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USB 2.0 for Real-Time provide a hard real-time capable implementation of an USB 2.0 stack on top of Linux/Xenomai. It implements the stack core and EHCI, UHCI and OHCI host controller drivers.
A robotic DIY styrofoam cutter consisting of one rotational and two translational axes. It cuts a variety of shapes out of styrofoam-like materials using a hot wire. This project documents the necessary hardware and software parts.
Don't miss the follow-up project at http://raumschaum.org
Its goal is to further develop hardware and software into an user friendly application.
Project migrated: https://github.com/arktools
This library aims at providing a uniform method for simulation, prototyping, and testing of autonomous robots. It also adheres to the object-oriented paradigm to ease system configuration and development. http://www.youtube.com/watch?v=-wQVrM5SL2o&fe
Open source, cross platform drivers and function library for the NovInt Falcon Haptic Controller. These drivers are not produced by Novint Technologies, Inc. and do not come with any warranty as to their correctness or usage.
This project's aim is to build a 3D simulation environment to control a hexapod, and communicate serially to said hexapod when connected. This way new motion algorithms can be perfected without damaging your robot.
The FunnyRobot project designs an educational robot controller that is programmable via USB. Both the hardware and software are configurable and extensible. Users can build programs with a C++ library and run them under a real-time operating system.
Have you ever tried to control a self developed vehicle with your PC? This Project provides a GUi Controll, the schematics for the on board electroninc (including the xbee host) and the atmega 32 / 644 / 2550 software to get things work together.
Implement a 3d simulator of a Quadrotor using the Gazebo simulator (part of the Player/Stage project); develop a Controller and some changes on Gazebo core required. Implement a client application, developed on Qt to interact with, using libgazebo.
Tcl/Tk interface for the SSC-32 servo controller. Sliders generate position commands and send them to the ssc32 via serial output. The number of servos can be changed. Positions can be captured and replayed using the macro function. Added group controls.
This is a open source edited Version of the FTC controller station. the difference between the FTC controller station and the Field Timer is that the Field timer has a Timer attached to it that starts and stops the robot at the correct time
This is the code for FIRST robotics team 166's 2008 robotics code. It is written in C, and is intended for use on the 2008 Innovation FIRST robot controller, which utilizes a microchip PIC18F8722 processor to control a FIRST robot.
seeetron-ssc is Java source code for controlling the SEEtronics mini-SSC servo controller board (see: http://www.seetron.com/ssc.htm). The board itself does not come with Java support, so this project provides that third-party support.
Intend to reproduce most of the conversational programming functionality of the Fagor 8055TC lathe controller. Web browser interface for easy portability between different OS. Visit project web-site for demo.
Driver support for 3D Controller Hardware. We hope to support SDL Input, DirectInput, and other major controller API's including game consoles and embedded systems.
General Purpose platform for developing robots based on AVR's where the main intellegence is controlled by a PC or similiar device.
Developed in 'C' for the AVR and Java for the controller.
Written in C++, IFI-picloader is a US First Competition Linux port for Innovation First Inc. Robot Controller programmer using a pic 18F8520. It writes MCC18 compiled hex files to PIC and allows users to program under *nix based operating systems.
This is an application that streams data from the Microsoft Kinect or cameras like it over a network. The program is Intended to be used in robotics applications where the controller cannot use such cameras directly due to hardware/software limitations--such as lacking usb ports or appropriate drivers--or in situations where the camera is not in close proximity to the device that needs to access it. Given that the controller can accept data from over the network, another embedded controller that is able to use these kinds of cameras can be loaded with this software to send the image and depth data from the kinect over the network to the other controller.
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