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The program samples the AC waveform every 40 millisecond.
In this state, the program will looks at the AC waveform from ADC0 pin.
To find the heart rate, we need to find the period of the AC waveform.
The way we program this is that we set a threshold voltage of 4V for the AC waveform.
It then records the time interval when the values of the AC waveform cross the voltage value of 2.5 volts.
We are developing RSFQ D/A converters that can generate an ac waveform with an accurately defined rms value.
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Finally, BCS was computed as the SD of this filtered, normalized STABS waveform.
We defined body coupling BCM as the standard deviation (SD) of the MTASR waveform.
The MTASR waveform was low-pass filtered at 1.5 Hz and then normalized by its mean.
One type of body coupling BCM was defined using the MTASR waveform.
To quantify body coupling we computed the SD of the STABS waveform.
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