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#1
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Re: Basic questions about the GYRO ADXRS300
Thanks for you reply Al Skierkiewicz.
One more question... the sensibility of 5mV/º/s means that if I see 500mV in the oscilloscope during one second, the angle is 100 degrees ? Thanks! |
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#2
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Re: Basic questions about the GYRO ADXRS300
If your oscilloscope probe is DC-coupled and the gyro isn't spinning, you should read an output that is about 1/2 of the power supply voltage. That's the "zero rate offset" for the gyro and it will be somewhat dependent on time and temperature.
After you subtract off the above offset, the observed output will be proportional to the rotation rate of the gyro about its sensitive axis and is a real-time measure of the rotation rate. For example, if the reading is 500mV above the offset and the gyro's sensitivity is 5mV per arc deg/sec, then the gyro is indeed spinning at 100 arc deg/sec at that specific time about its sensitive axis (it could also be spinning about a perpendicular axis and you wouldn't be able to tell). If that 100 arc deg/sec rate is maintained consistently for 1 second, then the gyro will have rotated by 100 arc degs. You just need to apply an integrator to (reading - offset) to determine the position of the gyro in degrees. BE CAREFUL WITH THE INTEGRATOR - a small amount of error in your estimate of "offset" will result in an integrator output that grows over time. There are ways to minimize that error but that's worthy of a separate chapter. Russ |
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#3
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Re: Basic questions about the GYRO ADXRS300
If you see a 500 mV offset from the "zero rate" voltage of the sensor, it means the rotation rate is 100 degrees per second. If that 500 mV remains present for a full second, you can infer that the sensor has indeed rotated 100 degrees during that second.
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#4
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Re: Basic questions about the GYRO ADXRS300
To build on what Russ said in his last paragraph, gyroscopic drift can be a real problem if you're trying to keep track of how far you've turned. I don't think it's possible to eleminate it completely. Some people has coupled a gyro with a compass for navigation, but if you're using the gyro for closed loop drive control then that isn't necessary.
Quote:
I don't know what kind of application you are using this in, but be advised that these gyros have a really high impedance, which could affect the value your device is reading it's voltage at. To use one of these with my PIC I had to use a buffer amplifier in-between. Nathan |
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