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While there are several good methods to evaluate PIC32 hardware, the is the easiest tool for first-time users. Inside the kit is everything you need to develop, program, debug, and run code. Once the MPLAB® tool suite and project software is installed, follow the tutorial and you'll be executing 32-bit code at 72 MHz in no time. For those who crave more, connect an expansion board (coming soon).
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Expansion boards will be sold separately or create your own custom design. Note: The PIC32 Starter Kit software runs on Windows XP and Windows 2000 only. Support for Microsoft Windows Vista is planned. Click on the image to view full size This project will utilize the processing power and peripheral features of the PIC32. In addition, it will utilize additional processors such as mulitple dsPIC33s to perform repetitive computations taking advantage of their ability.
The Handheld Multi-core Spectrum analyzer will provide a user with a low cost system capable of sampling multiple (up to 4) channels of analog data, computing the spectral content and FFTs and displaying the result on a color display located on the device. Additional features of the unit will include a touch screen interface for user interface as well as storage of data and plots on a removable media (microSD card) for use by other programs such as Matlab.
Design trades during this project will: 1) determine whether communication between the processors will utilize the parallel port features of the devices or SPI; 2) Sample rates and sensitivities attainable; 3) Graphical interfaces necessary to maintain portability. Ideas from members of the myPIC32 community are welcome, especially the perceived utility as well as their opinions on frequency spectrums they would be interested in. Click on the image to view full size To control thyristors connected to a Three Phase Transformer, the thyristors will be connected in either half wave controlled, full wave controlled or hexaphase depending on ripple requirements of the output.
Voltage and current output is dependant on transformer/rectifier selected (from tens of amps to thousands of amps). The micro will have to monitor voltage, primary and secondary currents, temperature, phase failure etc. The project is required to be monitored and adjusted remotely and data must be able to be accessed locally, more than one unit must be able to be connected to the data bus (RS485). The above equipment in normally associated with Hypochlorination Plants, Hydrogen production, Industrial battery chargers etc. Click on the image to view full size Mico is a device to provide a personal digital assistant to people working in hazardous environments typically inhospitable to small devices. Mico has only one form of user input: a 3-axis accelerometer, which allows Mico to be protected by a perfectly sealed case.
To communicate with a host computer or other devices, Mico will need to be wireless. The goal of this project is to see if it is possible to create a user interface based solely on acceleration, and would people accept this user interface.
A couple of examples: Such a device could be worn by firefighters to provide pertinent information. Firefighters on the ground could be notified if the accelerometer stopped recording changes which may indicate a life threatening problem.
Deep sea welders could use the device to monitor dive time, and read work lists in a high pressure environment. Click on the image to view full size This device will allow precise 3D location of objects in the real world.
Using a hand-held, battery operated PIC32 with a 2.4 GHZ transciever, the unit can be used to locate, measure and/or level anthing. The on-board OLED screen, allows easy operator interface. The 3D-ruler utilizes additional satellite units strategically placed around the site.The satelite units also have PIC32's and 2.4 GHZ transcivers. The stability and resolution of the system is enhanced by real time statistical analysis and noise cancellation with software in the PIC32's. The oscillators wiil be 2.55 PPM or better TCXO's. This project will explore short time interval measurement using triangulation software in the PIC32 to effectively achieve pico-second time resolution.
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If this proves feasible, it will allow precise x,y,z location measurements with up to 0.01 inch resolution. With the augmentation supplied by an auxiliary GPS receiver, very precise location can be determined. If you have a known location, like a survey pin, you can even determine exact position to 0.1 inch accuracy with an expected range of around 2000 feet. This device will provide a low cost solution for multiple applications in construction, surveying, and any distance or location measuring need. Click on the image to view full size This project will utilize the PIC32 microcontroller as the heart of an autonomous UAV flight control system. This system will provide autonomous departure (take off), route navigation to and from the destination target, data acquisition at the target site (still photography, video, environmental data) and finally navigation back to a predefined destination or backup destination where an operator would assist in the vehicle recovery (landing phase/payload recovery). The PIC32 will be used to control all external devices (cameras, environmental sensors) and interface to all necessary attitude and positioning sensors/servos (AHARS,Magnetometers,GPS Receives,Air temperature and pressure probes,flight control surface servos and engine throttles).