VOLTAGE REGULATOR Voltage Regulator Zener diode is a

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VOLTAGE REGULATOR

VOLTAGE REGULATOR

Voltage Regulator • Zener diode is a voltage regulator device because it is able

Voltage Regulator • Zener diode is a voltage regulator device because it is able to fix the output voltage at a constant value (DC voltage). • RS is to limit the zener current, IZ so that it is less than the maximum current, IZM (to avoid the zener diode from broken).

Zener as Regulator A simple regulator circuit A regulator circuit with load resistance

Zener as Regulator A simple regulator circuit A regulator circuit with load resistance

Voltage Regulator • How to determine whether the zener acts as a regulator or

Voltage Regulator • How to determine whether the zener acts as a regulator or not? ? – Use Thevenin Theorem – See example • If VTH<VZ, regulation does not occur.

Voltage Regulator…. • Referring to zener I-V charateristic curve, if the voltage across the

Voltage Regulator…. • Referring to zener I-V charateristic curve, if the voltage across the zener diode zener is between 0 VZ, the zener diode is operating in the reverse bias region, thus it DOES NOT functioned as a regulator. • VTH must at least the same value as VZ (VTH VZ) so that the diode CAN function as a voltage regulator because it is operating in reverse breakdown region.

Zener I-V Charateristic Reverse breakdown region Reverse biased region

Zener I-V Charateristic Reverse breakdown region Reverse biased region

Zener Diode Regulator In this simple illustration of zener regulation circuit, the zener diode

Zener Diode Regulator In this simple illustration of zener regulation circuit, the zener diode will “adjust” its impedance based on varying input voltages and loads (RL) to be able to maintain its designated zener voltage. Zener current will increase or decrease directly with voltage input changes. The zener current will increase or decrease inversely with varying loads. Again, the zener has a finite range of operation.

Thevenin Equivalent Circuit

Thevenin Equivalent Circuit

Examples of zener as voltage regulator

Examples of zener as voltage regulator

Cases in Zener Regulator Circuits

Cases in Zener Regulator Circuits

Zener Diode • Three types of Zener analysis – Fixed VS and RL –

Zener Diode • Three types of Zener analysis – Fixed VS and RL – Fixed VS and variable RL – Variable VS and fixed RL

Zener Diode - Fixed VS and RL The applied dc voltage is fixed, as

Zener Diode - Fixed VS and RL The applied dc voltage is fixed, as the load resistor. The analysis : 1. Determine the state of the Zener diode by removing it from the network and calculating the voltage across the resulting open circuit.

Zener Diode 2. Substitute the appropriate equivalent circuit and solve for the desired unknowns.

Zener Diode 2. Substitute the appropriate equivalent circuit and solve for the desired unknowns. - For the on state diode, the voltages across parallel elements must be the same. VL=VZ The Zener diode current is determined by KCL: IZ = IR – IL The power dissipated by the Zener diode is determined by: P Z = VZ I Z - For the off state diode, the equivalent circuit is open-circuit.

Zener Diode - Fixed VS and Variable RL Step 1 - get the RLmin

Zener Diode - Fixed VS and Variable RL Step 1 - get the RLmin so that zener is on. Rs + Vs - - if RL ≥ RLmin, zener diode ‘on’, so that VL=VZ Step 2: Calculate the IZ using KCL: 2 condition 1. If RLmin , then ILmax and IZmin because of constant I 1 2. If RLmax, then ILmin and IZmax

Zener Diode ; Izmax taken from data sheet Izmin = 0, if not given

Zener Diode ; Izmax taken from data sheet Izmin = 0, if not given Where and or

Zener Diode - Variable VS and fixed R L Rs + Vs - Step

Zener Diode - Variable VS and fixed R L Rs + Vs - Step 1 - get the VSmin so that zener is on. if VS ≥ VSmin, zener diode will ‘on’, so that VL=VZ Step 2: Calculate the IZ using KCL: 2 condition 1. if VSmin , then I 1 min and IZmin because of constant IL 2. if VSmax, then. I 1 max and IZmax

Zener Diode ; Izmax= Pzmax/Vz where and or

Zener Diode ; Izmax= Pzmax/Vz where and or

IC Regulator • The 78 xx (also sometimes known as LM 78 xx) series

IC Regulator • The 78 xx (also sometimes known as LM 78 xx) series of devices is a family of self-contained fixed linear voltage regulator IC. The 78 xx family is a very popular choice for many electronic circuits which require a regulated power supply, due to: i. ease of use and ii. Low cost.

78 xx and 79 xx IC When specifying individual ICs within this family, the

78 xx and 79 xx IC When specifying individual ICs within this family, the xx is replaced with a two-digit number, which indicates the output voltage the particular device is designed to provide (for example, the 7805 has a 5 volt output, while the 7812 produces 12 volts). The 78 xx line are positive voltage regulators, meaning that they are designed to produce a voltage that is positive relative to a common ground. There is a related line of 79 xx devices which are complementary negative voltage regulators. 78 xx and 79 xx ICs can be used in combination to provide both positive and negative supply voltages in the same circuit, if necessary.