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Mark Butala
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Announcements
(m10841)
Author:
Mark Butala
Summary:
Class announcements. This file will be regularly updated with announcements.
Subject:
Science and Technology
Language:
English
Popularity:
82.19%
Revised:
2005-08-17
Revisions:
35
Digital Transmitter: Optimization Exercise with QPSK on TI TMS320C54x (ECE 320 specific)
(m10874)
Author:
Mark Butala
Summary:
(Blank Abstract)
Subject:
Science and Technology
Language:
English
Popularity:
41.61%
Revised:
2004-02-25
Revisions:
6
Digital Transmitter: Optimization Exercise with QPSK on TI TMS320C54x - ECE 320 specfic
(m10873)
Author:
Mark Butala
Summary:
(Blank Abstract)
Subject:
Science and Technology
Language:
English
Popularity:
22.76%
Revised:
2005-08-17
Revisions:
3
DSP Development Environment: Introductory Exercise for TI TMS320C54x
(m12607)
Authors:
Mark Butala
,
Jason Laska
Keywords:
anti-aliasing filter
,
anti-imaging filter
,
Code Composer Studio
,
DSP
,
FIR filter
,
function generator
,
MATLAB
,
oscilliscope
,
test vector
,
TMS320C54x
Summary:
This exercise introduces the hardware and software used in the course. By the end of this module, you should be comfortable with the basics of testing a simple real-time DSP system with Code Composer Studio, the debugging environment we will be using throughout the semester. First you will connect ... DSP's output.
[Expand Summary]
This exercise introduces the hardware and software used in the course. By the end of this module, you should be comfortable with the basics of testing a simple real-time DSP system with Code Composer Studio, the debugging environment we will be using throughout the semester. First you will connect the laboratory equipment and test a real-time DSP system with provided code to implement an eight-tap (eight coefficient) finite impulse response (FIR) filter. With a working system available, you will then begin to explore the debugging software used for downloading, modifying, and testing your code. Finally, you will create a filter in MATLAB and use test vectors to verify the DSP's output.
[Collapse Summary]
Subject:
Science and Technology
Language:
English
Popularity:
69.52%
Revised:
2009-06-11
Revisions:
4
DSP Development Environment: Introductory Exercise for TI TMS320C54x (ECE 420 Specific)
(m11019)
Authors:
Mark Butala
,
Jason Laska
Keywords:
anti-aliasing filter
,
anti-imaging filter
,
Code Composer Studio
,
DSP
,
FIR filter
,
function generator
,
MATLAB
,
oscilliscope
,
test vector
,
TMS320C54x
Summary:
This exercise introduces the hardware and software used in the course. By the end of this module, you should be comfortable with the basics of testing a simple real-time DSP system with Code Composer Studio, the debugging environment we will be using throughout the semester. First you will connect ... DSP's output.
[Expand Summary]
This exercise introduces the hardware and software used in the course. By the end of this module, you should be comfortable with the basics of testing a simple real-time DSP system with Code Composer Studio, the debugging environment we will be using throughout the semester. First you will connect the laboratory equipment and test a real-time DSP system with provided code to implement an eight-tap (eight coefficient) finite impulse response (FIR) filter. With a working system available, you will then begin to explore the debugging software used for downloading, modifying, and testing your code. Finally, you will create a filter in MATLAB and use test vectors to verify the DSP's output.
[Collapse Summary]
Subject:
Science and Technology
Language:
English
Popularity:
90.00%
Revised:
2009-06-11
Revisions:
8
FIR Filtering: Exercise for TI TMS320C54x (ECE 320 specific)
(m11020)
Author:
Mark Butala
Keywords:
assembly
,
DSP
,
FIR filter
,
firs
,
mac
Summary:
You will implement band-pass finite impulse-response (FIR) filters with time-domain processing.
Subject:
Science and Technology
Language:
English
Popularity:
87.09%
Revised:
2004-02-25
Revisions:
7
IIR Filtering: Exercise on TI TMS320C54x (ECE 320 specific)
(m11021)
Author:
Mark Butala
Keywords:
block repeat counter
,
butter
,
conv
,
difference equation
,
direct fortm II
,
DSP
,
elinfinite impulse response
,
ellip
,
elliptic low-pass filter
,
freqz
,
gain factor
,
IIR
,
impulse response
,
infinite impulse response
,
linear time-invariant
,
LTI
,
notch filter
,
poles
,
quantize
,
zeros
Summary:
You will implement a fourth-order, elliptical, low-pass infinite impulse-response (IIR) filter as a cascade of two second-order sections.
Subject:
Science and Technology
Language:
English
Popularity:
83.11%
Revised:
2004-02-25
Revisions:
5
Introduction to the IDK
(m10926)
Author:
Mark Butala
Subject:
Science and Technology
Language:
English
Popularity:
75.08%
Revised:
2004-02-25
Revisions:
8
Low-Pass Filter Implementation: Grading
(m11058)
Author:
Mark Butala
Subject:
Science and Technology
Language:
English
Popularity:
75.81%
Revised:
2004-02-25
Revisions:
5
Low-Pass Filter Implementation: Introduction
(m11055)
Author:
Mark Butala
Subject:
Science and Technology
Language:
English
Popularity:
81.07%
Revised:
2004-02-25
Revisions:
4
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