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ppt - EPCC - University of Edinburgh
ppt - EPCC - University of Edinburgh

lecture notes from ECS303
lecture notes from ECS303

AN58 - 5V to 3.3V Converters for Microprocessor Systems
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... Microprocessors require the input voltage to be maintained within ±5% under worst case transients. The dynamic nodes internal to the processor are sensitive to voltage. Transients drawn by the processor are so fast that no active loop can respond in time. Adequate reserves of charge must be maintain ...
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...  Learn how they can be applied to solve problems concerning the vibrations of springs and the analysis of electric circuits.  See how infinite series can be used to solve differential equations. ...
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... 2.3b Use functions to model relationships between quantities. (CCSS: 8.F) i. Construct a function to model a linear relationship between two quantities. (CCSS: 8.F.4) ii. Determine the rate of change and initial value of the function from a description of a relationship or from two (x, y) values, in ...
< 1 ... 45 46 47 48 49 50 51 52 53 ... 241 >

Signal-flow graph

A signal-flow graph or signal-flowgraph (SFG), invented by Shannon, but often called a Mason graph after Samuel Jefferson Mason who coined the term, is a specialized flow graph, a directed graph in which nodes represent system variables, and branches (edges, arcs, or arrows) represent functional connections between pairs of nodes. Thus, signal-flow graph theory builds on that of directed graphs (also called digraphs), which includes as well that of oriented graphs. This mathematical theory of digraphs exists, of course, quite apart from its applications.SFG's are most commonly used to represent signal flow in a physical system and its controller(s), forming a cyber-physical system. Among their other uses are the representation of signal flow in various electronic networks and amplifiers, digital filters, state variable filters and some other types of analog filters. In nearly all literature, a signal-flow graph is associated with a set of linear equations.
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