SBLF1630CT-E3/45 Allicdata Electronics
Allicdata Part #:

SBLF1630CT-E3/45-ND

Manufacturer Part#:

SBLF1630CT-E3/45

Price: $ 0.00
Product Category:

Discrete Semiconductor Products

Manufacturer: Vishay Semiconductor Diodes Division
Short Description: DIODE ARRAY SCHOTTKY 30V ITO220
More Detail: Diode Array 1 Pair Common Cathode Schottky 30V 8A ...
DataSheet: SBLF1630CT-E3/45 datasheetSBLF1630CT-E3/45 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: --
Packaging: Tube 
Part Status: Obsolete
Diode Configuration: 1 Pair Common Cathode
Diode Type: Schottky
Voltage - DC Reverse (Vr) (Max): 30V
Current - Average Rectified (Io) (per Diode): 8A
Voltage - Forward (Vf) (Max) @ If: 550mV @ 8A
Speed: Fast Recovery = 200mA (Io)
Current - Reverse Leakage @ Vr: 500µA @ 30V
Operating Temperature - Junction: -40°C ~ 125°C
Mounting Type: Through Hole
Package / Case: TO-220-3 Full Pack, Isolated Tab
Supplier Device Package: ITO-220AB
Description

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Diodes are an integral part of most circuit designs, and rectifier arrays are especially useful in applications where seven or more individual rectifiers are needed. The SBLF1630CT-E3/45 three-phase rectifier array is one such device that offers both performance and reliability in a small package. In this article, we will explore the application field and working principle of the SBLF1630CT-E3/45 rectifier array.

Applications of the SBLF1630CT-E3/45 Rectifier Array

The SBLF1630CT-E3/45 three-phase rectifier array is used in a variety of applications for converting alternating current (AC) to direct current (DC). It is used in AC-DC converters, power supplies, LED lighting, switch-mode power supplies, low-voltage power supplies, DC motor drives, and solar and wind power systems.

The SBLF1630CT-E3/45 three-phase rectifier array is an efficient device for a variety of applications due to its low forward voltage drop, high blocking voltage, very low power dissipation, low leakage current and high maximum current ratings. The device is also designed with integrated over-current and over-temperature protection, making it reliable and safe to use in a variety of applications.

Working Principle of the SBLF1630CT-E3/45 Rectifier Array

The SBLF1630CT-E3/45 rectifier array consists of seven individual rectifier diodes connected in a 3-phase, full-wave bridge configuration. Each diode is reverse biased and therefore allows current to flow in one direction only.

The AC input voltage is applied across A, B and C phases of the rectifier array. When a positive half-cycle of the AC voltage appears across the A-B phase of the rectifier array, the current will flow from A to B and the direction is reversed for the B-C phase. This is referred to as the forward bias. On the other hand, when a negative half-cycle of the AC voltage appears, the current will flow from A-C and the direction is reversed for the B-C phase. This is referred to as the reverse bias.

The rectifier array then converts the alternating current (AC) from the power source into direct current (DC). During the forward bias periods, the rectifier array allows current to flow from the anode (A) to the cathode (B, C). On the other hand, during the reverse bias periods, the rectifier array prevents current from flowing from the anode (A) to the cathode (B, C). The direct current (DC) output is then smoothed by a filter capacitor and the smoothed DC output voltage is regulated by adding a voltage regulator.

Conclusion

The SBLF1630CT-E3/45 three-phase rectifier array is a reliable and efficient device for converting AC current to DC current. Its integrated over-current and over-temperature protection features make it suitable for a variety of applications, such as AC-DC converters, power supplies, LED lighting, switch-mode power supplies, low-voltage power supplies, DC motor drives, and solar and wind power systems. The working principle of the device is based on the bridge rectifier configuration, with seven individual diodes connected in a 3-phase bridge configuration. This allows for a reliable and efficient conversion of AC to DC.

The specific data is subject to PDF, and the above content is for reference

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