Supervisor: Munther N. Thiyab Zener diode characteristics 1 Experiment #5 Object To study and measure the effects of forward and reverse bias on the Zener diode current. Objectives: To study the characteristics of Zener diode. Zener Diode Characteristics i) V-I Characteristics ii) Zener Diode act as a Voltage Regulator 4. For correct voltage regulation, we need to find out precisely what voltage should be across the Zener diode.Zener breakdown voltage should be approximately close to the desired ⦠Apparatus:-Experimental kit and patch cords. While doing the experiment do not exceed the ratings of the zener diode. The fixed voltage property of Zener diodes makes them extremely handy as quick voltage references. P-N Junction Diode Characteristics 3. To study the voltage regulation in Zener diode regulation circuit. (ii) REGULATION CHARACTERISTICS: THEORY: A zener diode is heavily doped p-n junction diode, specially made to operate in the break down region. 2. Here the Zener diode acts like an ordinary diode.When a forward voltage is applied, current flows through it. 1. In the forward biased mode the zener diode operates as a p-n diode. The P type has excess Study of CRO Operation and its Applications. 2. David started the tutorial comparing between zener and regular diode. Theory. The forward characteristics of a diode is non linear. A graph of current through vs the voltage across the device is called the characteristic of Zener diode.The first quadrant is the forward biased region. With 2 V across a 400 ohm resistor, the current through that resistor (and the diode, in series) is 5 mA. In the reverse biased mode zener diode has large breakdown voltage and though the current increases the voltage remains constant. Experiment no. A p-n junction diode normally does not conduct when reverse biased. Zener voltage references. Brief Theory: When a reverse-bias voltage is applied to a pn junction, the electric field in the space-charge region is increases. The electric field may become large enough that covalent bonds are broken and electron-hole pairs are created. This may lead to damage the diode. But due to higher doping concentration, higher current flows through the Zener diode.In the third quadrant, the magic happens. 2. current increases at a rapid rate. We are going to learn about an experiment to find out the Zener breakdown voltage and draw the characteristics of Zener diode.Why should we do this experiment? To construct a Zener voltage regulator and experimentally determine the range over which the Zener maintains a constant output voltage. Rectifiers (without and with filter) i) Half-wave Rectifier ii) Full-wave Rectifier 5. The V-I characteristics of a diode can be forward or reverse. Thus it acts as a voltage regulator. In the circuit above, there is 10 V across the Zener diode, and 2 V across the resistor. Result: a. The graph showing the forward bias voltage and forward current is known as the forward characteristics, and that showing the reverse bias voltage and reverse current is known as the reverse characteristics. Zener doide is a special diode with increased amounts of doping. Theory:-A Semiconductor diode is prepared by joining P and N sections of a semi conducting material like germanium or silicon. List of Experiments Minimum of Ten Experiments need to be conducted 1. The zener diode characteristics ⦠This is to compensate for the damage that occurs in the case of a pn junction diode when the reverse bias exceeds the breakdown voltage and thereby . The circuit diagram to plot the VI characteristics of a zener diode is shown. Here V z is the Zener breakdown voltage. : 5 Lab. 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