32500 Parallax Inc Propeller ActivityBot Robot Kit

Part Nnumber
32500
Description
Propeller ActivityBot Robot Kit
Producer
Parallax Inc
Basic price
188,91 EUR

The product with part number 32500 (Propeller ActivityBot Robot Kit) is from company Parallax Inc and distributed with basic unit price 188,91 EUR. Minimal order quantity is 1 pc.


ClassificationStarter Kit Product Details Propeller ActivityBot mobile robot kit ActivityBot is a great option for first-time robot-builders, as well as an introduction to technology and engineering courses in schools and colleges. Step-by-step web tutorials take you through programming the multicore Propeller microcontroller chip in C, wiring circuits on a breadboard and building sensor systems so the robot can navigate on its own. ActivityBot is ready for expansion with off-the-shelf components, additional sensors and upgrade kits. The Activity Board features an audio jack and a socket for an optional XBee RF module (not included). Multicore Propeller control board makes it easy to integrate sensors and motorsProgram in C on Windows, Mac, or Linux with the SimpleIDE software and custom Simple LibrariesHigh-speed continuous rotation servo motors with optical encodersBreadboard and 3-pin headers for experimenting with common electronics partsComponent kit makes navigation systems that use touch, visible light, infrared light and ultrasonicsMicroSD card slot for data-logging and file storageRugged aluminium chassisAffordable STEM education platform to provide a low robot/student ratioOn-line tutorials at: http://learn.parallax.com/ActivityBotActivityBot build video: http://www.youtube.com/watch?v=KthF0WqC79Q&feature=youtu.be Note ActivityBot requires five 1.5V AA batteries, not included Supplied with Screwdriver and spanner Propeller™ Microcontrollers & Robots The Propeller™ 1 microprocessor chip makes it easy to rapidly develop embedded applications. Its eight 32-bit processors (COGs) can operate simultaneously, either independently or cooperatively, sharing common resources through a central hub. The developer has full control over how and when each cog is employed; there is no compiler-driven or operating system-driven splitting of tasks among multiple cogs. A shared system clock keeps each cog on the same time reference, allowing for true deterministic timing and synchronization. Two programming languages are available: the easy-to-learn high-level Spin, and Propeller Assembly which can execute at up to 160 MIPS (20 MIPS per COG).


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