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BZT52C6V8L3P-TP | Power Zener Diode | Discrete Semiconductor
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BZT52C6V8L3P-TP | Power Zener Diode | Discrete Semiconductor

  • BZT52C6V8L3P-TP

  • Micro Commercial Co

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Detailed Description


CategoryDiscrete SemiconductorCurrent - Reverse Leakage @ Vr2 µA @ 4 V
MfrMicro Commercial CoVoltage - Forward (Vf) (Max) @ If900 mV @ 10 mA
PackageBulkOperating Temperature-55°C ~ 150°C (TJ)
Product StatusActiveMounting TypeSurface Mount
Voltage - Zener (Nom) (Vz)6.8VPackage / Case0402 (1006 Metric)
Tolerance±5.88%Supplier Device Package2-DFN1006
Power - Max100 mWBase Product NumberBZT52C6V8
Impedance (Max) (Zzt)15 Ohms


When it comes to electronic components, there are various types of diodes that serve different purposes. Two common types of diodes are power diodes and normal diodes. While they may look similar, there are distinct differences between them. In this article, we will discuss the differences between a power diode and a normal diode, specifically focusing on the BZT52C6V8L3P-TP Power Zener Diode.


First, let's define what a diode is. A diode is a semiconductor device that allows electric current to flow in one direction while blocking it in the opposite direction. This makes it a vital component in many electronic circuits, as it helps regulate the flow of electricity.


A normal diode is a basic type of diode that is designed to conduct electricity in one direction. It is commonly used in rectifier circuits, where it converts AC (alternating current) to DC (direct current). Normal diodes have a low breakdown voltage, usually up to 50V, and can handle low currents.


On the other hand, a power diode is specifically designed to handle higher voltages and currents. It is used in circuits that require high power, such as power supplies and motor control. The BZT52C6V8L3P-TP is a power Zener diode, which means it has a special characteristic called the Zener effect. This allows it to maintain a constant voltage even when the current passing through it changes.


One of the key differences between power diodes and normal diodes is their maximum ratings. The BZT52C6V8L3P-TP has a maximum operating junction temperature range of -55°C to +150°C, while its storage temperature range is -55°C to +150°C. It also has a thermal resistance of 500°C/W junction to ambient, which means it can handle higher temperatures compared to a normal diode.


Another important difference is in their packaging and construction. Power diodes are usually larger in size and have a thicker construction to handle higher currents and dissipate heat more efficiently. The BZT52C6V8L3P-TP, for example, has a lead-free finish and is RoHS compliant, making it a more environmentally friendly option.


In addition to these differences, power diodes also have a higher breakdown voltage, usually above 50V, compared to normal diodes. This makes them suitable for applications that require higher voltage handling.


In conclusion, power diodes and normal diodes have distinct differences in their design, capabilities, and applications. While normal diodes are used in low-power circuits, power diodes like the BZT52C6V8L3P-TP are specialized for high-power applications. When choosing between the two, it is important to consider the requirements of your circuit and select the appropriate diode for optimal performance.


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