] endobj BT 41.000 385.364 Td /F1 10.0 Tf 0 Tr (***) Tj ET 1 w 35.500 560.400 m eBook . 36.000 511.988 m 576.500 201.720 l S Because of the large file size, we recommend that you first save the file to your computer by right clicking the mouse and choosing "Save Target As...", and then open the file in … 1 w 0000025013 00000 n BT 162.000 385.364 Td /F1 10.0 Tf 0 Tr (b) Tj ET 0000010236 00000 n 1 w 0.000 0.000 0.000 RG /Length 2102 >> BT 41.000 95.388 Td /F1 10.0 Tf 0 Tr (automatically plays a short tune. q 33 0 R Lesson 11: 7400 Series Logic Devices Certain types of digital logic have been standardized around 7400 parts. 526.000 553.808 l S 576.500 433.256 l S 0.000 0.000 0.000 RG << /Type /Page 36.000 164.808 m 541.000 560.400 m BT 541.835 573.148 Td /F1 10.0 Tf 0 Tr (25%) Tj ET BT 299.195 153.828 Td /F1 10.0 Tf 0 Tr (Electrical Engineering) Tj ET 1 w 35.500 180.604 m 35.500 553.808 m BT 377.250 338.588 Td /F1 10.0 Tf 0 Tr (3.0) Tj ET q 1 w BT 41.000 117.708 Td /F1 10.0 Tf 0 Tr (Demo Player Feature for an Electronic Keyboard: Students ) Tj ET It uses the Boolean language, which consists of a system of rules that essentially says “yes” or “no” to a series of questions, leading to extremely complicated decisions. 0000000000 65535 f 576.500 80.048 l S 173.000 180.604 m Q q endobj 36.000 538.648 m Introduction to Logic Gates Logic gates are the heart of digital electronics. 296.000 560.400 m "An excellent introduction to the digital world in engineering, Introduction to Digital Logic Design explains the simple concepts behind digital logic design from logic gates all the way to the design of sequential machines. 0.900 0.900 0.900 RG 0.000 0.000 0.000 RG q 1 w BT 41.000 84.072 Td /F1 10.0 Tf 0 Tr (**) Tj ET 38 0 obj 1 w 156.000 180.604 m BT 307.250 512.508 Td /F1 10.0 Tf 0 Tr (2.0) Tj ET 36.000 149.648 540.000 15.160 re f 0.000 0.000 0.000 RG BT 36.000 558.776 Td /F2 12.0 Tf 0 Tr (Course Length:) Tj /F1 12.0 Tf 0 Tr ( 14 Week) Tj ET 173.000 624.628 m 1 w 1 w << 0.000 0.000 0.000 RG 576.000 305.384 l S 33 0 obj 1 w BT 178.000 121.552 Td /F1 10.0 Tf 0 Tr (an ability to apply engineering design to produce solutions that meet specified needs with ) Tj ET 1 w q BT 163.110 268.084 Td /F1 10.0 Tf 0 Tr (i) Tj ET 36.000 568.968 540.000 15.160 re f BT 41.000 651.880 Td /F1 10.0 Tf 0 Tr (Be familiar with digital circuit design methods) Tj ET Q 0.900 0.900 0.900 RG 576.000 349.568 l S 0.000 0.000 0.000 RG 1 w BT 41.000 723.268 Td /F1 10.0 Tf 0 Tr (**) Tj ET 25 0 obj 576.000 35.328 l S 1 w 36.000 95.052 m 1 w $23.99 . 576.000 460.116 l S 0.900 0.900 0.900 rg BT 41.000 355.044 Td /F1 10.0 Tf 0 Tr (**) Tj ET << /Type /Font Q 1 w 36.000 753.820 m q 0.900 0.900 0.900 rg BT 36.000 346.816 Td /F4 10.0 Tf 0 Tr ( /Contents [ 576.000 614.448 l S BT 41.000 252.468 Td /F1 10.0 Tf 0 Tr (Using the CODEC: Students are shown how to use the DE2s ) Tj ET 36.000 614.448 m q 36.000 335.704 m 1 w 36.000 179.968 m $20.99 . 0.900 0.900 0.900 rg q 0.900 0.900 0.900 rg Q 576.000 80.048 l S Q Q 0000020695 00000 n 156.000 756.000 m 1 w BT 307.250 527.668 Td /F1 10.0 Tf 0 Tr (3.0) Tj ET 32 0 obj 1 w 1 w stream Q q /Contents [ Introduction to Digital Logic Digital logic design techniques form the basis of all digital integrated circuits. 34 0 R 1 w Q endobj Q 35.500 753.820 m /Length 129 >> BT 36.000 703.912 Td /F2 14.0 Tf 0 Tr (Course Description) Tj ET q Logic Gates : Logic Converter : The Exercises: Preparatory Exercises Prior to the lab session, construct the truth table and Karnaugh map for each of the exercises as appropriate. endobj q 36.000 617.380 540.000 15.160 re f BT 36.000 318.816 Td /F4 10.0 Tf 0 Tr ( BT 36.000 438.248 Td /F2 12.0 Tf 0 Tr (Campus Locations:) Tj /F1 12.0 Tf 0 Tr ( Columbus, Lima, Marion) Tj ET DLD – A digital is an electronic technology that is use to storing, processing and generating a data in term of positive and non-positive states. endstream /F4 39 0 R >> Franchise marketing has evolved to almost 100% to digital marketing. Boolean Algebra Boolean algebra is a mathematical system for the manipulation of variables that can have one of two values. 0.000 0.000 0.000 RG 576.000 263.448 l S 21 0 R endobj 0.000 0.000 0.000 RG 0.900 0.900 0.900 RG BT 41.000 742.840 Td /F1 10.0 Tf 0 Tr (Master the number representations used in today's digital systems and their arithmetic properties and conversion techniques) Tj ET Introduction to Digital Logic Design builds student understanding from the bottom up -- starting with simple binary numbers and codes, moving through the switch, gate, and register levels, and concluding with an introduction to system architecture. endobj The digital logic gates are fundamental building blocks of the Digital Circuit. 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Quartuss on-chip debugging ) Tj ET Digital Circuits are less prone to noise and signal processing in digital domain is better than in analog domain. 1 w q Q 576.000 693.180 l S 36.000 662.860 m endstream 0000008080 00000 n 36.000 248.744 m Q 35.500 418.636 m Introduction Digital, or boolean, logic is the fundamental concept underpinning all modern computer systems. 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Tj ET 0.000 0.000 0.000 RG 36.000 447.688 540.000 15.160 re f 0.900 0.900 0.900 RG 0.000 0.000 0.000 RG BT 178.000 57.752 Td /F1 10.0 Tf 0 Tr (make informed judgments, which must consider the impact of engineering solutions in global, ) Tj ET 1 w endstream 36.000 225.968 540.000 37.480 re f 0.000 0.000 0.000 RG 576.500 651.360 l S 156.000 624.628 m 1 w All rights reserved. q Q BT 41.000 144.028 Td /F1 10.0 Tf 0 Tr (tones by applying the concepts and skills they have learned in ) Tj ET endobj BT 41.000 606.400 Td /F1 10.0 Tf 0 Tr (Exposure to methodology for critical troubleshooting skills) Tj ET 1 w Q 0000000083 00000 n 0.900 0.900 0.900 rg 0.900 0.900 0.900 rg BT 178.000 670.628 Td /F1 10.0 Tf 0 Tr (an ability to acquire and apply new knowledge as needed, using appropriate learning strategies ) Tj ET Tj ET 576.000 486.436 l S 0.000 0.000 0.000 RG << /Type /Encoding endstream This is a review of Introduction to Logic and Critical Thinking, an open source book version 1.4 by Matthew Van Cleave. 1 w 0.900 0.900 0.900 rg BT 36.000 245.720 Td /F2 12.0 Tf 0 Tr (Subsidy Level:) Tj /F1 12.0 Tf 0 Tr ( Baccalaureate Course) Tj ET 1 w 1 w BT 41.000 621.560 Td /F1 10.0 Tf 0 Tr (Be competent in using laboratory instruments and laboratory methodology) Tj ET 1 w Q 0.000 0.000 0.000 RG 0.000 0.000 0.000 RG BT 178.000 110.392 Td /F1 10.0 Tf 0 Tr (consideration of public health, safety, and welfare, as well as global, cultural, social, ) Tj ET BT 406.000 545.008 Td /F2 12.0 Tf 0 Tr (Cli) Tj ET 1 w xref B O O L E A N A L G E B R A M A P S I M P L I F I C A T I O N L O G I C G A T E S C O M B I N A T I O N A L C I R C U I T S E Q U E N T I A L C I R C U I T Review of Digital Logic 2. 0.900 0.900 0.900 rg q Q 36.000 539.076 m BT 36.000 290.816 Td /F4 10.0 Tf 0 Tr (recitations and the on-line section has a recitation but no lecture. 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A digital trainer should include: • A breadboard • A 5V power supply which regulates within ±0.25V of 5V • 8 LEDs that are wired to turn on with logic 1 and off with logic 0 • 6 SPDT switches that are wired to logic high (5V) or logic low (0V) • 2 SPDT debounced switches (consult Exhibit 8.10 if constructing a digital … 0.000 0.000 0.000 RG 0.800 0.800 0.800 rg /Encoding /WinAnsiEncoding 1 w BT 36.000 49.508 Td /F2 14.0 Tf 0 Tr (Course Goals) Tj ET 35.500 36.048 m 36.000 568.968 m 0.000 0.000 0.000 RG 36.000 128.688 540.000 48.640 re f 35.500 149.648 m 36.000 391.048 m 0000016901 00000 n BT 36.000 572.168 Td /F2 12.0 Tf 0 Tr (Course Frequency:) Tj /F1 12.0 Tf 0 Tr ( Every Year) Tj ET 1 w 36.000 540.828 540.000 19.572 re f 1 w BT 178.000 417.864 Td /F2 12.0 Tf 0 Tr (College Outcome) Tj ET 0.900 0.900 0.900 RG q q q 36.000 161.032 540.000 19.572 re f 0.900 0.900 0.900 rg endobj 36.000 225.968 m 1 w $20.99. 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Emphasizes the use of ) Tj ET BT 41.000 106.548 Td /F1 10.0 Tf 0 Tr (add an auto play feature to the electronic keyboard that ) Tj ET 576.500 36.048 l S 1 w %âãÏÓ q /Length 129 >> BT 162.280 400.524 Td /F1 10.0 Tf 0 Tr (a) Tj ET 0.000 0.000 0.000 RG 0.900 0.900 0.900 RG 3 0 obj 0.000 0.000 0.000 RG /Length 4358 >> 0.000 0.000 0.000 RG endobj 0.900 0.900 0.900 rg 0.900 0.900 0.900 rg 156.000 222.424 l S 576.000 738.660 l S endobj ] 1 w 1 w BT 178.000 268.084 Td /F1 10.0 Tf 0 Tr (A recognition of the need for, and an ability to engage in life-long learning.) endobj 25 0 R 36.000 666.448 l S Q 0000027235 00000 n 1 w /Outlines 2 0 R 0.000 0.000 0.000 rg /Encoding 26 0 R 576.000 508.328 l S 576.000 560.400 m 0.900 0.900 0.900 rg 0.900 0.900 0.900 rg 34 0 obj /Parent 3 0 R 0.000 0.000 0.000 RG Q BT 36.000 560.400 Td /F1 14.0 Tf 0 Tr ( ) Tj ET 20 0 obj BT 36.000 398.072 Td /F1 12.0 Tf 0 Tr (1282.01H, 1282.02H, 1282.03H, 1282.04H, or 1186, 1187, and 1188 concurrent, or 1187, 1188, and 1186 ) Tj ET Q 1 w 1 w 0.000 0.000 0.000 RG << 0000005136 00000 n BT 36.000 612.344 Td /F2 12.0 Tf 0 Tr (Student Ranks:) Tj /F1 12.0 Tf 0 Tr ( Sophomore) Tj ET BT 377.250 117.708 Td /F1 10.0 Tf 0 Tr (3.0) Tj ET 1 w 36.000 478.008 540.000 15.160 re f BT 36.000 206.816 Td /F4 10.0 Tf 0 Tr ( BT 36.000 360.816 Td /F4 10.0 Tf 0 Tr (Updated from 2.5 to 3 hr course 10/9/14 >> 1 w 0.000 0.000 0.000 RG BT 178.000 740.608 Td /F2 12.0 Tf 0 Tr (Program Outcome) Tj ET Q 576.500 756.000 l S 36.000 462.848 m 173.000 42.412 l S ) Tj ET 1 w q ) Tj ET 471.000 80.048 l S Tj ET Introduction The aim of the Digital Logic Lab was to construct a simple4-bit Arithmetic Logic Unit (ALU)in order to demonstrate methods of usingBoolean Algebrato manipulate and solve various logic problems. 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BT 36.000 545.384 Td /F2 12.0 Tf 0 Tr (Credits:) Tj /F1 12.0 Tf 0 Tr ( 3.0) Tj ET Finally students are introduced to bit ) Tj ET BT 41.000 475.456 Td /F1 10.0 Tf 0 Tr (**) Tj ET 1 w BT 371.000 545.008 Td /F2 12.0 Tf 0 Tr (Lab) Tj ET 36.000 708.340 m Introduction to digital logic Digital devices, such as computers, operate by using binary logic. 576.000 128.688 l S Lori Watson is the second author on the 13th edition. 576.000 279.064 l S Q Q 576.000 662.860 l S 1 w endstream 35.500 79.328 m The object of the course is to provide an introduction to digital logic operations, components and circuits. endstream 36.000 413.684 540.000 19.572 re f BT 178.000 385.364 Td /F1 10.0 Tf 0 Tr (An ability to design and conduct experiments, as well as to analyze and interpret data.) Students should have a solid understanding of algebra as well as a rudimentary understanding of basic electricity including voltage, current, resistance, capacitance, inductance and how they relate to direct current circuits. 0.000 0.000 0.000 RG 1 w 576.000 411.504 l S 1 w Q 36.000 738.660 540.000 15.160 re f 294.195 149.648 l S stream 1 w q BT 41.000 573.148 Td /F1 10.0 Tf 0 Tr (Final Exam) Tj ET /Length 458 >> Formats included in this purchase: Formats included in this purchase: PDF. >> 16 0 obj 0.000 0.000 0.000 RG BT 41.000 635.968 Td /F2 12.0 Tf 0 Tr (Aspect) Tj ET Introduction to digital logic 1. Each chapter progresses through more advanced levels of design and abstraction, tying together concepts previously introduced. 0.000 0.000 0.000 RG 576.000 42.412 l S 36.000 350.864 540.000 15.160 re f /BaseFont /Courier BT 41.000 436.708 Td /F1 10.0 Tf 0 Tr (Registers and counters) Tj ET BT 41.000 528.096 Td /F1 10.0 Tf 0 Tr (**) Tj ET BT 36.000 374.816 Td /F4 10.0 Tf 0 Tr (Initial Design: 9/10/14 Khan 1 w 0000031022 00000 n K148-9. 10 0 obj 36 0 R endstream 576.000 350.864 l S 1 w The boolean equation is (4) where the ‘+’ is standard addition except that 1 + 1 is taken to be 1. 36.000 36.048 m 576.000 602.220 l S 36.000 320.544 m endobj << q << /Type /Encoding BT 41.000 364.908 Td /F1 10.0 Tf 0 Tr (Finite state machines, flow diagrams, mapping to flip-flop ) Tj ET << /Size 40 1 w 36.000 418.636 l S 0000025195 00000 n Tj ET Tj ET BT 307.250 482.188 Td /F1 10.0 Tf 0 Tr (2.0) Tj ET 36.000 79.328 540.000 26.320 re f BT 178.000 490.616 Td /F1 10.0 Tf 0 Tr (economic, environmental, and societal contexts) Tj ET 1 w 576.000 312.088 l S BT 178.000 528.096 Td /F1 10.0 Tf 0 Tr (an ability to communicate effectively with a range of audiences) Tj ET Debugging introduction digital, or DVD can be combined to perform a specific.... 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