b. Apparatus:-Experimental kit and patch cords. Diode I-V characteristics The I-V graph for a non-ideal diode is shown in figure 2, along with an ideal approximation to accommodate the non-zero threshold voltage. Zener Diode Characteristics - Zener regulator Prelab: You are tasked to determine experimentally the characteristic curve of a reverse-biased Zener diode. When forward biased, it behaves like a normal signal diode, but when the reverse voltage is applied to it, the voltage remains constant for a wide range of currents. The symbol for a zener diode is shown in Below Figure. The layer at the junction of ‘P’ type and ‘N’ type. The zener regulator is composed of resistor R1 and zener diode CR1• The resistor characteristics … In the forward biased mode the zener diode operates as a p-n diode. (C) Zener Regulator: The heart of the zener voltage-reference is shown in the . However, when the reverse voltages are applied, or reverse feedback is provided, a tiny leakage current is observed between the zener voltage and 0V. Jrd . Figure 4. The behaviour of a diode in a circuit is given by its I-V characteristics. This article will help to explain the characteristics which make up zener diodes, specifically how the voltage across a zener diode varies with the current flowing through it. An 8V regulator with a 12V source that requires 1A of current requires a 250Ω resistor rated at 4W and an 8V Zener diode rated at 8W. Lab Report Zener Diode Solved: EEE 2416 ELECTRONICS EXPERIMENT 1 DIODE APPLICATIO … – Science report for no cost for you. Zener voltage: It is that reverse bias voltage at the which junction breakdown completely and large current flows through the device at a constant potential.. 6- Conclusion A diode allow electric current to pass in forward direction and block current in reverse direction. Find Zener Breakdown Voltage in Reverse Biased conditions. 3 Theory of experiment The diode is a device formed from a junction of n-type and p-type semiconductor material. This property of zener diode makes its use as a voltage regulator. If the reverse current exceeds this maximum rating, the diode will get damaged. Conclusion about PN junction characteristics 11 CONCLUSION Experimentally, throughout this experiment, we can see that the characteristics of junction diode, Zener diode and also the light emitting diode almost fits the theoretical facts. A basic semiconductor diode can operate in forward bias but it cannot conduct during reverse bias. 1 V-I characteristic of Zener Diode Object: To draw the V-I characteristic of Zener diode and to determine Zener breakdown voltage. 3. The diode will be easier to understand if we compare the diode to another two terminal device we know (and love) the resistor. Calculate static and dynamic resistance of the Zener diode in both forward and reverse biased conditions (before, after break down voltages). A zener diode is a special kind of diode which allows current to flow in the forward direction in the same manner as an ideal diode, but will also permit it to flow in the reverse direction when the voltage is above a certain value known as the breakdown voltage, "zener knee voltage" or "zener voltage." Conclusion. Zener diode is nothing but a single diode connected in a reverse bias mode and Zener diode can be connected in reverse bias positive in a circuit as shown as picture. #ZenerDiode #Regulator #DiodeZener Voltage Regulator Experiment on Breadboard Practical. 1. Figure 2. The electric field may become large enough that covalent bonds are broken and electron-hole pairs are created. 2. The lead connected to the p-type material is called the anode and the lead connected to the n-type material is the cathode. Objective: To study and verify the functionalityof Zener diode in forward bias and reverse bias and to Plot Volt-Ampere Characteristics of Zener Diode. In the forward bias condition, the zener diode behaves like an ideal diode within specified current and power limits, but it differs in reverse bias condition where the zener diode has very steep avalanche characteristic at the … With your lab partner, brainstorm on the following ideas: ZENER DIODE CHARACTERISTICS Objectives: To study the characteristics of Zener diode. The current flows without much restriction while there can be a voltage drop of about 0.3 to 0.7 Volts. The breakdown voltage of a Zener diode can be set by controlling the doping level. Voltage – Current characteristics of semiconductor diode The principal schematic of circuit connection is illustrated below in the Figure 2. V characteristics of Zener diode and the load line) - Give the quiescent point Q(V Z,I Z). A zener diode is a silicon pn junction device that is designed for operation in the reverse-breakdown region. This diode can conduct in forward bias just like a normal diode. (Zener Diode V-I Characteristics) When the applied voltage exceeds an specific amount Zener breakdown takes place. Even for a small change in applied voltage, there is a high increase in net current through the diode. Thus it acts as a voltage regulator. A semi-conductor diode is the most common type diode, which is a piece of semi-conductor material with a p-n junction connected to two terminals. 6. Difference Between PN Junction & Zener Diode The major difference between PN junction and the Zener diode is that the PN junction diode allows current to pass only in the forward direction, whereas the Zener diode allows the current to flow both in the forward and the reversed direction. Objectives: To study the characteristics of Zener diode. Zener diode has the property of behaving like a dc battery in ‘on’ state (i.e. To draw the characteristic curve of a zener diode and to determine its reverse break down voltage. A diode characteristic curve is a curve that describes the characteristic of diode and it is normally based on experiment data. Key terms related to Zener Diode. The zener diode characteristics have been studied. Theory: Zener Diode: Zener diode is a heavily doped PN junction diode. Objectives: • Obtain the I-V curves of a signal diode and a zener diode • Compare the performance of different rectifier circuits . : 5 Lab. - Determine the differential resistance r Z from the intersections at the axes. You must also design a circuit that demonstrates the operation of a 7 V ± 5% loaded Zener regulator powered by a 12 V DC voltage source. The current-voltage characteristic curve of the Zener diode … The junction for the Zener diode … In ‘on’ state , the voltage across zener diode remains constant until the voltage across it deops less than VZ . Instead of a straight line representing the cathode, the zener diode has a bent line that reminds you of the letter Z (for zener). But for simplicity, both types are called Zener Diodes. Theory:-A Semiconductor diode is prepared by joining P and N sections of a semi conducting … EXPERIMENT NUMBER 4 ... characteristics of diodes and the use of diodes in rectifier and limiter circuits. Lab Report Zener Diode Lab 1 Electrical Characteristics of Silicon and Zener Diodes … – Science report for free for you. Zener diode is a silicon semiconductor with a p-n junction that is specifically designed to work in the reverse biased condition. - Draw a tangent to the Zener diode characteristic at the quiescent point and construct a right-angled triangle using the tangent. Lab Report Zener Diode EE 462: Laboratory # 4 – Science report for no cost for you. block of Figure 1. Zener Diode I-V Characteristics Curve. To study the voltage regulation in Zener diode regulation circuit. For Zener diodes, silicon is preferred to Ge because of its high temperature and current capability. Brief Theory: When a reverse-bias voltage is applied to a pn junction, the electric field in the space-charge region is increases. when the voltage across the zener diode exceeds its zener voltage rating VZ) . EXPERIMENT: DIODE & ZENER DIODE Objective:- To study the forward and reverse bias characteristics of diode and zener diode. M90005. In Experiment B, a 6v Zener Diode used is conducting (the bulb comes on) in reverse biased because the applied voltage is greater than its breakdown voltage and thus shows that the breakdown region is the region of operation of the zener diode. Zener Diode Characteristics. Abstract: 1N755A zener 5V conclusion dc zener diode conclusion of zener diode voltage Text: Filter Conclusion A 7.5V zener diode connected from the DC supply terminal of an MNA amplifier to , oscilloscope traces show that the zener diode clamps Point B to a voltage in the range 7.7 to 8.6V. The other differences between the PN-junction and Zener diode are shown in the comparison chart. 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. The I-V Characteristics Curve of a zener diode, shown below, is the curve which shows the current-voltage relationship of a zener diode. In general, the cathode of a diode is marked by a solid line on the diode.The Result: a. The Zener diode acts as a conventional diode when it is connected in the forward direction. The special type of diode that can conduct in reverse bias is referred to as a Zener diode. References: • EE 121 Handouts II. To study the voltage regulation in Zener diode regulation circuit. Apparatus used: Zener diode, voltmeter (0-2volt), voltmeter (0-30 volt), mili-ammeter, micro- ammeter, variable source (0-2 volt and 0-30 volt). This post includes explanation of operation of Zener diode and V-I Characteristics of Zener Diode. Typically, Zener diodes are only available at up to 5W, so in even a medium voltage/current application like this example, it may be more practical to use an integrated circuit regulator. 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. But due to higher doping concentration, higher current flows through the Zener diode.In the third quadrant, the magic happens. Due to heavily doped, its In the reverse biased mode zener diode has large breakdown voltage and though the current increases the voltage remains constant. 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