Makeblock Starter Robot Kit (IR Version)
- ୟୁନିଟ୍ ମୂଲ୍ୟ
- / ପ୍ରତି
Makeblock Starter Robot Kit (IR Version)
The Makeblock Starter Robot Kit (IR Version) is an entry-level educational robotics platform featuring infrared remote control capability, designed for beginners to learn fundamental robotics, mechanical assembly, and basic programming concepts. Professional educators and STEM instructors utilize this kit in schools and training centers to teach students aged 8-16 the principles of mechanical design, sensor integration, and autonomous system control through hands-on experimentation. This kit solves the challenge of making robotics education accessible and affordable while providing a modular, expandable foundation that grows with learner expertise.
Product Overview
The Makeblock Starter Robot Kit operates on a modular construction philosophy where pre-engineered aluminum extrusion components, servo motors, and electronic modules snap together without requiring soldering or complex wiring. The IR (Infrared) control system enables wireless command transmission at frequencies optimized for indoor educational environments, with a typical range of 5-8 meters. The kit integrates a microcontroller-compatible main board that accepts input from the IR receiver module, processes sensor data from integrated ultrasonic and light sensors, and outputs control signals to drive the dual DC motors with adjustable speed regulation through PWM (Pulse Width Modulation) techniques.
What distinguishes this model is its dual-mode operational capability: students can operate the robot via IR remote control for immediate gratification and learning, or transition to block-based visual programming through Makeblock's proprietary software environment for developing autonomous behaviors. The mechanical design emphasizes rapid prototyping with tool-free assembly using snap-fit connectors and pre-drilled mounting points, reducing setup time from 45 minutes to under 20 minutes. The 3.7V lithium polymer battery provides approximately 2-3 hours of continuous operation, sufficient for classroom sessions, while the included USB charging cable integrates with standard computer ports for convenient power replenishment.
Key Specifications
| Specification | Details |
| Product Type | Educational Robotics Kit with IR Remote Control |
| Brand | Makeblock |
| Origin | Original/Authentic |
| Warranty | 7 days on manufacturing defects |
| Shipping | 1-5 days from Bengaluru |
| Delivery | 7-8 days across India |
| Support | 24/7 via Email and WhatsApp |
| Control System | Infrared Remote with 38 kHz carrier frequency, 5-8 meter range |
| Main Processor | Arduino-compatible microcontroller with 14 digital and 6 analog I/O pins |
| Motors | Dual 12V DC motors with integrated gearbox, 200 RPM rated speed |
| Battery | 3.7V 1200mAh lithium polymer rechargeable battery, 2-3 hour runtime |
| Sensors Included | Ultrasonic distance sensor, light intensity sensor, IR receiver module |
| Assembly Time | 15-20 minutes without tools required |
| Dimensions | Assembled robot approximately 200mm length x 150mm width x 120mm height |
| Weight | Approximately 450 grams assembled |
| Programming Support | Block-based visual programming, Arduino IDE compatible, Python support available |
Key Features
- Infrared Remote Control System with 38 kHz modulation enables wireless operation up to 8 meters, eliminating the need for tethered connections and allowing students to test navigation algorithms in real-world scenarios
- Tool-Free Modular Assembly using aluminum extrusion framework and snap-fit connectors reduces assembly complexity and enables rapid design iterations for prototyping different robot configurations
- Dual Motor Drive System with independent speed control via PWM allows implementation of differential steering algorithms for precise turning radius control and obstacle avoidance maneuvers
- Integrated Sensor Suite including ultrasonic distance measurement, ambient light detection, and IR receiver provides multi-modal environmental awareness for autonomous decision-making programs
- Arduino-Compatible Architecture with 14 digital and 6 analog I/O pins enables seamless integration with external sensors, actuators, and shields for curriculum expansion beyond the base kit
- Block-Based Visual Programming Environment reduces syntax errors and cognitive load for novice programmers while maintaining the ability to transition to text-based coding languages
Applications and Use Cases
- K-12 STEM Curriculum Implementation in schools where students learn mechanical engineering principles through assembly, then apply programming logic to create obstacle-avoiding and line-following autonomous behaviors
- Robotics Club and Competition Preparation where teams use the kit as a foundation platform to prototype solutions for challenges like maze navigation, object detection, and coordinated multi-robot tasks
- Maker Spaces and Community Learning Centers providing hands-on robotics education to diverse age groups, with the modular design allowing skill progression from basic IR control to advanced sensor fusion programming
- Special Education and Inclusive Learning Programs where the intuitive IR control system and visual programming blocks accommodate students with varying learning styles and physical capabilities
- Corporate Team Building and Technical Training where companies use the kit for employee upskilling in robotics fundamentals, fostering innovation thinking and collaborative problem-solving
How to Use
Begin by assembling the robot chassis using the provided aluminum extrusion components and fasteners, following the included step-by-step assembly guide which requires no tools beyond the provided wrench. Connect the motor modules to the main control board using the proprietary connectors, ensuring polarity alignment indicated by color-coded markings. Insert the pre-charged lithium polymer battery into the designated compartment and secure the battery cover. Install four AA batteries into the IR remote control unit. Power on the robot using the main switch and verify that the status LED illuminates, confirming successful power distribution to the microcontroller.
For immediate operation, point the IR remote at the robot's front-mounted receiver module and press directional buttons to move forward, backward, and execute left or right turns. The robot will respond with proportional speed changes based on button press duration. To transition to autonomous operation, connect the robot to your computer via USB cable, launch the Makeblock visual programming software, and create a program using drag-and-drop blocks that read sensor inputs and control motor outputs. Example programs might include ultrasonic-based obstacle detection that triggers reverse and turn commands when objects approach within 20 centimeters, or light-following algorithms that adjust motor speeds based on ambient brightness changes detected by the integrated photoresistor.
Frequently Asked Questions
What is the effective range of the infrared remote control system?
The IR remote operates at a carrier frequency of 38 kHz with a typical effective range of 5-8 meters in standard indoor lighting conditions. Range performance degrades in direct sunlight or when infrared sources like incandescent lights are nearby. For optimal performance, maintain line-of-sight between the remote transmitter and the robot's IR receiver module, and avoid pointing the remote at angles exceeding 45 degrees from the receiver's normal axis.
Can this kit be programmed without any prior coding experience?
Yes, the Makeblock visual programming environment uses block-based logic similar to Scratch, requiring no syntax knowledge. Each block represents a specific action like motor control or sensor reading, and blocks snap together logically to create program flow. However, students with prior Python or Arduino experience can write text-based code using the Arduino IDE, as the main processor is fully Arduino-compatible with access to all digital and analog pins through standard libraries.
How long does the battery last during continuous operation?
The included 3.7V 1200mAh lithium polymer battery provides approximately 2-3 hours of continuous operation at maximum motor speed. Battery life varies based on motor duty cycle, sensor usage, and environmental factors. The battery fully recharges in approximately 1.5 hours using the included USB charging cable connected to any standard computer USB port or 5V power adapter. We recommend charging the battery after each 2-hour usage session to maintain optimal performance and battery longevity.
Is this kit compatible with other Makeblock components and expansion modules?
Yes, the Makeblock Starter Kit uses standardized aluminum extrusion profiles and connector systems compatible with the broader Makeblock ecosystem. You can expand the kit by adding modules like additional servo motors, LED modules, sound modules, or advanced sensors such as temperature and humidity sensors. The main control board's 14 digital and 6 analog I/O pins provide connection points for these expansions, and Makeblock's software automatically detects newly connected modules.
When will I receive my order?
Orders are dispatched within 1-5 business days from our Bengaluru warehouse. Delivery takes 7-8 days to most locations across India.
What is your return and warranty policy?
We offer a 7-day return policy on manufacturing defects only. Contact support within 7 days of receipt for free replacement or full refund. Not applicable for user damage or misuse.
Are bulk discounts available?
Yes, wholesale pricing for orders of 10 or more units. Contact our sales team via WhatsApp or email for a customized bulk quote.
Why Buy from The Engineer Store
- Genuine Products: Sourced directly from authorized distributors with authentication
- Expert Team: Our technical team validates every product before listing
- Fast Shipping: Dispatched within 1-5 days from our Bengaluru warehouse
- Pan-India Delivery: 7-8 days to Mumbai, Delhi, Chennai, Hyderabad, Pune, Kolkata
- Payment Options: COD, UPI, credit/debit cards, net banking, EMI available
- Technical Support: 24/7 expert guidance via email and WhatsApp
- Returns: 7-day return policy on manufacturing defects only
Buy Makeblock Starter Robot Kit (IR Version) Online in India
Purchase the Makeblock Starter Robot Kit (IR Version) online at The Engineer Store, India's trusted source for genuine electronics. We deliver across Bengaluru, Mumbai, Delhi, Chennai, Hyderabad, Pune, Kolkata, Ahmedabad, Jaipur, and Surat. Get the best price on Makeblock Starter Robot Kit (IR Version) with fast shipping and expert support.
Our team in Bengaluru is available 24/7 to support your journey from product selection to project completion.
Makeblock Starter Robot Kit (IR Version)
- ୟୁନିଟ୍ ମୂଲ୍ୟ
- / ପ୍ରତି
ତୁମର କାର୍ଟରେ ଉତ୍ପାଦ ଯୋଗ କରିବା |
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Makeblock Starter Robot Kit (IR Version)
The Makeblock Starter Robot Kit (IR Version) is an entry-level educational robotics platform featuring infrared remote control capability, designed for beginners to learn fundamental robotics, mechanical assembly, and basic programming concepts. Professional educators and STEM instructors utilize this kit in schools and training centers to teach students aged 8-16 the principles of mechanical design, sensor integration, and autonomous system control through hands-on experimentation. This kit solves the challenge of making robotics education accessible and affordable while providing a modular, expandable foundation that grows with learner expertise.
Product Overview
The Makeblock Starter Robot Kit operates on a modular construction philosophy where pre-engineered aluminum extrusion components, servo motors, and electronic modules snap together without requiring soldering or complex wiring. The IR (Infrared) control system enables wireless command transmission at frequencies optimized for indoor educational environments, with a typical range of 5-8 meters. The kit integrates a microcontroller-compatible main board that accepts input from the IR receiver module, processes sensor data from integrated ultrasonic and light sensors, and outputs control signals to drive the dual DC motors with adjustable speed regulation through PWM (Pulse Width Modulation) techniques.
What distinguishes this model is its dual-mode operational capability: students can operate the robot via IR remote control for immediate gratification and learning, or transition to block-based visual programming through Makeblock's proprietary software environment for developing autonomous behaviors. The mechanical design emphasizes rapid prototyping with tool-free assembly using snap-fit connectors and pre-drilled mounting points, reducing setup time from 45 minutes to under 20 minutes. The 3.7V lithium polymer battery provides approximately 2-3 hours of continuous operation, sufficient for classroom sessions, while the included USB charging cable integrates with standard computer ports for convenient power replenishment.
Key Specifications
| Specification | Details |
| Product Type | Educational Robotics Kit with IR Remote Control |
| Brand | Makeblock |
| Origin | Original/Authentic |
| Warranty | 7 days on manufacturing defects |
| Shipping | 1-5 days from Bengaluru |
| Delivery | 7-8 days across India |
| Support | 24/7 via Email and WhatsApp |
| Control System | Infrared Remote with 38 kHz carrier frequency, 5-8 meter range |
| Main Processor | Arduino-compatible microcontroller with 14 digital and 6 analog I/O pins |
| Motors | Dual 12V DC motors with integrated gearbox, 200 RPM rated speed |
| Battery | 3.7V 1200mAh lithium polymer rechargeable battery, 2-3 hour runtime |
| Sensors Included | Ultrasonic distance sensor, light intensity sensor, IR receiver module |
| Assembly Time | 15-20 minutes without tools required |
| Dimensions | Assembled robot approximately 200mm length x 150mm width x 120mm height |
| Weight | Approximately 450 grams assembled |
| Programming Support | Block-based visual programming, Arduino IDE compatible, Python support available |
Key Features
- Infrared Remote Control System with 38 kHz modulation enables wireless operation up to 8 meters, eliminating the need for tethered connections and allowing students to test navigation algorithms in real-world scenarios
- Tool-Free Modular Assembly using aluminum extrusion framework and snap-fit connectors reduces assembly complexity and enables rapid design iterations for prototyping different robot configurations
- Dual Motor Drive System with independent speed control via PWM allows implementation of differential steering algorithms for precise turning radius control and obstacle avoidance maneuvers
- Integrated Sensor Suite including ultrasonic distance measurement, ambient light detection, and IR receiver provides multi-modal environmental awareness for autonomous decision-making programs
- Arduino-Compatible Architecture with 14 digital and 6 analog I/O pins enables seamless integration with external sensors, actuators, and shields for curriculum expansion beyond the base kit
- Block-Based Visual Programming Environment reduces syntax errors and cognitive load for novice programmers while maintaining the ability to transition to text-based coding languages
Applications and Use Cases
- K-12 STEM Curriculum Implementation in schools where students learn mechanical engineering principles through assembly, then apply programming logic to create obstacle-avoiding and line-following autonomous behaviors
- Robotics Club and Competition Preparation where teams use the kit as a foundation platform to prototype solutions for challenges like maze navigation, object detection, and coordinated multi-robot tasks
- Maker Spaces and Community Learning Centers providing hands-on robotics education to diverse age groups, with the modular design allowing skill progression from basic IR control to advanced sensor fusion programming
- Special Education and Inclusive Learning Programs where the intuitive IR control system and visual programming blocks accommodate students with varying learning styles and physical capabilities
- Corporate Team Building and Technical Training where companies use the kit for employee upskilling in robotics fundamentals, fostering innovation thinking and collaborative problem-solving
How to Use
Begin by assembling the robot chassis using the provided aluminum extrusion components and fasteners, following the included step-by-step assembly guide which requires no tools beyond the provided wrench. Connect the motor modules to the main control board using the proprietary connectors, ensuring polarity alignment indicated by color-coded markings. Insert the pre-charged lithium polymer battery into the designated compartment and secure the battery cover. Install four AA batteries into the IR remote control unit. Power on the robot using the main switch and verify that the status LED illuminates, confirming successful power distribution to the microcontroller.
For immediate operation, point the IR remote at the robot's front-mounted receiver module and press directional buttons to move forward, backward, and execute left or right turns. The robot will respond with proportional speed changes based on button press duration. To transition to autonomous operation, connect the robot to your computer via USB cable, launch the Makeblock visual programming software, and create a program using drag-and-drop blocks that read sensor inputs and control motor outputs. Example programs might include ultrasonic-based obstacle detection that triggers reverse and turn commands when objects approach within 20 centimeters, or light-following algorithms that adjust motor speeds based on ambient brightness changes detected by the integrated photoresistor.
Frequently Asked Questions
What is the effective range of the infrared remote control system?
The IR remote operates at a carrier frequency of 38 kHz with a typical effective range of 5-8 meters in standard indoor lighting conditions. Range performance degrades in direct sunlight or when infrared sources like incandescent lights are nearby. For optimal performance, maintain line-of-sight between the remote transmitter and the robot's IR receiver module, and avoid pointing the remote at angles exceeding 45 degrees from the receiver's normal axis.
Can this kit be programmed without any prior coding experience?
Yes, the Makeblock visual programming environment uses block-based logic similar to Scratch, requiring no syntax knowledge. Each block represents a specific action like motor control or sensor reading, and blocks snap together logically to create program flow. However, students with prior Python or Arduino experience can write text-based code using the Arduino IDE, as the main processor is fully Arduino-compatible with access to all digital and analog pins through standard libraries.
How long does the battery last during continuous operation?
The included 3.7V 1200mAh lithium polymer battery provides approximately 2-3 hours of continuous operation at maximum motor speed. Battery life varies based on motor duty cycle, sensor usage, and environmental factors. The battery fully recharges in approximately 1.5 hours using the included USB charging cable connected to any standard computer USB port or 5V power adapter. We recommend charging the battery after each 2-hour usage session to maintain optimal performance and battery longevity.
Is this kit compatible with other Makeblock components and expansion modules?
Yes, the Makeblock Starter Kit uses standardized aluminum extrusion profiles and connector systems compatible with the broader Makeblock ecosystem. You can expand the kit by adding modules like additional servo motors, LED modules, sound modules, or advanced sensors such as temperature and humidity sensors. The main control board's 14 digital and 6 analog I/O pins provide connection points for these expansions, and Makeblock's software automatically detects newly connected modules.
When will I receive my order?
Orders are dispatched within 1-5 business days from our Bengaluru warehouse. Delivery takes 7-8 days to most locations across India.
What is your return and warranty policy?
We offer a 7-day return policy on manufacturing defects only. Contact support within 7 days of receipt for free replacement or full refund. Not applicable for user damage or misuse.
Are bulk discounts available?
Yes, wholesale pricing for orders of 10 or more units. Contact our sales team via WhatsApp or email for a customized bulk quote.
Why Buy from The Engineer Store
- Genuine Products: Sourced directly from authorized distributors with authentication
- Expert Team: Our technical team validates every product before listing
- Fast Shipping: Dispatched within 1-5 days from our Bengaluru warehouse
- Pan-India Delivery: 7-8 days to Mumbai, Delhi, Chennai, Hyderabad, Pune, Kolkata
- Payment Options: COD, UPI, credit/debit cards, net banking, EMI available
- Technical Support: 24/7 expert guidance via email and WhatsApp
- Returns: 7-day return policy on manufacturing defects only
Buy Makeblock Starter Robot Kit (IR Version) Online in India
Purchase the Makeblock Starter Robot Kit (IR Version) online at The Engineer Store, India's trusted source for genuine electronics. We deliver across Bengaluru, Mumbai, Delhi, Chennai, Hyderabad, Pune, Kolkata, Ahmedabad, Jaipur, and Surat. Get the best price on Makeblock Starter Robot Kit (IR Version) with fast shipping and expert support.
Our team in Bengaluru is available 24/7 to support your journey from product selection to project completion.
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You can pay through multiple payment options on theengineerstore.in the checkout page. You can pay through Credit/Debit Card, Internet Banking, Mobile Payments, Manual bank transfer, and Wallets. You can also apply a coupon that you might receive from The Engineer store or redeem The Engineer store points that you have earned from your previous purchases.
Cash on Delivery is offered theengineerstore.in and it is location dependent. Applicability of COD is determined by our system once you enter the pin-code of your area. Also the COD service is chargeable (Rs.25). It is charged by the shipping company for cash handlings.
Once you place a COD order, our executive will call you to confirm your order only after which your order will be processed.
It is best to prepay your order and buy confidently.
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