-swap mechanisms and integrated visual voltage indicator.

Optical Sensors
4Kactive AI gimbal

Optical Sensors

Stereo depth cameras combined with optical sensors for object tracking and autonomous mapping.

Range & Control
2.4GHz long-range telemetry

Range & Control

Integrated transceiver providing stable telemetry and video transmission up to 500 meters.

Why Nova
Dynamix?

Small steps today, future innovators tomorrow.

ONECHIP Ecosystem
ONECHIP Ecosystem
Unified Arduino-compatible hardware that simplifies complex electronic assemblies.
Unified Library
Unified Library
Stop wrestling with incompatible libraries. Write clean, reliable code with our unified SDK.
Builder Community
Builder Community
Share projects, discover tutorials, and connect with hardware enthusiasts globally.
Robotics

Ready to innovate?

Join thousands of builders shaping the future of robotics.

INTERACTIVE FLUID SYSTEM

4-DOF ROBOTIC ARM

FABRIK IK + CRITICALLY DAMPED SPRINGS

DRAG OR MOVE CURSOR TO GUIDE ARM. TOUCH SCREENS SUPPORTED.

CONTROLLER CONFIG

SPRING STIFFNESS120
DAMPING RATIO (ZETA)0.85
SEGMENT LENGTHS (px)
BASE130
SHOULDER120
ELBOW100
WRIST60