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&KDSWHU 1RGDO DQG /RRS $QDO\VLV 7HFKQLTXHV 1RGDO $QDO\VLV $Q DQDO\VLV WHFKQLTXH LQ ZKLFK RQH QRGH LQ DQ 1QRGHV QHWZRUN LV VHOHFWHG DV WKH UHIHUHQFH QRGH DQG .LUFKRIIuV FXUUHQW ODZ LV DSSOLHG DW WKH UHPDLQLQJ 1 QRQUHIHUHQFH QRGHV !!!! What ideal did you get ? /RRS $QDO\VLV $Q DQDO\VLV WHFKQLTXH LQ ZKLFK .LUFKRIIuV YROWDJH ODZ LV DSSOLHG WR D QHWZRUN FRQWDLQLQJ 1 LQGHSHQGHQW ORRSV !! How many equations will you get ?

Chapter 3 Nodal and Loop Analysis Techniques202.28.32.233/pics_upload/EEng ch3.pdf · 2009-11-19 · Chapter 3 Nodal and Loop Analysis Techniques Nodal Analysis: An analysis technique

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Chapter 3  Nodal and Loop Analysis Techniques 

Nodal Analysis: An analysis technique in which one node in an N-nodes network is selected 

as the reference node and Kirchoff’s current law is applied at the remaining N-1 nonreference nodes. !!!! What ideal did you get ? 

Loop Analysis: An analysis technique in which Kirchoff’s voltage law is applied to a 

network containing N independent loops. !! How many equations will you get ?

There fore, the two equation for the two unknown node voltage v1 and v2 are

The determinant is

v2=vx

Circuits with operational amplifiers

Zi=  α 

Zo = 0 A= α BW =  α 

Zi= Vi / Ii 

Vi 

Ii 

Zi  Zo 

A = Vo/ Vi 

Vi+ - Vi- = 0 virsual short circuit