Allicdata Part #: | DSB20I15PA-ND |
Manufacturer Part#: |
DSB20I15PA |
Price: | $ 0.76 |
Product Category: | Discrete Semiconductor Products |
Manufacturer: | IXYS |
Short Description: | DIODE SCHOTTKY 15V 20A TO220AC |
More Detail: | Diode Schottky 15V 20A Through Hole TO-220AC |
DataSheet: | DSB20I15PA Datasheet/PDF |
Quantity: | 1000 |
50 +: | $ 0.68531 |
Series: | -- |
Packaging: | Tube |
Part Status: | Active |
Diode Type: | Schottky |
Voltage - DC Reverse (Vr) (Max): | 15V |
Current - Average Rectified (Io): | 20A |
Voltage - Forward (Vf) (Max) @ If: | 480mV @ 20A |
Speed: | Fast Recovery = 200mA (Io) |
Current - Reverse Leakage @ Vr: | 10µA @ 15V |
Capacitance @ Vr, F: | -- |
Mounting Type: | Through Hole |
Package / Case: | TO-220-2 |
Supplier Device Package: | TO-220AC |
Operating Temperature - Junction: | -55°C ~ 150°C |
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DSB20I15PA is a single-phase rectifier diode and a multi-purpose, high-efficiency device that can maximize system performance. It is often used in applications such as power supplies, inversion, and switching power converters as well as reducing energy losses and improving system reliability. This diode has a wide range of applications and its efficient performance ensures that it can be applied to many application fields. The main features of this diode include high current switching ability, low reverse recovery time, and soft-recovery behavior.
The DSB20I15PA has the parameters of 150A peak forward current, 15A forward current, 1.5A reverse current, and 0.15pF junction capacitance. This diode is designed to reduce switching losses and has a low voltage drop across it, making it an ideal choice for high efficiency applications. The diode also has other parameters like a maximum repetitive peak reverse voltage of 600V, a maximum reverse voltage of 50V and a maximum junction temperature of 175C.
The DSB20I15PA diode has a unique working principle, which makes it suitable to use in high-efficiency applications. The diode is composed of a semiconductor material, usually silicon, and two electrical terminals, one anode and one cathode. When a positive voltage is applied to the anode and a negative voltage to the cathode, the diode\'s internal voltage drop causes a current to flow. This current is based on the forward biased behavior of the diode, which produces a linear current-voltage relationship.
When the applied voltage exceeds the diode’s breakdown voltage, current is no longer linearly related to voltage. Instead, the diode’s characteristic changes to a rapidly increasing positive current with a small voltage increase. This behavior is called reverse biased behavior and is the operating mechanism of the DSB20I15PA diode. The diode is able to switch large currents in a short period of time, making it a very efficient device for power supply applications.
The DSB20I15PA diode also features a soft-recovery behavior that helps reduce switching losses. When a negative voltage is applied across the anode and cathode, the diode enters reverse bias mode and current starts to flow in the opposite direction. As the voltage increases, more and more current begins to flow in the diode, resulting in a rapid increase in the diode\'s forward current. As the voltage continues to rise, the flow of current in the diode eventually stops, resulting in only a small decrease in the output current at the switching time.
In addition to its high-efficiency switching capabilities, the DSB20I15PA offers low forward voltage drop and low reverse recovery time. It requires only 1.5A of reverse current, making it an excellent choice for applications that require a low power consumption. Additionally, the diode has a very short reverse recovery time of just 3ns, making it suitable for high switching frequency applications.
The DSB20I15PA is a single-phase rectifier diode and a multi-purpose, high-efficiency device. It features high current switching ability, low reverse recovery time, low forward voltage drop, and a soft-recovery behavior. The diode is often used in applications such as power supplies, inversion, and switching power converters, and its efficient performance makes it an ideal choice for high efficiency applications. The correct understanding of the working principle and parameters of this device is very important in order to maximize its performance and thus system performance.
The specific data is subject to PDF, and the above content is for reference
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