d) Suppose, you are required to design a FIR low-pass filter of order 64 with cut-off frequency 100Hz to remove high frequency noise from acquired EEG recordings through a single channel EEG headset provided by Neurosky with a sampling rate of 256 Hz and an ADC resolution of 8-bit. In this regard, the pass-band and stop-band tolerances of that filter are given in terms of relative specifications, i.e. 0.5dB and 50dB, respectively. However, for your design, you are required to find the absolute specifications, i.e. determine the pass-band tolerance and the stop-band tolerance for the same FIR filter.

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Electrical Engineering
d) Suppose, you are required to design a FIR low-pass filter of order 64 with cut-off frequency
100HZ to remove high frequency noise from acquired EEG recordings through a single channel
EEG headset provided by NeuroskyT with a sampling rate of 256 Hz and an ADC resolution of
8-bit . In this regard, the pass-band and stop-band tolerances of that filter are given in terms
of relative specifications, i.e. 0.5dB and 50dB, respectively. However, for your design, you are
required to find the absolute specifications, i.e. determine the pass-band tolerance and the
stop-band tolerance for the same FIR filter.
Transcribed Image Text:Electrical Engineering d) Suppose, you are required to design a FIR low-pass filter of order 64 with cut-off frequency 100HZ to remove high frequency noise from acquired EEG recordings through a single channel EEG headset provided by NeuroskyT with a sampling rate of 256 Hz and an ADC resolution of 8-bit . In this regard, the pass-band and stop-band tolerances of that filter are given in terms of relative specifications, i.e. 0.5dB and 50dB, respectively. However, for your design, you are required to find the absolute specifications, i.e. determine the pass-band tolerance and the stop-band tolerance for the same FIR filter.
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