IoT Hardware reading assignment 3
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Circuit: * C:\users\sharpe\Documents\Rowan\Rowan-Classes\6th-Semester-Spring-2024\SysCon\Final Project\Draft1.asc
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Circuit: * C:\users\sharpe\Documents\Rowan\Rowan-Classes\6th-Semester-Spring-2024\SysCon\Final Project\Draft1.asc
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Limiting rise time of source v2 to 1.6e-07
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Instance "m1": Length shorter than recommended for a level 1 MOSFET.
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Limiting fall time of source v2 to 1.6e-07
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Instance "m1": Width narrower than recommended for a level 1 MOSFET.
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Instance "m2": Length shorter than recommended for a level 1 MOSFET.
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Instance "m2": Width narrower than recommended for a level 1 MOSFET.
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Instance "m3": Length shorter than recommended for a level 1 MOSFET.
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Instance "m3": Width narrower than recommended for a level 1 MOSFET.
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Instance "m4": Length shorter than recommended for a level 1 MOSFET.
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Instance "m4": Width narrower than recommended for a level 1 MOSFET.
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Direct Newton iteration for .op point succeeded.
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Direct Newton iteration for .op point succeeded.
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Date: Tue Apr 16 21:35:31 2024
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Date: Tue Sep 17 10:53:42 2024
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Total elapsed time: 843.348 seconds.
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Total elapsed time: 0.138 seconds.
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tnom = 27
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tnom = 27
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temp = 27
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temp = 27
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method = modified trap
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method = modified trap
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totiter = 114326713
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totiter = 2089
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traniter = 114326705
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traniter = 2082
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tranpoints = 33186575
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tranpoints = 1042
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accept = 24915937
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accept = 1042
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rejected = 8270638
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rejected = 0
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matrix size = 6
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matrix size = 4
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fillins = 0
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fillins = 0
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solver = Normal
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solver = Normal
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Avg thread counts: 1.0/1.0/1.0/1.0
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Avg thread counts: 1.5/1.9/1.9/1.5
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Matrix Compiler1: 146 bytes object code size 0.3/0.2/[0.2]
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Matrix Compiler1: 136 bytes object code size 0.3/0.3/[0.2]
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Matrix Compiler2: 366 bytes object code size 0.2/0.3/[0.2]
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Matrix Compiler2: off [0.2]/0.3/0.2
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6th-Semester-Spring-2024/SysCon/Final Project/Draft1.raw
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7th-Semester-Fall-2024/ECOMMS/labs/lab1/part1.py
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7th-Semester-Fall-2024/ECOMMS/labs/lab1/part1.py
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import numpy as np
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import sounddevice as sd
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import matplotlib.pyplot as plt
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def normalize_signal(signal):
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min_amp = np.min(signal)
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normalized_signal = signal - min_amp
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max_amp = np.max(normalized_signal)
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normalized_signal *= 2.0/max_amp
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normalized_signal -= 1
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return normalized_signal
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snr = 10
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f = 466.16
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f_s = 16000
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t = np.arange(0,0.01,1/f_s)
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s = 0.5 * np.sin(2*np.pi*f*t)
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sd.play(normalize_signal(s), samplerate=f_s, blocking=True)
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,sharpe,dhcp-10-39-26-171,23.09.2024 21:46,file:///home/sharpe/.var/app/org.libreoffice.LibreOffice/config/libreoffice/4;
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7th-Semester-Fall-2024/IoT-Hardware/assignments/Assignment3.docx
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