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Voltage Regulator

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Estimated time: 8 minutes
CBSE: Class 12

Formula: Output Voltage

\[V_{OUT}=V_{IN}-I_R=V_{IN}-(I_Z+I_L)R\]

CBSE: Class 12

Formula: Series Resistance

\[R=\frac{V_{IN}-V_{OUT}}{I_Z+I_L}\]

CBSE: Class 12

Formula: Maximum Zener Current

\[I_{Z_{max}}=\frac{P_{max}}{V_Z}\]

Where \[P_{max}\] = power dissipation capability of Zener diode.

CBSE: Class 12

Formula: In Zener Voltage Regulator Circuit

\[I_L=\frac{V_s-V_Z}{R_s}\quad\mathrm{or}\quad I_L=I_S+I_Z\]

CBSE: Class 12

Formula: Total Current

\[I=I_Z+I_L\]

CBSE: Class 12

Key Points: Voltage Regulator

  • A Zener diode maintains a constant voltage across the load as long as the supply voltage is more than the Zener voltage.
  • If the input voltage increases, the current through the Zener diode increases while the voltage drop remains constant.
  • In the Zener regulator circuit,\[R_s \] is used to limit reverse current through the diode to a safer value \[V_s\], and \[R_s \] is selected so the diode operates in the breakdown region.
  • When IZIZ​ becomes zero, IZIZ​ reaches its maximum value - at that case \[R=\frac{V_{IN}-V_{OUT}}{I_{Z_{max}}}\]. 
  • Voltage regulator IC (e.g. LM7805) is a special three-terminal device: Pin 1 = \[V_{IN}\]​, Pin 2 = GND, Pin 3 = +5V regulated output.
  • The voltage regulator has been designed to act as an ideal battery.

Shaalaa.com | Zener diode as a voltage regulator

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