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SBR20A300CT
+BOMDIODE ARRAY SBR 300V 10A TO220AB
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ManufacturerDiodes Incorporated
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Mfr. Part #SBR20A300CT
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Datasheet SBR20A300CT DataSheet
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Package TO-220-3
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In Stock15922
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Specifications
| Attribute | Value |
| Supplier | Diodes Incorporated |
| Package | Tube |
| Series | SBR® |
| ProductStatus | Active |
| DiodeConfiguration | 1 Pair Common Cathode |
| DiodeType | Super Barrier |
| Voltage-DCReverse(Vr)(Max) | 300 V |
| Current-AverageRectified(Io)(perDiode) | 10A |
| Voltage-Forward(Vf)(Max)@If | 920 mV @ 10 A |
| Speed | Fast Recovery =< 500ns, > 200mA (Io) |
| ReverseRecoveryTime(trr) | 35 ns |
| Current-ReverseLeakage@Vr | 100 µA @ 300 V |
| OperatingTemperature-Junction | -65°C ~ 175°C |
| MountingType | Through Hole |
| Package/Case | TO-220-3 |
Overview
Description
Key features of the SBR20A300CT include:
1. Current Rating: It can handle a maximum continuous current of 20 Amperes, making it suitable for medium to high-power applications.
2. Voltage Rating: It has a maximum reverse voltage of 300 Volts, allowing it to operate effectively in systems with high voltage demands.
3. Package Type: It is commonly available in TO-220 package, which aids in easy mounting and efficient heat dissipation.
4. Low Forward Voltage Drop: This feature leads to better efficiency and reduced power loss.
5. High Surge Capability: It can withstand high surge currents, providing reliability in fluctuating power conditions.
Overall, the SBR20A300CT is ideal for applications requiring robust performance and efficiency in converting and managing electrical energy.
Equivalent
1. MBR20300CT by ON Semiconductor
2. FEP30DP by Fairchild Semiconductor
3. STPS30L30CT by STMicroelectronics
4. SB2045CT by Diodes Incorporated
These alternatives offer similar voltage and current ratings, though always verify the specifications to ensure compatibility with your application.
Features
1. Forward Current: It has a continuous forward current rating of 20 Amperes, making it suitable for high current applications.
2. Reverse Voltage: The device is rated for a maximum reverse voltage of 300 Volts, which ensures reliability in high-voltage circuits.
3. Low Forward Voltage Drop: This feature contributes to reduced power loss and increased efficiency in power conversion.
4. Fast Recovery Time: The Schottky design allows for rapid switching, enhancing performance in high-frequency applications.
5. Dual Diode Configuration: It typically comes in a TO-220AB package with two diodes in a common cathode configuration, offering design flexibility.
6. Thermal Efficiency: The package design supports effective heat dissipation, critical for maintaining performance under high current loads.
These characteristics make the SBR20A300CT ideal for use in power supply rectification, freewheeling diodes, and other applications requiring efficient power management.
Pinout
1. Anode (Pin 1): This is the terminal where the current enters the rectifier.
2. Cathode (Pin 2): This is the shared terminal for both diodes inside the package.
3. Anode (Pin 3): This is the terminal where the current enters the second diode.
The primary function of the SBR20A300CT is to efficiently convert alternating current (AC) to direct current (DC) with low forward voltage drop and high efficiency, making it suitable for power supply applications. It is rated for a maximum repetitive peak reverse voltage (V_RRM) of 300V and a maximum average forward current (I_F(AV)) of 20A. Its low forward voltage drop and high surge current capability make it advantageous in reducing power losses and improving thermal performance in high-frequency circuits.
Manufacturer
Application
1. Power Supplies: Used in AC/DC converters and DC/DC converters for efficient power regulation.
2. Solar Inverters: Assists in converting DC power from solar panels into AC power.
3. Battery Chargers: Facilitates efficient charging of batteries by controlling voltage and current.
4. Motor Drives: Helps in controlling and converting power for electric motors.
5. LED Lighting: Aids in the regulation and conversion of power for LED systems.
6. Automotive Electronics: Used in power conversion for various automotive electronic systems.
Its low forward voltage drop and high current capability make it ideal for these applications.