electroniqueali.py

Created by condouarthur

Created on April 17, 2023

1.07 KB


Ali idéal :
  i+=i-=0
  Gain infini
Si rétroaction sur - :
  fonctionnement linéaire V+ = V-
Si rétroaction sur + :
  saturation

Suiveur :
  Vs = Ve
Amplificateur inverseur :
  Vs = - R2/R1 Ve
Amplificateur non inverseur :
  Vs = ((R1 + R2)/R1)*Ve
Intégrateur :
  Vs = - Ve / jrcw
Dérivateur :
  Vs = -Ve jrcw
Soustracteur :
  (R1+R2)R4/(R1*(R3+R4)) Ve2 -R2/R1 Ve1
Sommateur :
  Vs = (R2Ve2+R1Ve1)/(R1 + R2)((R4+R3)/R3)

Q=f0/Delta f = w0 /delta w facteur de qualité
Delta w bande passante, ensemble des bandes passantes tq Gmax / srqt 2 < G(w)
wc : G(wc)= Gmax/sqrt(2) soit Gdb = Gdb - 3 db
Ordre 1 : 
  wc = w0
Ordre 2 :
  wc = w0 si Q = 1/sqrt(2)
Critère de Shannon fe > 2fmax
Fenetre de Niquyst : échantilloage entre [0,fe/2]
To = NTe, N nombre d'échantillons, T0 durée d'acquisation, Te temps d'acquisation

Régime saturé :
  -Signe de l'eq diff différents
  -rétroaction sur borne +
  - coeff premiere dérivée non nulle
Auto-oscillant : 
  - Coeff de l'eq diff légèrement négatif

Si IH(jw)I= 1, auto-oscillations ( conditions de Berckhausen)

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