Parallax 32705 Cyber:bot Robot Kit
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Parallax 32705 Cyber:bot Robot Kit
The Parallax 32705 Cyber:bot Robot Kit is a comprehensive educational robotics platform designed for learners to build, program, and control a fully functional autonomous robot. Educators, STEM instructors, and robotics enthusiasts use this kit to teach fundamental concepts in robotics, sensor integration, and embedded systems programming. This kit solves the challenge of providing hands-on robotics experience with pre-engineered mechanical components and intuitive programming interfaces that bridge the gap between theoretical knowledge and practical application.
Product Overview
The Cyber:bot Robot Kit combines mechanical engineering with digital electronics through a modular design that allows users to assemble a wheeled robot platform capable of obstacle detection, line following, and autonomous navigation. The system operates on a BASIC Stamp 2 microcontroller that executes user-written programs stored in onboard EEPROM memory, enabling real-time sensor data processing and motor control. The robot features dual continuous-rotation servo motors for independent wheel drive, allowing precise directional control and maneuverability in confined spaces. The integrated ultrasonic distance sensor provides non-contact obstacle detection up to 10 feet, while the infrared receiver enables wireless remote control functionality through standard IR remotes.
What distinguishes the Cyber:bot platform is its scalable architecture that supports progressive learning from basic movement commands to complex autonomous behaviors. The kit includes pre-drilled aluminum chassis components, reducing assembly time while maintaining structural rigidity and component accessibility for modifications. The power management system utilizes four AA alkaline batteries providing approximately 3-4 hours of continuous operation, with integrated voltage regulation protecting sensitive electronic components. The educational framework includes comprehensive documentation with step-by-step assembly instructions, programming examples in PBASIC language, and sensor calibration procedures that enable users to rapidly prototype and test robotic behaviors.
Key Specifications
| Specification | Details |
| Product Type | Educational Robotics Kit with Microcontroller |
| Brand | Parallax Inc |
| Model Number | 32705 |
| Microcontroller | BASIC Stamp 2 (BS2) |
| Operating Voltage | 5V regulated from 6V battery pack |
| Motor Type | Continuous-rotation servo motors (2x) |
| Sensor Suite | Ultrasonic distance sensor, IR receiver module |
| Maximum Speed | Approximately 1 foot per second |
| Battery Type | Four AA alkaline batteries |
| Runtime | 3-4 hours continuous operation |
| Programming Interface | PBASIC language via USB connection |
| 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 |
Key Features
- BASIC Stamp 2 Microcontroller with 2KB EEPROM memory enables complex program storage and real-time decision-making logic for autonomous robot operation
- Dual independent servo motor control provides differential drive capability for precise turning radius adjustment and omnidirectional movement patterns
- Integrated ultrasonic distance sensor with 10-foot detection range allows obstacle avoidance programming without mechanical contact
- Infrared receiver module supports wireless remote control integration, enabling manual override and interactive learning scenarios
- Modular aluminum chassis design facilitates rapid sensor integration, component upgrades, and mechanical modifications for advanced projects
- USB programming interface enables direct code transfer from Windows/Mac computers without external programmers or serial adapters
- Comprehensive educational documentation includes 40+ pre-written PBASIC programs demonstrating sensor usage, motor control, and behavioral algorithms
Applications and Use Cases
- STEM Education Programs: Used in K-12 robotics clubs and university engineering courses to teach microcontroller programming, sensor integration, and control systems fundamentals through hands-on robot development
- Autonomous Navigation Projects: Implements obstacle avoidance algorithms and line-following behaviors for students learning pathfinding and sensor-based decision-making in embedded systems
- Robotics Competitions: Serves as a platform for educational robotics competitions where students program autonomous behaviors and compete in timed obstacle courses and navigation challenges
- Research and Prototyping: Utilized by hobbyists and makers for rapid prototyping of robotic concepts, testing sensor algorithms, and developing proof-of-concept autonomous systems before scaling to larger platforms
- Special Education Programs: Provides accessible hands-on learning for students with diverse learning styles, enabling engagement with STEM concepts through interactive robot control and visual feedback
How to Use
Begin by assembling the robot chassis using the provided aluminum frame components, servo motors, and wheels according to the step-by-step assembly guide. Mount the BASIC Stamp 2 module on the breadboard, connect the ultrasonic sensor and IR receiver to designated I/O pins, and install the four AA batteries into the battery holder with proper polarity. Connect the robot to your computer via USB cable and launch the PBASIC IDE software to load example programs that demonstrate basic movement, sensor reading, and obstacle detection routines.
Once assembled, test basic motor control by running simple forward and reverse movement programs, then calibrate the servo motor neutral positions to ensure straight-line travel. Progress to sensor-based programming by implementing obstacle detection logic that triggers motor commands when the ultrasonic sensor detects objects within a specified distance threshold. Advanced users can develop state-machine algorithms that combine multiple sensor inputs to create complex autonomous behaviors such as maze navigation or perimeter patrol routines. Always verify battery voltage before extended operation sessions and recalibrate sensor thresholds if the robot exhibits inconsistent behavior in different lighting or environmental conditions.
Frequently Asked Questions
What programming experience is required to use the Cyber:bot Robot Kit?
No prior programming experience is necessary. The kit includes 40+ pre-written PBASIC programs that demonstrate all major functions. Beginners can modify these examples by changing numeric parameters to understand cause-and-effect relationships. The PBASIC language uses simple English-like syntax that is more accessible than C or Python for microcontroller beginners. The comprehensive documentation includes detailed comments explaining each code section, making it suitable for ages 12 and above with basic computer literacy.
Can the Cyber:bot be upgraded with additional sensors beyond the included ultrasonic and IR modules?
Yes, the BASIC Stamp 2 microcontroller has 16 I/O pins, with several available after the standard sensor connections. Users can add light sensors for line-following applications, temperature sensors for environmental monitoring, or additional servo motors for robotic arms. The breadboard layout provides accessible connection points for custom sensor integration. Parallax offers compatible sensor modules specifically designed for BASIC Stamp integration, and the microcontroller supports analog-to-digital conversion for analog sensor inputs. However, each additional component requires corresponding PBASIC code modifications to read and process the sensor data.
How long does the battery last and can rechargeable batteries be used?
Four AA alkaline batteries typically provide 3-4 hours of continuous operation depending on motor usage intensity and sensor polling frequency. Rechargeable NiMH AA batteries can be used as a cost-effective alternative, though they provide slightly lower voltage (1.2V per cell versus 1.5V) which may require servo motor calibration adjustments. Always verify that total battery voltage remains above 5.5V to ensure proper microcontroller operation. For extended development sessions, we recommend purchasing additional battery sets or investigating external power supplies that can provide regulated 6V input to the battery connector.
Is the Cyber:bot compatible with other programming languages besides PBASIC?
The BASIC Stamp 2 is specifically designed for PBASIC programming through the official IDE. However, the underlying microcontroller architecture is based on the PIC microprocessor, which can theoretically be programmed in other languages using third-party tools. This approach requires advanced knowledge of PIC assembly language and is not recommended for educational users. For maximum compatibility with documentation, example code, and community support, PBASIC remains the standard and most practical programming choice for the Cyber:bot platform.
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 32705 Cyber:bot Robot Kit Online in India
Purchase the Parallax 32705 Cyber:bot Robot Kit 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 32705 Cyber:bot Robot Kit 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 32705 Cyber:bot Robot Kit
- Unit price
- / per
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Parallax 32705 Cyber:bot Robot Kit
The Parallax 32705 Cyber:bot Robot Kit is a comprehensive educational robotics platform designed for learners to build, program, and control a fully functional autonomous robot. Educators, STEM instructors, and robotics enthusiasts use this kit to teach fundamental concepts in robotics, sensor integration, and embedded systems programming. This kit solves the challenge of providing hands-on robotics experience with pre-engineered mechanical components and intuitive programming interfaces that bridge the gap between theoretical knowledge and practical application.
Product Overview
The Cyber:bot Robot Kit combines mechanical engineering with digital electronics through a modular design that allows users to assemble a wheeled robot platform capable of obstacle detection, line following, and autonomous navigation. The system operates on a BASIC Stamp 2 microcontroller that executes user-written programs stored in onboard EEPROM memory, enabling real-time sensor data processing and motor control. The robot features dual continuous-rotation servo motors for independent wheel drive, allowing precise directional control and maneuverability in confined spaces. The integrated ultrasonic distance sensor provides non-contact obstacle detection up to 10 feet, while the infrared receiver enables wireless remote control functionality through standard IR remotes.
What distinguishes the Cyber:bot platform is its scalable architecture that supports progressive learning from basic movement commands to complex autonomous behaviors. The kit includes pre-drilled aluminum chassis components, reducing assembly time while maintaining structural rigidity and component accessibility for modifications. The power management system utilizes four AA alkaline batteries providing approximately 3-4 hours of continuous operation, with integrated voltage regulation protecting sensitive electronic components. The educational framework includes comprehensive documentation with step-by-step assembly instructions, programming examples in PBASIC language, and sensor calibration procedures that enable users to rapidly prototype and test robotic behaviors.
Key Specifications
| Specification | Details |
| Product Type | Educational Robotics Kit with Microcontroller |
| Brand | Parallax Inc |
| Model Number | 32705 |
| Microcontroller | BASIC Stamp 2 (BS2) |
| Operating Voltage | 5V regulated from 6V battery pack |
| Motor Type | Continuous-rotation servo motors (2x) |
| Sensor Suite | Ultrasonic distance sensor, IR receiver module |
| Maximum Speed | Approximately 1 foot per second |
| Battery Type | Four AA alkaline batteries |
| Runtime | 3-4 hours continuous operation |
| Programming Interface | PBASIC language via USB connection |
| 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 |
Key Features
- BASIC Stamp 2 Microcontroller with 2KB EEPROM memory enables complex program storage and real-time decision-making logic for autonomous robot operation
- Dual independent servo motor control provides differential drive capability for precise turning radius adjustment and omnidirectional movement patterns
- Integrated ultrasonic distance sensor with 10-foot detection range allows obstacle avoidance programming without mechanical contact
- Infrared receiver module supports wireless remote control integration, enabling manual override and interactive learning scenarios
- Modular aluminum chassis design facilitates rapid sensor integration, component upgrades, and mechanical modifications for advanced projects
- USB programming interface enables direct code transfer from Windows/Mac computers without external programmers or serial adapters
- Comprehensive educational documentation includes 40+ pre-written PBASIC programs demonstrating sensor usage, motor control, and behavioral algorithms
Applications and Use Cases
- STEM Education Programs: Used in K-12 robotics clubs and university engineering courses to teach microcontroller programming, sensor integration, and control systems fundamentals through hands-on robot development
- Autonomous Navigation Projects: Implements obstacle avoidance algorithms and line-following behaviors for students learning pathfinding and sensor-based decision-making in embedded systems
- Robotics Competitions: Serves as a platform for educational robotics competitions where students program autonomous behaviors and compete in timed obstacle courses and navigation challenges
- Research and Prototyping: Utilized by hobbyists and makers for rapid prototyping of robotic concepts, testing sensor algorithms, and developing proof-of-concept autonomous systems before scaling to larger platforms
- Special Education Programs: Provides accessible hands-on learning for students with diverse learning styles, enabling engagement with STEM concepts through interactive robot control and visual feedback
How to Use
Begin by assembling the robot chassis using the provided aluminum frame components, servo motors, and wheels according to the step-by-step assembly guide. Mount the BASIC Stamp 2 module on the breadboard, connect the ultrasonic sensor and IR receiver to designated I/O pins, and install the four AA batteries into the battery holder with proper polarity. Connect the robot to your computer via USB cable and launch the PBASIC IDE software to load example programs that demonstrate basic movement, sensor reading, and obstacle detection routines.
Once assembled, test basic motor control by running simple forward and reverse movement programs, then calibrate the servo motor neutral positions to ensure straight-line travel. Progress to sensor-based programming by implementing obstacle detection logic that triggers motor commands when the ultrasonic sensor detects objects within a specified distance threshold. Advanced users can develop state-machine algorithms that combine multiple sensor inputs to create complex autonomous behaviors such as maze navigation or perimeter patrol routines. Always verify battery voltage before extended operation sessions and recalibrate sensor thresholds if the robot exhibits inconsistent behavior in different lighting or environmental conditions.
Frequently Asked Questions
What programming experience is required to use the Cyber:bot Robot Kit?
No prior programming experience is necessary. The kit includes 40+ pre-written PBASIC programs that demonstrate all major functions. Beginners can modify these examples by changing numeric parameters to understand cause-and-effect relationships. The PBASIC language uses simple English-like syntax that is more accessible than C or Python for microcontroller beginners. The comprehensive documentation includes detailed comments explaining each code section, making it suitable for ages 12 and above with basic computer literacy.
Can the Cyber:bot be upgraded with additional sensors beyond the included ultrasonic and IR modules?
Yes, the BASIC Stamp 2 microcontroller has 16 I/O pins, with several available after the standard sensor connections. Users can add light sensors for line-following applications, temperature sensors for environmental monitoring, or additional servo motors for robotic arms. The breadboard layout provides accessible connection points for custom sensor integration. Parallax offers compatible sensor modules specifically designed for BASIC Stamp integration, and the microcontroller supports analog-to-digital conversion for analog sensor inputs. However, each additional component requires corresponding PBASIC code modifications to read and process the sensor data.
How long does the battery last and can rechargeable batteries be used?
Four AA alkaline batteries typically provide 3-4 hours of continuous operation depending on motor usage intensity and sensor polling frequency. Rechargeable NiMH AA batteries can be used as a cost-effective alternative, though they provide slightly lower voltage (1.2V per cell versus 1.5V) which may require servo motor calibration adjustments. Always verify that total battery voltage remains above 5.5V to ensure proper microcontroller operation. For extended development sessions, we recommend purchasing additional battery sets or investigating external power supplies that can provide regulated 6V input to the battery connector.
Is the Cyber:bot compatible with other programming languages besides PBASIC?
The BASIC Stamp 2 is specifically designed for PBASIC programming through the official IDE. However, the underlying microcontroller architecture is based on the PIC microprocessor, which can theoretically be programmed in other languages using third-party tools. This approach requires advanced knowledge of PIC assembly language and is not recommended for educational users. For maximum compatibility with documentation, example code, and community support, PBASIC remains the standard and most practical programming choice for the Cyber:bot platform.
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 32705 Cyber:bot Robot Kit Online in India
Purchase the Parallax 32705 Cyber:bot Robot Kit 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 32705 Cyber:bot Robot Kit 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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