000 03987nam a22003497a 4500
003 OSt
005 20260803112407.0
008 260803b |||||||| |||| 00| 0 eng d
020 _a9781916784338 [hardbound]
040 _aUniversity of Cebu-Banilad
_cUniversity of Cebu-Banilad
100 _aMurray, Lowan,
_eauthor.
245 _aDigital logic design /
_cby Lowan Murray.
250 _aFirst edition.
260 _aLondon, United Kingdom :
_bVintage Press Ltd.,
_cc2024.
300 _aix, 248 pages :
_bcolor illustrations ;
_c24 cm.
336 _2rdacontent
_atext
337 _2rdamedia
_aunmediated
338 _2rdacarrier
_avolume
504 _aIncludes bibliographical references and index.
505 _aContents: 1. Number systems and codes -- 2. Boolean algebra -- 3. Logic design principles -- 4. Karnaugh maps and function simplification -- 5. Latches and flip flops -- 6. Counters and registers -- 7. Event driven circuits -- 8. Programmable logic devices.
520 _a"Digital electronics is a field of electronics involving the study of digital signals and the engineering of devices that use or produce them. This is in contrast to analog electronics and analog signals. Digital electronic circuits are usually made from large assemblies of logic gates, often packaged in integrated circuits. Complex devices may have simple electronic representations of Boolean logic functions. A large logic machine (say, with more than a hundred logical variables) can have an astronomical number of possible states. Obviously, factory testing every state of such a machine is unfeasible, for even if testing each state only took a microsecond, there are more possible states than there are microseconds since the universe began! Large logic machines are almost always designed as assemblies of smaller logic machines. To save time, the smaller sub-machines are isolated by permanently installed design for test circuitry, and are tested independently. One common testing scheme provides a test mode that forces some part of the logic machine to enter a test cycle. The test cycle usually exercises large independent parts of the machine. Digital, or boolean, logic is the fundamental concept underpinning all modern computer systems. Put simply, it's the system of rules that allow us to make extremely complicated decisions based on relatively simple "yes/no" questions. Digital logic circuits can be broken down into two subcategories- combinational and sequential. Combinational logic changes "instantly" the output of the circuit responds as soon as the input changes (with some delay, of course, since the propagation of the signal through the circuit elements takes a little time). Sequential circuits have a clock signal, and changes propagate through stages of the circuit on edges of the clock. Typically, a sequential circuit will be built up of blocks of combinational logic separated by memory elements that are activated by a clock signal. Digital logic is important in programming, as well. Understanding digital logic makes complex decision making possible in programs. The discovery of superconductivity has enabled the development of rapid single flux quantum (RSFQ) circuit technology, which uses Josephson junctions instead of transistors. Most recently, attempts are being made to construct purely optical computing systems capable of processing digital information using nonlinear optical elements. This comprehensive book is a complete teaching tool for all undergraduate (and possibly graduate) digital logic courses — Lowan Murray."
521 _aAdult
541 _aPurchased
_xOrtega, Eric
_yCollege of Computer Studies
_zComputer Science
546 _aText in English
650 _aSwitching theory.
650 _aMicroprocessors.
650 _aSequential circuits.
650 _aCombinational circuits.
942 _2ddc
_cBK
998 _cJanna [new]
_d08/03/2026
999 _c15576
_d15576