Parallax 32702 cyber:bot board – for micro:bit
- ୟୁନିଟ୍ ମୂଲ୍ୟ
- / ପ୍ରତି
Parallax 32702 cyber:bot board – for micro:bit
The Parallax 32702 cyber:bot board is a comprehensive robotics expansion platform designed specifically for BBC micro:bit microcontrollers, enabling educators and hobbyists to build autonomous mobile robots with advanced sensor integration and motor control capabilities. Professional educators, STEM curriculum developers, and robotics competition teams utilize this platform to teach embedded systems programming, sensor fusion, and real-time control algorithms in hands-on learning environments. This product solves the critical challenge of bridging the gap between basic microcontroller programming and practical robotics applications by providing pre-integrated motor drivers, sensor connectors, and power management in a compact form factor compatible with the micro:bit ecosystem.
Product Overview
The Parallax 32702 cyber:bot board functions as a complete robotics platform that mounts directly onto a BBC micro:bit, transforming it into a fully-featured robot controller. The board integrates dual motor drivers capable of independent speed and direction control, allowing precise management of differential drive systems commonly used in mobile robotics. Built-in power distribution circuitry manages voltage regulation from standard battery sources, while the onboard sensor interface headers support analog and digital inputs for ultrasonic distance sensors, line-following infrared sensors, and environmental monitoring devices. The cyber:bot board utilizes I2C and GPIO communication protocols native to the micro:bit, ensuring seamless integration with existing MakeCode and Python programming environments without requiring additional firmware modifications.
What distinguishes the Parallax 32702 from competing solutions is its thoughtful engineering for educational robotics applications. The board features clearly labeled connector pinouts, integrated status LEDs for debugging motor control states, and a robust mechanical design that accommodates standard servo motors and geared DC motors commonly available in educational robotics kits. The power management system includes reverse polarity protection and over-current limiting, preventing damage from common user errors during assembly and programming. Additionally, the cyber:bot board maintains full compatibility with the micro:bit's 40-pin edge connector while providing additional breakout headers for custom sensor integration, making it suitable for both structured curriculum implementation and open-ended maker projects.
Key Specifications
| Specification | Details |
| Product Type | Robotics Expansion Board for BBC micro:bit |
| Brand | Parallax |
| Model Number | 32702 |
| 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 |
| Motor Driver Channels | 2 independent DC motor channels with PWM speed control |
| Motor Control Voltage Range | 3V to 9V DC |
| Maximum Motor Current Per Channel | 1.5A continuous, 2A peak |
| Sensor Interface Connectors | Multiple analog and digital input headers for ultrasonic, IR, and environmental sensors |
| Communication Protocol | I2C and GPIO compatible with BBC micro:bit |
| Dimensions | Compact form factor designed for standard robot chassis integration |
Key Features
- Dual independent motor drivers with PWM speed control enabling precise differential drive robot navigation and turning maneuvers
- Integrated power distribution and voltage regulation supporting standard 4-6 AA battery packs with reverse polarity protection
- Multiple sensor interface headers for simultaneous connection of ultrasonic distance sensors, infrared line-following sensors, and temperature/humidity modules
- Full micro:bit edge connector compatibility with additional breakout headers for custom GPIO and I2C device integration
- Status indicator LEDs for real-time motor control state visualization and debugging during programming development
- Over-current protection and thermal management preventing hardware damage from programming errors or sensor faults
Applications and Use Cases
- Educational robotics curricula in secondary schools where students program autonomous line-following robots using MakeCode visual programming or Python text-based coding
- STEM competition preparation including robotics challenges requiring obstacle avoidance, maze navigation, and object detection using integrated sensor arrays
- Maker and hobbyist projects building custom autonomous vehicles with sensor fusion for environmental mapping and adaptive behavior algorithms
- University-level embedded systems laboratories where students develop real-time control systems and study motor control theory through practical implementation
- Robotics clubs and after-school programs introducing students to mechatronics principles through hands-on assembly and programming of complete mobile platforms
How to Use
Begin by carefully aligning the Parallax 32702 cyber:bot board with the BBC micro:bit's 40-pin edge connector and firmly pressing downward until the board is fully seated. Ensure the micro:bit is oriented correctly with the LED matrix visible and the USB port accessible for programming. Connect your motors to the designated motor output headers, observing correct polarity as indicated by the board silkscreen markings. Attach your power source (typically 4-6 AA batteries in a holder) to the power input connector, again verifying correct polarity to avoid damaging the board's voltage regulation circuitry.
Once hardware assembly is complete, connect your micro:bit to a computer via USB and open the MakeCode editor or Python IDE of your choice. The cyber:bot board operates through standard micro:bit GPIO pins and I2C communication, so you can immediately begin programming motor control sequences using native micro:bit blocks or Python libraries. Test motor functionality with simple speed and direction commands before integrating sensor inputs. Connect your sensors to the appropriate analog or digital input headers, then develop algorithms for autonomous behavior such as obstacle avoidance or line-following. The integrated status LEDs provide visual feedback during testing, helping you verify that motor commands are being executed correctly before deploying your robot for autonomous operation.
Frequently Asked Questions
What is the maximum current draw and can I use standard AA batteries?
The Parallax 32702 cyber:bot board supports motor currents up to 1.5A continuous per channel with 2A peak capability. Standard 4-6 AA battery packs provide sufficient current for typical educational robotics applications with small geared motors drawing 200-500mA each. For higher-performance motors exceeding 1A per channel, consider using rechargeable NiMH batteries or external power supplies rated for 3-9V DC. Always verify your specific motor specifications against the board's current ratings before assembly.
Is the cyber:bot board compatible with all BBC micro:bit versions?
The Parallax 32702 cyber:bot board is fully compatible with BBC micro:bit v1 and v2 models. Both versions feature the 40-pin edge connector that the board uses for communication and power distribution. However, ensure your micro:bit firmware is updated to the latest version for optimal compatibility with MakeCode and Python programming environments. The board's I2C and GPIO functionality works identically across both micro:bit generations.
Can I connect multiple sensors simultaneously to the cyber:bot board?
Yes, the Parallax 32702 cyber:bot board provides multiple sensor interface headers supporting simultaneous connection of ultrasonic distance sensors, infrared line-following sensors, and environmental monitoring modules. The board utilizes both analog and digital GPIO pins from the micro:bit, as well as I2C communication for compatible sensors. Refer to the board's pinout documentation to plan your sensor integration and ensure you do not exceed the micro:bit's GPIO availability or I2C address conflicts when connecting multiple devices.
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 Parallax 32702 cyber:bot board – for micro:bit Online in India
Purchase the Parallax 32702 cyber:bot board – for micro:bit 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 Parallax 32702 cyber:bot board – for micro:bit with fast shipping and expert support.
Our team in Bengaluru is available 24/7 to support your journey from product selection to project completion.
Parallax 32702 cyber:bot board – for micro:bit
- ୟୁନିଟ୍ ମୂଲ୍ୟ
- / ପ୍ରତି
ତୁମର କାର୍ଟରେ ଉତ୍ପାଦ ଯୋଗ କରିବା |
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Parallax 32702 cyber:bot board – for micro:bit
The Parallax 32702 cyber:bot board is a comprehensive robotics expansion platform designed specifically for BBC micro:bit microcontrollers, enabling educators and hobbyists to build autonomous mobile robots with advanced sensor integration and motor control capabilities. Professional educators, STEM curriculum developers, and robotics competition teams utilize this platform to teach embedded systems programming, sensor fusion, and real-time control algorithms in hands-on learning environments. This product solves the critical challenge of bridging the gap between basic microcontroller programming and practical robotics applications by providing pre-integrated motor drivers, sensor connectors, and power management in a compact form factor compatible with the micro:bit ecosystem.
Product Overview
The Parallax 32702 cyber:bot board functions as a complete robotics platform that mounts directly onto a BBC micro:bit, transforming it into a fully-featured robot controller. The board integrates dual motor drivers capable of independent speed and direction control, allowing precise management of differential drive systems commonly used in mobile robotics. Built-in power distribution circuitry manages voltage regulation from standard battery sources, while the onboard sensor interface headers support analog and digital inputs for ultrasonic distance sensors, line-following infrared sensors, and environmental monitoring devices. The cyber:bot board utilizes I2C and GPIO communication protocols native to the micro:bit, ensuring seamless integration with existing MakeCode and Python programming environments without requiring additional firmware modifications.
What distinguishes the Parallax 32702 from competing solutions is its thoughtful engineering for educational robotics applications. The board features clearly labeled connector pinouts, integrated status LEDs for debugging motor control states, and a robust mechanical design that accommodates standard servo motors and geared DC motors commonly available in educational robotics kits. The power management system includes reverse polarity protection and over-current limiting, preventing damage from common user errors during assembly and programming. Additionally, the cyber:bot board maintains full compatibility with the micro:bit's 40-pin edge connector while providing additional breakout headers for custom sensor integration, making it suitable for both structured curriculum implementation and open-ended maker projects.
Key Specifications
| Specification | Details |
| Product Type | Robotics Expansion Board for BBC micro:bit |
| Brand | Parallax |
| Model Number | 32702 |
| 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 |
| Motor Driver Channels | 2 independent DC motor channels with PWM speed control |
| Motor Control Voltage Range | 3V to 9V DC |
| Maximum Motor Current Per Channel | 1.5A continuous, 2A peak |
| Sensor Interface Connectors | Multiple analog and digital input headers for ultrasonic, IR, and environmental sensors |
| Communication Protocol | I2C and GPIO compatible with BBC micro:bit |
| Dimensions | Compact form factor designed for standard robot chassis integration |
Key Features
- Dual independent motor drivers with PWM speed control enabling precise differential drive robot navigation and turning maneuvers
- Integrated power distribution and voltage regulation supporting standard 4-6 AA battery packs with reverse polarity protection
- Multiple sensor interface headers for simultaneous connection of ultrasonic distance sensors, infrared line-following sensors, and temperature/humidity modules
- Full micro:bit edge connector compatibility with additional breakout headers for custom GPIO and I2C device integration
- Status indicator LEDs for real-time motor control state visualization and debugging during programming development
- Over-current protection and thermal management preventing hardware damage from programming errors or sensor faults
Applications and Use Cases
- Educational robotics curricula in secondary schools where students program autonomous line-following robots using MakeCode visual programming or Python text-based coding
- STEM competition preparation including robotics challenges requiring obstacle avoidance, maze navigation, and object detection using integrated sensor arrays
- Maker and hobbyist projects building custom autonomous vehicles with sensor fusion for environmental mapping and adaptive behavior algorithms
- University-level embedded systems laboratories where students develop real-time control systems and study motor control theory through practical implementation
- Robotics clubs and after-school programs introducing students to mechatronics principles through hands-on assembly and programming of complete mobile platforms
How to Use
Begin by carefully aligning the Parallax 32702 cyber:bot board with the BBC micro:bit's 40-pin edge connector and firmly pressing downward until the board is fully seated. Ensure the micro:bit is oriented correctly with the LED matrix visible and the USB port accessible for programming. Connect your motors to the designated motor output headers, observing correct polarity as indicated by the board silkscreen markings. Attach your power source (typically 4-6 AA batteries in a holder) to the power input connector, again verifying correct polarity to avoid damaging the board's voltage regulation circuitry.
Once hardware assembly is complete, connect your micro:bit to a computer via USB and open the MakeCode editor or Python IDE of your choice. The cyber:bot board operates through standard micro:bit GPIO pins and I2C communication, so you can immediately begin programming motor control sequences using native micro:bit blocks or Python libraries. Test motor functionality with simple speed and direction commands before integrating sensor inputs. Connect your sensors to the appropriate analog or digital input headers, then develop algorithms for autonomous behavior such as obstacle avoidance or line-following. The integrated status LEDs provide visual feedback during testing, helping you verify that motor commands are being executed correctly before deploying your robot for autonomous operation.
Frequently Asked Questions
What is the maximum current draw and can I use standard AA batteries?
The Parallax 32702 cyber:bot board supports motor currents up to 1.5A continuous per channel with 2A peak capability. Standard 4-6 AA battery packs provide sufficient current for typical educational robotics applications with small geared motors drawing 200-500mA each. For higher-performance motors exceeding 1A per channel, consider using rechargeable NiMH batteries or external power supplies rated for 3-9V DC. Always verify your specific motor specifications against the board's current ratings before assembly.
Is the cyber:bot board compatible with all BBC micro:bit versions?
The Parallax 32702 cyber:bot board is fully compatible with BBC micro:bit v1 and v2 models. Both versions feature the 40-pin edge connector that the board uses for communication and power distribution. However, ensure your micro:bit firmware is updated to the latest version for optimal compatibility with MakeCode and Python programming environments. The board's I2C and GPIO functionality works identically across both micro:bit generations.
Can I connect multiple sensors simultaneously to the cyber:bot board?
Yes, the Parallax 32702 cyber:bot board provides multiple sensor interface headers supporting simultaneous connection of ultrasonic distance sensors, infrared line-following sensors, and environmental monitoring modules. The board utilizes both analog and digital GPIO pins from the micro:bit, as well as I2C communication for compatible sensors. Refer to the board's pinout documentation to plan your sensor integration and ensure you do not exceed the micro:bit's GPIO availability or I2C address conflicts when connecting multiple devices.
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 Parallax 32702 cyber:bot board – for micro:bit Online in India
Purchase the Parallax 32702 cyber:bot board – for micro:bit 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 Parallax 32702 cyber:bot board – for micro:bit 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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