Title: ECET 350 Education on your terms-snaptutorial.com
1ECET 310 Education on your terms
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2ECET 310 Education on your terms
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ECET 310 Entire Course For more classes
visit www.snaptutorial.com ECET 310 Week 1
Homework 1_1 ECET 310 Week 1 Homework 1_2
3ECET 310 Education on your terms
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ECET 310 Week 1 Homework 1_1 For more classes
visit www.snaptutorial.com Computer Science -
General Computer Science 1. Add (a) 60 dB
25 dB (b) 20 dBW 5 dBW
4ECET 310 Education on your terms
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ECET 310 Week 1 Homework 1_2 For more classes
visit www.snaptutorial.com 1 . Four frequencies
are applied at the input of a non-linear
amplifier. Write down all of the frequency
components at the output of the non-linear
device. Write down only the first three
harmonics.
5ECET 310 Education on your terms
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ECET 310 Week 2 Assignment Homework 2_1 For
more classes visit www.snaptutorial.com 1.
Assume that a receiver has a first amplifier
stage with a 5KW input resistance, a gain of 300,
an input audio signal of 20 mV, and an operating
temperature of 27oC. When the amplifier is
operating with a bandwidth first of 10 MHz, find
6ECET 310 Education on your terms
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ECET 350 Week 3 iLab Moving Average Digital
Filters For more classes visit www.snaptutorial.
com Objectives Design, test, and implement
antialiasing and anti-imaging filters to be used
with a real-time, digital filtering system using
a microcontroller, ADC, and DAC.
7ECET 310 Education on your terms
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ECET 350 Week 4 Homework For more classes
visit www.snaptutorial.com Chapter 9 Finite
Impulse Response Filters, pp. 314353 Problems
2a, 2b, 2c, 2d, 3a, 3b, 8a, 8b, 8c, 8d, 8e, 8f,
10b, 11b, 12b, 12d, 14a, 14b
8ECET 310 Education on your terms
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ECET 350 Week 4 iLab Low-Pass Finite Impulse
Response Filter For more classes
visit www.snaptutorial.com Objectives Design,
implement, test, and analyze the performance of a
finite impulse response, low-pass filter in a
real-time application using the Tower
microcontroller board and ADC and DAC interface
board.
9ECET 310 Education on your terms
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ECET 350 Week 5 Homework For more classes
visit www.snaptutorial.com Chapter
9 19. Design a low pass FIR filter for a 10 kHz
sampling, with a pass band edge at 2 kHz, a stop
band edge at 3 kHz, and 20 dB stop band
attenuation. Find the impulse response and the
difference equation for the filter.
10ECET 310 Education on your terms
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ECET 350 Week 5 iLab Impulse Response Band Pass
Filter For more classes visit www.snaptutorial.c
om Objectives Design a high-order, FIR band
pass using MATLAB and then to implement, test,
and analyze the real-time performance of that
filter on a target embedded system board. In
addition, introduce
11ECET 310 Education on your terms
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ECET 350 Week 6 Homework For more classes
visit www.snaptutorial.com Chapter 10 Homework
Problems 12a, 12b
12ECET 310 Education on your terms
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ECET 350 Week 6 iLab Infinite Impulse Response
Low-Pass Filter For more classes
visit www.snaptutorial.com Objectives Design a
Butterworth, low-pass filter, and then, using a
bilinear transformation operation, create a
digital IIR filter. The filter will then be
implemented and real-time performance tested and
analyzed on a target embedded system board.
13ECET 310 Education on your terms
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ECET 350 Week 7 Homework For more classes
visit www.snaptutorial.com ECET 350 Practice
Problems 1. A first-order Butterworth filter with
a digital cut-off frequency of p/4 radians is
designed for a 2 kHz sampled system. The
pre-warped analog transfer function is
14ECET 310 Education on your terms
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