
FLZ5V6C Discrete Semiconductor Products |
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Allicdata Part #: | FLZ5V6CTR-ND |
Manufacturer Part#: |
FLZ5V6C |
Price: | $ 0.00 |
Product Category: | Discrete Semiconductor Products |
Manufacturer: | ON Semiconductor |
Short Description: | DIODE ZENER 5.8V 500MW SOD80 |
More Detail: | Zener Diode 5.8V 500mW ±3% Surface Mount SOD-80 |
DataSheet: | ![]() |
Quantity: | 1000 |
1 +: | 0.00000 |
Specifications
Series: | -- |
Packaging: | Tape & Reel (TR) |
Part Status: | Obsolete |
Voltage - Zener (Nom) (Vz): | 5.8V |
Tolerance: | ±3% |
Power - Max: | 500mW |
Impedance (Max) (Zzt): | 10.5 Ohms |
Current - Reverse Leakage @ Vr: | 750nA @ 2.5V |
Voltage - Forward (Vf) (Max) @ If: | 1.2V @ 200mA |
Operating Temperature: | -65°C ~ 175°C |
Mounting Type: | Surface Mount |
Package / Case: | DO-213AC, MINI-MELF, SOD-80 |
Supplier Device Package: | SOD-80 |
Base Part Number: | FLZ5V6 |
Description
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Diodes - Zener - Single: FLZ5V6C Application Field and Working PrincipleDiodes are often used in various applications, such as rectification, switching, and voltage regulation. Zener diodes are special types of diodes designed to allow current to flow easily in one direction and to reverse breakdown when a particular voltage is reached. They are most commonly used in voltage regulation and frequency control or stabilization. One such diode is the FLZ5V6C, which belongs to the class of zener diode known as single-junction devices. This article will discuss the application field and working principle of the FLZ5V6C.The FLZ5V6C is a low-power zener diode with a low-voltage breakdown voltage. It is often used in voltage regulation, voltage ramps, voltage stabilization, and reverse breakdown protection, making it suitable for a wide range of application fields.The FLZ5V6C has a maximum power rating of 500mW and a rated junction temperature of 125°C. It has a reverse breakdown voltage of 5.6V, with a maximum reverse current of 30mA at this breakdown voltage. It has a maximum zener resistance at Izt (Izt is the breakdown current) of 8.5Ω and a maximum reverse leakage current of 10µA at 5.6V. The maximum forward voltage drop is 1V. Using an FLZ5V6C effectively involves the use of several parameters. Among the more important ones are the zener voltage, zener current, zener impedance, and zener coefficient. The zener voltage is the reverse breakdown voltage; the zener current is the maximum reverse current at the breakdown voltage. The zener impedance is the resistance of the diode at Izt, and the zener coefficient is the exponential decrease in the breakdown voltage as the temperature increases.The working principle of the FLZ5V6C is relatively simple. The diode is designed to allow current to flow in one direction and to break down when a particular voltage is reached. When the diode is placed in a circuit with a voltage above the specified breakdown voltage, it will start to conduct current. The current can be controlled by the resistance in the circuit, and the breakdown voltage can be adjusted by changing the resistance. When the voltage across the diode reaches the breakdown voltage, a large amount of current will start flowing, which is known as zener breakdown. The diode will still remain intact due to a phenomenon called avalanche breakdown. This phenomenon occurs when a large amount of current passes through the diode, causing it to break down further, resulting in a large increase in current. This phenomenon is known as zener regulation. The FLZ5V6C is often used in applications where the stability of the output voltage is important, such as voltage regulation and frequency control. The diode\'s low reverse breakdown voltage, low power rating, and low temperature coefficient make it ideal for applications such as these. It is also used in protection circuits, as its low power rating prevents it from being overloaded by a large voltage spike. In conclusion, the FLZ5V6C is a low-power zener diode with a low reverse breakdown voltage. It is often used in voltage regulation, voltage ramps, voltage stabilization, and reverse breakdown protection. Its main parameters are the zener voltage, zener current, zener impedance, and zener coefficient. The working principle involves allowing current to flow in one direction and breaking down when a particular voltage is reached. This breakdown is then stabilized by the avalanche breakdown phenomenon.The specific data is subject to PDF, and the above content is for reference
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