Parallax Propeller based quadrotor

Here's a look at the latest iteration of my Parallax Propeller based quadrotor.  The current implementation uses an ITG-3200 3-axis gyro as the only stabilization sensor.

...and an outdoor flight:

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  • No method whatsoever - I think I originally used them intending the board to be mounted lengthwise and then ended up mounting it width-wise, so I just altered the code accordingly.  Call my method "random chance".  :)

  • Cool - I'd love to see someone else doing this that I could bounce ideas off of.  There are a number of others on the Parallax forums who are working toward this, but I think I'm the furthest along.  Keep me posted on your progress.

  • The PASM code does read the accelerometer, but the data isn't actually used for anything yet, so you don't need one connected.  (I use the same PASM driver for a DCM version that I'm working on).

    The ITG read/write values are correct.  My SparkFun breakout was set to use the alternate I2C address (0x69).  You send the 7 address bits followed by a single bit to indicate read or write.  I just baked them all together to save instructions: (0x69 x 2) | 0 = read (0xD2), (0x69 x 2) | 1 = write (0xD3).  The data sheet has it written as b110100X, where X is the I2C selection register - on the Sparkfun board that's 1, so b1101001 (0x69).  If you miss the fact that there's a user-configurable bit there, it looks like it should be 0x34.  Hopefully I've explained that well enough.  This site apparently doesn't like to display greater/less than symbols - I had to change them to "x 2".

  • Thomas - There isn't one, sorry.  The components are a single ITG-3200 breakout board from SparkFun, a pair of 4.7k resistors for the pullups, 4 x 10K resistors to connect the receiver, and a Propeller Protoboard.

    I have the receiver connected to pins P0 to P3 through the 10K resistors.  The motor controllers are connected to pins P8 - P11, and the SDA and SCL lines of the gyro breakout are on pins P16 and P17.  The gyro breakout has empty spots for surface-mount pullup resistors, so I added them there.  That's the whole thing, aside from power & ground connections to the receiver, ESCs, and gyro breakout.  The ESCs & receiver connect to 5V on the board, and the gyro breakout connects to 3.3v.

  • Nice work Jason and compliments to the camera-lady, it was a pleasure to see a quad always in frame

    and not bouncing up and down like a yo-yo.

     

  • The primary flight loop and PID code is written in SPIN.  All the sensor, motor, and R/C interfacing is done in assembly.  The code is available in this post:

    http://forums.parallax.com/showthread.php?133372-Ken-Cluso99-W9GFO-...

    I haven't decided if I'm going to keep it open or not, but I probably will.  I'm mostly doing this for my own enjoyment.  The Propeller is a great platform for this kind of thing.  Not having to code interrupts makes a lot of things much simpler than they'd be otherwise.

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